NASA Marshall Space Flight Center's Materials and Processes Department, with support from the Propulsion Systems Department, has renewed the development and maintenance of a hybrid test bed for exposing ablative thermal protection materials to an environment similar to that seen in solid rocket motors (SRM). The Solid Fuel Torch (SFT), operated during the Space Shuttle program, utilized gaseous oxygen for oxidizer and an aluminized hydroxyl-terminated polybutadiene (HTPB) fuel grain to expose a converging section of phenolic material to a 400 psi, 2-phase flow combustion environment. The configuration allows for up to a 2 foot long, 5 inch diameter fuel grain cartridge. Wanting to now test rubber insulation materials with a turn-back featur...
WOS: 000325647000093The burning rate of the solid rocket propellants is one of the most important fa...
Two bio-derived fuels have been successfully tested in a laboratory scale hybrid rocket combustion c...
Low regression rates in hybrid rockets limit their use and capability, but additive aluminum nano-pa...
NASA Marshall Space Flight Center's Materials and Processes Department, with support from the Propul...
NASA Marshall Space Flight Center's Materials and Processes Department, with support from the Propul...
Utah State University has researched and developed a hybrid rocket system that uses a non-toxic, sim...
Using a high-pressure, two-dimensional hybrid motor, an experimental investigation was conducted on ...
Hybrid propulsion presents a promising alternative to conventional systems for in-space propulsion a...
An enthalpy-balance fuel-grain regression model is presented. The regression model, based on the lon...
Ballistic characterization of an extended group of innovative HTPB-based solid fuel formulations for...
An enthalpy-balance fuel-grain regression model is presented. The regression model, based on the lon...
An enthalpy-balance fuel-grain regression model is presented. The regression model, based on the lon...
Two bio-derived fuels have been successfully tested in a laboratory scale hybrid rocket combustion c...
Low regression rates in hybrid rockets limit their use and capability, but additive aluminum nano-pa...
Ballistic characterization of an extended group of innovative HTPB-based solid fuel formulations for...
WOS: 000325647000093The burning rate of the solid rocket propellants is one of the most important fa...
Two bio-derived fuels have been successfully tested in a laboratory scale hybrid rocket combustion c...
Low regression rates in hybrid rockets limit their use and capability, but additive aluminum nano-pa...
NASA Marshall Space Flight Center's Materials and Processes Department, with support from the Propul...
NASA Marshall Space Flight Center's Materials and Processes Department, with support from the Propul...
Utah State University has researched and developed a hybrid rocket system that uses a non-toxic, sim...
Using a high-pressure, two-dimensional hybrid motor, an experimental investigation was conducted on ...
Hybrid propulsion presents a promising alternative to conventional systems for in-space propulsion a...
An enthalpy-balance fuel-grain regression model is presented. The regression model, based on the lon...
Ballistic characterization of an extended group of innovative HTPB-based solid fuel formulations for...
An enthalpy-balance fuel-grain regression model is presented. The regression model, based on the lon...
An enthalpy-balance fuel-grain regression model is presented. The regression model, based on the lon...
Two bio-derived fuels have been successfully tested in a laboratory scale hybrid rocket combustion c...
Low regression rates in hybrid rockets limit their use and capability, but additive aluminum nano-pa...
Ballistic characterization of an extended group of innovative HTPB-based solid fuel formulations for...
WOS: 000325647000093The burning rate of the solid rocket propellants is one of the most important fa...
Two bio-derived fuels have been successfully tested in a laboratory scale hybrid rocket combustion c...
Low regression rates in hybrid rockets limit their use and capability, but additive aluminum nano-pa...