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CFD based investigation on internal cooling of twist drills

机译:基于CFD的扭曲钻头内部冷却调查

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To investigate the influence of cutting fluid flow rate and cooling channel exit position on tool wear when drilling with internally cooled cemented carbide twist drills, a model for CFD (computational fluid dynamics) simulations was used. The CFD model's quality regarding fluid ,. flow was evaluated by a comparison between its results and high-speed cinematographic pictures of real flow conditions. The simulations' results showed significant influences of cutting fluid flow rate and cooling channel exit position on heat flux between tool and coolant as well as for residual temperatures within the wedge. Coolant flow rates were varied between 1.2 and 4.8 liters per minute for drills with a diameter of 10 mm. The simulations were evaluated by analysis of heat flux through the major flank face and average temperature above the flank face. To explain these results average velocity and turbulence kinetic energy below the wedge were taken into account When neglecting the cutting fluid flow rate the average temperature within the wedge was 1.28 times higher for the most unfavorable exit position in comparison to the best one. The influence of cutting fluid flow rate is almost identical for all exit positions. By averaging the results for all exit positions the lowest flow rate results in average temperatures within the wedge that are 1.19 times higher than the ones for the highest flow rate.
机译:为了研究切削流体流速和冷却通道出口位置对刀具磨损时的切削流体流速和冷却通道出口位置的影响,使用内部冷却的硬质合金扭曲钻探,使用了一种CFD(计算流体动力学)模拟模型。 CFD模型的液体质量。通过其结果和实际流动条件的高速电影图片之间的比较来评估流程。模拟的结果表明,切削流体流速和冷却通道出口位置对工具和冷却剂之间的热量通量以及楔内的剩余温度的显着影响。冷却剂流量为每分钟的1.2和4.8升,直径为10mm的钻头。通过通过主侧面和侧面上方的平均气温分析热通量来评估模拟。为了解释这些结果,在忽略切削流体流速时,考虑到楔形下方的平均速度和湍流动能在楔形内的平均温度与最佳的出口相比,楔形内的平均温度为1.28倍。对于所有出口位置,切削液流量的影响几乎相同。通过平均所有出口位置的结果,最低流量导致楔形内的平均温度,比对于最高流速高1.19倍。

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