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Hydrogen Solubility and Diffusion in Austenitic Stainless Steels Studied with Thermal Desorption Spectroscopy

机译:热解吸光谱法研究奥氏体不锈钢中的氢溶解度和扩散

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摘要

Hydrogen solubility and diffusion in austenitic stainless steels, namely AISI 310, AISI 301LN and AISI 201, are studied with thermal desorption spectroscopy (TDS) after electrochemical potentiostatic hydrogen pre-charging. Temperature dependencies of hydrogen desorption for all studied steels manifest a complex main peak caused by hydrogen releasing from the steel lattice by diffusion. Depending on the steel and heating rate the peak is situated from 350 to 500 K and its shape reflects a specific of hydrogen diffusion in stainless steels, which are multicomponent alloys. Analysis of the TDS curves is based on the hydrogen diffusion model taking into account trapping of hydrogen atoms in the energetically deep interstitial positions in the steel crystal lattice. Diffusion coefficient of hydrogen and its total content after the same charging procedure are obtained from the TDS curves and compared for the studied steels.
机译:在电化学恒电位预充氢后,通过热脱附光谱法(TDS)研究了奥氏体不锈钢AISI 310,AISI 301LN和AISI 201中的氢溶解度和扩散。氢解吸的温度依赖性对所有研究的钢都表现出一个复杂的主峰,该主峰是由氢通过扩散从钢格中释放引起的。根据钢和加热速率的不同,峰值位于350至500 K之间,并且其形状反映了氢在不锈钢(多组分合金)中的扩散特征。 TDS曲线的分析基于氢扩散模型,其中考虑了钢晶格中能量深的间隙位置中的氢原子捕获。从TDS曲线获得了在相同装料步骤后氢的扩散系数及其总含量,并对研究的钢进行了比较。

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