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Thermosetting (bio)materials derived from renewable resources:A critical review

机译:源自可再生资源的热固性(生物)材料:关键评论

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摘要

This review presents the recent advances in the synthesis, properties and applications of thermosetting materials derived from renewable resources. Thermosetting materials are highly cross-linked polymers that are cured or set using heat, or heat and pressure, and/or light irradiation. This leads to high-performance products for industry due to their high modulus, strength, durability and resistance towards thermal stress and chemical attacks as provided by their high cross-linking density. Within this contribution, a special emphasis was made on a broad-brush approach over the potential opportunities and drawbacks concerning the use of renewable feedstock in the design of some commonly used networks such as phenolics, epoxy, polyester and polyurethane resins. Thereby, the utilization of renewable resources is discussed as a novel and appropriate sustainable feedstock rather than as a substitute for petroleum-based thermosetting materials.
机译:这篇综述介绍了可再生资源衍生的热固性材料在合成,性能和应用方面的最新进展。热固性材料是高度交联的聚合物,其使用热,或热和压力和/或光照射来固化或固化。由于其高模量,强度,耐用性以及由其高交联密度所提供的抗热应力和化学侵蚀的能力,这导致了工业上的高性能产品。在这一贡献中,特别强调了一种广泛采用的方法,以解决在设计一些常用网络(例如酚醛树脂,环氧树脂,聚酯和聚氨酯树脂)时使用可再生原料的潜在机会和弊端。因此,讨论了将可再生资源的利用作为一种新颖而适当的可持续原料,而不是替代石油基热固性材料。

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