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Utilization of Palm Fiber Waste as Reinforcement Composite Material for The Manufacture of Public Housing Panel

机译:利用棕榈纤维废物作为加固复合材料制造公共壳体面板

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The composite technology develops very rapidly, such as in sports equipment as well as means of transportation both land, sea, and air, construction, and in the space. Palm fiber is natural fiber used as reinforcement in composites. This study aims to investigate the effect of variations in the percentage of fiber volume on tensile strength and impact toughness of palm fiber composites. The research material used palm fiber with a density of 1.3 gr/cm~3, matrix unsaturated polyester 157 BQTN-EX and MEXPO hardener. The variation on this research was a composite of palm fiber with the fiber content of 10%, 20% 30% and 40%. Tensile testing refers to the ASTM D3379 standard, impact testing refers to the ASTM D 5942 standard, while specimen making refers to ASTM D 3039. The result showed the increase of fiber content on fiber content 30% and 40% composite increased the tensile strength and impacted toughness. The impact toughness of the composite palm fiber on fiber content 40% higher than on fiber content 30%, because the matrix bonded the palm fiber well. The observations of failure mode surface composite shown the broken composite and fiber pull out.
机译:复合技术迅速发展,例如运动器材以及运输工具,土地,海运和空气,建筑和空间。棕榈纤维是用作复合材料中加固的天然纤维。本研究旨在探讨纤维体积百分比对拉伸强度和棕榈纤维复合材料的冲击韧性的影响。研究材料使用棕榈纤维,密度为1.3 Gr / cm〜3,基质不饱和聚酯157 BQTN-EX和MEXPO硬化剂。该研究的变异是棕榈纤维的复合材料,纤维含量为10%,20%30%和40%。拉伸试验是指ASTM D3379标准,冲击试验是指ASTM D 5942标准,而样本是指ASTM D 3039.结果表明纤维含量增加30%和40%的复合材料增加了拉伸强度和40%的复合材料受影响的韧性。复合棕榈纤维对纤维含量的影响韧性比纤维含量高出40%,因为基质粘合棕榈纤维井。故障模式表面复合材料的观察显示破碎的复合材料和纤维拉出。

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