4.7 Review

Recent Developments in Nanocellulose-Reinforced Rubber Matrix Composites: A Review

Journal

POLYMERS
Volume 13, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/polym13040550

Keywords

nanocellulose; rubber; filler; nanocomposites; reinforcement

Funding

  1. Tropical Medicine and Biology Platform, School of Science and Advanced Engineering Platform, School of Engineering, Monash University Malaysia
  2. Xiamen University Malaysia Research Fund [XMUMRF/2019-C3/IENG/0014]

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This review highlights the recent developments in incorporating nanocellulose into rubber matrices as a reinforcing filler material, emphasizing on its sources, properties, isolation techniques, and application in rubber reinforcement. The study gathers recent research findings on incorporating various nanocellulose variants into rubber matrices, focusing on enhancing mechanical integrity and potentially replacing conventional rubber fillers. The article also discusses the mechanism of reinforcement and mechanical behaviors of nanocellulose-reinforced rubber composites, concluding with potential industrial applications and future directions of this technology.
Research and development of nanocellulose and nanocellulose-reinforced composite materials have garnered substantial interest in recent years. This is greatly attributed to its unique functionalities and properties, such as being renewable, sustainable, possessing high mechanical strengths, having low weight and cost. This review aims to highlight recent developments in incorporating nanocellulose into rubber matrices as a reinforcing filler material. It encompasses an introduction to natural and synthetic rubbers as a commodity at large and conventional fillers used today in rubber processing, such as carbon black and silica. Subsequently, different types of nanocellulose would be addressed, including its common sources, dimensions, and mechanical properties, followed by recent isolation techniques of nanocellulose from its resource and application in rubber reinforcement. The review also gathers recent studies and qualitative findings on the incorporation of a myriad of nanocellulose variants into various types of rubber matrices with the main goal of enhancing its mechanical integrity and potentially phasing out conventional rubber fillers. The mechanism of reinforcement and mechanical behaviors of these nanocomposites are highlighted. This article concludes with potential industrial applications of nanocellulose-reinforced rubber composites and the way forward with this technology.

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