316
9 Dynamic Responses of Reinforced UHPCC Members Under …
CHEN W F. Plasticity in reinforced concrete[M]. New York: J. Ross Publishing, 2007.
DANCYGIER A N, YANKELEVSKY D Z, HAEGERMANN C. Response of high performance
concrete plates to impact of non- deforming projectiles[J]. International Journal of Impact
Engineering, 2007 34(11): 1768-1779.
DUPRAY F, MALECOT Y, DAUDEVILLE L. Experimental behaviour of high-performance
concrete in confined tension[J]. Materials and Structures, 2010, 43(5): 699-707.
FARNAM Y, MOHAMMADI S, SHEKARCHI M. Experimental and numerical investigations of
low velocity impact behavior of high-performance fiber-reinforced cement based composite[J].
International Journal of Impact Engineering, 2010, 37(2): 220-229.
FAN W, SHEN D, YANG T, SHAO X. Experimental and numerical study on low-velocity
lateral impact behaviors of RC, UHPFRC and UHPFRC-strengthened columns[J]. Engineering
Structures, 2019, 191:509-525.
FUJIKAKE K, LI B, SOEUN S. Impact Response of Reinforced Concrete Beam and Its Analytical
Evaluation[J]. Journal of Structural Engineering, 2009, 135(8): 938-950.
FUJIKAKE K, SENGA T, UEDA N, OHNO T, KATAGIRI M. Study on Impact Response of
Reactive Powder Concrete Beam and Its Analytical Model[J]. Journal of Advanced Concrete
Technology, 2006, 4(1): 99-108.
GB/T 228.1-2010. Metallic Materials-Tensile Testing, Part I: Method of Test at Room Temperature[S]. Beijing: Standards Press of China, 2010.
GB/T 50081-2002. Standard for Test Method of Mechanical Properties on Ordinary Concrete [S].
Beijing: Standards Press of China, 2003.
GB 50010-2010. Code for Design of Concrete Structures[S]. Beijing: Standards Press of China,
2010.
GUO W, FAN W, SHAO X, SHEN D, CHEN B. Constitutive model of ultra-high-performance
fiber-reinforced concrete for low-velocity impact simulations[J]. Composite Structures, 2018,
185: 307-326.
GRAYBEAL B A. Material property characterization of ultra-high performance concrete: FHWAHRT-06-103[R]. VA: U.S. Department of Transportation Federal highway Adminstration, 2006:
1-186.
HASSAN A M T, JONES S W, MAHMUD G H. Experimental test methods to determine the
uniaxial tensile and compressive behaviour of ultra high performance fibre reinforced concrete
(UHPFRC)[J]. Construction and Building Materials, 2012, 37: 874-882.
Institute SE. Minimum design loads for buildings and other structures[S]. Amer Society of Civil
Engineers, 2006.
JIANG H, ZHAO J. Calibration of the continuous surface cap model for concrete[J]. Finite Elements
in Analysis and Design, 2015, 97: 1-19.
KISHI N, MIKAMI H, MATSUOKA K G, ANDO T. Impact behavior of shear-failure-type RC
beams without shear rebar[J]. International Journal of Impact Engineering, 2002, 27(9): 955-968.
KOTSOVOS M D, NEWMEN J B. A mathematical description of the deformational behaviour of
concrete under complex loading[J]. Magazine of Concrete Research, 1979, 31(107): 77-90.
LSTC. LS-DYNA Keyword User’s Manual[M]. Livermore Software Technology Corporation, 2014.
LI J, WU C Q, HAO H. An experimental and numerical study of reinforced ultra-high performance
concrete slabs under blast loads[J]. Materials & Design, 2015, 82: 64-76.
LI J, WU C Q, HAO H, WANG Z Q, SU Y. Experimental investigation of ultra-high performance
concrete slabs under contact explosions[J]. International Journal of Impact Engineering, 2016,
93: 62-75.
LI H, CHEN W, HAO H. Influence of drop weight geometry and interlayer on impact behavior of
RC beams[J]. International Journal of Impact Engineering, 2019, 131: 222-237.
MADURAPPERUMA M A K M, WIJEYEWICKREMA A C. Response of reinforced concrete
columns impacted by tsunami dispersed 20 and 40 shipping containers[J]. Engineering
Structures, 2013, 56: 1631-1644.
MÁCA P, SOVJÁK R, KONVALINKA P. Mix design of UHPFRC and its response to projectile
impact[J]. International Journal of Impact Engineering, 2010, 63(5): 158-163.
