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A Coupled Finite Element and Crystal Plasticity Study of Friction Effect on Texture Evolution in Uniaxial Compression of NiTi Shape Memory Alloy

机译:NiTi形状记忆合金单轴压缩摩擦对组织演化的有限元和晶体可塑性耦合研究

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摘要

A coupled macro-meso-scale numerical simulation is applied to investigate the friction effect on texture evolution during uniaxial compression of NiTi shape memory alloy at 400 °C. In this approach, macroscale finite element simulations in consideration of various friction coefficient are conducted and then the corresponding velocity gradients in various regions are extracted mainly based on the delivery deformation gradient in the user-defined material subroutine (UMAT) in ABAQUS code. These velocity gradients are regarded as the deformation conditions applied in the mesoscale VPSC model. Simulation results in terms of macroscale finite element modeling demonstrate that only within the region of minimum deformation zone which is close to the die, friction effect has a nonnegligible influence on the velocity gradient. Simulation results with respect to the mesoscale VPSC modeling show that the affine and Neff = 10 linearization schemes provide the best predictions for NiTi shape memory alloy with cubic structure. Furthermore, the friction effect does have an influence on the evolution of slip mode activities in various deformation zones and therefore results in the inhomogeneous texture evolution within the deformed sample during uniaxial compression.
机译:应用耦合的宏观介观尺度数值模拟研究了在400°C下NiTi形状记忆合金单轴压缩过程中摩擦对织构演变的影响。在这种方法中,进行了考虑各种摩擦系数的宏观有限元模拟,然后主要基于ABAQUS代码中用户定义的材料子程序(UMAT)中的传递变形梯度来提取各个区域中的相应速度梯度。这些速度梯度被认为是应用于中尺度VPSC模型的变形条件。在宏观有限元建模方面的仿真结果表明,仅在最小变形区域(靠近模具)内,摩擦效果对速度梯度的影响不可忽略。关于中尺度VPSC建模的仿真结果表明,仿射和Neff = 10线性化方案为立方结构的NiTi形状记忆合金提供了最佳预测。此外,摩擦效应确实会影响滑移模式在各个变形区域中的活动,因此会导致在单轴压缩过程中变形样本内的纹理不均匀演化。

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