- A Review of Elastic–Plastic Contact Mechanics
2017/10/19 by Hamid Ghaednia, Xianzhang Wang, Swarna Saha +3 · 16 citations
Engineering · #Adhesion, Friction, and Surface Interactions #Asperity (geotechnical engineering) #Composite material #Contact area #Contact mechanics #Deformation (meteorology) #Elastic modulus #Engineering #Finite element method #Flattening #Gear and Bearing Dynamics Analysis #Hardening (computing) #Indentation #Materials science #Mechanical engineering #Mechanical stress and fatigue analysis #Mechanics #Physics #Plasticity #Rotational symmetry #Shakedown #Structural engineering #Work (physics) #Work hardening
- Effects of shot peening and pre-strain on the fatigue life of dual phase Martensitic and Bainitic steels
2017/03/21 by James S. Walker, James Walker, Daniel J. Thomas +1 · 1 citation
Engineering · Materials Science · #Bainite #Composite material #Dual-phase steel #Hardening (computing) #Martensite #Materials science #Metal Alloys Wear and Properties #Metallurgy #Microstructure #Microstructure and Mechanical Properties of Steels #Peening #Residual stress #Shot peening #Strain hardening exponent #Surface Treatment and Residual Stress #Work hardening
- A simple equation for obtaining finite strain solutions from small strain analyses of tunnels with very large convergences
2015/11/01 by A. Vrakas, Apostolos Vrakas, Georgios Anagnostou +1 · 2 citations
Engineering · Mathematics · #Dilatant #Engineering #Finite element method #Geology #Geometry #Geotechnical Engineering and Analysis #Geotechnical Engineering and Underground Structures #Geotechnical engineering #Hardening (computing) #Materials science #Mathematical analysis #Mathematics #Plane stress #Plasticity #Rock Mechanics and Modeling #Simple (philosophy) #Strain hardening exponent #Structural engineering
- Revealing the strain-hardening behavior of twinning-induced plasticity steels: Theory, simulations, experiments
2012/11/01 by David Steinmetz, David R. Steinmetz, Tom Jäpel +9 · 1 citation
Engineering · Materials Science · #Composite material #Constitutive equation #Crystal twinning #Dislocation #Dissipative system #Finite element method #Hardening (computing) #High Temperature Alloys and Creep #Materials science #Metallurgy #Microstructure #Microstructure and Mechanical Properties of Steels #Microstructure and mechanical properties #Physics #Plasticity #Strain hardening exponent #Strain rate #Thermodynamics #Twip #Volume fraction
- Small‐strain heterogeneous elastoplasticity revisited
2012/04/13 by Gilles A. Francfort, Alessandro Giacomini · 5 citations
Computer Science · Engineering · Mathematics · #Classical mechanics #Composite material #Constitutive equation #Contact Mechanics and Variational Inequalities #Dissipation #Elasticity (physics) #Elasticity and Material Modeling #Finite element method #Hardening (computing) #Isotropy #Lipschitz continuity #Materials science #Mathematical analysis #Mathematics #Metal Forming Simulation Techniques #Physics #Plasticity #Pointwise #Strain hardening exponent #Thermodynamics #Yield surface
- Stability analysis of a rotor-AMB system with time varying stiffness
2012/02/28 by H.S. Bauomy, H. S. Bauomy · 1 citation
Chemistry · Engineering · #Chemistry #Composite material #Computer science #Control theory (sociology) #Excitation #Hardening (computing) #Helicopter rotor #Jump #Magnetic Bearings and Levitation Dynamics #Magnetic bearing #Materials science #Mechanics #Multiple-scale analysis #Nonlinear system #Physics #Resonance (particle physics) #Rotor (electric) #Softening #Stability (learning theory) #Steady state (chemistry) #Stiffness #Thermodynamics #Tribology and Lubrication Engineering #Vibration Control and Rheological Fluids
- Material constraint parameters for the assessment of shallow defects in structural components—Part I: Parameter solutions
2005/06/10 by A.H. Sherry, M.A. Wilkes, M. A. Wilkes +4 · 3 citations
Engineering · Materials Science · Mathematics · #Cleavage (geology) #Composite material #Constraint (computer-aided design) #Context (archaeology) #Cruciform #Engineering #Fatigue and fracture mechanics #Fracture (geology) #Fracture toughness #Geology #Geometry #Hardening (computing) #High Temperature Alloys and Creep #Material Properties and Failure Mechanisms #Materials science #Mathematics #Series (stratigraphy) #Structural engineering #Toughness #Yield (engineering)
