The development of optimal conditions for the synthesis of the nitrile-butadiene rubbers with enhanced frost resistance

V. N. Papkov, A. Yuriev, A. M. Skachkov, D. A. Rodnyansky, N. I. Schelushkina
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Abstract

Currently, there are high requirements for finished rubber products, in particular, for products that are operated in the Far North. The purpose of this work is to determine the optimal conditions for the production of nitrile butadiene rubbers, which provide an increase in the frost resistance of materials based on them while maintaining a high level of physical, mechanical and operational properties. The paper presents polymerization recipes and synthesis conditions. It was found that the fractional addition of acrylic acid nitrile and molecular weight regulator provide optimal conditions for obtaining synthetic rubber with the desired characteristics. The results of testing prototypes for chemical composition and physical and mechanical properties comply with the technical specifications for rubbers of the SKN-SNT brand. Rubbers and vulcanizates SKN 20SNT are the most promising for the creation of frost-oil-resistant products. Physical and mechanical tests have shown that the vulcanizate of the SKN 15SNT sample obtained under optimal synthesis conditions has a tensile strength of 22.7 MPa, an elongation at break of 485%, and a frost resistance coefficient of 0.84. It was also found that the vulcanizate of the SKN 20SNT sample, obtained under optimal synthesis conditions, has a tensile strength of 24.0 MPa, an elongation at break of 478%, and a frost resistance coefficient of 0.61. An increase in the oil and petrol resistance of frost-resistant rubbers and SKN 15SNT vulcanizates can be realized by controlled crosslinking of rubber polymer chains at the polymerization stage. The continuation of this work will be extended tests of prototypes SKN 15SNT and SKN 20SNT in order to determine such indicators as glass transition temperature, average molecular weight, molecular weight distribution, degree of polydispersity, gel content, compositional uniformity, etc.
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研究了合成抗冻丁腈橡胶的最佳工艺条件
目前,对成品橡胶制品的要求很高,特别是在遥远的北方经营的产品。这项工作的目的是确定生产丁腈橡胶的最佳条件,以提高基于丁腈橡胶的材料的抗冻性,同时保持高水平的物理、机械和操作性能。介绍了聚合配方和合成条件。结果表明,丙烯酸腈和分子量调节剂的分数添加为合成橡胶的性能提供了最佳条件。化学成分和物理机械性能测试原型的结果符合SKN-SNT品牌橡胶的技术规范。橡胶和硫化SKN 20SNT是最有希望的创建耐霜油产品。物理力学试验表明,在最佳合成条件下得到的SKN 15SNT试样的硫化胶抗拉强度为22.7 MPa,断裂伸长率为485%,抗冻系数为0.84。结果表明,在最佳合成条件下制备的SKN 20SNT硫化胶抗拉强度为24.0 MPa,断裂伸长率为478%,抗冻系数为0.61。通过在聚合阶段控制橡胶聚合物链的交联,可以提高抗冻橡胶和SKN 15SNT硫化胶的耐油、耐汽油性能。这项工作的继续将对原型SKN 15SNT和SKN 20SNT进行扩展测试,以确定玻璃化转变温度、平均分子量、分子量分布、多分散度、凝胶含量、成分均匀性等指标。
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