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Shock and Vibration
Volume 2017 (2017), Article ID 8351791, 19 pages
https://doi.org/10.1155/2017/8351791
Research Article

Pyroshock Acceleration Field Reconstruction in Temporal and Spectral Domains Based on Laser Shock Scanning and Iterative Decomposition and Synthesis Considering Stop Band Effects

Department of Aerospace Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea

Correspondence should be addressed to Jung-Ryul Lee; rk.ca.tsiak@rrjeel

Received 31 May 2017; Revised 25 August 2017; Accepted 17 September 2017; Published 26 October 2017

Academic Editor: Vadim V. Silberschmidt

Copyright © 2017 Yong-Woon Kim et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Supplementary Material

1. Fig 3.16 (a)_SV_2050963: Pyroshock wave propagation image of point explosive induced pyroshock on the disk type specimen.

2. Fig. 3.16 (b)_Far field_SV_2050964: Shock response spectrum image of point explosive induced pyroshock on the disk type specimen (Far field).

3. Fig. 3.16 (b)_Mid field_SV_2050965: Shock response spectrum image of point explosive induced pyroshock on the disk type specimen (Mid field).

4. Fig. 3.16 (b)_Near field_SV_2050966: Shock response spectrum image of point explosive induced pyroshock on the disk type specimen (Near field).

5. Fig.3.7 (a)_SV_2050959: Pyroshock wave propagation image of linear explosive induced pyroshock on the CFRP specimen.

6. Fig.3.7 (b)_Far field_SV_2050960: Shock response spectrum image of linear explosive induced pyroshock on the CFRP specimen (Far field).

7. Fig.3.7 (b)_Mid field_SV_2050961: Shock response spectrum image of linear explosive induced pyroshock on the CFRP specimen (Mid field).

8. Fig.3.7 (b)_Near field_SV_2050962: Shock response spectrum image of linear explosive induced pyroshock on the CFRP specimen (Near field).

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