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首页> 外文期刊>Periodica polytechnica >Experimental and Numerical Failure Analysis of Adhesive Joint of Glass Fiber Reinforced Polymer Composite
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Experimental and Numerical Failure Analysis of Adhesive Joint of Glass Fiber Reinforced Polymer Composite

机译:玻璃纤维增​​强聚合物复合材料胶接接头的实验与数值失效分析

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The adhesive joint is the most widely used joining technique of thermoset composite structures. Analysis of the failure of adhesive joints of composite structures has a high importance due to its significance in industrial applications such as automobile or autobus bodies. In this paper we performed experimental and numerical analysis of a glass fiber reinforced, vinyl-ester matrix composite bonded with a methacrylate adhesive. The critical energy release rate in normal loading direction obtained from standard double cantilever beam test is used as input data in finite element simulations, in which the failure process is modeled by using cohesive zone material. Results of interface elements with exponential and standard contact elements with bilinear cohesive behavior are compared. The use of interface elements is numerically robust, convergence is reached faster, but identical mesh between the parts is needed. It can be a good alternative when simulating sub-models. When using standard contact elements, the robustness needs contact stabilization, however this method does not need identical mesh and it also allows the use of shell elements, therefore it can be used on a full-structure scale with high efficiency.
机译:粘合接头是热固性复合结构使用最广泛的连接技术。由于复合结构在汽车或汽车车身等工业应用中具有重要意义,因此对复合结构的粘合接头失效进行分析非常重要。在本文中,我们对用甲基丙烯酸酯粘合剂粘合的玻璃纤维增​​强的乙烯基酯基复合材料进行了实验和数值分析。通过标准双悬臂梁测试获得的法向载荷方向上的临界能量释放速率用作有限元模拟中的输入数据,在有限元模拟中,使用内聚区材料对失效过程进行建模。比较具有指数关系的界面元素和具有双线性内聚行为的标准接触元素的结果。接口元素的使用在数值上很稳定,收敛速度更快,但零件之间需要相同的网格。当模拟子模型时,它可能是一个很好的选择。当使用标准接触元件时,坚固性需要接触稳定,但是此方法不需要相同的网格,并且还允许使用壳单元,因此可以在全结构规模上高效使用。

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