https://doi.org/10.1051/epjconf/20159401074
Dynamic response of reverse Taylor impact based on DIC technology
State Key laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 10081, PR China
a Corresponding author: aiguo_pi@bit.edu.cn
Published online: 7 September 2015
Reverse ballistic impact test, which can obtain the response data of rod/projectile more comprehensive and quantitative than forward impact test, was widely used for the measurement of material dynamic and structure response. Based on the DIC technology and traditional optical measurement (high-speed camera measurement), the Taylor experiment of reverse ballistic with different length-diameter ratio and different impact velocities were carried out by 57 mm compression-shear type light-gas gun, which provides the instantaneous response data of the Taylor rod in microsecond level. Then, the transient structural deformation of the specimen and the characteristics of plastic wave propagation were analysed by DIC technology and compared with traditional optical measurement. Applying the theory of reverse Taylor impact deformation and combining with the simulation results by LS-DYNA, the rules of structure deformation and plastic wave propagation were obtained. The method above can be applied for the structure response of penetrator under the condition of reverse ballistic penetration.
© Owned by the authors, published by EDP Sciences, 2015
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