High-velocity impact experiments and quantitative damage evaluation for finite ultra-high-performance concrete targets

被引:1
|
作者
Sauer, Christoph [1 ]
Burtsche, Jan [1 ]
Heine, Andreas [1 ]
Roller, Christoph [2 ]
Riedel, Werner [1 ]
机构
[1] Fraunhofer Inst High Speed Dynam Ernst, Mach Inst, EMI, Ernst Zermelo Str 4, D-79104 Freiburg, Germany
[2] Fraunhofer Inst High Speed Dynam, Ernst Mach Inst, EMI, Efringen Kirchen, Germany
关键词
high-velocity impact; ballistic data; ultra-high-performance concrete; finite targets; residual velocities; quantitative damage evaluation; REINFORCED-CONCRETE; PROJECTILE IMPACT; UHPFRC TARGETS; PENETRATION; RESISTANCE; ADOBE; PERFORATION; MODELS;
D O I
10.1177/20414196231216751
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In this work, we aim at improved characterization of target damage occurring as the result of projectile impact against ultra-high-performance concrete (UHPC). For this purpose, we present the results of high-velocity impact experiments with spherical steel projectiles and finite-thickness UHPC targets of approximately 115 MPa compressive cylinder strength in the impact velocity range from approximately 600 m/s to 1500 m/s. The data set obtained from these experiments includes residual projectile velocities as well as qualitative and quantitative information on damage. Quantitative damage information is mainly extracted from digital 3D post mortem targets, which are produced by 3D-scanning. For all damage quantities, a dependence on the impact velocity and the target thickness is discussed and used to provide possible explanations for the origin of the particular type of damage. The large data set presented in this work can constitute the basis for a comprehensive and quantitative verification and validation of analytical, empirical, and numerical models that describe the perforation of UHPC targets in the investigated impact velocity range.
引用
收藏
页码:802 / 838
页数:37
相关论文
共 50 条
  • [1] ULTRA-HIGH-PERFORMANCE FIBRE-REINFORCED CONCRETE UNDER HIGH-VELOCITY PROJECTILE IMPACT. PART I. EXPERIMENTS
    Kravanja, Sebastjan
    Sovjak, Radoslav
    ACTA POLYTECHNICA, 2018, 58 (04) : 232 - 239
  • [2] Damage evaluation of concrete plates by high-velocity impact
    Beppu, M.
    Miwa, K.
    Itoh, M.
    Katayama, M.
    Ohno, T.
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2008, 35 (12) : 1419 - 1426
  • [3] Ballistic impact: predicting penetration depth in ultra-high-performance concrete targets
    Das, Nabodyuti
    Darshan, Bhaskar
    Nanthagopalan, Prakash
    PROCEEDINGS OF THE INSTITUTION OF CIVIL ENGINEERS-CONSTRUCTION MATERIALS, 2023, 177 (04) : 215 - 232
  • [4] A simulation approach for quantifying ballistic impact damage in ultra-high-performance concrete
    Sauer, Christoph
    Burtsche, Jan
    Heine, Andreas
    Riedel, Werner
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2024, 193
  • [5] IMPACT PERFORMANCE OF LOW CEMENT ULTRA-HIGH-PERFORMANCE CONCRETE
    Azmee, Norzaireen Mohd
    Nuruddin, Muhd Fadhil
    SUSTAINABLE CITY XII, 2017, 223 : 481 - 488
  • [6] Experimental and numerical studies of ultra-high performance concrete targets against high-velocity projectile impacts
    Liu, Jian
    Wu, Chengqing
    Su, Yu
    Li, Jun
    Shao, Ruizhe
    Chen, Gang
    Liu, Zhongxian
    ENGINEERING STRUCTURES, 2018, 173 : 166 - 179
  • [7] ULTRA-HIGH-PERFORMANCE FIBRE-REINFORCED CONCRETE UNDER HIGH-VELOCITY PROJECTILE IMPACT. PART II. APPLICABILITY OF PREDICTION MODELS
    Kravanja, Sebastjan
    Sovjak, Radoslav
    ACTA POLYTECHNICA, 2018, 58 (06) : 355 - 364
  • [8] A novel damage evaluation method for ultra-high-performance fiber reinforced concrete under multiple impact loads
    Shi, Dandan
    Chen, Xudong
    Ning, Yingjie
    Ji, Tao
    Wang, Luyao
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2023, 46 (11) : 4299 - 4314
  • [9] High-velocity Penetration of Concrete Targets with Three Types of Projectiles: Experiments and Analysis
    Zhang, Shuang
    Wu, HaiJun
    Zhang, XinXin
    Liu, JianCheng
    Huang, FengLei
    LATIN AMERICAN JOURNAL OF SOLIDS AND STRUCTURES, 2017, 14 (09): : 1614 - 1628
  • [10] Advancing Ultra-High-Performance Concrete
    Graybeal, Benjamin
    Crane, Charles Kennan
    Perry, Vic
    Corvez, Dominique
    Ahlborn, Theresa M.
    Concrete International, 2019, 41 (04) : 41 - 45