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The Effect of Fiber Loading and Chemical Treatment on Mechanical and Thermal Properties of Jute Biocomposites

机译:纤维载荷和化学处理对黄麻生物复合材料的机械和热性能的影响

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This article summarizes an experimental study on the mechanical and thermal properties of high-density-polyethylene (HDPE) compression-molding jute biocomposites. Various types of chemical treatments such as NaOH, silane treatment, etc., are performed to improve the adhesion between the fibers and the HDPE matrix. Variations in fiber percentage, fiber size are maintained as a function of mechanical properties and thermal properties are studied. Mechanical strength of composite shows that composites with silane and NaOH treated exhibit more mechanical strength than untreated composites. Mechanical properties are assessed by tensile, flexural and hardness test and thermal properties are assessed by melting temperature. From the result obtained, thermal characteristics of the composites can be conclude that composites made with NaOH and silane treatment of fiber exhibit more melting temperature compare to untreated one but not significantly. The morphology of the fiber is also examined using scanning electron microscope (SEM).
机译:本文总结了对高密度 - 聚乙烯(HDPE)压缩燃黄色复合材料的机械和热性能的实验研究。进行各种类型的化学处理,例如NaOH,硅烷处理等,以改善纤维和HDPE基质之间的粘附性。纤维百分比的变化,纤维尺寸保持为机械性能的函数,研究了热性质。复合材料的机械强度表明,具有硅烷和NaOH处理的复合材料表现出比未处理的复合材料更多的机械强度。通过拉伸,弯曲和硬度试验和热性能评估机械性能,通过熔化温度评估热性能。从得到的结果中,复合材料的热特性可以得出结论,用NaOH和纤维的硅烷处理制成的复合材料表现出更熔化的温度与未经处理的熔化温度相比,但不显着。还使用扫描电子显微镜(SEM)检查纤维的形态。

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