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Recovery of recycled acrylonitrile-butadiene-styrene, through mixing with styrene-ethylene/butylene-styrene

机译:通过与苯乙烯-乙烯/丁烯-苯乙烯混合,回收回收的丙烯腈-丁二烯-苯乙烯

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Recovery of recycled acrylonitrile-butadiene-styrene (ABS) through mixing with styrene-ethylene/butylene-styrene (SEBS) has been studied in this paper. To simulate recycled ABS, virgin ABS was processed through 5 cycles, at extreme processing temperatures, 220℃ and 260℃. The virgin ABS, the virgin SEBS, the recycled ABS and the mixtures were mechanically, thermally and rheologically characterized after the various cycles of reprocessing in order to evaluate their corresponding properties and correlate them with the number of cycles undergone. With these data and using Computer Aided Engineering (CAE) the injection process was simulated by obtaining the optimal injection process parameters. Mixtures were injected at two temperatures in a sensorised mold correlating the shrinkage of the parts with temperature. The results show that tensile strength of ABS remains practically constant as the number of reprocessing cycles increases, while in the material injected with SEBS the tensile strength decreases. Concerning the Charpy notched impact strength; the values of the ABS reprocessed at 220℃ remain more or less unchanged, while the values for 260℃ show a significant decrease. The adhesion of the SEBS causes, in both cases, an increase in impact strength. DSC techniques enabled us to observe how the glass transition temperature (T_g) remains more or less constant regardless of the number of cycles or the temperature, whereas the crosslinking is much greater in the samples reprocessed at 260℃. Finally, the viscosity decreases with each cycle and this decrease becomes even more noticeable with the addition of SEBS, and also that the parts molded at lower temperatures have less shrinkage.
机译:本文研究了通过与苯乙烯-乙烯/丁烯-苯乙烯(SEBS)混合回收回收的丙烯腈-丁二烯-苯乙烯(ABS)。为了模拟回收的ABS,在极端加工温度(220℃和260℃)下,通过5个循环对原始ABS进行了加工。在重新加工的各个循环之后,对原始ABS,原始SEBS,回收的ABS和混合物进行机械,热学和流变学表征,以评估其相应的性能并将其与经历的循环次数相关联。利用这些数据并使用计算机辅助工程(CAE),可以通过获得最佳注射过程参数来模拟注射过程。在两个温度下将混合物注入感应模具中,使零件的收缩率与温度相关。结果表明,随着再加工循环次数的增加,ABS的拉伸强度实际上保持恒定,而在注入SEBS的材料中,拉伸强度降低。关于夏比缺口冲击强度;在220℃下再加工的ABS值基本保持不变,而在260℃下再加工的ABS值则明显降低。在两种情况下,SEBS的附着力均会提高冲击强度。 DSC技术使我们能够观察到玻璃化转变温度(T_g)如何保持或多或少恒定,而与循环次数或温度无关,而在260℃进行了再加工的样品中,交联度要大得多。最终,粘度随着每个循环而降低,并且随着SEBS的添加,这种降低变得更加明显,而且在较低温度下成型的零件的收缩率也更低。

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