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The Interference-Fit Bolted Joining of Hybrid Metal/Composite

机译:混合金属/复合材料的干涉配合螺栓连接

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Joints represent potential weak points in the structure, the design of the overall structure tends to follow from the design of the joint. To date, metal/composite joints are general in current aircraft structure. Some of the reasons for lower joint efficiency in composites are: brittleness which means little stress relief around the highest loaded holes, anisotropy which leads to higher stress concentration factors, low transverse strength, susceptibility to delamination, and sensitivity to environmental conditions. All of these factors together with the complexity of composite failure modes, make the analysis and design of composite joints far more complex than that of metallic joints. Fatigue failure is the root causes which make aircraft unserviceable. 75-80% of fatigue failures occur in the joints of structure, therefore researching joints is very important for improving aircraft life. Much effort has been put into solving the technical challenge for composite bolted joints. In this study the interference-fit bolted joining of composite/metal hybrid has been studied. Composite and metal plates were purchased and clipped. Fasteners for interference-fit were manufactured, and the methods of drilling were researched. Composite/metal hybrid joints with different interference were manufactured by electromagnetic riveting technology. Then fatigue test of these joints were carried out. The test results presented in this paper indicated that suitable interference can improve the fatigue life of composite/metal hybrid joints. Interference of 0.5%~1.5% is more suitable for composite joints and 1.5%~2.5% can all improve metal/composite joints fatigue life more than doubled.
机译:关节代表了结构中潜在的弱点,整个结构的设计趋于遵循关节的设计。迄今为止,金属/复合材料接头在当前飞机结构中很普遍。降低复合材料接头效率的一些原因是:脆性意味着在最大载荷孔周围应力释放不大;各向异性导致较高的应力集中系数;横向强度低;易分层;对环境条件敏感。所有这些因素以及复合材料破坏模式的复杂性,使得复合材料接头的分析和设计远比金属接头复杂。疲劳故障是导致飞机无法使用的根本原因。 75-80%的疲劳失效发生在结构的接头处,因此研究接头对提高飞机寿命非常重要。为了解决复合螺栓连接的技术难题,已经付出了很多努力。在这项研究中,对复合材料/金属混合材料的过盈配合螺栓连接进行了研究。购买了复合板和金属板并进行了剪裁。制造了用于过盈配合的紧固件,并研究了钻孔方法。通过电磁铆接技术制造了具有不同干扰的复合材料/金属混合接头。然后对这些接头进行疲劳测试。本文提出的测试结果表明,适当的干涉可以改善复合材料/金属混合接头的疲劳寿命。 0.5%〜1.5%的干扰更适合于复合材料接头,而1.5%〜2.5%的干扰都可以使金属/复合材料接头的疲劳寿命提高一倍以上。

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