Evaluation of force and dynamic factor on reinforced concrete deck slab through the static and transient dynamic tests

被引:0
|
作者
Tewari D. [1 ]
Senthil K. [1 ]
Sharma A. [1 ]
机构
[1] Department of Civil Engineering, NIT Jalandhar, Punjab, Jalandhar
关键词
Deck slab; Dynamic factor; Experiment; Response surface methodology; Simulation; Static and transient dynamic loading; Statistical method;
D O I
10.1007/s42107-023-00637-x
中图分类号
学科分类号
摘要
A cost-effective technique is presented to determine the dynamic factor of reinforced concrete deck slab through experiment, simulations, and statistical method. The experiments were conducted on a one-fourth scale prototype model of a pre-existing railway bridge deck slab of size 645 × 565 × 86 mm against static and transient dynamic loading. The average measured experimental peak force from the static and transient dynamic tests was found to be 99 and 145.7 kN, respectively. A numerical simulation was conducted to evaluate the dynamic factor using ABAQUS finite element software. It was observed that the results obtained from simulations were in confidence with the experimental results as well as codal provisions, and the dynamic factor obtained from the experiment and simulation was found to be 1.47 and 1.52, respectively. Further, the influence of length of deck slab, mass, and velocity of impactor on the prediction of the dynamic factor using a finite element analysis and statistical method was studied. The statistical model was performed in terms of regression equation using Response Surface Methodology and the section offering maximum resistance which were optimized using the analysis of variance. The predicted response of deck slab in terms of impact force through finite element simulations was compared with the statistical approach. Overall, it was observed that the predicted peak impact force is found in good agreement with the statistical method. It was concluded that the 4.58 m span was found to be offering highest resistance against 8.1 m/s velocity with the mass of 14.53 tons among the various chosen cases, and the most conservative value of dynamic factor was found to be 2.81 and 2.74 through statistical method and FE simulations, respectively. © 2023, The Author(s), under exclusive licence to Springer Nature Switzerland AG.
引用
收藏
页码:2229 / 2246
页数:17
相关论文
共 50 条
  • [41] Mechanical behavior evaluation of pure aluminum by static and dynamic tests
    De Matteis, G.
    Brando, G.
    Mazzolani, F. M.
    COST ACTION C26: URBAN HABITAT CONSTRUCTIONS UNDER CATASTROPHIC EVENTS, 2010, : 815 - 820
  • [42] Comparison of static tests and dynamic tests for coal dust surfactants evaluation: A review
    Zhao, Zidong
    Chang, Ping
    Xu, Guang
    Xie, Quan
    Ghosh, Apurna
    FUEL, 2022, 330
  • [43] Evaluation of the overstrength factor for nonstructural component anchorage into concrete via dynamic shaking table tests
    Johnson, Timothy P.
    Dowell, Robert K.
    JOURNAL OF BUILDING ENGINEERING, 2017, 11 : 205 - 215
  • [44] Numerical simulation for dynamic failure of a reinforced concrete slab under close-in explosion
    Gong, Shun-Feng
    Deng, Huan
    Zhu, Sheng-Bo
    Jin, Wei-Liang
    Zhendong yu Chongji/Journal of Vibration and Shock, 2012, 31 (02): : 20 - 24
  • [45] Creep and shrinkage effect on the dynamic analysis of reinforced concrete slab-and-beam structures
    Sapountzakis, EJ
    Katsikadelis, JT
    JOURNAL OF SOUND AND VIBRATION, 2003, 260 (03) : 403 - 416
  • [46] Experimental and Numerical Evaluation of Reinforced Concrete Bracket Design for Supporting Middle Slab in Double-Deck Tunnel
    Kim, Seong-Min
    Cho, Young Kyo
    Park, Beom Keun
    KSCE JOURNAL OF CIVIL ENGINEERING, 2019, 23 (08) : 3682 - 3693
  • [47] Experimental and Numerical Evaluation of Reinforced Concrete Bracket Design for Supporting Middle Slab in Double-Deck Tunnel
    Seong-Min Kim
    Young Kyo Cho
    Beom Keun Park
    KSCE Journal of Civil Engineering, 2019, 23 : 3682 - 3693
  • [48] Reinforced polymer concrete:: Physical properties of the matrix and static/dynamic bond behaviour
    San-José, JT
    Vegas, I
    Ferreira, A
    CEMENT & CONCRETE COMPOSITES, 2005, 27 (9-10): : 934 - 944
  • [49] Comparison of Static and Dynamic Methods to Assess the State of Reinforced and Prestressed Concrete Structures
    Waltering, Markus
    Bungard, Volker
    Waldmann, Daniele
    Maas, Stefan
    Zuerbes, Arno
    BETON- UND STAHLBETONBAU, 2009, 104 (10) : 628 - 641
  • [50] EXPERIMENTAL STUDY ON THE BEHAVIOR OF REINFORCED CONCRETE COLUMNS UNDER STATIC AND DYNAMIC LOADS
    Jiang, Zhou
    Xu, Bin
    Zang, Xiang
    Xu, Ning
    INNOVATION & SUSTAINABILITY OF STRUCTURES, VOLS 1 AND 2, 2011, : 790 - 795