Furukawa George T
Institute for Basic Standards, National Bureau of Standards, Washington, D.C. 20234.
J Res Natl Bur Stand A Phys Chem. 1974 Jul-Aug;78A(4):477-495. doi: 10.6028/jres.078A.031.
The design of a high-precision furnace for investigating the freezing points of metals up to 700 °C or higher is described. The freezing points of aluminum samples of nominally 99.999 percent purity from two batches were compared in terms of the ratio (Al)/(TP), the ratio of the resistance of the platinum resistance thermometer at the aluminum freezing point to that at the triple point of water. The average standard deviation of measurements of the ratio (Al)/(TP) obtained on six specimens corresponds to ±0.40 mK, while the average standard deviations of (Al) and (TP) correspond to ±0.17 mK and ±0.14 mK, respectively. (The variations in the measurements of (TP) are amplified by 3.4 in the ratio (Al)/(TP).) The spread of the mean (Al)/(TP) obtained for five out of the six specimens corresponds to 0.51 mK; the deviation of the mean (Al)/(TP) of the sixth specimen from the mean (Al)/(TP) of the five specimens corresponds to -1.31 mK. (The sixth specimen may have been contaminated during the assembly of the freezing-point cell or the original sample bar was inhomogeneous.) The results show that aluminum can provide a freezing point (near 660 °C) that is at least as reproducible as the freezing point of antimony (near 631 °C).
本文描述了一种用于研究高达700℃或更高温度金属凝固点的高精度熔炉的设计。比较了两批名义纯度为99.999%的铝样品的凝固点,以(Al)/(TP)的比值表示,即铂电阻温度计在铝凝固点的电阻与在水三相点的电阻之比。对六个样品测得的(Al)/(TP)比值的平均标准偏差为±0.40 mK,而(Al)和(TP)的平均标准偏差分别为±0.17 mK和±0.14 mK。((TP)测量值的变化在(Al)/(TP)比值中放大了3.4倍。)六个样品中有五个的平均(Al)/(TP)值的分散范围为0.51 mK;第六个样品的平均(Al)/(TP)值与五个样品的平均(Al)/(TP)值的偏差为 -1.31 mK。(第六个样品可能在凝固点池组装过程中受到污染,或者原始样品棒不均匀。)结果表明,铝的凝固点(接近660℃)至少与锑的凝固点(接近631℃)一样具有可重复性。