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A Combined Experimental-Numerical Approach for Investigating Texture Evolution of NiTi Shape Memory Alloy under Uniaxial Compression

机译:组合实验-数值方法研究单轴压缩下NiTi形状记忆合金的组织演变

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Texture evolution of NiTi shape memory alloy was investigated during uniaxial compression deformation at 673 K (400 °C) by combining crystal plasticity finite element method with electron back-scattered diffraction experiment and transmission electron microscope experiment. Transmission electron microscope observation indicates that dislocation slip rather than deformation twinning plays a dominant role in plastic deformation of B2 austenite NiTi shape memory alloy at 673 K (400 °C). Electron back-scattered diffraction experiment illustrates heterogeneous microstructure evolution resulting from dislocation slip in NiTi shape memory alloy at 673 K (400 °C). {110}, {010} and {110} slip systems are introduced into a crystal plasticity constitutive model. Based on the constructed representative volume element model and the extracted crystallographic orientations, particle swarm optimization algorithm is used to identify crystal plasticity parameters from experimental results of NiTi shape memory alloy. Using the fitted material parameters, a crystal plasticity finite element method is used to predict texture evolution of NiTi shape memory alloy during uniaxial compression deformation. The simulation results agree well with the experimental ones. With the progression of plastic deformation, a crystallographic plane of NiTi shape memory alloy gradually rotates to be vertical to the loading direction, which lays the foundation for forming the fiber texture.
机译:通过将晶体塑性有限元方法与电子背散射衍射实验和透射电子显微镜实验相结合,研究了在673 K(400°C)下单轴压缩变形过程中NiTi形状记忆合金的组织演变。透射电子显微镜观察表明,在673 K(400°C)下,B2奥氏体NiTi形状记忆合金的塑性变形中,位错滑移而不是变形孪生起主要作用。电子背散射衍射实验说明了在673 K(400°C)下NiTi形状记忆合金中位错滑移引起的异质微观结构演变。将{110},{010}和{110}滑移系统引入晶体可塑性本构模型。基于所构建的代表性体积元模型和提取的晶体学取向,采用粒子群算法从NiTi形状记忆合金的实验结果中识别出晶体可塑性参数。利用拟合的材料参数,采用晶体塑性有限元方法预测NiTi形状记忆合金在单轴压缩变形过程中的织构演变。仿真结果与实验结果吻合良好。随着塑性变形的进行,NiTi形状记忆合金的晶面逐渐旋转以垂直于加载方向,这为形成纤维织构奠定了基础。

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