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Synthetic Fibers and Thermoplastic Short-Fiber-Reinforced Polymers: Properties and Characterization

机译:合成纤维和热塑性短纤维增强聚合物:性能和表征

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Among the synthetic fibers, glass fibers (GF) are most widely used in thermoplastic short-fiber-reinforced polymers (SFRP), as they offer good strength and stiffness, impact resistance, chemical resistance, and thermal stability at a low price. Carbon fibers (CF) are applied instead of GF, when highest stiffness is required. Other types of synthetic fibers like aramid (AF), basalt (BF), polyacrylonitrile (PAN-F), polyethylene terephthalate (PET-F), or polypropylene fibers (PP-F) are rarely used in SFRP, although they offer some advantages compared with GF. The aim of this article is, to give an overview of various fiber types with regard to their mechanical properties, densities, and prices as well as the performance of their thermoplastic composites. The mechanical properties are presented as Ashby plots of tensile strength versus tensile modulus, both in absolute and specific (absolute value divided by density) values. This overview also focuses on modification of fiber/matrix interaction, as interfacial adhesion has a huge impact on composite performance. A summary of established methods for characterization of fibers, polymers, and composites completes this article.
机译:在合成纤维中,玻璃纤维(GF)最广泛用于热塑性短纤维增强聚合物(SFRP),因为它们以低廉的价格提供了良好的强度和刚度,抗冲击性,耐化学性和热稳定性。当需要最高的刚度时,使用碳纤维(CF)代替GF。 SFRP很少使用其他类型的合成纤维,例如芳纶(AF),玄武岩(BF),聚丙烯腈(PAN-F),聚对苯二甲酸乙二酯(PET-F)或聚丙烯纤维(PP-F),尽管它们具有一些优点与GF相比。本文的目的是概述各种纤维的机械性能,密度和价格,以及热塑性复合材料的性能。机械性能以绝对值和比值(绝对值除以密度)的抗拉强度与拉伸模量的阿什比图表示。由于界面粘合对复合材料的性能有很大的影响,因此本概述还着重于纤维/基质相互作用的改性。本文对纤维,聚合物和复合材料的既定方法进行了总结。

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