TALK KEYWORD INDEX
This page contains an index consisting of author-provided keywords.
| 3 | |
| 316L | |
| 316L SS | |
| 3D architected material | |
| 3D Crack front complexity | |
| 3D Fabric Composites | |
| 3D printing | |
| 3D Traction Force Microscopy | |
| 3D Woven | |
| 4 | |
| 4D printing | |
| A | |
| AA2219 | |
| Absolute size dependency | |
| ACOM TEM | |
| Acoustic Emission | |
| Actin-based motility | |
| Adaptative printing parameters | |
| Adaptive grids | |
| Adaptive neural fuzzy inference system | |
| Additive manufacturing | |
| Additive Manufacturing-AM | |
| Adhesion | |
| adhesive interactions | |
| advanced characterization techniques | |
| Advanced Gurson model | |
| Advanced Steels | |
| Aero-thermo-chemo-mechanical coupling | |
| Aerospace materials | |
| AFSD | |
| Ageing | |
| Agent-based model | |
| Agglomerate | |
| aggregates | |
| Aging | |
| Air entrapment | |
| Al-Mg | |
| Al3(ScZr) dispersoids | |
| Alignment | |
| alloys | |
| Alumina | |
| Aluminium | |
| aluminium alloy | |
| aluminium alloy sheet | |
| Aluminium alloys | |
| aluminum | |
| Aluminum alloy | |
| Aluminum Alloy 7075 | |
| Aluminum Injection Molds | |
| Amorphous olivine | |
| Amorphous polymers | |
| amorphous silica | |
| Amorphous Silicon | |
| amorphous/crystal interfaces | |
| Analytical model | |
| Analytical modelling | |
| analytical solutions | |
| aneurysm | |
| Angle of repose | |
| anisotropic elasticity | |
| Anisotropic hydrogel | |
| Anisotropic interaction domain | |
| Anisotropic material | |
| Anisotropy | |
| Anistropic Materials | |
| APL | |
| Arbitrary Lagrangian Eulerian | |
| arc-length control | |
| Arcan test | |
| Architected Cellular Materials | |
| Architected materials | |
| architected solids | |
| array programming | |
| arterial mechanics | |
| artificial intelligence | |
| Artificial Intelligence (AI) | |
| Artificial neural network | |
| Astrocytes | |
| asymptotic | |
| Atherosclerosis | |
| Atomic Force Microscopy | |
| atomistic fracture | |
| Atomistic modelling | |
| Atomistic simulations | |
| Atomistic-to-continuum simulations | |
| Austenitic stainless steels | |
| austenitic steels | |
| automated model discovery | |
| Auxetic materials | |
| Auxetic Sandwich Panel | |
| Auxetic structures | |
| auxeticity | |
| Avalanche | |
| Avascular tumour | |
| Axial-torsion tests | |
| B | |
| Bainite | |
| Bainitic steels | |
| Ballistic free energy | |
| Batteries | |
| Battery degradation | |
| Bayesian calibration | |
| Bayesian inference | |
| BCC | |
| Beam | |
| beam counter | |
| Beam-grid lattice | |
| bee | |
| behavior factor | |
| bendability | |
| bending experiment | |
| bending test | |
| Bending-active | |
| Bending-extension coupling | |
| Biaxial Tensile Testing | |
| Biaxial testing | |
| Bicrystal | |
| bidirectionally sinusoidal corrugation | |
| Bifurcation | |
| bifurcation analysis | |
| Bifurcation criterion | |
| Binder Jetting | |
| biocomposites | |
| Biodegradable materials | |
| Biodegradable Mg alloys | |
| Biodegradable polymers | |
| Bioengineering | |
| Bioinspired interfaces | |
| Biological Physics | |
| Biomechanics | |
| Biomimetic materials | |
| bionics | |
| Biophysics | |
| biopolymer aerogels | |
| Bistability | |
| Bistable structures | |
| Blade Impact | |
| Blades | |
| Blast Mitigation | |
| Bloch–Floquet analysis | |
| Bombyx mori | |
| bone regeneration | |
| Boron Nitride Nanosheets | |
| Boundary conditions | |
| Boundary effects | |
| Boundary layer | |
| Boundary layers | |
| Bragg Coherent X-ray Diffraction Imaging | |
| Brain | |
| brain compression | |
| Brain injury reconstruction | |
| Brain mechanics | |
| Brain phantom material | |
| Breakage model | |
| Brittle fracture | |
| Buckling | |
| Buckling of a confined elastic sheet | |
| Buckling Patterns | |
| buclkling | |
| Bueckner-Rice's theory | |
| building ductility | |
| Bulk metallic glasses | |
| Butadiene rubber blends | |
| Bypass grafts | |
| C | |
| CAI | |
| calcium | |
| CalPhaD | |
| cancer invasion | |
| cancer morphogenesis | |
| Cantor alloy | |
| Capillarity | |
| carbon fiber composites | |
| Carbon Fiber Reinforced Plastic | |
| Carbon fiber reinforced polymer composites (CFRP) Digital Image Correlation | |
| cartilage | |
| Cartilage defect repair | |
| Catalysis | |
| cathode active material | |
| cavities | |
| ceiling tiles | |
| Cell Mechanobiology | |
| Cell-Nanomaterial Interaction | |
| Cellular automaton | |
| Cellular core | |
| Cellular materials | |
| cellular media | |
| cellulose | |
| cervical remodeling | |
| cervix ECM | |
| CFRP | |
| Chemical degradation | |
| chemical order | |
| Chemo-mechanical | |
| Chemo-mechanical coupling | |
| chemo-mechanical modeling | |
| Chemo-mechanics | |
| Chemo-mechanics coupling | |
| Chemo-transport-mechanics | |
| chip formation | |
| Chondrogenesis | |
| closure domains | |
| clots | |
| clustering | |
| Co-consolidation of thermoplastics | |
| coalescence | |
| Coarse-graining | |
| Cohesion | |
| Cohesion force | |
| Cohesive crack | |
| Cohesive granular material | |
| Cohesive Law | |
| cohesive model | |
| Cohesive Phase Field | |
| Cohesive phase-field fracture model | |
| cohesive zone approach | |
| Cohesive zone modeling | |
| Cold Spray Additive Manufacturing | |
