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Optimum design of the variable-volume gas pycnometer for determining the volume of solid particles

机译:用于确定固体颗粒体积的可变体积比重瓶的优化设计

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摘要

Little is known about optimum design of gas pycnometers, so that they can determine the volume of solid particles with the greatest accuracy. The purpose of this study was to investigate the optimum design of the 'variable-volume' gas pycnometer, because its ease of handling makes it a good candidate for widespread use. The law of propagation of uncertainty was used to derive a theoretical formula that relates the pycnometer's accuracy to the main sources of random uncertainty (gas-pressure measurements, pycnometer temperature, sample-chamber and piston-chamber volumes). The consequences of this formula in terms of optimizing the geometry and working conditions of the pycnometer are discussed. It was found that some gas pycnometers described in the literature may not have been used under the best conditions. As for the 'constant-volume' gas pycnometer, which was considered in a previous study, it seems possible to use commercially available components for constructing a variable-volume gas pycnometer that can determine the volume of solid particles with a relative standard uncertainty smaller than 0.25%. However, an accurately calibrated pressure transducer is required for the variable-volume gas pycnometer (instead, the only requirement for the constant-volume gas pycnometer is that the transducer's response varies linearly with pressure).
机译:关于气体比重瓶的最佳设计知之甚少,因此它们可以最高精度地确定固体颗粒的体积。这项研究的目的是研究“可变容积”气体比重瓶的最佳设计,因为它的易操作性使其成为广泛使用的良好选择。使用不确定度的传播定律来推导出理论比重瓶,将比重瓶的精度与随机不确定性的主要来源(气压测量,比重瓶温度,样品室和活塞室体积)联系起来。在优化比重瓶的几何形状和工作条件方面,讨论了该公式的结果。发现在最佳条件下可能没有使用文献中描述的某些气体比重瓶。至于先前研究中考虑的“定容”气体比重瓶,似乎有可能使用市售组件来构建可变容量比重瓶,该瓶可以确定相对标准不确定度小于0.25%。但是,可变体积比重瓶需要一个经过精确校准的压力传感器(相反,恒定体积比重瓶的唯一要求是传感器的响应随压力线性变化)。

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