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Investigation of the effect of thermal aging on rapid gas decompression (RGD) resistance of nitrile rubber

机译:热老化热老化对丁腈橡胶快速气体减压(RGD)抗性影响的研究

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摘要

Thermal aging is possibly the most significant factor affecting the rapid gas decompression (RGD) resistance of rubber. In this study, NBR vulcanizates by different sulfur curing systems such as conventional (CV), semi-efficient (SEV), and efficient (EV) were thermally aged for 7 days at 100 degrees C. The effect of thermal aging on RGD resistance, and physico-mechanical properties has been evaluated by changes in the rating of RGD and properties before and after aging. The presented results show that thermal aging of NBR vulcanizates strongly depends on crosslink density and mechanical properties. Thermal aging of nitrile rubber samples increased the crosslink density and decreased tensile and tear strength which lead to lower RGD resistance. The significant changes of RGD resistance were in the CV SEV EV system order during aging. The results obtained indicate that the SEV system might be a suitable selection for engineering applications with middle physico-mechanical properties and good thermal aging and RGD resistance.
机译:热老化可能是影响橡胶快速气体减压(RGD)电阻的最显着因素。在本研究中,通过不同硫固化系统(如常规(CV),半效率(SeV)和高效(EV)在100摄氏度下热老化的NBR硫化酸盐。热老化对RGD抗性的影响,通过老化前后RGD和性质等级的变化评估了物理机械性能。所提出的结果表明,NBR硫化酸盐的热老化强烈取决于交联密度和机械性能。丁腈橡胶样品的热老化提高了交联密度和降低的拉伸和撕裂强度,这导致降低RGD抗性。 RGD抗性的显着变化在CV和GT中; Sev&老化期间EV系统订单。得到的结果表明,SEV系统可能是具有中间物理机械性能和良好热老化和RGD电阻的工程应用的合适选择。

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