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Establishment of the platinum-iridium kilogram mass standards at NMIJ after the Extraordinary Calibrations

机译:特殊校准后在NMIJ建立铂铱千克质量标准

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The Bureau International des Poids et Mesures has carried out calibrations of the platinumiridium kilogram mass standards by referencing the international prototype of the kilogram for the first time since the third periodic verification of national prototypes of the kilogram was carried out in 1988-92. This calibration campaign was designated 'Extraordinary Calibrations' in the second phase, in which two platinum-iridium kilogram mass standards of the National Metrology Institute of Japan were calibrated with a standard uncertainty of 3.5 mu g. By adding these new calibration data into our data sets from 1991, we established our mass unit with a standard uncertainty of 3.3 mu g by least-squares analysis using an exponential model, which is useful for compensating for mass increase after cleaning the mass standards. Moreover, it was found that our established mass unit following the Extraordinary Calibrations shifted against our previously maintained mass unit by -20.8 mu g as of the beginning of 2015. The analysis with a linear model revealed that the amount of mass increase over time of some standards was significantly smaller than that suggested at the third periodic verification of national prototypes of the kilogram. The analysis with the exponential model gave an exponent of 0.217 with a standard uncertainty of 0.057. This suggests that the mass increase due to surface contamination cannot be explained by a diffusion-limited process.
机译:自1988-92年对千克国家原型进行第三次定期验证以来,国际局便通过参考了千克的国际原型首次对铂铱千克质量标准进行了校准。该校准活动在第二阶段被称为“超常校准”,其中对日本国家计量学会的两个铂铱千克质量标准进行了校准,标准不确定度为3.5μg。通过将这些新的校准数据添加到1991年的数据集中,我们通过使用指数模型的最小二乘分析建立了具有3.3μg标准不确定度的质量单位,这对于补偿清洁质量标准后的质量增加很有用。此外,我们发现,自2015年初开始,我们按照非常规校准建立的质量单位相对于以前保持的质量单位偏移了-20.8微克。线性模型的分析表明,随着时间的推移,质量的增加量有所增加。该标准明显小于对国家公斤原型进行第三次定期验证所建议的标准。指数模型的分析得出指数为0.217,标准不确定度为0.057。这表明由于表面污染引起的质量增加不能用扩散限制过程来解释。

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