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International journal of plasticity, ISSN 0749-6419, 2008, Volume 24, Issue 3, pp. 455 - 482
C. Finite elements | A. Phase transformation | Finite strain | B. Constitutive behaviour | Numerical algorithms | Engineering | Materials Science | Technology | Materials Science, Multidisciplinary | Mechanics | Engineering, Mechanical | Science & Technology | Solid mechanics | Fundamental and applied biological sciences. Psychology | Fundamental areas of phenomenology (including applications) | Blood vessels and receptors | Structural and continuum mechanics | Exact sciences and technology | Biological and medical sciences | Inelasticity (thermoplasticity, viscoplasticity...) | Vertebrates: cardiovascular system | Physics | Static elasticity (thermoelasticity...) | Medical equipment | Employee motivation | Algorithms | Shape-memory alloys | Analysis | Models | Physiological apparatus | Finite element method | Surgical implants | Shape memory alloys | Computer simulation | Mathematical analysis | Intermetallics | Mathematical models | Stents
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Composites science and technology, ISSN 0266-3538, 10/2012, Volume 72, Issue 15, pp. 1793 - 1802
C. Failure criterion | Fibre–metal laminate | C. Finite element analysis (FEA) | B. Impact behaviour | A. Layered structures | Fibre-metal laminate | Materials Science | Technology | Materials Science, Composites | Science & Technology | Applied sciences | Technology of polymers | Laminates | Exact sciences and technology | Polymer industry, paints, wood | Forms of application and semi-finished materials | Finite element method | Mechanical engineering | Laminated materials | Analysis | Alloys | Aerospace engineering | Dynamic response | Glass fiber reinforced plastics | Impact response | Mathematical analysis | Failure modes | Polymers
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Composites. Part B, Engineering, ISSN 1359-8368, 11/2013, Volume 54, Issue 1, pp. 400 - 408
A. Nano-structures | B. Fracture toughness | C. Finite element analysis (FEA) | Engineering | Materials Science | Technology | Engineering, Multidisciplinary | Materials Science, Composites | Science & Technology | Applied sciences | Technology of polymers | Composites | Exact sciences and technology | Polymer industry, paints, wood | Forms of application and semi-finished materials | Finite element method | Analysis | Nanotechnology
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Composites. Part A, Applied science and manufacturing, ISSN 1359-835X, 01/2016, Volume 80, pp. 1 - 12
B. Plastic deformation | A. Honeycomb | C. Finite element analysis (FEA) | Sandwich structures | Engineering | Materials Science | Engineering, Manufacturing | Technology | Materials Science, Composites | Science & Technology | Finite element method | Explosions | Sandwiches | Analysis | Biomedical engineering | Honeycomb cores | Sandwich construction | Aluminum | Compression zone | Mathematical analysis | Blast resistance | Density
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Mixed stabilized finite element methods in nonlinear solid mechanics. Part I: Formulation
Computer methods in applied mechanics and engineering, ISSN 0045-7825, 08/2010, Volume 199, Issue 37-40, pp. 2559 - 2570
Orthogonal sub-grid scales | Algebraic sub-grid scales | Nonlinear solid mechanics | Mixed finite element interpolations | Stabilization methods | Mathematics, Interdisciplinary Applications | Engineering | Physical Sciences | Technology | Engineering, Multidisciplinary | Mechanics | Mathematics | Science & Technology | Solid mechanics | Numerical analysis. Scientific computation | Fundamental areas of phenomenology (including applications) | Structural and continuum mechanics | Exact sciences and technology | Methods of scientific computing (including symbolic computation, algebraic computation) | Physics | Sciences and techniques of general use | Finite element method | Approximation | Mathematical analysis | C (programming language) | Nonlinearity | Mathematical models | Displacement
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Composites. Part B, Engineering, ISSN 1359-8368, 12/2013, Volume 55, pp. 558 - 574
Sandwich | A. Plates | B. Vibration | B. Buckling | C. Computational modeling | Engineering | Materials Science | Technology | Engineering, Multidisciplinary | Materials Science, Composites | Science & Technology | Solid mechanics | Fundamental areas of phenomenology (including applications) | Structural and continuum mechanics | Buckling | Physics | Exact sciences and technology | Finite element method | Analysis
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International journal of plasticity, ISSN 0749-6419, 05/2016, Volume 80, Issue C, pp. 1 - 18
C. Finite elements | Shape memory alloys | A. Phase transformation | B. Crystal plasticity | B. Constitutive behaviour | Engineering | Materials Science | Technology | Materials Science, Multidisciplinary | Mechanics | Engineering, Mechanical | Science & Technology | Shape-memory alloys | Analysis | Models | Austenite | Slip | Martensitic transformations | Plasticity | Mathematical models | Transformations | Plastic deformation
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Composites. Part B, Engineering, ISSN 1359-8368, 02/2013, Volume 45, Issue 1, pp. 1117 - 1125
C. Finite element analysis (FEA) | C. Micro-mechanics | B. Thermal properties | Aspect ratio | B. Elasticity | Engineering | Materials Science | Technology | Engineering, Multidisciplinary | Materials Science, Composites | Science & Technology | Composites | Exact sciences and technology | Applied sciences | Technology of polymers | Physicochemistry of polymers | Laminates | Polymer industry, paints, wood | Forms of application and semi-finished materials | Thermal properties | Models | Composite materials industry | Composite materials | Analysis | Methods | Finite element method | Mathematical analysis | Thermal conductivity | Modulus of elasticity | Mathematical models | Inclusions | Heat transfer
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Composite structures, ISSN 0263-8223, 10/2016, Volume 153, pp. 728 - 737
Crack tip stress | C(t) | FGM | Functionally graded material | Mechanics | Materials Science | Technology | Materials Science, Composites | Science & Technology | Finite element method | Analysis | Mechanical engineering | Stresses | Cracks | Mathematical analysis | Small scale | Functionally gradient materials | Creep (materials) | Estimates
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International journal of plasticity, ISSN 0749-6419, 06/2015, Volume 69, Issue C, pp. 21 - 35
B. Anisotropic material, crystal plasticity | A. Grain boundaries | C. Finite elements | Heterogeneous deformation | Engineering | Materials Science | Technology | Materials Science, Multidisciplinary | Mechanics | Engineering, Mechanical | Science & Technology | Finite element method | Titanium alloys | Structure | Analysis | Crystals | Computer simulation | Mathematical analysis | Plasticity | Mathematical models | Microstructure | Titanium base alloys | Three dimensional
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