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Analyzing single-lap joints bonded with a brittle adhesive by an elastic meshless method

机译:通过弹性网状法分析用脆性粘合剂粘合的单圈接头

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Adhesive bonding is a widespread joining technique in the industry, namely aeronautical and automotive. However, the associated products often have complex and non-standard shapes. Numerical modeling, such as that based on the finite element method (FEM), is commonly applied for bonded joint design, although there are still limitations linked to the method. Meshless methods (MM) are a viable option to overcome some limitations of the FEM. However, these methods are still in development. In this work, a robust meshless method, the Natural Neighbor Radial Point Interpolation Method (NNRPIM), was applied to the analysis of adhesive joints. First, experimental data of single-lap joints (SLJ) corresponding to four overlap lengths (Lo) and a brittle adhesive were measured as a benchmark. Then, all the joint geometries were simulated utilizing the FEM and NNRPIM methodologies. The NNRPIM proved to be a good alternative to the FEM, providing similar strength prediction with differences less than 3% between them. Moreover, the stress distribution curves were compared, and differences of 6% in the peak shear stresses were found. In conclusion, the NNRPIM provides accurate results and could be utilized for further study of adhesively bonded joints.
机译:粘合剂粘合是业内广泛的连接技术,即航空和汽车。然而,相关产品通常具有复杂和非标准形状。数值建模,例如基于有限元方法(FEM),通常应用于粘合的关节设计,尽管仍然存在与该方法相关的限制。无网格方法(mm)是克服有限元素的一些限制的可行选择。但是,这些方法仍在开发中。在这项工作中,应用了一种鲁棒的无网格方法,自然邻辐射点插值方法(NNRPIM)应用于粘合剂接头的分析。首先,测量对应于四个重叠长度(LO)和脆性粘合剂的单圈接头(SLJ)的实验数据作为基准。然后,利用FEM和NNRPIM方法模拟所有关节几何形状。 NNRPIM被证明是FEM的良好替代品,提供了类似的强度预测,差异小于3%。此外,比较了应力分布曲线,发现了峰值剪切应力中的6%的差异。总之,NNRPIM提供准确的结果,可用于进一步研究粘合接头。

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