Zmęczenie i mechanika pękania
S. Bogdański & M. W. Brown* (2002). Modelling the three-dimensional behaviour of shallow rolling contact fatigue cracks in rails. WEAR, Vol. 253/1-2, pp. 17-25. *University of Sheffield, UK
S. Bogdański (2005). Liquid-Solid interaction at opening in rolling contact fatigue cracks. WEAR, Vol. 258/7-8, pp. 1273-1279.
Bogdański S., Lewicki P. & Szymaniak M. (2005). Experimental and theoretical investigation of the phenomenon of filling the RCF crack with liquid. WEAR, Vol. 258/7-8, pp. 1280-1287.
S. Bogdański (2002). A rolling contact fatigue crack driven by squeeze fluid film. INT. JOURN. OF FATIGUE AND FRACTURE OF ENGINEERING MATERIALS AND STRUCTURES, Vol. 25, pp. 1061-1071.
S. Bogdański (2005). Predicting the growth of RCF crack with the Use of 3D multi-size finite element model. Book; ”life cycle tribology” edited by D. Dowson et al., ELSEVIER – TRIBOLOGY AND INTERFACE ENG. SERIES, No. 48, pp. 709-721.
Bogdański S. & Trajer M. (2005). A dimensionless, multi-size Finite element model of a rolling contact fatigue crack.
WEAR, Vol. 258/7-8, pp. 1265-1272.
Bogdański, S., Lewicki P. (2008). 3D model of liquid entrapment mechanism for rolling contact fatigue cracks in rails. Wear, Volume 265, Issues 9-10, 30 October 2008, Pages 1356-1362.
M. Olzak, J. Stupnicki (2001). Badania wpływu parametrów szeregu pęknięć w warstwie wierzchniej na amplitudy WIN w trakcie przetaczania obciążenia. Materiały VIII Krajowej Konferencji Mechaniki Pękania, Kielce-Cedzyna
Pyrzanowski P. (2007). Estimation and consequences of the crack thickness parameter in the assessment of crack growth behaviour of “squat” type cracks in the rail-wheel contact zone . ENGINEERING FRACTURE MECHANICS, 74, p.2574-2584