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Characterization of Phytagel~(R)Modified Soy Protein Isolate Resin and Unidirectional Flax Yarn Reinforced 'Green' Composites

机译:Phytagel〜(R)修饰的大豆分离蛋白树脂和单向亚麻纱增强的“绿色”复合材料的表征

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摘要

The mechanical properties and moisture resistance of the soy protein isolate(SPI)resin and flax yarn reinforced composites were improved significantly by incorporation of a poly-carboxylic acid based modifier,Phytagel~(R).SPI and Phytagel~(R)were blended to form an interpenetrating network-like cross-linked complex.This complex showed significantly improved tensile and moisture properties as well as higher thermal stability as compared to the unmodified SPI resin.The incorporation of Phytagel~(R)(40% w/w of SPI powder)in SPI resin and subsequent lowering of the amount of glycerol(from 30% to 12.5%)led to an overall 10-fold increase in the tensile fracture stress and a nine-fold increase in the Young's moduli of the SPI resin along with a seven-fold decrease in fracture strain.The dynamic mechanical properties such as storage and loss modulus of the modified resin increased and the glass transition temperature also increased by about 56deg C.The unidirectional flax yarn reinforced composites were made using two modified resins with 20% and 40% Phytagel~(R)contents.Both resins contained 12.5% glycerol.The composites fabricated using resin containing 20% Phytagel~(R)showed significantly higher tensile and flexural moduli as well as fracture stress in the axial direction than the composites with resin containing 40% Phytagel~(R),which was higher than the SPI resin based composites.
机译:通过掺入聚羧酸基改性剂Phytagel®,可将大豆分离蛋白(SPI)树脂和亚麻纱线增强复合材料的机械性能和耐湿性显着提高。与未改性的SPI树脂相比,该复合物显示出显着改善的拉伸和湿润性能以及更高的热稳定性.Phytagel〜(R)(SPI的40%w / w)的掺入粉末)在SPI树脂中,随后甘油含量从30%降低到12.5%,导致拉伸断裂应力总体增加了10倍,而SPI树脂的杨氏模量增加了9倍断裂应变降低了七倍。改性树脂的动态力学性能(如储能和损耗模量)提高了,玻璃化转变温度也提高了约56°C。使用两种含量分别为20%和40%的Phytagel〜(R)改性树脂制成两种树脂。两种树脂均包含12.5%甘油。使用含有20%Phytagel〜(R)的树脂制成的复合材料表现出明显更高的拉伸模量和挠曲模量以及含有40%Phytagel〜(R)的树脂的复合材料在轴向断裂应力高于SPI树脂基复合材料。

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