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Experimental and numerical investigation of adhesively bonded single lap and thick adherents joints between pultruded GFRP composite profiles

机译:拉挤玻璃纤维增​​强复合材料型材之间单层搭接和厚壁粘结接头的实验和数值研究

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摘要

This paper presents the outcomes of an experimental and numerical study performed on epoxy bonded single lap joints (SLJs) and thick adherents' joints (TAJs) between glass fiber reinforced polymer (GFRP) composite flat profiles. For the experimental program, 30 specimens were prepared by varying the type of connection (SLJ, TAJ), the bond length (70, 100, 150 nun), the type of adhesives and their thicknesses (1, 2, 3 mm); they were then loaded in axial tension up to failure. The main issues that were investigated based on the experimental results are the specific failure modes, load-displacement behavior, stress-strain variation, bond-slip relations and the strain distribution along the bond length at different loading stages. The numerical simulations, based on 3D FEM analysis, provided results in good agreement with the experimental ones for both stress-strain behavior and strain distributions along the bond length.
机译:本文介绍了对玻璃纤维增​​强聚合物(GFRP)复合材料平面型材之间的环氧粘结单搭接接头(SLJ)和厚粘着剂接头(TAJ)进行的实验和数值研究的结果。对于实验程序,通过改变连接类型(SLJ,TAJ),粘结长度(70、100、150 nun),粘合剂的类型及其厚度(1、2、3 mm)制备了30个样品。然后将它们承受轴向张力直至失效。根据实验结果研究的主要问题是特定的破坏模式,载荷-位移行为,应力-应变变化,粘结-滑动关系以及在不同载荷阶段沿粘结长度的应变分布。基于3D FEM分析的数值模拟在沿键长方向的应力-应变行为和应变分布方面均与实验结果吻合良好。

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