| name | electroplating |
| description | Electroplating — Faraday's law, plating rate, current efficiency, hull cell, coating thickness, hardness, adhesion, chromium/nickel/gold/zinc plating, ASTM B633/B456, hydrogen embrittlement risk, post-bake. |
| metadata | {"priority":7,"promptSignals":{"phrases":["electroplating","plating","chromium plating","nickel plating","zinc plating","Faraday plating"],"minScore":3}} |
Electroplating — Complete Skill
Faraday's Law (Plating Rate)
Mass deposited:
m = (M × I × t) / (n × F) [g; M = atomic weight [g/mol]; I = current [A]; t = time [s]; n = valence; F = 96,485 C/mol]
Plating thickness:
δ = m / (ρ × A) = (M × I × t) / (n × F × ρ × A) [m; ρ = density [g/cm³]; A = plating area [cm²]]
Plating rate:
R_plate = δ / t = (M × i) / (n × F × ρ) [μm/hr; i = current density [A/cm²]]
Or: R_plate = (Equivalent weight / F) × i × 3600 × 10,000 [μm/hr; EW = M/n]
Current efficiency η_c:
η_c = (mass deposited) / (theoretical mass from Faraday)
Actual: η_c = 0.60–0.99 depending on plating bath and conditions
Remaining current: H₂ evolution (HER) or O₂ evolution (competing side reactions)
m_actual = η_c × (M × I × t) / (n × F)
Plating Rate Examples
Hard chromium (from CrO₃ bath):
EW = Cr/6 = 52/6 = 8.67 g/eq; ρ = 7.19 g/cm³; η_c = 0.10–0.20 (low efficiency)
R_Cr = (8.67 × i × 3600) / (96,485 × 7.19) × 10,000 ≈ 0.45 μm/(A/dm²)/hr [at η=100%]
Actual (η=0.15): R_Cr ≈ 0.07 μm/(A/dm²)/hr
Typical: i = 25–60 A/dm²; R ≈ 10–30 μm/hr → 50 μm takes 1.5–5 hr
Nickel (Watts bath):
EW = 58.7/2 = 29.35; ρ = 8.9; η_c = 0.92–0.97
R_Ni ≈ 1.08 μm/(A/dm²)/hr (at η=100%); typical i = 2–5 A/dm² → R ≈ 2.5–5 μm/hr
Zinc (acid zinc):
EW = 65.4/2 = 32.7; ρ = 7.13; η_c = 0.93–0.98
R_Zn ≈ 1.22 μm/(A/dm²)/hr; typical i = 1–3 A/dm² → R ≈ 1.5–3.5 μm/hr
Gold (from gold cyanide):
EW = 197/1 = 197; ρ = 19.3; η_c = 0.90–0.98
R_Au ≈ 0.28 μm/(A/dm²)/hr; typically i = 0.5–2 A/dm² (expensive); PCB: 1–3 μm typical thickness
Common Platings
Hard Chromium (ASTM B177, MIL-STD-1611)
Bath: CrO₃ 225–270 g/L + H₂SO₄ 2.25–2.70 g/L; T = 55–65°C
Current density: 25–60 A/dm²; voltage 6–12 V
Hardness: 850–1000 HV (harder than most base metals; near diamond)
Applications: hydraulic rods, landing gear, gun barrels, dies, rolls (wear + corrosion)
Thickness: 25–500 μm (typically 50–250 μm for wear applications)
Issues: hexavalent Cr (Cr⁶⁺) — highly toxic, carcinogenic → EU banned (some exemptions)
Replacement: Trivalent Cr (TCP process), HVOF WC-CoCr, EN (electroless nickel), physical spray coatings
Electroless Nickel (EN, ASTM B733)
Not electrolytic: autocatalytic; Ni-P or Ni-B alloy; no external current
Bath: nickel salt + reducing agent (hypophosphite); deposits uniformly on any geometry
Hardness: as-deposited 450–550 HV; after 400°C heat treat: 950–1100 HV (Ni₃P precipitation)
Phosphorus content: Low P (< 4%): high hardness; High P (> 9%): better corrosion, less hard
Thickness uniformity: ±5% (much better than electrolytic)
Applications: uniform complex geometries, corrosion resistance, electrical contacts
Zinc (ASTM B633)
Primary use: corrosion protection (sacrificial anode for steel)
