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首页> 外文期刊>International Journal of Adhesion & Adhesives >Stress analysis and strength evaluation of scarf adhesive joints subjected to static tensile loadings
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Stress analysis and strength evaluation of scarf adhesive joints subjected to static tensile loadings

机译:承受静态拉伸载荷的围巾胶粘剂接头的应力分析和强度评估

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摘要

The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using three-dimensional finite-element calculations. The effects of adhesive Young's modulus, adhesive thickness and scarf angle in the adherend on the interface stress distributions are examined. As the results, it is found that the maximum value of the maximum principal stress occurs at the edge of the interfaces. The differences in the interface stress distributions between the 2-D and the 3-D FEM results are demonstrated. It is also observed from the 3-D FEM results that the maximum value of the maximum principal stress is the smallest when the scarf angle is around 60 degree, while it is around 52 degree in the 2-D FEM when the singular stress at the edges vanishes. In addition, the joint strength is estimated using the interface stress distribution obtained from the FEM calculations. For verification of the FEM calculations, experiments were carried out to measure the strengths and the strains in the joints under static tensile loadings using strain gauges. Fairly good agreements were observed between the 3-D FEM and the measured results for strains. Therefore, for the joint strength, the results remain conservative.
机译:使用三维有限元计算分析了静态拉伸载荷下围巾胶粘剂接头中的应力分布。研究了粘合剂杨氏模量,粘合剂厚度和被粘物的斜角对界面应力分布的影响。结果,发现最大主应力的最大值出现在界面的边缘。证明了2-D和3-D FEM结果之间的界面应力分布差异。从3-D有限元分析结果还可以看出,当斜角为60度时,最大主应力的最大值最小;而当应力为零时,二维有限元法中,最大主应力的最大值约为52度。边缘消失。另外,使用从FEM计算中获得的界面应力分布来估算接头强度。为了验证FEM计算,进行了实验以使用应变仪测量静态拉伸载荷下接头的强度和应变。在3-D FEM和菌株的测量结果之间观察到相当好的协议。因此,对于联合强度,结果仍然保守。

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