A.J.M. Ferreira

ORCID: 0000-0003-4043-9838
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About
Contact & Profiles
Research Areas
  • Composite Structure Analysis and Optimization
  • Numerical methods in engineering
  • Structural Load-Bearing Analysis
  • Structural Analysis and Optimization
  • Structural Behavior of Reinforced Concrete
  • Innovative concrete reinforcement materials
  • Nonlocal and gradient elasticity in micro/nano structures
  • Topology Optimization in Engineering
  • Structural Analysis of Composite Materials
  • Mechanical Behavior of Composites
  • Vibration and Dynamic Analysis
  • Concrete Corrosion and Durability
  • Advanced Numerical Analysis Techniques
  • Aeroelasticity and Vibration Control
  • Railway Engineering and Dynamics
  • Acoustic Wave Phenomena Research
  • Cardiovascular Disease and Adiposity
  • Atrial Fibrillation Management and Outcomes
  • Pelvic floor disorders treatments
  • Concrete and Cement Materials Research
  • Cardiac Imaging and Diagnostics
  • Ear Surgery and Otitis Media
  • Structural Response to Dynamic Loads
  • Pelvic and Acetabular Injuries
  • Cardiovascular Function and Risk Factors

Universidade do Porto
2015-2024

Centro Universitário Serra dos Órgãos
2024

Hospital de Santa Cruz
2004-2024

Hospital da Luz
2017-2024

University of Minho
2021-2023

Essen University Hospital
2023

Computer Algorithms for Medicine
2023

Sigma Research (United States)
2023

Prefeitura do Município de São Paulo
2023

Universidade do Estado do Rio de Janeiro
2008-2023

Abstract: The correct modelling of constitutive laws is critical importance for the analysis mechanical behaviour solids and structures. For example, understanding soft tissue mechanics, because nonlinear commonly displayed by properties such materials, makes common place use hyperelastic models. Hyperelastic models however, depend on sets variables that must be obtained experimentally. In this study authors a computational/experimental scheme, biological tissues under uniaxial tension....

10.1111/j.1475-1305.2006.00257.x article EN Strain 2006-07-17

Abstract A layerwise shear deformation theory for composite laminated plates is discretized using multiquadrics. This new type of meshless method considers radial basis functions as the approximation both differential governing equations and boundary conditions. The combination this multiquadrics discretization allows a very accurate prediction field variables. Laminated sandwich are analyzed. financial support Portuguese Foundation Science Technology (Fundação para Ciência e Tecnologia)...

10.1080/15376490490493952 article EN Mechanics of Advanced Materials and Structures 2005-03-01

10.1016/j.ijengsci.2011.05.010 article EN International Journal of Engineering Science 2011-06-19
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