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热塑性硫化胶:橡胶形态及力学/弹性性能的新见解。

TPV: A New Insight on the Rubber Morphology and Mechanic/Elastic Properties.

作者信息

Hel Cindy Le, Bounor-Legaré Véronique, Catherin Mathilde, Lucas Antoine, Thèvenon Anthony, Cassagnau Philippe

机构信息

Univ-Lyon, Université Claude Bernard Lyon 1, Ingénierie des Matériaux Polymères, CNRS, UMR 5223, 15 Bd Latarjet, 69622 Villeurbanne CEDEX, France.

Hutchinson, Centre de Recherche, Rue Gustave Nourry-B.P. 31, 45120-Chalette-sur-Loing, France.

出版信息

Polymers (Basel). 2020 Oct 10;12(10):2315. doi: 10.3390/polym12102315.

Abstract

The objective of this work is to study the influence of the ratio between the elastomer (EPDM) phase and the thermoplastic phase (PP) in thermoplastic vulcanizates (TPVs) as well as the associated morphology of the compression set of the material. First, from a study of the literature, it is concluded that the rubber phase must be dispersed with a large distribution of the domain size in the thermoplastic phase in order to achieve a high concentration, i.e., a maximal packing fraction close to ~0.80. From this discussion, it is inferred that a certain degree of progress in the crosslinking reaction must be reached when the thermoplastic phase is melted during mixing in order to achieve dispersion of the elastomeric phase in the thermoplastic matrix under maximum stress. In terms of elasticity recovery which is measured from the compression set experiment, it is observed that the crosslinking agent nature (DCP or phenolic resin) has no influence in the case of a TPV compared with a pure crosslinked EPDM system. Then, the TPV morphology and the rubber phase concentration are the first order parameters in the compression set of TPVs. Finally, the addition of carbon black fillers leads to an improvement of the mechanical properties at break for the low PP concentration (20%). However, the localization of carbon black depends on the crosslinking chemistry nature. With radical chemistry by organic peroxide decomposition, carbon black is located at the interface of EPDM and PP acting as a compatibilizer.

摘要

这项工作的目的是研究热塑性硫化橡胶(TPV)中弹性体(EPDM)相和热塑性相(PP)之间的比例影响,以及材料压缩永久变形的相关形态。首先,通过文献研究得出结论,橡胶相必须在热塑性相中以较大的区域尺寸分布进行分散,以实现高浓度,即最大填充率接近~0.80。由此讨论推断,在混合过程中热塑性相熔化时,交联反应必须达到一定程度的进展,以便在最大应力下使弹性体相分散在热塑性基体中。就从压缩永久变形实验测得的弹性恢复而言,观察到与纯交联EPDM体系相比,TPV情况下交联剂的性质(DCP或酚醛树脂)没有影响。然后,TPV的形态和橡胶相浓度是TPV压缩永久变形的一级参数。最后,添加炭黑填料可改善低PP浓度(20%)时的断裂机械性能。然而,炭黑的定位取决于交联化学性质。通过有机过氧化物分解的自由基化学,炭黑位于EPDM和PP的界面处,起到增容剂的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e55d/7601656/ab97c38b8104/polymers-12-02315-g003.jpg

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