Keywords: مقاومت خزش; Zirconia; Graphene oxide; Carbon nanofibers; Mechanical properties; Creep resistance;
مقالات ISI مقاومت خزش (ترجمه نشده)
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Keywords: مقاومت خزش; High-temperature titanium alloy; Microstructure; Creep resistance; Thermal stability;
Keywords: مقاومت خزش; Magnesium alloys; Creep resistance; Microstructure; Metallography;
Keywords: مقاومت خزش; Graphene-oxide; Carbon nanofiber; Alumina composites; Creep resistance;
Keywords: مقاومت خزش; Silicon carbide; Hot pressing; Microstructure; Mechanical properties; Creep resistance;
Keywords: مقاومت خزش; Metallic glasses; Nanoindentation; Creep resistance; Shear transformation zone
Keywords: مقاومت خزش; Magnesium alloy; Creep resistance; Microstructure; High temperature deformation; Mechanical properties
The heterogeneous microstructure of heat affect zone and its effect on creep resistance for friction stir joints on 9Cr-1.5â¯W heat resistant steel
Keywords: مقاومت خزش; Friction stir welding; Heat resistant steel; Heat affect zone; Heterogeneous microstructure; Creep resistance;
CMC jackets for metallic pipes - A novel approach to prevent the creep deformation of thermo-mechanically loaded metals
Keywords: مقاومت خزش; Ceramic matrix composites; Hybrid metal ceramic pipe; Creep resistance; 700â¯Â°C steam power plant;
Tailoring microstructure and chemical composition of advanced γ-TiAl based alloys for improved creep resistance
Keywords: مقاومت خزش; TiAl; Microstructural design; Alloy development; Heat treatment; Creep resistance; Microstructure stability;
On the abnormal fast diffusion of solute atoms in α-Ti: A first-principles investigation
Keywords: مقاومت خزش; First-principles calculations; Atomic diffusion; Titanium alloy; Creep resistance;
Deteriorated tensile creep resistance of a high-pressure die-cast Mg-4Al-4RE-0.3Mn alloy induced by substituting part RE with Ca
Keywords: مقاومت خزش; Magnesium alloys; High-pressure die-cast; Creep resistance; Transmission electron microscopy (TEM); Dislocation substructures;
Improvement in the mechanical properties and creep resistance of Al-Mn-Mg 3004 alloy with Sc and Zr addition
Keywords: مقاومت خزش; Al-Mn-Mg 3004 alloy; α-Al(Mn,Fe)Si dispersoids; Al3(Sc,Zr) precipitates; Microstructure evolution; Mechanical properties; Creep resistance;
Effect of initial temper on the creep behavior of precipitation-hardened WE43 alloy
Keywords: مقاومت خزش; WE43 alloy; Precipitate; Creep mechanism; Creep resistance;
Enhanced elevated-temperature properties via Mo addition in Al-Mn-Mg 3004 alloy
Keywords: مقاومت خزش; Al-Mn-Mg 3004 alloy; Mo; Elevated-temperature properties; Thermal stability; Creep resistance;
Microstructure, elevated-temperature mechanical properties and creep resistance of dispersoid-strengthened Al-Mn-Mg 3xxx alloys with varying Mg and Si contents
Keywords: مقاومت خزش; Al-Mn-Mg 3xxx alloys; Mg addition; Si addition; Microstructure; Elevated-temperature mechanical properties; Creep resistance;
Enhanced oxidation resistance of SiC/SiC minicomposites via slurry infiltration of oxide layers
Keywords: مقاومت خزش; Ceramic matrix minicomposites; Mullite coating; Slurry infiltration; Oxidation resistance; Creep resistance;
Effect of Al addition on creep resistance of MgO-Al2O3 composite for sliding plate at 1400 °C
Keywords: مقاومت خزش; Al-MgO-Al2O3 composite; Metal aluminum; Creep resistance; MgAlON; AlN polytype;
Improving the creep resistance and tensile property of UHMWPE sheet by radiation cross-linking and annealing
Keywords: مقاومت خزش; UHMWPE; γ irradiation; Cross-linking; Creep resistance; Tensile properties;
Effect of aging treatment on the microstructure, creep resistance and high-temperature mechanical properties of Mg-6Zn-3Cu alloy with La- and Ce-rich rare earth additions
Keywords: مقاومت خزش; Mg-Zn-Cu alloy; Aging treatment; Creep resistance; Mechanical properties;
Dispersoid strengthening of a high temperature Al-Si-Cu-Mg alloy via Mo addition
Keywords: مقاومت خزش; Al-Si alloys; Mo addition; Creep resistance; High temperature mechanical properties; Dispersoid strengthening; TEM;
Development of Al–Mn–Mg 3004 alloy for applications at elevated temperature via dispersoid strengthening
Keywords: مقاومت خزش; Al–Mn–Mg 3004 alloy; Precipitation treatment; Dispersoid strengthening; Thermal stability; Creep resistance; Elevated temperature applications
Improvement of creep and impact resistance of reduced activation ferritic-martensitic steel by the addition of Zr
Keywords: مقاومت خزش; Ferritic-martensitic steel; Impact resistance; Creep resistance; Tensile properties;
Precipitation behavior of Fe2Nb Laves phase on grain boundaries in austenitic heat resistant steels
Keywords: مقاومت خزش; Austenitic steels; Grain boundary; Precipitation; Laves phase; Boron; Creep resistance;
Tensile creep characteristics of Sn-3.5Ag-0.5Cu (SAC355) solder reinforced with nano-metric ZnO particles
Keywords: مقاومت خزش; Nano-metric; Composite solder; Structural refinement; Creep resistance;
