{"asset": "process-compatibility-coatings-adhesives-treatments", "asset_type": "lookup", "body": "Electrode potential in seawater (volts vs SCE) for metals and alloys from the ASM/MIL-STD-889 galvanic series, and surface energy (dyne/cm) for plastics and packaging materials. Answers 'can I use [coating] directly on galvanised steel', 'will these two metals corrode each other' and 'will this adhesive wet this plastic' \u2014 questions where assistants miss the primer/prep requirement for a specific substrate.\n", "description": "Electrode potential in seawater (volts vs SCE) for metals and alloys from the ASM/MIL-STD-889 galvanic series, and surface energy (dyne/cm) for plastics and packaging materials. Answers 'can I use [coating] directly on galvanised steel', 'will these two metals corrode each other' and 'will this adhesive wet this plastic' \u2014 questions where assistants miss the primer/prep requirement for a specific substrate.", "file": "index.md", "generated": true, "harvested": "2026-08-04", "key_field": "material", "licence": "Factual compilation with source citations. Galvanic series from ASM Handbook Vol. 13 and MIL-STD-889 (US government, public domain). Surface energy data from kolorguide.com.", "sources": ["https://l-36.com/corrosion.php", "https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "title": "Galvanic series and surface energy of engineering materials", "type": "dataset", "verified": false}
{"anodic_index_v": "0.50", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** 18% chromium type corrosion-resistant steels\n\n**Anodic index (V vs gold):** 0.50\n\n> 18% chromium type corrosion-resistant steels | 0.50 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "18-chromium-type-corrosion-resistant-steels.md", "generated": true, "harvested": "2026-08-04", "id": "18-chromium-type-corrosion-resistant-steels", "material": "18% chromium type corrosion-resistant steels", "source_quote": "18% chromium type corrosion-resistant steels | 0.50 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "18% chromium type corrosion-resistant steels \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Acrylic Coating\n\n**Surface energy (dyne/cm):** 38\u201342\n\n**Condition:** Dry\n\n**Needs treatment?:** No\n\n> Acrylic Coating | 38\u201342 | Dry | No | Dyne pens | Good adhesion |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Dry", "file": "acrylic-coating.md", "generated": true, "harvested": "2026-08-04", "id": "acrylic-coating", "material": "Acrylic Coating", "needs_treatment": "No", "source_quote": "Acrylic Coating | 38\u201342 | Dry | No | Dyne pens | Good adhesion |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "38\u201342", "title": "Acrylic Coating \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Alloy 464 (Naval Rolled Brass)\n\n**Galvanic potential (V vs SCE):** 0.4\n\n> Alloy 464 (Naval Rolled Brass) | 0.4 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "alloy-464-naval-rolled-brass.md", "galvanic_potential_v_sce": "0.4", "generated": true, "harvested": "2026-08-04", "id": "alloy-464-naval-rolled-brass", "material": "Alloy 464 (Naval Rolled Brass)", "source_quote": "Alloy 464 (Naval Rolled Brass) | 0.4 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Alloy 464 (Naval Rolled Brass) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Aluminum 3003-H\n\n**Galvanic potential (V vs SCE):** 0.79\n\n> Aluminum 3003-H | 0.79 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "aluminum-3003-h.md", "galvanic_potential_v_sce": "0.79", "generated": true, "harvested": "2026-08-04", "id": "aluminum-3003-h", "material": "Aluminum 3003-H", "source_quote": "Aluminum 3003-H | 0.79 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Aluminum 3003-H \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.95", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Aluminum, cast alloys other than silicon type, cadmium, plated and chromate\n\n**Anodic index (V vs gold):** 0.95\n\n> Aluminum, cast alloys other than silicon type, cadmium, plated and chromate | 0.95 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "aluminum-cast-alloys-other-than-silicon-type-cadmium-plated-and-chromate.md", "generated": true, "harvested": "2026-08-04", "id": "aluminum-cast-alloys-other-than-silicon-type-cadmium-plated-and-chromate", "material": "Aluminum, cast alloys other than silicon type, cadmium, plated and chromate", "source_quote": "Aluminum, cast alloys other than silicon type, cadmium, plated and chromate | 0.95 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Aluminum, cast alloys other than silicon type, cadmium, plated and chromate \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.75", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Aluminum, wrought alloys of the 2000 Series\n\n**Anodic index (V vs gold):** 0.75\n\n> Aluminum , wrought alloys of the 2000 Series | 0.75 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "aluminum-wrought-alloys-of-the-2000-series.md", "generated": true, "harvested": "2026-08-04", "id": "aluminum-wrought-alloys-of-the-2000-series", "material": "Aluminum, wrought alloys of the 2000 Series", "source_quote": "Aluminum , wrought alloys of the 2000 Series | 0.75 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Aluminum, wrought alloys of the 2000 Series \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.90", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Aluminum, wrought alloys other than 2000 Series aluminum, cast alloys of the silicon type\n\n**Anodic index (V vs gold):** 0.90\n\n> Aluminum, wrought alloys other than 2000 Series aluminum, cast alloys of the silicon type | 0.90 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "aluminum-wrought-alloys-other-than-2000-series-aluminum-cast-alloys-of-the-silic.md", "generated": true, "harvested": "2026-08-04", "id": "aluminum-wrought-alloys-other-than-2000-series-aluminum-cast-alloys-of-the-silic", "material": "Aluminum, wrought alloys other than 2000 Series aluminum, cast alloys of the silicon type", "source_quote": "Aluminum, wrought alloys other than 2000 Series aluminum, cast alloys of the silicon type | 0.90 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Aluminum, wrought alloys other than 2000 Series aluminum, cast alloys of the silicon type \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Aluminum\n\n**Surface energy (dyne/cm):** 40\u201360\n\n**Condition:** Oxidized surface\n\n**Needs treatment?:** Sometimes\n\n> Aluminum | 40\u201360 | Oxidized surface | Sometimes | Cotton applicator | Sensitive to oils |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Oxidized surface", "file": "aluminum.md", "generated": true, "harvested": "2026-08-04", "id": "aluminum", "material": "Aluminum", "needs_treatment": "Sometimes", "source_quote": "Aluminum | 40\u201360 | Oxidized surface | Sometimes | Cotton applicator | Sensitive to oils |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "40\u201360", "title": "Aluminum \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "1.85", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Beryllium\n\n**Anodic index (V vs gold):** 1.85\n\n> Beryllium | 1.85 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "beryllium.md", "generated": true, "harvested": "2026-08-04", "id": "beryllium", "material": "Beryllium", "source_quote": "Beryllium | 1.85 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Beryllium \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** BOPP Film\n\n**Surface energy (dyne/cm):** 30\u201332\n\n**Condition:** Untreated\n\n**Needs treatment?:** Yes\n\n> BOPP Film | 30\u201332 | Untreated | Yes | Dyne pens | Labels and packaging |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Untreated", "file": "bopp-film.md", "generated": true, "harvested": "2026-08-04", "id": "bopp-film", "material": "BOPP Film", "needs_treatment": "Yes", "source_quote": "BOPP Film | 30\u201332 | Untreated | Yes | Dyne pens | Labels and packaging |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "30\u201332", "title": "BOPP Film \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** BOPP (treated)\n\n**Surface energy (dyne/cm):** 38\u201342\n\n**Condition:** Corona treated\n\n**Needs treatment?:** No (if recently treated)\n\n> BOPP (treated) | 38\u201342 | Corona treated | No (if recently treated) | Dyne pens | Ready for printing |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Corona treated", "file": "bopp-treated.md", "generated": true, "harvested": "2026-08-04", "id": "bopp-treated", "material": "BOPP (treated)", "needs_treatment": "No (if recently treated)", "source_quote": "BOPP (treated) | 38\u201342 | Corona treated | No (if recently treated) | Dyne pens | Ready for printing |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "38\u201342", "title": "BOPP (treated) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.40", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Brass and bronzes\n\n**Anodic index (V vs gold):** 0.40\n\n> Brass and bronzes | 0.40 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "brass-and-bronzes.md", "generated": true, "harvested": "2026-08-04", "id": "brass-and-bronzes", "material": "Brass and bronzes", "source_quote": "Brass and bronzes | 0.40 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Brass and bronzes \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Carbon Steel\n\n**Galvanic potential (V vs SCE):** 0.61\n\n> Carbon Steel | 0.61 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "carbon-steel.md", "galvanic_potential_v_sce": "0.61", "generated": true, "harvested": "2026-08-04", "id": "carbon-steel", "material": "Carbon Steel", "source_quote": "Carbon Steel | 0.61 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Carbon Steel \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Cast Iron\n\n**Galvanic potential (V vs SCE):** 0.61\n\n> Cast Iron | 0.61 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "cast-iron.md", "galvanic_potential_v_sce": "0.61", "generated": true, "harvested": "2026-08-04", "id": "cast-iron", "material": "Cast Iron", "source_quote": "Cast Iron | 0.61 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Cast Iron \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.60", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Chromium plated; tin plated; 12% chromium type corrosion-resistant steels\n\n**Anodic index (V vs gold):** 0.60\n\n> Chromium plated; tin plated; 12% chromium type corrosion-resistant steels | 0.60 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "chromium-plated-tin-plated-12-chromium-type-corrosion-resistant-steels.md", "generated": true, "harvested": "2026-08-04", "id": "chromium-plated-tin-plated-12-chromium-type-corrosion-resistant-steels", "material": "Chromium plated; tin plated; 12% chromium type corrosion-resistant steels", "source_quote": "Chromium plated; tin plated; 12% chromium type corrosion-resistant steels | 0.60 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Chromium plated; tin plated; 12% chromium type corrosion-resistant steels \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Cold Foil (cured)\n\n**Surface energy (dyne/cm):** 34\u201340\n\n**Condition:** Fully cured\n\n**Needs treatment?:** Sometimes\n\n> Cold Foil (cured) | 34\u201340 | Fully cured | Sometimes | Dyne pens | Depends on UV system |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Fully cured", "file": "cold-foil-cured.md", "generated": true, "harvested": "2026-08-04", "id": "cold-foil-cured", "material": "Cold Foil (cured)", "needs_treatment": "Sometimes", "source_quote": "Cold Foil (cured) | 34\u201340 | Fully cured | Sometimes | Dyne pens | Depends on UV system |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "34\u201340", "title": "Cold Foil (cured) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Cold Foil\n\n**Surface energy (dyne/cm):** 36\u201342\n\n**Condition:** UV adhesive\n\n**Needs treatment?:** Sometimes\n\n> Cold Foil | 36\u201342 | UV adhesive | Sometimes | Dyne pens | Better wetting than hot foil |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "UV adhesive", "file": "cold-foil.md", "generated": true, "harvested": "2026-08-04", "id": "cold-foil", "material": "Cold Foil", "needs_treatment": "Sometimes", "source_quote": "Cold Foil | 36\u201342 | UV adhesive | Sometimes | Dyne pens | Better wetting than hot foil |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "36\u201342", "title": "Cold Foil \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Copper Alloy 443 (Admiralty Brass)\n\n**Galvanic potential (V vs SCE):** 0.29\n\n> Copper Alloy 443 (Admiralty Brass) | 0.29 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "copper-alloy-443-admiralty-brass.md", "galvanic_potential_v_sce": "0.29", "generated": true, "harvested": "2026-08-04", "id": "copper-alloy-443-admiralty-brass", "material": "Copper Alloy 443 (Admiralty Brass)", "source_quote": "Copper Alloy 443 (Admiralty Brass) | 0.29 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Copper Alloy 443 (Admiralty Brass) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Copper Alloy 687 (Aluminum Brass)\n\n**Galvanic potential (V vs SCE):** 0.32\n\n> Copper