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Role of Microstructure in Susceptibility to Hydrogen Embrittlement of X70 Microalloyed Steel

机译:微观结构在X70微合金钢氢脆易感中的作用

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摘要

The effect of phases and steel processing on hydrogen uptake (diffusible and residual), surface and internal damage were evaluated using optical and scanning electron microscopy. The results have shown the fastest formation of blisters in ferrite-pearlite microstructure of strip, followed by equaixed ferrite-pearlite microstructure in normalised condition, then by ferrite-bainite microstructure. No blistering was observed in heat affected zone samples for up to 24 hrs charging. Analysis of hydrogen-induced cracking using electron back scattering diffraction has revealed that crack propagation has predominantly intragranular character without a clear preference on {001}, {110}, {112} and {123} planes and is independent of the steel microstructure and prior processing.
机译:使用光学和扫描电子显微镜评估阶段和钢加工对氢气吸收(扩散和残留),表面和内部损伤的影响。结果表明,条带的铁氧体 - 珠光体微观结构中的衬里形成最快,其次是归一化条件下等化的铁素体 - 珠光体微观结构,然后通过铁氧体 - 贝氏体微观结构。在热影响区样品中没有观察到24小时的充电。使用电子背散射衍射的氢诱导裂缝的分析表明,裂纹繁殖主要是术中的术语,而不清楚偏好于{001},{110},{112}和{123}平面,并且与钢微观结构和先前无关加工。

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