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Single lap joint strength prediction using the radial point interpolation method and the critical longitudinal strain criterion

机译:基于径向点插值法和临界纵向应变准则的单搭接接头强度预测

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摘要

Adhesive joining is currently a very popular joining method. This increases the necessity for better strength prediction tools to aid in the design of these joints. Currently, Cohesive Zone Modeling (CZM) is the most popular method to study joint strength. However, CZM requires traction-separation laws, which define the adhesive behavior, and these are dependent on the adhesive thickness (t_A). This means that, when using CZM, the traction separation law parameters have to be measured multiple times to predict the strength of joints with different t_A. The recently proposed Critical Longitudinal Strain (CLS) criterion is a criterion based on continuum mechanics, which was previously used with the Finite Element Method (FEM) to predict the strength of Single Lap Joints (SLJ). The use of meshless methods to predict the strength of adhesive joints is scarce and the CLS criterion has never been used with the Radial Point Interpolation Method (RPIM). In this work, the CLS criterion was used with the RPIM to determine the strength of SLJ bonded with three different adhesives. The strength predictions with this approach were accurate for the three adhesives, which ranged from brittle to highly ductile.
机译:胶粘连接是当前非常流行的连接方法。这增加了使用更好的强度预测工具来辅助设计这些接头的必要性。当前,内聚区建模(CZM)是研究接头强度的最流行方法。但是,CZM需要牵引力-分离法则,该法则定义了粘合剂的行为,并且取决于粘合剂的厚度(t_A)。这意味着,在使用CZM时,必须多次测量牵引力分离定律参数,以预测t_A不同的接头的强度。最近提出的临界纵向应变(CLS)准则是基于连续力学的准则,该准则先前已与有限元方法(FEM)一起用于预测单膝关节(SLJ)的强度。很少使用无网格方法来预测粘合接头的强度,并且从未使用径向点插值方法(RPIM)来使用CLS标准。在这项工作中,CLS准则与RPIM一起使用,以确定用三种不同粘合剂粘合的SLJ的强度。这种方法对三种胶粘剂的强度预测是准确的,三种胶粘剂的范围从脆性到高韧性。

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