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A History of Research and a Review of Recent Developments

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180<br />

Penetration <strong>and</strong> fragmentation<br />

7.23 Gelman, M.D., Richard, B.N. <strong>and</strong> Ito, Y.M. (1987) Impact <strong>of</strong> AP Projectile<br />

into Array <strong>of</strong> Large Caliber Boulders, US Army Engineer Waterways Experiment<br />

Station.<br />

7.24 Chen, W.F. <strong>and</strong> Pau, A.D. (1991) Finite element <strong>and</strong> Finite block methods in<br />

Geomechanics, Proc. <strong>of</strong> Third Int. Conf. on Constitutive Laws <strong>of</strong> Engineering<br />

Materials, Tucson, Arizona.<br />

7.25 Schwer, L.E., Rosinsky, R. <strong>and</strong> Day, J.A. (1987) Lagrangian technique for<br />

predicting earth penetration including penetrator response, Third International<br />

Symposium on Interaction <strong>of</strong> Non-nuclear Munitions with Structures, Mannheim,<br />

Germany, March.<br />

7.26 Creighton, D.C. (1982) Non-normal Projectile Penetration in Soil <strong>and</strong> Rock:<br />

User’s Guide for Computer Code PENCO2D, US Army Waterways Experiment<br />

Station Technical Report SL.82.7, Vicksburg, September.<br />

7.27 Matuska, D., Durrett, R.E. <strong>and</strong> Osborn, J.J. (1982) HULL User’s Guide for<br />

Three Dimensional Linking with EPIC3, Orl<strong>and</strong>o Technology Inc. Report<br />

ARBRL-CR-00484, Shalimar, Florida, July.<br />

7.28 Ito, Y.M., Nelson, R.B. <strong>and</strong> Ross-Perry, F.W. (1979) Three Dimensional Numerical<br />

Analysis <strong>of</strong> Earth Penetration Dynamics, US Defense Nuclear Agency Report<br />

DNA 5404 F, January.<br />

7.29 Yankelevsky, D.Z. (1983) Projectile penetration through a narrow drill in soil,<br />

Int. Journal <strong>of</strong> Impact Engineering, 1(4), p. 377.<br />

7.30 Young, C.W. <strong>and</strong> Young, E.R. (1985) Simplified Analytical Model <strong>of</strong> Penetration<br />

withLateral Loading , S<strong>and</strong>ia National Laboratories Report SAND-84–1635, May.<br />

7.31 Amini, A. <strong>and</strong> Anderson, J.B. (1993) Modelling <strong>of</strong> projectile penetration into<br />

geologic targets based on energy tracking <strong>and</strong> momentum impulse principle,<br />

Proc. <strong>of</strong> Sixth International Symp. on Interaction <strong>of</strong> Non-nuclear Munitions<br />

with Structures, Panama City Beach, Florida, May, p. 6.<br />

7.32 Pariseau, W.G. <strong>and</strong> Fairhurst, C. (1967) The force penetration characteristic<br />

for wedge penetration into rock, Int. Journal <strong>of</strong> Rock Mech. <strong>and</strong> Min. Science,<br />

4, p. 165.<br />

7.33 Anderson, W.F., Watson, A.J., Johnson, M.R. <strong>and</strong> McNeil, G.M. (1983)<br />

Optimization <strong>of</strong> rock/polymer composites to resist projectile penetration,<br />

Materiaux et Constructions, 16(95), 343.<br />

7.34 Whiffen, P. (1943) UK Road <strong>Research</strong> Laboratory Note No. MOS/311.<br />

7.35 Beth, R.A. (1946) Effects <strong>of</strong> impact <strong>and</strong> explosion, Terminal Ballistics <strong>of</strong> Concrete,<br />

Chap. 7, Vol. 1, Summary Tech Rep DW2, NRDC, Washington.<br />

7.36 Forrestal, M.J., Altman, B.S., Cargile, J.D. <strong>and</strong> Hanchak, S.J. (1993) An empirical<br />

equation for penetration depth <strong>of</strong> ogive-nosed projectiles into concrete targets,<br />

Proc. <strong>of</strong> 6th Int. Symp. on Interaction <strong>of</strong> Non-nuclear Munitions with Structures,<br />

Panama City Beach, Florida, USA, May.<br />

7.37 Brown, S.J. (1986) Energy release protection for pressurised systems, Part 2. <strong>Review</strong><br />

<strong>of</strong> studies into impact/terminal ballistics, Applied Mechanics <strong>Review</strong>, 39.<br />

7.38 Gold, V.M., Pearson, J.C. <strong>and</strong> Turci, J. (1993) Resistance <strong>of</strong> concrete <strong>and</strong><br />

reinforced concrete structures impacted by CU <strong>and</strong> TA projectiles, Proc. <strong>of</strong> 6th<br />

Symp. on the Interaction <strong>of</strong> Non-nuclear Munitions with Structures, Panama<br />

City Beach, Florida USA, May.<br />

7.39 Tate, A. (no date) A theory for the deceleration <strong>of</strong> long rods after impact, J.<br />

Mech. Phys. Solids, 15, 387.<br />

7.40 Peters, J., Anderson, W.F. <strong>and</strong> Watson, A.J. (1994) Determination <strong>of</strong> penetration<br />

parameters from the stress pulse generated during projectile penetration into<br />

cementitious materials, Structures Under Shock <strong>and</strong> Impact III, Comp. Mech.<br />

Pub., June, p. 235.

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