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The Influence of Mechanical and Mechanochemical Activation of Hardwood Wood Waste on Biocomposite Properties

机译:硬木木废弃物机械化学活化对生物复合性能的影响

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As the demand for sustainable environment friendly materials increased, the biocomposites such as wood-polymer composite (WPC) have gained more attention in past years. Wood wastes and by-products like sawdust, chips, bark and wood residues, as well as recycled polymers can serve as raw materials for production of WPC. However, there are still many issues obtaining WPCs, mainly a poor compatibility between a hydrophobic polymer matrix and a hydrophilic wood filler. In the present study, mechanical and mechanochemical activation of aspen wood waste were performed to increase their compatibility with recycled polypropylene matrix in the WPC, and the impact of both methods on the biocomposite properties were studied. It was found, that mechanochemical activation (MCA) of aspen wood particles leads to increased hydrophobicity of the obtained WPC compared to the WPC with mechanically activated (MA) particles. Work of adhesion with water was remarkably lower for the WPC modified by MCA, which also correlates with moisture sorption results. Surface free energy of the WPC modified by MCA was lower compared to the WPC modified by MA, mostly due to decreased polar component of surface free energy. The modulus of elasticity (MOE) were competitive for both the WPC formulations, however, MCA led to increased flexural strength of WPC compared to MA.
机译:随着对可持续环境友好材料的需求增加,在过去几年中,木聚合物复合材料如木质 - 聚合物复合材料(WPC)均有更多关注。木废物和副产品,如锯末,薯片,树皮和木材残留物,以及再循环聚合物可以作为WPC生产的原料。然而,仍然存在许多问题获得WPC,主要是疏水性聚合物基质和亲水木材填料之间的不良相容性。在本研究中,进行了白杨木废物的机械化学活化以增加与WPC中再生聚丙烯基质的相容性,并研究了两种方法对生物复合性能的影响。结果发现,与机械活化(MA)颗粒的WPC相比,Aspen木材颗粒的机械化活化(MCA)导致所得WPC的疏水性增加。通过MCA改性WPC,水与水的粘合性显着降低,这也与水分吸附结果相关。与MCA改性的WPC的表面自由能与由MA改性的WPC相比较低,主要是由于表面自由能的极性分量下降。弹性模量(MOE)对WPC配方竞争性,然而,与MA相比,MCA导致WPC的抗弯强度提高。

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