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The Influence of Vulcanization Agents on Vulcanization Kinetics of Chloride Butyl Rubber

机译:硫化剂对氯化丁基橡胶硫化动力学的影响

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摘要

BPR (brominated tert octyl phenolic resin) vulcanization system is one of the commonly used systems for CIIR (chloride butyl rubber). In the vulcanization process, there are two competitive reactions, the cross-linking reaction and the self-poly-condensation reaction of BPR. In this vulcanization system, the metal oxide, as vulcanization active agent, have a greater impact on the kinetics of these two competing reaction. The kinetics equation of overall reaction (including the two competitive reactions) and the BPR self-poly-condensation reaction with different amount of ZnO or MgO were obtained by non-isothermal DSC method. The results showed that ZnO would promote the overall reaction and the BPR self-poly-condensation reaction at lower dosage, the rate constant of overall reaction increased faster than BPR self-poly-condensation reaction rate constant with the increasing of the ZnO content, and when the ZnO content exceeded 7.5phr, the rate constant of BPR self-poly-condensation reaction decreased; With the increasing of the MgO content, the rate constant of overall reaction and BPR self-poly-condensation reaction reduced, and the rate constant of self-poly-condensation reaction reduced much faster than the rate constant of the overall reaction when the content of MgO changed from 0.5 to 0.75. The cross-linking density was measured by the equilibrium swelling method. The results showed that with the increasing of ZnO content, the cross-linking density increased when it was less than 10 phr, and decreased when the ZnO content exceeded 10 phr. With the increasing of MgO content, the cross-linking density increased when it was less than 0.75 phr, and decreased when the MgO content exceeded 0.75 phr. The mechanical properties and the dynamic mechanical properties were investigated by the universal testing machine and the dynamic mechanical performance analysis (DMA), respectively. The results showed that the ZnO and MgO content had a great impact on the mechanical properties and the dynamic mechanical properties, and the variation trend of the cross-linking density was further confirmed by the corresponding variation of the properties.
机译:BPR(溴化叔辛基酚醛树脂)硫化系统是CIIR(氯化丁基橡胶)的常用系统之一。在硫化过程中,存在两个竞争反应,即BPR的交联反应和自缩聚反应。在该硫化体系中,作为硫化活性剂的金属氧化物对这两个竞争反应的动力学具有更大的影响。采用非等温DSC法得到了ZnO或MgO含量不同时,总反应(包括两个竞争反应)和BPR自缩聚反应的动力学方程。结果表明,ZnO在较低剂量下能促进总反应和BPR自缩聚反应,随着ZnO含量的增加,总反应速率常数比BPR自缩聚反应速率常数更快。当ZnO含量超过7.5phr时,BPR自缩聚反应的速率常数降低。随着MgO含量的增加,总反应和BPR自缩聚反应的速率常数降低,自缩聚反应的速率常数的降低速度快于当Bg自缩聚反应的总速率。 MgO从0.5变为0.75。通过平衡溶胀法测量交联密度。结果表明,随着ZnO含量的增加,当交联密度小于10 phr时,交联密度增加;当ZnO含量超过10 phr时,交联密度下降。随着MgO含量的增加,当其小于0.75phr时,交联密度增加,而当MgO含量超过0.75phr时,交联密度降低。力学性能和动态力学性能分别通过通用试验机和动态力学性能分析(DMA)进行了研究。结果表明,ZnO和MgO的含量对力学性能和动态力学性能有较大影响,而交联密度的变化趋势则由相应的性能变化进一步证实。

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