校准流体和校准方程:选择如何影响用u型管密度计进行密度测量的结果。

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION
S. Outcalt
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引用次数: 8

摘要

将校准流体水和甲苯的单独数据以及这两组数据的组合与两个不同的方程相关联(产生六组校准方程参数),以分析用振动管密度计测量的润滑剂季戊四醇四戊酸酯(POE5)、,和季戊四醇四壬酸酯(POE9)在270K至470K的温度和0.5MPa至50MPa的压力下。目的是探索润滑油的计算密度如何根据校准方程和校准液而不同。测量的润滑剂的粘度远大于校准液的粘度,由于长期以来一直存在使用振动管密度计测量高粘度流体时如何影响测量的问题,因此对校准液和方程的组合进行了测试,以探索它们在获得准确结果中所起的作用。对于本文研究的润滑剂,在将校准液与多种校准液相匹配的情况下获得了更准确的结果,而结果的一致性更依赖于方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calibration Fluids and Calibration Equations: How Choices May Affect the Results of Density Measurements Made with U-Tube Densimeters.
Data on the calibration fluids water and toluene individually, and the combination of those two sets of data, were correlated with two different equations (resulting in six sets of calibration equation parameters) to analyze data measured with a vibrating-tube densimeter on the lubricants pentaerythritol tetrapentanoate (POE5), pentaerythritol tetraheptanoate (POE7), and pentaerythritol tetranonanoate (POE9) at temperatures from 270 K to 470 K and pressures from 0.5 MPa to 50 MPa. The objective was to explore how the calculated densities of the lubricants would differ based on the calibration equations and calibration fluid(s). The viscosities of the measured lubricants are much greater than those of the calibration fluids, and because there has long been a question of how measurements of higher viscosity fluids are affected when measured with a vibrating-tube densimeter, combinations of calibration fluid(s) and equations were tested to explore the role they play in obtaining accurate results. For the lubricants studied herein, more accurate results were obtained with a calibration fitted to multiple calibration fluids, while the consistency of results was more equation dependent.
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来源期刊
自引率
33.30%
发文量
10
审稿时长
>12 weeks
期刊介绍: The Journal of Research of the National Institute of Standards and Technology is the flagship publication of the National Institute of Standards and Technology. It has been published under various titles and forms since 1904, with its roots as Scientific Papers issued as the Bulletin of the Bureau of Standards. In 1928, the Scientific Papers were combined with Technologic Papers, which reported results of investigations of material and methods of testing. This new publication was titled the Bureau of Standards Journal of Research. The Journal of Research of NIST reports NIST research and development in metrology and related fields of physical science, engineering, applied mathematics, statistics, biotechnology, information technology.
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