Schoonover Randall M
National Bureau of Standards, Washington, DC 20234.
J Res Natl Bur Stand (1977). 1982 May-Jun;87(3):197-206. doi: 10.6028/jres.087.014.
The density determination of a small solid object with a mass of only a few hundred milligrams is always a difficult and often an ellusive measurement. The advent of highly accurate hydrostatic weighing techniques and the density scale based on solid objects are utilized in a two liquid float method presented here that incorporates the advantages of this technology. The resulting measurement is an absolute determination of density with an uncertainty of 500 ppm and has a density range from 2.3 g/cm (silicon) to 21.5 g/cm (platinum). The instrument was used to measure the variation in the alloy density of nickel with respect to phosphorus content and to determine the density of optical fiber glass.
对于质量仅为几百毫克的小固体物体,其密度测定一直是一项困难且常常难以捉摸的测量。本文提出的一种双液体浮法利用了高精度静水称重技术以及基于固体物体的密度标度的出现,该方法融合了这项技术的优势。所得测量结果是密度的绝对测定,不确定度为500 ppm,密度范围为2.3克/立方厘米(硅)至21.5克/立方厘米(铂)。该仪器用于测量镍合金密度随磷含量的变化,并测定光纤玻璃的密度。