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Physical and Mechanical Properties of Wood-Plastics Composites: Effect of Types and Contents of Wood Flour

机译:木塑料复合材料的物理和力学性能:木粉类型和含量的影响

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Wood flour/high density polyethylene (HDPE) composites were prepared by an internal mixer and a compression molding, respectively. The HDPE composites were mixed with four types of wood flour at various contents with and without coupling agent. Polyethylene grafted maleic anhydride (PE-g-MA) was used as a coupling agent. The effects of type (hardwood and softwood), content (0, 30, 60, 80 wt%), and particle size (large and small) of wood flour on the mechanical properties, physical properties, and morphological properties of wood flour/HDPE composites were investigated. The results showed that the large particle size of wood flour provided better mechanical properties than the small particle size. The use of hardwood as a filler in HDPE resulted in the HDPE composites with higher flexural strength and lower water absorption than softwood. The flexural modulus of the wood flour composites was increased with filler loading when PE-g-MA was used as a coupling agent.
机译:木粉/高密度聚乙烯(HDPE)复合材料分别通过内部混合器和压缩成型制备。将HDPE复合材料与四种类型的木粉混合,在各种内容物,不具有偶联剂。将聚乙烯接枝马来酸酐(PE-G-MA)用作偶联剂。型(硬木和软木),含量(0,30,60,80wt%)的效果,以及木粉的粒度(大小)对木粉/ HDPE的机械性能,物理性质和形态特性复合材料被研究。结果表明,木面粉的大粒径提供比小粒径更好的机械性能。使用硬木作为HDPE中的填料,导致HDPE复合材料具有较高的弯曲强度和低吸水性而不是软木。当PE-G-MA用作偶联剂时,用填料加载增加木粉复合材料的弯曲模量。

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