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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Mo on the Microstructure and Superelasticity of Ti-Ni-Cu Shape Memory Alloys
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Effect of Mo on the Microstructure and Superelasticity of Ti-Ni-Cu Shape Memory Alloys

机译:Mo对Ti-Ni-Cu形状记忆合金微观结构和超弹性的影响

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摘要

In this paper, the microstructure and superelasticity of Ti(50-x)Ni44Cu6Mox (x = 0-2.5) alloys were studied. The main phase in Ti(50-x)Ni44Cu6Mox alloys at room temperature is B2 austenite. The martensite transformation finish temperatures of the 0Mo and 0.2Mo samples are approximately - 34.2 and - 45.4 degrees C, respectively, while the transformation temperature cannot be detected above - 50 degrees C for the samples with Mo contents greater than 0.2%. The content of Mo has little effect on the compressive strength of the Ti(50-x)Ni44Cu6Mox alloy, but the fracture strain decreases with increasing Mo content. The 0.6Mo sample shows elastic deformation characteristics and has the lowest fracture strain due to the precipitation of Ni-rich compounds. Cyclic compression tests with an increased and constant prestrain were adopted to study the superelasticity properties of the alloys. The residual stress can increase approximately 5-6% after 5 cycles when the prestrain increases from 2 to 10%, while the residual strain drops approximately 2-3% after 20 cycles when the prestrain is constant at 6%. In both experiments, the results show that the recoverable strain can be generally improved by substituting Mo for Ti in Ti(50-x)Ni44Cu6Mox alloys.
机译:本文研究了Ti(50-x)Ni44Cu6Mox(x=0-2.5)合金的显微组织和超弹性。Ti(50-x)Ni44Cu6Mox合金在室温下的主要相是B2奥氏体。0Mo和0.2Mo样品的马氏体相变结束温度分别约为-34.2和-45.4℃,而Mo含量大于0.2%的样品的相变温度在-50℃以上无法检测到。Mo含量对Ti(50-x)Ni44Cu6Mox合金的抗压强度影响不大,但断裂应变随Mo含量的增加而减小。由于富镍化合物的析出,0.6Mo样品显示出弹性变形特征,并且具有最低的断裂应变。采用增加和恒定预应变的循环压缩试验来研究合金的超弹性性能。当预应变从2%增加到10%时,5个循环后的残余应力会增加约5-6%,而当预应变恒定在6%时,20个循环后的残余应变会下降约2-3%。在这两个实验中,结果表明,在Ti(50-x)Ni44Cu6Mox合金中用Mo代替Ti通常可以提高可恢复应变。

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