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Evaluation of Cu-26Zn-5Al shape memory alloy fabricated by accumulative roll bonding process

机译:累积辊粘合工艺制造的Cu-26Zn-5Al形状记忆合金的评价

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摘要

Cu/Zn/Al multilayered composites consisting of pure copper, zinc, and aluminum were produced by accumulative roll bonding. Afterwards, heat treatment processes at various temperatures (750, 825, and 900 degrees C) were followed on the prepared composites to fabricate Cu-Zn-Al shape memory alloys. The prepared samples were characterized by scanning electron microscopy equipped with energy dispersive X-ray spectroscopy and X-ray diffraction. Mechanical properties of the composites and alloys were also investigated by hardness and tensile tests. The shape memory effect of the prepared alloys was evaluated by bending tests and subsequent heating. The results presented that the fabricated composite has a homogeneous distribution of Zn and Al layers in the Cu matrix. It was also found that the alloys treated at 750 and 825 degrees C consist of a and martensite phases, whereas only 18R martensite is formed in the alloy fabricated at 900 degrees C. Additionally, the alloy annealed at 900 degrees C exhibited a good strength (about 500 MPa), ductility (about 22%) and shape memory effect. It was concluded that Cu-Zn-Al shape memory alloys can be successfully fabricated by accumulative roll bonding and subsequent heating treatment processes.
机译:通过累积辊粘合制造由纯铜,锌和铝组成的Cu / Zn / Al多层复合材料。然后,在制备的复合材料上遵循各种温度(750,825和900℃)的热处理过程以制造Cu-Zn-Al形状记忆合金。通过扫描配备有能量分散X射线光谱和X射线衍射的电子显微镜来表征制备的样品。还通过硬度和拉伸试验研究了复合材料和合金的机械性能。通过弯曲试验和随后的加热来评估制备合金的形状记忆效应。结果表明,制造的复合材料在Cu基质中具有均匀分布Zn和Al层。还发现在750和825摄氏度下处理的合金由A和马氏体相组成,而仅在900摄氏度制造的合金中形成18R马氏体。另外,在900摄氏度下退火的合金表现出良好的强度(大约500MPa),延性(约22%)和形状记忆效果。结论是Cu-Zn-Al形状记忆合金可以通过累积辊粘合和随后的加热处理方法成功制造。

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