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Study of Cutting Speed Effects on Lubricant Oil Film Thickness Under Minimum Quantity Lubrication

机译:最小量润滑下润滑油膜厚度的切割速度效应研究

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In recent decades, there has been increasing interest in the study of Minimum Quantity Lubrication (MQL) due to its outstanding performance despite the minimal usage of cutting oil. However, study focusing on the behavior of oil mist during the MQL machining process is still scarcely reported. It is important to clarify this matter in detail as to explain how the lubricant oil mist can successfully reach the narrow cutting zone. The aim of this study was to investigate the cutting speed effects on the behavior of lubricant oil film by measuring its thickness accumulation on the workpiece after the MQL milling process. Measurement was conducted by using Laser Induced Fluorescence (LIF) method. Results showed that the average thickness of oil film generated at the center of milling path was approximately at 0.37 mm. Penetration ability of lubricant oil to reach the narrow cutting zone dropped with increasing cutting speed and subsequently leading to accumulation of thicker oil film at the cliffs of milling path. Further investigation is needed to clarify whether the nozzle position or the cutter flute may be the attributor of this phenomena. Moreover, it was found that the MQL machining must be conducted appropriately to ensure the oil mist can successfully lubricating the cutting zone on the entire workpiece.
机译:近几十年来,尽管脱脂油的使用量最小,但由于其出色的表现,仍然存在对最小数量润滑(MQL)的研究的兴趣。然而,仍然几乎没有报告重点研究MQL加工过程中油雾的行为的研究。详细阐明此问题非常重要,以解释润滑油油雾如何成功地到达窄切割区。本研究的目的是通过在MQL铣削过程之后测量工件上的厚度积累来研究对润滑油膜的行为的切割速度影响。使用激光诱导荧光(LiF)方法进行测量。结果表明,铣削路径中心产生的油膜的平均厚度约为0.37mm。润滑油到达窄切割区的渗透能力随着切削速度的增加,随后导致铣削路径悬崖上的较厚油膜积累。需要进一步调查以阐明喷嘴位置或切割器长笛是否可以是这种现象的属性。此外,发现必须适当地进行MQL加工,以确保油雾可以成功地润滑整个工件上的切割区域。

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