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首页> 外文期刊>International Journal of Solids and Structures >The strain energy release rates in adhesively bonded balanced and unbalanced specimens and lap joints
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The strain energy release rates in adhesively bonded balanced and unbalanced specimens and lap joints

机译:胶粘平衡和不平衡试样以及搭接接头的应变能释放率

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摘要

An analytical model is developed to determine the strain energy release rate in adhesive joints of various configurations such as the double-cantilever beam and single-lap joints. The model is based on asymptotic analysis of adhesive layer stresses and Irwin's crack closure integral. Closed-form solutions are presented for balanced and unbalanced joints under mode I, II and mixed-mode I/II that take into account the influence of the shear force on the adhesive stresses, and its influence on the strain energy release rate. The accuracy of the model is tested against the classical beam theory expressions for double-cantilever beam and end-notch flexure specimens. In fact. classical beam theory's expressions are found to be the lower bound of the proposed model solutions, and the two methods converge as the adhesive layer thickness decreases. Analysis of single-lap joints reveals the influence of edge shear forces on the total strain energy release rate, and more importantly on the ratio between modes I and It. Results from the proposed analytical model are in good agreement with finite element results and with analytical models found in the literature.
机译:建立了一个分析模型,以确定各种构型的胶粘接头(例如双悬臂梁和单搭接接头)中的应变能释放率。该模型基于粘合剂层应力和Irwin裂纹闭合积分的渐近分析。考虑到剪切力对粘着应力的影响及其对应变能释放速率的影响,提出了模式I,II和混合模式I / II下平衡和不平衡接头的闭合形式解决方案。针对双悬臂梁和端部缺口挠性样品的经典梁理论表达式,测试了模型的准确性。事实上。发现经典梁理论的表达式是所提出的模型解的下界,并且这两种方法随着粘合剂层厚度的减小而收敛。对单搭接接头的分析揭示了边缘剪切力对总应变能释放速率的影响,更重要的是对I型与It型之比的影响。所提出的分析模型的结果与有限元结果以及文献中的分析模型非常吻合。

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