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Fabrication and Mechanical Properties of the Biocomposites between Water Hyacinth Fiber and Paper Mulberry

机译:水葫芦纤维与纸桑树生物复合材料的制造和力学性能

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Fabrication and mechanical properties of the bio-composites between water hyacinth natural fiber and paper mulberry have been investigated. The fabrication was performed using the hand lay-up technique. Untreated and treated water hyacinth fiber were used as reinforcements, in the ratio of 5%, 10%, 15%, and 20% by weight, with paper mulberry as a biomatrix. It has been found that paper mulberry reinforced with 15 % treated WH fiber showed maximum tensile strength and impact energy. The optical and scanning electron microscopic morphology of the obtained composites displayed a rougher surface and the decrease in the fiber diameter when treated with sodium hydroxide (NaOH). This improved the interlocking between the matrix and its reinforcement.
机译:研究了水葫芦天然纤维和纸桑树之间生物复合材料的制造和力学性能。 使用手放置技术进行制造。 使用未处理和处理的水葫芦纤维作为增强率,其比例为5%,10%,15%和20重量%,用纸桑树作为生物斑纹。 已经发现,用15%处理的WH纤维增强的纸桑椹显示出最大的拉伸强度和冲击能量。 当用氢氧化钠(NaOH)处理时,所得复合材料的光学和扫描电子显微镜形态显示出变形的表面和纤维直径的降低。 这种改善了基质与其加强件之间的互锁。

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