Keywords: جذب انرژی; Ship collision; Damage assessment; Energy absorption; Collision force; Analytical solution; Finite element analysis; Experimental result; Collision risk management;
مقالات ISI جذب انرژی (ترجمه نشده)
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Keywords: جذب انرژی; Foam-filled tapered multi-cell tube; Energy absorption; Crashworthiness;
Keywords: جذب انرژی; Prestressed concrete; Reinforced concrete; Drop impact; Energy absorption; Damage;
Keywords: جذب انرژی; Mechanical metamaterials; Architected materials; Unit cell analysis; Shell-lattices; Stiffness; Energy absorption;
Keywords: جذب انرژی; Low alloy steel; Energy absorption; Prior austenitic grain size; Induction hardening; Tempering temperature;
Keywords: جذب انرژی; Nitrogen doped MWCNTs; Compressive properties; High strain rate; Energy absorption;
Keywords: جذب انرژی; Hierarchical tubular structure; Energy absorption; Folding style; Mean crushing force; Theoretical prediction;
Keywords: جذب انرژی; Loading speed; Strain rate; Bearing strength; Energy absorption; Delamination; GFRPs;
Keywords: جذب انرژی; GFRP; Fabric reinforcement; Thermoplastics; Organic sheets; Axial loading; Crushing; Energy absorption; Simulation;
Keywords: جذب انرژی; Crashworthiness; Double-sided corrugated tube; Composites; Energy absorption; Finite element;
Keywords: جذب انرژی; Biomimicry; Bio-inspired structures; Crushing behavior; Energy absorption; Micro inertia; LSDYNA;
Keywords: جذب انرژی; Energy absorption; Nested rings; Nested thin-walled tubes; Lateral compression; Quasi-static loading;
Keywords: جذب انرژی; Hyperthermia; Tumor property; Energy absorption; Temperature mapping; Mouse model; Thermal dose;
Keywords: جذب انرژی; Rigid origami; Functionally graded structure; Self locking; Graded stiffness; Energy absorption;
Keywords: جذب انرژی; Theoretical model; Inversion; Energy absorption; Plastic dissipation; Friction;
Keywords: جذب انرژی; Closed-cell aluminium foam; Thin-walled tubes; Foam-filled structures; Compressive behaviour; Deformation modes; Energy absorption;
Keywords: جذب انرژی; Porous materials; Structural; Tube enhanced foam; Compressive strength; Energy absorption;
Keywords: جذب انرژی; Combined bitubular tubes; Impact; Energy absorption; Finite element method; Axial crushing;
Keywords: جذب انرژی; Explicit dynamics FE analysis; UltraSTEEL dimpled material; Square hollow section (SHS); Lateral impact; Energy absorption;
Keywords: جذب انرژی; Hemispherical shell; Liquid-filled; Impact; Collapse behavior; Energy absorption;
Keywords: جذب انرژی; Self-similar tubular structure; Sandwich-walled tube; Crushing mechanism; Mean crushing force; Energy absorption;
Keywords: جذب انرژی; AA 2024-T351; Perforation; Ballistic limit; Energy absorption; FEM-SPH;
Keywords: جذب انرژی; Textile reinforced concrete; Impact velocity; Temperature; Impact response; Energy absorption;
Keywords: جذب انرژی; Nested tube system; Deformation mode; Lateral crushing; Energy absorption; Theoretical model;
Keywords: جذب انرژی; Lattice cylindrical structure; Dynamic crushing; Density gradient; Energy absorption;
Keywords: جذب انرژی; Foam-filled multi-cell; FRP; Quasi-static compression; Energy absorption; Numerical simulation;
Keywords: جذب انرژی; Prestressing; Concrete plates; Drop weight impact; Energy absorption; Damage;
Keywords: جذب انرژی; Axial crushing; Energy absorption; Annular rolling; Restricted fold length; Aluminium tube;
Keywords: جذب انرژی; Cenosphere size distribution; Bi-modal and tri-modal distribution; Hybrid aluminium foam; Strain rate sensitivity; Energy absorption;
Keywords: جذب انرژی; Reactive powder concrete; Split Hopkinson pressure bar; Energy absorption; Dynamic stress-strain responses; Dynamic increase factor;
Keywords: جذب انرژی; Crushing; Folded; Kirigami structure; Dynamic response; Energy absorption; Base shape;
Keywords: جذب انرژی; Honeycomb; Hierarchy; Circular-joint; Energy absorption; Out-of-plane crushing;
Keywords: جذب انرژی; Braided composite; Repeated low-velocity impacts; Damage accumulation; Energy absorption; Multi-scale modelling;
Keywords: جذب انرژی; Energy absorption; Steel plate; Large compression stroke; Bending-straightening;
Keywords: جذب انرژی; Multi-cell; Crashworthiness; Energy absorption; Thin-walled structures; Axial crushing; Collapse modes;
Keywords: جذب انرژی; Axial crushing; Folded tube; Energy absorption; Multi-cell;
Keywords: جذب انرژی; Monolithic target Span; Layered Target; Hemispherical Nosed Projectile; Energy Absorption;
Keywords: جذب انرژی; Crashworthiness; Energy absorption; Poisson's ratio; Foam-filled tube; Sandwich double tube;
Keywords: جذب انرژی; Engineered cementitious composite; Hollow glass microsphere; Ductility; Strain-hardening; Energy absorption;
Keywords: جذب انرژی; Additive manufacturing; Lattice structures; Selective laser melting; Steel; High cycle fatigue; Energy absorption;
Keywords: جذب انرژی; Ductility; Energy absorption; Steel ring; Steel braces;
Keywords: جذب انرژی; High temperatures; Carbon nanotubes; Compressive strength; Microstructure; Energy absorption; Toughness;
Keywords: جذب انرژی; Crochet-sintered mesh tube; Layered composite tube; Crush response; Energy absorption;
Keywords: جذب انرژی; Multi-cell; Embedded tubes; Bending collapse; Energy absorption; Partial filling;
Keywords: جذب انرژی; Hierarchical structure; Hexagonal columns; Crashworthiness; Energy absorption;
Keywords: جذب انرژی; Aluminium alloys; Nanoscale model; Energy absorption; Crashworthiness; Finite element analysis;
Keywords: جذب انرژی; Nanocomposite; Nonlinear strain; High velocity impact; Energy absorption; Delamination;
Keywords: جذب انرژی; Hierarchy; Honeycomb; Energy absorption; Out-of-plane crushing; Super folding element;
Keywords: جذب انرژی; Lateral indentation; Multi-cell section; Energy absorption; Optimization design;
Keywords: جذب انرژی; Microstructure; Buckling restrained braces; Fiber concrete; Hybrid fibers; Concrete mix design; Ductility; Cyclic load; Back bone; Energy absorption; SEM test;