| cold welding | |
| Collagen | |
| compact tension measurements | |
| Compaction | |
| Complete Gurson Model | |
| complex systems | |
| Composite | |
| composite inclusion | |
| Composite material | |
| Composite materials | |
| Composites | |
| Compoutational mechanics | |
| compressed earth block | |
| Compressibility | |
| compression | |
| compression test | |
| compression tests | |
| Compressive failure | |
| Computational | |
| Computational fluid dynamics | |
| Computational Fluid Dynamics (CFD) | |
| Computational homogenisation | |
| computational homogenization | |
| computational mechanics | |
| computed tomography | |
| Computed Tomography (CT) scans | |
| Concrete | |
| Conductive polymeric composites | |
| Confocal microscopy | |
| conformal mapping | |
| connectivity | |
| Conservation laws | |
| Constitutive laws | |
| Constitutive Model | |
| constitutive modeling | |
| Constitutive modelling | |
| constitutive neural networks | |
| Constitutive relations | |
| Constraint | |
| contact area | |
| Contact dynamics | |
| Contact dynamics method | |
| Contact Mechanics | |
| contact orientation anisotropy | |
| contact resistance measurement | |
| Continual or lifelong learning | |
| Continualization | |
| Continuum consistency | |
| Continuum damage modelling | |
| Continuum Dislocation Density Fields | |
| Continuum mechanics | |
| Continuum Thermodynamics | |
| Contour scanning | |
| Convection-reaction-diffusion equations | |
| convergence enhancement | |
| Copolymer | |
| cornea epithelium modeling | |
| Correlation analyses | |
| Corrosion fatigue | |
| Cost control | |
| coupled criterion | |
| Coupled Solver | |
| coupled thermo-electro-mechanical loading | |
| coupling | |
| CPFEM | |
| Crack | |
| crack density | |
| Crack Growth | |
| Crack growth rates | |
| crack initiation | |
| Crack length control | |
| crack propagation | |
| crack roughness | |
| crack sizing | |
| Cracking | |
| cracking behaviour | |
| cracks | |
| Crashworthiness | |
| creep | |
| Creep mechanism transition | |
| critical state | |
| critical stretch | |
| Cruciform Specimen | |
| Cryogenic temperature | |
| Cryogenic temperatures | |
| crystal | |
| Crystal defects | |
| crystal plasticity | |
| Crystal Plasticity Finite Element Method | |
| Crystal Plasticity Finite Element Simulation | |
| Crystal plasticity modelling | |
| Crystal plasticity theory | |
| CT scan- Computed Tomography scan | |
| Cubic symmetry | |
| curvature | |
| Cyclic plasticity | |
| Cyclic softening | |
| Cyclic strain avoidance | |
| Cytocompatibility | |
| D | |
| Damage | |
| damage mechanisms | |
| damage modeling | |
| Damages | |
| Damask Simulation | |
| data based modelling | |
| Data driven | |
| data driven mechanics | |
| data-adaptive modeling | |
| Data-driven | |
| data-driven approach | |
| data-driven computational mechanics | |
| Data-Driven Identification (DDI) | |
| data-driven inelasticity | |
| Data-driven mechanics | |
| Data-driven methods | |
| data-driven modeling | |
| Data-Driven Modelling | |
| decomposition | |
| Deep learning | |
| Deep material network | |
| Deep Neural Operator | |
| Deep symbolic regression | |
| Defect chemistry | |
| Defect tolerance | |
| defects | |
| Deflected and Branched crack | |
| deformable particles | |
| Deformation induced martensite | |
| Deformation mechanism | |
| Deformation mechanisms | |
| Deformation Twinning | |
| degree of cure | |
| Delamination | |
| delamination area ratio | |
| Delaunay triangulation | |
| DEM | |
| Deployable | |
| Deployable structures | |
| Design | |
| DFT | |
| DFTB | |
| diabetes management | |
| Diametral compression | |
| Diametral compression test | |
| Diamond cubic | |
| DIC | |
| diffraction contrast tomography | |
| Diffusion | |
| Diffusive time scales | |
| digital image correlation | |
| Digital Image Correlation (DIC) | |
| Digital Image processing | |
| digital twin | |
| Digital Volume Correlation | |
| dimple | |
| Direct Energy Deposition | |
| Direct Energy Deposition (DED) | |
| Direct Ink Writing | |
| direct metal deposition | |
| Direct-Ink writing | |
| Directed Energy Deposition | |
| disclination | |
| Discontinuous Galerkin Method | |
| Discontinuous reinforcement | |
| Discrete Dislocation Dynamics | |
| discrete dislocation plasticity | |
| Discrete Element Method | |
| Discrete Element Methods | |
| Discrete particle method | |
| discrete structures | |
| dislocation density | |
| Dislocation Dynamics | |
| Dislocation loop | |
| dislocation loops | |
| dislocations | |
| dispersion | |
| Dispersive behaviour | |
| Dissimilar delamination interfaces | |
| Dissipation | |
| Dissipation Potential | |
| Dissipative effects | |
| dissipative properties | |
| distinct shear responses | |
| domain switching | |
| domain walls | |
| Dome shells | |
| drop-stitch | |
| drug delivery | |
| dry forming | |
| dual-beam | |
| dual-phase steel | |
| Ductile damage | |
| Ductile failure | |
| Ductile fracture | |
| ductile tearing | |
| Ductile-to-Brittle transition | |
| Ductility limits | |
| Duplex stainless steel | |
| dynamic analysis | |
| Dynamic Behaviour | |
| Dynamic fracture | |
| Dynamic Mechanical Analysis (DMA) | |
| dynamic phase-field fracture | |
