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Evaluation of Single-Lap and Block Shear Test Methods in Adhesively Bonded Composite Joints

机译:粘粘合复合关节中单圈和块剪切试验方法的评价

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摘要

Adhesive bonding is increasingly being used for composite structures, especially in aerospace and automotive industries. One common joint configuration used to test adhesive strength is the single-lap shear joint, which has been widely studied and shown to produce significant normal (peeling) stresses. When bonding composite structures, the normal stresses are capable of causing delamination before the adhesive bond fails, providing inconclusive engineering data regarding the bonding strength. An alternative test is the block shear joint, which uses a shorter sample geometry and a compressive-shear loading to reduce normal stresses. Analytical models proposed by Goland and Reissner and Hart-Smith are used to compare the edge-bending moment for the two joint configurations. The stress distributions along the bondline are also compared using finite element analysis. Experimental tests are conducted to evaluate these analyses and the failure modes of each configuration are recorded. Block shear samples demonstrate a joint strength over 100% higher than single-lap shear specimen bonded with the same adhesive material. The lower joint strength measured in single-lap shear is found to be potentially misleading due to delamination of the composite adherend.
机译:粘合剂互补越来越多地用于复合结构,特别是在航空航天和汽车工业中。用于测试粘合强度的一个常见的联合配置是单圈剪切接头,已经广泛研究并显示出显着的正常(剥离)应力。当粘合复合结构时,正常应力能够在粘合剂粘合剂发生故障之前引起分层,从而提供关于粘合强度的不确定的工程数据。替代测试是块剪切接头,其使用较短的样品几何形状和压缩剪切负载来降低正常应力。 Goland和Reissner和Hart-Smith提出的分析模型用于比较两个关节配置的边缘弯矩。使用有限元分析也比较沿键合的应力分布。进行实验测试以评估这些分析,并记录每个配置的故障模式。块剪切样品表现出比与相同粘合材料粘合的单圈剪切样品高出100%的关节强度。由于复合粘物的分层,发现在单圈剪切中测量的较低关节强度可能误导。

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