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Analysis of Thermal Conductivity Properties of Recycled High Density Polyethylene Composite Materials Strengthened by Bamboo Fiber with Variations in Fiber Shapes

机译:竹纤维增强纤维形状变化的再生高密度聚乙烯复合材料的热导电性能分析

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The problem of plastics waste in Indonesia is still a matter that needs to be considered, as evidenced by the high and continuous increase in the amount of plastics waste. One of solutions that can be applied is to reduce the amount of plastics waste in Indonesia by utilizing plastics waste into composite materials. Recycled high density polyethylene used as a matrix combined with Gigantochloa apus bamboo fiber as reinforcement. Composites were made with the fiber weight fraction of 20% with fiber shape variations that is particulate, inner bamboo woven, and mixed inner-outer woven. The hot press method was used in composite making. The research design was analytical with a cross-sectional approach. The material in this study were 20 mesh rHDPE as a matrix and Gigantochloa apus bamboo with a particle size of 20 mesh and woven fiber treated with soaking 5% NaOH for 2 h and dried using oven for 12 h at 60°C. This composite can be applied as the roof of the house to decrease heat from the outside, it is necessary to test the thermal conductivity of composite materials. Conductivity test using ASTM E1225 standard. The particle fiber shape, inner woven, and mixed woven have 0.174, 0.185, and 0.202 W/m°K thermal conductivity value.
机译:印度尼西亚塑料废物的问题仍然是需要考虑的问题,如塑料废物量的高度和持续增加所证明。可以应用的解决方案是通过利用塑料废物将塑料废物加入复合材料来减少印度尼西亚的塑料废物量。再循环高密度聚乙烯用作基质与Gigantochloa Apus竹纤维相结合作为增强。用纤维形状变化为颗粒,内竹编织和混合内外编织的​​纤维形状变化,用20%的纤维重量分数进行复合材料。热压方法用于复合制造。研究设计与横截面方法分析。本研究中的材料是20目,作为基质和Gigantochloa Apus竹子,其粒径为20目的,用浸泡5%NaOH处理2小时,并在60℃下使用烘箱干燥12小时。该复合材料可以作为房屋的屋顶施加,以降低来自外部的热量,是测试复合材料的导热率。使用ASTM E1225标准进行电导率测试。颗粒纤维形状,内部编织和混合织造具有0.174,0.185和0.202W / m°K导热率值。

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