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Time-dependent damage analysis for viscoelastic-viscoplastic structural laminates under biaxial loading

机译:双轴载荷下粘弹性-粘塑性结构层合板的时变损伤分析

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摘要

Many composite structures are required to sustain severe thermo-mechanical loads over extended periods of time, during which viscoelastic and viscoplastic behavior can cause the progression of micro-damage. In this paper, a new computational mull-scale model that couples micro-damage mechanics with Schapery's theory of viscoelasticity and viscoplasticity has been developed to predict time-dependent damage evolution in laminates under constant biaxial loading. After validation with experimental data, the new model capabilities are showcased by predicting damage evolution in two distinct laminates under different axial and transverse loads over time. It is found that damage evolution in both laminates is highly sensitive to the biaxial loading levels, and that crack multiplication in each ply is dependent on stacking sequence and ply orientation. The developed multi-scale model may be a suitable design tool for composite structures required to endure long-term loads in demanding environments.
机译:需要许多复合结构来在长时间内承受严重的热机械载荷,在此期间,粘弹和粘塑性行为会导致微损伤的发展。在本文中,开发了一种新的计算尺度模型,该模型将微损伤力学与Schapery的粘弹性和粘塑性理论相结合,以预测在恒定双轴载荷下层压板随时间的损伤演化。经过实验数据验证后,通过预测两个不同层压板在不同轴向和横向载荷下随时间的损伤演变,展示了新的模型功能。发现两个层压板中的损伤演变对双轴载荷水平高度敏感,并且每个层中的裂纹扩展取决于堆叠顺序和层取向。所开发的多尺度模型可能是用于在苛刻环境中承受长期载荷所需的复合结构的合适设计工具。

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