Vitor Manuel Rodrigues Anes
Vitor Anes was born in Lisbon in 1976, and received the M.S. and Ph.D. degrees in Mechanical Engineering, in 2009 and 2015, respectively, both from Instituto Superior Técnico (IST), University of Lisbon, Portugal. He is a faculty member of Instituto Superior de Engenharia de Lisboa (ISEL) at the Department of Mechanical Engineering since 2015, where he has been teaching engineering mechanics courses (Statics and Dynamics). He is a researcher at the center of mechanical design of the Institute of Mechanical Engineering (IDEMC). His main research areas are on cyclic plasticity, multiaxial fatigue behavior of materials, fracture mechanics, experimental mechanics, structural reliability, risk-based fatigue life prediction and design, finite element analysis, and computer aided design. He has published over 40 papers in international refereed conferences, and peer reviewed journals. More recently, Vitor Anes has been focus on the extent of the life cycle of aerospace structures by improving their maintainability in early design stages. Applications of this work include the development of more reliable structural designs to extend the life cycle of aerospace structures.
V. Anes, Y.E. Lage, M. Vieira, N.M.M. Maia, M. Freitas, L. Reis, Torsional and axial damping properties of the AZ31B-F magnesium alloy, Mechanical Systems and Signal Processing, Available online 9 March 2016.
Anes V, Reis L, Li B, Freitas M, Sonsino C. "Minimum circumscribed ellipse (MCE) and stress scale factor (SSF) criteria for multiaxial fatigue life assessment". Theoretical and Applied Fracture Mechanics 2014, vol. 73, pp. 109-19.
V. Anes, L. Reis, M. de Freitas, “Random accumulated damage evaluation under multiaxial fatigue loading conditions”. Fracture and Structural Integrity 2015, vol. 33, pp. 309-318.
V. Anes, L. Reis, B. Li, M. Freitas, "Crack path evaluation on HC and BCC microstructures under multiaxial cyclic loading". International Journal of Fatigue 2014, vol. 58, pp. 102-113.
V. Anes, L. Reis, B. Li, M. Fonte, M. de Freitas, "New approach for analysis of complex multiaxial loading paths". International Journal of Fatigue 2014, vol. 62, pp. 21-33.
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