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首页> 外文期刊>Scientific reports. >Comparative study on the effects of Cr, V, and Mo carbides for hydrogen-embrittlement resistance of tempered martensitic steel
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Comparative study on the effects of Cr, V, and Mo carbides for hydrogen-embrittlement resistance of tempered martensitic steel

机译:Cr,V和Mo碳化物对钢化马氏体钢氢脆性抗性的对比研究

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摘要

In this study, the ideal alloying element (among Cr, V, and Mo carbides) to enhance the resistance to hydrogen embrittlement (HE) in a tempered martensitic steel was investigated. Four types of steels were designed to contain cementites, Cr-rich M7C3 carbides, V carbides, and Mo carbides, respectively. These steels were tailored to possess a comparable tensile strength (~1.6?GPa). The HE resistances of these steels were evaluated through the slow strain rate test and cyclic corrosion test. The results showed an enhanced HE resistance, characterized by a high notch fracture strength after hydrogen charging, in the samples containing V carbides and Mo carbides. In particular, Mo carbide was regarded as the most ideal alloying element for HE resistance because of the high resistivity parameter, inhibited hydrogen penetration, and suppressed strength loss by internal hydrogen.
机译:在该研究中,研究了理想的合金元素(在Cr,V和Mo碳化物中)以增强对钢化马氏体钢中的氢脆(HE)的抗性。设计了四种类型的钢,分别含有渗碳物,富含Cr的M7C3碳化物,V碳化物和Mo碳化物。这些钢定制成具有可比拉伸强度(〜1.6〜GPA)。通过慢应变速率试验和循环腐蚀试验评估这些钢的抗性。结果表明他的抗性增强,其特征在于氢气充电后的高凹口断裂强度,在含有V碳化物和Mo碳化物的样品中。特别地,由于高电阻率参数,抑制氢气渗透和内部氢气抑制强度损失,Mo碳化物被认为是他性的最理想的合金元素。

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