AbstractThis paper presents an investigation of thermomechanical effects related to the phenomena of s'/> Stress Relaxation Effects in TiNi SMA During Superelastic Deformation: Experiment and Constitutive Model
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Stress Relaxation Effects in TiNi SMA During Superelastic Deformation: Experiment and Constitutive Model

机译:超弹性变形期间TINI SMA的应力松弛效应:实验与本构模型

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AbstractThis paper presents an investigation of thermomechanical effects related to the phenomena of stress relaxation occurring in TiNi SMA subjected to modified program of displacement-controlled tension. The deformation data were taken from testing machine, whereas the temperature changes accompanying the exothermic/endothermic martensite forward/reverse transformation were measured by infrared camera. At the advanced stages of the transformations, the strain was kept constant for a few minutes and the SMA load and temperature were recorded continuously. As a consequence, the stress and temperature changed significantly during the loading stops. A large stress drop, caused by the transformation, was observed during the relaxation stage in both courses of the SMA loading and unloading. Moreover, the non-uniform temperature distribution, reflecting macroscopically inhomogeneous transformation, lapsed while the strain was kept constant, yet restarted at the end of the relaxation stop and developed at the reloading stage. Along with the experimental results, the mechanical and thermal responses induced by the transformation were obtained by 3D coupled thermomechanical numerical analysis, realized in partitioned approach. Latent heat production was correlated with an amount of the martensitic volume fraction. The stress and temperature drops recorded during the experiment were satisfactorily reproduced by the model proposed for the SMA thermomechanical coupling.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>本文提出了对与之相关的热机械效应的调查TINI SMA中发生的压力松弛现象经受改性的位移控制张力的改性程序。取自试验机的变形数据,而伴随着放热/吸热马氏体的温度变化通过红外相机测量了前进/反向变换。在转化的高级阶段,应变保持恒定几分钟,并且连续记录SMA负载和温度。因此,在装载停止期间压力和温度显着变化。在SMA负载和卸载的两种课程中,在弛豫阶段观察到由转化引起的大应力下降。此外,反射宏观不均匀变换的非均匀温度分布,而在菌株保持恒定的同时在弛豫止动件的末端重新开始,并且在重新装载台上开发。随着实验结果,通过3D耦合的热机械数值分析获得了转化诱导的机械和热应答,以分配方法实现。潜热产生与马氏体体积分数的量相关。在实验期间记录的压力和温度下降是由SMA热机械耦合所提出的模型令人满意地再现。 ]]>

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