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Design and Implementation of Solid Density Balance Calibration System |
CHEN Chao-yun,ZHANG Jin-ming,REN Xue-di |
Shanghai Institute of Measurement and Testing Technology, Shanghai 201203, China |
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Abstract In view of the fact that the density balance can only be calibrated in the liquid mode and can not be calibrated in the solid mode, a kind of hook-type cavity glass weight is developed as solid density standard, the density balance solid measurement mode is calibrated, and a solid density balance calibration system is proposed. Calibration experiments on solid density balance show that the expanded uncertainty of the calibration results is 0.0016g/cm3 (k=2).
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Received: 12 July 2017
Published: 06 November 2018
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[1]徐秀华, 顾英姿. 称量式数显液体密度计检定方法的探讨[J]. 计量技术, 2010, (4):57-59.
Xu X H, Gu Y Z. Discussion on the verification method of weighing digital liquid density meter[J]. Measurement Technique, 2010,(4): 57-59.
[2]陈超云, 王金涛, 李之昊, 等. 基于静力称重法的玻璃浮计校准方法研究[J]. 计量学报, 2017, 38(2): 197-199.
Chen C Y, Wang J T, Li Z H, et al. Study of Glass Hydrometer Calibration by Hydrostatic Weighting[J]. Acta Metrologica Sinica, 2017, 38(2): 197-199.
[3]罗志勇, 李占宏. 密度副基准的量值复现[J]. 计量学报, 2014, 35(6):591-594.
Luo Z Y, Li Z H. Realization for the Secondary Standard of Density[J]. Acta Metrologica Sinica, 2014, 35(6): 591-594.
[4]杨向辉, 李丹. 液体相对密度天平误差测量不确定度评定[J]. 计量与测试技术, 2014, 41(5):86-88.
Yang X H, Li D. Relative Density of Fluid Balance Error of Measurement Uncertainty[J]. Metrology & Measurement Technique, 2014, 41(5):86-88.
[5]国家质量监督检验检疫总局. JJG 42—2011 工作玻璃浮计[S]. 北京:中国质检出版社,2011.
[6]刘子勇, 王金涛, 许常红, 等. 基于压浮原理的单晶硅球密度比较测量方法研究[J]. 计量学报, 2013, 34(2):97-100.
Liu Z Y, Wang J T, Xu C H, et al. Research on Comparison Measurement of Single-crystal Silicon Sphere Density Based on Pressure Floatation Method[J]. Acta Metrologica Sinica, 2013, 34(2): 97-100.
[7]Fujii K, Tanaka M. Density standard at NMIJ and related activities in the CCM WG on density[C]// International Association for the Properties of Water and Steam(IAPWS).14th International Conference on The Properties of Water And Steam. Kyoto,Japan,2006: 132-139.
[8]文慧卿, 汪濂泂. 低于0.65 g/cm3工作密度计测量方法研究[J]. 上海计量测试, 2015, (6):18-20.
Wen H Q, Wang L J. A measurement method for measuring hydrometer below 0.65 g/cm3[J]. Shanghai Measurement and Testing, 2015, (6):18-20.
[9]陈超云, 王灿, 文慧卿, 等. 自适应MCM测量不确定度软件研发[J]. 中国计量大学学报, 2016, 27(4): 406-410.
Chen C Y, Wang C, Wen H Q, et al. Development of adaptive Monte Carlo method software for the evaluation of uncertainty measurement[J]. Journal of China University of Metrology, 2016, 27(4): 406-410.
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