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Curing Characteristics and Dynamic Mechanical Behaviour of Reinforced Acrylonitrile-Butadiene/Chlorosulfonated Polyethylene Rubber Blends

机译:增强丙烯腈 - 丁二烯/氯磺化聚乙烯橡胶共混物的固化特性及动态力学行为

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This paper deals with the control of the adhesion strength in metal-elastomer joints by fillers and the use of rubber blends to produce advanced high performance adhesive systems. The curing behavior of rubber compounds and dynamic mechanical properties of crosslinked rubber composites were considered in this technologically applicable study. The effects of two types of reinforcing filler, used to increase the adhesion strength between steel and rubber matrix based on acrylonitrile-butadiene rubber (NBR) and chlorosulfonated polyethylene rubber (CSM) was investigated. Precipitated silica (with the average size of primary particle 15 nm) and diatomaceous earth (with the average size of primary particle 28 μm) were used for both rubber and its blend (NBR/CSM). The filler loading range was from 0 to 35 phr. The determination of curing characteristics was estimated by Monsanto Rheometer. The crosslink density of the rubber composites was determined by swelling measurement. Dynamic mechanical behavior was measured by mechanical spectroscopy (in a single cantilever bending mode).
机译:本文涉及通过填料控制金属弹性体接头中的粘合强度和橡胶共混物生产先进的高性能粘合剂系统。在这项技术上,考虑了橡胶化合物的固化行为和交联橡胶复合材料的动态力学性能。研究了两种增强填料的影响,用于基于丙烯腈 - 丁二烯橡胶(NBR)和氯磺化聚乙烯橡胶(CSM)的钢和橡胶基质之间的粘附强度增加。橡胶及其共混物(NBR / CSM)使用沉淀二氧化硅(具有初级颗粒15nm的平均尺寸)和硅藻土(具有初级颗粒28μm的平均尺寸)。填料加载范围为0至35phr。 Monsanto流变仪估计固化特性的测定。通过溶胀测量来确定橡胶复合物的交联密度。通过机械光谱(单个悬臂弯曲模式)测量动态力学行为。

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