MOONPRINT SOLUTIONS LLC — National Aeronautics and Space Administration SBIR Phase I: Z13

MOONPRINT SOLUTIONS LLC — SBIR Phase I award from National Aeronautics and Space Administration.

Amount
$149,978
Agency
National Aeronautics and Space Administration
Program / Phase
SBIR · Phase I
Topic
Z13
Solicitation
SBIR_23_P1
NAICS
Place of performance
DE
Period
2023-07-31 → 2024-02-02

Description

NASA is developing in situ water retrieval technologies to excavate regolith-based water deposits from various regions on the lunar surface, then transport, store, and process them into potable water, propellant, fuel cell reactants, and life support consumables for Artemis missions. Part of this logistics chain is a collapsible water container that can operate in harsh environments such as lunar dust and Permanently Shaded Regions (PSRs) where extreme cold as low as -213deg;C (-351deg;F) is encountered. nbsp;To this end, Moonprint Solutions will develop a Lunar Extreme Water Container (LEWC) that will support the transport of water from production or storage locations to inside pressurized habitable volumes. nbsp;The LEWC is a multi-layered collapsible assembly that has a packing factor gt; 100:1, can be deployed in cryogenic conditions without damage, and is freeze tolerant. nbsp;The LEWC is scalable in size and shape to meet operational constraints such as ergonomic handling while wearing a space suit, minimization of footprint in an airlock, and convenient stowage in vehicles. nbsp;It will be minimal mass but be robust enough to meet the durability requirements of interfacing with highly abrasive lunar dust and sharp rocks in nominal and off-nominal use (accidental drop, dragging, impact) with a target use life of gt;500 cycles. nbsp;The specialized materials used in the LEWC will be able to be flexed at cryogenic temperatures to accommodate deployment of an empty bag that is cold soaked, which is extremely challenging for polymeric materials. nbsp;The LEWC will also have dust mitigation technologies to limit the transfer of lunar dust into habitable spaces.nbsp;