EXPLOSIVE SENSITIVITY OF PETN-ALUMINUM COMPOSITES TO PULSED LASER RADIATION

Dependences of nanosize aluminum inclusions’ absorptivity on their size for the first and second harmonics of YAG-Nd laser were calculated. The values of the minimal critical energy density for the initiation by the first and second harmonics of YAG-Nd laser are 206.7 (λ = 1064 nm) and 152.6 (λ = 53...

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Main Authors: A. V. Kalenskii, I. Yu. Zykov, M. V. Ananyeva, A. A. Zvekov, B. P. Aduev
Format: Article
Language:English
Published: Kemerovo State University 2014-09-01
Series:Вестник Кемеровского государственного университета
Subjects:
Online Access:https://vestnik.kemsu.ru/jour/article/view/1250
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author A. V. Kalenskii
I. Yu. Zykov
M. V. Ananyeva
A. A. Zvekov
B. P. Aduev
author_facet A. V. Kalenskii
I. Yu. Zykov
M. V. Ananyeva
A. A. Zvekov
B. P. Aduev
author_sort A. V. Kalenskii
collection DOAJ
description Dependences of nanosize aluminum inclusions’ absorptivity on their size for the first and second harmonics of YAG-Nd laser were calculated. The values of the minimal critical energy density for the initiation by the first and second harmonics of YAG-Nd laser are 206.7 (λ = 1064 nm) and 152.6 (λ = 532 nm) mJ/cm2 with radii of aluminum inclusions 100 and 49 nm respectively. The values of the minimal critical energy density for the initiation PETN with nanosize aluminum were experimentally measured. The calculated minimal critical energy density for the initiation by the first and second harmonics is different by 1.4 times, which is in good agreement with the experiment, where the difference is 1.6 times.
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spelling doaj.art-53e246ff9722451ab365b0fa75b11f5d2023-07-13T12:08:48ZengKemerovo State UniversityВестник Кемеровского государственного университета2078-89752078-89832014-09-0103-32112161249EXPLOSIVE SENSITIVITY OF PETN-ALUMINUM COMPOSITES TO PULSED LASER RADIATIONA. V. Kalenskii0I. Yu. Zykov1M. V. Ananyeva2A. A. Zvekov3B. P. Aduev4Kemerovo State UniversityKemerovo State UniversityKemerovo State UniversityInstitute of Coal Chemistry and Material Science of the Siberian Branch of the RASInstitute of Coal Chemistry and Material Science of the Siberian Branch of the RASDependences of nanosize aluminum inclusions’ absorptivity on their size for the first and second harmonics of YAG-Nd laser were calculated. The values of the minimal critical energy density for the initiation by the first and second harmonics of YAG-Nd laser are 206.7 (λ = 1064 nm) and 152.6 (λ = 532 nm) mJ/cm2 with radii of aluminum inclusions 100 and 49 nm respectively. The values of the minimal critical energy density for the initiation PETN with nanosize aluminum were experimentally measured. The calculated minimal critical energy density for the initiation by the first and second harmonics is different by 1.4 times, which is in good agreement with the experiment, where the difference is 1.6 times.https://vestnik.kemsu.ru/jour/article/view/1250aluminum nanoparticlesabsorptivitysimulationenergy materials
spellingShingle A. V. Kalenskii
I. Yu. Zykov
M. V. Ananyeva
A. A. Zvekov
B. P. Aduev
EXPLOSIVE SENSITIVITY OF PETN-ALUMINUM COMPOSITES TO PULSED LASER RADIATION
Вестник Кемеровского государственного университета
aluminum nanoparticles
absorptivity
simulation
energy materials
title EXPLOSIVE SENSITIVITY OF PETN-ALUMINUM COMPOSITES TO PULSED LASER RADIATION
title_full EXPLOSIVE SENSITIVITY OF PETN-ALUMINUM COMPOSITES TO PULSED LASER RADIATION
title_fullStr EXPLOSIVE SENSITIVITY OF PETN-ALUMINUM COMPOSITES TO PULSED LASER RADIATION
title_full_unstemmed EXPLOSIVE SENSITIVITY OF PETN-ALUMINUM COMPOSITES TO PULSED LASER RADIATION
title_short EXPLOSIVE SENSITIVITY OF PETN-ALUMINUM COMPOSITES TO PULSED LASER RADIATION
title_sort explosive sensitivity of petn aluminum composites to pulsed laser radiation
topic aluminum nanoparticles
absorptivity
simulation
energy materials
url https://vestnik.kemsu.ru/jour/article/view/1250
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AT iyuzykov explosivesensitivityofpetnaluminumcompositestopulsedlaserradiation
AT mvananyeva explosivesensitivityofpetnaluminumcompositestopulsedlaserradiation
AT aazvekov explosivesensitivityofpetnaluminumcompositestopulsedlaserradiation
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