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Speckle Pattern Application to Woven Softgoods Space habitation is becoming more accessible and commercially available which is driving the development and testing of inflatable softgoods habitats that can be both lighter and more volume-efficient than heritage metallic pressure vessels. Photogrammetry test methods are used on new materials and larger inflatable softgood test articles to measure material displacement and strain during pressurization. A speckle pattern must be applied to the surface of interest for testing when using photogrammetry which is typically a very labor and time intensive process. Two methods were tested as options for a faster and more effective application to hand painting and temporary tattoos, which are the current application methods for the structural/restraint layer. One approach was to mix a plastic additive with a matte clear coat to create a speckle pattern that could be applied to the article. The second method uses a speckle paint gun to speckle the article after a white base coat is applied. Both methods adhered well to the Kevlar test sample materials and showed up well when examined with photogrammetry cameras. On the woven test samples the additive in a clear coat method could be applied evenly as was the paint gun method.
Document ID
20240007321
Acquisition Source
Marshall Space Flight Center
Document Type
Presentation
Authors
Rylee Cardon
(Marshall Space Flight Center Redstone Arsenal, United States)
Malik Thompson
(Marshall Space Flight Center Redstone Arsenal, United States)
Stephen Daniels
(SYNCOM SPACE SERVICES LLC - Contract)
Elizabeth S Coleman Schofield
(Jacobs (United States) Dallas, Texas, United States)
Date Acquired
June 7, 2024
Subject Category
Engineering (General)
Meeting Information
Meeting: Accelerating Space Commerce, Exploration, and New Discovery (ASCEND)
Location: Las Vegas, NV
Country: US
Start Date: July 30, 2024
End Date: August 1, 2024
Sponsors: Airbus (United States), Lockheed Missiles and Space Company (United States), Northrop Grumman (United States), RTX (United States), Aerojet Rocketdyne, Boeing (USA), Aerospace, ULA, ispace, BWXT, Maxar space systems , VAST, cadence, Astroscale
Funding Number(s)
PROJECT: 959547.20.01.04.62
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
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