首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Examination of heat resistant tensile properties and molding conditions of green composites composed of kenaf fibers and PLA resin
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Examination of heat resistant tensile properties and molding conditions of green composites composed of kenaf fibers and PLA resin

机译:洋麻纤维和PLA树脂组成的生坯复合材料的耐热拉伸性能和成型条件的检验

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摘要

Disposing of conventional fiber-reinforced polymers (FRPs) poses an environmentally challenging problem. Disposal of FRPs by combustion discharges carbon dioxide in the air because the resin of FRPs is made of fossil fuel. When they are disposed of in the ground, FRPs remain semi-permanently without decomposing. In response to these problems, green composites are now being permanently developed and are extensively studied as a material that produces a lower environmental burden. In this paper, green composites using kenaf fiber yarn bundles and PLA (poly( lactic acid)) are fabricated and their tensile properties are evaluated in the experiment. The tensile Young's modulus of all of the laminations is larger than that of PLA alone and the tensile strength of some laminations is larger than that of PLA alone. In particular, the value of UD composite of 0 degrees shows double the tensile strength of PLA alone. Furthermore, the molding conditions for fabricating with a hot press are investigated and the heat resistant tensile properties of green composites are also reported.
机译:处置常规的纤维增强聚合物(FRP)构成了一个对环境具有挑战性的问题。由于FRP的树脂是由化石燃料制成的,因此通过燃烧处理FRP会将空气中的二氧化碳排放出去。将它们放在地下时,FRP会永久保留而不分解。针对这些问题,绿色复合材料现在正在被永久开发,并且作为产生较低环境负担的材料被广泛研究。在本文中,使用洋麻纤维纱束和PLA(聚乳酸)制造了绿色复合材料,并在实验中评估了它们的拉伸性能。所有叠片的拉伸杨氏模量都比单独的PLA大,某些叠片的拉伸强度比单独的PLA大。特别地,UD复合物的值为0度表示单独PLA的抗拉强度是原来的两倍。此外,研究了用热压机制造的成型条件,还报道了生坯复合材料的耐热拉伸性能。

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