S.M.O. Tavares
Title
Cited by
Cited by
Year
Mechanical and metallurgical characterization of friction stir welding joints of AA6061-T6 with AA6082-T6
P Moreira, T Santos, SMO Tavares, V Richter-Trummer, P Vilaça, ...
Materials & Design 30 (1), 180-187, 2009
2362009
Advanced design for lightweight structures: Review and prospects
DFO Braga, SMO Tavares, LFM Da Silva, P Moreira, PMST De Castro
Progress in Aerospace Sciences 69, 29-39, 2014
712014
Rough contacts between actual engineering surfaces: Part I. Simple models for roughness description
E Ciulli, LA Ferreira, G Pugliese, SMO Tavares
Wear 264 (11-12), 1105-1115, 2008
562008
Rough contacts between actual engineering surfaces: Part II. Contact mechanics
G Pugliese, SMO Tavares, E Ciulli, LA Ferreira
Wear 264 (11-12), 1116-1128, 2008
462008
Friction stir welded joints of Al–Li Alloys for aeronautical applications: butt-joints and tailor welded blanks
SMO Tavares, JF Dos Santos, P De Castro
Theoretical and Applied Fracture Mechanics 65, 8-13, 2013
382013
Friction stir welding of T-joints with dissimilar aluminium alloys: mechanical joint characterisation
SMO Tavares, RAS Castro, V Richter-Trummer, P Vilaça, P Moreira, ...
Science and Technology of Welding and Joining 15 (4), 312-318, 2010
362010
Temperature field acquisition during gas metal arc welding using thermocouples, thermography and fibre Bragg grating sensors
PMGP Moreira, O Frazao, SMO Tavares, MAV de Figueiredo, MT Restivo, ...
Measurement science and Technology 18 (3), 877, 2007
292007
An overview of fatigue in aircraft structures
SMO Tavares, P De Castro
Fatigue & Fracture of Engineering Materials & Structures 40 (10), 1510-1529, 2017
282017
An innovative approach for planning and execution of pre-experimental runs for Design of Experiments
MA Farooq, H Nóvoa, A Araújo, SMO Tavares
European Research on Management and Business Economics 22 (3), 155-161, 2016
242016
Mechanical characterization of bone cement using fiber Bragg grating sensors
C Frias, O Frazão, S Tavares, A Vieira, AT Marques, J Simões
Materials & Design 30 (5), 1841-1844, 2009
242009
Residual stress measurement using the contour and the sectioning methods in a MIG weld: Effects on the stress intensity factor
V Richter-Trummer, SMO Tavares, PMGP Moreira, MAV de Figueiredo, ...
Ciência & Tecnologia dos Materiais 20 (1-2), 114-119, 2008
222008
Mechanical behaviour of AA 2024 friction stir overlap welds
M Papadopoulos, S Tavares, M Pacchione, S Pantelakis
International Journal of Structural Integrity 4 (1), 8-8, 2013
182013
Crack growth simulation in integrally stiffened structures including residual stress effects from manufacturing. Part I: Model overview
SM Häusler, PM Baiz, SMO Tavares, A Brot, P Horst, MH Aliabadi, ...
Structural Durability & Health Monitoring 7 (3), 163, 2011
172011
Damage tolerance of aircraft panels
P De Castro, SMO Tavares, V Richter-Trummer, PFP De Matos, P Moreira, ...
Revista da Associação Portuguesa de Análise Experimental de Tensões ISSN …, 2010
172010
Stress intensity factor calibration for a longitudinal crack in a fuselage barrel and the bulging effect influence
SMO Tavares, P De Castro
Engineering fracture mechanics 78 (17), 2907-2918, 2011
152011
Crack growth simulation in integrally stiffened structures including residual stress effects from manufacturing. Part II: Modelling and experiments comparison
SMO Tavares, SM Häusler, PM Baiz, P De Castro, P Horst, MH Aliabadi
Structural Durability & Health Monitoring 7 (3), 191, 2011
142011
Recent developments on intramedullary nailing: a biomechanical perspective
N Rosa, M Marta, M Vaz, SMO Tavares, R Simoes, FD Magalhaes, ...
Annals of the New York Academy of Sciences 1408 (1), 20-31, 2017
122017
Stress intensity factors by numerical evaluation in cracked structures
SMO Tavares, P Moreira, SD Pastrama, P Castro
11th Portuguese Conference on Fracture, Lisbon, February, 13-15, 2008
122008
Design and advanced manufacturing of aircraft structures using friction stir welding
SMO Tavares
112011
Method and device for friction stir welding
S Tavares, M Pacchione, H Ostersehlte
US Patent 9,573,222, 2017
102017
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