Safety of Aircraft Structures in the Context of Composite Element Connection

R. Bielawski, W. Rządkowski, Michał Kowalik, M. Kłonica
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引用次数: 10

Abstract

Recently, there has been a growing trend towards an ever greater use of composite materials in aircraft structures. This necessitates a search for effective ways of joining these materials. The desirable characteristics of such joints are predominantly high strength and low mass, both of which are features offered by rivet nuts. The study was conducted on one type of glass fabric material, from which two types of composite specimens were prepared. Each specimen used the same type of fibre of the same number of 3 layers, yet of different lay-up. Specimens were joined with aluminium alloy and steel rivet nuts to produce single and multi-row parallel models of riveted joints for further testing and analysis. The specimens were clamped in the grips of tensile machine and subjected to a tensile strength test. In the work, the course of the forces in the rivet nuts joint and the failure modes and effects of joint failure were analysed. The distribution of vertical displacement was examined according to the joint material and two fibre orientation variants. To determine the distribution of displacements, the FE (Finite Element) method was used. Upon completion of the experimental stage, the obtained results were subjected to comparative analysis.
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复合元件连接下飞机结构的安全性
近年来,复合材料在飞机结构中的应用日益广泛。这就需要寻找连接这些材料的有效方法。这种接头的理想特性主要是高强度和低质量,这两个特性都是铆钉螺母提供的。以一种玻璃织物材料为研究对象,制备了两种复合材料试样。每个样品使用相同类型的纤维,相同数量的3层,但不同的铺设。用铝合金和钢铆钉螺母将试件连接在一起,形成单排和多排铆接连接并联模型,以供进一步测试和分析。将试样夹在拉伸机的握把中,进行拉伸强度试验。在工作中,分析了铆钉螺母接头受力过程及接头破坏的形式和影响。根据接头材料和两种纤维取向的变化,考察了垂直位移的分布。为了确定位移的分布,采用了有限元法。实验阶段完成后,对所得结果进行对比分析。
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