Alloy 687 (Aluminum Brass) | 0.32 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "copper-alloy-687-aluminum-brass.md", "galvanic_potential_v_sce": "0.32", "generated": true, "harvested": "2026-08-04", "id": "copper-alloy-687-aluminum-brass", "material": "Copper Alloy 687 (Aluminum Brass)", "source_quote": "Copper Alloy 687 (Aluminum Brass) | 0.32 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Copper Alloy 687 (Aluminum Brass) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Copper Alloy 706 (90-10 Cupro-Nickel)\n\n**Galvanic potential (V vs SCE):** 0.28\n\n> Copper Alloy 706 (90-10 Cupro-Nickel) | 0.28 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "copper-alloy-706-90-10-cupro-nickel.md", "galvanic_potential_v_sce": "0.28", "generated": true, "harvested": "2026-08-04", "id": "copper-alloy-706-90-10-cupro-nickel", "material": "Copper Alloy 706 (90-10 Cupro-Nickel)", "source_quote": "Copper Alloy 706 (90-10 Cupro-Nickel) | 0.28 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Copper Alloy 706 (90-10 Cupro-Nickel) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Copper Alloy 715 (70-30 Cupro-Nickel)\n\n**Galvanic potential (V vs SCE):** 0.25\n\n> Copper Alloy 715 (70-30 Cupro-Nickel) | 0.25 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "copper-alloy-715-70-30-cupro-nickel.md", "galvanic_potential_v_sce": "0.25", "generated": true, "harvested": "2026-08-04", "id": "copper-alloy-715-70-30-cupro-nickel", "material": "Copper Alloy 715 (70-30 Cupro-Nickel)", "source_quote": "Copper Alloy 715 (70-30 Cupro-Nickel) | 0.25 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Copper Alloy 715 (70-30 Cupro-Nickel) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.35", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Copper, solid or plated; low brasses or bronzes; silver solder; German silvery high copper-nickel alloys; nickel-chromium alloys\n\n**Anodic index (V vs gold):** 0.35\n\n> Copper, solid or plated; low brass es or bronzes; silver solder; German silvery high copper-nickel alloys; nickel-chromium alloys | 0.35 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "copper-solid-or-plated-low-brasses-or-bronzes-silver-solder-german-silvery-high-.md", "generated": true, "harvested": "2026-08-04", "id": "copper-solid-or-plated-low-brasses-or-bronzes-silver-solder-german-silvery-high-", "material": "Copper, solid or plated; low brasses or bronzes; silver solder; German silvery high copper-nickel alloys; nickel-chromium alloys", "source_quote": "Copper, solid or plated; low brass es or bronzes; silver solder; German silvery high copper-nickel alloys; nickel-chromium alloys | 0.35 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Copper, solid or plated; low brasses or bronzes; silver solder; German silvery high copper-nickel alloys; nickel-chromium alloys \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Copper\n\n**Galvanic potential (V vs SCE):** 0.36\n\n> Copper | 0.36 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "copper.md", "galvanic_potential_v_sce": "0.36", "generated": true, "harvested": "2026-08-04", "id": "copper", "material": "Copper", "source_quote": "Copper | 0.36 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Copper \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Foil (with overprint varnish)\n\n**Surface energy (dyne/cm):** 38\u201344\n\n**Condition:** Coated\n\n**Needs treatment?:** No\n\n> Foil (with overprint varnish) | 38\u201344 | Coated | No | Dyne pens | Improved adhesion |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Coated", "file": "foil-with-overprint-varnish.md", "generated": true, "harvested": "2026-08-04", "id": "foil-with-overprint-varnish", "material": "Foil (with overprint varnish)", "needs_treatment": "No", "source_quote": "Foil (with overprint varnish) | 38\u201344 | Coated | No | Dyne pens | Improved adhesion |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "38\u201344", "title": "Foil (with overprint varnish) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** G Bronze\n\n**Galvanic potential (V vs SCE):** 0.31\n\n> G Bronze | 0.31 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "g-bronze.md", "galvanic_potential_v_sce": "0.31", "generated": true, "harvested": "2026-08-04", "id": "g-bronze", "material": "G Bronze", "source_quote": "G Bronze | 0.31 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "G Bronze \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Glass\n\n**Surface energy (dyne/cm):** 60\u201372\n\n**Condition:** Clean surface\n\n**Needs treatment?:** No\n\n> Glass | 60\u201372 | Clean surface | No | Cotton applicator | Helps detect contamination |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Clean surface", "file": "glass.md", "generated": true, "harvested": "2026-08-04", "id": "glass", "material": "Glass", "needs_treatment": "No", "source_quote": "Glass | 60\u201372 | Clean surface | No | Cotton applicator | Helps detect contamination |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "60\u201372", "title": "Glass \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.00", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Gold, solid and plated, Gold-platinum alloy\n\n**Anodic index (V vs gold):** 0.00\n\n> Gold, solid and plated, Gold-platinum alloy | 0.00 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "gold-solid-and-plated-gold-platinum-alloy.md", "generated": true, "harvested": "2026-08-04", "id": "gold-solid-and-plated-gold-platinum-alloy", "material": "Gold, solid and plated, Gold-platinum alloy", "source_quote": "Gold, solid and plated, Gold-platinum alloy | 0.00 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Gold, solid and plated, Gold-platinum alloy \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Graphite\n\n**Galvanic potential (V vs SCE):** +0.25\n\n> Graphite | +0.25 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "graphite.md", "galvanic_potential_v_sce": "+0.25", "generated": true, "harvested": "2026-08-04", "id": "graphite", "material": "Graphite", "source_quote": "Graphite | +0.25 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Graphite \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Hastelloy C\n\n**Galvanic potential (V vs SCE):** 0.08\n\n> Hastelloy C | 0.08 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "hastelloy-c.md", "galvanic_potential_v_sce": "0.08", "generated": true, "harvested": "2026-08-04", "id": "hastelloy-c", "material": "Hastelloy C", "source_quote": "Hastelloy C | 0.08 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Hastelloy C \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** HDPE\n\n**Surface energy (dyne/cm):** 30\u201332\n\n**Condition:** Untreated\n\n**Needs treatment?:** Yes\n\n> HDPE | 30\u201332 | Untreated | Yes | Dyne pens | Common in packaging |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Untreated", "file": "hdpe.md", "generated": true, "harvested": "2026-08-04", "id": "hdpe", "material": "HDPE", "needs_treatment": "Yes", "source_quote": "HDPE | 30\u201332 | Untreated | Yes | Dyne pens | Common in packaging |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "30\u201332", "title": "HDPE \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.45", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** High brasses and bronzes\n\n**Anodic index (V vs gold):** 0.45\n\n> High brasses and bronzes | 0.45 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "high-brasses-and-bronzes.md", "generated": true, "harvested": "2026-08-04", "id": "high-brasses-and-bronzes", "material": "High brasses and bronzes", "source_quote": "High brasses and bronzes | 0.45 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "High brasses and bronzes \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "1.20", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Hot-dip-zinc plate; galvanized steel\n\n**Anodic index (V vs gold):** 1.20\n\n> Hot-dip-zinc plate; galvanized steel | 1.20 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "hot-dip-zinc-plate-galvanized-steel.md", "generated": true, "harvested": "2026-08-04", "id": "hot-dip-zinc-plate-galvanized-steel", "material": "Hot-dip-zinc plate; galvanized steel", "source_quote": "Hot-dip-zinc plate; galvanized steel | 1.20 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Hot-dip-zinc plate; galvanized steel \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Hot Foil (aged)\n\n**Surface energy (dyne/cm):** 32\u201336\n\n**Condition:** After storage\n\n**Needs treatment?:** Yes\n\n> Hot Foil (aged) | 32\u201336 | After storage | Yes | Dyne pens | Surface energy may decrease |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "After storage", "file": "hot-foil-aged.md", "generated": true, "harvested": "2026-08-04", "id": "hot-foil-aged", "material": "Hot Foil (aged)", "needs_treatment": "Yes", "source_quote": "Hot Foil (aged) | 32\u201336 | After storage | Yes | Dyne pens | Surface energy may decrease |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "32\u201336", "title": "Hot Foil (aged) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Hot Stamping Foil\n\n**Surface energy (dyne/cm):** 34\u201338\n\n**Condition:** Fresh transfer\n\n**Needs treatment?:** Yes\n\n> Hot Stamping Foil | 34\u201338 | Fresh transfer | Yes | Dyne pens | Low adhesion surface |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Fresh transfer", "file": "hot-stamping-foil.md", "generated": true, "harvested": "2026-08-04", "id": "hot-stamping-foil", "material": "Hot Stamping Foil", "needs_treatment": "Yes", "source_quote": "Hot Stamping Foil | 34\u201338 | Fresh transfer | Yes | Dyne pens | Low adhesion surface |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "34\u201338", "title": "Hot Stamping Foil \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Ink Film (dry)\n\n**Surface energy (dyne/cm):** 36\u201342\n\n**Condition:** Printed\n\n**Needs treatment?:** Sometimes\n\n> Ink Film (dry) | 36\u201342 | Printed | Sometimes | Dyne pens | Depends on ink system |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Printed", "file": "ink-film-dry.md", "generated": true, "harvested": "2026-08-04", "id": "ink-film-dry", "material": "Ink Film (dry)", "needs_treatment": "Sometimes", "source_quote": "Ink Film (dry) | 36\u201342 | Printed | Sometimes | Dyne pens | Depends on ink system |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "36\u201342", "title": "Ink Film (dry) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.85", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Iron, wrought, gray or malleable, plain carbon and low alloy steels\n\n**Anodic index (V vs gold):** 0.85\n\n> Iron , wrought, gray or malleable, plain carbon and low alloy steels | 0.85 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "iron-wrought-gray-or-malleable-plain-carbon-and-low-alloy-steels.md", "generated": true, "harvested": "2026-08-04", "id": "iron-wrought-gray-or-malleable-plain-carbon-and-low-alloy-steels", "material": "Iron, wrought, gray or malleable, plain carbon and low alloy steels", "source_quote": "Iron , wrought, gray or malleable, plain carbon and low alloy steels | 0.85 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Iron, wrought, gray or malleable, plain carbon and low alloy steels \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** LDPE\n\n**Surface energy (dyne/cm):** 30\u201333\n\n**Condition:** Untreated\n\n**Needs treatment?:** Yes\n\n> LDPE | 30\u201333 | Untreated | Yes | Dyne pens | Used in films |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Untreated", "file": "ldpe.md", "generated": true, "harvested": "2026-08-04", "id": "ldpe", "material": "LDPE", "needs_treatment": "Yes", "source_quote": "LDPE | 30\u201333 | Untreated | Yes | Dyne pens | Used in films |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "30\u201333", "title": "LDPE \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.70", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Lead, solid or plated; high lead alloys\n\n**Anodic index (V vs gold):** 0.70\n\n> Lead, solid or plated; high lead alloys | 0.70 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "lead-solid-or-plated-high-lead-alloys.md", "generated": true, "harvested": "2026-08-04", "id": "lead-solid-or-plated-high-lead-alloys", "material": "Lead, solid or plated; high lead alloys", "source_quote": "Lead, solid or plated; high lead alloys | 0.70 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Lead, solid or plated; high lead alloys \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "1.75", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Magnesium & magnesium-base alloys, cast or wrought\n\n**Anodic index (V vs gold):** 1.75\n\n> Magnesium & magnesium-base alloys, cast or wrought | 1.75 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "magnesium-magnesium-base-alloys-cast-or-wrought.md", "generated": true, "harvested": "2026-08-04", "id": "magnesium-magnesium-base-alloys-cast-or-wrought", "material": "Magnesium & magnesium-base alloys, cast or wrought", "source_quote": "Magnesium & magnesium-base alloys, cast or wrought | 1.75 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Magnesium & magnesium-base alloys, cast or wrought \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Metallized Film\n\n**Surface energy (dyne/cm):** 38\u201344\n\n**Condition:** Coated\n\n**Needs treatment?:** Sometimes\n\n> Metallized Film | 38\u201344 | Coated | Sometimes | Dyne pens | Depends on coating |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Coated", "file": "metallized-film.md", "generated": true, "harvested": "2026-08-04", "id": "metallized-film", "material": "Metallized Film", "needs_treatment": "Sometimes", "source_quote": "Metallized Film | 38\u201344 | Coated | Sometimes | Dyne pens | Depends on coating |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "38\u201344", "title": "Metallized Film \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Monel 400\n\n**Galvanic potential (V vs SCE):** 0.08\n\n> Monel 400 | 0.08 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "monel-400.md", "galvanic_potential_v_sce": "0.08", "generated": true, "harvested": "2026-08-04", "id": "monel-400", "material": "Monel 400", "source_quote": "Monel 400 | 0.08 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Monel 400 \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Multilayer Film (EVOH core)\n\n**Surface energy (dyne/cm):** 30\u201342\n\n**Condition:** Depends on outer layer\n\n**Needs treatment?:** Yes/No\n\n> Multilayer Film (EVOH core) | 30\u201342 | Depends on outer layer | Yes/No | Dyne pens | Outer layer defines behavior |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Depends on outer layer", "file": "multilayer-film-evoh-core.md", "generated": true, "harvested": "2026-08-04", "id": "multilayer-film-evoh-core", "material": "Multilayer Film (EVOH core)", "needs_treatment": "Yes/No", "source_quote": "Multilayer Film (EVOH core) | 30\u201342 | Depends on outer layer | Yes/No | Dyne pens | Outer layer defines behavior |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "30\u201342", "title": "Multilayer Film (EVOH core) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.30", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Nickel , solid or plated, titan ium an s alloys, Monel\n\n**Anodic index (V vs gold):** 0.30\n\n> Nickel , solid or plated, titan ium an s alloys, Monel | 0.30 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "nickel-solid-or-plated-titanium-and-alloys-monel.md", "generated": true, "harvested": "2026-08-04", "id": "nickel-solid-or-plated-titanium-and-alloys-monel", "material": "Nickel , solid or plated, titan ium an s alloys, Monel", "source_quote": "Nickel , solid or plated, titan ium an s alloys, Monel | 0.30 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Nickel, solid or plated, titanium and alloys, Monel \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Nickel\n\n**Galvanic potential (V vs SCE):** 0.2\n\n> Nickel | 0.2 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "nickel.md", "galvanic_potential_v_sce": "0.2", "generated": true, "harvested": "2026-08-04", "id": "nickel", "material": "Nickel", "source_quote": "Nickel | 0.2 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Nickel \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Nylon (PA)\n\n**Surface energy (dyne/cm):** 46\u201350\n\n**Condition:** Standard\n\n**Needs treatment?:** No\n\n> Nylon (PA) | 46\u201350 | Standard | No | Dyne pens | High adhesion |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Standard", "file": "nylon-pa.md", "generated": true, "harvested": "2026-08-04", "id": "nylon-pa", "material": "Nylon (PA)", "needs_treatment": "No", "source_quote": "Nylon (PA) | 46\u201350 | Standard | No | Dyne pens | High adhesion |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "46\u201350", "title": "Nylon (PA) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PE Coex (EVA surface)\n\n**Surface energy (dyne/cm):** 36\u201340\n\n**Condition:** Modified layer\n\n**Needs treatment?:** Sometimes\n\n> PE Coex (EVA surface) | 36\u201340 | Modified layer | Sometimes | Dyne pens | Improved adhesion |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Modified layer", "file": "pe-coex-eva-surface.md", "generated": true, "harvested": "2026-08-04", "id": "pe-coex-eva-surface", "material": "PE Coex (EVA surface)", "needs_treatment": "Sometimes", "source_quote": "PE Coex (EVA surface) | 36\u201340 | Modified layer | Sometimes | Dyne pens | Improved adhesion |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "36\u201340", "title": "PE Coex (EVA surface) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PE Coex (PA/Nylon surface)\n\n**Surface energy (dyne/cm):** 42\u201350\n\n**Condition:** High-energy layer\n\n**Needs treatment?:** No\n\n> PE Coex (PA/Nylon surface) | 42\u201350 | High-energy layer | No | Dyne pens | Excellent adhesion |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "High-energy layer", "file": "pe-coex-pa-nylon-surface.md", "generated": true, "harvested": "2026-08-04", "id": "pe-coex-pa-nylon-surface", "material": "PE Coex (PA/Nylon surface)", "needs_treatment": "No", "source_quote": "PE Coex (PA/Nylon surface) | 42\u201350 | High-energy layer | No | Dyne pens | Excellent adhesion |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "42\u201350", "title": "PE Coex (PA/Nylon surface) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PE Coex (with slip additives)\n\n**Surface energy (dyne/cm):** 30\u201336\n\n**Condition:** Variable\n\n**Needs treatment?:** Yes\n\n> PE Coex (with slip additives) | 30\u201336 | Variable | Yes | Dyne pens | Unstable surface |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Variable", "file": "pe-coex-with-slip-additives.md", "generated": true, "harvested": "2026-08-04", "id": "pe-coex-with-slip-additives", "material": "PE Coex (with slip additives)", "needs_treatment": "Yes", "source_quote": "PE Coex (with slip additives) | 30\u201336 | Variable | Yes | Dyne pens | Unstable surface |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "30\u201336", "title": "PE Coex (with slip additives) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PE Coextruded (aged)\n\n**Surface energy (dyne/cm):** 32\u201338\n\n**Condition:** Migration\n\n**Needs treatment?:** Often\n\n> PE Coextruded (aged) | 32\u201338 | Migration | Often | Dyne pens | Surface energy loss over time |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Migration", "file": "pe-coextruded-aged.md", "generated": true, "harvested": "2026-08-04", "id": "pe-coextruded-aged", "material": "PE Coextruded (aged)", "needs_treatment": "Often", "source_quote": "PE Coextruded (aged) | 32\u201338 | Migration | Often | Dyne pens | Surface energy loss over time |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "32\u201338", "title": "PE Coextruded (aged) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PE Coextruded (treated)\n\n**Surface energy (dyne/cm):** 38\u201342\n\n**Condition:** Corona treated\n\n**Needs treatment?:** No\n\n> PE Coextruded (treated) | 38\u201342 | Corona treated | No | Dyne pens | Printable surface |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Corona treated", "file": "pe-coextruded-treated.md", "generated": true, "harvested": "2026-08-04", "id": "pe-coextruded-treated", "material": "PE Coextruded (treated)", "needs_treatment": "No", "source_quote": "PE Coextruded (treated) | 38\u201342 | Corona treated | No | Dyne pens | Printable surface |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "38\u201342", "title": "PE Coextruded (treated) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PE Coextruded (untreated)\n\n**Surface energy (dyne/cm):** 30\u201333\n\n**Condition:** Fresh\n\n**Needs treatment?:** Yes\n\n> PE Coextruded (untreated) | 30\u201333 | Fresh | Yes | Dyne pens | Similar to standard PE |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Fresh", "file": "pe-coextruded-untreated.md", "generated": true, "harvested": "2026-08-04", "id": "pe-coextruded-untreated", "material": "PE Coextruded (untreated)", "needs_treatment": "Yes", "source_quote": "PE Coextruded (untreated) | 30\u201333 | Fresh | Yes | Dyne pens | Similar to standard PE |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "30\u201333", "title": "PE Coextruded (untreated) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PE Film\n\n**Surface energy (dyne/cm):** 30\u201333\n\n**Condition:** Untreated\n\n**Needs treatment?:** Yes\n\n> PE Film | 30\u201333 | Untreated | Yes | Dyne pens | Requires treatment |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Untreated", "file": "pe-film.md", "generated": true, "harvested": "2026-08-04", "id": "pe-film", "material": "PE Film", "needs_treatment": "Yes", "source_quote": "PE Film | 30\u201333 | Untreated | Yes | Dyne pens | Requires treatment |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "30\u201333", "title": "PE Film \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PET Film\n\n**Surface energy (dyne/cm):** 42\u201346\n\n**Condition:** Treated\n\n**Needs treatment?:** No\n\n> PET Film | 42\u201346 | Treated | No | Dyne pens | Stable |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Treated", "file": "pet-film.md", "generated": true, "harvested": "2026-08-04", "id": "pet-film", "material": "PET Film", "needs_treatment": "No", "source_quote": "PET Film | 42\u201346 | Treated | No | Dyne pens | Stable |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "42\u201346", "title": "PET Film \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PET\n\n**Surface energy (dyne/cm):** 42\u201346\n\n**Condition:** Standard\n\n**Needs treatment?:** Rarely\n\n> PET | 42\u201346 | Standard | Rarely | Dyne pens | Stable surface |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Standard", "file": "pet.md", "generated": true, "harvested": "2026-08-04", "id": "pet", "material": "PET", "needs_treatment": "Rarely", "source_quote": "PET | 42\u201346 | Standard | Rarely | Dyne pens | Stable surface |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "42\u201346", "title": "PET \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Platinum\n\n**Galvanic potential (V vs SCE):** +0.15\n\n> Platinum | +0.15 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "platinum.md", "galvanic_potential_v_sce": "+0.15", "generated": true, "harvested": "2026-08-04", "id": "platinum", "material": "Platinum", "source_quote": "Platinum | +0.15 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Platinum \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Polyethylene (PE)\n\n**Surface energy (dyne/cm):** 30\u201333\n\n**Condition:** Untreated\n\n**Needs treatment?:** Yes\n\n> Polyethylene (PE) | 30\u201333 | Untreated | Yes | Dyne pens | Difficult to print |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Untreated", "file": "polyethylene-pe.md", "generated": true, "harvested": "2026-08-04", "id": "polyethylene-pe", "material": "Polyethylene (PE)", "needs_treatment": "Yes", "source_quote": "Polyethylene (PE) | 30\u201333 | Untreated | Yes | Dyne pens | Difficult to print |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "30\u201333", "title": "Polyethylene (PE) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Polypropylene (PP)\n\n**Surface energy (dyne/cm):** 29\u201331\n\n**Condition:** Untreated\n\n**Needs treatment?:** Yes\n\n> Polypropylene (PP) | 29\u201331 | Untreated | Yes | Dyne pens | Requires corona treatment |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Untreated", "file": "polypropylene-pp.md", "generated": true, "harvested": "2026-08-04", "id": "polypropylene-pp", "material": "Polypropylene (PP)", "needs_treatment": "Yes", "source_quote": "Polypropylene (PP) | 29\u201331 | Untreated | Yes | Dyne pens | Requires corona treatment |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "29\u201331", "title": "Polypropylene (PP) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PTFE (Teflon)\n\n**Surface energy (dyne/cm):** 18\u201320\n\n**Condition:** Inert\n\n**Needs treatment?:** Very Difficult\n\n> PTFE (Teflon) | 18\u201320 | Inert | Very Difficult | Dyne test fluids | Non-stick surface |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Inert", "file": "ptfe-teflon.md", "generated": true, "harvested": "2026-08-04", "id": "ptfe-teflon", "material": "PTFE (Teflon)", "needs_treatment": "Very Difficult", "source_quote": "PTFE (Teflon) | 18\u201320 | Inert | Very Difficult | Dyne test fluids | Non-stick surface |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "18\u201320", "title": "PTFE (Teflon) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** PVC\n\n**Surface energy (dyne/cm):** 38\u201342\n\n**Condition:** Flexible/Rigid\n\n**Needs treatment?:** Sometimes\n\n> PVC | 38\u201342 | Flexible/Rigid | Sometimes | Dyne pens | Depends on formulation |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Flexible/Rigid", "file": "pvc.md", "generated": true, "harvested": "2026-08-04", "id": "pvc", "material": "PVC", "needs_treatment": "Sometimes", "source_quote": "PVC | 38\u201342 | Flexible/Rigid | Sometimes | Dyne pens | Depends on formulation |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "38\u201342", "title": "PVC \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.05", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Rhodium