| Dynamic properties | |
| Dynamic testing | |
| dynamics | |
| E | |
| EBSD | |
| effective material law | |
| Effective Medium Theory | |
| Effective Properties | |
| eigenvalue problem | |
| Eindhoven Glassy Polymer | |
| EIS | |
| elastic | |
| Elastic Instability | |
| Elastic Moduli | |
| Elastic properties | |
| Elastic strain engineering | |
| Elastic structures | |
| elastic waves | |
| Elastica | |
| elasticity | |
| Elasticity Bounds | |
| Elasto-granular coupling | |
| elasto-plasticity | |
| elasto-viscoplastic modelling | |
| Elastocapillarity | |
| elastohydrodynamics | |
| Elastomer | |
| elastomer-based composites | |
| Elastomers | |
| elastoplasticity | |
| electrocatalytic activity | |
| electrochemical charging | |
| Electrodes | |
| electromechanical couplings | |
| electron backscatter diffraction | |
| Electron backscattered diffraction (EBSD) | |
| electron beam irradiation | |
| electron energy-loss spectroscopy | |
| Electron irradiation | |
| Electrospinning | |
| Elevated Temperature | |
| Embossed punch surface | |
| emerging properties | |
| Endothelium | |
| Energetic effects | |
| Energy absorbing floors | |
| Energy absorption | |
| Energy balance | |
| energy dissipation | |
| energy harvesting | |
| Energy Loss | |
| energy minimization | |
| Energy realse rate | |
| energy sector | |
| engineering polymer | |
| Engineering polymers | |
| Enhanced continuum model | |
| Environment degradation | |
| epithelium layer | |
| Equivalent Single Layer (ESL) plate theory | |
| equivariant | |
| Essential work of fracture | |
| Etching | |
| Euler elastica | |
| Eulerian formulation | |
| Evaporation/condensation | |
| Experimental | |
| experimental characterization | |
| experimental data | |
| Experimental study | |
| Experimental Testing | |
| Experimental tests | |
| experiments | |
| Extension | |
| Extreme deformation | |
| Extreme value statistics | |
| Eyring equation | |
| F | |
| face turning | |
| Failure of quasi-brittle materials | |
| Fast Fourier Transform | |
| Fatigue | |
| Fatigue crack growth | |
| Fatigue crack initiation | |
| Fatigue crack propagation | |
| fatigue criteria | |
| Fatigue fracture | |
| Fatigue Indicator Parameter | |
| fatigue life | |
| Fatigue resistance | |
| FDM | |
| FE analysis | |
| FE model | |
| FE simulations | |
| FE2 | |
| FEM | |
| FEM analysis | |
| FEM modeling | |
| Femoral neck force | |
| ferrite | |
| Ferrite-Pearlite | |
| ferroelectrics | |
| fetal head moudling | |
| FE² | |
| FFT based method | |
| FFT homogenization | |
| FFT solver | |
| FFT-based methods | |
| FFT-based numerical method | |
| FFT-homogeneization | |
| Fiber breakage | |
| fiber bundle | |
| Fiber Network Model | |
| Fiber reinforced concrete | |
| Fiber-reinforced polymer composites | |
| fibre network materials | |
| Fibre-Reinforced Composites | |
| Fibrous extracellular matrix | |
| Fibrous Networks | |
| Field Dislocation Mechanics | |
| Film/substrate system | |
| finite cell method | |
| Finite deformation | |
| Finite deformations | |
| finite element | |
| Finite element analysis | |
| finite element method | |
| Finite Element Method (FEM) | |
| finite element model updating | |
| finite element modeling | |
| Finite element modelisation | |
| Finite Element Modelling | |
| Finite element simulation | |
| Finite element simulations | |
| Finite elements | |
| Finite elements analysis | |
| Finite Elements Method | |
| Finite fracture mechanics | |
| Finite strains | |
| Finite torsion | |
| Finite visco-elasticity | |
| Finite-element method | |
| first-order discontinuous Galerkin method | |
| Flax/epoxy | |
| Flexible granular chains | |
| Flexoelectricity | |
| Flexural resonances | |
| Fluid structure interaction(FSI) | |
| fluid-solid interaction | |
| fluid-structure interaction | |
| Fluid-Structure Interaction (FSI) | |
| Fluid-structure interaction models | |
| Fluid/solid interactions | |
| foams | |
| focused ion beam milling | |
| food | |
| Food drying | |
| Force sensors | |
| forensic science | |
| Forming Limit Curve | |
| four-point bending | |
| fractal aggregate modelling | |
| fractional calculus | |
| Fractional viscoelasticity | |
| fracture | |
| Fracture initiation sites | |
| fracture mechanics | |
| Fracture process zone | |
| fracture resistance | |
| Fracture toughness | |
| Fractures | |
| frame stiffness | |
| free vibrations | |
| freestanding films | |
| frequency-dependent models | |
| Fretting | |
| Fretting-Fatigue | |
| friction | |
| Friction law | |
| Friction-stir | |
| Full-field homogenisation | |
| Full-fields simulations | |
| Fully-uncoupled Multidirectional specimens | |
| functionally graded materials | |
| Fuselage | |
| fusion materials | |
| Fuzzy inference system | |
| fuzzy inference systems | |
| Fuzzy logic | |
| G | |
| game theory | |
| Gaussian Process | |
| Gear-based metamaterial | |
| Generalized beam | |
| Generalized continua | |
| generalized elasticity | |
| Generalized Maxwell Model | |
| Generalized periodicity | |
| generalized structure tensor | |
| GENERIC | |
| Gent Model | |
| geo-sourced construction material | |
| geometric nonlinearity | |
| geometry | |
| Ghost fishing | |
| Glass fibers | |
| Glass syntactic polypropylene | |
| Glassy polymers | |
