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Original Articles

Gear Failure Modes—Importance of Lubrication and Mechanics

Pages 239-249 | Published online: 25 Mar 2008

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Read on this site (4)

L. Chang, Yeau-Ren Jeng & Qingtao Yu. (2016) Parametric Analysis of Rolling–Sliding Line Contacts Under Boundary and Near Boundary Lubrication Conditions. Tribology Transactions 59:1, pages 119-127.
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P.M. Ku, H.E. Staph & H.J. Carper. (1978) On the Critical Contact Temperature of Lubricated Sliding-Rolling Disks. A S L E Transactions 21:2, pages 161-180.
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H.S. Cheng & A. Dyson. (1978) Elastohydrodynamic Lubrication of Circumferentially-Ground Rough Disks. A S L E Transactions 21:1, pages 25-40.
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Articles from other publishers (33)

I. M. Jamadar, R. Nithin, S. Nagashree, V. R. Prajwal Prasad, M. Preetham, P. K. Samal & Shekhar Singh. (2023) Spur Gear Fault Detection Using Design of Experiments and Support Vector Machine (SVM) Algorithm. Journal of Failure Analysis and Prevention 23:5, pages 2014-2028.
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Ke Feng, J.C. Ji, Qing Ni & Michael Beer. (2023) A review of vibration-based gear wear monitoring and prediction techniques. Mechanical Systems and Signal Processing 182, pages 109605.
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K. Rameshkumar, R. Sriram, M. Saimurugan & P. Krishnakumar. (2022) Establishing Statistical Correlation Between Sensor Signature Features and Lubricant Solid Particle Contamination in a Spur Gearbox. IEEE Access 10, pages 106230-106247.
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Dian Jiao, Aaron Urban, Xiaoliang Zhu & Jiang Zhe. (2021) Oil property sensing array based on a general regression neural network. Tribology International 164, pages 107221.
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Hooman Mohammadi Moghadam, Hossein Foroozan, Meysam Gheisarnejad & Mohammad-Hassan Khooban. (2021) A survey on new trends of digital twin technology for power systems. Journal of Intelligent & Fuzzy Systems 41:2, pages 3873-3893.
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P.R.N. Childs. 2021. Mechanical Design. Mechanical Design 165 208 .
Mangesh Pathak, Manish Gautam & Sourav Rakshit. 2021. Mechanism and Machine Science. Mechanism and Machine Science 239 253 .
Heli Liu, Huaiju Liu, Caichao Zhu & Robert G. Parker. (2020) Effects of lubrication on gear performance: A review. Mechanism and Machine Theory 145, pages 103701.
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Peter R.N. Childs. 2019. Mechanical Design Engineering Handbook. Mechanical Design Engineering Handbook 377 434 .
Dennis Schurr, Philip Holzwarth & Peter Eberhard. (2017) Investigation of dynamic stress recovery in elastic gear simulations using different reduction techniques. Computational Mechanics 62:3, pages 439-456.
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D. Park, M. Kolivand & A. Kahraman. (2014) An approximate method to predict surface wear of hypoid gears using surface interpolation. Mechanism and Machine Theory 71, pages 64-78.
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Amir Rasekhi Nejad, Zhen Gao & Torgeir Moan. (2014) Fatigue Reliability-based Inspection and Maintenance Planning of Gearbox Components in Wind Turbine Drivetrains. Energy Procedia 53, pages 248-257.
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Fred K. Geitner & Heinz P. Bloch. 2012. Machinery Failure Analysis and Troubleshooting. Machinery Failure Analysis and Troubleshooting 87 293 .
D. Park & A. Kahraman. (2009) A surface wear model for hypoid gear pairs. Wear 267:9-10, pages 1595-1604.
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B. Sharma & O.P. Gandhi. (2008) Digraph‐based reliability assessment of a tribo‐pair. Industrial Lubrication and Tribology 60:3, pages 153-163.
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J. Castro & J. Seabra. 1999. Lubrication at the Frontier - The Role of the Interface and Surface Layers in the Thin Film and Boundary Regime, Proceedings of the 25th Leeds-Lyon Symposium on Tribology. Lubrication at the Frontier - The Role of the Interface and Surface Layers in the Thin Film and Boundary Regime, Proceedings of the 25th Leeds-Lyon Symposium on Tribology 655 664 .
H.‐S. Hong, M. E. Huston, B. M. O'Connor & N. M. Stadnyk. (2006) Evaluation of surface fatigue performance of gear oils. Lubrication Science 10:4, pages 365-380.
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J. Castro & J. Seabra. (1998) Scuffing and lubricant film breakdown in FZG gears Part I. Analytical and experimental approach. Wear 215:1-2, pages 104-113.
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W. F. Bowman & G. W. Stachowiak. (1996) A review of scuffing models. Tribology Letters 2:2, pages 113-131.
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K.-B. Park & K.C. Ludema. (1994) Evaluation of the plasticity index as a scuffing criterion. Wear 175:1-2, pages 123-131.
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Y.L. Su, J.S. Lin & S.K. Hsieh. (1993) The tribological failure diagnosis of spur gear by an expert system. Wear 166:2, pages 187-196.
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A F Alliston-Greiner. (2016) Testing Extreme Pressure and Anti-Wear Performance of Gear Lubricants. Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering 205:2, pages 89-101.
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Young-Ze Lee & K.C. Ludema. (1990) The shared-load wear model in lubricated sliding: Scuffing criteria and wear coefficients. Wear 138:1-2, pages 13-22.
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L. Flamand, Ph. Sainsot & D. Berthe. 1990. Vibration and Wear in High Speed Rotating Machinery. Vibration and Wear in High Speed Rotating Machinery 815 846 .
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S.C. Kang & K.C. Ludema. (1986) The “breaking-in” of lubricated surfaces. Wear 108:4, pages 375-384.
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Kenneth C. Ludema. (1984) A review of scuffing and running-in of lubricated surfaces, with asperities and oxides in perspective. Wear 100:1-3, pages 315-331.
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J.M. Georges, J.M. Martin, T. Mathia, Ph. Kapsa, G. Meille & H. Montes. (1979) Mechanism of boundary lubrication with zinc dithiophosphate. Wear 53:1, pages 9-34.
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. 1978. Tribology: A systems approach to the science and technology of friction, lubrication and wear. Tribology: A systems approach to the science and technology of friction, lubrication and wear 360 381 .
A. Dyson. (2006) The Failure of Elastohydrodynamic Lubrication of Circumferentially Ground Discs. Proceedings of the Institution of Mechanical Engineers 190:1, pages 699-711.
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Peng Zhang. (2015) Temperature and Economic Growth: New Evidence from Total Factor Productivity. SSRN Electronic Journal.
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