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An integrated constitutive model for tensile failure analysis and overlap design of adhesive-bonded composite joints

机译:粘结复合关节粘结式复合关节拉伸破坏分析和重叠设计的集成本构型模型

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摘要

An integrated constitutive model is proposed for tensile failure analysis and overlap design of adhesive-bonded composite joints. In this model, two improved criteria are developed: for matrix failure and fiber failure of laminates, an improved 3D strain-based Tsai-Wu criterion is developed by introducing mode factors and an exponential progressive damage evolution; for delamination and debonding, an improved 3D coupled exponential cohesive zone model (CZM) is developed by introducing new tangential components. Both criteria are implemented in one explicit user subroutine to facilitate applications for engineering. The validity of the model is proved in comparison with the experimental results of adhesive-bonded composite single-lap joints and other numerical models. Based on the model, the influence of different overlap lengths on the tensile failure behavior of the adhesive-bonded composite single-lap joints is analyzed comprehensively. For the adhesive-bonded composite single-lap joints tested in this study, an equivalent load-weight ratio is proposed to reflect the relative load capacity, and the optimal value of the overlap length is discussed.
机译:提出了一种综合本构体模型,用于粘合复合关节的拉伸破坏分析和重叠设计。在该模型中,开发了两个改进的标准:用于层压板的矩阵故障和纤维失效,通过引入模式因素和指数渐进损伤演化来开发改进的基于3D应变的TSAI-WU标准;对于分层和剥离,通过引入新的切向组件,开发了一种改进的3D耦合指数凝聚区模型(CZM)。两个标准都在一个明确的用户子程序中实现,以便于工程应用。证明了模型的有效性与粘合复合复合单圈关节和其他数值模型的实验结果相比。基于该模型,综合地分析了不同重叠长度对粘结复合单圈关节的拉伸破坏行为的影响。对于在本研究中测试的粘合剂粘合的复合单圈接头,提出了等效的负载重量比以反映相对载荷能力,并且讨论了重叠长度的最佳值。

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