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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Production of Thermoplastic Elastomers Based on Recycled PE and Ground Tire Rubber: Morphology, Mechanical Properties and Effect of Compatibilizer Addition
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Production of Thermoplastic Elastomers Based on Recycled PE and Ground Tire Rubber: Morphology, Mechanical Properties and Effect of Compatibilizer Addition

机译:基于再生的PE和地轮胎橡胶的热塑性弹性体的生产:形态,机械性能和增容剂的作用

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摘要

Constant growth of waste polymers around the world leads to several environmental problems. This is why solutions to reuse these high amounts of materials available must be developed. In this work, highly filled (up to 90 wt.%) recycled poly- ethylene (R-PE)/ground tire rubber (GTR) thermoplastic elastomers were prepared by extrusion compounding and injection molding. To improve on processability and overall properties, two copolymers (Engage 8180 and Vestenamer 8012) were added as compatibilizers for comparison. SEM results showed that compatibilizer addition changed the blend morphology. In all cases, the mechanical properties in tension and flexion decreased with GTR addition. It was also observed that the addition of a copolymer improved on some properties (such as elongation at break), but Engage 8180 showed better compatibilization effect than Vestenamer 8012 which was confirmed from SEM analysis, while other properties (tensile strength, Young's and flexural modulus) were reduced due to lower GTR and compatibilizer moduli. For impact strength, negligible variation was observed below 40 wt. % GTR. However, the samples did not break for GTR contents above 60 wt.%. Density increased with GTR content, while Shore A and D hardness decreased. Overall, the addition of a compatibilizar mostly enabled to produce compounds at higher GTR contents (above 70 wt.%). From the result obtained, it can be concluded that recycled materials can be used to produce blends with reasonable quality for automotive, packaging and construction applications since the mechanical properties can he optimized via formulation over a very wide range of GTR (0-90 wt.%).
机译:世界各地的废聚合物的持续增长导致了几个环境问题。这就是为什么必须开发重用这些高量材料的解决方案。在这项工作中,通过挤出复合和注塑制备了高度填充(最多90重量%)再循环的聚乙烯(R-PE)/地轮胎橡胶(GTR)热塑性弹性体。为了改善加工性和总体性质,添加两种共聚物(接合8180和Vestenamer 8012)作为相容剂进行比较。 SEM结果表明,增容剂加入改变了混合形态。在所有情况下,张力和屈曲中的机械性能随GTR加入而降低。还观察到,在一些性质(如断裂时)的添加共聚物,但接合8180显示比VEC分析证实的VESTENAMER 8012更好的相容效果,而其他性质(拉伸强度,杨氏和弯曲模量由于GTR和Compatibiliger Moduli,由于低压和增容剂而降低。对于冲击强度,观察到40%wt的可忽略不计的变化。 %GTR。然而,样品没有破坏60重量%的GTR含量。%。密度随着GTR含量的增加,而岸A和D硬度降低。总的来说,添加兼容性均质主要使得能够在较高的GTR内容物(高于70重量%)中产生化合物。从得到的结果中,可以得出结论,再生材料可用于生产具有合理的汽车,包装和施工应用的共混物,因为机械性能可以通过在非常宽的GTR上通过制剂进行优化(0-90wt。 %)。

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