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Original Articles

Analysis of Crankshaft Bearings Using a Mass Conserving Algorithm

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Pages 333-344 | 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 (9)

Changlin Gui, Jun Sun, Zhixian He & Zhen Li. (2011) A Dynamic Solution Method for Dynamically Loaded Bearing. Tribology Transactions 54:3, pages 384-393.
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Miles Zengeya, Mohamed Gadala & Guus Segal. (2007) Hydrodynamic and Thermal Behavior of Journal Bearings using Upwind Petrov-Galerkin FEM. Tribology Transactions 50:2, pages 227-247.
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OMIDREZA EBRAT, ZISSIMOSP. MOURELATOS, NICKOLAS VLAHOPOULOS & KUMAR VAIDYANATHAN. (2004) Calculation of Journal Bearing Dynamic Characteristics Including Journal Misalignment and Bearing Structural Deformation©. Tribology Transactions 47:1, pages 94-102.
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P. Wang, T.G. Keith$suffix/text()$suffix/text() & K. Vaidyanathan. (2001) Non-Newtonian Effects on the Performance of Dynamically Loaded Elliptical Journal Bearings Using a Mass-Conserving Finite Element Cavitation Algorithm. Tribology Transactions 44:4, pages 533-542.
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ZissimosP. Mourelatos. (2001) An Efficient Journal Bearing Lubrication Analysis For Engine Crankshafts. Tribology Transactions 44:3, pages 351-358.
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RohitS. Paranjpe. (1996) A Study of Dynamically Loaded Engine Bearings Using a Transient Thermohydrodynamic Analysis. Tribology Transactions 39:3, pages 636-644.
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PingC. Sui, Paul Troxler & Rich Vanderpoel. (1995) Predicting Distributor-Type Fuel Injection Pump Rotor Motion Using an Integrated Lubrication and Structural Dynamics Model. Tribology Transactions 38:4, pages 811-820.
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RohitS. Paranjpe & Taeyoung Han. (1994) A Study of the Thermohydrodynamic Performance of Steadily Loaded Journal Bearings. Tribology Transactions 37:4, pages 679-690.
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Articles from other publishers (38)

