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首页> 外文期刊>The Journal of Adhesion >Strength prediction of adhesively bonded single lap joints with the eXtended Finite Element Method
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Strength prediction of adhesively bonded single lap joints with the eXtended Finite Element Method

机译:用延伸有限元法的粘接单圈接头的强度预测

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摘要

Because of a planar load introduction, a high strength over weight ratio, avoidance of holes, corrosion resistance and component reduction, adhesively bonded joints attract increasing attention in lightweight construction. Nonetheless, a reliable prediction of the joints' behaviour in terms of stress and strength is still a tremendous challenge. In this study the eXtended Finite Element Method (XFEM) in combination with cohesive behaviour is used to model crack growth under quasi-static loading. The objective of this work is to study the influence of different continuum mechanical material models for the adhesive on XFEM strength predictions. It will be evaluated whether the strength prediction of joints mainly loaded in shear is more accurate with a high sophisticated material model. Therefore, strength predictions of Single Lap Joints (SLJ) with thick aluminium adherends are performed. Herein, digital image correlation (DIC) data recorded during experimental tests are used to assess the material models in combination with the derived material parameters. Furthermore, with the experimental results the performed strength predictions are evaluated. It could be revealed that XFEM in combination with a suitable yield criterion and appropriate material parameters is a valid technique for the strength prediction of lap shear joints since the variance to the experiments is less than 1 %.
机译:由于平面载荷引入,高强度超过重量比,避免孔,耐腐蚀性和成分减少,粘接接头在轻质结构中吸引了越来越长的关注。尽管如此,在压力和力量方面对关节行为的可靠预测仍然是一个巨大的挑战。在这项研究中,扩展有限元方法(XFEM)与粘性行为组合用于模拟准静态载荷下的裂纹增长。这项工作的目的是研究不同连续um机械材料模型对XFEM强度预测的粘合的影响。将评估主要装载剪切的关节的强度预测是否具有高复杂的材料模型更准确。因此,进行具有厚铝粘物的单圈关节(SLJ)的强度预测。这里,在实验测试期间记录的数字图像相关(DIC)数据用于评估材料模型与衍生材料参数组合。此外,通过实验结果,评估所执行的强度预测。可以揭示XFEM与合适的收益率准则和适当的材料参数组合是LAP剪切接头的强度预测的有效技术,因为实验的差异小于1%。

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