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首页> 外文期刊>International Journal of Adhesion & Adhesives >A study on mixed fracture characteristics of composite single lap joint (SLJ) combining mixed continuum damage model and critical zone size based approach
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A study on mixed fracture characteristics of composite single lap joint (SLJ) combining mixed continuum damage model and critical zone size based approach

机译:复合单圈关节混合骨折特性研究混合连续损伤模型和临界区尺寸的方法

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摘要

In this paper, authors present an improved method for predicting the mixed fracture characteristics of composite single lap joint using the mixed - mode continuum damage model and the critical zone size based approach. We apply a method based on the critical zone size to predict the failure of composite adherend and establish a procedure for more precisely calculating the critical zone size using the ABAQUS user subroutine. In addition, a bilinear/exponential mixed - mode continuum damage model is used to evaluate the failure of adhesive of single lap joint. The failure of adherend and the damage process of adhesives can be considered simultaneously by the method based on the critical zone size and the mixed - mode continuum damage model. For the validation of proposed model, the user subroutine of general purpose finite element software ABAQUS was used to simulate the failure process of single lap joint made of fiber reinforced composite materials and the obtained results were compared with the previous experimental results. The results obtained by the method presented in this paper are in good agreement with previous experimental results, and showed that the adhesive cohesive damage process before the global failure of the joint due to the failure of the adherend and the interlayer failure of the composite adherend can be predicted simultaneously.
机译:本文提出了一种改进方法,用于使用混合模式连续损伤模型和基于临界区尺寸的方法预测复合单圈关节的混合断裂特性。我们使用基于临界区域大小应用一种方法来预测复合粘附的故障,并建立使用ABAQUS用户子程序更精确地计算临界区大小的过程。此外,双线性/指数混合模式连续损伤模型用于评估单圈接头的粘合剂的失效。基于临界区尺寸和混合模式连续损伤模型的方法可以同时考虑粘附和粘合剂的损伤过程。对于提出的模型的验证,通用有限元软件ABAQU的用户子程序用于模拟由纤维增强复合材料制成的单圈接头的故障过程,并将得到的结果与先前的实验结果进行了比较。本文中提出的方法获得的结果与先前的实验结果吻合良好,并表明粘合剂粘性损坏过程由于坚持的粘附失败和综合粘附物的夹层失效而导致的联合的全局失败同时预测。

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