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High Pressure Rheology – On the Statistics of Falling Body Viscometers

机译:高压流变学–下落式粘度计的统计数据

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Viscosity measurements in fluid power are a standard tool to gain information on the fluid and its condition. The results are required for system design and simulation. Within fluid power systems, high pressures are common in piston-bushing contacts or lubricating gaps for example. A popular approach to high-pressure measurements is falling body viscometry. The terminal velocity of a falling body inside a fluid-filled tube is used to determine the fluids viscosity. However, falling body viscometry is prone to inaccuracies which raises questions regarding the reliability of the measurement principle and the measurement itself. Eccentricity, tumbling and material pairings above all other factors are responsible for deviations regarding terminal velocity of the falling body. Studies do indicate highly varying falling times at constant conditions, but a significant statistical analysis has not been done yet. Therefore, using the viscometer at IFAS, a statistical falling time evaluation is carried out and different falling body designs are compared to each other. Afterwards, the most advantageous geometry is identified.
机译:流体动力中的粘度测量是获取有关流体及其状态信息的标准工具。结果是系统设计和仿真所必需的。在流体动力系统内,例如,在活塞-衬套接触或润滑间隙中通常会出现高压。流行的高压测量方法是下落式人体粘度计。流体填充管内部的下落物体的最终速度用于确定流体粘度。然而,落体粘度测定法容易出现误差,这对测量原理和测量本身的可靠性提出了疑问。高于所有其他因素的偏心率,翻滚和材料配对是导致坠落物体最终速度发生偏差的原因。研究的确显示出在恒定条件下下降时间的变化很大,但是尚未进行重大的统计分析。因此,使用IFAS的粘度计进行统计的下落时间评估,并将不同的下落体设计进行比较。之后,确定最有利的几何形状。

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