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Damage and Failure Mechanisms in Composite Bolted Joints

机译:复合螺栓接头中的损坏和失效机制

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摘要

This study's overall goal is to develop methods to accurately predict the strength of notched composite laminates. Empirical analyses of notched composite test data led to an understanding of failure mechanisms. Trends in ultimate strength versus layup parameters were extracted from several DoD test programs. A test program with incrementally loaded, notched coupons was conducted to track sub-critical damage. Damage states at near-ultimate loads were correlated to the ultimate strength trends. These trends were then attributed to specific matrix damage types. Detailed finite element analyses of composite bolted joint configurations were conducted using solid element models with nonlinear material properties. Sensitivity studies were conducted to determine the mesh refinement needed for converged peak stresses. At the loads corresponding to initial damage in the incremental notched tests, linear and nonlinear finite element analysis consistently predicted peak ply stresses which were significantly higher than ply strengths derived from unidirectional coupon tests.
机译:这项研究的总体目标是发展的方法来准确地预测缺口复合材料层压板的强度。导致的失效机理的理解缺口复合测试数据的经验分析。在极限强度与上篮参数的变化趋势是从美国国防部的几个测试程序中提取。用逐渐加载,缺口试样的测试程序进行跟踪亚临界损坏。在接近极限荷载破坏状态有相关性的极限强度的趋势。然后这些趋势归因于特定矩阵伤害类型。复合螺栓连接构造的详细有限元分析使用固元模型具有非线性材料特性进行的。灵敏度研究,以确定需要融合的峰值应力的网格细化。在对应于在增量缺口测试初始损伤,线性和非线性有限元分析一致预测哪个均显著高于从单向优惠券测试得出帘布层强度峰帘布层的应力的载荷。

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