In order to study the combined effect of aerodynamic heating, pneumatic pressure and external constraint on the thermal shock resistance (TSR) of ZnS wave-transparent ceramic in its actual service process, the theoretical model is established by introducing the analytical solution of transient heat conduction problem of ZnS plate under aerodynamic heating into its thermal stress field model. The numerical simulation is also conducted not only to examine the theoretical model, but also to study how to improve the TSR. The influences of constraint and pneumatic pressure are studied and the effects of loosing constraint and active cooling are focused on. The study shows that the critical rupture temperature difference of simply supported ZnS p...
The thermal shock failure has been recognized as one of key failure modes of chemical vapor deposite...
AbstractThermal shock resistance is one of the most important parameters in Ultra-High Temperature C...
A temperature-damage-dependent thermal shock resistance model for ultra-high temperature ceramics is...
A model of thermal stress field from literature with temperature-dependent thermophysical properties...
The thermal shock resistance of ceramics depends on not only the mechanical and thermal properties o...
For traditional bulk ceramics, the compressive strength is much greater than the tensile strength. T...
Taking the hafnium diboride ceramic as an example, the effects of heating rate, cooling rate, therma...
Thermal shock resistance (TSR) of ultra-high temperature ceramic (UHTC) thermal protection system wa...
This paper conducts thermal shock case studies for three typical thermal shock specimens that are im...
Based on the sensitivities of material properties to temperature and the complexity of service envir...
The thermal shock behavior of ceramics with the cooling medium temperatures in the range 5 degrees C...
The thermal shock resistance (TSR) of the ultra-high temperature ceramic (UHTC) plate under convecti...
Since the dome experiences the convective heat loading, thermal stress will be generated in the thic...
Since the dome experiences the convective heat loading, thermal stress will be generated in the thic...
The effects of mechanical boundary conditions, often encountered in thermal-structural engineering, ...
The thermal shock failure has been recognized as one of key failure modes of chemical vapor deposite...
AbstractThermal shock resistance is one of the most important parameters in Ultra-High Temperature C...
A temperature-damage-dependent thermal shock resistance model for ultra-high temperature ceramics is...
A model of thermal stress field from literature with temperature-dependent thermophysical properties...
The thermal shock resistance of ceramics depends on not only the mechanical and thermal properties o...
For traditional bulk ceramics, the compressive strength is much greater than the tensile strength. T...
Taking the hafnium diboride ceramic as an example, the effects of heating rate, cooling rate, therma...
Thermal shock resistance (TSR) of ultra-high temperature ceramic (UHTC) thermal protection system wa...
This paper conducts thermal shock case studies for three typical thermal shock specimens that are im...
Based on the sensitivities of material properties to temperature and the complexity of service envir...
The thermal shock behavior of ceramics with the cooling medium temperatures in the range 5 degrees C...
The thermal shock resistance (TSR) of the ultra-high temperature ceramic (UHTC) plate under convecti...
Since the dome experiences the convective heat loading, thermal stress will be generated in the thic...
Since the dome experiences the convective heat loading, thermal stress will be generated in the thic...
The effects of mechanical boundary conditions, often encountered in thermal-structural engineering, ...
The thermal shock failure has been recognized as one of key failure modes of chemical vapor deposite...
AbstractThermal shock resistance is one of the most important parameters in Ultra-High Temperature C...
A temperature-damage-dependent thermal shock resistance model for ultra-high temperature ceramics is...