An advanced design of an all metal, fast response, bipropellant, shut-off valve for use on long duration space missions is reported. The valve provides the flow control capability for a 1,000 lb thrust, bipropellant engine using oxygen difluoride and diborane as propellants. The shutoff seal selection is a soft-on-hard metal concept. The soft seal is a spherical shell that seats against a hard conical seat. Beryllium copper and beryllium nickel seals were selected to seal against an electrolyzed Inconel 718 seat. Poppet shaft sealing is achieved by use of hydroformed, Inconel 718 bellows. Two valve assemblies were fabricated and subjected to a series of tests including leak, response time, flow capacity, dry cycles, water cycles, liquid nit...
The technology required to provide acceptable contamination damage avoidance characteristics for pop...
Marshall Space Flight Center (MSFC) has developed a valve concept to replace traditional pyrotechnic...
A control valve that can throttle high-pressure cryogenic fluid embodies several design features tha...
An analysis and design effort directed to advancing the state-of-the-art of space storable isolation...
In-tank shutoff valve is installed with the valve poppet and actuator inside the tank to provide max...
The six most promising valve, regulator, and remote coupling concepts, representing the more radical...
A method of evaluating the normally open normally closed, explosive actuated valves that were select...
Design, fabrication, and testing of pneumatically operated liquid fluorine shutoff valv
Apollo service propulsion system rocket engine bipropellant valve improvement program - valve design...
Rocket engine bipropellant valve improvement for Apollo service propulsion syste
A technology program was conducted to identify and verify the optimum valve and actuation system con...
Valve concept evaluation, final candidate selection, design, manufacture, and demonstration testing ...
The design approach and development demonstration are presented for a flightweight, miniature, magne...
Valve concept has been devised which offers lightweight, simplified mechanism capable of automatic c...
In developing the highly successful bipropellant valves for the Apollo primary propulsion engines, a...
The technology required to provide acceptable contamination damage avoidance characteristics for pop...
Marshall Space Flight Center (MSFC) has developed a valve concept to replace traditional pyrotechnic...
A control valve that can throttle high-pressure cryogenic fluid embodies several design features tha...
An analysis and design effort directed to advancing the state-of-the-art of space storable isolation...
In-tank shutoff valve is installed with the valve poppet and actuator inside the tank to provide max...
The six most promising valve, regulator, and remote coupling concepts, representing the more radical...
A method of evaluating the normally open normally closed, explosive actuated valves that were select...
Design, fabrication, and testing of pneumatically operated liquid fluorine shutoff valv
Apollo service propulsion system rocket engine bipropellant valve improvement program - valve design...
Rocket engine bipropellant valve improvement for Apollo service propulsion syste
A technology program was conducted to identify and verify the optimum valve and actuation system con...
Valve concept evaluation, final candidate selection, design, manufacture, and demonstration testing ...
The design approach and development demonstration are presented for a flightweight, miniature, magne...
Valve concept has been devised which offers lightweight, simplified mechanism capable of automatic c...
In developing the highly successful bipropellant valves for the Apollo primary propulsion engines, a...
The technology required to provide acceptable contamination damage avoidance characteristics for pop...
Marshall Space Flight Center (MSFC) has developed a valve concept to replace traditional pyrotechnic...
A control valve that can throttle high-pressure cryogenic fluid embodies several design features tha...