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A lunar/Martian anchor emplacement systemOn the Moon or Mars, it is necessary to have an anchor, or a stable, fixed point able to support the forces necessary to rescue a stuck vehicle, act as a stake for a tent in a Martian gale, act as a fulcrum in the erection of general construction poles, or support tent-like regolith shields. The anchor emplacement system must be highly autonomous. It must supply the energy and stability for anchor deployment. The goal of the anchor emplacement system project is to design and build a prototype anchor and to design a conceptual anchor emplacement system. Various anchors were tested in a 1.3 cubic meter test bed containing decomposed granite. A simulated lunar soil was created by adjusting the moisture and compaction characteristics of the soil. We conducted tests on emplacement torque, amount of force the anchor could withstand before failure, anchor pull out force at various angles, and soil disturbances caused by placing the anchor. A single helix auger anchor performed best in this test bed based on energy to emplace, and the ultimate holding capacity. The anchor was optimized for ultimate holding capacity, minimum emplacement torque, and minimum soil disturbance in sandy soils yielding the following dimensions: helix diameter (4.45 cm), pitch (1.27 cm), blade thickness (0.15 cm), total length (35.56 cm), shaft diameter (0.78 cm), and a weight of 212.62 g. The experimental results showed that smaller diameter, single-helix augers held more force than larger diameter augers for a given depth. The emplacement system consists of a flywheel and a motor for power, sealed in a protective box supported by four legs. The flywheel system was chosen over a gear system based on its increased reliability in the lunar environment.
Document ID
19950006277
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Clinton, Dustin
(Idaho Univ. Moscow, ID, United States)
Holt, Andrew
(Idaho Univ. Moscow, ID, United States)
Jantz, Erik
(Idaho Univ. Moscow, ID, United States)
Kaufman, Teresa
(Idaho Univ. Moscow, ID, United States)
Martin, James
(Idaho Univ. Moscow, ID, United States)
Weber, Reed
(Idaho Univ. Moscow, ID, United States)
Date Acquired
September 6, 2013
Publication Date
January 1, 1993
Subject Category
Mechanical Engineering
Report/Patent Number
NASA-CR-197193
NAS 1.26:197193
Report Number: NASA-CR-197193
Report Number: NAS 1.26:197193
Accession Number
95N12690
Funding Number(s)
CONTRACT_GRANT: NASW-4435
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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