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ELASTIC-PLASTIC THERMAL AND RESIDUAL STRESS ANALYSIS OF ADHESIVELY BONDED SINGLE LAP JOINT

机译:胶粘单搭接接头的弹塑性热应力和残余应力分析

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摘要

In this work, an elastic-plastic thermal and residual stress analysis were performed for adhesively bonded single lap joint. For this purpose, thermoplastic composite adherents were bonded to each other with epoxy adhesive. Thermoplastic composite material was reinforced by steel-fibres, unidirectionally. Finite element method (FEM) was preferred to obtain thermal elastic and elastic-plastic stress distributions on single lap joint. Accordingly, modelling and solution processes were achieved using ANSYS software. So as to determine effects of uniform temperature loadings on thermal and residual stresses, different values of it were loaded on the joint, uniformly. Briefly, both thermal and residual thermal stresses were calculated under uniform temperature loading which was selected from 40 degrees C to 80 degrees C. According to obtained results different thermal expansion coefficients of composite adherents and adhesive layer caused thermal and residual stresses on adhesively bonded single lap joint due to applied uniform temperature loadings. Thermal stress values for x and y-directions are very different from each other owing to orthotropic material properties of thermoplastic composite. The magnitudes of elastic analyses results are higher than elastic-plastic analysis results. Contrary to elastic analysis results, elastic-plastic analysis results were nonlinear. Thermal and residual stresses are increased by increasing uniform temperature values, so the highest values were calculated when 80 degrees C. The plastic yielding was firstly come into being for 50 degrees C loading and it is expanded related to raising thermal loadings as nonlinear.
机译:在这项工作中,对粘合的单搭接接头进行了弹塑性热应力和残余应力分析。为此目的,热塑性复合粘合剂通过环氧树脂粘合剂彼此粘合。热塑性复合材料通过钢纤维单向增强。为了获得单搭接接头上的热弹性和弹塑性应力分布,首选有限元方法(FEM)。因此,使用ANSYS软件实现了建模和求解过程。为了确定均匀的温度载荷对热应力和残余应力的影响,将不同的温度值均匀地载荷在接头上。简而言之,在选择从40摄氏度到80摄氏度的均匀温度载荷下计算热应力和残余热应力。根据获得的结果,复合粘合剂和粘合剂层的不同热膨胀系数会导致粘合单圈的热应力和残余应力由于施加了均匀的温度载荷而产生的接头。由于热塑性复合材料的正交各向异性材料特性,x和y方向的热应力值彼此非常不同。弹性分析结果的幅度高于弹塑性分析结果。与弹性分析结果相反,弹塑性分析结果是非线性的。通过增加均匀温度值可以增加热应力和残余应力,因此在80摄氏度时可以计算出最大值。塑性屈服首先是在50摄氏度的载荷下产生的,并且随着热载荷的非线性化而扩展。

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