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Effect of indium in Cu-Zn-Al shape memory alloys

机译:铟在Cu-Zn-Al形状记忆合金中的影响

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Shape memory alloys (SMAs) are among the "smart" materials that can virtually remember their original shape; after being deformed, they may return to their initial shape through heating. The shape memory effect derives from a martensitic transformation induced by stress and/or temperature change. Copper-based SMAs are a more economical alternative compared to Ni-Ti alloys. They have low cost and various interesting mechanical and thermal properties and high practical value for the applications. In this present work, Cu-Zn-Al shape memory alloys with 0.1-0.5 wt.% In were studied. Investment casting (lost-wax casting) was performed at 1100°C melting temperature and 650°C mold temperature. Shape memory effect of the alloys was investigated with bending test and then heating for shape recovery. Scanning and transmission electron microscopes were used for microstructural characterization along with Energy X-ray diffraction and selected area diffraction spectroscopy. XRD measurement was also performed to understand effect of indium on microstructure. The results clearly presented that the addition of In in Cu-Zn-Al SMAs caused a precipitation of the second phase and significantly alternated the shape memory effect. The microstructure and orientation relationship of the typical and twinned martensite were discussed.
机译:形状记忆合金(SMA)是“智能”材料之一,可以几乎记住其原始形状;变形后,它们可以通过加热返回其初始形状。形状记忆效应来自由应力和/或温度变化引起的马氏体变换。与Ni-Ti合金相比,基于铜的SMA是一种更经济的替代品。它们具有低成本和各种有趣的机械和热性能,以及应用的高实用价值。在本工作中,研究了Cu-Zn-Al形状记忆合金,研究了0.1-0.5重量%。投资铸造(丢失蜡铸造)在1100°C熔化温度和650°C模压温度下进行。用弯曲试验研究了合金的形状记忆效应,然后加热以进行形状回收。扫描和透射电子显微镜用于微观结构表征以及能量X射线衍射和选择的区域衍射光谱。还进行了XRD测量以了解铟对微观结构的影响。结果清楚地介绍了Cu-Zn-Al SMA中的加入导致第二阶段的沉淀并显着交替形状记忆效应。讨论了典型和孪生马氏体的微观结构和取向关系。

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