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The dynamics of Al/Pt reactive multilayer ignition via pulsed-laser irradiation

Journal Article · · Applied Physics Letters
DOI:https://doi.org/10.1063/1.4937161· OSTI ID:22486218
; ; ;  [1]
  1. Sandia National Laboratories, Albuquerque, New Mexico 87123 (United States)
Reactive multilayers consisting of alternating layers of Al and Pt were irradiated by single laser pulses ranging from 100 μs to 100 ms in duration, resulting in the initiation of rapid, self-propagating reactions. The threshold intensities for ignition vary with the focused laser beam diameter, bilayer thickness, and pulse length and are affected by solid state reactions and conduction of heat away from the irradiated regions. High-speed photography was used to observe ignition dynamics during irradiation and elucidate the effects of heat transfer into a multilayer foil. For an increasing laser pulse length, the ignition process transitioned from a more uniform to a less uniform temperature profile within the laser-heated zone. A more uniform temperature profile is attributed to rapid heating rates and heat localization for shorter laser pulses, and a less uniform temperature profile is due to slower heating of reactants and conduction during irradiation by longer laser pulses. Finite element simulations of laser heating using measured threshold intensities indicate that micron-scale ignition of Al/Pt occurs at low temperatures, below the melting point of both reactants.
OSTI ID:
22486218
Journal Information:
Applied Physics Letters, Journal Name: Applied Physics Letters Journal Issue: 23 Vol. 107; ISSN APPLAB; ISSN 0003-6951
Country of Publication:
United States
Language:
English

Cited By (3)

Engineering of Al/CuO Reactive Multilayer Thin Films for Tunable Initiation and Actuation journal May 2018
A diffusion-limited reaction model for self-propagating Al/Pt multilayers with quench limits journal April 2018
SHS in Ni/Al Nanofoils: A Review of Experiments and Molecular Dynamics Simulations journal April 2018

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