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Dynamic Regulation of Sub-Atmospheric Pressure for Constant and Cyclic Gas Loads During Testing of Spacesuit ComponentsNew iterations of the various subsystems within the spacesuit will benefit from a new sorbent technology. For example, sorbents used in the Trace Contaminant Control (TCC) and the Rapid Cycle Amine (RCA) systems within the Exploration Portable Life Support System (xPLSS), part of the Extra-Vehicular Mobility Unit (xEMU). For proper validation, the sub-atmospheric pressure needs to be maintained within a simulated 2 ft3 spacesuit volume. The traditional approach, which involves placing the entire vent loop within a hypobaric chamber, is not practical for the widespread testing of components and prototypes, as these specialized chambers are costly and not widely available. A two-stage regulator based sub-atmospheric pressure system is presented in this work. The method regulates the pressure based on pressure differentials between the pressure regulation pump, the test system, and the ambient environment. The performance of this system is demonstrated using data collected during a 150+ hour non-regenerative TCC sorbent evaluation, several 24-hour regenerative TCC sorbent evaluations with different regeneration cycles, and an 8-hour RCA sorbent evaluation, all under xEMU operating conditions. For regulation, the inlet regulator was set to propagate a small leak to increase the stability of the system as the gas load from the testing system changes. It was also found that controlling the input flow rate that replaces the material lost during regeneration is critical for ensuring the stability of the system. This system provided excellent pressure regulation, without adjustments, for constant loads during shorter time evaluations (hours), while longer time evaluations (days) are easily obtainable with periodic regulator adjustments. A second method is under development to address longer-term stability and to automate pressure regulation. It will incorporate flow and pressure measurements to dynamically control a set of electronically controlled proportional valves for adjusting the pumping speed and air bleed supply.
Document ID
20260002915
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Nicholas F Materer ORCID
(XploSafe (United States) Stillwater, United States)
John R Tidwell ORCID
(XploSafe (United States) Stillwater, United States)
Evgueni B Kadossov
(XploSafe (United States) Stillwater, United States)
Michael L Teicheira ORCID
(XploSafe (United States) Stillwater, United States)
Shoaib Shaikh
(XploSafe (United States) Stillwater, United States)
Date Acquired
April 9, 2026
Publication Date
July 12, 2026
Publication Information
Publisher: International Conference on Environmental Systems
Subject Category
Man/System Technology and Life Support
Nonmetallic Materials
Report/Patent Number
ICES-2026-181
Meeting Information
Meeting: 55th International Conference on Environmental Systems (ICES)
Location: Rio Grande
Country: PR
Start Date: July 12, 2026
End Date: July 16, 2026
Sponsors: International Conference on Environmental Systems
Funding Number(s)
CONTRACT_GRANT: 80NSSC23CA167
CONTRACT_GRANT: 80NSSC22PB246
CONTRACT_GRANT: 80NSSC21C0579
CONTRACT_GRANT: 80NSSC25C0466
CONTRACT_GRANT: 80NSSC25C0408
CONTRACT_GRANT: 80NSSC225046
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
Single Expert
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