可生物降解天然纤维增强复合材料的力学性能和耐久性研究进展

IF 3.4 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Raviduth Ramful
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引用次数: 0

摘要

随着人们对过度城市化对环境影响的认识不断提高,在从建筑住房到城市基础设施等现代应用中,可以考虑使用具有较低隐含能量的天然纤维增强复合材料(NFRCs)等替代和更环保的材料,以促进可持续发展的概念。如何使NFRCs在使用寿命内具有较高的力学性能,同时在处置阶段具有满意的可降解性,是当前材料工程师面临的挑战之一。这项拟议的检讨研究主要涵盖可持续复合材料的最新进展,例如先进和可生物降解的NFRC。在第一部分中,综述了NFRC制造的关键方面,包括纤维和基质的选择,纤维的性能增强处理以及纳米结构对生物可降解复合材料的影响。在本文的第二阶段,讨论了纤维-基质相互作用及其相应的物理力学性能。概述了NFRCs的典型破坏模式,并提出了提高其断裂韧性的方法。最后,第三部分包括可生物降解NFRCs关键成分的耐久性和降解评估,即纤维增强、基质和界面部分。此外,对处理类似复合材料在环境中的影响进行了评估,并讨论了当今的回收技术。本研究列举的NFRCs的力学性能、耐久性和可降解性方面的进一步研究无疑将促进其在现代社会中更广泛的工程应用和集成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical performance and durability attributes of biodegradable natural fibre-reinforced composites—a review

With the rising awareness about the impact of excessive urbanization on the environment, alternative and more eco-friendly materials such as natural fibre-reinforced composites (NFRCs), which have lower embodied energy, can be considered in modern application ranging from construction housing to urban infrastructures in order to promote the concept of sustainable development. One of the current challenges faced by material engineers is to develop NFRCs with optimized durability performance which correspond to high mechanical attributes during their service lifetime while possessing satisfactory degradability trait in the disposal phase. This proposed review study principally covered the state-of-the-art progress made in the development of sustainable composite material such as advanced and biodegradable NFRC. In the first section, the review covered key aspects of NFRC fabrication including fibres and matrix selection, property-enhancing treatment for fibres and influence of nanostructures in biodegradable composites. In the second phase of this review, the fibre-matrix interaction and their corresponding physical and mechanical performance were discussed. The typical failure modes observed in NFRCs were outlined and means to improve their facture toughness were proposed. Finally, the third section comprised the durability and degradation assessment of key components of the biodegradable NFRCs, namely the fibre reinforcement, matrix and interface sections. Additionally, the impact of disposing of similar composite materials in the environment was assessed, and present-day recycling techniques were discussed. Further research on the mechanical performance, durability traits and degradability aspects of NFRCs as enumerated in this study will unquestionably promote their use and integration into a wider range of engineering applications in our modern society.

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CiteScore
8.60
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