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首页> 外文期刊>International Journal of Adhesion & Adhesives >A three-dimensional finite-element stress analysis and strength evaluation of stepped-lap adhesive joints subjected to static tensile loadings
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A three-dimensional finite-element stress analysis and strength evaluation of stepped-lap adhesive joints subjected to static tensile loadings

机译:静态拉伸载荷作用下阶梯搭接接头的三维有限元应力分析和强度评估

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摘要

Stress distributions in stepped-lap adhesive joints subjected to static tensile loadings are analyzed using three-dimensional finite-element calculations. For establishing an optimum design method of the joints, the effects of the adhesive Young's modulus, adhesive thickness and number of steps on the interface stress distributions are examined. The results show that the maximum value of the maximum principal stress σ1 occurs at the edge of the adhesive interfaces. The maximum value of the stress σ1 decreases as the adhesive Young's modulus and number of steps increase and as the adhesive thickness decreases under static loadings. A method for estimating the joint strength under static loadings is proposed using interface stress distributions. For verification of the finite-element method calculations, experiments were carried out to measure the strains and the joint strengths under static loadings. Fairly good agreements were found between the numerical and the experimental results.
机译:使用三维有限元计算分析阶梯式搭接接头在静态拉伸载荷下的应力分布。为了建立最佳的接头设计方法,研究了粘合剂杨氏模量,粘合剂厚度和步数对界面应力分布的影响。结果表明,最大主应力σ1的最大值出现在粘合剂界面的边缘。应力σ1的最大值随着在静态载荷下的粘合剂杨氏模量和步数的增加以及粘合剂厚度的减小而减小。提出了一种利用界面应力分布来估算静载荷下接头强度的方法。为了验证有限元方法的计算,进行了实验以测量静态载荷下的应变和接头强度。在数值和实验结果之间找到了相当好的协议。

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