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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 67, 2015 - Issue 2
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Original Articles

Numerical Analysis of Thermal Stresses in Disk Brakes and Clutches (A Review)

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Pages 170-188 | Received 16 Jan 2014, Accepted 17 Apr 2014, Published online: 20 Oct 2014

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Peng Ji, Fan Wu, Guoliang Zhang, Xiaofang Yin & Dmitri Vainchtein. (2019) A novel numerical approach for investigation of the heat transport in a full 3D brake system of high-speed trains. Numerical Heat Transfer, Part A: Applications 75:12, pages 824-840.
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Articles from other publishers (24)

José L.P. Vila-Chã, António M. Couto Carneiro, Bernardo P. Ferreira & F.M. Andrade Pires. (2023) A numerical assessment of partitioned implicit methods for thermomechanical problems. Computers & Structures 277-278, pages 106969.
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Ivan Kernytskyy, Aleksandr Volchenko, Olga Szlachetka, Orest Horbay, Vasyl Skrypnyk, Dmytro Zhuravlev, Vasyl Bolonnyi, Volodymyr Yankiv, Ruslan Humenuyk, Pavlo Polyansky, Aleksandra Leśniewska, Dariusz Walasek & Eugeniusz Koda. (2022) Complex Heat Exchange in Friction Steam of Brakes. Energies 15:19, pages 7412.
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Kejela Temesgen Deressa & Demiss Alemu Ambie. (2021) Thermal Load Simulations in Railway Disc Brake: A Systematic Review of Modelling Temperature, Stress and Fatigue. Archives of Computational Methods in Engineering 29:4, pages 2271-2283.
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Thomas Schneider, Maximilian Dietsch, Katharina Voelkel, Hermann Pflaum & Karsten Stahl. (2022) Analysis of the Thermo-Mechanical Behavior of a Multi-Plate Clutch during Transient Operating Conditions Using the FE Method. Lubricants 10:5, pages 76.
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Prakash R. Arul, R. Vijayanandh, G. Ramesh, S. Hariaran, Y. Janardhanan, Kumar M. Senthil & P. Jagadeeshwaran. 2022. Tribology and Characterization of Surface Coatings. Tribology and Characterization of Surface Coatings 211 238 .
Aleksander Yevtushenko, Piotr Grzes, Aleksander Ilyushenko & Andrey Liashok. (2022) An Effect of a Carbon-Containing Additive in the Structure of a Friction Material on Temperature of the Wet Clutch Disc. Materials 15:2, pages 464.
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Nasr A. Jabbar, Ihsan Y. Hussain & Oday I. Abdullah. (2021) Thermal and thermoelastic problems in dry friction clutch: A comprehensive review. Heat Transfer 50:8, pages 7855-7878.
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Ziyun Wang & Jianrun Zhang. (2021) Thermomechanical Coupling Simulation and Analysis of Wet Multi-Disc Brakes During Emergency Braking. Journal of Physics: Conference Series 1875:1, pages 012005.
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Evren S. Velizade. (2020) Rational Design of Vehicle Braking Systems with Reduced Wear of Friction Lining. Journal of Mechanical Engineering 23:3, pages 46-55.
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Xiutian Liang, Liqing Chen, Yuming Wang & Ling Wan. (2020) A proposed torque calculation model for multi-plate clutch considering boundary lubrication conditions and heat transfer. International Journal of Heat and Mass Transfer 157, pages 119732.
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Shujun Li, Wenjun Meng & Yao Wang. (2019) Numerical and experimental studies on a novel magneto-rheological fluid brake based on fluid–solid coupling. Science Progress 103:1, pages 003685041987900.
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Asif Afzal & Muhammad Abdul Mujeebu. (2018) Thermo-Mechanical and Structural Performances of Automobile Disc Brakes: A Review of Numerical and Experimental Studies. Archives of Computational Methods in Engineering 26:5, pages 1489-1513.
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Pankaj Sharma & Rahul Singh. (2019) Investigation on modal behaviour of FGM annular plate under hygrothermal effect. IOP Conference Series: Materials Science and Engineering 624:1, pages 012001.
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Piotr Grzes. (2018) Finite element solution of the three-dimensional system of equations of heat dynamics of friction and wear during single braking. Advances in Mechanical Engineering 10:11, pages 168781401880864.
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Aleksander Yevtushenko, Michal Kuciej & Katarzyna Topczewska. (2018) Analytical model to investigate distributions of the thermal stresses in the pad and disk for different temporal profiles of friction power. Advances in Mechanical Engineering 10:10, pages 168781401880667.
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Aleksander Yevtushenko, Michal Kuciej & Ewa Och. (2018) Modeling of the temperature regime and stress state in the thermal sensitive pad-disk brake system. Advances in Mechanical Engineering 10:6, pages 168781401878128.
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Yao Wang, Shujun Li & Wenjun Meng. (2017) Strong coupling analysis of fluid–solid for magnetorheological fluid braking system. Journal of Intelligent Material Systems and Structures 29:8, pages 1586-1599.
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Yao Wang, Shujun Li & Wenjun Meng. (2018) Thermo-mechanical strong coupling analysis on braking device of pipe belt conveyor. Journal of Mechanical Science and Technology 32:3, pages 1277-1285.
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P. Grzes, W. Oliferuk, A. Adamowicz, K. Kochanowski, P. Wasilewski & A.A. Yevtushenko. (2016) The numerical–experimental scheme for the analysis of temperature field in a pad-disc braking system of a railway vehicle at single braking. International Communications in Heat and Mass Transfer 75, pages 1-6.
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X.-Y. Li, P.-D. Li, G.-Z. Kang, W.-Q. Chen & R. Müller. (2016) Steady-state thermo-elastic field in an infinite medium weakened by a penny-shaped crack: Complete and exact solutions. International Journal of Solids and Structures 84, pages 167-182.
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A. Adamowicz. (2016) Thermal Stressed State of a Disk in the Process of Multiple Braking. Materials Science 51:6, pages 814-820.
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A. Adamowicz. (2016) Effect of convective cooling on temperature and thermal stresses in disk during repeated intermittent braking. Journal of Friction and Wear 37:2, pages 107-112.
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Aleksander Yevtushenko & Piotr Grzes. (2015) Maximum temperature in a three-disc thermally nonlinear braking system. International Communications in Heat and Mass Transfer 68, pages 291-298.
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A.A. Yevtushenko & P. Grzes. (2015) 3D FE model of frictional heating and wear with a mutual influence of the sliding velocity and temperature in a disc brake. International Communications in Heat and Mass Transfer 62, pages 37-44.
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