| Godunov-type finite volume method | |
| GPU | |
| Gradient damage model | |
| Gradient Plasticity | |
| gradient theory | |
| Gradient-enhanced crystal plasticity | |
| Grain average misorientation (GAM) | |
| Grain boundaries | |
| grain boundary | |
| grain boundary diffusion | |
| Grain boundary energy | |
| Grain boundary migration | |
| grain boundary sliding | |
| Grain size gradient | |
| Grain-size effects | |
| Granular | |
| Granular flow | |
| Granular materials | |
| Granular matter | |
| granular media | |
| Granular Micromechanics Approach | |
| granular packing | |
| granular plasticity | |
| Graph based representation | |
| Graph Neural Network | |
| Graphene | |
| Graphene-based architectures | |
| Green-Naghdi | |
| Growth inhibition | |
| Growth model | |
| H | |
| Halite | |
| Hall-Petch | |
| Hamiltonian integration | |
| hard coatings | |
| Hard-magnetic | |
| hardening | |
| hardening material | |
| hardening mechanisms | |
| HAZ | |
| HCF | |
| HEA | |
| Heap of grains | |
| Heat treatment | |
| Heat treatments | |
| Heat-treatments | |
| Helmets | |
| heterogeneities | |
| heterogeneous materials | |
| Heterogeneous Microstructures | |
| Heterogeneous problem | |
| heterogeneous solids | |
| Hexapod | |
| Hierarchical Laminates | |
| hierarchical microstructure | |
| Hierarchy | |
| High energy physics applications | |
| High entropy alloy | |
| High entropy alloys | |
| High Pressure Die Casting–HPDC | |
| High temperature | |
| high temperature nanoindentation | |
| high-order PDE | |
| High-resolution deformation fields | |
| High-Strain rate | |
| High-Strength Aluminum Alloys | |
| Higher-order asymptotic homogenization | |
| Higher-order beam theory | |
| Higher-order boundary conditions | |
| Higher-order kinematic decomposition | |
| Higher-order kinematic hardening | |
| Higher-order stress decomposition | |
| Hip fracture | |
| history surrogate | |
| hollow nanostructures | |
| hollow particles | |
| Homgenization | |
| Homogeneization | |
| homogenisation | |
| Homogenization | |
| Homogenization methods | |
| Homogenization variational procedure | |
| HOSDB- Home Office Scientific Development Branch | |
| Hot embossing method | |
| hybrid implicit/explicit solver | |
| Hybrid manufacturing | |
| Hydrocephalus | |
| hydrofracture | |
| hydrogel | |
| Hydrogel fibers | |
| Hydrogels | |
| Hydrogen | |
| Hydrogen economy | |
| hydrogen embrittlement | |
| Hydrogen Embrittlement (HE) | |
| Hydrogen enhanced decohesion (HEDE) | |
| Hydrogen enhanced localized plasticity (HELP) | |
| hydrogen-assisted fracture | |
| Hydrogen-enhanced decohesion (HEDE) | |
| Hydrolysis | |
| hyper-reduction | |
| Hyperbolic dispersion | |
| Hyperelastic material modeling | |
| Hyperelasticity | |
| hyperintegration | |
| Hyperviscoelasticity | |
| I | |
| IASCC | |
| iceberg calving | |
| Image analysis | |
| Image correlation | |
| image recognition | |
| Image-based 3D reconstruction | |
| imaging | |
| Immiscible blends | |
| Impact behaviour | |
| Impact tests | |
| imperfect interfaces | |
| in situ | |
| in situ 3D imaging | |
| In situ alloying | |
| In situ fracture testing | |
| in situ TEM nanomechanics | |
| in situ tensile test | |
| In situ tests | |
| In situ X-ray microtomography testing | |
| In situ X-ray tomography | |
| in vivo | |
| in-depth stroma stiffening | |
| in-situ | |
| In-situ EBSD/HRDIC | |
| in-situ investigations | |
| in-situ TEM nanomechanical testing | |
| In-situ temperature monitoring | |
| In-situ tests | |
| in-situ X-ray tomography | |
| in-vivo brain responses | |
| inclusions | |
| incompatibility | |
| incompatible | |
| incompatibles bubbles | |
| Incompressibility | |
| Inconel | |
| Inconel 718 alloy | |
| Inconel 939 | |
| Incremental Hole Drilling Method | |
| Incremental variational approach | |
| Indentation | |
| induction heating | |
| inelasticity | |
| Infinite body | |
| inflatable panel | |
| Inflatables | |
| Infrared thermography | |
| Inhomogeneous Deformation | |
| Injury prevention | |
| instabilities | |
| Instability | |
| Instability analysis | |
| insulin absorption | |
| integrated design | |
| Integrated method | |
| Inter-/trans-(intra-) granular fracture | |
| Inter-model dialogue | |
| interface | |
| interface damage | |
| Interfacial fracture | |
| Interlaminar fracture toughness | |
| Interlaminar shear | |
| interleaved | |
| Intermittent plasticity | |
| Internal pressure resistance | |
| Internal State Variable Model | |
| interphase properties | |
| interstitial strengthening | |
| Intrinsic heat treatment | |
| Intrinsic strength | |
| inverse design | |
| Inverse finite element method | |
| Inverse method | |
| inverse model | |
| Inverse problem | |
| inverse problems | |
| Investment casting | |
| irradiated materials | |
| irradiation | |
| Irradiation Damage | |
| irreversibility strategy | |
| irreversible response | |
| Isoenergetic | |
| isotactic polypropylene | |
| Isotropy | |
| ISRO Alloying | |
| J | |
| J-integral | |
| Jamming | |
| Janssen effect | |
| Jerky flow | |
| K | |
| K-controlled simulations | |
| k-means | |
| K-Neighbors Classifier | |
| Kagome | |
| keyhole | |
| Kirchhoff model | |
| Kirchhoff rods | |
| Kirigami | |
| Kuamet | |
| L | |
| L-PBF | |
