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AN INVESTIGATION OF DENSITY DETERMINATION METHODS FOR POROUS MATERIALS, SMALL SAMPLES AND PARTICULATES

机译:多孔材料,小样品和颗粒密度测定方法的研究

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Three new density measurement techniques have been devised and evaluated for the measurement of nonstandard objects, namely porous material samples, small solid samples, powders and particulates. Hydrostatic weighing has traditionally been used to determine the density of solid artefacts. This method is not, however, suitable for porous objects since they will adsorb water making weighing in water unstable and possibly detrimental to the material samples. A method, weighing the artefacts in inert gas, has been developed for this application. The density determination of small solid artefacts cannot be achieved by conventional hydrostatic weighing techniques due to limits on the accuracy with which the weight-in-water can be determined A density gradient column method for such measurements, delivering very low uncertainties, has been developed and evaluated. A liquid pyknometry method has also been investigated as an alternative to traditional helium and mercury pyknometry. The technique offers improved accuracy and a precise determination of thermal coefficient of the sample under test.
机译:已经设计了三种新的密度测量技术,并评估了非标准物体的测量,即多孔材料样品,小固体样品,粉末和颗粒。静水压称量传统上用于确定固体伪成物的密度。然而,这种方法不适用于多孔对象,因为它们将吸附在水中的浇水不稳定并且可能有害于材料样品。已经为该应用开发了一种称重惰性气体中的伪影的方法。由于常规静液压称重技术不能通过限制来实现小固体伪造的密度测定,因为可以确定加重水重液柱的精度,以实现这种测量的密度梯度柱法,已经开发出非常低的不确定性评估。还研究了一种液体PEKSMETRY方法作为传统氦气和汞纤维术的替代品。该技术提供了提高的精度和精确测定被测样品的热量系数。

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