Characteristic patterns of air flow around lathe chuck-flow visualisation by means of tuft and smoke wire methods

Y. Konda, S. Warisawa, Y. Kadowaki, Y. Ito
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Abstract

In this paper, the air flow around the three-jaw scroll chuck is observed by means of the tuft and smoke wire methods to establish the reduction remedies for the aerodynamic noise caused by the chock itself. The flow visualisations are carried out for various cases, e.g., those without workpiece, those with cylindrical or flange-like workpiece, when the chuck rotating speeds are 1,000, 2,000 and 3,000 r.p.m. The investigation shows that the air flow pattern around the chuck consists of four leading flows, i.e., axial flow from the tailstock to the headstock, entrained flow within the encircled area by top jaws, flow from the front face to radial areas of the chock and flow corresponding to the velocity boundary layer around the chuck body.
用簇状和烟丝法可视化车床卡盘周围气流的特征模式
本文通过对三爪涡旋卡盘周围空气流动的观察,采用簇形法和烟丝法,建立了由卡盘本身引起的气动噪声的降低补救措施。在卡盘转速为1,000、2,000和3,000转/分时,对无工件、有圆柱形或法兰状工件等不同情况进行了流动可视化。研究表明,卡盘周围的气流模式由四种主导气流组成,即从尾箱到主轴箱的轴向气流、顶部夹爪包围区域内的夹带气流、顶部夹爪夹带气流、顶部夹爪夹带气流和顶部夹爪夹带气流。从卡盘的前表面流向卡盘的径向区域,与卡盘体周围的速度边界层相对应。
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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