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A bond-based micropolar peridynamic model with shear deformability: Elasticity, failure properties and initial yield domains

机译:具有剪切可变形性的基于键的微极逆向模型:弹性,失效性和初始产量域

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摘要

A generalized micropolar bond-based Peridynamic model with shear deformability for linear and nonlinear problems is proposed. The analytical implicit formulation is derived from the definition of a specific microelastic energy function for micropolar nonlocal lattices, giving particular attention to numerical implementation aspects of the model. We investigate the effectiveness of this formulation, empathizing the importance of considering particle's rotations in enriched bond-based peridynamic models with arbitrary Poisson's ratios. Numerical analyses show that a microelastic energy function dependent on a shear deformation measure in which rotational degrees of freedom of the particles are not included, leads to a model not capable to describe properly the elastic behavior of isotropic solids subjected to non-homogeneous deformation fields. Moreover two novel deformation-based failure criteria for micropolar peridynamics accounting for bond shear deformation, associated or not with the corresponding stretch of the ligament, are proposed. A deep investigation is carryied out on the direction dependency of the failure response of the lattice, considering different horizon/grid spacing ratios. In this way the maximum errors are estimated and the effective initial yield domains corresponding to the failure criteria presented are identified in two dimensional principal s(1) - s(2) and generalized s - gamma deformations space. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种具有线性和非线性问题的剪切可变形性的基于透明的逆向动力学模型。分析隐式配方源自用于微波利卡非局部格子的特定微弹电功能的定义,特别注意模型的数值实现方面。我们调查了这种制剂的有效性,同情考虑粒子旋转在富集的基于智能动力学模型中的重要性,具有任意泊松的比率。数值分析表明,依赖于剪切变形测量的微弹电功能,其中不包括颗粒的旋转自由度,导致不能够正确描述对非均匀变形领域的各向同性固体的弹性行为的模型。此外,提出了两种新的基于变形的变形性失效标准,用于核对粘结剪切变形,与相应的韧带相关联的粘结剪切变形核算。考虑到不同地平线/网格间距比率,对晶格失效响应的方向依赖性进行深度调查。以这种方式,估计最大误差,并且在二维主体S(1) - S(2)和广义的S - 伽马变形空间中识别出呈现的失败标准的有效初始屈服域。 (c)2018年elestvier有限公司保留所有权利。

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