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Hydrogen Embrittlement Resistances of Alloying Elements Adding Ultra High Strength Low Alloy TRIP-aided Steels

机译:合金元素的氢脆电阻加上超高强度低合金跳闸钢材

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To develop ultra high strength steels for automotive impact safety parts, effects of alloying elements on hydrogen embrittlement resistance of ultra high strength low alloy TRIP-aided steels with martensitic matrix (TM steel) were investigated. Hydrogen embrittlement susceptibilities of TRIP-aided steels were decreased by addition of alloying elements although tensile strength and diffusible hydrogen concentration of alloying elements adding TM steels were increased compared with base steel. Particularly, when 1.0 mass% chromium was added to the TM steels, TM steel indicated low hydrogen embrittlement susceptibility. It is considered that uniform and refined lath matrix and retained austenite/matrix interface absorbed a large amount of diffusible hydrogen in order to suppress hydrogen trapping to the grain boundaries and the lath boundaries and strain induced transformation of stable retained austenite suppressed initiation and growth of voids and initiation and propagation of cracks effectively.
机译:为了开发用于汽车冲击安全部件的超高强度钢,研究了采用马氏体基质(TM钢)的超高强度低合金跳闸钢的合金元素对氢脆抗性的影响。通过加入合金元件减少了跳闸辅助钢的氢脆易感受能力,尽管与基础钢相比,加入TM钢的合金元素的抗拉强度和扩散氢浓度增加。特别是,当向TM钢加入1.0质量%铬时,TM钢表明氢脆易感性低。认为均匀和精制的板岩基质和保留的奥氏体/基质界面吸收了大量的扩散氢气,以抑制氢覆裂纹,并且Lath边界和菌株诱导的稳定保留奥氏体的转化抑制了空隙的启动和生长并有效地启动和传播裂缝。

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