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Statistical Analysis of the Progressive Failure Behavior for Fiber-Reinforced Polymer Composites under Tensile Loading

机译:拉伸载荷下纤维增强聚合物复合材料渐进破坏行为的统计分析

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An analytical approach with the help of numerical simulations based on the equivalent constraint model (ECM) was proposed to investigate the progressive failure behavior of symmetric fiber-reinforced composite laminates damaged by transverse ply cracking. A fracture criterion was developed to describe the initiation and propagation of the transverse ply cracking. This work was also concerned with a statistical distributions of the critical fracture toughness values with due consideration given to the scale size effect. The Monte Carlo simulation technique coupled with statistical analysis was applied to study the progressive cracking behaviors of composite structures, by considering the effects of lamina properties and lay-up configurations. The results deduced from the numerical procedure were in good agreement with the experimental results obtained for laminated composites formed by unidirectional fiber reinforced laminae with different orientations.
机译:提出了一种基于等效约束模型(ECM)的数值模拟分析方法,以研究对称纤维增强复合材料层合板在横向层裂中损坏的渐进破坏行为。制定了断裂准则来描述横向层裂的产生和扩展。这项工作还涉及临界断裂韧性值的统计分布,同时适当考虑了氧化皮尺寸效应。通过考虑层板性能和铺层结构的影响,将蒙特卡罗模拟技术与统计分析相结合,研究了复合结构的渐进开裂行为。从数值过程中得出的结果与由不同方向的单向纤维增强薄层形成的层压复合材料获得的实验结果非常吻合。

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