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Coatings to reduce hydrogen environment embrittlement of 304 austenitic stainless steel

机译:减少304奥氏体不锈钢氢环境脆化的涂层

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摘要

Electroplated Zn, Ni, Cu, Al, PVD-Ti-DLC and electroless NiP coatings as well as carbon, nitrogen and oxygen diffusion layers were investigated for their suitability to reduce hydrogen environment embrittlement (HEE) of 304 austenitic stainless steel. The mechanical stability of the coatings was evaluated by interrupted slow strain rate tensile testing. The Zn, Ni, Ti-DLC and NiP coatings as well as the oxygen diffusion layer cracked or delaminated at very low strains. The Cu coating was too thin and showed poorly coated areas. HEE of the underlying bulk material was not improved by any of these coatings because embrittlement always started at such coating imperfections. Al coatings showed a high ductility but could not reduce HEE of the underlying material due to a columnar structure at which the H-2 gas could get in direct contact to the substrate material. The carbon and nitrogen diffusion layers could not eliminate HEE of the 304 steel entirely but crack propagation was reduced in these layers.
机译:研究了电镀的Zn,Ni,Cu,Al,PVD-Ti-DLC和化学镀NiP涂层以及碳,氮和氧扩散层对减少304奥氏体不锈钢的氢环境脆化(HEE)的适用性。通过间断的慢应变速率拉伸试验评估涂层的机械稳定性。 Zn,Ni,Ti-DLC和NiP涂层以及氧扩散层在非常低的应变下破裂或分层。 Cu涂层太薄,显示出较差的涂层区域。这些涂层中的任何一种都不能改善下面的散装材料的HEE,因为脆性总是始于这种涂层的缺陷。 Al涂层显示出高延展性,但由于H-2气体可直接接触基材而形成的柱状结构,无法降低其下层材料的HEE。碳和氮扩散层不能完全消除304钢的HEE,但裂纹扩展在这些层中减少了。

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