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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 >The effect of Hf on the microstructure, transformation behaviors and the mechanical properties of Ti-Ni-Cu shape memory alloys
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The effect of Hf on the microstructure, transformation behaviors and the mechanical properties of Ti-Ni-Cu shape memory alloys

机译:HF对Ti-Ni-Cu形状记忆合金微观结构,转化行为及力学性能的影响

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摘要

The effect of substitution of Hf for Ti and Cu for Ni on microstructure, martensitic transformation behavior, mechanical properties and strain recovery characteristic of quaternary Ti-Ni-Cu-Hf alloys were investigated systematically. The results reveal that the B19 - B19' martensite transformation can be controlled by tailoring the Hf contents in Ti-Ni-Cu alloys. Although the B19 and B19' martensite coexisted in Ti-Ni-Cu alloys with the minor Hf addition, only one-stage B2 - B19' transformation was observed in heating and cooling process. The transformation temperatures and transformation hysteresis can be adjusted by optimizing the chemical composition. In addition, the superior mechanical properties and shape memory effect can be achieved by tailoring the Hf can Cu contents. The maximum shape memory effect strain of 3.06% could be obtained in Ti47Ni44Cu6Hf3 alloy. And Ti45Ni44Cu6Hf5 alloy showed the largest tensile strength of 770 MPa. The present study provided the theoretical foundation for the potential application of the Ti-Ni-Cu-Hf alloys. (C) 2018 Elsevier B.V. All rights reserved.
机译:系统地研究了对Ti和Cu对Ni进行微观结构,马氏体转化性能,季季Ti-Cu-HF合金合金的微观结构的影响的影响。结果表明B19 - & B19的马氏体转化可以通过剪裁Ti-Ni-Cu合金中的HF内容物来控制。虽然B19和B19'马氏体在Ti-Ni-Cu合金中共存,但仅具有次要的HF加法,只有一级B2 - &在加热和冷却过程中观察到B19'转化。通过优化化学成分,可以调节变换温度和转化滞后。另外,通过定制HF可以含量Cu含量,可以实现优异的机械性能和形状记忆效果。在Ti47Ni44Cu6HF3合金中可以获得3.06%的最大形状记忆效应应变。而Ti45Ni44Cu6HF5合金显示出770MPa的最大拉伸强度。本研究为Ti-Ni-Cu-HF合金潜在施加的潜在应用提供了理论基础。 (c)2018年elestvier b.v.保留所有权利。

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