Temperature field in the process of braking of a massive body with composite coating
Tóm tắt
Từ khóa
Tài liệu tham khảo
V. N. Parfenov and S. S. Kokonin, “Temperature field in friction couples in the case of short-term braking,” in: Optimal Application of Friction Materials in Friction Units of Machines [in Russian], Nauka, Moscow (1973), pp. 124–129.
A. V. Chichinadze, É. D. Braun, A. G. Ginzburg, and Z. V. Ignat’eva, Numerical Analysis, Testing, and Selection of Friction Couples [in Russian], Nauka, Moscow (1979).
D. V. Hrylits’kyi, Thermoelastic Contact Problems in Tribology [in Ukrainian], Institute of the Content and Methods of Education, Ministry of Education of the Ukraine, Kiev (1996).
E. V. Kovalenko, A. A. Evtushenko, and E. G. Ivanik, “On the evaluation of temperature in the process of braking,” Tren. Iznos, 17, No. 4, 435–441 (1996).
P. N. Bogdanovich and V. Ya. Prushak, Fiction and Wear in Machines [in Russian], Vysheish. Shkola, Minsk (1999).
O. O. Evtushenko, E. H. Ivanik, and N. V. Horbachova, “Analytic methods for thermal calculation of brakes (a survey),” Fiz.-Khim. Mekh. Mater., 36, No. 6, 52–58 (2000).
S. J. Matysiak and A. A. Yevtushenko, “On heating problems of friction,” J. Theor. Appl. Mech., 39, No. 3, 577–588 (2001).
A. A. Yevtushenko, S. J. Matysiak, and E. G. Ivanik, “Influence of periodically layered material structure on the frictional temperature during braking,” Int. J. Heat Mass Trans., 40, No. 10, 2115–2122 (1997).
A. A. Evtushenko and E. G. Ivanik, “Evaluation of the contact temperature and wear of composite friction lining in the process of braking,” Inzh.-Fiz. Zh., 72, No. 5, 988–994 (1999).
S. Matysyak, A. Evtushenko, and M. Kuciej, “Nonstationary heating of a homogeneous substrate with composite layer applied to its surface,” Tren. Iznos, 26, No. 6, 577–584 (2004).
Cz. Wozniak, “A nonstandard method of modeling of thermoelastic periodic composites,” J. Eng. Sci., 25, No. 5, 483–499 (1987).
S. J. Matysiak, “On certain problems of heat conduction in periodic composites,” Z. Angew. Math. Mech., 71, No. 12, 524–528 (1991).
S. J. Matysiak and A. A. Evtushenko, “Transient heat-conduction problem for a composite layer on a homogeneous substrate,” Mat. Met. Fiz.-Mekh. Polya, 48, No. 2, 172–179 (2005).
R. Kulchytsky-Zhyhailo and S. Matysiak, “On heat conduction problem in a semiinfinite periodically laminated layer,” Int. Comm. Heat. Mass Trans., 32, 123–132 (2005).
M. V. Korovchinskii, “Foundations of the theory of thermal contact in local friction,” in: Advances in the Theory of Friction, [in Russian], Part 1, Nauka, Moscow (1966), pp. 98–145.
V. Balakin, Friction and Wear for High Sliding Velocities [in Russian], Mashinostroenie, Moscow (1980).
A. A. Evtushenko, I. M. Dobryanskii, and E. G. Ivanik, “Temperature and thermal stresses in massive bodies under the action of pulsed laser radiation,” Fiz.-Khim. Mekh. Mater., 39, No. 6, 37–44 (2003).
I. N. Sneddon, The Use of Integral Transforms, McGraw-Hill, New York (1972).
A. V. Chichinadze, G. M. Sorokin, and A. Yu. Albagachiev, “A method for the evaluation of temperature in the case of dynamic contact in pulsed processes,” in: Optimal Application of Friction Materials in Friction Units of Machines [in Russian], Nauka, Moscow (1973), pp. 130–136.
G. A G. Fazekas, “Temperature gradient and heat stresses in brakes drums,” SAE. Trans., 61, No. 1, 279–284 (1953).