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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of major alloying elements on microstructure and mechanical properties of a highly beta stabilized titanium alloy
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Effect of major alloying elements on microstructure and mechanical properties of a highly beta stabilized titanium alloy

机译:主要合金元素对高度β稳定的钛合金的组织和力学性能的影响

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摘要

Four alloys with different alloying elements V and Cr content were prepared on the base of a highly beta stabilized Ti alloy (Ti40, Ti-25V-15Cr-0.2Si). Their properties and microstructures after heat treatment, thermal and creep exposure were tested. The results indicated that the effect of elements V and Cr on mechanical properties at room-temperature, creep behavior and microstructures is similar. With the increase of V and Cr content, their mechanical properties change slightly, while their creep resistance decreases and grains grow, which are mainly due to their characteristics of beta-stability elements and smaller atomic radius compared with that of titanium. On the contrary, the effect of elements V and Cr on thermal stability is quite different. With the increasing element V content or decreasing element Cr content the thermal stability becomes better, which is due to different solution characteristic of element V and Cr in titanium alloy.
机译:在高度β稳定的Ti合金(Ti40,Ti-25V-15Cr-0.2Si)的基础上,制备了四种具有不同合金元素V和Cr含量的合金。测试了它们在热处理,热和蠕变暴露后的性能和微观结构。结果表明,元素V和Cr对室温下力学性能,蠕变行为和微观结构的影响相似。随着V和Cr含量的增加,它们的机械性能略有变化,而它们的抗蠕变性下降并且晶粒长大,这主要是由于它们具有β稳定元素的特性以及与钛相比具有较小的原子半径。相反,元素V和Cr对热稳定性的影响是完全不同的。随着元素V含量的增加或元素Cr含量的减少,热稳定性变得更好,这是由于元素V和Cr在钛合金中的溶解特性不同所致。

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