Tensile creep of directionally solidified NiAl-9Mo in situ composites
Keywords: مقاومت خزش; Fiber reinforced composite; Creep resistance; Interface;
New design aspects of creep-resistant NiAl-strengthened ferritic alloys
Keywords: مقاومت خزش; NiAl-strengthened ferritic alloys; Creep resistance; Ni2TiAl; Low-density steels; Ultra-supercritical fossil-energy power plants
Hydrogen sulfide-resilient anodes for molten carbonate fuel cells
Keywords: مقاومت خزش; Molten carbonate fuel cell; Anode; Creep resistance; Electro-chemical performance
Optimization of the Mg-Al-Zn-Ca-Sr alloy composition based on the parameter Aâ² in the constitutive equation for the climb-controlled dislocation creep including the stacking fault energy
Keywords: مقاومت خزش; Mg-Al-Zn-Ca-Sr magnesium alloys; Creep resistance; Die-cast; Constitutive equation; Stacking fault energy; Microstructure;
Microstructures and creep properties of Mg-4Al-(1-4) La alloys produced by different casting techniques
Keywords: مقاومت خزش; Mg-Al-RE alloy; Lanthanum; Casting technique; Microstructures; Creep resistance;
Predictive modeling of creep in polymer/layered silicate nanocomposites
Keywords: مقاومت خزش; Polymer/clay nanocomposites; Predictive modeling; Creep resistance; Processing method;
On the importance of a connected hard-phase skeleton for the creep resistance of Mg alloys
Keywords: مقاومت خزش; Mg-alloys; Creep resistance; Ca addition; Hard-phase skeleton; Interconnectivity;
The elevated-temperature mechanical behavior of peak-aged Mg-10Gd-3Y-0.4Zr Alloy
Keywords: مقاومت خزش; Mg-RE-Zr alloys; Room and elevated compression and tension mechanical properties; Fatigue; Creep resistance; Precipitation hardening;
The effect of Re and Ru on γ/γⲠmicrostructure, γ-solid solution strengthening and creep strength in nickel-base superalloys
Keywords: مقاومت خزش; Creep resistance; γâ²-Volume fraction; γ/γâ²-Distribution coefficient; γâ²-Size; γâ²-Coarsening rate; Solid solution strengthening;
Microstructural analysis of the improved creep resistance of a die-cast magnesium–aluminium–rare earth alloy by strontium additions
Keywords: مقاومت خزش; Magnesium alloys; Microstructure; TEM; Creep resistance
Microstructural evolution during creep of Ca-containing AZ91
Keywords: مقاومت خزش; Magnesium alloys; Ca addition; Creep resistance; Microstructure
The effect of different content of Al, RE and Si element on the microstructure, mechanical and creep properties of Mg-Al alloys
Keywords: مقاومت خزش; AZ91 magnesium alloy; Microstructure; Rare earths; Creep resistance;
Microstructure and mechanical behaviour of an elevated temperature Mg-rare earth based alloy
Keywords: مقاومت خزش; Magnesium alloy; Microstructure; Sand-cast; Alloy design; Creep resistance;
Creep properties of Sn–Sb based lead-free solder alloys
Keywords: مقاومت خزش; Lead-free solder; Sn–5Sb alloy; Creep resistance; Microstructure; Heat of fusion
Effects of Sr and Ca on the microstructure and properties of Mg–12Zn–4Al–0.3Mn alloy
Keywords: مقاومت خزش; Mg–Zn–Al alloys; Microstructure; Quasi-crystal; Creep resistance
Microstructural analysis of the creep resistance of die-cast Mg–4Al–2RE alloy
Keywords: مقاومت خزش; Mg–Al–RE alloy; Microstructure; TEM; Creep resistance
Effect of nano-particles on the creep resistance of Mg–Sn based alloys
Keywords: مقاومت خزش; Nano-particles; Mg–Sn alloy; Cooling rate; Creep resistance; Load-relaxation test
Internal stresses during creep of magnesium alloys at 523 K
Keywords: مقاومت خزش; Magnesium alloys; Creep; Creep resistance; Internal stress
Effects of temperature and strain rate on mechanical property of Sn96.5Ag3Cu0.5
Keywords: مقاومت خزش; Sn–Ag–Cu; Lead-free; Work hardening; Dynamic recovery; Creep resistance; Temperature dependence; Strain rate sensitivity
Effect of Al contents on microstructures, tensile and creep properties of Mg–Al–Sr–Ca alloy
Keywords: مقاومت خزش; Magnesium alloys; Alkaline earth; Aluminum; Microstructure; Creep resistance
Pb-based composites materials for grids of acid battery
Keywords: مقاومت خزش; Lead–ceramic composites; Metallurgy powder; Creep resistance; Electrochemical; Corrosion
Novel application of aluminum salt for cost-effective fabrication of a highly creep-resistant nickel–aluminum anode for a molten carbonate fuel cell
Keywords: مقاومت خزش; Molten carbonate fuel cell; Anode; Aluminum salt; Oxide dispersion strengthening; Creep resistance
Internal stresses and the creep resistance of the directionally solidified ceramic eutectics
Keywords: مقاومت خزش; Directionally solidified ceramic eutectic; Creep resistance; Al2O3/c-ZrO2 eutectics
Effects of Ca and Sr addition on mechanical properties of a cast AZ91 magnesium alloy at room and elevated temperature
Keywords: مقاومت خزش; Magnesium alloy; AZ91; Tensile strength; Creep resistance; Climb-controlled dislocation creep;
Enhanced age hardening response and creep resistance of Mg-Gd alloys containing Zn
Keywords: مقاومت خزش; Magnesium alloys; Precipitation hardening; Creep resistance; Mg-Gd-Zn-Zr;