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首页> 外文期刊>International journal of computational methods >Finite element implementation of a super-elastic constitutive model for transformation ratchetting of NiTi alloy
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Finite element implementation of a super-elastic constitutive model for transformation ratchetting of NiTi alloy

机译:NiTi合金相变咬合的超弹性本构模型的有限元实现

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摘要

In the previous work, a new constitutive model describing the transformation ratchetting of super-elastic NiTi alloy was proposed. The finite element implementation of the proposed model is discussed in this work, because such implementation is necessary to launch a numerical analysis for the cyclic stressstrain responses of NiTi alloy devices including the transformation ratchetting. During the implementation, a new stress integration algorithm is adopted, and a new expression of the consistent tangent modulus is derived for the forward transformation and the reverse transformation. The finite element implementation is elaborated by the user subroutine of UMAT in ABAQUS based on backward Euler method. The accumulated error during cyclic transformation is controlled by a robust convergence criterion. Finally, the validity of such implementation is verified by several numerical examples.
机译:在先前的工作中,提出了描述超弹性NiTi合金相变棘手的新本构模型。在这项工作中讨论了所提出模型的有限元实现,因为这种实现对于启动NiTi合金器件的循环应力应变响应(包括转变棘齿)进行数值分析是必要的。在实现过程中,采用了一种新的应力积分算法,并为正向变换和反向变换推导了相切切线模量的新表达式。有限元实现由ABAQUS中的UMAT用户子例程基于后向Euler方法进行阐述。循环变换期间的累积误差由鲁棒收敛准则控制。最后,通过几个数值例子验证了这种实现的有效性。

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