Thermoplastic Elastomer Compounds from Sulfonated EPDM Ionomers

Author:

Paeglis A. U.1,O'Shea F. X.1

Affiliation:

1. 1New Products Research and Development, Uniroyal Chemical Company, Inc., Middlebury, Connecticut 06749

Abstract

Abstract The zinc sulfonate of EPDM, an ionic elastomer polymer, can be readily formulated into useful thermoplastic elastomer compounds having beneficial properties and processing characteristics. The thermoplastic processing characteristics of these ionic elastomers are uniquely controlled by “ionolyzers,” preferential ionic plasticizers. These additives induce thermal reversibility in the ionic crosslink and control the response of the ionic associations to temperature. Ionic elastomer compounds maintain many of the performance features characteristic of vulcanized EPDM, such as low-temperature flexibility, thermal stability, and weatherability, while providing the added advantages of heat weldability and elimination of vulcanization. We have developed a cost-effective ionic elastomer formulation that meets or exceeds the RMA recommendations for black EPDM in a demanding, high performance application, single-ply roofing membrane. High-strength lap seams can be rapidly fabricated using portable hot air welders, a technique unavailable to conventional vulcanized EPDM sheet. Other applications have been investigated for these polymers, such as hose, footwear, mechanical goods, adhesives, impact modifiers, and asphalt modifiers both as thermoplastic elastomers and as modifiers for other materials. These applications have taken advantage of the unique rheological and solubility properties of these polymers. In addition, a new polymer grade offers an advance in the ability to formulate higher strength and more highly filled and extended ionic elastomer compositions.

Publisher

Rubber Division, ACS

Subject

Materials Chemistry,Polymers and Plastics

Cited by 29 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Melt synthesis of sulfonated EPDM ionomers in batch and continuous processes;Polymer Engineering & Science;2020-09-30

2. From landfilling to vitrimer chemistry in rubber life cycle;European Polymer Journal;2016-09

3. Ionomers;Kirk-Othmer Encyclopedia of Chemical Technology;2016-03-15

4. Nanostructured Ionomeric Elastomers;Designing of Elastomer Nanocomposites: From Theory to Applications;2016

5. Preparation and properties of high-performance recyclable ethylene propylene diene rubber;Journal of Applied Polymer Science;2015-08-12

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