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The OSIRIS-REx Spacecraft and the Touch-and-Go Sample Acquisition Mechanism (TAGSAM)The Origins, Spectral-Interpretation, Resource-Identification, Security and Regolith- Explorer (OSIRIS-REx) spacecraft supports all aspects of the mission science objectives, from extensive remote sensing at the asteroid Bennu, to sample collection and return to Earth. In general, the success of planetary missions requires the collection, return, and analysis of data, which in turn depends on the successful operation of instruments and the host spacecraft. In the case of OSIRIS-REx, a sample-return mission, the spacecraft must also support the acquisition, safe stowage, and return of the sample. The target asteroid is Bennu, a B-class near-Earth asteroid roughly 500 m diameter. The Lockheed Martin-designed and developed OSIRIS-REx spacecraft draws significant heritage from previous missions and features the Touch-and-Go-Sample-Acquisition-Mechanism, or TAGSAM, to collect sample from the surface of Bennu. Lockheed Martin developed TAGSAM as a novel, simple way to collect samples on planetary bodies. During short contact with the asteroid surface, TAGSAM releases curation-grade nitrogen gas, mobilizing the surface regolith into a collection chamber. The contact surface of TAGSAM includes "contact pads", which are present to collect surface grains that have been subject to space weathering. Extensive 1-g laboratory testing, "reduced-gravity" testing (via parabolic flights on an airplane), and analysis demonstrate that TAGSAM will collect asteroid material in nominal conditions, and a variety of off-nominal conditions, such as the presence of large obstacles under the TAGSAM sampling head, or failure in the sampling gas firing. TAGSAM, and the spacecraft support of the instruments, are central to the success of the mission.
Document ID
20180007115
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Bierhaus, E. B.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Clark, B. C.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Harris, J. W.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Payne, K. S.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Dubisher, R. D.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Wurts, D. W.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Hund, R. A.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Kuhns, R. M.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Linn, T. M.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Wood, J. L.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
May, A. J.
(Lockheed Martin Space Systems Co. Littleton, CO, United States)
Dworkin, J. P.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Beshore, E.
(Arizona Univ. Tucson, AZ, United States)
Lauretta, D. S.
(Arizona Univ. Tucson, AZ, United States)
Date Acquired
October 30, 2018
Publication Date
September 20, 2018
Publication Information
Publication: Space Science Reviews
Publisher: Springer Netherlands
Volume: 214
Issue: 8
ISSN: 0038-6308
e-ISSN: 1572-9672
Subject Category
Spacecraft Instrumentation And Astrionics
Report/Patent Number
GSFC-E-DAA-TN61609
E-ISSN: 1572-9672
Report Number: GSFC-E-DAA-TN61609
ISSN: 0038-6308
Funding Number(s)
CONTRACT_GRANT: NNG12FD66C
Distribution Limits
Public
Copyright
Other
Keywords
Spacecraft
Asteroid
TAGSAM
OSIRIS-REx
Bennu

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