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A three-dimensional plasticity-damage constitutive model for timber under cyclic loads

机译:循环载荷下木材的三维可塑性-损伤本构模型

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The performance of timber structures is governed by the nonlinear response at their connections, where high deformation levels and stress concentrations are developed, particularly when subjected to load reversals. To date, no constitutive model for wood under cyclic load exists which is able to incorporate its most important failure modes while considering plastic deformations and cyclic stiffness and strength degradation simultaneously. This paper presents the formulation and implementation of a plasticity damage model with these characteristics within a continuum mechanics approach. The theoretical framework of both plasticity and damage models is described, and a detailed derivation of the constitutive equations required for their computational implementation and coupling as well as the return mapping and iterative algorithms for their integration are presented. The damage evolution process is handled by two independent scalar variables for tension and compression. A general orthotropic plasticity yield surface with isotropic hardening is employed to incorporate timber plastic flow in compression. A closed-form expression for the plasticity-damage consistent tangent operator is derived. It is demonstrated that the proposed constitutive model captures all the key characteristics required for an accurate modelling of timber under large deformation levels until failure. (C) 2017 Elsevier Ltd. All rights reserved.
机译:木材结构的性能受其连接处的非线性响应支配,其中产生了高变形水平和应力集中,尤其是在承受载荷逆转时。迄今为止,尚不存在木材在循环载荷下的本构模型,该模型能够结合其最重要的破坏模式,同时考虑塑性变形以及循环刚度和强度退化。本文介绍了在连续力学方法中具有这些特征的塑性损伤模型的制定和实现。描述了可塑性和损伤模型的理论框架,并详细推导了它们的计算实现和耦合所需的本构方程,以及它们集成的返回映射和迭代算法。损伤演变过程由两个独立的标量变量处理,以进行拉伸和压缩。使用具有各向同性硬化的一般正交各向异性可塑性屈服面,将木材塑料流压缩。推导了可塑性-损伤一致切线算子的封闭形式。结果表明,所提出的本构模型捕获了在大变形水平下直至破坏之前对木材进行精确建模所需的所有关键特征。 (C)2017 Elsevier Ltd.保留所有权利。

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