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Improved Mechanical Properties and Special Reinforcement Mechanism of Natural Rubber Reinforced by In Situ Polymerization of Zinc Dimethacrylate

机译:二甲基丙烯酸锌原位聚合增强天然橡胶的力学性能和特殊增强机理

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摘要

The peroxide-cured natural rubber (NR)was reinforced by in situ polymerization of zinc dimethacrylate (ZDMA). The experimental results showed NR could be greatly reinforced by ZDMA. The tensile strength and the hardness of NR/ZDMA composites increased with the content of ZDMA. The reinforcement mechanism was studied further. Both high crosslinking density provided by ionic crosslinking and strain-induced crystallization improved the mechanical properties. The crosslinking density was determined by an equilibrium swelling method and the crystallization index was measured by Wide-angle X-ray diffraction (WXRD). When the amount of ZDMA was high, the ability of strain-induced crystallization decreased, due to the strong interactions between the rubber phase and the hard poly-ZDMA (PZDMA) nanodispersions. At the moment, the increasing ionic crosslinking density made up for the effect of the drop of the strain-induced crystallization, and played a more important role in the reinforcement.
机译:过氧化氢硫化天然橡胶(NR)通过二甲基丙烯酸锌(ZDMA)的原位聚合得到增强。实验结果表明,ZDMA可以大大增强NR。 NR / ZDMA复合材料的拉伸强度和硬度随ZDMA含量的增加而增加。加强机理进行了进一步研究。离子交联提供的高交联密度和应变诱导的结晶均改善了机械性能。通过平衡溶胀法确定交联密度,并通过广角X射线衍射(WXRD)测量结晶指数。当ZDMA的量很高时,由于橡胶相与硬质聚ZDMA(PZDMA)纳米分散体之间的强相互作用,导致应变诱导结晶的能力下降。此刻,增加的离子交联密度弥补了应变诱导结晶下降的影响,并且在增强中起着更重要的作用。

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