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Analysis Of Bolted-bonded Composite Single-lap Joints Under Combined In-plane And Transverse Loading

机译:面内和横向联合荷载作用下的螺栓连接复合单搭接接头分析

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摘要

A semi-analytical solution method is developed for stress analysis of single-lap hybrid (bolted/bonded) joints of composite laminates under in-plane as well as lateral loading. The laminate and bolt displacements are based on the Mindlin and Timoshenko beam theories, respectively. For the adhesive, the displacement field is expressed in terms of those of laminates by using the shear-lag model. The derivation of the governing equations of equilibrium of the joint is based on the virtual work principle, where the kinematics of each laminate are approximated by local and global functions and the bolt kinematics is assumed in terms of cubic Hermitian polynomials. The capability of the present approach is justified by validation and demonstration problems, including the analysis of bolted and bonded joints and hybrid joints with and without considering a disbond between the adhesive and laminates.
机译:开发了一种半解析解方法,用于在平面载荷和侧向载荷作用下复合层压板的单圈混合(螺栓/粘结)接头的应力分析。层压板和螺栓的位移分别基于Mindlin和Timoshenko梁理论。对于粘合剂,通过使用剪切滞后模型,以层压板的位移场表示位移场。关节平衡控制方程的推导基于虚拟功原理,其中每个层合物的运动学均通过局部和全局函数进行近似,而螺栓运动学则根据三次Hermitian多项式来假设。本方法的能力通过验证和演示问题来证明是正确的,包括在不考虑粘合剂和层压板之间的脱粘的情况下,分析螺栓连接和混合连接以及混合连接。

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