首页> 外文会议>2007 Beijing International Bonding Technology Symposium 2nd Asian Conference on Adhesion >Two-Dimensional Stress Analysis of Adhesive Butt Joints Filled With Elastic Circular Fillers in an Adhesive Subjected to Static External Bending Moments
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Two-Dimensional Stress Analysis of Adhesive Butt Joints Filled With Elastic Circular Fillers in an Adhesive Subjected to Static External Bending Moments

机译:承受静态外弯矩的胶粘剂中充满弹性圆形填料的对接接头的二维应力分析

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This paper dealt with a two-dimensional stress analysis of adhesive butt joints filled with elastic circular fillers in an adhesive subjected to external bending moments. Similar adherends and an adhesive including some elastic circular fillers were replaced with finite strips in the analyses. Stress distributions in the adhesive joints were analyzed exactly using the two-dimensional theory of elasticity and the iteration method. The effects of stiffness, location of fillers and number of fillers on the interfaces stress distributions and around the fillers were shown in the numerical calculations. It was seen that as an amount of number of fillers increased, the stiffness of filler increased and the location of fillers approached the edge of interface, the strength of joints was more improved. For verification of the analyses, experiments were carried out to measure the strains. The analytical results were in fairly good agreements with the experimental ones. In addition, the analytical results were also compared with those obtained from the 2-D and 3-D FEM calculations. Fairly good agreements were seen among the analytical, the 2-D and 3-D FEM results. However, it was observed that the difference in the surface stress distribution between the present analysis and 3-D FEM was substantial due to the stress singularity. Rupture tests were conducted, and joint strengths were found to be improved by adding the fillers into the adhesives.
机译:本文研究了在外部弯矩作用下,粘合剂中填充有弹性圆形填料的对接接头的二维应力分析。在分析中,将相似的被粘物和包括一些弹性圆形填充物的粘合剂替换为有限的条带。使用二维弹性理论和迭代方法,精确地分析了胶接点中的应力分布。数值计算显示了刚度,填料位置和填料数量对界面应力分布和填料周围的影响。可以看出,随着填充物数量的增加,填充物的刚度增加,填充物的位置接近界面的边缘,接头的强度得到了更大的提高。为了验证分析,进行了实验以测量菌株。分析结果与实验结果相当吻合。此外,还将分析结果与从2-D和3-D FEM计算获得的结果进行了比较。在分析,2-D和3-D FEM结果之间可以看到相当好的协议。但是,可以观察到,由于应力奇异性,本分析与3-D FEM之间的表面应力分布差异很大。进行了破裂测试,发现通过将填充剂添加到粘合剂中可以改善接合强度。

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