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Simplified analytical model for adhesive-bonded tubular joints with isotropic and composite adherends subjected to tension

机译:具有各向同性和复合材料的粘结管状关节的简化分析模型,粘附粘附受张力

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摘要

Many studies have investigated adhesive tubular joints subjected to axial load. However, previous analytical studies were only limited to the joints with single-layer isotropic or orthotropic materials, and the corresponding mathematical models were highly complicated. Thus, the aim of this article is to develop a simplified but comprehensive model for studying adhesive-bonded tubular coupler joints subjected to tension. The joint adherends can be made of isotropic, orthotropic, or multilayer composite materials. This study presents the formulation of the mathematical model for stress analysis in coupler joints. Assumptions of an axisymmetric joint with linearly elastic adherends and adhesive materials are employed. A thin adhesive layer is considered such that only the out-of-plane adhesive stresses are concerned and are treated to be uniform through the layer thickness. Using elasticity theory and the newly developed finite-segmented method, stress distributions in both adherends and the adhesive can be evaluated. The influence of fiber angle in the cases of composite adherends and joint geometries are studied. The results provide a good guideline in designing adhesive-bonded cylindrical joints with isotropic and composite adherends under axial loads.
机译:许多研究已经研究了经受轴向载荷的粘合管状接头。然而,先前的分析研究仅限于具有单层各向同性或正交材料的关节,并且相应的数学模型非常复杂。因此,本文的目的是开发一种简化但综合模型,用于研究经受张力的粘合剂粘合的管状耦合器接头。关节粘附可以由各向同性,正交或多层复合材料制成。该研究介绍了耦合器关节中应力分析的数学模型的制定。采用具有线性弹性粘物和粘合材料的轴对称接头的假设。认为薄粘合剂层使得仅涉及平面外粘合剂应力并通过层厚度处理以均匀。使用弹性理论和新开发的有限分段方法,可以评估粘附剂和粘合剂中的应力分布。研究了纤维角在复合粘物和关节几何形状中的影响。结果在设计具有各向同性的粘合粘合的圆柱形接缝和轴向载荷下的同向载体中提供了良好的指导。

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