| lamellar microstructure | |
| Laminate | |
| laminates | |
| LAMMPS | |
| large deformation | |
| large deformations | |
| Large strains | |
| Large-scale analyses | |
| laser | |
| Laser bed Powder Fusion | |
| Laser cleaning | |
| Laser Heat Treatment | |
| Laser Metal Deposition | |
| Laser powder bed fusion | |
| Laser Powder Bed Fusion (L-PBF) | |
| Laser powder bed fusion (LPBF) | |
| Laser power bed fusion | |
| laser scanning | |
| laser-ultrasound | |
| Lattice | |
| Lattice core | |
| lattice material | |
| Lattice materials | |
| lattice meta materials | |
| Lattice misfits | |
| lattice strain | |
| Lattice structure | |
| lattice structures | |
| Lattice topology | |
| Lattices | |
| layer confinment | |
| Leaf layers | |
| Leidenfrost effect | |
| Length scale insensitivity | |
| Lengthscale | |
| Li-ion batteries | |
| lifetime predictions | |
| Line Search | |
| Linear elastic fracture mechanics | |
| linear elasticity | |
| linear programming | |
| linearization | |
| Lipid peroxidation | |
| lipid vesicle | |
| lipodystrophies | |
| Liquid crystal elastomers(LCEs) | |
| Liquid crystals | |
| liquid metal embrittlement | |
| Lithium-ion batteries | |
| Loading rate | |
| local temperature increase | |
| Localization | |
| Localization of deformation | |
| Localization relations | |
| Localized gradient damage model | |
| Logarithmic strain | |
| long-range mass transport | |
| Low adhesion | |
| Low and medium strength aluminium alloys | |
| Low cycle fatigue (LCF) | |
| Low temperature fatigue | |
| Low temperature properties | |
| Low velocity impact | |
| Low-carbon steel | |
| low-density polyethylene | |
| Low-frequency resonant cellular arrays | |
| Low-rank approximations | |
| Low-velocity impact | |
| LPBF | |
| lubrication | |
| lubrication layer theory | |
| Ludwik hardening model | |
| M | |
| Machine Learning | |
| machine learning interatomic potentials | |
| Machine learning Modeling | |
| Machining | |
| Macroscale Model | |
| Magnesium | |
| Magnetic resonance elastography | |
| Magneto-active | |
| magneto-active elastomers | |
| magneto-mechanical characterization | |
| Magneto-Mechanics | |
| Magnetoactive elastomers | |
| magnetomechanics | |
| Magnetorheological elastomer | |
| Magnetorheological elastomers | |
| Magnetorheological foams | |
| Magnetorheological materias | |
| Magnetron sputtering | |
| many-body dispersion | |
| Markov chain Monte Carlo | |
| martensite | |
| Martensite pattern formation | |
| Martensitic steel | |
| martensitic transformation | |
| mass distribution | |
| matched invariant | |
| Material heterogeneity | |
| Material point method | |
| Material Stiffening | |
| materials design | |
| Mathematical modelling | |
| Matrix cracking | |
| Maxwell model | |
| MD simulation | |
| Mean-Field Methods | |
| Mean-field model | |
| Mean-fields models | |
| mechanical and thermal properties | |
| mechanical behavior | |
| Mechanical behaviour | |
| Mechanical Characterization | |
| Mechanical damage | |
| Mechanical instabilities | |
| mechanical metamaterial | |
| Mechanical metamaterials | |
| Mechanical properties | |
| Mechanical property | |
| Mechanical Recycling | |
| Mechanical testing | |
| mechanical tests | |
| Mechanically-fastened joints | |
| Mechanics | |
| Mechano-diffusion | |
| mechanobiology | |
| Melt Pool | |
| membrane | |
| Membrane Deformation | |
| membrane mechanics | |
| Membrane Model | |
| memory | |
| memory effects | |
| mesoscale | |
| mesoscale modelling | |
| mesoscopic theory | |
| Mesostructural effects | |
| Mesostructure | |
| Meta-materials | |
| metaheuristic optimization | |
| Metal Additive Manufacturing | |
| Metal alloys | |
| Metal forming | |
| metal plasticity | |
| Metal-Ceramic Composites | |
| Metallic cellular materials | |
| Metallurgical characterization | |
| Metallurgy | |
| metals | |
| Metals and alloys | |
| metamaterial | |
| Metamaterials | |
| Mg corrosion | |
| Mg-Zn | |
| Micro scale deformation | |
| micro- nanomechanical tests | |
| Micro-indentation | |
| micro-instability | |
| Micro-mechanical behavior | |
| micro-mechanics | |
| micro-pillars | |
| Micro-vascular networks | |
| Microcantilever bending | |
| Microcompression | |
| Microcracking | |
| microfabrication | |
| Microllatices | |
| micromechanical modeling | |
| micromechanics | |
| micromorphic models | |
| Microparticles | |
| Micropillar compression | |
| Micropillar compression test | |
| Micropolar theory | |
| microscopy | |
| Microshear test | |
| Microstructural characterisation | |
| microstructural characterization | |
| Microstructural defects | |
| microstructural evolution | |
| Microstructure | |
| Microstructure Characterization | |
| Microstructure Development | |
| Microstructure gradient | |
| Microstructure sensitivity | |
| Microtesting methods | |
| Miniaturised mechanical testing | |
| Minimal surfaces | |
| misorientations | |
| Mixed architecture | |
| Mixed Mode | |
| mixed-mode fracture | |
| model order reduction | |
| model validation | |
| model-free | |
| modeling | |
| modelling | |
| modified generalized structure tensor | |
| Moisture-Mechanics coupling | |
| molecular dynamics | |
| Molecular dynamics simulations | |
| monolithic solution | |
