Knowledge Answer

Evaluate the risk of Hydrogen Embrittlement in high-carbon steel wave springs after electroplating.

2026-06-16 FAQ

Asye ki gen anpil kabòn tankou SAE 1070 a 1090 yo trè sansib a Hydrogen Embillittlement (HE) lè yo sibi pwosesis marinated asid oswa galvanoplastie (egzanp, zenk oswa nikèl plating). Idwojèn atomik difize nan fwontyè grenn yo, diminye fòs limenm ak mennen nan echèk katastwofik frajil anba chaj estatik. Pou bese sa, 'B...

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High-carbon steels like SAE 1070 to 1090 are highly susceptible to Hydrogen Embrittlement (HE) when subjected to acid pickling or electroplating processes (e.g., zinc or nickel plating). Atomic hydrogen diffuses into the grain boundaries, reducing the cohesive strength and leading to catastrophic brittle failure under static load. To mitigate this, the 'Baking' process is mandatory. Parts must be baked at $190^{\circ}C \pm 10^{\circ}C$ for a minimum of 4 to 24 hours (depending on hardness and thickness) within 1 to 4 hours after plating. For critical aerospace or automotive fasteners, mechanical galvanizing or the use of stainless steels (which are less prone to HE) is often preferred to eliminate this failure mode entirely.

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