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首页> 外文期刊>International Journal of Adhesion & Adhesives >Finite difference three-dimensional solution of stresses in adhesively bonded composite tubular joint subjected to torsion
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Finite difference three-dimensional solution of stresses in adhesively bonded composite tubular joint subjected to torsion

机译:扭转作用下的胶粘复合管接头应力的三维有限差分法

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摘要

Traditionally, the adhesive layer in adhesively bonded joints is simplified as having constant shear and peel stresses across the thickness. In this study, it is modeled as a separate 3D elastic body without the uniform stress assumption. The stress state in an adhesively bonded fiber-reinforced composite tubular joint subjected to a torsional load is theoretically analyzed. A finite difference method is utilized to solve the system of equilibrium equations. The solution is validated by comparison with data found in the literature. The effects of fiber orientation, composite laminate stacking sequence, overlap length, adhesive layer thickness, and adhesive stiffness on the shear and peel stress distribution are evaluated and presented. The results show that all the six stress components are present and they vary considerably across the adhesive layer thickness; 3D analysis is desired, especially for general laminated composite adherends.
机译:传统上,将粘合连接中的粘合层简化为在整个厚度方向上具有恒定的剪切应力和剥离应力。在本研究中,将其建模为没有统一应力假设的独立3D弹性体。从理论上分析了承受扭转载荷的纤维增强复合管接头的应力状态。利用有限差分法求解平衡方程组。通过与文献中的数据进行比较来验证该解决方案。评估并提出了纤维取向,复合层压板堆叠顺序,重叠长度,粘合剂层厚度和粘合剂刚度对剪切应力和剥离应力分布的影响。结果表明,所有六个应力分量都存在,并且在整个胶粘剂层厚度上差异很大。 3D分析是需要的,特别是对于一般的层压复合被粘物。

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