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‘Green’ composites Part 1: Characterization of flax fabric and glutaraldehyde modified soy protein concentrate composites

机译:“绿色”复合材料第1部分:亚麻织物和戊二醛改性大豆浓缩蛋白复合材料的表征

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摘要

Fully biodegradable, environment friendly ‘green’ composites were prepared using glutaraldehyde (GA) modified soy protein concentrate (MSPC-G) and flax fabric. Soy protein concentrate (SPC) polymer has low tensile properties, poor moisture resistance and is brittle. SPC polymer with 15% glycerin, as an external plasticizer, exhibited fracture stress and Young's modulus of 17 and 368 MPa, respectively. SPC polymer was cross-linked with GA to increase its tensile properties and improve its processability as a resin to manufacture flax fabric-reinforced composites. GA reacts with the free amine groups in SPC to form crosslinks. MSPC-G showed 20% increase in fracture stress and 35% increase in Young's modulus as well as improved moisture resistance compared to SPC. Besides the mechanical properties, MSPC-G was also characterized for its thermal stability and dynamic mechanical properties.
机译:使用戊二醛(GA)改性的大豆浓缩蛋白(MSPC-G)和亚麻织物制备了完全可生物降解,环境友好的“绿色”复合材料。大豆浓缩蛋白(SPC)聚合物的拉伸性能低,耐湿性差且易碎。具有15%甘油作为外部增塑剂的SPC聚合物的断裂应力和杨氏模量分别为17和368 MPa。 SPC聚合物与GA交联以增加其拉伸性能并改善其作为树脂的加工性能,以制造亚麻织物增强复合材料。 GA与SPC中的游离胺基反应形成交联。与SPC相比,MSPC-G的断裂应力增加了20%,杨氏模量增加了35%,并且提高了耐湿性。除了机械性能,MSPC-G还具有热稳定性和动态机械性能的特点。

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