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3D numerical simulation of anisotropic thin sheet metal slitting process using fully coupled constitutive equations including ductile damage

机译:各向异性薄板纵剪过程的3D数值模拟,包括延性损伤的完全耦合本构方程

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摘要

In this work, an anisotropic plastic constitutive equation accounting for both isotropic and kinematic hardening fully coupled with isotropic ductile damage is presented from both theoretical and numerical standpoints. A radial return algorithm applied to a reduced number of constitutive equations is used in order to compute the stress tensor as well as all the internal variables at the end of time steps. The proposed model is implemented into ABAQUS/EXPLICIT FE code using the Vumat user’s subroutine and the resultant initial and boundary value problem is solved thanks to the classical Dynamic Explicit scheme. Application is made to slitting of 3D anisotropic sheet by studying the influence of some process parameters as the shape of the knives, the sheet thickness and the initial residual stress fields. The proposed methodology is shown to be very useful and helpful when dealing with a “virtual” improvement of any slitting process.
机译:在这项工作中,从理论和数值的角度提出了各向异性塑性本构方程,该方程解释了各向同性和运动学硬化,并充分考虑了各向同性的延性损伤。为了减少时间张量结束时的应力张量以及所有内部变量,使用了应用于数量减少的本构方程的径向返回算法。利用Vumat用户的子例程将提出的模型实现为ABAQUS / EXPLICIT FE代码,并借助经典的动态显式方案解决了由此产生的初始值和边值问题。通过研究诸如刀的形状,板的厚度和初始残余应力场等一些工艺参数的影响,将其应用于3D各向异性板的纵切。当处理任何纵切过程的“虚拟”改进时,建议的方法被证明是非常有用和有益的。

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