Keywords: حرارت درمانی; High carbon chromium cast steel; Casting; Nitrogen; Wear resistance; Heat treatment;
مقالات ISI حرارت درمانی (ترجمه نشده)
مقالات زیر هنوز به فارسی ترجمه نشده اند.
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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.
Rheological and stability aspects of dry and hydrothermally heat treated aleurone-rich wheat milling fraction
Keywords: حرارت درمانی; Heat treatment; Aleuron; Mixolab; RVA; Phenolic compound; Fiber;
Keywords: حرارت درمانی; Electron beam melting; Titanium alloys; Mechanical properties; Heat treatment; Porous structures; Super-elasticity;
Keywords: حرارت درمانی; Titanium alloy; Sympathetic nucleation; Competitive growth; Thermal history; Heat treatment;
Keywords: حرارت درمانی; Low density steel; Heat treatment; Mechanical properties;
Keywords: حرارت درمانی; Ceramics; Heat treatment; Chemical techniques; Electrical properties;
Keywords: حرارت درمانی; Clay-bacterial interaction; Polycyclic aromatic hydrocarbon (PAH); Palygorskite; Heat treatment; Bioremediation; 14C radiotracer;
Keywords: حرارت درمانی; Broccoli; Heat treatment; Glucosinolates; Hydroxycinnamic acids; Respiration;
Keywords: حرارت درمانی; Single-crystal diamond tool; Ultraprecision machining; Texture; Friction; Cutting tool; Focused ion beam; Gallium; Heat treatment; Nickel phosphorus; Aluminum alloy;
Keywords: حرارت درمانی; Blistering; Semi-solid die casting; Process window; Heat treatment; Aluminium alloy 319s;
Keywords: حرارت درمانی; Heat treatment; O/w emulsions; Milk proteins; Attractive/repulsive forces;
Keywords: حرارت درمانی; Engineered cementitious composite; Shape memory alloy; Impact loading; Toughness; Heat treatment; Weibull distribution;
Keywords: حرارت درمانی; milk; homogenization; heat treatment; gastric digestion; protein coagulation;
Keywords: حرارت درمانی; Heat treatment; Phosphate glass; Mechanical properties; Ion leaching; Osseointegration; Thin films;
Keywords: حرارت درمانی; Stationary arc; Heat treatment; Graded microstructure; Super duplex stainless steels; Physical simulation; Welding;
Keywords: حرارت درمانی; Engineered cementitious composite; Shape memory alloy; Hybrid; Fiber-reinforced; Heat treatment; Self-healing; Toughness;
Keywords: حرارت درمانی; Peach fruit; Heat treatment; Chilling injury; Reactive oxygen species; Antioxidant system;
Keywords: حرارت درمانی; Thermal conductivity; Nanocomposite; Nanoparticle; Heat treatment; Vickers hardness;
Keywords: حرارت درمانی; Glass ceramic; Heat treatment; CAD/CAM; Stress state; Opacity; Microstructure analysis;
Keywords: حرارت درمانی; In-situ TEM; Homogenization; Heat treatment; Phase transformation; 6xxx Al alloys;
Keywords: حرارت درمانی; Finite element; Residual stresses; Cladding; Buttering; Heat treatment; Nozzle dissimilar welding;
Keywords: حرارت درمانی; Biodegradable metals; Corrosion; Magnesium alloys; Heat treatment; Additive manufacturing; Bone fixation hardware;
Keywords: حرارت درمانی; Nickel titanium; Heat treatment; Glide path; Cyclic fatigue; Corrosion; Outcomes;
Keywords: حرارت درمانی; Aluminum-copper alloy; Homogeneous laser cladding; Porosity; Microstructure; Microhardness; Heat treatment;
Keywords: حرارت درمانی; Adhesion; Thin films; Scratch test; Heat treatment; Film stress;
Keywords: حرارت درمانی; Gear-tooth failure; Heat treatment; Failure analysis; Service life test; Shafts;
Keywords: حرارت درمانی; Argillite; Heat treatment; Flash calcination; Furnace; 27 Al NMR; Alkali-activated;
Keywords: حرارت درمانی; Microstructure; Hardness; Al alloy; Heat treatment;
Keywords: حرارت درمانی; Copper-iron alloy (CFA); Gas atomization; Microstructural evolution; Heat treatment; Electrical conductivity;
Keywords: حرارت درمانی; Magnetic field; Superalloys; Heat treatment; Hardness;
Keywords: حرارت درمانی; Functional composites; Nanocomposites; Particle-reinforced composites; Transport properties; Heat treatment;
Keywords: حرارت درمانی; Sputtering; Heat treatment; Indentation; Fracture toughness; Hardness; Wear;
Keywords: حرارت درمانی; Light alloys; Heat treatment; Stress and strain behaviors; Thermo-mechanical fatigue; Continuum damage mechanics;
Keywords: حرارت درمانی; Carbon fiber; Finite element analysis; Joining; Heat treatment; Induction welding; Thermoplastic resin;
Keywords: حرارت درمانی; Shape memory alloy (SMA); NiTi; Martensitic transformation; Functionally graded material (FGM); Pseudoelasticity; Heat treatment;
Keywords: حرارت درمانی; Laser cladding; 410L stainless steel; Hypereutectoid rail steels; Microstructure; Cladding direction; Heat treatment;
Keywords: حرارت درمانی; Nanostructures; Heat treatment; Crystal structure; FTIR; Rietveld analysis; XPS;
Keywords: حرارت درمانی; Stearic acid; Dip coating; Heat treatment; Superhydrophobic; Sponge; Emulsion separation;
Keywords: حرارت درمانی; Mixed phase steel; Bainite; Carbides; Heat treatment; TEM;
Keywords: حرارت درمانی; Metal phthalocyanine; Functionalized carbon nanotubes; Electrocatalysts; Heat treatment; Hybrid PEM/AEM fuel cell;
Keywords: حرارت درمانی; Dual phase steels; Heat treatment; Light optical microscopy; Microstructure; Hardness;
Keywords: حرارت درمانی; Glassy carbon; Ion implantation; Heat treatment; Rutherford backscattering spectroscopy (RBS); Raman spectroscopy
Keywords: حرارت درمانی; Foam; Aluminum; Heat treatment; Metallurgy; Magnesium; Microstructure
Keywords: حرارت درمانی; Adhesives; Ceramics; Mechanical properties; Heat treatment; Bonding effect;
Keywords: حرارت درمانی; Molecular precursor method; Trench; Copper; Dip coating; Heat treatment;
Keywords: حرارت درمانی; Palladium; Kieselguhr; Hydrogen isotope separation; Heat treatment; Cycle;
Keywords: حرارت درمانی; Ultrasonic scattering; Acoustoelasticity; Residual stress; Ultrasonic attenuation; Heat treatment;
Keywords: حرارت درمانی; Magnetic materials; Heat treatment; Powder diffraction; Magnetic properties; Compaction
Keywords: حرارت درمانی; Additive manufacture; Selective electron beam melting (SEBM); Pores; Heat treatment; Hot isostatic pressing (HIPing);
Keywords: حرارت درمانی; method of polymeric petroleum products diagnostics; polyolefins; heat treatment; multilayer films; optical properties; latent marking