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Single Lap Joints with Rounded Adherend Corners: Stress and Strain Analysis

机译:具有圆形附着角的单膝关节:应力和应变分析

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摘要

One of the major difficulties in designing adhesive lap joints is the stress singularity present at the adherend corners at the ends of the overlap. One way to overcome this problem is to assume that the corners have a certain degree of rounding. The objective of the present study was to better understand the effect of the change in the geometry of theadherend corners on the stress distribution and, therefore, on the joint strength. Various degrees of rounding were studied and two different types of adhesives were used, one very brittle and another which could sustain a large plastic deformation. The study gives a detailed stress and strain distribution around the rounded adherends using the finite element method. The major finding is that the stresses or strains in the adhesive layer of a joint with rounded adherend corners are finite. In real joints, adherends generally have small rounded corners. Consequently, the model with small radius corners may be used to represent real adherends.
机译:设计粘性搭接接头的主要困难之一是在搭接末端的被粘物拐角处存在应力奇异性。克服此问题的一种方法是假设拐角具有一定程度的倒圆角。本研究的目的是更好地理解粘附角的几何形状变化对应力分布的影响,从而对接缝强度的影响。研究了各种程度的修圆,并使用了两种不同类型的粘合剂,一种非常脆,另一种可以承受较大的塑性变形。该研究使用有限元方法给出了圆形被粘物周围的详细应力和应变分布。主要发现是,带有圆角的被粘物角的接头的粘着层中的应力或应变是有限的。在真实的关节中,被粘物通常具有较小的圆角。因此,具有小半径角的模型可用于表示真实的被粘物。

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