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New Understanding of Morphology Evolution of Thermoplastic Vulcanizate (TPV) during Dynamic Vulcanization

机译:动态硫化过程中热塑性硫化橡胶(TPV)形态演变的新认识

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Thermoplastic vulcanizates (TPVs) have attracted considerable attention as typical “green” polymers in recent years and have been widely used in industry because they combine the excellent resilience of conventional elastomers and the easy recyclability of thermoplastics. With a new understanding of the formation and agglomeration of the rubber nanoparticles in ethylene propylene diene monomer/polypropylene (EPDM/PP) TPV, we revealed a new mechanism for the morphology evolution of TPV during dynamic vulcanization (DV). The phase inversion in TPV is dominated by the formation and agglomeration of the rubber nanoparticles rather than the elongation and breakup of the crosslinked rubber phase as previously reported. The size of the rubber agglomerates increases with increasing DV time and then remains constant after DV. In addition, we studied the relationship between the cross-linking of the rubber phase, formation and agglomeration of the rubber nanoparticles, and phase inversion and variation of the rubber network during DV. This study provides guidance to control the microstructure of TPV in preparation of high performance TPV products for automobile and electronic applications.
机译:热塑性硫化橡胶(TPV)近年来作为典型的“绿色”聚合物引起了广泛的关注,并且由于其结合了常规弹性体的出色回弹性和热塑性塑料的易回收性而被广泛用于工业中。通过对乙烯丙烯二烯单体/聚丙烯(EPDM / PP)TPV中橡胶纳米粒子的形成和聚集的新认识,我们揭示了动态硫化(DV)过程中TPV形态演变的新机制。 TPV中的相转化主要由橡胶纳米颗粒的形成和附聚而不是先前报道的交联橡胶相的伸长和破裂决定。橡胶附聚物的尺寸随着DV时间的增加而增加,然后在DV之后保持恒定。此外,我们研究了橡胶相的交联,橡胶纳米颗粒的形成和附聚以及DV过程中橡胶网络的相转化和变化之间的关系。本研究为控制TPV的微观结构提供指导,以制备用于汽车和电子应用的高性能TPV产品。

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