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A path-following method for elasto-plastic solids and structures based on control of plastic dissipation and plastic work

机译:基于塑性耗散和塑性功控制的弹塑性固体和结构的路径跟踪方法

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摘要

A path-following method that is based on controlling plastic dissipation or plastic work in an inelastic solid or structure is presented. It can be effective for highly nonlinear materially and geometrically problems. In particular, it can be applied for elasto-plastic problems where the standard arc-length methods fail, or to avoid artificial and undesirable elastic unloading of a complete solid or structure during the computation. The essential ingredients, the plastic dissipation and the plastic work based constraint equations, are derived by using either explicit or implicit pseudo-time step integration. These constraint equations am valid for geometrically nonlinear small strain elasto-plasticity with hardening. Their implementation in the framework. of the path-following method is described. Several numerical examples are presented in order to illustrate very satisfying performance of the derived path-following method. It performed very well for some challenging shell problems.
机译:提出了一种路径跟踪方法,该方法基于控制非弹性实体或结构中的塑性耗散或塑性功。对于高度非线性的材料和几何问题,它可能是有效的。特别是,它可以应用于标准弧长方法失败的弹塑性问题,或避免在计算过程中对整个实体或结构进行人为的和不希望的弹性卸载。通过使用显式或隐式伪时间步长积分,可以得出基本要素,塑性耗散和基于塑性功的约束方程式。这些约束方程对于具有硬化的几何非线性小应变弹塑性有效。它们在框架中执行。描述路径跟随方法。给出了几个数值示例,以说明派生的路径跟踪方法的非常令人满意的性能。对于某些具有挑战性的外壳问题,它的性能非常好。

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