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Journal Article

Citation

Goodwin PM, Marshall BR, Stevens GD, Dattelbaum DM. Rev. Sci. Instrum. 2013; 84(3): 035002.

Affiliation

Center for Integrated Nanotechnologies (MPA-CINT), MS K771, Los Alamos National Laboratory, Los Alamos, New Mexico 87544, USA.

Copyright

(Copyright © 2013, American Institute of Physics)

DOI

10.1063/1.4793489

PMID

23556841

Abstract

Non-invasive detection methods for tracking gun-launched projectiles are important not only for assessment of gun performance but are also essential for timing a variety of diagnostics, for example, to investigate plate-impact events for shock compression experiments. Measurement of the time of passage of a projectile moving inside of the gun barrel can be achieved by detection of the transient hoop strain induced in the barrel of a light-gas gun by the passage of the projectile using external, barrel surface-mounted optical fiber-Bragg grating strain gauges. Optical fiber-Bragg gratings have been implemented and their response characterized on single-stage and two-stage light gas guns routinely used for dynamic experimentation at Los Alamos National Laboratory. Two approaches, using either broadband or narrowband illumination, were used to monitor changes in the Bragg wavelength of the fiber-Bragg gratings. The second approach, using narrowband laser illumination, offered the highest sensitivity. The feasibility of using these techniques to generate early, pre-event signals useful for triggering high-latency diagnostics was demonstrated.


Language: en

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