Reda Hamel, Mustapha Lahmar & Benyebka Bou-Saïd. (2023) Elasto-hydrodynamic lubrication analysis of a porous misaligned crankshaft bearing operating with nanolubricants. Mechanics & Industry 24, pages 2.
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Max Marian, Andreas Almqvist, Andreas Rosenkranz & Michel Fillon. (2022) Numerical micro-texture optimization for lubricated contacts—A critical discussion. Friction 10:11, pages 1772-1809.
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Chenglong Zhong, Jianhua Xiang & Jian Liu. (2022) Study on Internal Flow Characteristics and Law of Conrod Small End Bearing for Internal Combustion Engine. Study on Internal Flow Characteristics and Law of Conrod Small End Bearing for Internal Combustion Engine.
Abdelhak Megdoud, Belkacem Manser, Idir Belaidi, Farid Bakir & Sofiane Khelladi. (2022) A reduced-order method with PGD for the analysis of dynamically loaded journal bearing. Comptes Rendus. Mécanique 350:G2, pages 361-390.
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Barbara Z Cunha & Gregory B Daniel. (2021) Effects of bearing lubrication conditions on rotor dynamic behavior. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 236:3, pages 563-580.
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Minje Park, Siyoul Jang & Kyoungdoug Min. (2020) Non-Newtonian Fluid Application of the Mobility Method in Engine Journal Bearing. International Journal of Automotive Technology 21:5, pages 1303-1313.
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Biao Wan, Jianguo Yang & Sicong Sun. (2020) A Method for Monitoring Lubrication Conditions of Journal Bearings in a Diesel Engine Based on Contact Potential. Applied Sciences 10:15, pages 5199.
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Nishita bhise & M. Ramachandran. (2020) Design and Numerical evaluation of crankshaft of diesel engine for total deformation and strain. IOP Conference Series: Materials Science and Engineering 810:1, pages 012010.
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Yanping Ren, Jun Sun, Biao Li, Yangyang Fu, Shaoyu Zhu, Yunqiang Li & Guixiang Zhu. Research on the Lubrication Performance of Crankshaft Bearing under Different Engine Operating Conditions. Research on the Lubrication Performance of Crankshaft Bearing under Different Engine Operating Conditions.
Wei Tao, Lin Chai, Raymond Su, Bruce K. Geist & William F. Resh. Evaluating Major Parasitic Power Losses in IC Engines. Evaluating Major Parasitic Power Losses in IC Engines.
Zhenpeng He & Wenqin Gong. (2016) Factors influence the lubrication characteristics investigation and optimization of bearing based on neural network. Industrial Lubrication and Tribology 68:3, pages 369-385.
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Jakub Lengiewicz, Michał Wichrowski & Stanisław Stupkiewicz. (2014) Mixed formulation and finite element treatment of the mass-conserving cavitation model. Tribology International 72, pages 143-155.
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EA Estupiñan & IF Santos. (2011) Radial oil injection applied to main engine bearings: evaluation of injection control rules. Journal of Vibration and Control 18:5, pages 587-595.
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J. Ghorbanian, M. Ahmadi & R. Soltani. (2011) Design predictive tool and optimization of journal bearing using neural network model and multi-objective genetic algorithm. Scientia Iranica 18:5, pages 1095-1105.
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Xiao-Li Wang, Jun-Yan Zhang & Hui Dong. (2011) Analysis of bearing lubrication under dynamic loading considering micropolar and cavitating effects. Tribology International 44:9, pages 1071-1075.
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Matteo Giacopini, Mark T. Fowell, Daniele Dini & Antonio Strozzi. (2010) A Mass-Conserving Complementarity Formulation to Study Lubricant Films in the Presence of Cavitation. Journal of Tribology 132:4.
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M J Braun & W M Hannon. (2016) Cavitation formation and modelling for fluid film bearings: A review. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 224:9, pages 839-863.
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Shiuh-Hwa Shyu, Yeau-Ren Jeng & Fuli Li. (2008) A Legendre collocation method for thermohydrodynamic journal-bearing problems with Elrod's cavitation algorithm. Tribology International 41:6, pages 493-501.
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H Hirani. (2005) Multiobjective optimization of journal bearing using mass conserving and genetic algorithms. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 219:3, pages 235-248.
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Bogdan R. Kucinschi, Kenneth J. DeWitt & Mircea D. Pascovici. (2004) Thermoelastohydrodynamic (TEHD) Analysis of a Grooved Thrust Washer. Journal of Tribology 126:2, pages 267-274.
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Sanjay D. Gulwadi & Gary Shrimpling. Journal Bearing Analysis in Engines Using Simulation Techniques. Journal Bearing Analysis in Engines Using Simulation Techniques.
Zissimos P. Mourelatos. (2001) A crankshaft system model for structural dynamic analysis of internal combustion engines. Computers & Structures 79:20-21, pages 2009-2027.
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H. Hirani, K. Athre & S. Biswas. (2000) A Hybrid Solution Scheme for Performance Evaluation of Crankshaft Bearings. Journal of Tribology 122:4, pages 733-740.
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H Hirani, K Athre & S Biswas. (2005) Comprehensive design methodology for an engine journal bearing. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 214:4, pages 401-412.
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W. Zhang & X. Xu. (2000) Modeling of Nonlinear Oil-Film Force Acting on a Journal with Unsteady Motion and Nonlinear Instability Analysis under the Model. International Journal of Nonlinear Sciences and Numerical Simulation 1:3.
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H. Hirani, K. Athre & S. Biswas. (1999) Dynamically Loaded Finite Length Journal Bearings: Analytical Method of Solution. Journal of Tribology 121:4, pages 844-852.
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S. R. Harp & R. F. Salant. (1998) Analysis of Mechanical Seal Behavior During Transient Operation. Journal of Tribology 120:2, pages 191-197.
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H Hirani, K Athre & S Biswas. (2005) Rapid and globally convergent method for dynamically loaded journal bearing design. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 212:3, pages 207-214.
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D. Bonneau, D. Guines, J. Freˆne & J. Toplosky. (1995) EHD Analysis, Including Structural Inertia Effects and a Mass-Conserving Cavitation Model. Journal of Tribology 117:3, pages 540-547.
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S. Boedo & J. F. Booker. (1995) Cavitation in Normal Separation of Square and Circular Plates. Journal of Tribology 117:3, pages 403-409.
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Rohit S. Paranjpe & Taeyoung Han. (1995) A Transient Thermohydrodynamic Analysis Including Mass Conserving Cavitation for Dynamically Loaded Journal Bearings. Journal of Tribology 117:3, pages 369-378.
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Nigel F. Gale, Stanley K. Widener, Ping C. Sui & Houshun Zhang. Analytical Engine Design Methods: A Review. Analytical Engine Design Methods: A Review.
S. Boedo, J.F. Booker & M.J. Wilkie. 1995. Lubricants and Lubrication - Proceedings of the 21th leeds-Lyon Symposium on Tribology. Lubricants and Lubrication - Proceedings of the 21th leeds-Lyon Symposium on Tribology 513 523 .
Fred A. Martin & Hao Xu. Improved Oil Flow Prediction Method for Connecting-Rod Bearings Fed by a Single Hole in the Crankpin. Improved Oil Flow Prediction Method for Connecting-Rod Bearings Fed by a Single Hole in the Crankpin.
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