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Study of Rheological Behavior and Miscibility of Epoxidized Natural Rubber Modified Neoprene

机译:环氧天然橡胶改性氯丁橡胶的流变行为和混溶性研究

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摘要

The Mooney viscosity, curing rates, vulcanization behavior, and the relationship between molecular motion of epoxidized natural rubber (ENR) and neoprene (CR) blends at different blending ratios have been studied. The experimental results of ENR/CR blends show that the Mooney viscosity decreased gradually. Plasticization was most pronounced at an ENR/CR ratio of 75/25 and is thus the easiest to process. Owing to the ring opening of the epoxy group of ENR, the rate of crosslink formation is much faster than that of CM at higher temperature. The vulcanized rate increased with increasing ENR content. The results indicated that 175 deg C and 5 min were the optimum processing conditions for ENR/CR blends. The DMA spectra showed a single damping peak for the ENR/CR blends, which suggests that ENR and CR are miscible. As seen in the Arrhenius plot of frequency against T_g, the activation energy increased with increasing ENR contents. This suggests the existence of interpenetration of these two rubber molecular networks.
机译:研究了门尼粘度,硫化速率,硫化行为以及环氧化天然橡胶(ENR)和氯丁橡胶(CR)在不同混合比下的分子运动之间的关系。 ENR / CR共混物的实验结果表明,门尼粘度逐渐降低。 ENR / CR比为75/25时,增塑最为明显,因此最容易加工。由于ENR的环氧基的开环,在较高温度下,交联形成的速率比CM的形成快得多。硫化速率随ENR含量的增加而增加。结果表明,175℃和5分钟是ENR / CR共混物的最佳加工条件。 DMA光谱显示ENR / CR共混物有一个阻尼峰,这表明ENR和CR是可混溶的。从频率与T_g的Arrhenius曲线可以看出,活化能随ENR含量的增加而增加。这表明存在这两个橡胶分子网络的互穿。

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