| Morphing structures | |
| morphing surfaces | |
| morphological features | |
| Morphological fluctuations | |
| Mullins effect | |
| Multi-Layer Friction Surfacing | |
| multi-nanolayer films | |
| multi-nanolayered coating | |
| Multi-physics | |
| Multi-scale | |
| Multi-scale analysis | |
| multi-scale approach | |
| multi-scale model | |
| multi-scale modeling | |
| multi-scale modelling | |
| Multiaxiality | |
| Multicomponent flow in soft tissue | |
| Multifractal analysis | |
| Multiperiodic responses | |
| Multiphase field theory | |
| Multiphysics | |
| Multiphysics modeling | |
| Multiphysics models | |
| multiply twinned particles | |
| Multiscale | |
| multiscale analysis | |
| Multiscale approach | |
| Multiscale characterization | |
| multiscale mechanics | |
| multiscale mechanics of materials | |
| multiscale modeling | |
| Multiscale modelling | |
| multiscale simulation | |
| Multiscale study | |
| Multistable shells | |
| N | |
| nano DIC | |
| Nano-indentation | |
| Nanobiotechnology | |
| Nanocapsules | |
| Nanoindentation | |
| nanolaminate systems | |
| nanolaminates | |
| Nanomechanics | |
| Nanoparticles | |
| Nanoporous aluminum | |
| Nanoscale network | |
| Nanowire | |
| Natural fibre composites | |
| Natural frequencies | |
| nectar capture | |
| Negative Poisson's Ratio Architectute | |
| Negative refraction | |
| negative thermal expansion coefficient | |
| Network dynamics | |
| network materials | |
| Neural Network | |
| Neural network interatomic potential | |
| Neural network potential | |
| Neural Networks | |
| Neural Operator | |
| Neural Operators | |
| New titanium alloys | |
| Newton's method | |
| Ni superalloy | |
| Ni-based superalloy | |
| nickel superalloys | |
| nickel-base-superalloy | |
| Nickle Superalloy | |
| nitridation-induced creep hardening | |
| Non linear composites | |
| non-cooperative games | |
| Non-destructive Testing | |
| non-linear finite element method | |
| Non-linear Viscoelastic | |
| Non-local approach | |
| Non-positive strain-gradient stiffness | |
| Non-Schmid | |
| Non-standard specimen | |
| non-uniform sintering | |
| nonlinear anisotropic material models | |
| nonlinear composites | |
| Nonlinear Elasticity | |
| Nonlinear viscoelasticity | |
| nonlocal | |
| nonlocal continnum mechanics | |
| nonlocal stress-driven model | |
| normalized enthalpy | |
| Nuclear fuel | |
| Nuclear fusion | |
| nuclear materials | |
| Nuclear Mechanics | |
| Nucleation | |
| Numerical analysis | |
| Numerical and analytical models | |
| Numerical fracture mechanics | |
| numerical methods | |
| Numerical modeling | |
| Numerical Oscillations | |
| Numerical simulation | |
| numerical simulations | |
| Numerical workflow | |
| Nvidia | |
| O | |
| OCP | |
| olivine | |
| on-chip testing | |
| open cell polymeric foams | |
| Open Hole | |
| open porous foam | |
| Open-hole strength | |
| Open-porous cellular solids | |
| Operando | |
| Operando X-ray diffraction | |
| Optimisation | |
| optimization | |
| Ordered precipitates | |
| orthogonal cutting | |
| orthogonal-cutting | |
| orthotropic elastic moduli | |
| Osmotic Mass Transfer | |
| osteoporosis | |
| Out-of-plane displacements | |
| Out-of-plane perturbation | |
| oxide | |
| oxygen embrittlemen | |
| P | |
| PA12 | |
| Packaging | |
| Packing | |
| paper | |
| Parallel | |
| parameter identification | |
| Parameterized microstructures | |
| Parameters fitting | |
| Paris law | |
| Particle dynamics simulations | |
| Particle shape | |
| Particulate composite | |
| Pattern | |
| PBSAT | |
| PEEK | |
| Peptide Hydrogels | |
| Peptides | |
| Percolation | |
| Peridynamics | |
| Personalised Scaffolds | |
| perturbation theory | |
| PET coating | |
| Phase change | |
| Phase field | |
| Phase Field (PF) | |
| Phase field crystal | |
| phase field fracture | |
| Phase field method | |
| Phase field variational approach | |
| phase transformation | |
| phase-field | |
| Phase-field crystal | |
| Phase-field for fracture | |
| phase-field fracture | |
| phase-field fracture model | |
| phase-field fracture theory | |
| Phase-field method | |
| Phase-field model | |
| Phase-field modeling | |
| Phase-field modelling | |
| Phase-transforming solids | |
| Photopolymerization | |
| physical constraints | |
| Physics Informed Neural Network | |
| Physics-informed Deep Learning | |
| Physics-informed machine learning | |
| Piezo1 | |
| piezoelectricity | |
| Planar Biaxial Test | |
| Planar biaxial testing | |
| Plane-strain groove tensile (PSGT) specimen | |
| plant biomechanics | |
| plant tissues | |
| Plastic damage | |
| Plastic deformation | |
| plastic localization | |
| Plasticity | |
| Plasticity onset | |
| Plastometry | |
| plates | |
| point defects | |
| Poly (glyceryl sebacate) | |
| polycrystal | |
| Polycrystalline Materials | |
| polycrystalline metals | |
| Polycrystals | |
| Polyetherimide | |
| Polyethylene | |
| polyhedral particles | |
| polymer cables | |
| polymer composites | |
| Polymer material | |
| Polymer modelling | |
| polymer nanocomposites | |
| Polymer-matrix composites | |
| Polymeric structure | |
| Polymers | |
| Polypropylene | |
| Polystyrene | |
| Polyvinyl alcohol | |
| Poro-acoustics | |
| Poroelasticity | |
| Porosity | |
| Porosity reduction | |
