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首页> 外文期刊>Materials Science and Engineering >Microstructure, mechanical and shape memory properties of Ti-55Pd-5x (x=Zr, Hf, V, Nb) alloys
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Microstructure, mechanical and shape memory properties of Ti-55Pd-5x (x=Zr, Hf, V, Nb) alloys

机译:Ti-55Pd-5x(x = Zr,Hf,V,Nb)合金的显微组织,力学和形状记忆性能

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摘要

Microstructure, mechanical and shape memory properties of homogenized Ti-55Pd-5x (x=Zr/Hf/V/Nb) (at%) ternary alloys were investigated to identify potential alloy systems for functional applications in the temperature range of 400-600 ℃. The four characteristic temperatures of these alloys were observed to be in the desired temperature range. The yield strengths of martensite and austenite phases were measured to be better than reported for binary Ti-Pd alloys. Two kinds of microstructure developed in these alloys: (ⅰ) Ti-55Pd-5Zr and Ti-55Pd-5Hf alloys had B19 martensite as their matrix phase with a significant amount of (Ti, x)_2Pd_3 and Pd_3(Ti, x) (x=Zr or Hf) precipitates; (ⅱ) Ti-55Pd-5V and Ti-55Pd-5Nb alloys had (Ti, x)_2Pd_3 (x=V or Nb) phase as their major phase along with a small amount of martensite phase. As a result, Ti-55Pd-5Zr and Ti-55Pd-5Hf alloys exhibited significant shape memory; the maximum observed shape memory strain was 1.69% for Ti-55Pd-5Hf alloy. The non-transformable nature of (Ti, x)_2Pd_3 phase was responsible for the poor shape memory behavior of the other two alloys.
机译:研究了均质Ti-55Pd-5x(x = Zr / Hf / V / Nb)(at%)三元合金的微观结构,力学和形状记忆性能,以确定在400-600℃温度范围内功能性应用的潜在合金体系。观察到这些合金的四个特征温度在期望的温度范围内。测得马氏体和奥氏体相的屈服强度比二元Ti-Pd合金要好。这些合金中产生了两种微观组织:(ⅰ)Ti-55Pd-5Zr和Ti-55Pd-5Hf合金以B19马氏体为基体相,其中大量(Ti,x)_2Pd_3和Pd_3(Ti,x)( x = Zr或Hf)沉淀; (ⅱ)Ti-55Pd-5V和Ti-55Pd-5Nb合金的主要相为(Ti,x)_2Pd_3(x = V或Nb)相以及少量的马氏体相。结果,Ti-55Pd-5Zr和Ti-55Pd-5Hf合金表现出显着的形状记忆性。 Ti-55Pd-5Hf合金的最大观察到的形状记忆应变为1.69%。 (Ti,x)_2Pd_3相的不可变形性质是造成其他两种合金的不良形状记忆行为的原因。

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