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首页> 外文期刊>International Journal of Damage Mechanics >Nonlocal Damage Gradient Model for Fracture Characterization of Aluminum Alloy
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Nonlocal Damage Gradient Model for Fracture Characterization of Aluminum Alloy

机译:铝合金断裂特征的非局部损伤梯度模型

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摘要

This article presents the development of a generalized nonlocal damage-coupled material model. The model introduces the concept of cumulative damage gradient through a set of damage evolution equations within the irreversible thermodynamics framework. The conventional damage-coupled plasticity models require either self-developed finite element codes or the mandatory use of regular elements. The proposed material model is implemented in a commercial finite element code ABAQUS (Version 6.5) via its UMAT subroutine. The implementation of this model on ABAQUS is described with a focus on the nonlocal treatment together with the derivation of the consistent tangent modulus (Jacobian). As a numerical example, the nonlocal damage model is applied to center-cracked specimen made of aluminum alloy 2024-T3. Comparison is made between the computed results and experimental ones. The validity of the proposed model is examined, and its effectiveness for engineering application is elucidated.
机译:本文介绍了广义非局部损伤耦合材料模型的开发。该模型通过不可逆热力学框架内的一组损伤演化方程式引入了累积损伤梯度的概念。传统的损伤耦合塑性模型需要自行开发的有限元代码或强制使用常规元素。所建议的材料模型通过其UMAT子例程以商业有限元代码ABAQUS(版本6.5)实现。描述了该模型在ABAQUS上的实现,着重介绍了非局部处理以及一致的切线模量(Jacobian)的推导。作为数值示例,将非局部损伤模型应用于由铝合金2024-T3制成的中心开裂试样。将计算结果与实验结果进行比较。检验了所提模型的有效性,并阐明了其在工程应用中的有效性。

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