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Green composites. II. Environment-friendly, biodegradable composites using ramie fibers and soy protein concentrate (SPC) resin

机译:绿色复合材料。二。使用麻纤维和大豆浓缩蛋白(SPC)树脂的环保型可生物降解复合材料

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Fully biodegradable and environment-friendly green composite specimens were made using ramie fibers and soy protein concentrate (SPC) resin. SPC was used as continuous phase resin in green composites. The SPC resin was plasticized with glycerin. Precuring and curing processes for the resin were optimized to obtain required mechanical properties. Unidirectional green composites were prepared by combining 65 % (on weight basis) ramie fibers and SPC resin. The tensile strength and Young’s modulus of these composites were significantly higher compared to those of pure SPC resin. Tensile and flexural properties of the composite in the longitudinal direction were moderate and found to be significantly higher than those of three common wood varieties. In the transverse direction, however, their properties were comparable with those of wood specimens. Scanning electron microscope (SEM) micrographs of the tensile fracture surfaces of the green composite indicated good interfacial bonding between ramie fibers and SPC resin. Theoretical values for tensile strength and Young’s modulus, calculated using simple rule of mixture were higher than the experimentally obtained values. The main reasons for this discrepancy are loss of fiber alignment, voids and fiber compression due to resin shrinking during curing.
机译:使用麻纤维和大豆浓缩蛋白(SPC)树脂制作了完全可生物降解且环保的绿色复合材料标本。 SPC用作绿色复合材料中的连续相树脂。 SPC树脂用甘油增塑。优化了树脂的预固化和固化工艺以获得所需的机械性能。通过混合65%(以重量计)的麻纤维和SPC树脂来制备单向生坯复合材料。与纯SPC树脂相比,这些复合材料的拉伸强度和杨氏模量明显更高。复合材料在纵向上的拉伸和弯曲性能是中等的,并且被发现显着高于三种常见的木材品种。然而,在横向方向上,它们的性能可与木材样品相媲美。绿色复合材料拉伸断裂表面的扫描电子显微镜(SEM)显微照片表明麻纤维和SPC树脂之间具有良好的界面粘合性。使用简单的混合规则计算的抗张强度和杨氏模量的理论值高于实验获得的值。造成这种差异的主要原因是由于固化过程中树脂的收缩导致纤维排列失调,空隙和纤维压缩。

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