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首页> 外文期刊>Journal of Materials Science >Hydrogen transport and environmental embrittlement effects in iron aluminides
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Hydrogen transport and environmental embrittlement effects in iron aluminides

机译:铝铁化物中的氢迁移和环境脆化效应

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摘要

Environmental embrittlement types of six iron aluminides have been systematically evaluated using electrochemical hydrogen permeation measurement, hydrogen microprint technique and tensile test in this study. The results of hydrogen permeation and microprint technique show that three α - disordered solid solution structure of binary and ternary iron aluminides (Fe-10Al, Fe-18Al, and Fe-18Al-5Cr) have higher effective diffusivity and permeation rate than B2 ordered structure of binary and ternary iron aluminides (Fe-28Al, Fe-28Al-5Cr, and Fe-40Al). The tensile test of six iron aluminides in air, vacuum treatment and hydrogen precharged were analyzed and concluded. Three α - disordered solid solution structure of iron aluminides suffer in hydrogen environment which are quite different embrittlement mechanisms from those B2 ordered structure of iron aluminides with serious tensile loss in air by moisture induced embrittlement.
机译:在这项研究中,已经使用电化学氢渗透测量,氢微打印技术和拉伸试验系统地评估了六种铝化铁的环境脆化类型。氢渗透和显微技术的结果表明,二元和三元铁铝化物的三种α无序固溶结构(Fe-10Al,Fe-18Al和Fe-18Al-5Cr)比B2有序结构具有更高的有效扩散率和渗透率。二元和三元铝化物(Fe-28Al,Fe-28Al-5Cr和Fe-40Al)。分析并得出了六种铝化铁在空气,真空处理和预充氢中的拉伸试验。铁铝化物的三种α-无序固溶体结构在氢环境中的脆化机理与铝铁化物的B2有序结构截然不同,并因水分脆化而在空气中引起严重的拉伸损失。

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