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Mechanical and Thermal Characterization of Melt-Filtered, Blended and Reprocessed Post-Consumer WEEE Thermoplastics

机译:熔体过滤,共混和再加工的消费后WEEE热塑性塑料的机械和热特性

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摘要

A melt-blended and melt-filtered real post-consumer and recyclable waste electrical and electronic equipment plastics blend (WEEEBR) was studied, where the WEEEBR contained mainly acrylonitrile-butadiene-styrene copolymer (~40 wt %), high impact polystyrene (~40 wt %) and polypropylene (~10 wt %). The main aim was to better understand the influence of different reprocessing conditions on the mechanical and thermal properties of WEEEBR and to compare these properties with the corresponding properties of model material blends of samples from single screw extrusion, twin screw extrusion and injection molding. For all the reprocessing alternatives studied, WEEEBR was found to be processable and an acceptable surface character could be obtained within narrow processing condition windows. It was found in particular that the reprocessing conditions influenced the elongation at break of WEEEBR, and to a lesser extent also the width of the polypropylene melting temperature region. The highest yield stress and elongation at break of WEEEBR was obtained after twin-screw extrusion at low barrel temperatures (180–200 °C) and a low screw rotation rate (60 rpm). Injection molding produced brittle materials with low impact strength, possibly due to molecular orientation effects.
机译:研究了熔融共混和熔融过滤的真正消费后和可回收的废弃电气电子设备塑料共混物(WEEEBR),其中WEEEBR主要包含丙烯腈-丁二烯-苯乙烯共聚物(〜40 wt%),高抗冲聚苯乙烯(〜 40重量%)和聚丙烯(〜10重量%)。主要目的是更好地了解不同的后处理条件对WEEEBR的机械和热性能的影响,并将这些性能与单螺杆挤出,双螺杆挤出和注塑成型的样品模型材料混合物的相应性能进行比较。对于所有研究的再加工替代品,发现WEEEBR是可加工的,并且可以在狭窄的加工条件窗口内获得可接受的表面特性。特别发现,后处理条件影响WEEEBR的断裂伸长率,并且在较小程度上影响聚丙烯熔融温度区域的宽度。在较低的机筒温度(180–200°C)和较低的螺杆转速(60 rpm)下进行双螺杆挤出后,获得了最高的WEEEBR屈服应力和断裂伸长率。注射成型产生的脆性材料具有较低的冲击强度,这可能是由于分子取向效应所致。

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