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Water Absorption, Flammability, Hardness andMorphology Tests on Composite Prepared fromHigh Density Polyethylene Films/Doka Wood DustParticles

机译:由高密度聚乙烯薄膜/多卡木屑颗粒制备的复合材料的吸水,可燃性,硬度和形态学测试

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摘要

High density polyethylene films / Doka wood dust particles composites were prepared by dissolving high density polyethylene (waste and virgin) films in toluene at 135oC with Doka wood particles. Some physical properties of the composites such as water absorption, flammability, hardness and morphology of the composites were studied. It was found that the water absorption increases as Doka wood particles increased but decreases as the high density polyethylene films increased. The composites made from high density polyethylene films waste showed different results as those made of the virgin high density polyethylene films. Gradual reduction in flammability of the composite was observed as the Doka wood particles and high polyethylene films increases. This was attributed to the incombustility of high amount of ligninous materials Significant decrease in hardness of composite was observed as the Doka wood particles was increased but increase in hardness was obtained when the high density polyethylene films increases. This could be due to inability of the matrix to encapsulate the fibre strands but the increase in hardness was due to the strong binding effect of the polymer resin. Scanning electron microscopy images of the surfaces confirmed an interfacial bonding between the Doka wood particles and the high density polyethylene films at high polymer resin but decrease in interface bonding between the Doka wood particles and the high density polyethylene films at high Doka wood particles.
机译:高密度聚乙烯薄膜/多卡木屑颗粒复合材料是通过将高密度聚乙烯(废旧塑料)膜在135oC下与多卡木颗粒溶解在甲苯中制备的。研究了复合材料的一些物理性能,如吸水率,可燃性,硬度和形态。已经发现,吸水率随多卡木颗粒的增加而增加,但随高密度聚乙烯膜的增加而降低。由高密度聚乙烯薄膜废料制成的复合材料显示出与由原始高密度聚乙烯薄膜制成的复合物不同的结果。随着多卡木颗粒和高聚乙烯薄膜的增加,复合材料的可燃性逐渐降低。这归因于大量木质材料的不燃性,随着多卡木材颗粒的增加,复合材料的硬度显着下降,但当高密度聚乙烯薄膜增加时,复合材料的硬度却增加。这可能是由于基质无法包封纤维束而导致的,但是硬度的增加归因于聚合物树脂的强结合作用。表面的扫描电子显微镜图像证实了在高聚合物树脂下多卡木颗粒与高密度聚乙烯膜之间的界面结合,但是在高多卡木颗粒下在多卡木颗粒与高密度聚乙烯膜之间的界面结合减少。

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