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Investigation on local and global behaviors of pseudoelastic shape memory alloy wires in simple tensile test considering stress concentration of grippers

机译:考虑抓爪应力集中的简单拉伸试验中拟弹性形状记忆合金线的局部和整体性能研究

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To investigate the local phenomena of nucleation and propagation in the simple tensile test of shape memory alloys, the existing models consider geometrical imperfections in the specimen to indirectly take the effects of grippers' stress concentration into account. In this article, the grippers are directly modeled in studying shape memory alloy wires in simple tensile test. A finite element model is created in ABAQUS to determine the distributions of cross-sectional area and stress in a shape memory alloy wire when tightening the grippers. Then, using this stress distribution as the pre-stress, tension of the specimen is studied by employing a coupled thermomechanical model to obtain distributions of the stress, strain, martensite volume fraction, and temperature at any strain rate. The results indicate that the nucleation and propagation of transformation fronts are observed using this method of directly considering the pre-stress and initial area distribution due to fastening the grippers. It is also shown that the local and the nominal strains are not the same during nucleation and propagation of phase fronts. A simple tensile test is conducted on an NiTi wire, and a good agreement is seen between the experimental and the numerical stress-strain responses and local-nominal strain diagrams.
机译:为了在形状记忆合金的简单拉伸试验中研究局部成核和扩散的现象,现有模型考虑了试样中的几何缺陷,从而间接考虑了抓爪应力集中的影响。在本文中,在简单的拉伸试验中直接对夹具进行建模以研究形状记忆合金线。在ABAQUS中创建一个有限元模型,以确定拧紧夹具时形状记忆合金丝的横截面面积和应力分布。然后,使用该应力分布作为预应力,通过采用热力学耦合模型研究样品的张力,以获取任意应变速率下的应力,应变,马氏体体积分数和温度的分布。结果表明,使用这种方法直接观察了由于紧固夹具而产生的预应力和初始面积分布,从而观察到了变形前沿的形核和扩展。还表明,在相锋面的成核和传播过程中,局部应变和名义应变不相同。在镍钛丝上进行了简单的拉伸试验,在实验和数值应力-应变响应以及局部名​​义应变图之间可以看到很好的一致性。

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