318
9 Dynamic Responses of Reinforced UHPCC Members Under …
WANG W, WU C, LI J, LIU Z, ZHI X. Lateral impact behavior of double-skin steel tubular (DST)
members with ultra-high performance fiber-reinforced concrete (UHPFRC)[J]. Thin-Walled
Structures, 2019b, 144: 106351.
WANG R, HAN L H, HOU C C. Behavior of concrete filled steel tubular (CFST) members under
lateral impact: experiment and FEA model[J]. Journal of Constructional Steel Research, 2013,
80: 188-201.
WEI J, LI J, WU C. An experimental and numerical study of reinforced conventional concrete and
ultra-high performance concrete columns under lateral impact loads[J]. Engineering Structures,
2019, 201: 109822.
WILLIAMS E M, GRAHAM S S, REED P A, RUSHING T S. Laboratory characterization of
cor-tuf concrete with and without steel fibers[R]. Defense Technical Information Center, 2009.
WU H, REN G M, FANG Q, LIU J Z. Response of ultra-high performance cementitious composites
filled steel tube (UHPCC-FST) subjected to low-velocity impact[J]. Thin-Walled Structures,
2019, 144: 106341.
WU C, OEHLERS D J, REBENTROST M, LEACH J, WHITTAKER A S. Blast testing of ultrahigh performance fibre and FRP-retrofitted concrete slabs[J]. Engineering Structures, 2009, 31:
2060–2069.
WU H, REN G M, FANG Q, LIU J Z. Effects of steel fiber content and type on dynamic tensile
mechanical properties of UHPCC[J]. Construction and Building Materials, 2018, 173: 251-261.
WU Y C, CRAWFORD E J, MAGALLANES J M. Performance of LS-DYNA concrete constitutive
model. Proceeding of the 12th International LS-DYNA Users Conference, Dearborn, MI, USA[C].
2012.
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.
XU J C, WU C Q, XIANG H B, SU Y, LI Z X, FANG Q, HAO H, LIU Z, ZHANG Y, LI
J. Behaviour of ultra high performance fibre reinforced concrete columns subjected to blast
loading[J]. Engineering Structures, 2016, 118: 97-107.
YOO D, BANTHIA N, KIM S, YOON Y S. Response of ultra-high-performance fiber-reinforced
concrete beams with continuous steel reinforcement subjected to low-velocity impact loading[J].
Composite Structures, 2015, 126: 233-245.
YOO D Y, BANTHIA N, YOON Y S. Impact resistance of reinforced ultra-high-performance
concrete beams with different steel fibers[J]. ACI Structural Journal, 2017, 114(1): 113-124.
ZHAO D, JIAN Y, KUNNATH S K. Shear Mechanisms in Reinforced Concrete Beams under
Impact Loading[J]. ACI Structural Journal, 2017, 143(9): 4017089.
ZHAO D, YI W, KUNNATH S K. Numerical simulation and shear resistance of reinforced concrete
beams under impact[J]. Engineering Structures, 2018, 166: 387-401.
ZHAN T B, WANG Z H, NING J G. Failure behaviors of reinforced concrete beams subjected to
high impact loading[J]. Engineering Failure Analysis, 2015 56: 233-243.
9 Dynamic Responses of Reinforced UHPCC Members Under …
WANG W, WU C, LI J, LIU Z, ZHI X. Lateral impact behavior of double-skin steel tubular (DST)
members with ultra-high performance fiber-reinforced concrete (UHPFRC)[J]. Thin-Walled
Structures, 2019b, 144: 106351.
WANG R, HAN L H, HOU C C. Behavior of concrete filled steel tubular (CFST) members under
lateral impact: experiment and FEA model[J]. Journal of Constructional Steel Research, 2013,
80: 188-201.
WEI J, LI J, WU C. An experimental and numerical study of reinforced conventional concrete and
ultra-high performance concrete columns under lateral impact loads[J]. Engineering Structures,
2019, 201: 109822.
WILLIAMS E M, GRAHAM S S, REED P A, RUSHING T S. Laboratory characterization of
cor-tuf concrete with and without steel fibers[R]. Defense Technical Information Center, 2009.
WU H, REN G M, FANG Q, LIU J Z. Response of ultra-high performance cementitious composites
filled steel tube (UHPCC-FST) subjected to low-velocity impact[J]. Thin-Walled Structures,
2019, 144: 106341.
WU C, OEHLERS D J, REBENTROST M, LEACH J, WHITTAKER A S. Blast testing of ultrahigh performance fibre and FRP-retrofitted concrete slabs[J]. Engineering Structures, 2009, 31:
2060–2069.
WU H, REN G M, FANG Q, LIU J Z. Effects of steel fiber content and type on dynamic tensile
mechanical properties of UHPCC[J]. Construction and Building Materials, 2018, 173: 251-261.
WU Y C, CRAWFORD E J, MAGALLANES J M. Performance of LS-DYNA concrete constitutive
model. Proceeding of the 12th International LS-DYNA Users Conference, Dearborn, MI, USA[C].
2012.
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.
XU J C, WU C Q, XIANG H B, SU Y, LI Z X, FANG Q, HAO H, LIU Z, ZHANG Y, LI
J. Behaviour of ultra high performance fibre reinforced concrete columns subjected to blast
loading[J]. Engineering Structures, 2016, 118: 97-107.
YOO D, BANTHIA N, KIM S, YOON Y S. Response of ultra-high-performance fiber-reinforced
concrete beams with continuous steel reinforcement subjected to low-velocity impact loading[J].
Composite Structures, 2015, 126: 233-245.
YOO D Y, BANTHIA N, YOON Y S. Impact resistance of reinforced ultra-high-performance
concrete beams with different steel fibers[J]. ACI Structural Journal, 2017, 114(1): 113-124.
ZHAO D, JIAN Y, KUNNATH S K. Shear Mechanisms in Reinforced Concrete Beams under
Impact Loading[J]. ACI Structural Journal, 2017, 143(9): 4017089.
ZHAO D, YI W, KUNNATH S K. Numerical simulation and shear resistance of reinforced concrete
beams under impact[J]. Engineering Structures, 2018, 166: 387-401.
ZHAN T B, WANG Z H, NING J G. Failure behaviors of reinforced concrete beams subjected to
high impact loading[J]. Engineering Failure Analysis, 2015 56: 233-243.
