首页> 外文期刊>Journal of Polymers and the Environment >Wood Plastic Composite Panels: Influence of the Species, Formulation Variables and Blending Process on the Density and Withdrawal Strength of Fasteners
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Wood Plastic Composite Panels: Influence of the Species, Formulation Variables and Blending Process on the Density and Withdrawal Strength of Fasteners

机译:木塑复合板:种类,配方变量和混合工艺对紧固件密度和抽出强度的影响

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摘要

In this work, the influence of four variable parameters including fiber types (poplar and rice straw), fiber contents (45, 60, and 75 wt%), fiber sizes (20-40 and 40-60 mesh), and blending methods (hot-pressing and extrusion) on the physico-mechanical properties of wood plastic composite panels were studied. Generally, the results showed that each of the above-mentioned parameters had significant effect on the nail and screw withdrawal strength (pull-out load) and density, whereas their interactions did not have highly impressive effects on the properties. All tested properties vary significantly with fiber origin. Composites filled with larger fiber size, produced panels with higher withdrawal strength and density. The effect of blending method on density was maximal. Withdrawal strength values of each sample decreased with increase in fiber loading. The lowest withdrawal strength values of nail and screw were obtained from the samples filled with rice straw. It was found that strength properties of the composites can be improved moderately by adding 45 wt% fiber, 20-40 mesh particle and poplar flour. According to the results, the blending method is a significant variable in the determination of withdrawal strength. Therefore, the blending method can be recommended based on the end product applications.
机译:在这项工作中,四个变量参数的影响包括纤维类型(白杨和稻草),纤维含量(45、60和75 wt%),纤维尺寸(20-40和40-60目)以及混合方法(热压和挤压)对木塑复合板的物理力学性能进行了研究。通常,结果表明,上述每个参数对钉子和螺钉的拔出强度(拔出载荷)和密度都有显着影响,而它们之间的相互作用对性能没有很大的影响。所有测试的特性均随纤维来源而显着变化。填充了较大纤维尺寸的复合材料,制成的面板具有更高的拉伸强度和密度。混合方法对密度的影响最大。每个样品的撤出强度值随纤维含量的增加而降低。从装满稻草的样品中获得最低的钉子和螺钉的拔出强度值。已经发现,通过添加45wt%的纤维,20-40目的颗粒和杨木粉,可以适度改善复合材料的强度性能。根据结果​​,混合方法是确定拉拔强度的重要变量。因此,可以根据最终产品的应用推荐混合方法。

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