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Dynamic Viscoelasticity Behaviors of Magnesium Dimethacrylate/Natural Rubber Composites With Different Cure Extent

机译:不同固化程度的二甲基丙烯酸镁/天然橡胶复合材料的动态粘弹性行为

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摘要

In this article, the dynamic viscoelasticity characteristics of the natural rubber (NR)/magnesium dimethacry-late (MDMA) composites with different cure extent are investigated using a Rubber Process Analyzer 2000 (RPA2000). A weak filler-filler network of MDMA is formed in the uncured compounds. MDMA polymerize during peroxide curing and change to the polymerized MDMA (PMDMA), which can aggregate to form strong filler network in the lightly cured composite. The ionic crosslinks and NR crosslinks influence the dynamic viscoelasticity characteristics of the MDMA/NR composites with different cure extent significantly. Although the PMDMA aggregates have strong attraction with each other to form filler network, the ionic crosslinks are not favorable to rebuild the PMDMA network when the NR crosslink network is mature. Finally, the torque verifies that the ionic crosslinks can be influenced by small strain magnitudes (<0.1 ) whereas the NR crosslink network is not influenced.
机译:在本文中,使用Rubber Process Analyzer 2000(RPA2000)研究了不同固化程度的天然橡胶(NR)/甲基丙烯酸二甲酯(MDMA)复合材料的动态粘弹性特性。在未固化的化合物中形成了弱的MDMA填料-填料网络。 MDMA在过氧化物固化过程中发生聚合,并转变为聚合的MDMA(PMDMA),该MDMA可以聚集形成轻固化的复合材料中的牢固填料网络。离子交联和NR交联会显着影响固化程度不同的MDMA / NR复合材料的动态粘弹性特征。尽管PMDMA聚集体之间具有很强的吸引力以形成填充剂网络,但当NR交联网络成熟时,离子交联不利于重建PMDMA网络。最终,扭矩证明离子交联可以受到较小的应变幅度(<0.1)的影响,而NR交联网络则不受影响。

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