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A parametric study on static behavior and load sharing of multi-bolt hybrid bonded/bolted composite joints

机译:多螺栓混合粘合/螺栓复合关节静态行为和负荷共用的参数研究

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摘要

The combination of two joining mechanisms - bonding and bolting - in a single hybrid joint may potentially result in a stronger and more durable joint than either of the separate constituents. Studies have shown that the load sharing between the adhesive and the bolt is a key parameter for such an improvement. The present work executes a parametric study on single-lap hybrid bonded/bolted composite joints with multiple bolts. Joints of five different geometric configurations are subjected to the static tensile loading. The experimental study is supported by modeling results. The study reveals a significant influence of the joint overlap length on the joint strength. The impact of the bolt positioning is less pronounced. Joint stiffness is shown to be mainly governed by the joint overlap length. The load sharing between the adhesive and the bolts is shown to be geometrydependent, i.e., facilitated by a shorter joint overlap length and smaller bolt-edge distance. The overlap area is shown to be a dominant factor for the strength improvement over that of the load sharing. However, providing that the overlap area is kept unchanged, enhanced load sharing leads to a higher joint strength, revealing their non-linear relationship.
机译:两个连接机构 - 粘合和螺栓的组合在单个混合接头中可能导致比单独的成分中的较强更耐用的关节。研究表明,粘合剂和螺栓之间的负载分布是这种改进的关键参数。目前的作品执行了用多个螺栓的单圈混合粘合/螺栓复合接头进行参数研究。对五种不同的几何构造的关节进行静态拉伸载荷。通过建模结果支持实验研究。该研究揭示了关节重叠长度对关节强度的显着影响。螺栓定位的影响不太明显。关节刚度被证明主要由关节重叠长度控制。粘合剂和螺栓之间的负载分布被示出为几何形状,即通过较短的关节重叠长度和较小的螺栓边缘距离而促进。重叠区域被认为是对负载共享的强度改善的主导因素。然而,提供重叠区域保持不变,增强的负载分配导致更高的关节强度,揭示了它们的非线性关系。

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