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A Numerical Study of Strain Localization in Elasto-Thermo-Viscoplastic Materials using Radial Basis Function Networks

机译:基于径向基函数网络的弹性热粘塑性材料应变局部化的数值研究

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摘要

This paper presents a numerical simulation of the formation and evolution of strain localization in elasto-thermo-viscoplastic materials (adiabatic shear band) by the indirect/integral radial basis function network (IRBFN) method. The effects of strain and strain rate hardening, plastic heating, and thermal softening are considered. The IRBFN method is enhanced by a new coordinate mapping which helps capture the stiff spatial structure of the resultant band. The discrete IRBFN system is integrated in time by the implicit fifth-order Runge-Kutta method. The obtained results are compared with those of the Modified Smooth Particle Hydrodynamics (MSPH) method and Chebychev Pseudo-spectral (CPS) method.
机译:本文利用间接/积分径向基函数网络(IRBFN)方法对弹热粘塑性材料(绝热剪切带)中应变局部化的形成和演化进行了数值模拟。考虑了应变和应变率硬化,塑性加热和热软化的影响。 IRBFN方法通过新的坐标映射得到增强,该坐标映射有助于捕获所得波段的刚性空间结构。离散IRBFN系统通过隐式五阶Runge-Kutta方法及时集成。将获得的结果与改进的光滑粒子流体动力学(MSPH)方法和Chebychev伪谱(CPS)方法的结果进行比较。

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