- On the origin of strain hardening in glassy polymers
2003/03/25 by H.G.H. van Melick, Leon E. Govaert, L.E. Govaert +1 · 1 citation
Chemical Engineering · Chemistry · Materials Science · #Amorphous solid #Chemistry #Composite material #Crystallography #Dynamic mechanical analysis #Glass transition #Hardening (computing) #Materials science #Modulus #Natural rubber #Polymer #Polymer Nanocomposites and Properties #Polymer crystallization and properties #Polystyrene #Rheology and Fluid Dynamics Studies #Strain hardening exponent
- Magnetic hardening studies in sintered Sm(Co,Cux,Fe,Zr)z 2:17 high temperature magnets
2000/05/01 by Yong Zhang, Michelle Corte-Real, George C. Hadjipanayis +5 · 2 citations
Materials Science · Physics and Astronomy · #Coercivity #Composite material #Condensed matter physics #Grain boundary #Hardening (computing) #Hydrogen Storage and Materials #Lamella (surface anatomy) #Lamellar structure #Magnet #Magnetic Properties of Alloys #Magnetic properties of thin films #Materials science #Metallurgy #Microstructure #Nanotechnology #Nuclear magnetic resonance #Physics #Transmission electron microscopy
- Three-dimensional analyses of plastic constraint for through-thickness cracked bodies
1999/03/01 by W. Guo, Wanlin Guo · 1 citation
Engineering · Mathematics · #Composite material #Constraint (computer-aided design) #Engineering #Engineering Structural Analysis Methods #Fatigue and fracture mechanics #Finite element method #Fracture mechanics #Geometry #Hardening (computing) #High Temperature Alloys and Creep #Materials science #Mathematics #Mechanics #Physics #Plane (geometry) #Plane stress #Plasticity #Strain hardening exponent #Stress (linguistics) #Stress intensity factor #Structural engineering
- Scaling approach to conical indentation in elastic-plastic solids with work hardening
1998/08/01 by Yang‐Tse Cheng, Che-Min Cheng · 1 citation
Engineering · Physics and Astronomy · Mathematics · #Metal and Thin Film Mechanics #Force Microscopy Techniques and Applications #Adhesion, Friction, and Surface Interactions #Indentation #Conical surface #Scaling #Materials science #Finite element method #Hardening (computing) #Nanoindentation #Work hardening #Work (physics) #Composite material #Indentation hardness #Mechanics #Structural engineering #Geometry #Mechanical engineering #Physics #Mathematics #Engineering #Microstructure
- Effects of hydroxypropyl methylcellulose and other gelling agents on the handling properties of calcium phosphate cement
1997/06/05 by A. Cherng, S. Takagi, L. C. Chow +1 · 18 citations
Chemistry · Engineering · Materials Science · #Anhydrous #Aqueous solution #Bone Tissue Engineering Materials #Carboxymethyl cellulose #Cellulose #Cellulose acetate #Cement #Chemical engineering #Chemistry #Chitosan #Composite material #Compressive strength #Graphene and Nanomaterials Applications #Hardening (computing) #Materials science #Metallurgy #Methyl cellulose #Nuclear chemistry #Organic chemistry #Ultimate tensile strength #biodegradable polymer synthesis and properties
- Conditions for Pseudo Strain-Hardening in Fiber Reinforced Brittle Matrix Composites
1992/08/01 by Victor C. Li, Hwai-Chung Wu, Hwai‐Chung Wu · 11 citations
Engineering · Materials Science · #Advanced ceramic materials synthesis #Brittleness #Composite material #Composite number #Fiber-reinforced composite #Fracture toughness #Hardening (computing) #Innovative concrete reinforcement materials #Materials science #Mechanical Behavior of Composites #Strain hardening exponent #Toughness
- The effect of grain size on the yield strength of the γ′-hardened superalloy NIMONIC PE16
1989/05/01 by W Mangen, W. Mangen, E. Nembach +1 · 3 citations
Engineering · Materials Science · #Carbide #Composite material #Critical resolved shear stress #Grain boundary #Grain size #Hardening (computing) #High Temperature Alloys and Creep #Materials science #Metal and Thin Film Mechanics #Metallurgy #Microstructure #Microstructure and mechanical properties #Nimonic #Superalloy #Work hardening
