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Investigation of mode III fracture behaviour in bonded pultruded GFRP composite joints

机译:拉挤玻璃纤维增​​强复合材料复合材料节点III型断裂行为的研究

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In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonded pultruded fibreglass composite joints is presented. Three types of specimen were considered, which differ for the fibres orientation of the bonded surfaces. The analysed angular orientations are: parallel (0 degrees-0 degrees), inclined (0 degrees-45 degrees), and perpendicular (0 degrees-90 degrees). The experimental investigation was realized by using the recently proposed torque shells test (TST). Numerical analyses, based on Finite Element Method (FEM), were performed in order to model a cohesive law of the adhesive interface. A minimization algorithm was also used for identification of cohesive zone model (CZM) parameters by comparing numerical and experimental outcomes. The results show how the TST provides with an almost pure mode III fracture loading condition when the adherends are non-isotropic materials.
机译:在这项工作中,对拉挤玻璃纤维复合材料接头的纯III型断裂韧性进行了数值实验表征。考虑了三种类型的样品,它们在粘合表面的纤维取向上有所不同。分析的角度方向为:平行(0度-0度),倾斜(0度-45度)和垂直(0度-90度)。通过使用最近提出的扭矩壳试验(TST)实现了实验研究。为了模拟粘合剂界面的内聚规律,进行了基于有限元方法(FEM)的数值分析。通过比较数值结果和实验结果,最小化算法还用于识别内聚区模型(CZM)参数。结果表明,当被粘物为非各向同性材料时,TST如何提供几乎纯的III型断裂载荷条件。

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