Fatigue damage and sensor development for aircraft structural health monitoring
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Pavlo Maruschak | S. R. Ignatovich | Abdellah Menou | M. V. Karuskevich | P. Maruschak | S. Ignatovich | A. Menou | M. Karuskevich
[1] Giacomo Langfelder,et al. Monitoring fatigue damage growth in polysilicon microstructures under different loading conditions , 2010 .
[2] V. E. Panin,et al. Synergetic principles of physical mesomechanics , 2001 .
[3] V. E. Panin,et al. Foundations of physical mesomechanics of structurally inhomogeneous media , 2010 .
[4] Benguediab Mohamed,et al. Effect of hardening induced by cold expansion on damage fatigue accumulation and life assessment of Aluminum alloy 6082 T6 , 2012 .
[5] U. Ramamurty,et al. Fatigue in Ti–6Al–4V–B alloys , 2010 .
[6] E. E. Zasimchuk,et al. SINGLE‐CRYSTALS AS AN INDICATOR OF FATIGUE DAMAGE , 1992 .
[7] M. V. Karuskevich,et al. Estimation of the accumulated fatigue damage by saturation and fractal dimension of the deformation relief , 2008 .
[8] S. Lovejoy. Area-Perimeter Relation for Rain and Cloud Areas , 1982, Science.
[9] Pavlo Maruschak,et al. Optical-digital diagnostics of localisation of deformation processes in a steel nanocoated specimen , 2012 .
[10] M. V. Karuskevich,et al. Extrusion/intrusion structures as quantitative indicators of accumulated fatigue damage , 2012 .
[11] A. V. Byakov,et al. Multiscale monitoring of localized plastic strain evolution stages in notched aluminum AA 2024 alloy tension specimens by acoustic emission and television-optical techniques , 2010 .