| Porous elastomers | |
| Porous material | |
| Porous materials | |
| porous plates | |
| Portevin-le Chatelier effect | |
| Postbuckling | |
| Potential energy landscape | |
| Powder | |
| Powder bed fusion | |
| Powder compaction behaviour | |
| powders | |
| precipitate strengthening | |
| Precipitates gradient | |
| pressurized cellular solids | |
| pressurized membrane | |
| Pressurized pipes | |
| Prismatic dislocation loops | |
| Prismatic slip | |
| Process monitoring | |
| processing conditions | |
| Propagation | |
| propagation speed | |
| propagator | |
| Proper orthogonal decomposition | |
| Prosthetic devices | |
| Pseudo-differential operator | |
| Pseudo-ductility | |
| Pyramidal cell | |
| pyroelectricity | |
| pyropiezoelectricity | |
| Python | |
| Q | |
| quantitative imaging | |
| quantum effect | |
| Quasi-brittle fracture | |
| Quasi-brittle material | |
| R | |
| R-curve | |
| R-functions | |
| Radiation damage | |
| Rail | |
| Random fields | |
| random void distributions | |
| Rare-event dynamics | |
| Ratcheting | |
| Rate-independent hysteresis | |
| RBF interpolation | |
| re-entrant unit cell | |
| Reaction | |
| Recrystallization | |
| recurrent neural networks | |
| Recycling | |
| Reduced order modeling | |
| Reduced-order modeling | |
| reduced-order modelling (ROM) | |
| Refractory compositionally complex alloy | |
| regularisation length scale | |
| Regularization | |
| Reinforced Polyamides | |
| relaxed micromorphic | |
| Remanent microstructure | |
| repair | |
| representative volume element | |
| residual stress | |
| residual stress measurement | |
| Residual stresses | |
| Residual thermal stresses | |
| Resin formulation | |
| resolution | |
| resonances | |
| Resonant ultrasound spectroscopy | |
| Retained Austenite | |
| Rheological testing | |
| Rheology | |
| Room-temperature plastic deformation | |
| RotationalIy interlocking | |
| Roughness | |
| Rubber | |
| Rubber elasticity | |
| rubbers | |
| rule of mixture | |
| RµEDM | |
| S | |
| SAGBO | |
| Sandwich | |
| Sandwich panels | |
| scale effect | |
| scale-bridging | |
| Scaling laws | |
| Scattering | |
| Scientific Machine Learning | |
| Screw dislocation | |
| screw dislocations | |
| Seawater ageing | |
| second invariant of deformation | |
| Second-order homogenisation | |
| Secondary phases | |
| segregation | |
| Selective Laser Melting | |
| selective laser sintering | |
| self-affine geometry | |
| Self-assembly | |
| Self-Consistency | |
| Self-expandable stent | |
| Self-Healing Capabilities | |
| Self-healing rubber | |
| Self-oscillation | |
| Self-shadowing | |
| SEM | |
| SEM in situ micromechanical testing | |
| semi-crystalline microstructure | |
| Semi-crystalline polymers | |
| Semi-infinite crack | |
| Sensitization | |
| Serrated flow | |
| shape deformation | |
| Shape effect | |
| shape fixity | |
| Shape Memory Alloy | |
| Shape memory alloys | |
| shape memory polymer | |
| Shape morphing | |
| shape recovery | |
| shape transformation | |
| Shape-changing structures | |
| Shape-Memory Alloy | |
| Shape-morphing | |
| shear band network | |
| shear banding | |
| Shear strain | |
| Shear-normal Coupling | |
| Sheet metals | |
| shell mechanics | |
| Shell-Based Topology | |
| Shielding | |
| Short crack growth | |
| Short Fiber | |
| Short fibre-reinforced composites | |
| Sideways falls | |
| silicon | |
| Silicon scratching | |
| silk fibre architecture | |
| Silo discharge | |
| SIMUFACT | |
| Simulation | |
| Simulation by FEM | |
| simulations | |
| simultaneous fitting | |
| Single Bracket Formalism | |
| Single crystal | |
| Single-crystal strontium titanate | |
| Single-phase polycrystalline materials | |
| Sintering | |
| Size Effect | |
| Size effects | |
| SLA- stereolithography | |
| Slender structures | |
| slip kinetics | |
| Slip localization | |
| Slip system activity | |
| Slip transfer | |
| SLS | |
| small crack | |
| small punch test | |
| small-scale metal plasticity | |
| Smart Materials | |
| SMAT | |
| Smoothed finite element method | |
| Snap through instability | |
| Snap-through | |
| Soda lime glass | |
| soft composites | |
| Soft contacts | |
| Soft magnetic alloy | |
| soft magnetic materials | |
| Soft materials | |
| Soft matter | |
| Soft mechanics | |
| soft particles | |
| Soft Particulate Composites | |
| Soft ribbon | |
| Soft robotics | |
| Soft tissue reconstruction | |
| Soft tissues | |
| soft-hard interface | |
| soft-lubrication | |
| Solute strengthening/softening | |
| spacecraft repair | |
| spallation | |
| spatial and temporal adaptivity | |
| Spatial distribution | |
| Special Cosserat rods | |
| Speckle track imaging | |
| Spherulite | |
| Spinodal Metamaterials | |
| Split Hopkinson Pressure Bar | |
| Springback | |
| SR-TBI | |
| SSY model | |
| stab resistance | |
| staggered scheme | |
| Stainless Steel | |
| Stainless steels | |
| Standard | |
| static analysis | |
| Statistical mechanics | |
| Statistical sampling | |
| steel | |
| steel shell | |
| stiffened panels | |
| stiffness | |
| stochastic model | |
| Storage and loss modules | |
| Stored energy density | |
| Strain | |
| strain energy | |
| Strain energy release rate | |
| strain engineering | |
| Strain Gradient | |
