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Synthesis of developed rice straw sheets and glass fiber-reinforced polyester composites

机译:发育稻草床和玻璃纤维增强涤纶复合材料的合成

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摘要

In this study, a sheet of random rice straw fiber was developed. These rice straw sheets were used to reinforce polyester matrix. Synthesis of rice straw sheets and glass fibers as synthetic fibers-reinforced polyester composites were investigated. Several new stacking sequences were fabricated with random glass fiber mats with different areal densities (225 g/m(2), 300 g/m(2), and 450 g/m(2)) and rice straw sheets. The specific mechanical properties of these natural/synthetic fiber composites were investigated. Scanning electron microscopy was used to study the morphology of the fracture surfaces of the fabricated hybrid composites. Experimental results showed that specific tensile and flexural stiffness of rice straw fiber composite is better those obtained with glass fiber composites. The hybrid natural/synthesis composites with alternating glass fiber mat with areal densities 300 g/m(2), and rice straw shows higher specific tensile strength than rice straw and other hybrid composites. Hybrid composites with high areal density on the outer surfaces yield a significant increase in flexural-specific strength and hardness as compared to other fabricated composites.
机译:在这项研究中,开发了一片随机稻草纤维。这些稻草片用于加强聚酯基质。研究了作为合成纤维增强聚酯复合材料的稻草薄片和玻璃纤维的合成。使用具有不同面密度的随机玻璃纤维垫(225g / m(2),300g / m(2)和450g / m(2))和稻草片,用随机玻璃纤维垫制造了几种新的堆叠序列。研究了这些天然/合成纤维复合材料的具体机械性能。扫描电子显微镜用于研究制造的杂化复合材料的断裂表面的形态。实验结果表明,稻草纤维复合材料的特定拉伸和抗弯刚度更好,含有玻璃纤维复合材料的纤维复合材料。具有带有面密度300g / m(2)的交替玻璃纤维垫的杂化天然/合成复合材料,以及稻草的特异性拉伸强度比稻草和其他杂种复合材料更高。与其他制造复合材料相比,外表面上具有高面密度的混合复合材料具有高度的抗弯曲强度和硬度的显着增加。

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