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Bolted fibre-reinforced polymer flange joints for pipelines: A review of current practice and future challenges

机译:螺栓连接的纤维增强聚合物管道法兰接头:当前实践和未来挑战的回顾

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摘要

Metallic bolted flanges and pipes have both been increasingly replaced by fibre-reinforced polymer materials in many applications which deal with extreme harsh environments such as oil, chemical, marine, etc. This is not only due to the fibre-reinforced polymer material's resistance to the chemical reaction but also due to their inherent mechanical properties of high strength to weight ratio. However, very little research has been published regarding bolted flange joints made of fibre-reinforced polymer materials. Also, the availability of standards and relevant design codes are very limited for bolted fibre-reinforced polymer flange joints. Hence, the design guidelines, dimensional considerations and selection of fabrication methods for the bolted fibre-reinforced polymer flange joints have yet to be optimized fully. For instance, the ASME Boiler and Pressure Vessel Code, section X and ASME PCC-1-2013 appendix O or other similar standards do not include specific rules for the design of the bolted fibre-reinforced polymer flange joints. As a result, it is difficult to understand the consequences on the reliability of fibre-reinforced polymer flanges made with parametric variations and dimensional alterations. This has led the authors to carry out research to maximise the performance of the bolted fibre-reinforced polymer flange joints through a series of experimenters and numerical simulations. The present article will focus on the available techniques to manufacture the bolted fibre-reinforced polymer flanges along with the associated issues and possible challenges compared to metallic flanges.
机译:在许多用于极端恶劣环境(例如石油,化工,船舶等)的应用中,金属螺栓连接的法兰和管道都已越来越多地由纤维增强的聚合物材料代替。这不仅是由于纤维增强的聚合物材料对材料的抵抗力。化学反应也归因于其固有的高强度重量比机械性能。然而,关于由纤维增强的聚合物材料制成的螺栓法兰连接的研究很少。同样,螺栓连接的纤维增强聚合物法兰接头的标准和相关设计规范的可用性非常有限。因此,螺栓纤维增强的聚合物法兰接头的设计准则,尺寸考虑因素和制造方法的选择尚待充分优化。例如,《 ASME锅炉和压力容器规范》第X节和ASME PCC-1-2013附录O或其他类似标准不包括设计螺栓连接的纤维增强聚合物法兰接头的特定规则。结果,难以理解通过参数变化和尺寸变化制成的纤维增强的聚合物法兰的可靠性的后果。通过一系列的实验和数值模拟,作者进行了研究,以使纤维增强的聚合物法兰连接螺栓的性能最大化。本文将重点介绍制造螺栓连接的纤维增强聚合物法兰的可用技术,以及与金属法兰相比的相关问题和可能面临的挑战。

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