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A Continuum Damage and Discrete Crack Module for Fatigue Damage Prediction of Laminated Composite Structures

机译:用于疲劳损伤的疲劳损伤预测层压复合结构的连续损伤和离散裂缝模块

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This study is focused on the development and demonstration of a continuum damage and discrete crack (CDDC) module for damage prediction of laminated composite structures subjected to monotonic and fatigue loading. In order to alleviate mesh dependency and capture fiber orientation dependent matrix cracking within a ply, a discrete crack (DC) model based on the phantom paired element is embedded into the continuum damage mechanics (CDM) framework. A crack will be inserted into an element if any one of the failure criteria (fiber tension and compression, matrix tension and compression, fiber-matrix shear) is reached. To be consistent with experimental observations, it is assumed that the crack direction is along the fiber direction within a particular ply. Both the energy dissipation and damage evolution are controlled by the CDM while the introduction of discrete cracks accurately captures the intensified local stress and strain fields in the cracked element. The modeling capability and solution fidelity of the CDDC methodology is demonstrated via the example of holed composite specimens subjected to static and fatigue loading.
机译:本研究专注于连续损伤和离散裂缝(CDDC)模块的开发和示范,用于对单调和疲劳负载进行层压复合结构的损伤预测。为了减轻网格依赖性和捕获光纤取向依赖性矩阵裂缝,基于幻象配对元件的离散裂缝(DC)模型嵌入到连续损伤力学(CDM)框架中。如果达到任何故障标准(纤维张力和压缩,基质张力和压缩,纤维 - 基质剪切),则将插入裂缝。为了与实验观察一致,假设裂缝方向沿着特定层内的纤维方向。能量耗散和损坏进化均由CDM控制,同时引入离散裂缝准确地捕获裂纹元件中的强化局部应力和应变场。 CDDC方法的建模能力和解决方案保真度通过经过静电和疲劳负荷的孔复合试样的实施例来证明。

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