Fracture behavior and strength of stepped-lap bonded joint with adhesive resin under tensile loading

K. Mori, H. Isono, T. Sugibayashi
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引用次数: 1

Abstract

Nonlinear fracture behavior of stepped-lap bonded joints is studied. The joints used have adherends of eight kinds of metals: three of carbon steel, four of aluminum alloy and one of brass. The joints also have various thicknesses, lap lengths and step numbers. The effect of Young's modulus and yield strength of adherend material on the joint strength is calculated by means of elastoplastic finite-element analysis. It is found that the strength of the joint which yields at an adherend corner is nearly equal to the yield strength of the adherend material, because the displacement of the adhesive layer increases abruptly after the adherend yield and exceeds the layer's deformation capacity. The joint strength diagrams obtained by the strength prediction method applying our adhesion criteria show good agreement with the experimental results for all currently available joints having various dimensions and materials.
粘结树脂阶梯搭接接头在拉伸载荷下的断裂行为及强度
研究了阶梯搭接接头的非线性断裂行为。所使用的接头有八种金属的附着物:三种碳钢,四种铝合金和一种黄铜。接头也有不同的厚度、搭接长度和步长。采用弹塑性有限元分析方法计算了粘结材料的杨氏模量和屈服强度对接头强度的影响。研究发现,在粘接角处屈服的接头强度与粘接材料的屈服强度几乎相等,因为粘接屈服后,粘接层的位移突然增大,超过了粘接层的变形能力。应用本文提出的强度预测方法得到的接头强度图与试验结果吻合良好,适用于所有现有的不同尺寸和不同材料的接头。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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