Keywords: جذب انرژی; Microstructure; Buckling restrained braces; Fiber concrete; Hybrid fibers; Concrete mix design; Ductility; Cyclic load; Back bone; Energy absorption; SEM test;
مقالات ISI جذب انرژی (ترجمه نشده)
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در صورتی که به ترجمه آماده هر یک از مقالات زیر نیاز داشته باشید، می توانید سفارش دهید تا مترجمان با تجربه این مجموعه در اسرع وقت آن را برای شما ترجمه نمایند.
Keywords: جذب انرژی; Partially saturated sand; High strain rate; Energy absorption; Grain crushing; Lateral confinement;
Keywords: جذب انرژی; Aluminium tube; Cutting deformation; Fracture; Energy absorption; Multi-objective optimization;
Keywords: جذب انرژی; Multi-cell tubes; Origami pattern; Response surface method; Multi-objective optimization; Energy absorption;
Keywords: جذب انرژی; Energy absorption; Optimization; Combined deformation mechanism; LS-Dyna; Taguchi method; Response surface method;
Keywords: جذب انرژی; Honeycomb; Carbon fibre; Aluminium column; Crushing behaviour; Energy absorption;
Keywords: جذب انرژی; Multi-cell tube; Energy absorption; Crashworthiness; Optimization; Multi-objective particle swarm optimization (MOPSO);
Keywords: جذب انرژی; Metal rope; Crochet-sintered mesh tube; Axial crushing; Energy absorption;
Keywords: جذب انرژی; Monolithic and double-layered plates; Sandwich plates; Plastic deformation; Energy absorption;
Keywords: جذب انرژی; Foam-filled multi-cell tube; Element free Galerkin method; Orthogonal arrays crashworthiness; Energy absorption; Topology optimization;
Keywords: جذب انرژی; Cold formed steel; Energy absorption; Flexural stiffness; Lightweight structure; Sandwich panel;
Keywords: جذب انرژی; Thin-walled metal plate; Quasi-static experiment; Numerical simulation; Plastic deformation; Energy absorption;
Keywords: جذب انرژی; Composite; Corrugated tube; Oblique impact; Energy absorption; Crushing; Foam;
Keywords: جذب انرژی; Aluminium-plated structure; Dynamic response; Fracture; Energy absorption; Load-bearing capacity;
Keywords: جذب انرژی; axial crushing; energy absorption; circular hybrid tube; thermoplastic composite;
Keywords: جذب انرژی; Crashworthiness; Koch fractal structures; Synergistic effect; Energy absorption;
Keywords: جذب انرژی; Crashworthiness; Functionally graded material; Thin-walled structures; Cellular materials; Energy absorption;
Keywords: جذب انرژی; Cellular metal; Sheet metal forming; Laser welding; Energy absorption; Mechanical properties;
Keywords: جذب انرژی; Additive manufacturing (AM); Cellular structure; Diamond lattice; Energy absorption; Laser sintering (LS); Multi-material systems;
Keywords: جذب انرژی; Oblique impact; Corrugated tapered tubes; Thin-walled structures; Deformation modes; Energy absorption;
Keywords: جذب انرژی; Dynamic response; Energy absorption; Self-locked system; Theoretical crushing model; Deformation modes;
Keywords: جذب انرژی; Energy absorption; Liquid filler; Homogeneous material model; Crush behaviors; Strain rate effect;
Keywords: جذب انرژی; Blast wall; Hybrid system; Energy absorption; Analytical model; Finite element analysis; Weld rupture;
Keywords: جذب انرژی; Prestressed concrete; Reinforced concrete; Drop impact; Energy absorption; Damage mechanism; Finite element analysis;
Keywords: جذب انرژی; Honeycomb; Out-of-plane compression; Compressive strength; Energy absorption;
Keywords: جذب انرژی; Energy absorption; Snap-through; Negative stiffness; Smart materials; Bistability; Lattice; Wave dissipation; Post-buckling; Geometric nonlinearity; Large deflection;
Keywords: جذب انرژی; Wave energy converter; Wave energy control; Energy absorption; Neural network; Deep machine learning; Wave force prediction;
Keywords: جذب انرژی; Open-cell foams; Aluminum; Energy absorption; Strain rate; Rolling;
Keywords: جذب انرژی; Turtle shell; Hydration effect; Mechanical property; Impact wear; Energy absorption;
Keywords: جذب انرژی; Hierarchical structure; Honeycomb; Impact; Energy absorption; Crashworthiness;
Keywords: جذب انرژی; Metamaterials; Additive manufacturing; 3D printing; Shape-recovering; Energy absorption;
Keywords: جذب انرژی; In-plane compression; Hexagonal honeycomb; Deformation process; Plateau property; Energy absorption; Finite element method;
Keywords: جذب انرژی; Energy absorption; Materials selection; Foam; Football helmet; Ashby methods;
Keywords: جذب انرژی; Long fiber reinforced composites; Two-phase modeling; Impact; Penetration; Energy absorption;
Keywords: جذب انرژی; Single phase syntactic foam; Impact loading; Energy absorption; Densification;
Keywords: جذب انرژی; Sandwich panel; Planar compression; Low-velocity local impact; Energy absorption;
Keywords: جذب انرژی; Crashworthiness; Fractal hierarchical structure; Energy absorption; Lightweight;
Keywords: جذب انرژی; Energy absorption; Rectangular and slotted windows; Crack length; Axial crushing;
Keywords: جذب انرژی; Bionic tubes; Axial crushing; Energy absorption; Crushing mode;
Keywords: جذب انرژی; Ferrocement composite beams; Reinforcement mesh types; Core material type; Post crack stiffness; Energy absorption; Theoretical modelling;
Keywords: جذب انرژی; Metallic foams; Carbon nanotubes; Strain rate effect; Dynamic behavior; Energy absorption;
Keywords: جذب انرژی; Inter-yarn friction; Ballistic impact; Transverse deflection ability; Fabric response mode; Energy absorption;
Keywords: جذب انرژی; Composite foams; Foam filled lattice; Polyurea; Impact mitigation; Energy absorption;
Keywords: جذب انرژی; Structural hierarchy; Bio-inspired; Tubular section; Impact; Energy absorption;
Keywords: جذب انرژی; Aluminium foam; Ultra-high-molecular-weight polyethylene fibre; Steel wire mesh; Depth of penetration; Crater dimensions; Energy absorption; Deviation angle;
Keywords: جذب انرژی; Hat beam composites; Energy absorption; Crush test; Failure modes;
Keywords: جذب انرژی; Shrink; Circular tube; Energy absorption; Plastic deformation; Friction;
Keywords: جذب انرژی; Hollow corrugated section; Lateral impact; Drop weight impact test; Energy absorption; Finite element analysis;
Keywords: جذب انرژی; Fiber metal laminates (FMLs); Titanium sheet; Ultra-high-molecular-weight polyethylene; Ballistic impact; Energy absorption;
Keywords: جذب انرژی; Lateral impact; Ultra-high strength steel tube; Hybrid corrugated members; Drop weight impact test; Energy absorption;