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Original Articles

Experimental Test Results for Vibration of a High Speed Diesel Engine Turbocharger

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Pages 422-427 | Received 11 Nov 2006, Accepted 02 Jan 2008, Published online: 10 Jul 2008

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Read on this site (3)

Benjamin Conley & Farshid Sadeghi. (2023) Impact of Whirl and Axial Motion on Ball Bearing Turbocharger Dynamics. Tribology Transactions 66:2, pages 338-349.
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Benjamin Conley & Farshid Sadeghi. (2021) Experimental and Analytical Investigation of Turbocharger Whirl and Dynamics. Tribology Transactions 64:2, pages 239-252.
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Articles from other publishers (26)

Narisimha Murty Tammineni & Rajasekhara Reddy Mutra. (2023) A review on recent advancements in an automotive turbocharger rotor system supported on the ball bearings, oil film and oil-free bearings. Journal of the Brazilian Society of Mechanical Sciences and Engineering 45:9.
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Xinli Zhong, Yuan Huang, Guangfu Bin & Anhua Chen. (2021) Effect of the inlet oil temperature on vibration characteristics of the high-speed turbocharger rotor system. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 235:10, pages 2086-2098.
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Ding Kongxing, Zhu Faxin, Teng Xianbin, Yang Qijiang, Chen Wenxiang, Wang Zhaojian & Chen Ming. (2021) Study on critical speed of three-watt tilting pad bearing-rotor system. Journal of Physics: Conference Series 1948:1, pages 012088.
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Anton Petrochenkov, Aleksey Sal’nikov, Sergey Bochkarev & Pavel Ilyushin. (2021) Analysis of the Frequency Interaction of the Turbine Block in the Stand for the Magnitude of the Error in Measuring the Turbine’s Power. Applied Sciences 11:9, pages 4149.
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Yang Shuai, Guo Hong, Zhang Shao-Lin & Xia Bo-Qian. (2021) Thermohydrodynamic Characteristics and Stability Analysis for a Journal Hybrid Floating Ring Bearing Within Laminar and Turbulent Mixed Flow Regime. Journal of Tribology 143:3.
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Hamidreza Heidari & Pedram Safarpour. (2019) H∞ and H2 optimization procedures for optimal design of support parameters of a flexible rotor. Computational and Applied Mathematics 38:4.
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Benjamin ConleyFarshid SadeghiRobert C. GriffithJeffrey W. McCormack. (2019) Experimental Investigation of the Dynamic Loads in a Ball Bearing Turbocharger. Journal of Tribology 141:11.
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V Naveen Kumar, R S Pranav Raja, K S Sanjeevi, S P Anbuudayasankar & S Srihari. (2019) Multi-Criteria Engine Selection for Unique Purpose using AHP. IOP Conference Series: Materials Science and Engineering 577:1, pages 012118.
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Hong Guo, Shuai Yang, Shaolin Zhang & Zebin Zhang. (2019) Influence of temperature – viscosity effect on ring-journal speed ratio and stability for a hydrodynamic floating ring bearing. Industrial Lubrication and Tribology 71:4, pages 540-547.
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Yan Wang, Xiao-dong Ren, Xue-song Li & Chun-wei Gu. (2018) Numerical investigation of subsynchronous vibration in floating ring bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 232:11, pages 1390-1401.
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Y Wang & Y B Xiao. (2018) Development of an evaluation method of floating ring bearings by CFD with mesh motion. IOP Conference Series: Earth and Environmental Science 163, pages 012080.
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Feng LiangYajing LiMing ZhouQuanyong XuFarong Du. (2017) Integrated Three-Dimensional Thermohydrodynamic Analysis of Turbocharger Rotor and Semifloating Ring Bearings. Journal of Engineering for Gas Turbines and Power 139:8.
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Yajing Li, Feng Liang, Yu Zhou, Shuiting Ding, Farong Du, Ming Zhou, Jinguang Bi & Yi Cai. (2017) Numerical and experimental investigation on thermohydrodynamic performance of turbocharger rotor-bearing system. Applied Thermal Engineering 121, pages 27-38.
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Feng Liang, Ming Zhou & Quanyong Xu. (2016) Effects of semi-floating ring bearing outer clearance on the subsynchronous oscillation of turbocharger rotor. Chinese Journal of Mechanical Engineering 29:5, pages 901-910.
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R. Gordon Kirk. 2015. Proceedings of the 9th IFToMM International Conference on Rotor Dynamics. Proceedings of the 9th IFToMM International Conference on Rotor Dynamics 205 220 .
Robley G. Kirk. (2014) Experimental Evaluation of Hydrodynamic Bearings for a High Speed Turbocharger. Journal of Engineering for Gas Turbines and Power 136:7.
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W. Köhl, M. Kreschel & D. Filsinger. 2014. 11th International Conference on Turbochargers and Turbocharging. 11th International Conference on Turbochargers and Turbocharging 349 359 .
L. Tian, W.J. Wang & Z.J. Peng. (2013) Nonlinear effects of unbalance in the rotor-floating ring bearing system of turbochargers. Mechanical Systems and Signal Processing 34:1-2, pages 298-320.
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Punithavathy Kamesh, Michael J Brennan & Roy Holmes. (2012) On the stabilising effect of gyroscopic moments in an automotive turbocharger. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 226:10, pages 2485-2495.
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R Gordon Kirk, Ali Alsaeed & Brian Mondschein. (2011) Turbocharger vibration shows nonlinear jump. Journal of Vibration and Control 18:10, pages 1454-1461.
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L. Tian, W.J. Wang & Z.J. Peng. (2012) Effects of bearing outer clearance on the dynamic behaviours of the full floating ring bearing supported turbocharger rotor. Mechanical Systems and Signal Processing 31, pages 155-175.
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R.G. Kirk. 2012. 10th International Conference on Vibrations in Rotating Machinery. 10th International Conference on Vibrations in Rotating Machinery 525 534 .
L. Tian, W.J. Wang & Z.J. Peng. (2011) Dynamic behaviours of a full floating ring bearing supported turbocharger rotor with engine excitation. Journal of Sound and Vibration 330:20, pages 4851-4874.
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R. Gordon Kirk & Ali A. Alsaeed. (2011) Induced Unbalance as a Method for Improving the Dynamic Stability of High-Speed Turbochargers. International Journal of Rotating Machinery 2011, pages 1-9.
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R. Gordon KirkAlan A. Kornhauser, John Sterling & Ali Alsaeed. (2009) Turbocharger On-engine Experimental Vibration Testing. Journal of Vibration and Control 16:3, pages 343-355.
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Luis San Andrés, Ash Maruyama, Kostandin Gjika & Sherry Xia. (2010) Turbocharger Nonlinear Response With Engine-Induced Excitations: Predictions and Test Data. Journal of Engineering for Gas Turbines and Power 132:3.
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