Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

Indirect ignition of energetic materials with laser-driven flyer plates

Not Accessible

Your library or personal account may give you access

Abstract

The impact of laser-driven flyer plates on energetic materials CL-20, PETN, and TATB has been investigated. Flyer plates composed of 25 μm thick Al were impacted into the energetic materials at velocities up to 1.3 km/s. The flyer plates were accelerated by means of an Nd:YAG laser pulse. The laser pulse generates rapidly expanding plasma between the flyer plate foil and the substrate to which it is adhered. As the plasma grows, a section of the metal foil is ejected at high speed, forming the flyer plate. The velocity of the flyer plate was determined using VISAR, time of flight, and high-speed video. The response of the energetic material to impact was determined by light emission recorded by an infrared-sensitive photodiode. Following post-impact analysis of the impacted energetic material, it was hypothesized that the light emitted by the material after impact is not due to the impact of the flyer itself but rather is caused by the decomposition of energetic material ejected (via the shock of flyer plate impact) into a cloud of hot products generated during the launch of the flyer plate. This hypothesis was confirmed through schlieren imaging of a flyer plate launch, clearly showing the ejection of hot gases and particles from the region surrounding the flyer plate launch and the burning of the ejected energetic material particles.

Full Article  |  PDF Article
More Like This
Laser-shocked energetic materials with metal additives: evaluation of chemistry and detonation performance

Jennifer L. Gottfried and Eric J. Bukowski
Appl. Opt. 56(3) B47-B57 (2017)

Energetic material response to ultrafast indirect laser heating

N. C. Dang, J. L. Gottfried, and F. C. De Lucia
Appl. Opt. 56(3) B85-B91 (2017)

High performance laser-driven flyers based on a refractory metamaterial perfect absorber

Xin Huang, Xiangbo Ji, Wenzhi Qin, Yao Wang, Liang Wang, Fuhua Gao, and Yidong Hou
Opt. Express 31(5) 7237-7248 (2023)

Cited By

You do not have subscription access to this journal. Cited by links are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Figures (13)

You do not have subscription access to this journal. Figure files are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Tables (2)

You do not have subscription access to this journal. Article tables are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.