低温应用聚合物基复合材料气体渗透性综述

IF 2.3 3区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES Journal of Composite Materials Pub Date : 2024-01-27 DOI:10.1177/00219983241228550
Shuvam Saha, Rani W. Sullivan
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引用次数: 0

摘要

纤维增强聚合物基复合材料具有良好的可定制性、特定的机械性能和相对较低的热膨胀系数,因此越来越多地被考虑用于轻质低温压力容器。然而,要在低温燃料箱中充分利用 PMC,必须克服横向微裂纹和随后的低温燃料渗透方面的重大挑战。低温循环复合材料的气体渗透和微裂缝密度受其铺层、层厚、负载情况以及空隙和树脂富集区等制造缺陷的影响很大。在测量纯热或单轴热机械应力下疲劳复合材料的气体渗透性方面,已有大量研究。然而,研究结果表明,应在双轴热机械应力下测量气体渗透性,以正确衡量受损复合材料的泄漏特性。本文总结了百余篇论文的研究成果,涉及影响复合材料透气性的关键参数、循环测量复合材料透气性的适当测试方法、限制横向微裂纹演变的方法以及传统上用于制造全复合材料低温燃料箱的材料。研究表明,薄层和纳米填料增韧基体可显著改善低温循环复合材料的横向微裂纹抑制能力。
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A review on gas permeability of polymer matrix composites for cryogenic applications
Fiber-reinforced polymer matrix composites are increasingly considered for lightweight cryogenic pressure vessels due to their excellent combination of tailorability, specific mechanical properties, and relatively low coefficients of thermal expansion. However, significant challenges must be overcome to fully utilize PMCs for cryogenic fuel tanks in terms of transverse microcracking and subsequent permeation of cryogenic fuel. Gas permeation and microcrack densities of cryogenically cycled composites are highly influenced by their layup, ply thickness, load case, and manufacturing defects like voids and resin rich zones. There has been a significant amount of research on measuring gas permeation of composites fatigued under pure thermal or uniaxial thermo-mechanical stresses. However, results demonstrate that the gas permeability should be measured under biaxial thermo-mechanical stresses to properly gauge the leakage characteristics of damaged composites. This paper summarizes the results from over a hundred papers on the key parameters that influence the gas permeability of composites, appropriate testing methods to cycle composites for permeability measurement, methods to limit the evolution of transverse microcracks, and materials traditionally used for the fabrication of all-composite cryogenic fuel tanks. Thin plies and nanofiller-toughening of the matrix have been shown to provide significant improvements in transverse microcrack suppression within cryogenically cycled composites.
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来源期刊
Journal of Composite Materials
Journal of Composite Materials 工程技术-材料科学:复合
CiteScore
5.40
自引率
6.90%
发文量
274
审稿时长
6.8 months
期刊介绍: Consistently ranked in the top 10 of the Thomson Scientific JCR, the Journal of Composite Materials publishes peer reviewed, original research papers from internationally renowned composite materials specialists from industry, universities and research organizations, featuring new advances in materials, processing, design, analysis, testing, performance and applications. This journal is a member of the Committee on Publication Ethics (COPE).
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