1. Machining Stability of a Milling Machine with Different Preloaded Spindle
- Author
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Jui-Pin Hung, Qiao-Wen Chang, Kung-Da Wu, and Yong-Run Chen
- Subjects
Machining stability ,musculoskeletal, neural, and ocular physiology ,digestive, oral, and skin physiology ,cardiovascular system ,musculoskeletal system ,Dynamic compliance ,circulatory and respiratory physiology ,Bearing preload - Abstract
This study was aimed to investigate the machining stability of a spindle tool with different preloaded amount. To this end, the vibration tests were conducted on the spindle unit with different preload to assess the dynamic characteristics and machining stability of the milling machine. Current results demonstrate that the tool tip frequency response characteristics and the machining stabilities in X and Y direction are affected to change due to the different preload of spindle bearings. As found from the results, a high preloaded spindle tool shows higher limited cutting depth at mid position, while a spindle with low preload shows a higher limited depth. This indicates that the machining stability of a milling machine is affected to vary by the spindle unit when it was assembled with different bearing preload., {"references":["E. Abele, Y. Altintas, C. Brecher, \"Machine Tool Spindle Units,\" CIRP\nAnnals – Manufacturing Technology, vol. 59, no. 4, pp. 781–802, 2010.","M. Weck, A. Koch, \"Spindle-bearing systems for high-speed applications\nin machine tools,\" CIRP Annals-Manufacturing Technology, vol. 42, no.\n1, pp. 445–448, 1993.","S. P. Harsha, L. Sandeep, R. E. Prakash. \"Effects of Preload and Number\nof Balls on Nonlinear Dynamic Behaviors of Ball Bearing System,\"\nInternational Journal of Nonlinear Science and Numerical Simulation.\nvol. 4, no. 3, pp. 265-278, 2003.","Y. Cao, Y. Altintas, \"Modeling of Spindle-Bearing and Machine Tool\nSystems for Virtual Simulation of Milling Operations,\" International\nJournal of Machine Tools and Manufacturing. vol. 47, no. 9 pp.\n1342-1350, 2007.","M. A. Alfares, A. A. Elsharkawy. \"Effects of Axial Preloading of Angular\nContact Ball Bearings on the Dynamics of a Grinding Machine Spindle\nSystem,\" Journal of Materials Processing Technology. vol. 136, no. 3, pp.\n48-59, 2003.","S. A. Spiewak, T. Nickel. Vibration Based Preload Estimation in Machine\nTool Spindles, International Journal of Machine Tools & Manufacture.\nvol. 41, no. 4, pp. 567-588, 2001.","A. Gunduz, J. T. Dreyer, R. Singh. \"Effect of Bearing Preloads on the\nModal Characteristics of a Shaft-Bearing Assembly: Experiments on\nDouble Row Angular Contact Ball Bearings,\" Mechanical Systems and\nSignal Processing. vol. 31, pp. 176-195, 2012.","J. Tlusty, .M. Polacek. \"The Stability of Machine Tools Against\nSelf-Excited Vibrations in Machining,\" Trans. ASME, International\nresearch in production engineering. Pp. 465-474, 1963.","S. A.Tobias, W. Fishwick. \"The Chatter of Lathe Tools under Orthogonal\nCutting Conditions\", Trans. ASME, Journal of Engineering for Industry,\nvol. 80, pp. 1079-1088, 1958.\n[10] E. Ozturk, U. Kumar, S. Turner, T. Schmitz. \"Investigation of Spindle\nBearing Preload on Dynamics and Stability Limit in Milling,\" CIRP\nAnnals-Manufacturing Technology. vol. 61, no. 1, pp. 343-346, 2012.\n[11] C. W. Lin, J. F. Tu. \"Model-Based Design of Motorized Spindle Systems\nto Improve Dynamic Performance at High Speeds,\" Journal of\nManufacturing Processes. vol. 9, no. 2, pp. 94-108, 2007.\n[12] S. Jiang, H. Mao. \"Investigation of Variable Optimum Preload for a\nMachine Tool Spindle,\" International Journal of Machine Tools and\nManufacture. vol.50, no. 1, pp. 19-28, 2010.\n[13] S. Jiang, H. Mao. \"Investigation of Variable Optimum Preload for a\nMachine Tool Spindle,\" International Journal of Machine Tools and\nManufacture. vol.50, no. 1, pp. 19-28, 2010.\n[14] Y. Altintas, E. Budak. \"Analytical prediction of stability lobes in\nmilling,\" Annals of the CIRP Vol. 44, pp.357–362, 1995.\n[15] J. P. Hung, Y. S. Lai, T. L. Luo, K. D. Wu, Y. Z. Zhan, \" Effect of\nDrawbar Force on the Dynamic Characteristics of a Spindle-Tool Holder\nSystem,\" World Academy of Science, Engineering and Technology,\nInternational Journal of Mechanical, Industrial Science and Engineering\nvol. 8, no.5, pp. 970-975, 2014"]}
- Published
- 2015
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