- A constitutive description of the deformation of copper based on the use of the mechanical threshold stress as an internal state variable
1988/01/01 by P.S. Follansbee, U.F. Kocks · 31 citations
Engineering · Materials Science · #Composite material #Deformation (meteorology) #Dislocation #Flow stress #Hardening (computing) #High-Velocity Impact and Material Behavior #Materials science #Metallurgy and Material Forming #Microstructure and mechanical properties #Physics #Strain (injury) #Strain hardening exponent #Strain rate #Stress (linguistics) #Thermodynamics
- A three-dimensional model for ductile fracture by the growth and coalescence of microvoids
1985/06/01 by P.F. Thomason, P. F. Thomason · 3 citations
Engineering · Materials Science · #Coalescence (physics) #Composite material #Hardening (computing) #Humanities #Materials science #Metal Forming Simulation Techniques #Metallurgy and Material Forming #Microstructure and mechanical properties #Physics #Void (composites)
- The transformation hardening of steel surfaces by laser beams—I. Hypo-eutectoid steels
1984/11/01 by M.F. Ashby, Michael F. Ashby, K. E. Easterling +1 · 9 citations
Engineering · #Additive Manufacturing Materials and Processes #Alloy #Austenite #Composite material #Eutectic system #Hardening (computing) #High Entropy Alloys Studies #Laser #Laser Material Processing Techniques #Materials science #Metallurgy #Microstructure #Optics
- Pr-Fe and Nd-Fe-based materials: A new class of high-performance permanent magnets (invited)
1984/03/15 by J. J. Croat, J. F. Herbst, R. W. Lee +1 · 22 citations
Chemistry · Materials Science · Physics and Astronomy · #Alloy #Chemistry #Coercivity #Composite material #Condensed matter physics #Crystal structure #Crystallite #Crystallography #Hardening (computing) #Hydrogen Storage and Materials #Intermetallic #Isotropy #Magnet #Magnetic Properties of Alloys #Materials science #Metallurgy #Nuclear magnetic resonance #Optics #Phase (matter) #Rare-earth and actinide compounds #Tetragonal crystal system
- A unified phenomenological description of work hardening and creep based on one-parameter models
1984/01/01 by Y. Estrin, Yuri Estrin, H. Mecking · 26 citations
Engineering · Materials Science · #Composite material #Condensed matter physics #Creep #Deformation (meteorology) #Hardening (computing) #High Temperature Alloys and Creep #Materials science #Mechanics #Metallurgy and Material Forming #Microstructure #Microstructure and mechanical properties #Phenomenological model #Physics #Softening #Strain hardening exponent #Strain rate #Thermodynamics #Work (physics) #Work hardening
- Crystal Plasticity
1983/12/01 by R. J. Asaro, R.J. Asaro · 13 citations
Engineering · Materials Science · #Anisotropy #Composite material #Composite number #Constitutive equation #Crystal plasticity #Finite element method #Hardening (computing) #High-Velocity Impact and Material Behavior #Materials science #Mechanics #Metal Forming Simulation Techniques #Micromechanics #Microstructure and mechanical properties #Optics #Physics #Plasticity #Slip (aerodynamics) #Statistical physics #Strain hardening exponent #Strain rate #Thermodynamics
- Material rate dependence and localized deformation in crystalline solids
1983/12/01 by D. Peirce, R.J. Asaro, A. Needleman · 35 citations
Chemistry · Materials Science · Mathematics · Physics and Astronomy · #Chemistry #Composite material #Condensed matter physics #Critical resolved shear stress #Crystal (programming language) #Crystal structure #Crystallography #Force Microscopy Techniques and Applications #Geometry #Hardening (computing) #High-Velocity Impact and Material Behavior #Lattice (music) #Materials science #Mathematics #Mechanics #Microstructure and mechanical properties #Physics #Planar #Shear (geology) #Shear rate #Slip (aerodynamics) #Slip line field #Strain rate #Thermodynamics #Ultimate tensile strength
- Low-Temperature Tolerance and Cold Hardening of Cacti
1982/12/01 by Park S. Nobel · 4 citations
Agricultural and Biological Sciences · #Biocrusts and Microbial Ecology #Biology #Botanical Research and Applications #Botany #Botany, Ecology, and Taxonomy Studies #Cold hardening #Cold tolerance #Ecology #Freezing tolerance #Hardening (computing) #Materials science #Nanotechnology
