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Effect of Wood-derived Charcoal Content on Properties of Wood Plastic Composites

机译:木材中木炭含量对木塑复合材料性能的影响

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The effect of wood-derived charcoal flour on the water resistance and mechanical properties of wood plastic composite (WPC) panels was investigated. The hot press molded WPC panels were produced from polypropylene (37 wt%) with maleic anhydride-grafted polypropylene (MAPP, 3 wt%) and different mixtures of wood flour and charcoal flour. The amount of charcoal flour was gradually increased up to 60 wt%. The thickness swelling and water absorption of WPC panels considerably decreased with increasing charcoal flour content. The internal bond strength and bending properties of the WPC panels significantly improved with increasing charcoal flour content. This was mainly attributed to the high amount of pores and gaps in the charcoal flour. Melted polypropylene could get into the pores and gaps during the hot press molding, which lead to a better interfacial adhesion between polymer matrix and wood filler. The results showed that the charcoal flour could be partially substituted for the wood flour in the production of WPC panels having higher dimensional stability and internal bond strength.
机译:研究了木材木炭粉对木塑复合材料(WPC)板材的耐水性和机械性能的影响。热压成型的WPC面板由聚丙烯(37重量%)与马来酸酐接枝聚丙烯(MAPP,3重量%)以及木粉和木炭粉的不同混合物制成。木炭粉的量逐渐增加至60重量%。随着木炭粉含量的增加,WPC板的厚度膨胀和吸水率大大降低。随着木炭粉含量的增加,WPC面板的内部粘结强度和弯曲性能得到显着改善。这主要归因于木炭粉中大量的孔和缝隙。熔融聚丙烯可能在热压成型过程中进入孔和缝隙,从而导致聚合物基体与木材填料之间的界面粘合性更好。结果表明,在具有较高尺寸稳定性和内部粘结强度的WPC板的生产中,木炭粉可以部分替代木粉。

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