Neutral salt spray (NSS) test: uncoated zinc 96+ hrs; ASTM B117
Thickness by service class (ASTM B633):
| Service | Minimum thickness | NSS hrs |
|---|
| SC1 (indoor) | 5 μm | 48 |
| SC2 (mild outdoor) | 8 μm | 96 |
| SC3 (moderate) | 12 μm | 120 |
| SC4 (severe) | 25 μm | 240 |
Chromate conversion (passivation): applied over zinc → improves corrosion by 2–5×
Yellow chromate: Cr⁶⁺ (banned in EU for automotive since RoHS); Clear/trivalent chromate: compliant replacement
Decorative Nickel-Chrome (ASTM B456)
Stack: Cu (5–10 μm) + Bright Ni (10–20 μm) + Decorative Cr (0.25–0.5 μm thin)
Corrosion resistance from multilayer stack; bright Ni provides cathodic protection for Cr
CASS test (ASTM B368): copper accelerated acetic acid-salt spray; harder than NSS
Gold (ASTM B488)
Applications: PCBs, connectors (no corrosion, low contact resistance)
Hard gold (Ni-alloyed): Type III (99.7% Au) or Type I/II with cobalt/nickel alloy; connector contacts
Pure gold: Type I (99.9%); soft; for wire bonding
Thickness classes: Grade A = 1.25 μm; Grade B = 0.5 μm; Grade C = 1.5–2.5 μm
Hull Cell
Hull cell: small (267 mL) trapezoidal tank; deposits at varying current densities in one test
Visualizes plating quality across i range; identify low-current burning, high-current burning, pitting
Current density range on cathode: from 0.1 to 1.0 × max CD in single run
Use: bath troubleshooting, additive optimization without full production bath test
Hydrogen Embrittlement
H₂ embrittlement (HE): atomic hydrogen absorbed during acid cleaning or electroplating → diffuses into steel lattice → reduces ductility and fracture toughness → delayed fracture
Risk: high-strength steel (σ_u > 1000 MPa; > 34 HRC); hydrogen can reduce elongation from 20% to <5%
ASTM F519 test: tests plated high-strength fasteners for HE; notched tensile specimen loaded to 75% of UTS; hold 200 hr; check for fracture
Post-bake relief (ASTM F519, SAE AS1820):
Bake at 190°C for 8–24 hr within 4 hr of plating → drives H out of lattice → restores ductility
For very high strength (> 50 HRC): bake 23 hr at 190°C
Cadmium plating: historically used for aerospace (AMS 2400); similar HE risk; bake required
Replacement for Cd: Zn-Ni alloy; ionic liquid plating; AMS 2417
Standards
| Standard | Scope |
|---|
| ASTM B633 | Zinc electroplating |
| ASTM B456 | Decorative Ni-Cr plating |
| ASTM B177 | Hard chromium plating |
| ASTM B733 | Electroless nickel |
| ASTM B488 | Gold electroplating |
| ASTM F519 | Hydrogen embrittlement testing |
| AMS 2406 | Hard chromium (aerospace) |
| AMS 2404 | Electroless nickel (aerospace) |
Output
Provide: plating type (hard Cr/EN/Zn/Au/Ni), bath chemistry, current density i [A/dm²], current efficiency η_c [%], plating rate R [μm/hr], required thickness δ [μm], plating time t [hr], current I required [A] for plating area A [dm²], adhesion test result (tape test/bend test per ASTM B571), hardness [HV], ASTM B633 service class (Zn), hydrogen embrittlement risk (material HRC > 34?) and post-bake spec (190°C, hours), and applicable standard (ASTM B633/B456/B177/B733, ASTM F519 for HE).