Simulation of axial cooling loop for high speed spindles with rectangular crossection using CFD

B. B. Mansingh, A. Pravin
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引用次数: 3

Abstract

The purpose of this paper is to numerically analyze the three-dimensional fluid motion and temperature distribution in built-in motorized high-speed spindle housing having axial water cooling channel with rectangular crossection. A three dimensional finite element model of high speed spindle housing is developed and simulated using computational fluid dynamics software to determine the temperature distribution considering the impedance of the motor coils. The effects of different heat sources and varied number of loops are examined in detail. The model is based upon a custom-built high performance spindle, which is used in the printed-circuit board industry, with a maximum speed of 160,000 rpm. The results indicate that the designed cooling loop is more effective and increase in temperature can be reduced significantly
矩形截面高速主轴轴向冷却回路的CFD模拟
本文对具有矩形截面轴向水冷却通道的内嵌式高速电主轴机壳内的三维流体运动和温度分布进行了数值分析。建立了高速主轴壳的三维有限元模型,并利用计算流体动力学软件对其进行了仿真,以确定考虑电机线圈阻抗的温度分布。详细分析了不同热源和不同回路数的影响。该模型基于定制的高性能主轴,用于印刷电路板行业,最高转速为160,000 rpm。结果表明,所设计的冷却回路更有效,可以显著降低温度的升高
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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