The transient temperature distribution of the ultrahigh-temperature ceramic (UHTC) thermal protection system (TPS) of hypersonic vehicles is calculated using finite volume method. Convective cooling enables a balance of heat increment and loss to be achieved. The temperature in the UHTC plate at the balance is approximately proportional to the surface heat flux and is approximately inversely proportional to the convective heat transfer coefficient. The failure modes of the UHTCs are presented by investigating the thermal stress field of the UHTC TPS under different thermal environments. The UHTCs which act as the thermal protection materials of hypersonic vehicles can fail because of the tensile stress at the lower surface, an area above th...
Ceramics are suitable for use in high temperature applications as well as corrosive environment. The...
Ceramics are suitable for use in high temperature applications as well as corrosive environment. The...
The thermal shock resistance of ceramics depends on not only the mechanical and thermal properties o...
Thermal shock resistance (TSR) of ultra-high temperature ceramic (UHTC) thermal protection system wa...
The thermal shock resistance (TSR) of the ultra-high temperature ceramic (UHTC) plate under convecti...
A model of thermal stress field from literature with temperature-dependent thermophysical properties...
A theoretical model is presented to assess the failure temperature for ultra-high temperature cerami...
Based on the sensitivities of material properties to temperature and the complexity of service envir...
One of the most complex issues that govern the design of a hypersonic vehicle is aerodynamic heating...
Taking the hafnium diboride ceramic as an example, the effects of heating rate, cooling rate, therma...
The effects of mechanical boundary conditions, often encountered in thermal-structural engineering, ...
AbstractThermal shock resistance is one of the most important parameters in Ultra-High Temperature C...
The leading edges of hypersonic space vehicle experience high temperature and stress due to prevaili...
The leading edges of hypersonic space vehicle experience high temperature and stress due to prevaili...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76198/1/AIAA-2006-7951-158.pd
Ceramics are suitable for use in high temperature applications as well as corrosive environment. The...
Ceramics are suitable for use in high temperature applications as well as corrosive environment. The...
The thermal shock resistance of ceramics depends on not only the mechanical and thermal properties o...
Thermal shock resistance (TSR) of ultra-high temperature ceramic (UHTC) thermal protection system wa...
The thermal shock resistance (TSR) of the ultra-high temperature ceramic (UHTC) plate under convecti...
A model of thermal stress field from literature with temperature-dependent thermophysical properties...
A theoretical model is presented to assess the failure temperature for ultra-high temperature cerami...
Based on the sensitivities of material properties to temperature and the complexity of service envir...
One of the most complex issues that govern the design of a hypersonic vehicle is aerodynamic heating...
Taking the hafnium diboride ceramic as an example, the effects of heating rate, cooling rate, therma...
The effects of mechanical boundary conditions, often encountered in thermal-structural engineering, ...
AbstractThermal shock resistance is one of the most important parameters in Ultra-High Temperature C...
The leading edges of hypersonic space vehicle experience high temperature and stress due to prevaili...
The leading edges of hypersonic space vehicle experience high temperature and stress due to prevaili...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76198/1/AIAA-2006-7951-158.pd
Ceramics are suitable for use in high temperature applications as well as corrosive environment. The...
Ceramics are suitable for use in high temperature applications as well as corrosive environment. The...
The thermal shock resistance of ceramics depends on not only the mechanical and thermal properties o...