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The Effect of Fiber Chemical Treatment on Chemical Resistance Behavior of Jute Polyethylene Composites for Storage Tank Application

机译:纤维化学处理对储罐储存罐中黄麻聚乙烯复合材料的耐化学性行为的影响

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The jute polyethylene composites were developed using the hot-press technique with different fiber weight ratios. Due to the hydrophilic nature of fiber, it exhibited poor interfacial interaction to hydrophobic polymer matrix. In order to enhance the interfacial interaction between fiber and polymer, the benzene diazonium salt (BDS), propionic anhydride (PA), and 3-isocyanatopropyl triethoxysilane (silane) treated jute were used for the manufacturing of composites in this study. The chemical resistance tests of prepared composites were performed in order to probe whether these are resistant to various chemicals such as: acids, alkalis, and solvents. The effect of chemical treatments of the composites have been investigated. It was observed that the fabricated composites were resistant to all chemicals except carbon tetrachloride. The treated jute composites showed higher chemical resistance than raw jute composite and silane treated jute composite yield the highest resistance which can be suggested for making the water and chemical storage tanks.
机译:使用具有不同纤维重量比的热压技术开发黄麻聚乙烯复合材料。由于纤维的亲水性,它表现出与疏水聚合物基质的差相相互作用差。为了提高纤维和聚合物之间的界面相互作用,苯重氮盐(BDS),丙酸酐(PA)和3-异氰酸丙基三乙氧基硅烷(硅烷)处理的黄麻用于本研究中的复合材料的制造。进行制备复合材料的耐化学性试验以探测这些是否对各种化学品如:酸,碱和溶剂是抗性。研究了复合材料的化学处理的效果。观察到,除了四氯化碳之外,制造的复合材料对所有化学物质抵抗力。经过处理的黄麻复合材料显示出比原始黄麻复合材料和硅烷处理的黄麻复合材料更高的耐化学性,得到最高的抗性,可以建议制备水和化学储存罐。

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