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Mixing PC/ABS Regrind: A Preliminary Study

机译:混合PC / ABS再重新研磨:初步研究

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The use of different grades of the same type of resin is not uncommon in automotive manufacturing facilities. As a consequence, the use of internal regrind becomes cumbersome due to increased material handling, storage and cross contamination possibility between the different grades of the same resin. The ability to combine the regrind streams would alleviate these consequences as well as promote the usage of the recycled resin within a given manufacturing facility versus recycling via outside sales or even landfill which is typical with mixed recyclate streams. In this study, recyclate of two different grades of acrylonitrile-butadiene-styrene and polycarbonate blend (PC/ABS) resins from different suppliers were evaluated. Various ratios of the two grades were evaluated where the blending occurred in both regrind and reprocessed/repelletized forms. Due to the nature of this study, certain preliminary properties were evaluated prior to moving forward with other plaque and/or part testing. The properties evaluated were melt flow, flexural modulus and izod impact strength at room temperature. The melt flow and flexural modulus values were evaluated for each ratio and revealed a linear relationship. The izod impact strength was evaluated at 50/50 blends of the two different grades initially, along with the corresponding controls, to detect possible incompatibility issues since the resin manufacturing process of the two prime PC/ABS resins differ. Since there were no drastic changes in the impact strength, further testing of the other ratios was not pursued. As expected, the mixing of the two different grades of PC/ABS recyclate for reuse back into the same or similar automotive components appears feasible and warrants further testing in situations where various grades of the same resins are used within a given manufacturing facility to promote internal recycling.
机译:在汽车制造设施中使用不同等级的相同类型的树脂并不少见。因此,由于具有相同树脂的不同等级之间的材料处理,储存和交叉污染可能性,使用内部重新研磨的使用变得麻烦。结合重新研磨流的能力将缓解这些后果,并促进通过外部销售或甚至垃圾填埋场促进给定的制造设施内的再生树脂的用法,这与混合循环流典型。在该研究中,评估了来自不同供应商的两种不同等级的丙烯腈 - 丁二烯 - 苯乙烯和聚碳酸酯共混物(PC / ABS)树脂的再循环。评估两种等级的各种比率,其中共混在再生和再加工/后晶形式中发生混合。由于本研究的性质,在使用其他斑块和/或部件测试之前评估某些初步性质。评估的性质在室温下熔体流动,弯曲模量和冰孔冲击强度。对每个比率评价熔体流动和弯曲模量值并揭示了线性关系。在最初的两种不同等级的50/50共混物中评价Izod冲击强度,以及相应的对照,以检测可能的不相容性问题,因为两种初始PC / ABS树脂的树脂制造过程不同。由于影响力没有剧烈变化,因此不追求对其他比率的进一步测试。如所预期的那样,两种不同等级的PC / ABS再循环的混合重新使用回到相同或相似的汽车组分中似乎可行,并且在给定的制造设施内使用各种等级的各种等级以促进内部的情况进行进一步测试回收。

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