TY - JOUR KW - Fatigue crack growth models; Fractality; Fatigue experiments; Profilometric analysis; Roughness VL - 82 PB - Elsevier Y1 - 2016/// JF - International Journal of Fatigue UR - http://dx.doi.org/10.1016/j.ijfatigue.2015.09.009 A1 - Jones, R. A1 - Chen, F. A1 - Pitt, S. A1 - Paggi, Marco A1 - Carpinteri, Alberto N2 - This paper presents the results of an extensive experimental analysis of the fractal properties of fatigue crack rough surfaces. The analysis of the power-spectral density functions of profilometric traces shows a predominance of the box fractal dimension D = 1.2. This result leads to a particularization of the fatigue crack growth equation based on fractality proposed by the last two authors which is very close to the generalized Frost?Dugdale equation proposed by the first three authors. The two approaches, albeit based on different initial modelling assumptions, are both very effective in predicting the crack growth rate of short cracks. SP - 540 TI - From NASGRO to fractals: Representing crack growth in metals EP - 549 ID - eprints3456 SN - 0142-1123 AV - none ER -