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Stress analysis of adhesive-bonded tubular-coupler joints with optimum variable-stiffness composite adherend under torsion

机译:具有最佳变刚度复合被粘物的胶管连接接头的扭转应力分析

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摘要

In this paper, a mathematical model of an adhesive-bonded tubular-coupler joint with a variable-stiffness composite coupler is formulated. The joint is assumed to be axisymmetric, linearly elastic, and subjected to a uniform torsion. Due to symmetry the joint is considered as a pair of two identical tubular-lap joints. Varying fiber orientation is analyzed by discretizing a tubular-lap joint into a finite number of sufficiently small segments, each of which can be approximated to have constant fiber angle. Stresses developed in the joint are determined by employing elasticity equations. This model is applied to search for the optimal variable-fiber orientation in the coupler that induces the minimum adhesive hoop shear stress. Finally, the influence of geometries of the optimum joints on all of the stress components in the adherends and adhesive stresses is studied. A design guideline for the optimum coupler joint is provided at the end of the paper. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,建立了具有可变刚度复合耦合器的胶粘管状耦合器接头的数学模型。假定接头是轴对称的,线性弹性的,并且受到均匀的扭转。由于对称,该接头被视为一对两个相同的管状搭接接头。通过将管状搭接接头离散化为有限数量的足够小的段来分析不同的纤维方向,每个段可以近似地具有恒定的纤维角度。通过采用弹性方程式确定接头中产生的应力。该模型可用于在耦合器中搜索最佳的可变纤维方向,该方向会引起最小的胶粘带剪切应力。最后,研究了最佳接头的几何形状对被粘物中所有应力分量和粘结应力的影响。本文末尾提供了最佳耦合器接头的设计指南。 (C)2016 Elsevier Ltd.保留所有权利。

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