- An analysis of nonuniform and localized deformation in ductile single crystals
1982/06/01 by D. Peirce, R.J. Asaro, A. Needleman · 35 citations
Engineering · Materials Science · #Composite material #Condensed matter physics #Crystal (programming language) #Crystallography #Geometry #Hardening (computing) #High-Velocity Impact and Material Behavior #Isotropy #Materials science #Mechanics #Metal Forming Simulation Techniques #Microstructure #Microstructure and mechanical properties #Misorientation #Necking #Optics #Physics #Shear (geology) #Shear band #Single crystal #Slip (aerodynamics) #Softening #Thermodynamics #Ultimate tensile strength
- Some new aspects concerning particle hardening mechanisms in γ' precipitating Ni-base alloys—I. Theoretical concept
1982/01/01 by Bernd Reppich · 4 citations
Engineering · Materials Science · #Advanced Materials Characterization Techniques #Alloy #Composite material #Hardening (computing) #High Temperature Alloys and Creep #Materials science #Metallurgy #Microstructure and mechanical properties #Nimonic #Physics #Superalloy #Thermodynamics
- Kinetics of flow and strain-hardening
1981/11/01 by H. Mecking, U.F. Kocks · 42 citations
Chemical Engineering · Materials Science · Physics and Astronomy · #Classical mechanics #Flow stress #Hardening (computing) #Kinetics #Materials science #Microstructure and mechanical properties #Nanotechnology #Physics #Rheology and Fluid Dynamics Studies #Strain hardening exponent #Strain rate #Theoretical and Computational Physics #Thermodynamics
- Solid solution strengthening of magnesium single crystals—I alloying behaviour in basal slip
1969/11/01 by A Akhtar, A. Akhtar, E. Teghtsoonian +1 · 5 citations
Chemistry · Engineering · Materials Science · #Aluminum Alloy Microstructure Properties #Aluminum Alloys Composites Properties #Analytical Chemistry (journal) #Chemistry #Chromatography #Composite material #Critical resolved shear stress #Crystallography #Hardening (computing) #Magnesium #Magnesium Alloys: Properties and Applications #Materials science #Metallurgy #Physics #Shear rate #Slip (aerodynamics) #Solid solution #Solid solution strengthening #Thermodynamics #Zinc
- The plasticity of pure single crystals
1964/04/01 by F.R.N. Nabarro, F. R. N. Nabarro, Z.S. Basinski +3 · 14 citations
Chemistry · Engineering · Materials Science · #Advanced materials and composites #Chemistry #Composite material #Crystallography #Cubic crystal system #Diamond #Hardening (computing) #Hexagonal crystal system #Ion #Ionic bonding #Ionic crystal #Materials science #Metallurgical and Alloy Processes #Metallurgy #Microstructure #Microstructure and mechanical properties #Physics #Sphalerite #Work hardening
- Substitutional solution hardening
1963/03/01 by R.L Fleischer, R. L. Fleischer · 20 citations
Chemistry · Engineering · Materials Science · Physics and Astronomy · #Advanced Materials Characterization Techniques #Chemistry #Composite material #Crystallization and Solubility Studies #Crystallography #Dislocation #Force Microscopy Techniques and Applications #Hardening (computing) #Internal friction #Materials science #Physics #Shear modulus #Thermodynamics
- Solution hardening by tetragonal dist ortions: Application to irradiation hardening in F.C.C. crystals
1962/09/01 by Robert L Fleischer, R. L. Fleischer · 6 citations
Chemistry · Engineering · Materials Science · #Chemistry #Composite material #Crystal structure #Crystallography #Fusion materials and technologies #Hardening (computing) #Irradiation #Materials science #Metallurgy #Microstructure and Mechanical Properties of Steels #Microstructure and mechanical properties #Nuclear chemistry #Nuclear physics #Physics #Tetragonal crystal system
- Sur le durcissement dû à la recombinaison des dislocations
1960/12/01 by G Saada, G. Saada · 3 citations
Chemistry · Engineering · Environmental Science · #Chemistry #Composite material #Crystallography #Dislocation #Fire effects on ecosystems #Forest Biomass Utilization and Management #Hardening (computing) #Materials science #Physics #Tree Root and Stability Studies