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Erschienen in: Experimental Mechanics 3/2017

31.10.2016

Influence of Mass Ratio on Forward and Reverse Ballistic Impact Equivalence: Experiments, Simulations, and Mechanism Analysis

verfasst von: J. Liu, F. Huang, K. Xu, L. Liu, T. Zuo, A. Pi

Erschienen in: Experimental Mechanics | Ausgabe 3/2017

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Abstract

Reverse ballistic impact tests are widely used for studying dynamic responses because they provide more comprehensive and quantitative projectile/rod response results than forward impact tests. To examine equivalent forward and reverse conditions, a series of 8-cm length oxygen-free copper rods with varying length–diameter ratios was used in forward and reverse ballistic Taylor impact experiments with velocities and strain ratios of 104–215 m/s and 1.25 × 103–2.5 × 103 s-1, respectively. Digital image correlation (DIC) and traditional optical measurements were used to determine instantaneous responses at the μs level. Based on DIC, transient structural deformation, and plastic wave propagation, the forward and reverse length difference at similar velocities ranges from 2 to 6.95 %. Rules governing deformation from the perspective of energy, along with rules for changes in energy and plastic wave propagation were determined. The relative deformation energy error was below 5 % for target projectile mass ratios above 20.

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Metadaten
Titel
Influence of Mass Ratio on Forward and Reverse Ballistic Impact Equivalence: Experiments, Simulations, and Mechanism Analysis
verfasst von
J. Liu
F. Huang
K. Xu
L. Liu
T. Zuo
A. Pi
Publikationsdatum
31.10.2016
Verlag
Springer US
Erschienen in
Experimental Mechanics / Ausgabe 3/2017
Print ISSN: 0014-4851
Elektronische ISSN: 1741-2765
DOI
https://doi.org/10.1007/s11340-016-0225-3

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