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External gear pumps operating with non-Newtonian fluids: Modelling and experimental validation

机译:使用非牛顿流体的外啮合齿轮泵:建模和实验验证

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摘要

External Gear Pumps are used in various industries to pump non-Newtonian viscoelastic fluids like plastics, paints, inks, etc. For both design and analysis purposes, it is often a matter of interest to understand the features of the displacing action realized by meshing of the gears and the description of the behavior of the leakages for this kind of pumps. However, very limited work can be found in literature about methodologies suitable to model such phenomena. This article describes the technique of modelling external gear pumps that operate with non-Newtonian fluids. In particular, it explains how the displacing action of the unit can be modelled using a lumped parameter approach which involves dividing fluid domain into several control volumes and internal flow connections. This work is built upon the HYGESim simulation tool, conceived by the authors’ research team in the last decade, which is for the first time extended for the simulation of non-Newtonian fluids. The article also describes several comparisons between simulation results and experimental data obtained from numerous experiments performed for validation of the presented methodology. Finally, operation of external gear pump with fluids having different viscosity characteristics is discussed.
机译:外齿轮泵用于各种行业,以泵送非牛顿粘弹性流体,例如塑料,油漆,油墨等。出于设计和分析目的,通常需要了解通过啮合啮合实现的位移作用的特征。齿轮以及此类泵的泄漏行为描述。但是,在关于适合于对这种现象进行建模的方法的文献中可以找到非常有限的工作。本文介绍了对使用非牛顿流体运行的外齿轮泵建模的技术。特别是,它解释了如何使用集总参数方法对单元的位移动作进行建模,该方法涉及将流体域划分为几个控制体积和内部流动连接。这项工作建立在HYGESim模拟工具的基础上,该工具由作者的研究团队在过去十年中构想而成,这是首次将其扩展到非牛顿流体的模拟中。本文还描述了仿真结果与从为验证所提出的方法而进行的大量实验中获得的实验数据之间的几种比较。最后,讨论了具有不同粘度特性的流体对外齿轮泵的操作。

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