首页> 外文会议>International Conference on Composite Materials >THE INFLUENCES OF PARTICLE SIZES ON PERFORMANCE OF BIODEGRADABLE WOOD PLASTIC COMPOSITES MANUFACTURED FROM LINGO-CELLULOSIC AGRICULTURAL WASTE
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THE INFLUENCES OF PARTICLE SIZES ON PERFORMANCE OF BIODEGRADABLE WOOD PLASTIC COMPOSITES MANUFACTURED FROM LINGO-CELLULOSIC AGRICULTURAL WASTE

机译:粒径对生物降解的木塑复合材料性能的影响,纤维素农业废弃物制造的生物降解木塑复合材料

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摘要

Limited supply of wood products and at the same time high demand driven by ongoing population growth is motivating research into new sources of raw material in an attempt to reduce pressure on forest resources. Cotton stalk waste is a potential alternative lingo-cellulose material that can be used as feedstock material for the manufacture of wood plastic composites (WPCs). Unlike many other agri-waste sources, cotton stalk are comparable to common hardwood species in respect to their fibrous structure and composition. The objective of this research was to evaluate the effects of opening particle sizes (a size sieve used for the manufacture of particles) and particle load on the performance of wood plastic composites made from entire cotton stalks with Biodegradable polyhydroxyalkanoates (PHA). Three opening particle sizes (1 mm, 0.5 mm and 0.25 mm) and particle weight fraction (20% and 50%) were investigated in this research. It was found that there was not much differences in terms of tensile strength and water absorption between composites containing particle sizes of 1 mm and 0.5 mm. The highest tensile strength and lowest water uptake were observed in composites with particle size of 0.25 mm. The particle weight fraction had a significantly adverse effect on tensile strength and moisture uptake. The tensile modulus of composites containing particle sizes of 1mm and 0.5 mm was decreased with increasing particle weigh fraction. Conversely, this property was increased with particles of 0.25 mm.
机译:有限的木材产品供应,同时通过持续的人口增长驱动的高需求是激励对新原料来源的研究,以减少森林资源的压力。棉秆废物是一种潜在的替代Lingo-纤维素材料,可用作用于制造木塑复合材料(WPC)的原料材料。与许多其他农药不同,棉茎与纤维结构和组合物相比,普通硬木物种。本研究的目的是评估开口粒度(用于制造颗粒的尺寸筛)的影响和颗粒载荷对由可生物降解的多羟基烷烃(PHA)的整个棉秸秆制成的木塑复合材料的性能。在本研究中研究了三种开口粒径(1mm,0.5mm和0.25mm)和颗粒重量分数(20%和50%)。发现,在含有1mm和0.5mm的颗粒尺寸的复合材料之间的抗拉强度和吸水方面没有太大差异。在复合材料中观察到最高拉伸强度和最低水吸收,粒径为0.25mm。粒子重量馏分对拉伸强度和水分吸收具有显着不利影响。随着粒子称量级分的增加,含有1mm和0.5mm的粒径的复合材料的拉伸模量减少。相反,这种性质随0.25毫米的颗粒而增加。

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