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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Ti-based amorphous alloys and composites as potential candidate materials for energy applications
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Ti-based amorphous alloys and composites as potential candidate materials for energy applications

机译:钛基非晶合金和复合材料是能源应用的潜在候选材料

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The hydrogenation characteristics and embrittlement behavior of Ti_(50)Zr_(50-x)Cu_x alloys (x=25,33,40) are reported. The hydrogenation kinetics decreased with increasing Zr-eontent. Though the Ti_(50)Zr_(25)Cu_(25) alloy showed the slowest kinetics, it absorbed large amount of hydrogen (~2.4 wt.%) and exhibited the best resistance against hydrogen embrittlement. The excellent characteristics of Ti-Zr-Cu alloys in hydrogen environment indicated that they are promising materials in future for energy applications.
机译:报道了Ti_(50)Zr_(50-x)Cu_x合金(x = 25,33,40)的氢化特性和脆化行为。氢化动力学随Zr含量的增加而降低。尽管Ti_(50)Zr_(25)Cu_(25)合金的动力学最慢,但它吸收了大量的氢(〜2.4 wt。%),并具有最佳的抗氢脆性。 Ti-Zr-Cu合金在氢环境中的优异特性表明,它们是未来在能源应用中很有前途的材料。

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