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Critical Review of Natural Fiber Reinforced Hybrid Composites: Processing, Properties, Applications and Cost

期刊

POLYMERS
卷 13, 期 20, 页码 -

出版社

MDPI
DOI: 10.3390/polym13203514

关键词

natural fiber; hybrid composite; cellulose; costing; processing; fiber-matrix adhesion

资金

  1. Fundamental Research Grant Scheme (FRGS) [59624]
  2. Universiti Teknologi Malaysia [PY/2020/03495R-J130000.7351.4B534]
  3. Ministry of Higher Education Malaysia (MOHE) [JPT (BPKI) 1000/016/018/25 (57)]
  4. Research Management Centre, Universiti Putra Malaysia

向作者/读者索取更多资源

There has been a growing interest in the scientific community regarding the utilization of natural fiber-enhanced hybrid composites. Extensive studies have been conducted on natural/synthetic and natural/natural hybrid composites to enhance mechanical characteristics and applications through processes such as hybridization. Current research focuses on improving understanding of natural fiber-matrix adhesion, processing methods, and compatibility, as well as addressing the cost of natural fiber reinforced hybrid composites.
Increasing scientific interest has occurred concerning the utilization of natural fiber-enhanced hybrid composites that incorporate one or more types of natural enhancement. Annual natural fiber production is estimated to be 1,783,965 x 103 tons/year. Extensive studies have been conducted in the domains of natural/synthetic as well as natural/natural hybrid composites. As synthetic fibers have better rigidity and strength than natural fibers, natural/synthetic hybrid composites have superior qualities via hybridization compared to natural composites in fibers. In general, natural fiber compounds have lower characteristics, limiting the use of natural composites reinforced by fiber. Significant effort was spent in enhancing the mechanical characteristics of this group of materials to increase their strengths and applications, especially via the hybridization process, by manipulating the characteristics of fiber-reinforced composite materials. Current studies concentrate on enhancing the understanding of natural fiber-matrix adhesion, enhancing processing methods, and natural fiber compatibility. The optimal and resilient conceptions have also been addressed due to the inherently more significant variabilities. Moreover, much research has tackled natural fiber reinforced hybrid composite costs. In addition, this review article aims to offer a review of the variables that lead to the mechanical and structural failure of natural fiber reinforced polymer composites, as well as an overview of the details and costings of the composites.

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