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MULTIPHASE FLOW DISTRIBUTION IN MQL DRILLING USING OPTICAL INTENSITY DISTRIBUTION BASED APPROACH

机译:基于光强分布的MQL钻井多相流分布

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Oil flow distribution in Minimum Quantity Lubrication (MQL) plays an important role in the efficiency of machining processes, but it remains challenging to measure experimentally. This paper presents a new method to measure the oil flow distribution in through-channel drill bits based on the reflected light intensity. Measurements were conducted from multiple angles in order to map the flow distribution across the channel cross-sectional area. The method is applied to drill bits of a circular cross-section channel and two helix angles, 0° and 30°. The results show that, for the 0° helix angle channel, the oil concentrates near the periphery of the channel, while for 30° helix angle channel, the oil concentrates towards the center of the drill point. Furthermore, Computational Fluid Dynamics (CFD) simulation was conducted to compare with the measurement results, and it was observed that the oil distribution is correlated to the velocity field. Oil flow concentration is high in low velocity regions. Though preliminary, this study has concluded that the velocity field generated using single-phase CFD is a critical indicator for oil distribution in an MQL flow.
机译:最小润滑量(MQL)中的油流分布在加工过程的效率中起着重要作用,但是通过实验进行测量仍然具有挑战性。本文提出了一种基于反射光强度来测量通孔钻头中油流分布的新方法。从多个角度进行测量,以便绘制出通道横截面区域的流量分布图。该方法适用于圆形横截面通道和两个螺旋角(0°和30°)的钻头。结果表明,对于0°螺旋角通道,油集中在通道外围附近,而对于30°螺旋角通道,油则集中在钻尖中心。此外,进行了计算流体动力学(CFD)模拟以与测量结果进行比较,并且观察到油分布与速度场相关。低速区域的油流浓度很高。尽管是初步的,但这项研究得出的结论是,使用单相CFD生成的速度场是MQL流中油分布的关键指标。

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