THE INFLUENCE OF ETHYLENE COPOLYMERS WITH VINYL ACETATE ON PROPERTIES OF RUBBER BASED OF BUTADIENE-NITRILE CAOUTCHOUC

I. S. Spiridonov, M. S. Illarionova, N. F. Ushmarin, S. I. Sandalov, N. I. Kol’tsov
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引用次数: 2

Abstract

Rubber-technical products, which are used in the oil and gas industry, must have high thermal and aggressive strength. Rubbers based on butadiene-nitrile caoutchoucs are usually used for these purposes, since they have good operational properties. However, under the influence of elevated temperatures, the resistance of such rubbers to the action of petroleum products is reduced, as a result of which the physico-mechanical characteristics decrease. To improve the operational properties of rubber-technical products, various technological additives are introduced into the rubber mixtures. Such additives can be copolymers of ethylene with vinyl acetate(EVA), which increase the resistance of rubbers to action of high temperatures and aggressive media. This is due to the fact that these copolymers are well combined with butadiene-nitrile caoutchoucs, forming coordination bonds with rubber molecules, which contributes thereby increasing in the elastic-strength and performance properties of rubber. In this connection, the influence of EVA (sevillenes 11104-030, 11808-340 and MarPol 1802), differing in the content of vinyl acetate units, on the rheometric, physico-mechanical and operational properties of the rubber mixture based on butadiene-nitrile rubber in this paper was investigated. The study was carried out to improve the thermo-resistance of rubber used for the manufacture of oil and petrol resistant rubber-technical products for the oil and gas industry. The rubber mixture was prepared on laboratory rolls and standard samples were vulcanized in an electrically heated press. The study of rheometric properties has shown that EVA affect the characteristics of the vulcanization process of a rubber mixture. For vulcanizates, the influence of the content of EVA in a rubber mixture on the physical and mechanical properties was studied: the conditional tensile strength, elongation at break, tear resistance, rebound elasticity, Shore A hardness, relative compression deformation. The effect of the standard liquid ZHR-1 on the change in these properties, as well as the degree of swelling of the vulcanizates after their daily soaking in the standard liquid SZHR-1 and a mixture of isooctane + toluene, was studied. It has been established that vulcanizate of a rubber mixture containing sevilene 11808-340 is characterized by the best physico-mechanical and operational properties.
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乙烯与乙酸乙烯酯共聚物对丁二烯-丁腈橡胶性能的影响
用于石油和天然气行业的橡胶技术产品必须具有高的热强度和侵蚀强度。基于丁腈橡胶的橡胶通常用于这些目的,因为它们具有良好的操作性能。然而,在高温的影响下,这种橡胶对石油产品作用的抵抗力降低,其结果是物理力学特性降低。为了提高橡胶工艺产品的使用性能,在橡胶混合物中加入了各种工艺添加剂。这样的添加剂可以是乙烯与乙酸乙烯酯(EVA)的共聚物,其增加了橡胶对高温和侵蚀性介质的抵抗力。这是因为这些共聚物与丁腈橡胶很好地结合,与橡胶分子形成配位键,从而有助于提高橡胶的弹性强度和性能。在这方面,本文研究了乙酸乙烯酯单元含量不同的EVA(sevillenes 11104-0301108-340和MarPol 1802)对基于丁腈橡胶的橡胶混合物的流变学、物理机械和操作性能的影响。本研究旨在提高用于制造石油和天然气行业耐油和汽油橡胶技术产品的橡胶的耐热性。橡胶混合物在实验室辊上制备,标准样品在电热压机中硫化。流变性能研究表明,EVA影响橡胶混合物硫化过程的特性。研究了EVA含量对硫化胶物理力学性能的影响:条件拉伸强度、断裂伸长率、抗撕裂性、回弹弹性、肖氏a硬度、相对压缩变形。研究了标准液体ZHR-1对这些性能变化的影响,以及硫化胶在标准液体SZHR-1和异辛烷+甲苯混合物中每天浸泡后的溶胀度。已证实,含有sevilene 11808-340的橡胶混合物的硫化胶具有最佳的物理力学和操作性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.40
自引率
44.40%
发文量
83
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