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Physical And Mechanical Properties Of Injection Molding For Waste Polypropylene Rice Husk Composite (Wpc) Upon Water Absorption And Uv Irradiation Expossure

机译:废聚丙烯稻壳复合材料(Wpc)的吸水和紫外线辐照下注射成型的物理和力学性能

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The feasibility of Wood Polymer Composites (WPCs) on an industrial scale is essential that the performance of WPCs is wellcharacterized, from their production process to the requisites for their various applications in the industrial buildingconstruction or furniture industries. WPCs are combination of polymer with different composition of additives such as woodfiber of rice husk (RH). The preparation of the solid WPCs is comprises on the predetermined temperatures for injectionmolding between 50°C to 220°C at different machine zones. The physical characterization approached on WPCs samples iswater absorption test in Ultra-Violet irradiation exposures at 32°C. The WPCs is then were analysed on its morphologicalchanges of the fiber particle size of RH after both treatment. The result shows the highest percentage of water absorption is2.82% in which increased of RH content lead to increasing the water absorption rate. It directly affects the thickness of WPCswith swelling value of 1.94%. As compared the composition ratio, the highest RH content in WPCs lead to higher densityvalues. Hardness value was decreasing respectively for all WPCs due to increase of immersion hours but with respect to thehighest hardness of 14.5kN is from the highest RH content. The study is important in the application of RH filled polymercomposites as an alternative material in industrial building construction due to its light weight, renewable and low cost.
机译:木塑复合材料(WPC)在工业规模上的可行性对于从生产过程到其在工业建筑,建筑或家具行业中的各种应用的必要性的良好表征至关重要。 WPC是具有不同添加剂组成的聚合物的组合,例如稻壳的木纤维(RH)。固体WPC的制备包括在预定的温度下在不同的机器区域在50℃至220℃之间进行注塑成型。 WPC样品的物理特性是在32°C的紫外线照射下的吸水率测试。然后分析两种处理后WPC的RH纤维粒度的形态变化。结果显示最高吸水率为2.82%,其中RH含量的增加导致吸水率的增加。它直接影响WPC的厚度,溶胀值为1.94%。与组成比相比,WPC中最高的RH含量导致更高的密度值。由于浸入时间的增加,所有WPC的硬度值分别降低,但相对于最高14.5kN的硬度,则来自最高RH含量。该研究因其重量轻,可再生且成本低廉,在将RH填充聚合物复合材料用作工业建筑的替代材料中具有重要意义。

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