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Modification of substandard EPDM with amorphous thermoplastic polyesters (PETG and PEF): microstructure and physical properties

机译:用非晶热塑性聚酯(PETG和PEF)不合标准EPDM的修饰:微观结构和物理性质

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摘要

The phase morphology, thermal behavior and mechanical properties of two series of polymer blends based on ethylene/propylene/diene rubber (EPDM) and amorphous homologues of poly(ethylene terephthalate), i.e. glycol modified poly(ethylene terephthalate) (PETG) and poly(ethylene furanoate) (PEF), were investigated. The morphology of the blends shows a two phase structure in which the minor phase (amorphous polyester) is dispersed as domains in the major (EPDM) continuous matrix phase. Differential calorimetry studies confirmed that both systems were immiscible and exhibits two glass transitions. The melting peak area of EPDM in the blends decreased as the amount of the other component increased. The values of stress at strain of 100% were improved upon the increasing content of PETG in EPDM system, while only slight decrease of this value was observed. Moreover, the strong improvement of hardness and thermo-oxidative stability along with an increasing content of amorphous polyester phase was reported.
机译:基于乙烯/丙烯/二烯橡胶(EPDM)和聚(对苯二甲酸乙二醇酯)的无定形同源物的两系列聚合物共混物的相位形态,热性能和机械性能,即二醇改性聚(乙二醇酯)(PETG)和聚(研究了乙烯呋喃酸盐)(PEF)。共混物的形态表明,两相结构,其中小相(无定形聚酯)分散为主要(EPDM)连续基质相中的结构域。差分量热法研究证实,两种系统都不混溶,呈现两个玻璃过渡。随着其他组分的量增加,共混物中EPDM的熔融峰面积降低。对EPDM系统中PETG含量的增加,菌株的应变值得到改善,而观察到该值的略微降低。此外,据报道,硬度和热氧化稳定性的强劲提高以及由于无定形聚酯相的含量增加。

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