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A study on the failure mode and load of the composite key joint

机译:复合键关节的失效模式与载荷研究

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The joining of composite materials has traditionally been achieved by adhesive bonding or mechanical fastening. Mechanical fastenings require little or no surface preparation, and are easy to inspect for joint quality. However, they require machining of holes that interrupt the fiber continuity and may reduce the strength of the adherend. We proposed the new composite key joint to minimize the fiber discontinuity and strength degradation of adherend. Mechanical key joints with three different d/t (slot depth to thickness) ratios and two different e/w (edge length to width) ratios were manufactured and tested. Carbon-epoxy unidirectional prepreg (USNI25) and plain weave prepreg (HPWI93) were used for the composite key joints. Tensile tests were performed on the composite key joints and their failure modes were evaluated. Finite element analyses for the mechanical key joints were performed and the stresses around the key slot were calculated. From the tests, it could be concluded that the failure load of the key joints was about two times larger than those of a mechanical joint for the investigated composite joints.
机译:传统上,复合材料的连接是通过粘合剂粘结或机械紧固实现的。机械紧固件需要很少或不需要表面处理,并且易于检查接头质量。但是,它们需要加工会打断纤维连续性并可能降低被粘物强度的孔。我们提出了新的复合材料关键接头,以最大程度地减少纤维间断和被粘物的强度降低。制造和测试了具有三种不同的d / t(槽深与厚度)比和两种不同的e / w(边缘长度与宽度)比的机械关键接头。碳-环氧单向预浸料(USNI25)和平纹预浸料(HPWI93)被用于复合材料关键接头。对复合材料关键接头进行拉伸测试,并评估其破坏模式。对机械钥匙接头进行了有限元分析,并计算了钥匙槽周围的应力。从测试中可以得出结论,对于所研究的复合接头,关键接头的失效载荷大约是机械接头的两倍。

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