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- W2073646518 abstract "An experimental program has been executed to measure the system parameters relevant to the normal impact of both rigid and deformable blunt cylinders against soft 2024-0 aluminum plates over the velocity range from 60–600 m/s, involving speeds just below and well above the ballistic limit. The data are compared to the predictions of a previously developed theory involving rigid/plastic constitutive relations for a five-stage penetration process that includes the dynamic response of the target by means of shear transmitted at the interface, but neglects plate bending. Force histories, determined by a special measurement technique, were found to be in good agreement with predicted values although subject to a significant uncertainty resulting from base line shift induced by temporary circuit interruption and by spikes attributed to elastic wave action. Similarly, measured strains agreed well with theory within the range of expected experimental errors. Surprisingly excellent correlation considering the relative simplicity of the model was also noted for other parameters, including the terminal velocity of the projectile, plate deformation and plug diameters. The assumption of a uniform strain field inherent in the theoretical development was generally verified, as well as the confinement of shear action to a narrow zone near the crater. Inclusion in the analysis of the shearing response of the target improved the correlation, but even better coincidence would be achieved upon addition of the target bending resistance to the theoretical model." @default.
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- W2073646518 date "1984-01-01" @default.
- W2073646518 modified "2023-09-27" @default.
- W2073646518 title "Plate perforation phenomena due to normal impact by blunt cylinders" @default.
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- W2073646518 doi "https://doi.org/10.1016/0734-743x(84)90014-9" @default.
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