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Effects of wood particle size and mixing ratios of HDPE on the properties of the composites

机译:木材粒径和HDpE配比对复合材料性能的影响

摘要

The main goal of this research is to innovate wood-plastic composites by using various wood particle sizes and different mixture ratios (weight ratio) of HDPE. (High Density Polyethylene). After mixing the wood particles (recycled wood waste) and the plastic powder, we use a molding and pressing process to make composites with a thickness of 12 mm. By doing so, the wood particle content can be increased to 75%. This kind of composite provides excellent dimensional stability, its moisture content is under 2.5%, and the thickness swelling rate after 24 hr water absorption is under 7.5%. The maximum static bending strength of this composite reaches 20.7 N/mm(2), and is better than that of general commercial particleboards. The composite made of larger sized wood particles has better strength properties. In addition, when the plastic content ratio increases, the dimensional stability of the composite will increase as well. After the soaking process in boiling water, the static bending strength of wet composite remained at 50%; this shows the good weather resistance of the composite. The surface veneer overlaid peeling strength of the composite showed 1.02-1.63 N/mm. After the evaluation of processing, cost of material and strength properties of the composite, we would suggest that the use of 70% of wood particles and 30% of plastic powder is practical to produce proper sized composites.
机译:这项研究的主要目标是通过使用各种木材粒径和HDPE的不同混合比(重量比)来创新木塑复合材料。 (高密度聚乙烯)。将木材颗粒(可回收的木材废料)和塑料粉混合后,我们使用成型和压制工艺制成厚度为12毫米的复合材料。通过这样做,木材颗粒含量可以增加到75%。这种复合材料具有出色的尺寸稳定性,其水分含量低于2.5%,吸水24小时后的厚度溶胀率低于7.5%。这种复合材料的最大静态弯曲强度达到20.7 N / mm(2),并且比一般的商业刨花板更好。由较大尺寸的木材颗粒制成的复合材料具有更好的强度性能。另外,当塑料含量比增加时,复合材料的尺寸稳定性也将增加。在沸水中浸泡后,湿复合材料的静态弯曲强度保持在50%左右。这表明该复合材料具有良好的耐候性。复合材料的表面贴面覆盖剥离强度显示为1.02-1.63N / mm。在对复合材料的加工,材料成本和强度性能进行评估之后,我们建议使用70%的木材颗粒和30%的塑料粉末可生产出合适尺寸的复合材料。

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