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Numerical analysis of stresses in double-lap adhesive joint under thermo-mechanical load

机译:热机械载荷下双圈粘合接头应力的数值分析

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摘要

A numerical study for the double-lap adhesive joint made of similar adherends subjected to tensile and thermal loads is presented. A novel displacement coupling conditions which are able to correctly represent monoclinic materials (off-axis layers of composite laminates) are used to build a comprehensive numerical model. Two types of double-lap joints are considered in this study: metal?metal and composite-composite. In case of composite laminates, four lay-ups are evaluated: unidirectional ([08](T) and [908](T)) and quasi-isotropic laminates ([0/45/90/ 45](S) and [90/45/0/-45](S)). The effect of different parameters (adherend stiffness, ply stacking sequence, adherend thickness, one-step or two-step manufacturing of the joint) on peel and shear stress distribution in the middle of the adhesive is studied. The comparison of the behaviour of single-lap and double-lap joint in relation to these parameters is made. The maximum peel and shear stress at the ends of the overlap with respect to the axial modulus of the adherends are presented in a form of the master curves. The analyses of results show that: the maximum peel and shear stress concentration at the overlap ends is reduced with the increase of the axial modulus of the adherend; the stress distribution in the adhesive layer can be improved (lower stress concentrations and level-out the curve) by changing the fibre orientation (which affect the stiffness) in plies connected to the adhesive layer.
机译:提出了一种由对抗拉和热负荷进行类似的粘物制成的双圈粘合剂的数值研究。一种能够正确代表单斜晶材料(复合层压板的轴轴层)的新型位移耦合条件用于构建综合数值模型。本研究中考虑了两种类型的双圈接头:金属?金属和复合材料复合材料。在复合层压板的情况下,评估四个敷积:单向([08](t)和[908](t))和准各向同性层压材料([0/45/90/45](s)和[90] / 45/0 / -45](s)))。研究了不同参数(粘附刚度,层堆叠序列,接头的粘附厚度,一步或两步)在粘合剂中间剥离和剪切应力分布上的影响。制作了单圈和双圈关节与这些参数相关的行为的比较。相对于被粘物的轴模的重叠端部的最大剥离和剪切应力以主曲线的形式呈现。结果的分析表明:随着粘物的轴向模量的增加,重叠端的最大剥离和剪切应力浓度降低;通过改变连接到粘合剂层的帘布层的纤维取向(影响刚度),可以改善粘合剂层中的应力分布(降低应力浓度和水平曲线)。

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