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Advanced Compatibility Characterization Of AF-M315E With Spacecraft Propulsion System Materials ProjectAll spacecraft require propulsion systems for thrust and maneuvering. Propulsion systems can be chemical, nuclear, electrical, cold gas or combinations thereof. Chemical propulsion has proven to be the most reliable technology since the deployment of launch vehicles. Performance, storability, and handling are three important aspects of liquid chemical propulsion. Bipropellant systems require a fuel and an oxidizer for propulsion, but monopropellants only require a fuel and a catalyst for propulsion and are therefore simpler and lighter. Hydrazine is the state of the art propellant for monopropellant systems, but has drawbacks because it is highly hazardous to human health, which requires extensive care in handling, complex ground ops due to safety and environmental considerations, and lengthy turnaround times for reusable spacecraft. All users of hydrazine monopropellant must contend with these issues and their associated costs. The development of a new monopropellant, intended to replace hydrazine, has been in progress for years. This project will apply advanced techniques to characterize the engineering properties of materials used in AF-M315E propulsion systems after propellant exposure. AF-M315E monopropellant has been selected HQ's Green Propellant Infusion Mission (GPIM) to replace toxic hydrazine for improved performance and reduce safety and health issues that will shorten reusable spacecraft turn-around time. In addition, this project will fundamentally strengthen JSC's core competency to evaluate, use and infuse liquid propellant systems.
Document ID
20140009383
Acquisition Source
Johnson Space Center
Document Type
Other
Authors
McClure, Mark B.
(NASA White Sands Test Facility NM, United States)
Greene, Benjamin
(Jacobs Technology, Inc. Las Cruces, NM, United States)
Date Acquired
July 17, 2014
Publication Date
January 1, 2014
Subject Category
Propellants And Fuels
Spacecraft Propulsion And Power
Report/Patent Number
JSC-CN-31304
Report Number: JSC-CN-31304
Distribution Limits
Public
Copyright
Public Use Permitted.
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