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Flat-pressed wood plastic composite as an alternative to conventional wood-based panels

机译:平压木塑复合材料替代常规人造板

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This study evaluated physical and mechanical properties of the wood plastic composite panels made from dry-blended rubberwood fiber-polypropylene (PP) powder formulations using a conventional flat-press process under laboratory conditions. Three levels of rubberwood fibers (Hevea brasiliensis), 40%, 50%, and 60% based on the composition by weight, were mixed with the PP powder without and with 3% (based on weight) maleic anhydride grafted PP (MAPP) as a coupling agent. Water resistance of the panels was negatively influenced by the increasing wood fiber content. The modulus of rupture of the panels significantly increased with the increase in the wood fiber content from 40 to 50 wt% and then decreased as the fiber content reached 60 wt% but this decrease was not significant. The modulus of elasticity of the panels increased with the increase in fiber content from 40 to 60 wt%. Internal bond strength and screw withdrawal resistance declined with the increase in fiber content from 40% to 60 wt%. The formulations with MAPP were found to have higher strength and better water resistance.
机译:这项研究评估了在实验室条件下使用常规平压工艺由干混橡胶木纤维聚丙烯(PP)粉末配方制成的木质塑料复合板的物理和机械性能。将三种含量分别为40%,50%和60%的橡胶木纤维(巴西橡胶树)与不含和含3%(以重量计)马来酸酐接枝PP(MAPP)的PP粉混合。偶联剂。木板的耐水性受到木纤维含量增加的负面影响。面板的断裂模量随着木纤维含量从40到50重量%的增加而显着增加,然后随着纤维含量达到60重量%而降低,但这种降低并不明显。面板的弹性模量随纤维含量从40 wt%增加到60 wt%而增加。随着纤维含量从40%增加到60 wt%,内部粘合强度和螺杆抗拔出性降低。发现具有MAPP的制剂具有更高的强度和更好的耐水性。

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