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Effect of Accumulative Roll Bonding and Equal Channel Angular Rolling on Microstructural and Mechanical Properties of Cu-Al-Mn Shape Memory Alloys

机译:累积辊粘合的影响及等通道角滚动对Cu-Al-Mn形状记忆合金的微结构和力学性能

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摘要

Two Cu-based shape memory alloys, Cu-9.5Al8.2Mn and Cu-8.3Al-8Mn (in wt%), were chosen for the present study and subjected to severe plastic deformation by accumulative roll bonding (ARB) and equal channel angular rolling (ECAR) processes, respectively. The effects of ARB and ECAR processes with subsequent post-deformation annealing on the transformation temperatures, microstructure and mechanical properties of these alloys were investigated. The ARB process was carried out at 600 degrees C, followed by post annealing at 700 degrees C for different lengths of time. The ECAR process was performed in 5 passes at room temperature, followed by post annealing at 890 degrees C for different lengths of time. Scanning electron microscopy studies revealed that the coexistence of bainitic and martensitic structures was the main reason for enhancement of mechanical properties of Cu-8.3Al-8Mn alloy. It also revealed that the enhancement of tensile properties of Cu-9.5Al-8.2Mn alloy could be directly attributed to the grain refinement induced by ARB and post deformation annealing. For both alloys, transformation temperatures reduced and selective growth of martensite variants occurred after post-deformation annealing.
机译:两种铜基形状记忆合金,Cu-9.5Al8。本研究选择了2Mn和Cu-8.3Al-8Mn(重量%),分别通过累积滚压键合(ARB)和等通道转角轧制(ECAR)工艺进行严重塑性变形。研究了ARB和ECAR工艺以及随后的变形后退火对这些合金的转变温度、显微组织和力学性能的影响。ARB工艺在600℃下进行,然后在700℃下进行不同时间长度的后退火。ECAR工艺在室温下分5道进行,然后在890℃下进行不同时间长度的后退火。扫描电镜研究表明,贝氏体和马氏体组织的共存是Cu-8.3Al-8Mn合金力学性能提高的主要原因。研究还表明,Cu-9.5Al-8.2Mn合金拉伸性能的提高可直接归因于ARB和变形后退火引起的晶粒细化。对于这两种合金,变形后退火后相变温度降低,马氏体变体发生选择性生长。

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