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  • 1
    Publication Date: 2007-04-01
    Print ISSN: 0022-4898
    Electronic ISSN: 1879-1204
    Topics: Architecture, Civil Engineering, Surveying , Geosciences , Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Published by Elsevier
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  • 2
    Publication Date: 2004-12-14
    Description: This paper presents viewgraphs of granular materials research at NASA-Glenn. The topics include: 1) Impulse dispersion of a tapered granular chain; 2) High Speed Digital Images of Tapered Chain Dynamics; 3) Impulse Dispersion; 4) Three Dimensional Granular Bed Experimental Setup; 5) Magnetic Resonance Imaging of Fluid Flow in Porous Media; and 6) Net Charge on Granular Materials (NCharG).
    Keywords: Nonmetallic Materials
    Type: Sixth Microgravity Fluid Physics and Transport Phenomena Conference: Exposition Topical Areas 1-6; Volume 2; 609- 621; NASA/CP-2002-211212/VOL2
    Format: text
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  • 3
    Publication Date: 2019-07-13
    Description: Testing in relevant environments is key to exploration mission hardware development. This is true on both the component level (in early development) and system level (in late development stages). During ISRU missions the hardware will interface with the soil (digging, roving, etc) in a vacuum environment. A relevant test environment will therefore involve a vacuum chamber with a controlled, conditioned simulant bed. However, in earth-based granular media, such as lunar soil simulant, gases trapped within the material pore structures and water adsorbed to all particle surfaces will release when exposed to vacuum. Early vacuum testing has shown that this gas release can occur violently, which loosens and weakens the simulant, altering the consolidation state. The Vacuum Facility #13, a mid-size chamber (3.66m tall, 1.5m inner diameter) at the NASA Glenn Research Center has been modified to create a soil mechanics test facility. A 0.64m deep by 0.914m square metric ton bed of lunar simulant was placed under vacuum using a variety of pumping techniques. Both GRC-3 and LHT-3M simulant types have been used. An electric cone penetrometer was used to measure simulant strength properties at vacuum including: cohesion, friction angle, bulk density and shear modulus. Simulant disruptions, caused by off gassing, affected the strength properties, but could be mitigated by reducing pump rate. No disruptions were observed at pressures below 2.5Torr, regardless of the pump rate. However, slow off gassing of the soil lead to long test times, a full week, to reach 10-5Torr. This work highlights the need for robotic machine-simulant hardware and operations in vacuum to expeditiously perform (sub-)systems tests.
    Keywords: Lunar and Planetary Science and Exploration
    Type: E-18100 , AIAA 50th Aerospace Sciences Meeting and Exhibition; Jan 09, 2012 - Jan 12, 2012; Nashville, TN; United States
    Format: application/pdf
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  • 4
    Publication Date: 2019-08-13
    Description: No abstract available
    Keywords: Lunar and Planetary Science and Exploration
    Type: E-664021
    Format: application/pdf
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  • 5
    Publication Date: 2019-07-13
    Description: Accurately predicting the excavation force that will be encountered by digging tools on the lunar surface is a crucial element of in-situ resource utilization (ISRU). Based on principles of soil mechanics, this paper develops an analytical model that is relatively simple to apply and uses soil parameters that can be determined by traditional soil strength tests. The influence of important parameters on the excavation force is investigated. The results are compared with that predicted by other available theories. Results of preliminary soil tests on lunar stimulant are also reported.
    Keywords: Lunar and Planetary Science and Exploration
    Type: 45th AIAA Aerospace Sciences Meeting Exhibit; Jan 08, 2007 - Jan 11, 2007; Reno, NV; United States
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  • 6
    Publication Date: 2019-07-13
    Description: The force required to pull 7t and 40t polyhedral boulders from the surface of an asteroid is simulated using the discrete element method considering the effects of microgravity, regolith cohesion and boulder acceleration. The connection between particle surface energy and regolith cohesion is estimated by simulating a cohesion sample tearing test. An optimal constant acceleration is found where the peak net force from inertia and cohesion is a minimum. Peak pulling forces can be further reduced by using linear and quadratic acceleration functions with up to a 40% reduction in force for quadratic acceleration.
    Keywords: Space Sciences (General)
    Type: NF1676L-18557 , ASCE International Conference on Engineering, Science, Construction and Operations in Challenging Environments; Oct 27, 2014 - Oct 29, 2014; St. Louis, MO; United States
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  • 7
    Publication Date: 2019-07-12
    Description: We have done a complete flowability characterization of the lunar soil simulant, JSC-1a, following closely the ASTM-6773 standard for the Schulze ring shear test. The measurements, which involve pre-shearing the material before each yield point, show JSC-1a to be cohesionless, with an angle of internal friction near 40 deg. We also measured yield loci after consolidating the material in a vibration table which show it to have significant cohesion (approximately equal to 1 kPa) and an angle of internal friction of about 60 deg. Hopper designs based on each type of flowability test differ significantly. These differences highlight the need to discern the condition of the lunar soil in the specific process where flowability is an issue. We close with a list not necessarily comprehensive of engineering rules of thumb that apply to powder flow in hoppers.
    Keywords: Fluid Mechanics and Thermodynamics
    Type: NASA/TM-2009-215625 , E-16938
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