首页> 外文期刊>ISIJ international >Hydrogen Embrittlement in Al-added Twinning-induced Plasticity Steels Evaluated by Tensile Tests during Hydrogen Charging
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Hydrogen Embrittlement in Al-added Twinning-induced Plasticity Steels Evaluated by Tensile Tests during Hydrogen Charging

机译:充氢过程中拉伸试验对铝合孪生诱导塑性钢中氢脆的影响

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摘要

Hydrogen embrittlement of a Fe–18Mn–0.6C–1.5Al steel was observed in tensile deformation during cathodic hydrogen charging. The fracture mode was quasi-cleavage fracture. The relationship between diffusible hydrogen content and fracture stress was arranged by the power law like that for ferritic and Al-free TWIP steels. The Al addition did not affect the magnitude of the degradation of hydrogen embrittlement property at the same current density in TWIP steels. However, the Al-added steel showed a suppression of hydrogen entry and a larger total elongation in comparison to those of the Al-free TWIP steel in the same environment, although the Al addition decreased fracture stress. The larger elongation is one of the reasons for why the Al addition improves the hydrogen embrittlement property of cup specimens.
机译:Fe–18Mn–0.6C–1.5Al钢的氢脆在阴极充氢过程中在拉伸变形中观察到。断裂模式为准劈裂断裂。像铁素体和无铝TWIP钢一样,通过幂律来安排可扩散氢含量与断裂应力之间的关系。在TWIP钢中,在相同的电流密度下,添加Al不会影响氢脆性能的下降幅度。然而,尽管在相同的环境下添加铝的钢减少了断裂应力,但与在相同环境下的无铝TWIP钢相比,添加铝的钢显示出抑制氢进入和更大的总伸长率。较大的伸长率是为什么添加铝可以改善杯形试样的氢脆性的原因之一。

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