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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >Simulation of multi-directional crack growth in braided composite T-piece specimens using cohesive models
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Simulation of multi-directional crack growth in braided composite T-piece specimens using cohesive models

机译:基于内聚模型的编织复合T型件试样多方向裂纹扩展模拟

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This paper presents an approach to the prediction of multi-directional crack growth in braided composite T-piece specimens using cohesive zone models. Failure predictions given by the cohesive model together with experimental results are presented. The effects of single and multi-directional crack model on failure prediction are investigated. Results show that both models agree with experimental data, single-crack model agrees with the maximum value of experimental data, and multi-directional crack model agrees with the mean value. The simulation of multi-directional crack growth of T-piece specimens is important in the study of their failure mechanism. Investigation reported in this paper indicates that prediction of failure loads by the multi-directional crack model is necessary in the design of some particular composite components which have similar features to the T-piece specimens.
机译:本文提出了一种使用内聚力区域模型预测编织复合T形试样多方向裂纹扩展的方法。提出了内聚模型给出的失效预测以及实验结果。研究了单向和多向裂纹模型对失效预测的影响。结果表明,两种模型均与实验数据吻合,单裂纹模型与实验数据最大值吻合,多向裂纹模型与均值吻合。 T形试件的多向裂纹扩展模拟对于研究其破坏机理非常重要。本文报道的研究表明,在设计某些与T形试样具有相似特征的特定复合材料构件时,必须通过多向裂纹模型预测破坏载荷。

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