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Experimental and Numerical Investigation of Mechanical and Thermal Effects in TiNi SMA during Transformation-Induced Creep Phenomena

机译:TiNi SMA相变诱发蠕变现象的力学和热效应的实验和数值研究

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摘要

(1) The paper presents experimental and numerical results of the TiNi shape memory alloy (SMA) subjected to a modified program of force-controlled tensile loading. The time-dependent development of transformation strain under the constant-force conditions was investigated to describe transformation-induced creep phenomena. (2) Mechanical characteristics of the TiNi SMA were derived using a testing machine, whereas the SMA temperature changes accompanying its deformation were obtained in a contactless manner with an infrared camera. A 3D coupled thermo-mechanical numerical analysis, realized in a partitioned approach, was applied to describe the SMA mechanical and thermal responses. (3) The stress and related temperature changes demonstrated how the transformation-induced creep process started and evolved at various stages of the SMA loading. The proposed model reproduced the stress, strain and temperature changes obtained during the experiment well; the latent heat production is in correlation with the amount of the martensitic volume fraction. (4) It was demonstrated how the transformation-induced creep process occurring in the SMA under such conditions was involved in thermo-mechanical couplings and the related temperature changes.
机译:(1)本文介绍了经过改进的力控制拉伸载荷程序的TiNi形状记忆合金(SMA)的实验和数值结果。研究了在恒力条件下转变应变随时间的变化,以描述转变引起的蠕变现象。 (2)TiNi SMA的机械特性是使用测试机得出的,而SMA变形引起的SMA温度变化是通过红外相机以非接触方式获得的。采用分区方法实现的3D耦合热机械数值分析用于描述SMA的机械和热响应。 (3)应力和相关的温度变化表明,在SMA加载的各个阶段,转变引起的蠕变过程是如何开始和演化的。该模型再现了实验过程中获得的应力,应变和温度变化。潜热产生与马氏体体积分数的量相关。 (4)证明了在这种条件下SMA中发生的由相变引起的蠕变过程是如何与热力耦合和相关的温度变化有关的。

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