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Coextruded polyethylene and wood-flour composite: Effect of shell thickness, wood loading, and core quality

机译:共挤聚乙烯和木粉复合材料:壳厚度,木材负载和芯质量的影响

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摘要

Coextruded recycled polyethylene and wood-flour composites with core-shell structure were manufactured using a pilot-scale coextrusion line. The influence of wood loadings and thickness of the shell layer and core quality on mechanical and water absorption properties of the composites were investigated. Core-shell structured profile can significantly improve flexural and impact strengths of composites especially when a relatively weak core was used. However, the coextruded profile with unreinforced shell may have a reduced modulus when a strong core was used. The shell layer also protected coextruded composites from long-term moisture uptaking, leading to improved dimensional stability compared with the corresponding un-coextruded controls. When the shell thickness was fixed, less wood loading in the shell layer did not cause obvious flexural modulus and dimension change but improved impact strength and water resistance of the coextruded composites. When wood loading in the shell layer was fixed, increased shell thickness improved impact strength but affected modulus negatively. Thickened shell layer helped reduce water uptaking but did not change dimensional stability of coextruded composites remarkably. Overall enhancement of composite strength was more pronounced for the weaker core system. Thus, the coextrusion technology can be used to achieve acceptable composite properties even with a relatively weak core system-offering an approach to use recycled, low quality plastic-fiber blends in the core layer.
机译:使用中试规模的共挤生产线生产具有核-壳结构的共挤再生聚乙烯和木粉复合材料。研究了木材载荷,壳层厚度和芯质量对复合材料的机械性能和吸水性能的影响。核-壳结构轮廓可以显着提高复合材料的弯曲强度和冲击强度,尤其是在使用相对较弱的核时。然而,当使用坚固的芯时,具有未增强壳的共挤出轮廓可能具有降低的模量。壳层还保护了共挤出的复合材料免于长期吸潮,与相应的未共挤出的控件相比,可以提高尺寸稳定性。当壳厚度固定时,壳层中较少的木材负载不会引起明显的挠曲模量和尺寸变化,但可改善共挤出复合材料的冲击强度和耐水性。当固定外壳层中的木材负荷时,增加外壳厚度可以改善冲击强度,但会对模量产生负面影响。增厚的壳层有助于减少水吸收,但不会明显改变共挤出复合材料的尺寸稳定性。对于较弱的芯系统,复合强度的整体增强更为明显。因此,即使芯系统相对较弱,共挤出技术也可用于获得可接受的复合性能-提供了在芯层中使用回收的低质量塑料-纤维共混物的方法。

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