Steelpitfall
Galvanic action and dissimilar metals
One-line orientation
When two dissimilar metals touch with moisture present, the more active (anodic) metal corrodes to protect the more noble (cathodic) one — the exam tests which metal sacrifices itself and the classic bad pairings (copper + galvanized steel).
Key points
- The galvanic series ranks metals from active (anodic) to noble (cathodic):
- Anodic end (reactive, corrodes first): aluminum, zinc — and galvanized (zinc-coated) metal. Mnemonic: anodes run “A to Z” (aluminum → zinc).
- Cathodic end (noble, resists corrosion): copper, bronze, and gold/platinum.
- Stainless steel’s position in the galvanic series changes mainly with its active or passive surface condition and the surrounding electrolyte.
- Who corrodes: the anodic metal sacrifices itself; the cathodic metal is protected.
- Problem pairings (anodic metal corrodes faster when joined to the noble metal, esp. when wet):
- Copper + galvanized steel — copper is cathodic; the galvanized zinc corrodes (classic).
- Brass + galvanized steel — same mechanism as copper.
- Stainless steel + galvanized steel — stainless is cathodic; galvanized side corrodes.
- Aluminum with more-noble metals, or in ACQ-treated wood chemistry — aluminum corrodes.
- Copper + zinc, mortar (alkaline) + zinc — accelerate zinc corrosion.
- Cathodic / sacrificial-anode protection: intentionally attach a more anodic metal (zinc, magnesium, aluminum) so it corrodes instead of the protected structure — used for buried/ submerged steel. Galvanizing applies the same principle as a coating.
- Prevention: isolate dissimilar metals (non-conductive gaskets, coatings, barriers), keep the fastener the noble/cathodic member, and pick metals close on the series.
In a wet metal pair, the more active metal corrodes to protect the nobler one
SCHEMATICPosition on the galvanic series — not which metal sounds tougher — decides which metal corrodes.
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- The anode — the more active metal; it corrodes (blue, pitted).
- Index line — locates each part on the series.
Same rule, twice — a mistake above (copper over galvanized steel), on purpose below (a sacrificial anode): the more active metal corrodes to protect the nobler one.
Ordinal series order (schematic), not measured electrode potentials; steel and stainless positions follow the standard galvanic series.
Confusions / comparison
| Pairing | Anode (corrodes) | Cathode (protected) | Note |
|---|---|---|---|
| Copper + galvanized steel | Galvanized zinc/steel | Copper | Classic bad pairing; worse when wet |
| Brass + galvanized steel | Galvanized zinc/steel | Brass | Same mechanism as copper |
| Stainless + galvanized steel | Galvanized zinc/steel | Stainless | Stainless acts noble here |
| Aluminum + noble metal / ACQ wood | Aluminum | The noble metal | Aluminum is reactive |
| Sacrificial anode (by design) | Zinc / Mg / Al (added) | The structure | Cathodic protection / galvanizing |
Related
→ Steel types and production (this module): galvanized vs stainless vs weathering steel · Steel connections (this module): dissimilar-metal fasteners in connections · Plumbing piping materials (Systems module): dissimilar-metal/dielectric unions in piping.
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