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Original Articles

Torque Transmission Characteristics of Automatic Transmission Wet Clutches: Experimental Results and Numerical Comparison

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Pages 539-548 | Published online: 25 Mar 2008

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Read on this site (3)

Jinhua Lu, Yafei Li, Yun Wang & Yewei Fu. (2019) Effect of LNBR Content on the Properties of the Carbon Fiber–Reinforced Paper-Based Friction Materials. Tribology Transactions 62:4, pages 537-547.
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Nowshir Fatima, Pär Marklund & Roland Larsson. (2013) Influence of Clutch Output Shaft Inertia and Stiffness on the Performance of the Wet Clutch. Tribology Transactions 56:2, pages 310-319.
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Pär Marklund, Roland Larsson & T. Staffan Lundström. (2008) Permeability of Sinter Bronze Friction Material for Wet Clutches. Tribology Transactions 51:3, pages 303-309.
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Articles from other publishers (27)

Akshat Sharma, Farshid Sadeghi, Stefan Glen, Neil Murdie & Brian Shula. (2022) Friction & wear characteristics of pitch & poly-acrylonitrile based carbon-carbon composites in air and nitrogen environment under aircraft taxi conditions. Tribology International 174, pages 107729.
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Siyoul Jang. (2022) Manipulating Frictional Performance of Wet Clutch Engagement through Material Properties and Operating Conditions. Lubricants 10:9, pages 225.
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Leonardo I Farfan-Cabrera, Ezequiel A Gallardo-Hernández, José Pérez-González, Benjamín M Marín-Santibáñez, Roger Lewis & Ana K González-Lamas. (2020) Evaluation of thermo-oxidized Jatropha bio-oil in lubrication of actual wet clutch materials. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 235:10, pages 2021-2033.
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Leonardo Israel Farfan-Cabrera, Ezequiel Alberto Gallardo-Hernández, Manuel Vite-Torres & Jesús Gilberto Godínez-Salcedo. (2020) Influence of oxidation of automatic transmission fluids (ATFs) and sliding distance on friction coefficients of a wet clutch in the running-in stage. Friction 9:2, pages 401-414.
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Yewei Fu, Le Zhou, Tao Yin, Zhongyao Luo, Hejin Li & Lehua Qi. (2020) A new kind of resin-based wet friction material: Non-woven fabrics with isotropic fiber networks as preforms. Friction 9:1, pages 92-103.
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Zhigang Zhang, Ling Zou & Hai Qing. (2021) Analysis of Factors Affecting Vibration During Wet Clutch Engagement. IEEE Access 9, pages 34298-34306.
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Yong ChenYong Chen. 2021. Automotive Transmissions. Automotive Transmissions 155 199 .
N. J. Morris, R. Patel & H. Rahnejat. (2020) Hydrodynamic Lubricant Film Separation During Codirectional and Counter-Directional Rotations of Disengaged Wet Clutch Packs. Journal of Fluids Engineering 142:1.
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Hongwei Cui, Qiliang Wang, Zisheng Lian & Long Li. (2019) Theoretical Model and Experimental Research on Friction and Torque Characteristics of Hydro-viscous Drive in Mixed Friction Stage. Chinese Journal of Mechanical Engineering 32:1.
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Fumitaka Yoshizumi, Hirofumi Tani & Shuzo Sanda. (2019) Simulation of the Friction Coefficient of Paper-Based Wet Clutch With Wavy Separators. Journal of Tribology 141:1.
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Haibo Xie, Huasheng Gong, Liang Hu & Huayong Yang. (2016) Improving the extricating performance of TBM cutter-head driving system with hydro-viscous clutch. Improving the extricating performance of TBM cutter-head driving system with hydro-viscous clutch.
Jaecheol Cho, Woojung Kim, Jaeduk Jang & Siyoul Jang. (2016) Characteristic Dynamics Torque Vibration of Behavior in Wet Clutch Engagement for Dual Clutch Transmissions. Transactions of the Korean Society of Automotive Engineers 24:2, pages 183-190.
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Shoaib Iqbal, Farid Al-Bender, Agusmian P. Ompusunggu, Bert Pluymers & Wim Desmet. (2015) Modeling and analysis of wet friction clutch engagement dynamics. Mechanical Systems and Signal Processing 60-61, pages 420-436.
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Jie Fei, Wei Luo, Jian Feng Huang, HaiBo Ouyang, ZhanWei Xu & ChunYan Yao. (2015) Effect of carbon fiber content on the friction and wear performance of paper-based friction materials. Tribology International 87, pages 91-97.
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Qingrui Meng. (2015) Effect of starting time on hydro-viscous drive speed regulating start. Industrial Lubrication and Tribology 67:4, pages 320-327.
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Futang Zhu, Li Chen, Chengliang Yin & Jie Shu. (2013) Dynamic modelling and systematic control during the mode transition for a multi-mode hybrid electric vehicle. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 227:7, pages 1007-1023.
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Richard J. Vickerman & Craig Tipton. 2012. Automotive Lubricants and Testing. Automotive Lubricants and Testing 255 272 .
Qingrui Meng & Youfou Hou. (2011) Experimental study on hydro‐viscous drive speed‐regulating start. Industrial Lubrication and Tribology 63:4, pages 239-244.
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Wouter Ost, Patrick De Baets, Mia Loccufier & Stijn Van Autrève. (2009) Torsional vibrations of wet clutches: influence of mechanical parameters. Meccanica 45:3, pages 341-353.
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P Marklund, F Sahlin & R Larsson. (2009) Modelling and simulation of thermal effects in wet clutches operating under boundary lubrication conditions. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 223:8, pages 1129-1141.
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Pär Marklund, Kim Berglund & Roland Larsson. (2008) The Influence on Boundary Friction of the Permeability of Sintered Bronze. Tribology Letters 31:1, pages 1-8.
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Firoz Ali Jafri, Amit Shukla & David F. Thompson. (2007) A numerical bifurcation study of friction effects in a slip-controlled torque converter clutch. Nonlinear Dynamics 50:3, pages 627-638.
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A Crowther, N Zhang, D K Liu & J K Jeyakumaran. (2005) Analysis and simulation of clutch engagement judder and stick-slip in automotive powertrain systems. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 218:12, pages 1427-1446.
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H. Gao, G. C. Barber & M. Shillor. (2002) Numerical Simulation of Engagement of a Wet Clutch With Skewed Surface Roughness. Journal of Tribology 124:2, pages 305-312.
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W Ost, P De Baets & J Degrieck. (2001) The tribological behaviour of paper friction plates for wet clutch application investigated on SAE#II and pin-on-disk test rigs. Wear 249:5-6, pages 361-371.
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Bager Ganemi, Bo Lundström & Rickard Olsson. Durability and Friction Characteristics of a Novel High Performance Four Wheel Drive Automotive Transmission Fluid. Durability and Friction Characteristics of a Novel High Performance Four Wheel Drive Automotive Transmission Fluid.
Coby L. Davis, Farshid Sadeghi & Charles M. Krousgrill. (2000) A Simplified Approach to Modeling Thermal Effects in Wet Clutch Engagement: Analytical and Experimental Comparison. Journal of Tribology 122:1, pages 110-118.
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