Keywords: C. خزش; C. Thermal shock resistance; C. Creep; E. Refractories; Particle size distribution;
مقالات ISI C. خزش (ترجمه نشده)
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Keywords: C. خزش; C. Creep; YTZP; Superplasticity; Ductility; Micromechanical modeling;
Keywords: C. خزش; C. Creep; Calcined kaolin; Thermo-mechanical behaviour; Thermal shock; Refractory concrete
Fused deposition modelling with ABS–graphene nanocomposites
Keywords: C. خزش; A. Graphene; B. Mechanical properties; C. Creep; Fused deposition modelling
Compressive creep behavior of spark plasma sintered La2O3–YSZ composite
Keywords: C. خزش; A. Sintering; B. Composite; C. Creep; D. ZrO2; La2O3
Effect of the volume fraction of SiC on the microstructure and creep behavior of hot pressed Al2O3/SiC composites
Keywords: C. خزش; C. Creep; D. Al2O3/SiC; Microcomposites; Microstructure
Comparison of thermo-mechanical characteristics of non-doped and 3 mol% B-site Zr-doped Ba0.5Sr0.5Co0.8Fe0.2O3−δ
Keywords: C. خزش; C. Creep; C. Strength; E. Membranes; Ceramics; Subcritical crack growth
Creep behavior modeling of silica fume containing Al2O3–MgO refractory castables
Keywords: C. خزش; C. Creep; Spinel containing castables; θ-Projection concept; Thermodynamic simulation
Fracture toughness, strength and creep of transparent ceramics at high temperature
Keywords: C. خزش; C. Creep; C. Fracture; C. Strength; Transparent ceramics
Creep behaviour of alumina/YAG composites prepared by different sintering routes
Keywords: C. خزش; B. Composites; B. Microstructure-final; C. Creep; D. Al2O3; YAG
Plastic behaviour of 4H-SiC single crystals deformed at temperatures between 800 and 1300 °C
Keywords: C. خزش; B. Electron microscopy; C. Mechanical properties; C. Creep; D. SiC;
Compilation of mechanical properties for the structural analysis of solid oxide fuel cell stacks. Constitutive materials of anode-supported cells
Keywords: C. خزش; C. Creep; C. Mechanical properties; C. Strength; C. Thermal expansion; Solid oxide fuel cell
Creep behavior of TiCxN1−x–CoTi cermets synthesized by mechanically induced self-sustaining reaction
Keywords: C. خزش; B. Composites; C. Mechanical properties; C. Creep; E. Cutting tools; Carbonitrides
High temperature bending creep behavior of a multi-cation doped α/β-SiAlON composite
Keywords: C. خزش; C. Creep; α/β-SiAlON; Aluminum-containing nitrogen melilite;
High-temperature mechanical behavior of polycrystalline yttrium-doped barium cerate perovskite
Keywords: C. خزش; D. Perovskites; C. Creep; A. Sintering; B. Microstructure-final; A. Grain growth
Characterization and creep properties of proton-conducting Yb-doped barium cerate
Keywords: C. خزش; D. Perovskites; A. Sintering; B. Microstructure-final; C. Creep; Cerate
Time and temperature dependent response of a wood–polypropylene composite
Keywords: C. خزش; A. Wood polypropylene composite; B. Temperature; C. Creep; D. Time–temperature superposition principle
Non-contact mechanical property measurements at ultrahigh temperatures
Keywords: C. خزش; C. Creep; E. Refractories; D. Borides; C. Mechanical properties; ZrB2
Does a tiny amount of dispersant make any change to refractory castable properties?
Keywords: C. خزش; A. Firing; B. Porosity; C. Creep; C. Mechanical properties; D. Al2O3; E. Refractories
Electrical property of cement-based composites filled with carbon black under long-term wet and loading condition
Keywords: C. خزش; A. Smart materials; B. Electrical properties; C. Creep
High-temperature mechanical properties of porous NaMgF3 derived from directionally solidified NaMgF3–NaF eutectics
Keywords: C. خزش; B. Porosity; C. Creep; C. Strength; D. Halides; Eutectics
Thermomechanical behavior of a zircon-mullite composite
Keywords: C. خزش; C. Creep; C. Thermal shock resistance; D. Mullite; Strain and rupture; Zircon;
Thermomechanical properties of alumina fiber membrane
Keywords: C. خزش; B. Fiber; C. Creep; C. Strength; C. Thermal conductivity; D. Alumina; Ceramic membrane;