首页> 外文会议>International Conference on Fracture and Damage Mechanics >Revisiting the Problem of Debond Initiation at Fibre-Matrix Interface under Transversal Biaxial Loads. A Comparison of Several Non-Classical Fracture Mechanics Approaches
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Revisiting the Problem of Debond Initiation at Fibre-Matrix Interface under Transversal Biaxial Loads. A Comparison of Several Non-Classical Fracture Mechanics Approaches

机译:横向双轴负载下纤维矩阵界面借鉴借鉴问题。几种非古典裂缝力学方法的比较

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Understanding matrix failure in LFRP composites is one of the main challenges when developing failure criteria for these materials. This work aims to study the influence of the secondary transverse load on the crack initiation at micro-scale. Four non-classical approaches of fracture mechanics are used to model the onset of fibre-matrix interface debonds: Linear Elastic Brittle Interface Model (LEBIM), an Energetic Approach for the Linear Elastic Brittle Interface Model (EA-LEBIM), an Energetic Approach for the bilinear Cohesive Zone Model (EA-CZM) and the Coupled Criterion of the Finite Fracture Mechanics (CC-FFM). Results obtained by these approaches predict that, for brittle fibre-matrix configurations, a secondary transverse compression reduces the critical value of the main transverse tension leading to the debond onset. This fact is not taken into account by the currently used failure criteria.
机译:了解LFRP复合材料中的矩阵失败是开发这些材料的故障标准时的主要挑战之一。这项工作旨在研究二次横向负荷对微尺度裂纹引发的影响。四种非经典方法的裂缝力学方法用于模拟光纤矩阵界面借方的开始:线性弹性脆性接口模型(Lebim),线性弹性脆界面模型(EA-Lebim)的能量方法,是一种能量方法双线性凝聚区模型(EA-CZM)和有限骨折力学(CC-FFM)的耦合标准。通过这些方法获得的结果预测,对于脆弱的纤维矩阵配置,次级横向压缩降低了导致借助于借助的主要横向张力的临界值。目前使用的失败标准没有考虑到此事实。

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