Review on Mechanical Performance of Fibre-Reinforced Plastics in Marine Environments

IF 2.3 4区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES
Norman Osa-uwagboe, Vadim V. Silberschmidt, Emrah Demirci
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引用次数: 0

Abstract

Fibre-reinforced plastics (FRPs) are increasingly popular in marine applications, such as boats, offshore wind-power installations, as well as oil and gas offshore systems thanks to their high stiffness, light weight, and damage resistance. This paper aims to examine the recent developments in the investigation of the effects of moisture uptake on the mechanical performance of FRP for maritime applications, to identify the gaps in the literature, and to suggest likely future research directions in this area. While the review is limited to recent studies—within the last two decades, it discusses in detail the current advances in the experimental investigations of moisture uptake on critical mechanical performance including tensile, flexural, shear and viscoelastic properties, thus covering the major quasi-static and dynamic regimes of FRPs subjected to seawater exposure.

Abstract Image

纤维增强塑料在海洋环境中的机械性能综述
纤维增强塑料(FRP)具有刚度高、重量轻和抗破坏性强等优点,在船舶、海上风力发电装置以及石油和天然气海上系统等海洋应用中越来越受欢迎。本文旨在研究在海洋应用中吸湿对玻璃钢机械性能影响的最新进展,找出文献中的不足,并提出该领域未来可能的研究方向。虽然综述仅限于过去二十年内的最新研究,但它详细讨论了吸湿对关键机械性能(包括拉伸、弯曲、剪切和粘弹性能)影响的实验研究的最新进展,从而涵盖了玻璃钢暴露于海水中的主要准静态和动态状态。
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来源期刊
Applied Composite Materials
Applied Composite Materials 工程技术-材料科学:复合
CiteScore
4.20
自引率
4.30%
发文量
81
审稿时长
1.6 months
期刊介绍: Applied Composite Materials is an international journal dedicated to the publication of original full-length papers, review articles and short communications of the highest quality that advance the development and application of engineering composite materials. Its articles identify problems that limit the performance and reliability of the composite material and composite part; and propose solutions that lead to innovation in design and the successful exploitation and commercialization of composite materials across the widest spectrum of engineering uses. The main focus is on the quantitative descriptions of material systems and processing routes. Coverage includes management of time-dependent changes in microscopic and macroscopic structure and its exploitation from the material''s conception through to its eventual obsolescence.
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