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Advances in computational dynamics for inelastic continua with anisotropic material behavior: Formulation and numerical implementation of inelastic ductile behavior of spruce wood

机译:具有各向异性材料行为的无弹性连续性计算动力学的研究进展:云杉木材无弹性延性行为的配方和数值实现

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A new material model for wood is proposed and analyzed in this contribution. It is focused on anisotropic ductile failure at large strains and high strain-rates. The anisotropy of the ductile failure is represented by a multi-surface yield criterion coupled to anisotropic damage, which represents the anisotropic material behavior of wood due to its fibre orientation. The rate-dependency of the approach is modelled by visco-plasticity for large strain-rates in order to enable its application to the simulation of experiments at high loading velocities, e.g. impact and drop tests. To account for high strain-rates requires transient simulations of the nonlinear dynamic response of the structure. Moreover, a novel time integration method based on a three point backward EULER scheme is introduced. The localization of strain and mesh dependent results arising from simulations with softening formulations are overcome by gradient enhancement of the damage formulation. To this end, three nonlocal damage variables are introduced as additional degrees of freedom, which results in a coupled system of partial differential equations for displacement and damage variables. The material model is applied to the simulation of experiments on wood in a Split HOPKINSON Pressure Bar experiment and in a drop weight test. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在这一贡献中提出并分析了木材的新材料模型。它的重点是大菌株和高应变率的各向异性延展性衰竭。延展性失效的各向异性由耦合到各向异性损伤的多表面屈服标准表示,这代表了由于其纤维取向为木材的各向异性材料行为。该方法的速率依赖性由粘性可塑性建模,以实现大应变率,以便在高负载速度下施加到实验的模拟,例如,影响和跌落测试。为了考虑高应变率,需要对结构的非线性动态响应的瞬态模拟。此外,介绍了一种基于三点向后欧拉方案的新型时间积分方法。通过损伤制剂的梯度增强来克服由软化制剂模拟产生的菌株和网眼依赖性结果的定位。为此,将三个非识别损伤变量作为额外的自由度引入,这导致偏差方程的耦合系统,用于位移和损坏变量。材料模型应用于拆分霍普金森压力条实验中木材实验模拟,并在滴重量试验中进行模拟。 (c)2020 elestvier有限公司保留所有权利。

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