纤维增强聚合物复合材料综述:从原材料到应用、回收和废物管理

IF 33.6 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Bibekananda De , Madhab Bera , Debashish Bhattacharjee , Bankim Chandra Ray , Subrata Mukherjee
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引用次数: 0

摘要

纤维增强聚合物(FRP)复合材料因其卓越的性能和易于制造的特点,在众多应用中取代金属发挥了至关重要的作用。原材料、设计灵活性、微观结构、耐久性和先进的制造技术使其应用更加多样化。然而,玻璃钢复合材料需要消耗大量的合成聚合物材料和纤维,这给回收利用和废物管理带来了严峻挑战。大多数高性能玻璃钢复合材料都以热固性聚合物材料为基础,而这种材料是不可回收的。因此,人们开始对热固性玻璃钢复合材料的回收利用进行基础研究。本综述全面研究了玻璃钢复合材料所用的原材料及其应用和废物管理,并展望了未来。综述深入探讨了玻璃钢复合材料的原材料化学及其合成和提取技术、制造、界面化学、结构分析和微观结构特征。报告还重点介绍了玻璃钢复合材料作为金属替代品在各种应用领域的最新进展以及面临的挑战。此外,该综述还特别强调了玻璃钢复合材料的 Vitrimers、废物管理和生物降解。最后,还批判性地讨论了玻璃钢复合材料在储氢和其他未来应用中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comprehensive review on fiber-reinforced polymer composites: Raw materials to applications, recycling, and waste management

Fiber-Reinforced Polymer (FRP) composite has played a crucial role in replacing metals in numerous applications due to its superior properties and ease of manufacturing. Raw materials, design flexibility, microstructure, durability, and advanced fabrication techniques have further diversified its applications. However, consumption of a huge amount of synthetic polymeric materials and fibers in FRP composites poses a serious challenge to recycling and waste management. Most of the high-performance FRP composites are based on thermoset polymeric materials, which are non-recyclable. Therefore, fundamental research has been initiated on recycling of thermoset-based FRP composites. This review provides a comprehensive study of raw materials used for FRP composites and their applications and waste management, along with a future perspective. The review provides an insight into the chemistry of raw materials and techniques of their synthesis and extraction, fabrication, interface chemistry, structural analysis, and microstructural characterizations of FRP composites. It also focusses on the recent progress of FRP composites as an alternative to metals for various applications and the challenges faced. In addition, the review offers a special emphasis on Vitrimers, waste management, and biodegradation of FRP composites. Finally, the role of FRP composites for hydrogen storage and other futuristic applications is critically discussed.

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来源期刊
Progress in Materials Science
Progress in Materials Science 工程技术-材料科学:综合
CiteScore
59.60
自引率
0.80%
发文量
101
审稿时长
11.4 months
期刊介绍: Progress in Materials Science is a journal that publishes authoritative and critical reviews of recent advances in the science of materials. The focus of the journal is on the fundamental aspects of materials science, particularly those concerning microstructure and nanostructure and their relationship to properties. Emphasis is also placed on the thermodynamics, kinetics, mechanisms, and modeling of processes within materials, as well as the understanding of material properties in engineering and other applications. The journal welcomes reviews from authors who are active leaders in the field of materials science and have a strong scientific track record. Materials of interest include metallic, ceramic, polymeric, biological, medical, and composite materials in all forms. Manuscripts submitted to Progress in Materials Science are generally longer than those found in other research journals. While the focus is on invited reviews, interested authors may submit a proposal for consideration. Non-invited manuscripts are required to be preceded by the submission of a proposal. Authors publishing in Progress in Materials Science have the option to publish their research via subscription or open access. Open access publication requires the author or research funder to meet a publication fee (APC). Abstracting and indexing services for Progress in Materials Science include Current Contents, Science Citation Index Expanded, Materials Science Citation Index, Chemical Abstracts, Engineering Index, INSPEC, and Scopus.
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