Dynamically Vulcanized PP/EPDM Blends: Effect of Composition and Curing Agents

IF 1.4 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
A. Nicolini, Tatiana Louise Avila de Campos Rocha, Marly Maldaner Jacobi
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引用次数: 11

Abstract

The comparative study between two curing agents, conventional peroxide (Peroximon) and bismaleimide/dicumyl peroxide combination (BMI/DCP), and the influence of composition in TPE-Vs based on polypropylene (PP) and ethylene—propylene—diene terpolymer (EPDM) were investigated. The materials were characterized by mechanical, hardness, swelling and morphological properties. The TPE-Vs obtained using Peroximon presented lower tensile strength, remarkable lower deformation and swelling degrees than those cured with BMI/DCP. Among all the investigated PP/EPDM compositions, the content of thermoplastic increases the tensile at break. The experimental swelling values are in agreement with the theoretical for the TPE-Vs obtained using BMI/DCP and for the obtained using Peroximon all compositions showed experimental swelling degree higher than the theoretical ones. The hardness is determined by the amount of PP. We also observed in the morphology studies that the rubber domains are smaller and better defined when the BMI/DCP is used.
动态硫化PP/EPDM共混物:组成和固化剂的影响
对常规过氧化物(Peroximon)和双马来酰亚胺/过氧化二氨基化合物(BMI/DCP)两种固化剂进行了对比研究,并考察了两种固化剂的组成对聚丙烯(PP)和乙烯-丙烯-二烯三元聚合物(EPDM)基TPE-Vs的影响。对材料的力学性能、硬度、溶胀性能和形态性能进行了表征。与使用BMI/DCP固化的TPE-Vs相比,使用Peroximon固化的TPE-Vs具有更低的抗拉强度,更低的变形和肿胀程度。在所有研究的PP/EPDM组合物中,热塑性塑料的含量增加了断裂拉伸。BMI/DCP法得到的TPE-Vs的实验溶胀值与理论溶胀值一致,Peroximon法得到的TPE-Vs的实验溶胀度均高于理论溶胀值。硬度由PP的量决定。我们还在形态学研究中观察到,当使用BMI/DCP时,橡胶畴更小,定义更好。
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来源期刊
Journal of Elastomers and Plastics
Journal of Elastomers and Plastics 工程技术-材料科学:综合
CiteScore
3.30
自引率
5.90%
发文量
41
审稿时长
6 months
期刊介绍: The Journal of Elastomers and Plastics is a high quality peer-reviewed journal which publishes original research on the development and marketing of elastomers and plastics and the area in between where the characteristics of both extremes are apparent. The journal covers: advances in chemistry, processing, properties and applications; new information on thermoplastic elastomers, reinforced elastomers, natural rubbers, blends and alloys, and fillers and additives.
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