Influence of the Phosphorus Content on the Hydrogen Embrittlement Susceptibility of Some DP Steels Studied Using the Linearly Increasing Stress Test

F. Dong, J. Venezuela, Huixing Li, Z. Shi, Qingjun Zhou, Lian-sheng Chen, J. Chen, L. Du, A. Atrens
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Abstract

The hydrogen embrittlement (HE) of some DP steels was investigated, focusing on the influence of the phosphorus (P) content. Hydrogen-induced micro-cracks and brittle fracture occurred at edges follows the HESIV and HEDE mechanisms. The increased number of ferrite related interface micro-cracks was attributed by the enhanced interface weakening effect of excess P content. Hydrogen influenced crack propagation and fracture in the inner ductile part of the specimen followed the HELP mechanism and can be promoted by a higher P content in solution in matrix. An increased P content caused more significant HE susceptibility for DP steel with less and separated martensite and less Cr, Mo microalloying.
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用线性递增应力试验研究了磷含量对某些DP钢氢脆敏感性的影响
研究了几种DP钢的氢脆,重点研究了磷含量对其氢脆的影响。氢致微裂纹和边缘脆性断裂遵循HESIV和HEDE机制。铁素体相关界面微裂纹数量增加的原因是过量P含量增强了界面弱化作用。氢影响裂纹扩展,试样内韧性部分断裂遵循HELP机制,且基体中较高的溶液P含量可促进裂纹扩展。P含量的增加使DP钢的HE敏感性更显著,马氏体较少且分离,Cr、Mo微合金化较少。
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