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A comprehensive review on structural joining techniques in the marine industry

机译:船舶工业结构连接技术综述

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摘要

Exposure to aggressive environmental conditions and specific loads necessitate precise material selection and manufacturing techniques. Techniques such as overlamination, welding, adhesive bonding, mechanical joining, and hybrid joining are currently used to join different marine structures components. This review groups the published investigations to cover a wide range of geometries, materials, and loading types and organizes them in a chronological context. Comparing joining methods shows that each technique has a considerable potential to be employed in the various marine industry sectors corresponding to the desired application. Besides the significant strength, poor fatigue life is a concerning issue for welding. One of the most crucial challenges in mechanical fastening is drilling holes in composite materials that damages the fibres. Adhesive bonding provides superior advantages such as higher strength to weight ratio and fatigue life, whilst the susceptibility to environmental conditions must be considered. To overcome the drawbacks of each approach, the hybrid joining technique is introduced which combines two different joining methods to achieve the optimum performance. To have the most durable, and reliable structure, major criteria such as the structure application, the fabrication process, and the tolerance of adverse environment must be considered to design the marine structures.
机译:暴露在恶劣的环境条件和特定负载下,需要精确的材料选择和制造技术。目前,包覆层压、焊接、粘合剂粘接、机械连接和混合连接等技术用于连接不同的海洋结构组件。这篇综述对已发表的研究进行了分组,以涵盖广泛的几何形状、材料和载荷类型,并按时间顺序进行组织。比较连接方法表明,每种技术都具有相当大的潜力,可以应用于与所需应用相对应的各个海洋工业部门。除了强度高之外,疲劳寿命差也是焊接的一个令人担忧的问题。机械紧固中最关键的挑战之一是在复合材料上钻孔,从而损坏纤维。胶粘剂粘接具有更高的强度重量比和疲劳寿命等优越优势,同时必须考虑对环境条件的敏感性。为了克服每种方法的缺点,引入了混合连接技术,该技术结合了两种不同的连接方法,以实现最佳性能。为了拥有最耐用、最可靠的结构,在设计海洋结构时必须考虑结构应用、制造工艺和对不利环境的耐受性等主要标准。

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