A comprehensive overview of conventional and bio-based fillers for rubber formulations sustainability

IF 7.1 3区 材料科学 Q1 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Mehran Dadkhah, Massimo Messori
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引用次数: 0

Abstract

In recent years, there has been a significant increase in literature regarding the development of sustainable rubber composites. This is due to the widespread use of rubber and the need to transition towards a circular economy, which addresses environmental concerns such as global warming and pollution. Extensive research has been conducted to replace conventional fillers like silica and petroleum-based fillers in rubber composites with eco-friendly and sustainable alternatives, namely bio-based fillers. These biofillers present diverse fundamental characteristics, making them promising substitutes for carbon black or inorganic mineral-based fillers, reducing reliance on petroleum. They possess biodegradable properties, resulting in a reduced environmental footprint, as well as lower density and cost compared to conventional counterparts. Furthermore, their unique properties, such as high specific strength and stiffness, render them well-suited for various rubber applications. The performance of reinforced rubber composites is influenced by factors including the matrix polymer, as well as the source, size, shape, chemical composition, and volume fraction of fillers. Rubber composites incorporating biofillers offer the dual advantages of economic efficiency and environmental sustainability. This article provides a comprehensive review of recent research in rubber composite development, with a specific focus on utilizing various fillers. Additionally, it examines the characterization of both conventional and bio-based fillers and their effects on the behaviour and performance of rubber composites, including morphology, thermal properties, and mechanical properties.

全面概述橡胶配方中的传统和生物基填料的可持续性
近年来,有关开发可持续橡胶复合材料的文献显著增加。这是由于橡胶的广泛使用和向循环经济转型的需要,循环经济可解决全球变暖和污染等环境问题。为了用生态友好和可持续的替代品(即生物基填料)取代橡胶复合材料中的传统填料(如二氧化硅和石油基填料),人们进行了广泛的研究。这些生物填料具有不同的基本特性,因此有望替代炭黑或无机矿物填料,减少对石油的依赖。它们具有可生物降解的特性,从而减少了对环境的影响,而且密度和成本也低于传统的同类产品。此外,它们还具有高比强度和刚度等独特性能,非常适合各种橡胶应用。增强橡胶复合材料的性能受各种因素的影响,包括基体聚合物以及填料的来源、尺寸、形状、化学成分和体积分数。加入生物填料的橡胶复合材料具有经济效益和环境可持续性的双重优势。本文全面回顾了橡胶复合材料开发方面的最新研究,重点介绍了各种填料的使用。此外,文章还研究了传统填料和生物基填料的特性及其对橡胶复合材料行为和性能的影响,包括形态、热性能和机械性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
6.40%
发文量
174
审稿时长
32 days
期刊介绍: Materials Today Sustainability is a multi-disciplinary journal covering all aspects of sustainability through materials science. With a rapidly increasing population with growing demands, materials science has emerged as a critical discipline toward protecting of the environment and ensuring the long term survival of future generations.
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