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首页> 外文期刊>The Journal of Chemical Physics >Viscoelastic behavior corresponding to reptative relaxation times across the lambda-transition for liquid elemental sulfur
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Viscoelastic behavior corresponding to reptative relaxation times across the lambda-transition for liquid elemental sulfur

机译:对应于液体元素硫的Lambda转换的远程舒缓弛豫时间的粘弹性行为

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Continued interest regarding the rheometric measurements of molten sulfur has persisted due to the need for industrial-scale transportation and handling of the material in a liquid phase. This has allowed for extended research developments to attain a fundamental understanding of the fluid. This work reports novel high temperature modulus data over the lambda-transition region for liquid elemental sulfur, measured through the use of a modified Anton-Paar Modular Compact Rheometer 302. From these measurements, further insight was gained on the viscoelastic behavior and reptative relaxation times for liquid elemental sulfur. The slow relaxation time, tau(s), related to reptative behavior, was found to be between 0.24 s and 0.28 s at 190 degrees C. Utilizing the Maxwell relation, this was determined to correspond to an estimated viscosity range from 72 000 x 10(-3) Pa s to 95 000 x 10(-3) Pa s, which is in agreement with previous viscosity studies on liquid sulfur. A Cole-Cole plot of the experimental data also displayed characteristics of Debye-like relaxation, suggesting that the slow relaxation process was related to local S-S bond scission and recombination in sulfur chains and was not a relaxation coinciding with a polymeric chain mode. Finally, consecutive heating and cooling of the sulfur sample gave replicate values up to 210 degrees C on the third heating cycle, where an apparent structural change took place possibly due to cycling over the secondary transition, producing a thermal history, or sulfur reactions with trace impurities. This 210 degrees C temperature was found to have some recurrence within the literature.
机译:由于需要在液相中的工业规模运输和处理材料,持续有关于熔融硫的变速测量的持续兴趣持续存在。这允许扩展的研究发展,以获得对流体的根本理解。该工作报告了通过使用改性的Anton-Paar模块化压缩流变仪302测量的液体元素硫的λ-过渡区域上的新型高温模量数据。从这些测量中,在粘弹性行为和再生弛豫时间上获得了进一步的洞察力用于液体元素硫。在190摄氏度下,发现慢松弛时间,tau(s),与远程行为有关的Tau(s)在0.24秒和0.28秒之间。利用Maxwell关系,确定对应于72 000 x 10的估计粘度范围。 (-3)PA S至95 000 x 10(-3)Pa S,其与先前的液体硫的粘度研究一致。实验数据的COLE-COLE图也显示出类似于脱娇的放松的特征,表明缓慢的松弛过程与硫链中的局部S-S粘合和重组有关,并且不是与聚合物链模式重合的松弛。最后,硫样品的连续加热和冷却使得在第三加热循环上的复制值高达210℃,其中可能由于循环过继发,产生热历史或用痕量的硫反应而发生表观结构变化杂质。发现该210度C的温度在文献中具有一些复发。

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