1. Bogdanovich P. N., Tkachuk D. V. (2009), Thermal and thermo-mechanical effects in sliding contact (in russian), Treniye i iznos, 30, No 3, 214-229.10.3103/S1068366609030015
3. Cherepanov G.P. (1966), On the development of cracks in compressed bodies (in russian), Prikladnaya matematika i mehanika, 30, No 1, 82–93.10.1016/0021-8928(66)90060-8
5. Datsyshyn O. P., Kadyra V. M. (2006), A fracture mechanics approach to prediction of pitting under fretting fatigue conditions, Int. J. of Fatigue, 28, No 4, 375–38510.1016/j.ijfatigue.2005.07.019
6. Evtushenko A. A., Kutsei M. (2010), Effect of pressure evolution during braking on temperature of a pad-disk tribosystem, J.Friction and Wear, 31(5), 317–325.10.3103/S1068366610050028
13. Pasternak Ya. M., Sulym H. T., Piskozub L. G. (2010), Models of thin inclusion with the account of imperfect contact with the medium (in russian), Proc. of VI International symposium on Tribo-Fatigue MSTF 2010 in 2 parts, part 2., Minsk, BGU, 399–404.
14. Piskozub J. Z., Sulim G. T. (2008), Thermoelastic equilibrium of piecewise homogeneous solids with thin inclusions, Journal of Engineering Mathematics, Special Issue Thermomechanics, 61, 315–337.10.1007/s10665-008-9225-3
15. Pyriev S. Yu. et al. (2012), Thermomechanical wear during quasi-stationary frictional heating (in russian), Treniye i iznos, 33, No 5, 435–443.10.3103/S106836661205011X
16. Sosnovskiy L. A. (2005), Tribo-Fatigue. Wear-fatigue damage and its prediction (Foundations of engineering mechanics), Series: Foundations of Engineering Mechanics, Springer.10.1007/978-3-540-27027-0
17. Sulym H. T., Piskozub L. G., Piskozub Y. Z., Pasternak Ya. M. (2015), Antiplane deformation of a bimaterial containing an interfacial crack with the account of friction. I. Single loading, Acta Mechanica et Automatica, vol.9, No 2, 115-121.
18. Sulym H. T. (2007), Fundamentals of the mathematical theory of thermoelastic equilibrium of deformable bodies with thin inclusions (in ukrainian), Lviv, Doslidno-vydavnychyy tsentr NTSh.