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New Coagents in Cross-linking of Hydrogenated Butadiene-Acrylonitrile Elastomer Based on Nanostructured Zinc Oxide

机译:基于纳米结构氧化锌的氢化丁二烯-丙烯腈弹性体交联的新型助剂

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摘要

Peroxide vulcanization leads to formation of carbon-carbon cross-links, resulting in some cases in poor mechanical properties of the vulcanizates, which restricts the application of such materials in industrial goods. Therefore to improve the properties of the obtained vulcanizates coagents are added to the rubber compounds. Coagents are incorporated in the polymer network by covulcanization of coagent domains with elastomer matrix. As a result, coagents affect the cross-link structures and the network topology of the vulcanizate, resulting in improvement in strength properties and increased cross-linking efficiency. In these studies we applied nanostructured zinc oxide as a coagent in peroxide vulcanization of hydrogenated butadiene-acrylonitrile elastomer HNBR (Therban A3704). The surface of nanoparticle zinc oxide was modified with unsaturated acids and esters such as itaconic acid, acrylic acid and monoallyl maleate. The influence of modified nanoparticle zinc oxide on cross-link density and mechanical properties of vulcanizates was estimated.
机译:过氧化物硫化导致形成碳-碳交联,在某些情况下导致硫化产物的机械性能差,这限制了这种材料在工业产品中的应用。因此,为了改善所获得的硫化橡胶的性能,将助剂加入到橡胶混合物中。通过将助剂结构域与弹性体基质共硫化,将助剂掺入聚合物网络中。结果,助剂影响了硫化橡胶的交联结构和网络拓扑,从而改善了强度性能并提高了交联效率。在这些研究中,我们在氢化丁二烯-丙烯腈弹性体HNBR(Therban A3704)的过氧化物硫化中应用了纳米结构的氧化锌作为助剂。纳米颗粒氧化锌的表面用不饱和酸和衣康酸,丙烯酸和马来酸单烯丙基酯改性。估计了改性的纳米氧化锌对硫化胶的交联密度和力学性能的影响。

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