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A computational fluid dynamics analysis of single and three nozzles minimum quantity lubricant flow for milling

机译:用于铣削的单喷嘴和三喷嘴最小润滑剂流量的计算流体动力学分析

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摘要

A 3-dimensional computational fluid dynamics analysis of minimum quantity lubricant flow for a four-tooth milling cutter operation with single and three nozzles is presented in this paper. CFD modelling is utilized to simulate the flow distribution around a four- tooth milling. The domain of a rotating cutter along with the spraying nozzle was defined. Operating cutting and boundary conditions were defined based on previous literature. A steady-state, pressure-based, planar analysis was performed with a viscous, realizable k-ε model. A 3-D transient-case, incompressible analysis for the minimum quantity lubricant is also performed. The domain of the milling cutter is rotated at a very high spindle speed, and a single nozzle is used to investigate the effects of MQL spray. A mixture of oils and air is sprayed onto the tool. Another analysis is performed with three nozzles placed at equal angles to each other around the periphery of the tool. A 2-dimensional steady-state analysis is also carried out using CFD. The obtained results verify that the single nozzle cannot fully lubricate the rotating tool. It was observed that flow penetration into the cutting zone is dependent on the flow velocity and the number of nozzles. Hence, it can be concluded that the MQL nozzle arrangement can be improved with three nozzles with a constant mass flow rate.
机译:本文介绍了具有单喷嘴和三个喷嘴的四齿铣刀操作的最小润滑剂流量的三维计算流体动力学分析。 CFD建模用于模拟四齿铣削周围的流量分布。定义了旋转切割器的区域以及喷嘴。操作切削和边界条件是根据以前的文献定义的。使用粘性可实现的k-ε模型进行了基于压力的稳态平面分析。还对最小量的润滑剂执行了3-D瞬态情况,不可压缩的分析。铣刀的区域以很高的主轴转速旋转,并且使用单个喷嘴来研究MQL喷涂的效果。将油和空气的混合物喷涂到工具上。另三个分析是在工具周围围绕三个等角度放置的喷嘴进行的。还使用CFD进行了二维稳态分析。获得的结果证实了单个喷嘴不能完全润滑旋转工具。已经观察到,流进入切割区域的渗透取决于流速和喷嘴的数量。因此,可以得出结论,用质量流量恒定的三个喷嘴可以改善MQL喷嘴的布置。

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    Najiha M.S.; M. M. Rahman;

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  • 年度 2014
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