162
5 Projectile Penetrations into Coarse Aggregated UHPCC Targets
O’NEIL E F, NEELEY B D, CARGILE J D. Tensile properties of very-high-strength concrete for
penetration-resistant structures [J]. Shock and Vibration, 1999, 6(5–6): 237–245.
REN G M, WU H, FANG Q. Determinations of HJC constitutive model parameters for normal
strength concrete [J]. Journal of Vibration shock, 2016, 35(18): 9–16. (in Chinese).
REN G M, WU H, FANG Q. Parameters of HJC model for high-strength concrete-like materials
under projectile impact [J]. International Journal Protection Structures, 2017, 8(3): 352–367.
RONG Z D, SUN W, ZHANG Y S. Dynamic compression behavior of ultra-high performance
cement based composites [J]. International Journal of Impact Engineering, 2010, 37(5): 515–520.
TAI Y S. Flat ended projectile penetrating ultra-high strength concrete plate target [J]. Theoretical
and Applied Fracture Mechanics, 2009, 51(2): 117–128.
WERNER S, THIENEL K-C, KUSTERMANN A. Study of fractured surfaces of concrete caused
by projectile impact[J]. International Journal of Impact Engineering, 2013, 52: 23–27.
WU H, FANG Q, GONG Z M. Experimental and engineering analyses on DOP of HSFRC target
under the impact of rigid projectile [J]. Journal of Ballistics, 2012, 24(3): 19–24. (in Chinese).
WU H, CHEN X W, HE L L, FANG Q. Stability analyses of the mass abrasive projectile high-speed
penetrating into concrete target Part I: Engineering model for the mass loss and nose-blunting of
the ogive-nosed projectile [J]. Acta Mechanica Sinica, 2014, 30(6): 933–942.
WU H, FANG Q, CHEN X W, GONG Z M, LIU J Z. Projectile penetration of ultra-high performance
cement based composites at 510m/s to 1320m/s [J]. Construction and Building Materials, 2015,
74(15): 188–200.
WU H, FANG Q, GONG J, LIU J Z, ZHANG J H, GONG Z M. Projectile impact resistance of
corundum aggregated UHP-SFRC [J]. International Journal of Impact Engineering, 2015, 84:
38–53.
WU H, LI Y C, FANG Q, PENG Y. Scaling effect of rigid projectile penetration into concrete target:
3D mesoscopic analyses [J]. Construction and Building Materials, 2019, 208: 506–524.
ZHANG M H, SHIM V P W, LU G, CHEW C W. Resistance of high-strength concrete to projectile
impact [J]. International Journal of Impact Engineering, 2005, 31(7): 825–841.
ZHANG M H, SHARIF M S H, LU G. Impact resistance of high-strength fiber-reinforced concrete
[J]. Magazine of Concrete Research, 2007, 59(3): 199–210.
ZHANG Y S, SUN W, LIU S F, JIAO C J, LAI J Z. Preparation of C200 Green Reactive Powder
Concrete and its static-dynamic behaviors [J]. Cement & Concrete Composites, 2008, 30(9):
831–838.
ZHANG Y S, ZHANG W H, SHE W, MA L G, ZHU W W. Ultrasound monitoring of setting and
hardening process of ultra-high performance cementitious materials [J]. Ndt & E International,
2012, 47: 177–184.
ZHANG W H, ZHANG Y S, ZHANG G R. Static. Dynamic mechanical properties and
microstructure characteristics of ultra-high performance cementitious composite [J]. Science
and Engineering of Composite Materials, 2012, 19(3): 237–245.
5 Projectile Penetrations into Coarse Aggregated UHPCC Targets
O’NEIL E F, NEELEY B D, CARGILE J D. Tensile properties of very-high-strength concrete for
penetration-resistant structures [J]. Shock and Vibration, 1999, 6(5–6): 237–245.
REN G M, WU H, FANG Q. Determinations of HJC constitutive model parameters for normal
strength concrete [J]. Journal of Vibration shock, 2016, 35(18): 9–16. (in Chinese).
REN G M, WU H, FANG Q. Parameters of HJC model for high-strength concrete-like materials
under projectile impact [J]. International Journal Protection Structures, 2017, 8(3): 352–367.
RONG Z D, SUN W, ZHANG Y S. Dynamic compression behavior of ultra-high performance
cement based composites [J]. International Journal of Impact Engineering, 2010, 37(5): 515–520.
TAI Y S. Flat ended projectile penetrating ultra-high strength concrete plate target [J]. Theoretical
and Applied Fracture Mechanics, 2009, 51(2): 117–128.
WERNER S, THIENEL K-C, KUSTERMANN A. Study of fractured surfaces of concrete caused
by projectile impact[J]. International Journal of Impact Engineering, 2013, 52: 23–27.
WU H, FANG Q, GONG Z M. Experimental and engineering analyses on DOP of HSFRC target
under the impact of rigid projectile [J]. Journal of Ballistics, 2012, 24(3): 19–24. (in Chinese).
WU H, CHEN X W, HE L L, FANG Q. Stability analyses of the mass abrasive projectile high-speed
penetrating into concrete target Part I: Engineering model for the mass loss and nose-blunting of
the ogive-nosed projectile [J]. Acta Mechanica Sinica, 2014, 30(6): 933–942.
WU H, FANG Q, CHEN X W, GONG Z M, LIU J Z. Projectile penetration of ultra-high performance
cement based composites at 510m/s to 1320m/s [J]. Construction and Building Materials, 2015,
74(15): 188–200.
WU H, FANG Q, GONG J, LIU J Z, ZHANG J H, GONG Z M. Projectile impact resistance of
corundum aggregated UHP-SFRC [J]. International Journal of Impact Engineering, 2015, 84:
38–53.
WU H, LI Y C, FANG Q, PENG Y. Scaling effect of rigid projectile penetration into concrete target:
3D mesoscopic analyses [J]. Construction and Building Materials, 2019, 208: 506–524.
ZHANG M H, SHIM V P W, LU G, CHEW C W. Resistance of high-strength concrete to projectile
impact [J]. International Journal of Impact Engineering, 2005, 31(7): 825–841.
ZHANG M H, SHARIF M S H, LU G. Impact resistance of high-strength fiber-reinforced concrete
[J]. Magazine of Concrete Research, 2007, 59(3): 199–210.
ZHANG Y S, SUN W, LIU S F, JIAO C J, LAI J Z. Preparation of C200 Green Reactive Powder
Concrete and its static-dynamic behaviors [J]. Cement & Concrete Composites, 2008, 30(9):
831–838.
ZHANG Y S, ZHANG W H, SHE W, MA L G, ZHU W W. Ultrasound monitoring of setting and
hardening process of ultra-high performance cementitious materials [J]. Ndt & E International,
2012, 47: 177–184.
ZHANG W H, ZHANG Y S, ZHANG G R. Static. Dynamic mechanical properties and
microstructure characteristics of ultra-high performance cementitious composite [J]. Science
and Engineering of Composite Materials, 2012, 19(3): 237–245.
