首页> 外文期刊>Journal of Polymers and the Environment >Effects of Lignocellulosic Fillers from Waste Thyme on Melt Flow Behavior and Processability of Wood Plastic Composites (WPC) with Biobased Poly(ethylene) by Injection Molding
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Effects of Lignocellulosic Fillers from Waste Thyme on Melt Flow Behavior and Processability of Wood Plastic Composites (WPC) with Biobased Poly(ethylene) by Injection Molding

机译:废百里比对废百里香对木质塑料复合材料(WPC)与生物化聚(乙烯)熔融流动行为及加工性的影响

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Wood-like plastic composites were manufactured with a thermoplastic matrix polymer from renewable resources, i.e. high-density poly(ethylene) from bioethanol and a lignocellulosic filler obtained as a byproduct of the industrial distillation of thyme. The potential manufacturing of these composites by injection molding was studied. For this purpose, an in depth study of the effects of the lignocellulosic loading (comprised between 10 and 50 wt%) on the rheological properties of these composites was carried out by using capillary rheometry and model fitting with the Cross-WLF rheological model. In addition, a side by side comparison of the experimental results and those obtained by simulations with MoldFlow (R) was provided. In addition, the values of the pressure in the cavity and in the sprue were measured and collected by two selectively mounted pressure sensors and the results were compared with those predicted by MoldFlow (R) with the inputs provided by the Cross-WLF fitting model. The results showed a remarkable increase in viscosity with increasing lignocellulosic filler content, which has a negative effect on overall processability. This phenomenon specifically intense at low shear rates. However, this phenomenon could be potentially minimized using high shear rates because of the shear thinning effect of pseudoplastic fluids. Both the experimental and simulated results suggest the need of higher pressures to fill the cavity with these WPC, specifically for those with high filler content of up to 50 wt%. The results of the study indicate that melt viscosity is highly linked to the cavity pressure which is the dominant factor determining the quality of the final product in plastic injection molding.
机译:用来自可再生资源的热塑性基质聚合物制造木样塑料复合材料,即来自生物乙醇的高密度聚(乙烯)和作为百里香的工业蒸馏的副产物获得的木质纤维素填料。研究了通过注射成型的这些复合材料的潜在制造。为此目的,通过使用毛细管计流变管测压和与交叉-WLF流变模型的模型配合进行对这些复合材料的流变性质的木质纤维素载荷(10和50wt%之间的影响的深度研究。另外,提供了实验结果的并排比较和通过模拟与模拟与模液(R)获得的相比。另外,通过两个选择性安装的压力传感器测量和收集腔体和浇口中的压力的​​值,并将结果与​​模具流(R)预测的那些与由交叉WLF拟合模型提供的输入进行比较。结果表明,随着木质纤维素填料含量增加,粘度显着增加,其对整体加工性具有负面影响。这种现象在低剪切速率下特别强烈。然而,由于假塑料流体的剪切薄效应,可以使用高剪切速率可能最小化这种现象。实验和模拟结果均表明需要较高的压力来利用这些WPC填充腔体,特别是对于高达50wt%的高填料含量的那些。该研究的结果表明熔体粘度与腔压力高度连接,该腔压力是确定塑料注射成型中最终产品质量的显性因素。

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