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Hydrogen Embrittlement of Low Carbon HSLA Steel during Slow Strain Rate Test

机译:低碳酸盐慢性应变速率试验中的氢气脆化

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The hydrogen embrittlement of a low carbon HSLA steel has been investigated by means of slow strain rate test (SSRT) on circumferentially notched specimens. Hydrogen was introduced into specimens by electrochemical charging and the diffusible hydrogen content was measured by thermal desorption spectrometry (TDS) analysis. The activation energy of hydrogen desorption in the present steel was calculated to be 12.75 kJ/mol after TDS analysis. The peak stress and displacement during notch tensile tests had been found to decrease simultaneously with diffusible hydrogen content, which could be expressed by two power law relationships, respectively. Fracture surface was a cleavage type indicating that the steel had high susceptibility of hydrogen embrittlement.
机译:通过循环缺口标本的慢应菌株试验(SSRT)研究了低碳HSLA钢的氢脆化。通过电化学充电将氢引入样品中,通过热解吸光谱法(TDS)分析测量扩散氢含量。在TDS分析后,计算本钢中氢解吸的激活能量为12.75kJ / mol。已经发现Notch拉伸试验期间的峰值应力和位移与可扩散的氢含量同时降低,其可以分别由两个电力法律关系表达。断裂表面是一种切割型,表明钢的氢脆易感性高。

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