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Original Articles

Thermoelastic Instability Monitoring for Preventing Spindle Bearing Seizure

Pages 11-18 | Published online: 25 Mar 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Abdullah M. AL-Shabibi. (2014) Transient Behavior of Initial Perturbation in Multidisk Clutch System. Tribology Transactions 57:6, pages 1164-1171.
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JamesG. Katter$suffix/text()$suffix/text() & JayF. Tu. (1996) Bearing Condition Monitoring for Preventive Maintenance in a Production Environment. Tribology Transactions 39:4, pages 936-942.
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JayF. Tu & JamesG. Katter$suffix/text()$suffix/text(). (1996) Bearing Force Monitoring in a Three-Shift Production Environment. Tribology Transactions 39:1, pages 201-207.
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Articles from other publishers (17)

Wenjun Liu, Song Zhang, Jianghai Lin, Yuhai Xia, Jiaxiang Wang & Yingli Sun. (2022) Advancements in accuracy decline mechanisms and accuracy retention approaches of CNC machine tools: a review. The International Journal of Advanced Manufacturing Technology 121:11-12, pages 7087-7115.
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Li Cui & Qingsheng Wang. (2018) Thermal Properties Analysis of Compact Motorized Spindle Considering Fluid-Solid Thermal Coupling. IOP Conference Series: Materials Science and Engineering 389, pages 012004.
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Michael M. Khonsari & E. Richard Booser. 2017. Applied Tribology: Bearing Design and Lubrication. Applied Tribology: Bearing Design and Lubrication 65 133 .
Li Cui & Jingui Wan. (2017) Study on Temperature Control Method of High Speed Ball Bearing with Oil-Air Lubrication. Study on Temperature Control Method of High Speed Ball Bearing with Oil-Air Lubrication.
Li Wu & Qingchang Tan. (2016) A study of cooling system in a grease-lubricated precision spindle. Advances in Mechanical Engineering 8:8, pages 168781401666529.
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Li Wu & Qingchang Tan. (2016) Thermal Characteristic Analysis and Experimental Study of a Spindle-Bearing System. Entropy 18:7, pages 271.
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Li Cui, Chilan Cai & Qingsheng Wang. (2016) Multi-objective optimization design algorithm of dynamic and thermal performances of high speed spindle bearing. Multi-objective optimization design algorithm of dynamic and thermal performances of high speed spindle bearing.
Jafar Takabi & M.M. Khonsari. (2016) On the thermally-induced failure of rolling element bearings. Tribology International 94, pages 661-674.
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Jafar Takabi & M.M. Khonsari. (2015) On the thermally-induced seizure in bearings: A review. Tribology International 91, pages 118-130.
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Jay F. Tu & Martin Corless. (2014) Review of Sensor-Based Approach to Reliable High Speed Machining at Boeing – A Tribute to Jan Jeppsson. High Speed Machining 1:1.
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Chi-Wei Lin. (2009) The effect of bearing preload on the lobes diagram of high-speed end milling process. The effect of bearing preload on the lobes diagram of high-speed end milling process.
Chi-Wei Lin. (2007) Design Parameter Sensitivity Analysis of High-Speed Motorized Spindle Systems Considering High-Speed Effects. Design Parameter Sensitivity Analysis of High-Speed Motorized Spindle Systems Considering High-Speed Effects.
Chi-Wei Lin & Jay F. Tu. (2007) Model-Based Design of Motorized Spindle Systems to Improve Dynamic Performance at High Speeds. Journal of Manufacturing Processes 9:2, pages 94-108.
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Jay F. TuMartin CorlessJan Jeppsson. (2004) Robust Control of High Speed End Milling with Unknown Process Parameter and CNC Delay. Journal of Aerospace Engineering 17:1, pages 1-9.
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Chi-Wei Lin, Jay F. Tu & Joe Kamman. (2003) An integrated thermo-mechanical-dynamic model to characterize motorized machine tool spindles during very high speed rotation. International Journal of Machine Tools and Manufacture 43:10, pages 1035-1050.
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Bernd Bossmanns & Jay F. Tu. (1999) A thermal model for high speed motorized spindles. International Journal of Machine Tools and Manufacture 39:9, pages 1345-1366.
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Jay F. Tu & Jeffrey L. Stein. (1995) On-Line Preload Monitoring for Anti-Friction Spindle Beatings of High-Speed Machine Tools. Journal of Dynamic Systems, Measurement, and Control 117:1, pages 43-53.
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