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Processing and Properties of Thermoplastics Elastomers Based on Recycled Polyethylene and EPDM

机译:基于再生聚乙烯和EPDM的热塑性弹性体的加工和性能

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In order to reduce raw material costs, thermoplastic elastomer (TPE) resins were produced using recycled materials. In particular, post-consumer polyethylene (PE) and ethylene-propylene diene monomer (EPDM) were used. Nevertheless, a coupling agent based on maleated polyethylene (MAPE) was used to determine if interfacial properties can be modified. The compounds were processed via twin-screw extrusion and then pelletized. The samples were finally produced by compression molding with different EPDM (0, 40, 50, 60, 80, 90%) and MAPE (0, 5, 10 phr) contents giving a wide range of properties. Based on the samples produced, a complete mechanical characterization in terms of tensile, torsion, and flexural properties was performed, as well as morphology, density and hardness. The results show that the effect of coupling agent addition is only important at high EPDM contents with a transition concentration around 60% where a balance between rigidity, elasticity and strength can be obtained.
机译:为了降低原料成本,使用再循环材料制备热塑性弹性体(TPE)树脂。特别地,使用消费后聚乙烯(PE)和乙烯 - 丙烯二烯单体(EPDM)。然而,基于马来酸的聚乙烯(MAPE)的偶联剂用于确定是否可以改变界面性质。通过双螺杆挤出处理化合物,然后造粒。最终通过用不同的EPDM(0,40,50,60,80,80%)和Mape(0,5,10phr)含量的压缩成型来制备样品,其含有各种性质。基于所产生的样品,进行拉伸,扭转和弯曲性能的完全机械表征,以及形态,密度和硬度。结果表明,偶联剂添加的效果在高EPDM含量下仅重要,过渡浓度约为60%,其中可以获得刚性,弹性和强度之间的平衡。

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