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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 Zr on the martensitic transformation and the shape memory effect in Ti-Zr-Nb-Ta high-temperature shape memory alloys
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Effect of Zr on the martensitic transformation and the shape memory effect in Ti-Zr-Nb-Ta high-temperature shape memory alloys

机译:Zr对Ti-ZR-NB-TA高温形状记忆合金中马氏体变换及形状记忆效应的影响

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摘要

AbstractThe microstructures, phase transformations, mechanical properties and shape memory effect of Ti-xZr-10Nb-4Ta (x?=?16, 18, 19 and 19.5?at. %) alloys were investigated. The X-ray diffraction and transmission electron microscopy results showed that the Ti-16Zr-10Nb-4Ta alloy is composed of single α?-martensite, while the others consisted of predominant orthorhombic α?-martensite phase and a small amount of the β phase. The reverse martensitic transformation starting temperature (As) was 477?K for the Ti-16Zr-10Nb-4Ta alloy and decreased non-linearly with increasing Zr content. The addition of Zr resulted in the appearance of the β phase, thus elevating the stress for martensite re-orientation. However, it weakened the plasticity and the shape memory effect. The highest shape memory strain and the largest tensile strain in Ti-16Zr-10Nb-4Ta alloy were found to be 4% and 16%, respectively.Highlights?Addition of Zr decreases reverse martensitic temperatures in a nonlinear trend.?β phase increases strength but decreases ductility and shape memory strain.?Ti-16Zr-10Nb-4Ta alloy shows shape memory strain of 4% and tensile strain of 16%.]]>
机译:<![CDATA [ 抽象 Ti-xzr-10nb-4ta的微结构,相位变换,机械性能和形状记忆效应(x? =?16,18,19和19.5?在。%)合金被研究。 X射线衍射和透射电子显微镜结果表明,Ti-16ZR-10NB-4TA合金由单αα-粒子组成,而其他α-粒子组成,而其他α-甲基αα-甲基沸石相和少量β相组成。逆转马氏体转化起始温度()为Ti-16ZR-10NB-4TA合金为477 k k,并且随着Zr含量的增加而导致非线性地降低。添加Zr导致β相的外观,从而提高马氏体重新定位的应力。然而,它削弱了可塑性和形状记忆效应。发现最高的形状记忆应变和Ti-16ZR-10NB-4TA合金中的最大拉伸应变分别为4%和16%。 亮点 < CE:标签>? Zr的添加减少了非线性趋势中的反向马氏体温度。 β相增加强度但降低延展性和形状降低内存应变。 TI-16ZR-10NB-4TA合金显示形状4%的记忆应变和16%的拉伸应变。 ]]>

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