化学处理氢氧化钠和环氧树脂用于生产蔗渣纤维纸浆的强制环氧复合材料

2020, Ramratan, Rohith Kumar
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引用次数: 1

摘要

由于环境管理的原因,垃圾回收利用一直是各种科学研究的主要课题。菠萝叶、剑麻和甘蔗渣等可再生农业资源属于农业废弃物,通常被称为生物质,最近被用于增强聚合物材料。蔗渣纤维残留物已被广泛研究,并被用作增强聚合物的来源。在目前的研究工作中,以35%、45%、55%的蔗渣纤维浆与50%、40%、30%的环氧树脂混合,研制了蔗渣纤维增强环氧复合材料。对复合材料的厚度、密度、冲击强度和拉伸强度等性能进行了实验研究。分析发现,各参数均受到显著影响。结果表明,35%纤维浆和50%环氧树脂的复合材料抗拉强度最高,55%纤维浆和30%环氧树脂的复合材料抗冲击强度较高。天然蔗渣纤维环氧树脂复合材料可实现绿色制造,可用于可持续的绿色环境。在制糖和酒精工业中,主要的残留物通常被燃烧以提供能量,因此产生了成吨的灰烬。这造成了严重的环境问题,如空气污染,烟雾的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical treatment for the sodium hydroxide & epoxy resin for produce sugar cane bagasse fibre pulp rein forced epoxy composites material
Waste recycling has been the main topic of various scientific researches due to environmental management. Renewable agricultural sources such as pineapple leaf, sisal and sugarcane bagasse are among agro waste, normally known as biomass which is recently used for reinforcing polymeric materials. Sugarcane bagasse fibre residues have been extensively investigated and employed as a source of reinforcement of polymers. In the present research work a sugar cane bagasse fibre reinforced epoxy composite material has been developed with 35%, 45%, 55% of sugar cane bagasse fibre pulp with 50%, 40% and 30% mixed in epoxy resin. Experimental work was done to study the composite sheet of the thickness, density, impact strength and tensile strength properties. According to the analysis, it has observed that all the parameters are significantly affected. The overall results indicate the has fact that the highest tensile strength of composite sheet having a composition of 35% fibre pulp and 50% epoxy resin and higher impact strength composite sheet having a composition of 55% pulp ratio and 30% epoxy resin. The natural sugar cane bagasse fibre epoxy resin composite can lead to green manufacturing and can be used for a sustainable green environment. The major residue is normally burnt for energy supply in the sugar and alcohol industries and as a result, tons of ash is created. This create sever environmental problem like air pollution, smoke formation.
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