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Recovery stress formation in a restrained Fe-Mn-Si-based shape memory alloy used for prestressing or mechanical joining

机译:在用于预应力或机械连接的受约束的Fe-Mn-Si基形状记忆合金中恢复应力的形成

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The formation of recovery stresses in a restrained Fe-Mn-Si-Cr-Ni-VC shape memory alloy used for mechanical coupling and prestressing has been investigated with special emphasis on non-ideal restraints that might reduce the recovery stress. The evolution of recovery stresses in the presence of different initial gaps and elastic restraints was investigated experimentally. The results show that the alloy can still produce substantial recovery stresses even under non-ideal restraining conditions. In a second part, the experimental results are analyzed using techniques from constitutive modelling to investigate the evolution of the recovery stress in a more rigorous way. For this purpose the measured strain is decomposed into its elastic, thermal expansion, and transformation parts. With these strain components, the development of the recovery stress during heating and cooling can be described for all different constraint conditions in a unified way. The analysis also shows why optimizing a material for high recovery stress is different from optimizing it for a large recovery strain. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经研究了用于机械耦合和预应力的受约束的Fe-Mn-Si-Cr-Ni-VC形状记忆合金中恢复应力的形成,特别着重于可能降低恢复应力的非理想约束。实验研究了在存在不同初始间隙和弹性约束的情况下恢复应力的演变。结果表明,即使在非理想的约束条件下,该合金仍然可以产生相当大的恢复应力。在第二部分中,使用本构模型中的技术分析实验结果,以更严格的方式研究恢复应力的演变。为此,将测得的应变分解为其弹性,热膨胀和变形部分。利用这些应变分量,可以以统一的方式描述所有不同约束条件下加热和冷却过程中恢复应力的变化。分析还显示了为什么针对高回复应力优化材料与针对大回复应变进行优化的原因不同。 (C)2015 Elsevier Ltd.保留所有权利。

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