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首页> 外文期刊>Journal of Materials Science >'Green' composites Part 1: Characterization of flax fabric and glutaraldehyde modified soy protein concentrate composites
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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 Wa, 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. Composite laminates, approximately 1 mm thick, were made using flax fabric and MSPC-G polymer. Composite specimens were prepared with two different orientations, namely, 0 degrees or W. The laminates exhibited a Young's modulus of 1.01 and 1.26 GPa in the longitudinal and transverse directions, respectively. The experimental values were compared with the theoretical predictions using pcGINA (c) software and showed good agreement. The composite specimens also showed good adhesion between flax fabric and MSPC-G resin. (c) 2005 Springer Science + Business Media, Inc.
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 Wa。 SPC聚合物与GA交联,以提高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键。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。使用亚麻织物和MSPC-G聚合物制成约1毫米厚的复合层压板。制备具有两个不同方向(即0度或W)的复合材料试样。层压板在纵向和横向方向分别显示出1.01和1.26 GPa的杨氏模量。使用pcGINA(c)软件将实验值与理论预测值进行比较,并显示出良好的一致性。复合材料样品还显示出亚麻织物与MSPC-G树脂之间的良好粘合性。 (c)2005年Springer Science + Business Media,Inc.

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