9 Dynamic Responses of Reinforced UHPCC Members Under …
CHEN W F. Plasticity in reinforced concrete[M]. New York: J. Ross Publishing, 2007.
DANCYGIER A N, YANKELEVSKY D Z, HAEGERMANN C. Response of high performance
concrete plates to impact of non- deforming projectiles[J]. International Journal of Impact
Engineering, 2007 34(11): 1768-1779.
DUPRAY F, MALECOT Y, DAUDEVILLE L. Experimental behaviour of high-performance
concrete in confined tension[J]. Materials and Structures, 2010, 43(5): 699-707.
FARNAM Y, MOHAMMADI S, SHEKARCHI M. Experimental and numerical investigations of
low velocity impact behavior of high-performance fiber-reinforced cement based composite[J].
International Journal of Impact Engineering, 2010, 37(2): 220-229.
FAN W, SHEN D, YANG T, SHAO X. Experimental and numerical study on low-velocity
lateral impact behaviors of RC, UHPFRC and UHPFRC-strengthened columns[J]. Engineering
Structures, 2019, 191:509-525.
FUJIKAKE K, LI B, SOEUN S. Impact Response of Reinforced Concrete Beam and Its Analytical
Evaluation[J]. Journal of Structural Engineering, 2009, 135(8): 938-950.
FUJIKAKE K, SENGA T, UEDA N, OHNO T, KATAGIRI M. Study on Impact Response of
Reactive Powder Concrete Beam and Its Analytical Model[J]. Journal of Advanced Concrete
Technology, 2006, 4(1): 99-108.
GB/T 228.1-2010. Metallic Materials-Tensile Testing, Part I: Method of Test at Room Temperature[S]. Beijing: Standards Press of China, 2010.
GB/T 50081-2002. Standard for Test Method of Mechanical Properties on Ordinary Concrete [S].
Beijing: Standards Press of China, 2003.
GB 50010-2010. Code for Design of Concrete Structures[S]. Beijing: Standards Press of China,
2010.
GUO W, FAN W, SHAO X, SHEN D, CHEN B. Constitutive model of ultra-high-performance
fiber-reinforced concrete for low-velocity impact simulations[J]. Composite Structures, 2018,
185: 307-326.
GRAYBEAL B A. Material property characterization of ultra-high performance concrete: FHWAHRT-06-103[R]. VA: U.S. Department of Transportation Federal highway Adminstration, 2006:
1-186.
HASSAN A M T, JONES S W, MAHMUD G H. Experimental test methods to determine the
uniaxial tensile and compressive behaviour of ultra high performance fibre reinforced concrete
(UHPFRC)[J]. Construction and Building Materials, 2012, 37: 874-882.
Institute SE. Minimum design loads for buildings and other structures[S]. Amer Society of Civil
Engineers, 2006.
JIANG H, ZHAO J. Calibration of the continuous surface cap model for concrete[J]. Finite Elements
in Analysis and Design, 2015, 97: 1-19.
KISHI N, MIKAMI H, MATSUOKA K G, ANDO T. Impact behavior of shear-failure-type RC
beams without shear rebar[J]. International Journal of Impact Engineering, 2002, 27(9): 955-968.
KOTSOVOS M D, NEWMEN J B. A mathematical description of the deformational behaviour of
concrete under complex loading[J]. Magazine of Concrete Research, 1979, 31(107): 77-90.
LSTC. LS-DYNA Keyword User’s Manual[M]. Livermore Software Technology Corporation, 2014.
LI J, WU C Q, HAO H. An experimental and numerical study of reinforced ultra-high performance
concrete slabs under blast loads[J]. Materials & Design, 2015, 82: 64-76.
LI J, WU C Q, HAO H, WANG Z Q, SU Y. Experimental investigation of ultra-high performance
concrete slabs under contact explosions[J]. International Journal of Impact Engineering, 2016,
93: 62-75.
LI H, CHEN W, HAO H. Influence of drop weight geometry and interlayer on impact behavior of
RC beams[J]. International Journal of Impact Engineering, 2019, 131: 222-237.
MADURAPPERUMA M A K M, WIJEYEWICKREMA A C. Response of reinforced concrete
columns impacted by tsunami dispersed 20 and 40 shipping containers[J]. Engineering
Structures, 2013, 56: 1631-1644.
MÁCA P, SOVJÁK R, KONVALINKA P. Mix design of UHPFRC and its response to projectile
impact[J]. International Journal of Impact Engineering, 2010, 63(5): 158-163.
