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Acoustic emission study and strength analysis of crimped steel-composite joints under traction

机译:牵引作用下压接钢复合节的声发射研究及强度分析

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摘要

Integrated in composite electrical insulators, metal/fibreglass-reinforced-plastic (GRP) joints made of an epoxy rod reinforced with E-glass fibres and of two crimped steel end-fittings are investigated numerically and experimentally. Numerical stress and strain distributions through the bond during the crimping phase and under an axial tensile test are calculated with a solid 3D finite element model and the damage initiation in the composite is highlighted. The simulations are compared to experimental data obtained from several joint specimens tested under pulling on an experimental set-up equipped with strain gauges and an acoustic emission system. Good correlation between the finite element predictions and the test results is found. The numerical and experimental study is also completed with a sensitivity analysis of the main geometrical parameters of the joints.
机译:集成在复合电绝缘体中,通过数值和实验研究了由E-玻璃纤维增​​强的环氧棒和两个压接钢制末端接头制成的金属/玻璃纤维增​​强塑料(GRP)接头。使用实体3D有限元模型计算了在压接阶段和轴向拉伸试验过程中通过粘结的数值应力和应变分布,并突出了复合材料中的破坏起因。将模拟与从几个联合样本中获得的实验数据进行比较,这些样本是在配备了应变仪和声发射系统的实验装置上进行拉力测试的。发现有限元预测与测试结果之间具有良好的相关性。数值和实验研究还通过对接头主要几何参数的敏感性分析来完成。

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