首页> 外文期刊>Journal of Polymers and the Environment >Determination of Some Technological Properties of Injection Molded Pulverized-HDPE Based Composites Reinforced with Micronized Waste Tire Powder and Red Pine Wood Wastes
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Determination of Some Technological Properties of Injection Molded Pulverized-HDPE Based Composites Reinforced with Micronized Waste Tire Powder and Red Pine Wood Wastes

机译:用微粉化废弃物粉和红松木材加强注塑成型粉碎高清合复合材料的一些技术特性

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In this study, the effects of micronized waste tire powder (WTP) and red pine wood waste flours (RPF) concentrations on the properties of pulverized-high density polyethylene (P-HDPE) composites were investigated. Ingredients were first mixed in a high-intensity mixer, later passed through single screw extruder to produce extrudates and finally pelletized and dried before sample manufacturing using injection molding machine. Contrary to the fact that lignocellulosic materials increase the brittleness of composites, the presence of WTP improved hardness and impact properties of lignocellulosic-based composite by making them softer. Both WTP and RPF concentrations have significantly increased density, thickness swelling (TSW) and water absorption of composites. Rising percentage of RPF improved the flexural strength, flexural modulus, tensile strength and tensile modulus values of composites. Addition of WTP, on the other hand, reduced these values. Although the presence of WTP has slightly increased the elongations at break (EatB) values in neat-HDPE, it decreased the EatB values of the composites having RPF in it. Thermal degradation started at 275 degrees C and 360 degrees C for RPF and WTP, respectively. With the loading of both fillers in the p-HDPE matrix, melting temperature of composites and crystallinity ratio of the polymer was slightly changed. SEM images showed improved dispersion of RPF due to MAPE usage. Through this study, some technological properties of injection molded P-HDPE based composites reinforced with WTP and RPF were determined and potential utilization of WTP in lignocellulosic-based composites was demonstrated.
机译:在本研究中,研究了微粉化废轮胎粉末(WTP)和红松木材废面粉(RPF)浓度对粉碎高密度聚乙烯(P-HDPE)复合材料的性能的影响。首先将成分混合在高强度混合器中,后来通过单螺杆挤出机以生产挤出物并最终用注射成型机进行样品制造之前造粒并干燥。与木质纤维素材料增加复合材料的脆性的事实相反,通过使它们更柔软,WTP的存在改善了木质纤维素基复合材料的硬度和冲击性能。 WTP和RPF浓度均具有显着增加的密度,厚度膨胀(TSW)和复合材料的吸水性。 RPF的百分比提高了复合材料的弯曲强度,弯曲模量,拉伸强度和拉伸模量值。另一方面,添加WTP,减少了这些值。尽管WTP的存在略微增加了纯HDPE中断裂(EATB)值的伸长率,但它降低了其具有RPF的复合材料的抗咖啡价。热降解分别以275摄氏度和360摄氏度的RPF和WTP开始。随着P-HDPE基质中的两种填料的加载,复合材料的熔化温度和聚合物的结晶度比略微改变。由于MAPE使用,SEM图像显示出RPF的改善分散。通过该研究,确定了一种用WTP和RPF加强的注射模塑的P-HDPE复合材料的技术性质,并确定了木质纤维素基复合材料中WTP的潜在利用。

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