plated on silver-plated copper\n\n**Anodic index (V vs gold):** 0.05\n\n> Rhodium plated on silver-plated copper | 0.05 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "rhodium-plated-on-silver-plated-copper.md", "generated": true, "harvested": "2026-08-04", "id": "rhodium-plated-on-silver-plated-copper", "material": "Rhodium plated on silver-plated copper", "source_quote": "Rhodium plated on silver-plated copper | 0.05 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Rhodium plated on silver-plated copper \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Silicone\n\n**Surface energy (dyne/cm):** 20\u201324\n\n**Condition:** Elastomer\n\n**Needs treatment?:** Very Difficult\n\n> Silicone | 20\u201324 | Elastomer | Very Difficult | Dyne test fluids | Very low surface energy |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Elastomer", "file": "silicone.md", "generated": true, "harvested": "2026-08-04", "id": "silicone", "material": "Silicone", "needs_treatment": "Very Difficult", "source_quote": "Silicone | 20\u201324 | Elastomer | Very Difficult | Dyne test fluids | Very low surface energy |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "20\u201324", "title": "Silicone \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.15", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Silver, solid or plated; monel metal. High nickel-copper alloys\n\n**Anodic index (V vs gold):** 0.15\n\n> Silver, solid or plated; monel metal. High nickel -copper alloys | 0.15 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "silver-solid-or-plated-monel-metal-high-nickel-copper-alloys.md", "generated": true, "harvested": "2026-08-04", "id": "silver-solid-or-plated-monel-metal-high-nickel-copper-alloys", "material": "Silver, solid or plated; monel metal. High nickel-copper alloys", "source_quote": "Silver, solid or plated; monel metal. High nickel -copper alloys | 0.15 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Silver, solid or plated; monel metal. High nickel-copper alloys \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Silver\n\n**Galvanic potential (V vs SCE):** 0.13\n\n> Silver | 0.13 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "silver.md", "galvanic_potential_v_sce": "0.13", "generated": true, "harvested": "2026-08-04", "id": "silver", "material": "Silver", "source_quote": "Silver | 0.13 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Silver \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Stainless Steel\n\n**Surface energy (dyne/cm):** 40\u201350\n\n**Condition:** Passive layer\n\n**Needs treatment?:** Sometimes\n\n> Stainless Steel | 40\u201350 | Passive layer | Sometimes | Cotton applicator | May contain oils |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Passive layer", "file": "stainless-steel.md", "generated": true, "harvested": "2026-08-04", "id": "stainless-steel", "material": "Stainless Steel", "needs_treatment": "Sometimes", "source_quote": "Stainless Steel | 40\u201350 | Passive layer | Sometimes | Cotton applicator | May contain oils |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "40\u201350", "title": "Stainless Steel \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Steel\n\n**Surface energy (dyne/cm):** 42\u201355\n\n**Condition:** Industrial surface\n\n**Needs treatment?:** Sometimes\n\n> Steel | 42\u201355 | Industrial surface | Sometimes | Cotton applicator | Cleanliness is critical |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Industrial surface", "file": "steel.md", "generated": true, "harvested": "2026-08-04", "id": "steel", "material": "Steel", "needs_treatment": "Sometimes", "source_quote": "Steel | 42\u201355 | Industrial surface | Sometimes | Cotton applicator | Cleanliness is critical |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "42\u201355", "title": "Steel \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "0.65", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Tin-plate; tin-lead solder\n\n**Anodic index (V vs gold):** 0.65\n\n> Tin-plate; tin-lead solder | 0.65 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "tin-plate-tin-lead-solder.md", "generated": true, "harvested": "2026-08-04", "id": "tin-plate-tin-lead-solder", "material": "Tin-plate; tin-lead solder", "source_quote": "Tin-plate; tin-lead solder | 0.65 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Tin-plate; tin-lead solder \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Titanium\n\n**Galvanic potential (V vs SCE):** 0.1\n\n> Titanium | 0.1 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "titanium.md", "galvanic_potential_v_sce": "0.1", "generated": true, "harvested": "2026-08-04", "id": "titanium", "material": "Titanium", "source_quote": "Titanium | 0.1 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Titanium \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Type 304 Stainless Steel (Active)\n\n**Galvanic potential (V vs SCE):** 0.53\n\n**Condition:** Active\n\n> Type 304 Stainless Steel (Active) | 0.53 |\n\nSource: <https://l-36.com/corrosion.php>\n", "condition": "Active", "file": "type-304-stainless-steel-active.md", "galvanic_potential_v_sce": "0.53", "generated": true, "harvested": "2026-08-04", "id": "type-304-stainless-steel-active", "material": "Type 304 Stainless Steel (Active)", "source_quote": "Type 304 Stainless Steel (Active) | 0.53 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Type 304 Stainless Steel (Active) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Type 304 Stainless Steel (Passive)\n\n**Galvanic potential (V vs SCE):** 0.08\n\n**Condition:** Passive\n\n> Type 304 Stainless Steel (Passive) | 0.08 |\n\nSource: <https://l-36.com/corrosion.php>\n", "condition": "Passive", "file": "type-304-stainless-steel-passive.md", "galvanic_potential_v_sce": "0.08", "generated": true, "harvested": "2026-08-04", "id": "type-304-stainless-steel-passive", "material": "Type 304 Stainless Steel (Passive)", "source_quote": "Type 304 Stainless Steel (Passive) | 0.08 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Type 304 Stainless Steel (Passive) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Type 316 Stainless Steel (Active)\n\n**Galvanic potential (V vs SCE):** 0.18\n\n**Condition:** Active\n\n> Type 316 Stainless Steel (Active) | 0.18 |\n\nSource: <https://l-36.com/corrosion.php>\n", "condition": "Active", "file": "type-316-stainless-steel-active.md", "galvanic_potential_v_sce": "0.18", "generated": true, "harvested": "2026-08-04", "id": "type-316-stainless-steel-active", "material": "Type 316 Stainless Steel (Active)", "source_quote": "Type 316 Stainless Steel (Active) | 0.18 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Type 316 Stainless Steel (Active) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Type 316 Stainless Steel (Passive)\n\n**Galvanic potential (V vs SCE):** 0.05\n\n**Condition:** Passive\n\n> Type 316 Stainless Steel (Passive) | 0.05 |\n\nSource: <https://l-36.com/corrosion.php>\n", "condition": "Passive", "file": "type-316-stainless-steel-passive.md", "galvanic_potential_v_sce": "0.05", "generated": true, "harvested": "2026-08-04", "id": "type-316-stainless-steel-passive", "material": "Type 316 Stainless Steel (Passive)", "source_quote": "Type 316 Stainless Steel (Passive) | 0.05 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Type 316 Stainless Steel (Passive) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Type 410 Stainless Steel (Active)\n\n**Galvanic potential (V vs SCE):** 0.52\n\n**Condition:** Active\n\n> Type 410 Stainless Steel (Active) | 0.52 |\n\nSource: <https://l-36.com/corrosion.php>\n", "condition": "Active", "file": "type-410-stainless-steel-active.md", "galvanic_potential_v_sce": "0.52", "generated": true, "harvested": "2026-08-04", "id": "type-410-stainless-steel-active", "material": "Type 410 Stainless Steel (Active)", "source_quote": "Type 410 Stainless Steel (Active) | 0.52 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Type 410 Stainless Steel (Active) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Type 410 Stainless Steel (Passive)\n\n**Galvanic potential (V vs SCE):** 0.15\n\n**Condition:** Passive\n\n> Type 410 Stainless Steel (Passive) | 0.15 |\n\nSource: <https://l-36.com/corrosion.php>\n", "condition": "Passive", "file": "type-410-stainless-steel-passive.md", "galvanic_potential_v_sce": "0.15", "generated": true, "harvested": "2026-08-04", "id": "type-410-stainless-steel-passive", "material": "Type 410 Stainless Steel (Passive)", "source_quote": "Type 410 Stainless Steel (Passive) | 0.15 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Type 410 Stainless Steel (Passive) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Type 430 Stainless Steel (Active)\n\n**Galvanic potential (V vs SCE):** 0.57\n\n**Condition:** Active\n\n> Type 430 Stainless Steel (Active) | 0.57 |\n\nSource: <https://l-36.com/corrosion.php>\n", "condition": "Active", "file": "type-430-stainless-steel-active.md", "galvanic_potential_v_sce": "0.57", "generated": true, "harvested": "2026-08-04", "id": "type-430-stainless-steel-active", "material": "Type 430 Stainless Steel (Active)", "source_quote": "Type 430 Stainless Steel (Active) | 0.57 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Type 430 Stainless Steel (Active) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Type 430 Stainless Steel (Passive)\n\n**Galvanic potential (V vs SCE):** 0.22\n\n**Condition:** Passive\n\n> Type 430 Stainless Steel (Passive) | 0.22 |\n\nSource: <https://l-36.com/corrosion.php>\n", "condition": "Passive", "file": "type-430-stainless-steel-passive.md", "galvanic_potential_v_sce": "0.22", "generated": true, "harvested": "2026-08-04", "id": "type-430-stainless-steel-passive", "material": "Type 430 Stainless Steel (Passive)", "source_quote": "Type 430 Stainless Steel (Passive) | 0.22 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Type 430 Stainless Steel (Passive) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** UV Coating\n\n**Surface energy (dyne/cm):** 36\u201342\n\n**Condition:** Cured\n\n**Needs treatment?:** Sometimes\n\n> UV Coating | 36\u201342 | Cured | Sometimes | Dyne pens | May require treatment |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Cured", "file": "uv-coating.md", "generated": true, "harvested": "2026-08-04", "id": "uv-coating", "material": "UV Coating", "needs_treatment": "Sometimes", "source_quote": "UV Coating | 36\u201342 | Cured | Sometimes | Dyne pens | May require treatment |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "36\u201342", "title": "UV Coating \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Varnish (OPV)\n\n**Surface energy (dyne/cm):** 38\u201344\n\n**Condition:** Overprint\n\n**Needs treatment?:** No\n\n> Varnish (OPV) | 38\u201344 | Overprint | No | Dyne pens | Stable surface |\n\nSource: <https://kolorguide.com/surface-energy-chart-by-material/>\n", "condition": "Overprint", "file": "varnish-opv.md", "generated": true, "harvested": "2026-08-04", "id": "varnish-opv", "material": "Varnish (OPV)", "needs_treatment": "No", "source_quote": "Varnish (OPV) | 38\u201344 | Overprint | No | Dyne pens | Stable surface |", "sources": ["https://kolorguide.com/surface-energy-chart-by-material/"], "stale_after": "2028-08-03", "surface_energy_dyne_cm": "38\u201344", "title": "Varnish (OPV) \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"anodic_index_v": "1.25", "asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Zinc, wrought; zinc-base die-casting alloys; zinc plated\n\n**Anodic index (V vs gold):** 1.25\n\n> Zinc, wrought; zinc-base die-casting alloys; zinc plated | 1.25 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "zinc-wrought-zinc-base-die-casting-alloys-zinc-plated.md", "generated": true, "harvested": "2026-08-04", "id": "zinc-wrought-zinc-base-die-casting-alloys-zinc-plated", "material": "Zinc, wrought; zinc-base die-casting alloys; zinc plated", "source_quote": "Zinc, wrought; zinc-base die-casting alloys; zinc plated | 1.25 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Zinc, wrought; zinc-base die-casting alloys; zinc plated \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Zinc\n\n**Galvanic potential (V vs SCE):** 1.03\n\n> Zinc | 1.03\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "zinc.md", "galvanic_potential_v_sce": "1.03", "generated": true, "harvested": "2026-08-04", "id": "zinc", "material": "Zinc", "source_quote": "Zinc | 1.03", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Zinc \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
{"asset": "process-compatibility-coatings-adhesives-treatments", "body": "**Material:** Zirconium\n\n**Galvanic potential (V vs SCE):** 0.04\n\n> Zirconium | 0.04 |\n\nSource: <https://l-36.com/corrosion.php>\n", "file": "zirconium.md", "galvanic_potential_v_sce": "0.04", "generated": true, "harvested": "2026-08-04", "id": "zirconium", "material": "Zirconium", "source_quote": "Zirconium | 0.04 |", "sources": ["https://l-36.com/corrosion.php"], "stale_after": "2028-08-03", "title": "Zirconium \u2014 Galvanic series and surface energy of engineering materials", "type": "lookup", "verified": false}
