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The experiment shows that the TiO2/CuO coating is more heat-resistant, acid-resistant, and wear resistant than CuO coating, without losing absorptivity markedly.
      
Nanotechnology for Encapsulating Zirconium Boride upon Formation of Heat-Resistant Coatings
      
Kinetics of formation of ZrB2-MoSi2 glass-ceramic heat-resistant coatings on graphite
      
The results of investigations are used to design organosilicate materials, such as heat-resistant functional coatings, high-temperature adhesives, and vacuum-tight sealants, which find wide application in various fields of engineering.
      
Scientific principles of the manufacture of high-strength heat-resistant polymer composite materials with the successive ionizing-radiation and heat treatment (via the step of long-lived prepregs) were developed.
      
The thermophysical properties of KhN55VMTKYu nickel-based heat-resistant alloy
      
New experimental data are given for the KhN55VMTKYu industrial nickel-based heat-resistant alloy on its heat capacity at temperatures from 300 to 1000 K and on the thermal conductivity coefficient at T = 380-1450 K.
      
The thermophysical properties of KhN55VMTKYu nickel-based heat-resistant alloy
      
New experimental data are given for the KhN55VMTKYu industrial nickel-based heat-resistant alloy on its heat capacity at temperatures from 300 to 1000 K and on the thermal conductivity coefficient at T = 380-1450 K.
      
Radiation-conduction heat transfer in fibrous heat-resistant insulation under thermal effect
      
The conjugate diffusion model of radiation transfer and the approximation of radiant thermal conductivity are used to investigate the radiation-conduction heat transfer in a flat layer of fibrous heat-resistant insulation under the effect of fire.
      
On the Similarity Criteria for the Processes of High-Temperature Sulfur Corrosion of Heat-Resistant Alloys
      
A similarity parameter for the high-temperature sulfur corrosion of heat-resistant alloys is suggested.
      
A Correlation between the Heat- and Corrosion Resistance and the Long-Term Strength of Heat-Resistant Materials
      
Evaluating the long-term strength of heat-resistant alloys from their weight losses during the high-temperature oxidation or sulfur corrosion is shown to be feasible.
      
This allows to recommend the alloys as heat-resistant materials operating at a temperature up to 1573 K.
      
Multicomponent Heat-Resistant Coatings for Blades Produced Using Ion-Plasma Method
      
During the oxidation, the pretreated steel becomes covered with a heat-resistant film mainly consisting of Fe2O3 or Fe2O3 + Fe3O4; however, the film can either promote or impede steel oxidation depending on the isothermal exposure time.
      
A great protective action of the tungsten barrier and a real way to increase the service life of the heat-resistant coating are indicated.
      
Stabilizing the heat-resistant phases in protective coatings of the blading of turbines in gas-pumping aggregates
      
 

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