首页> 外文期刊>International journal of metrology and quality engineering >Investigation of a cleaning procedure for silicon spheres used in the realization and dissemination of the redefined kilogram via combined spectroscopic and gravimetric measurements
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Investigation of a cleaning procedure for silicon spheres used in the realization and dissemination of the redefined kilogram via combined spectroscopic and gravimetric measurements

机译:通过组合光谱和重量测量来研究用于实现和传播重新定义千克的硅球的清洁程序

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摘要

The new definition of the SI kilogram requires new methods of realizing this unit. The X-ray crystal density method is a primary realization method and uses silicon spheres. The spheres get cleaned before each measurement, in order to remove surface contaminations and thus reduce their uncertainty contribution to the realization. Therefore, cleaning is an inherent part of the realization and dissemination of the kilogram. A cleaning method for silicon spheres is investigated, concerning its suitability as a part of the realization of the redefined kilogram. Six silicon spheres were used to determine the repeatability of the established cleaning method. Measurements of the spheres’ mass and the quantification of their surface layer mass after cleaning were carried out in several cycles resulting in 29 mass and surface measurements. The repeatability of the cleaning method applied shows a standard deviation in the order of two micrograms for both the mass and the surface layer. The cleaning method therefore sufficiently fulfils these requirements.
机译:Si千克的新定义需要新的实现本机的方法。 X射线晶体密度法是主要的实现方法,并使用硅球。在每次测量之前,球体进行了清洁,以便去除表面污染,从而降低他们对实现的不确定性贡献。因此,清洁是千克实现和传播的固有部分。研究了一种用于硅球的清洁方法,涉及其作为实施重新定义千克的一部分的适用性。使用六个硅球形来确定所建立的清洁方法的可重复性。在清洁后的球体质量和它们的表面层质量的定量测量在几个循环中进行,导致29质量和表面测量。所施加的清洁方法的可重复性显示了质量和表面层的两个微克的量级的标准偏差。因此,清洁方法充分满足这些要求。

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