首页> 外文期刊>Fluid Phase Equilibria >Tris(2-ethylhexyl) trimellitate (TOTM) a potential reference fluid for high viscosity. Part I: Viscosity measurements at temperatures from (303 to 373) K and pressures up to 65MPa, using a novel vibrating-wire instrument
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Tris(2-ethylhexyl) trimellitate (TOTM) a potential reference fluid for high viscosity. Part I: Viscosity measurements at temperatures from (303 to 373) K and pressures up to 65MPa, using a novel vibrating-wire instrument

机译:偏苯三酸三(2-乙基己基)酯(TOTM)是高粘度的潜在参考液。第一部分:使用新型振弦式仪器在(303至373)K的温度和最高65MPa的压力下进行粘度测量

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The article reports viscosity measurements of compressed liquid tris(2-ethylhexyl) trimellitate or 1,2,4-Benzenetricarboxylic acid, tris(2-ethylhexyl) ester (TOTM) which is an important plasticizer in the polymer industry and has wide applications as a lubricant. Nevertheless, the main motivation for the present work is to propose TOTM as a plausible candidate for an industrial viscosity reference fluid for high viscosity, high pressure and high temperature. This kind of reference fluid is presently on demand by oil industries and the International Association for Transport Properties is developing efforts aiming to select appropriate candidates and to establish the corresponding reference data. The viscosity measurements were performed with a novel vibrating wire sensor. The new instrument was designed for operation at high pressures (up to 100MPa) and temperatures up to 373 K. The present measurements were obtained using the vibrating wire sensor in the forced oscillation or steady-state mode of operation. The viscosity measurements were carried out up to 65MPa and at six temperatures from (303 to 373) K. The viscosity results were correlated with density, using a modified hard-spheres scheme. The root mean square deviation of the data from the correlation is 0.53% and the maximum absolute relative deviation was less than 1.7%. The expanded uncertainty of the present viscosity results, at a 95% confidence level, is estimated to be less than ±2% for viscosities up to 68mPa s, less than ±2.6% for viscosities between (69 and 268) mPas and less than ±3% for higher viscosities. The TOTM density data necessary to compute the viscosity results were measured using a vibrating Utube densimeter, model DMA HP and are described in part II of the present work. No literature data above atmospheric pressure could be found for the viscosity of TOTM. As a consequence, the present viscosity results could only be compared upon extrapolation of the vibrating wire data to 0.1 MPa. Independent viscosity measurements were performed, at atmospheric pressure, using an Ubbelohde capillary in order to compare with the vibrating wire results, extrapolated by means of the above mentioned correlation. The two data sets agree within ±1%, which is commensurate with the mutual uncertainty of the experimental methods. Comparisons of the literature data obtained at atmospheric pressure with the present extrapolated vibrating-wire viscosity measurements have shown an agreement within ±2% for temperatures up to 339K and within ±3.3% for temperatures up to 368 K.
机译:该文章报道了压缩液体偏苯三酸三(2-乙基己基)酯或1,2,4-苯三甲酸三(2-乙基己酯)酯(TOTM)的粘度测量值,这是聚合物工业中重要的增塑剂,作为一种工业应用具有广泛的应用。润滑剂。尽管如此,当前工作的主要动机是提出TOTM作为用于高粘度,高压和高温的工业粘度参考流体的合理候选者。石油工业目前对这种参考液是有需求的,国际运输特性协会正在努力选择合适的候选物并建立相应的参考数据。用新型振弦传感器进行粘度测量。新仪器设计用于在高压(最高100MPa)和最高373 K的温度下运行。使用振弦传感器在强制振荡或稳态运行模式下获得当前测量值。粘度测量是在最高温度为65MPa的六个温度下(303至373)K进行的。使用改进的硬球方案,将粘度结果与密度相关。来自相关性的数据的均方根偏差为0.53%,最大绝对相对偏差小于1.7%。在最高68mPa s的粘度下,当前粘度结果在95%置信度下的扩展不确定性估计小于±2%,(69至268)mPas且小于±±的粘度小于±2.6%粘度较高时为3%。使用振动Utube密度计(型号DMA HP)测量了计算粘度结果所需的TOTM密度数据,该数据在本工作的第二部分中进行了描述。找不到高于大气压力的TOTM粘度文献资料。结果,仅在将振弦数据外推至0.1 MPa时才能比较当前的粘度结果。为了与振弦结果进行比较,在大气压下使用Ubbelohde毛细管进行了独立的粘度测量,该结果是通过上述相关性推断得出的。这两个数据集相差在±1%之内,这与实验方法的相互不确定性相称。在大气压力下获得的文献数据与当前推断的振弦粘度测量值的比较表明,对于温度高达339K的情况,在±2%的范围内,对于温度高达368K的情况,在±3.3%的范围内具有一致性。

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