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首页> 外文期刊>Current Analytical Chemistry >Nanocrystalline Cellulose as Reinforcement for Polymeric Matrix Nanocomposites and its Potential Applications: A Review
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Nanocrystalline Cellulose as Reinforcement for Polymeric Matrix Nanocomposites and its Potential Applications: A Review

机译:纳米晶纤维素作为聚合物基质纳米复合材料及其潜在应用的增强:综述

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摘要

Background: The usage of natural fibres as reinforcement in bioplastic polymer composite has garnered attention during the last few decades. This is due to limitations of biodegradable polymer-based materials which have an intractable nature, poor water-sensitivity, poor mechanical strength and are brittle. Natural fibres are preferred as they can be obtained naturally, be safely collected and can save costs compared to glass fibres. Moreover, natural fibres can be used to make various products including filters, brushes, mats, cushions, rope and shelter for fish breeding. However, many waste products are generated from fibres and fruits. Therefore, to reduce waste produced, many experiments have been conducted with the aim of maximizing the product while minimizing waste. Many studies focus on bionanocomposites, which are used with natural fibres due to their abundance and potential for replacing carbon fibre and fibresglass in the future. Nanocrystalline cellulose (NCCs) serves as a promising candidate for bionanocomposite due to its nano-scale cellulose fibre composition, high strength and stiffness, low weight and biodegrability, renewability and its production and application in the development of composite materials. Therefore, the aim of this paper is to review research related to NCCs and its various applications in polymer reinforcement.
机译:背景:在过去几十年中,生物塑料聚合物复合材料中的增强作为增强的天然纤维的用途。这是由于具有顽固性质,水敏感性差,机械强度差,机械强度差和脆性的基于可生物降解的聚合物基材料的限制。天然纤维是优选的,因为它们可以自然地获得,可以安全收集,与玻璃纤维相比可以节省成本。此外,天然纤维可用于制作各种产品,包括过滤器,刷子,垫子,垫子,绳索和庇护所供鱼类繁殖。然而,许多废物由纤维和水果产生。因此,为了减少废物产生的废物,已经进行了许多实验,目的是最大化产品,同时最小化浪费。许多研究专注于脱硫复合材料,由于它们在未来替代碳纤维和纤维玻璃的丰富和潜力,与天然纤维一起使用。纳米晶纤维素(NCCs)作为其纳米级纤维素纤维组合物,高强度和刚度,重量低,可生物降解,可再生性及其生产以及在复合材料的发展中的生产和应用。因此,本文的目的是审查与NCCS相关的研究及其在聚合物增强中的各种应用。

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