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Characterization of stearic acid modified soy protein isolate resin and ramie fiber reinforced 'green' composites

机译:硬脂酸改性大豆分离蛋白树脂和麻纤维增强的“绿色”复合材料的表征

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摘要

The effects of stearic acid on the physical, tensile, moisture, thermal and micro-structural properties of the soy protein isolate (SPI)-based resin have been investigated. Fully biodegradable, environment-friendly, unidirectional, ramie fiber reinforced 'green' composites were also successfully fabricated using SPI and stearic acid modified SPI (MSPI) resins and characterized for their tensile and fiexural properties. The fiber/resin interfacial shear strength was characterized using microbond technique. The mechanical and thermal properties and moisture resistance of the MSPI resin were significantly better than the SPI resin. It was observed that part of the stearic acid crystallized in SPI resin and that the crystallizability was affected by the glycerol added as a plasticizer. The replacement of glycerol with stearic acid did not affect the fiber/resin interfacial interaction. The ramie/MSPI composites showed significantly better mechanical properties compared to ramie/SPI composites. While the Young's modulus of ramie/MSPI composites was closer to the theoretically calculated values, both composites had lower values than predicted. The ramie fiber/MSPI resin composites may be used as 'green' composites for certain indoor applications.
机译:研究了硬脂酸对基于大豆分离蛋白(SPI)的树脂的物理,拉伸,水分,热和微观结构性质的影响。还使用SPI和硬脂酸改性SPI(MSPI)树脂成功地制造了完全可生物降解,环保,单向directional麻纤维增强的“绿色”复合材料,并对其拉伸和弯曲特性进行了表征。纤维/树脂界面剪切强度使用微粘结技术表征。 MSPI树脂的机械和热性能以及耐湿性明显优于SPI树脂。观察到一部分硬脂酸在SPI树脂中结晶,并且结晶性受作为增塑剂添加的甘油的影响。用硬脂酸代替甘油不会影响纤维/树脂的界面相互作用。与麻/ SPI复合材料相比,麻/ MSPI复合材料表现出明显更好的机械性能。虽然of麻/ MSPI复合材料的杨氏模量更接近理论计算值,但两种复合材料的值均低于预期值。 certain麻纤维/ MSPI树脂复合材料可用作某些室内应用的“绿色”复合材料。

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