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Factors influencing the stress-induced fcc reversible hcp martensitic transformation in Co-32Ni single crystal

机译:应力诱导的Co-32Ni单晶中fcc可逆hcp马氏体相变的影响因素

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摘要

This study investigated the mechanical reversibility of the stress-induced face-centred cubic (fcc) reversible hexagonal close-packed (hcp) martensitic transformation in Co-32Ni single crystal. The as-fabricated single crystal, which was predominantly in the fee y-phase, contained a large number of stacking faults at room temperature, effectively containing a small portion of the hcp phase. The transformation to hcp martensite upon cooling was incomplete, resulting in a mixed structure of fee and hcp regions. Consequently, the alloy showed stress-induced fcc - > hcp martensitic transformation on cooling and stress-induced hcp - > fcc reverse transformation on heating from room temperature. The stress-induced transformations were found to stabilise quickly, i.e. the transformation volume diminished rapidly after a small number of cycles. This is attributed to the trapping of mobile partial dislocations at internal pinning sites and the interlocking of boundaries of hcp martensite variants. It is also unique that the alloy exhibited transformation-induced strains in the same direction of the applied stress for both the forward and the reverse transformations, in contrast to conventional shape memory alloys. This is attributed to the multiplicity of the return path of the hcp martensite to the fee austenite. Such condition jeopardises the transformation system to serve as a mechanism for shape memory effect and related properties. This conclusion should be universal for all alloy systems exhibiting fecc reversible hcp martensitic transformations.
机译:本研究研究了Co-32Ni单晶中应力诱导的面心立方(fcc)可逆六方紧密堆积(hcp)马氏体相变的力学可逆性.制备的单晶主要处于电荷y相,在室温下含有大量的堆叠故障,有效地含有一小部分hcp相。冷却后向hcp马氏体的转变不完全,导致fee和hcp区域的混合结构。因此,该合金在冷却时表现出应力诱导的fcc->hcp马氏体转变,在从室温加热时表现出应力诱导的hcp->fcc反向转变。应力诱导的转变迅速稳定,即经过少量循环后,转变体积迅速减小。这归因于在内部钉扎位点捕获移动部分位错以及 hcp 马氏体变体边界的互锁。与传统的形状记忆合金相比,该合金在正向和反向相变的施加应力方向上都表现出相变诱导的应变。这归因于hcp马氏体到费奥氏体的返回路径的多重性。这种情况危及变换系统作为形状记忆效应和相关属性的机制。这一结论对于所有表现出fecc可逆hcp马氏体相变的合金体系应该是普遍的。

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