| Strain gradient crystal plasticity | |
| Strain gradient effect | |
| Strain gradient mechanics | |
| Strain gradient plasticity | |
| Strain Gradients | |
| Strain heterogeneities | |
| Strain heterogeneity | |
| strain localization | |
| Strain localization and instabilities | |
| Strain rate | |
| strain-engineering | |
| strength | |
| strength-ductility-toughness balance | |
| stress assisted grain boundary oxidation | |
| Stress corrosion cracking | |
| stress distribution | |
| stress identification | |
| Stress intensity factor | |
| Stress intensity factors | |
| Stress redistribution | |
| stress relaxation | |
| Stress tensor measurement | |
| Stress transfer | |
| Stress-fiber alignment | |
| Stress-induced amorphization | |
| stress-softening | |
| stroke | |
| structural analysis | |
| Structural calculation | |
| Structural Health Monitoring | |
| Structural preservation | |
| Structure-property correlation | |
| structure-property relations | |
| structure-property relationship | |
| Structure-property relationships | |
| Structured fabric | |
| strut based lattices | |
| Sub-size specimens | |
| Superalloy | |
| Superalloys | |
| Superelasticity | |
| supershear | |
| Surface effects | |
| surface evolution | |
| surface friction | |
| Surface Integrity | |
| surface piezoelectricity | |
| surface tension | |
| surface waves | |
| surrogate material model | |
| Surrogate Modelling | |
| Swelling | |
| Swelling-induced stiffening | |
| switchless constitutive relation | |
| symmetries | |
| Symmetry breaking | |
| synchrotron | |
| Synchrotron X-ray diffraction | |
| system simulation | |
| T | |
| TBA1 | |
| TBA2 | |
| TBA3 | |
| Tempering | |
| temporal | |
| tensile contracting and dilating | |
| Tensile links | |
| Tensile strength | |
| Tensile systems | |
| Tensile test | |
| tensile testing | |
| tension | |
| tension-compression asymmetry | |
| tethering | |
| textile composites | |
| texture | |
| Texture evolution | |
| texture optimization | |
| textures | |
| theory | |
| Thermal activity | |
| thermal conductivity | |
| thermal drift | |
| Thermal history | |
| Thermal Recovery | |
| thermal shock resistance | |
| Thermal Stabilization | |
| Thermal treatment | |
| Thermo-electro-mechanical coupling | |
| Thermo-mechanical coupling | |
| Thermo-oxidation | |
| thermodynamic topology optimization | |
| Thermodynamics-Informed Neural Networks | |
| Thermoelasticity | |
| Thermoforming | |
| Thermomechanical behavior | |
| thermomechanical modelling | |
| Thermoplastic | |
| Thermoplastic composite | |
| Thermoplastic composites | |
| Thermoplastic matrix | |
| Thermoplastics | |
| thin film | |
| Thin films | |
| Thin plies | |
| thin sheet | |
| Thin-wall sections | |
| Thin-walled structures | |
| Thoracic Aortic Aneurysm | |
| threshold | |
| thrombosis | |
| Ti-6Al-4V | |
| Ti6Al4V | |
| Tidal Blade | |
| TIG Welding | |
| Tikhonov regularization | |
| time-temperature superposition | |
| Tin alloy | |
| Titanium | |
| Titanium alloys | |
| Titanium mechanical properties | |
| Ti–6Al–4V | |
| Tomography | |
| Tool Steel | |
| Topology | |
| Topology optimization | |
| torsion experiments | |
| Toughness | |
| Toughness enhancement | |
| Tow-based composite | |
| TPMS | |
| tract-related strains | |
| training strategy | |
| transformation plasticity | |
| Transient grating spectroscopy | |
| Transition fatigue | |
| Translaminar failure | |
| transmission electron microscopy | |
| traumatic brain injury | |
| Triaxial tests | |
| Tribology | |
| Tungsten | |
| Twinning | |
| Twins | |
| two-photon litography | |
| U | |
| UHMWPE | |
| Ultrasound | |
| Uniaxial and multiaxial stretching | |
| universal relations | |
| unreinforced masonry building | |
| Unsaturated wet granular materials | |
| upper bound limit analysis | |
| user-defined material (UMAT) subroutine | |
| V | |
| vaginal labour | |
| van der Waals interaction | |
| vapor layer | |
| Variable contact front | |
| Variational Asymptotic Method (VAM) | |
| variational model | |
| variational principles | |
| Varicose Vein | |
| Ventricular catheter shunt systems | |
| VHCF | |
| Vibration absorber | |
| vibration of plates | |
| vibrations | |
| Virtual Element Method | |
| virtual microstructure generation | |
| virtual test | |
| Viscoelastic material parameter reconstruction | |
| Viscoelasticity | |
| viscoelasto-plastic model | |
| Viscoplasticity | |
| viscous dissipation | |
| Viscous flow | |
| viscous fluid | |
| void evolution | |
| Void growth | |
| Void size distribution | |
| Voiding mechanisms | |
| Voids | |
| Voronoï diagrams | |
| Voxel-based approach | |
| W | |
| W/Cu joint | |
| WAAM | |
| Waste | |
| wave | |
| Wave manipulation | |
| Wave propagation | |
| Wear properties | |
| Welded Joint | |
| Williams series | |
| Woven CFRP | |
| Wrinkles | |
| wrinkling | |
| Wrinkling patterns | |
| X | |
| X ray beam line | |
| X-ray and neutron diffraction and imaging | |
| X-ray Computed Tomography | |
| X-ray diffraction | |
| X-ray lab tomography | |
| X-ray Microtomography | |
| X-ray tomography | |
| X-Ray tomography:Image-based finite element analysis | |
| Y | |
| Yield Locus | |
| Z | |
| Zinc | |
| Zirconium Alloy | |
| ZnAlMg coatings | |
| β | |
| β−Ti-alloys | |