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首页> 外文期刊>International Journal of Damage Mechanics >Computational Algorithms for a Damage-coupled Cyclic Viscoplasticity Material Model
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Computational Algorithms for a Damage-coupled Cyclic Viscoplasticity Material Model

机译:损伤耦合循环粘塑性材料模型的计算算法

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摘要

The primary objective of this investigation is to develop efficient and robust computational schemes for a damage-coupled cyclic thermoviscoplasticity model for solder materials. Three constitutive integration algorithms, Euler, modified Euler, and semi-implicit algorithm for the model are examined. The three algorithms for the model are coded in the commercial finite element (FE) code ABAQUS (version 6.21) via its user-defined material subroutine UMAT. Two single-step algorithms of the substep scheme are applied for the modified Euler algorithm to control the error in the integration of constitutive laws. A semi-empirical formulation is established for an adaptive time stepping algorithm that is based on the Euler algorithm. The simulations of single-element, miniature specimen and notched specimen simulations have been conducted and compared with the test results under monotonic tensile, creep, and fatigue tests of 63Sn-37Pb solder. It is observed that the explicit algorithm consistently requires much less CPU time than others. The modified Euler algorithm has shown, on the other hand, to be not only efficient but also accurate. The semi-implicit algorithm yields an accurate solution. It is worth noting that the method is also effective by applying an appropriate integration scheme.
机译:这项研究的主要目的是为焊锡材料的损伤耦合循环热粘塑性模型开发有效而健壮的计算方案。研究了模型的三种本构积分算法:欧拉,改进的欧拉和半隐式算法。该模型的三种算法通过用户定义的材料子例程UMAT以商业有限元(FE)代码ABAQUS(版本6.21)进行编码。改进的Euler算法将子步方案的两个单步算法应用于控制本构律积分的误差。建立了基于Euler算法的自适应时间步长算法的半经验公式。进行了单元素,微型试样和缺口试样的仿真,并将其与63Sn-37Pb焊料的单调拉伸,蠕变和疲劳测试下的测试结果进行了比较。可以看出,显式算法始终比其他算法需要更少的CPU时间。另一方面,改进的欧拉算法已经证明不仅高效而且准确。半隐式算法可得出准确的解。值得注意的是,该方法通过应用适当的集成方案也是有效的。

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