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1
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0000830838
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A Critical Study of the Hopkinson Pressure Bar
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London, Series A
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Davies, R. M., “A Critical Study of the Hopkinson Pressure Bar,” Phil. Tram. Roy. Soc. London, Series A, 240, 376,1948.
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Davies, R.M.1
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13644254683
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Some Experiments with the Split Hopkinson Pressure Bar
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Lindholm, U. S., “Some Experiments with the Split Hopkinson Pressure Bar,” J. Mech. Phys. Solids, 12, 317,1964.
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Lindholm, U.S.1
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3
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0016472796
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Two Dimensional Analysis of the Split Hopkinson Pressure Bar System
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Bertholf, L. D., and Karnes, C. H., “Two Dimensional Analysis of the Split Hopkinson Pressure Bar System,” J. Mech. Phys. Solids, 23, 1, 1975.
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J. Mech. Phys. Solids
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Bertholf, L.D.1
Karnes, C.H.2
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5
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0000581714
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The Use of Flat-Ended Projectiles for Determining Dynamic Yield Stress I: Theoretical Considerations
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Taylor, G. I., “The Use of Flat-Ended Projectiles for Determining Dynamic Yield Stress I: Theoretical Considerations,” Proc Roy. Soc. London, A 194, 289, 1948.
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Taylor, G.I.1
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6
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The Use of Flat-Ended Projectiles for Determining Dynamic Yield Stress II: Tests on Various Metallic Materials
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Whiffen, A. C., “The Use of Flat-Ended Projectiles for Determining Dynamic Yield Stress II: Tests on Various Metallic Materials,” Proc. Royal Soc. London, A194, 300, 1948.
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Proc. Royal Soc. London
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Whiffen, A.C.1
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7
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49849128624
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A Theory for the Mushrooming of Flat-Ended Projectiles Impinging on a Flat Rigid Anvil Using Energy Considerations
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Hawkyard, J. B., “A Theory for the Mushrooming of Flat-Ended Projectiles Impinging on a Flat Rigid Anvil Using Energy Considerations,” Int. J. Mech. Sci., 11, 313,1969.
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Hawkyard, J.B.1
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8
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0042033807
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On the Equation of Motion of the Undeformed Section of A Taylor Specimen
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Jones, S. E., Gillis, P. P., and Foster, J. C. Jr., “On the Equation of Motion of the Undeformed Section of A Taylor Specimen,” J. Appl. Phys., 61, 21, 15,1987.
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(1987)
J. Appl. Phys
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, pp. 15
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Jones, S.E.1
Gillis, P.P.2
Foster, J.C.3
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9
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0026142540
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A One-Dimensional, Two-Phase Flow Model for Taylor Impact Specimens
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Jones, S. E., Gillis, P. P., Foster, J. C., Jr., and Wilson, L. L. “A One-Dimensional, Two-Phase Flow Model for Taylor Impact Specimens,” J. Engr. Mat’ls Tech., Trans. ASME, 113, 228, 1991.
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Jones, S.E.1
Gillis, P.P.2
Foster, J.C.3
Wilson, L.L.4
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10
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84983140731
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submitted for publication
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Jones, S. E., Augustus, S., Drinkard, J. A. and L. L. Wilson, “An Elementary Theory for the Taylor Impact Test,” submitted for publication.
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An Elementary Theory for the Taylor Impact Test
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Jones, S.E.1
Augustus, S.2
Drinkard, J.A.3
Wilson, L.L.4
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11
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36549104592
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Evaluation of Cylinder Impact Test Data for Constitutive Model Constants
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Johnson, G. R. and Holmquist, T. J., “Evaluation of Cylinder Impact Test Data for Constitutive Model Constants,” J. Appl. Phys., 64, 3901, 1988.
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Johnson, G.R.1
Holmquist, T.J.2
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12
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84983152002
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submitted for publication
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Allen, D. J., Rule, W. K., and Jones, S. E., “Optimizing Material Strength Constants Numerically Extracted from Taylor Test Data,” submitted for publication.
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Optimizing Material Strength Constants Numerically Extracted from Taylor Test Data
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Allen, D.J.1
Rule, W.K.2
Jones, S.E.3
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13
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84983153363
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An Engineering Analysis of Plastic Wave Propagation in the Taylor Test
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Jones, S. E., Maudlin, P. J., and Foster, J. C. Jr., “An Engineering Analysis of Plastic Wave Propagation in the Taylor Test,” accepted for publication in the International Journal of Impact Engineering.
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Accepted for Publication in the International Journal of Impact Engineering
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Jones, S.E.1
Maudlin, P.J.2
Foster, J.C.3
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14
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84983147890
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A Continuum Mechanics Code Analysis of Steady Plastic Wave Propagation in the Taylor Test
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Maudlin, P. J., Foster, J. C. Jr., and Jones, S. E., “A Continuum Mechanics Code Analysis of Steady Plastic Wave Propagation in the Taylor Test,” accepted for publication in the International Journal of Impact Engineering.
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Accepted for Publication in the International Journal of Impact Engineering
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Maudlin, P.J.1
Foster, J.C.2
Jones, S.E.3
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15
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0029423797
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Constitutive Modeling Using the Taylor Impact Test
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Y. D. S. Rajapakse and J. R. Vinson, eds., 1995 ASME International Mechanical Engineering Congress and Exposition, San Francisco, CA
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Jones, S. E., Maudlin, P. J., and Foster, J. C., Jr., “Constitutive Modeling Using the Taylor Impact Test,” High Strain Rate Effects on Polymer, Metal and Ceramic Matrix Composites and Other Advanced Materials, Y. D. S. Rajapakse and J. R. Vinson, eds., 1995 ASME International Mechanical Engineering Congress and Exposition, San Francisco, CA, 1995.
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(1995)
High Strain Rate Effects on Polymer, Metal and Ceramic Matrix Composites and Other Advanced Materials
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Jones, S.E.1
Maudlin, P.J.2
Foster, J.C.3
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16
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84969985954
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A Constitutive Model and Data for Metals Subjected to Large Strains, High Strain Rates, and High Temperatures
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The Hague, The Netherlands
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Johnson, G. R., and Cook, W., “A Constitutive Model and Data for Metals Subjected to Large Strains, High Strain Rates, and High Temperatures,” Proc. 7th Int. Symp. On Ballistics, The Hague, The Netherlands, 541, 1983.
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Proc. 7Th Int. Symp. on Ballistics
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Johnson, G.R.1
Cook, W.2
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17
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84983204162
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Dynamic Plastic Response of Metals Under Pressure-Shear Impact
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J. Mescall and V. Weiss, eds., Plenum Press, New York
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Clifton, R. J., Gilat, A, and Li, C. H., “Dynamic Plastic Response of Metals Under Pressure-Shear Impact,” in Material Behavior Under High Stress and Ultrahigh Loading Rates, J. Mescall and V. Weiss, eds., Plenum Press, New York, 1983.
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(1983)
Material Behavior under High Stress and Ultrahigh Loading Rates
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Clifton, R.J.1
Gilat, A.2
Li, C.H.3
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