Advancing sustainability in the automotive industry: Bioprepregs and fully bio-based composites

IF 5.3 Q2 MATERIALS SCIENCE, COMPOSITES Composites Part C Open Access Pub Date : 2024-04-12 DOI:10.1016/j.jcomc.2024.100459
Denise Carvalho , Nicola Ferreira , Beatriz França , Rita Marques , Mário Silva , Sofia Silva , Eva Silva , David Macário , Lia Barroso , Carla J. Silva , Cristina Oliveira
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Abstract

Market demands for sustainability has propelled the need for cost-effective manufacturing techniques and eco-friendly materials in several industries, such as the automotive. Bio-materials are a current trend due to qualities like renewability and biodegradability, combined with exceptional mechanical properties. The rise of biocomposites, especially those derived from bioprepregs materials, become a reality in this industry. With the uniqueness of a fully bio-based prepreg, where the matrix and reinforcements themselves are obtained from bio-sources such as plants, the industry can unlock the full potential of biocomposites, paving the way for a future where sustainable materials play a central role in automotive manufacturing. As sustainability remains a core priority, continued research, development, and collaboration will be crucial in realizing the vision of a more environmentally responsible automotive sector. Extensive research is necessary to comprehend the distinct properties of natural or natural based fibers and the biopolymeric materials and their intrinsic interactions associated a different type of process, such as hot-melt impregnation and coating, powder sputtering, film stacking, and hybrid structures.

This article's primary objective is to review the current trends and developments in bioprepreg innovation, exploring formulation techniques and materials to achieve fully bio-based prepregs covering various textile bioprepregs, delving into their properties, reinforcement structures, matrix systems, processing technologies, performance achievements, and their applications, particularly in the automotive sector. Additionally, it briefly examines fully bio-based composites, representing a significant step towards mitigating the environmental impact of composite materials.

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推动汽车行业的可持续发展:生物预浸料和全生物基复合材料
市场对可持续发展的需求推动了汽车等多个行业对具有成本效益的制造技术和环保材料的需求。生物材料因其可再生性、可生物降解性以及优异的机械性能而成为当前的发展趋势。生物复合材料,尤其是由生物预浸料材料制成的生物复合材料的兴起,已成为该行业的现实。由于全生物基预浸料的独特性,即基体和增强材料本身来自植物等生物资源,该行业可以释放生物复合材料的全部潜力,为未来可持续材料在汽车制造中发挥核心作用铺平道路。由于可持续发展仍是核心优先事项,持续的研究、开发和合作对于实现对环境更负责任的汽车行业愿景至关重要。有必要开展广泛的研究,以了解天然或天然纤维和生物聚合物材料的不同特性,以及它们与不同类型工艺(如热熔浸渍和涂层、粉末溅射、薄膜堆叠和混合结构)之间的内在相互作用。本文的主要目的是回顾当前生物预浸料创新的趋势和发展,探讨实现全生物基预浸料的配方技术和材料,涵盖各种纺织生物预浸料,深入探讨其特性、增强结构、基质系统、加工技术、性能成就及其应用,尤其是在汽车领域的应用。此外,该书还简要介绍了全生物基复合材料,这是减轻复合材料对环境影响的重要一步。
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来源期刊
Composites Part C Open Access
Composites Part C Open Access Engineering-Mechanical Engineering
CiteScore
8.60
自引率
2.40%
发文量
96
审稿时长
55 days
期刊最新文献
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