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Micromechanics-based Modeling of Cement Solidified in the MicrogravityGiven the prohibitive expense of transporting raw materials into space, in-situ resources alongside cement-like binders is envisioned to realize large-scale habitats on celestial bodies like the Moon and Mars. However, understanding the mechanical properties of cementitious materials in reduced gravity environments is crucial for effective design and engineering in extraterrestrial construction projects.

Using micromechanics-based approach, this research focuses on analyzing the impact of microgravity on the mechanical properties of cementitious materials by employing distinctive Scanning Electron Microscopy (SEM) images of tricalcium silicate (C3S) samples hydrated aboard the International Space Station (ISS).
Document ID
20240004656
Acquisition Source
Marshall Space Flight Center
Document Type
Poster
Authors
Namiko Yamamoto
(Pennsylvania State University State College, United States)
Vishnu Saseendran
(Pennsylvania State University State College, United States)
Peter Collins
(Pennsylvania State University State College, United States)
Aleksandra Radlińska ORCID
(Pennsylvania State University State College, United States)
Ibrahim Kaleel
(Glenn Research Center Cleveland, United States)
Evan Pineda
(Glenn Research Center Cleveland, United States)
Brett Bednarcyk
(Glenn Research Center Cleveland, United States)
Enrique Jackson
(Marshall Space Flight Center Redstone Arsenal, United States)
Date Acquired
April 16, 2024
Subject Category
Lunar and Planetary Science and Exploration
Meeting Information
Meeting: Marshall Jamboree & Poster Expo
Location: Huntsville, AL
Country: US
Start Date: May 16, 2024
Sponsors: Marshall Space Flight Center
Funding Number(s)
CONTRACT_GRANT: 80NSSC22K0083
CONTRACT_GRANT: SPEC5732
CONTRACT_GRANT: GRC-FN-Visitor-Code LT
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
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