Materials for sacrificial blast wall as protective structure

被引:0
作者
机构
[1] Department of Civil Engineering, Indian Institute of Technology Delhi, New Delhi
来源
Matsagar, V.A. (matsagar@civil.iitd.ac.in) | 1600年 / Indian National Science Academy卷 / 79期
关键词
Blast; Sacrificial Blast Wall; Steel Fibre Reinforced Concrete; Strain Rate;
D O I
10.16943/ptinsa/2013/v79i4/48006
中图分类号
学科分类号
摘要
Investigation on the performance of sacrificial blast walls subjected to blast loading is presented here. Three dimensional nonlinear dynamic analyses of sacrificial blast walls under blast loading have been performed using finite element software Abaqus 6.11. Sacrificial blast walls of different thicknesses made up of steel, plain, reinforced and steel fibre reinforced concrete have been examined under blast loading. Strain rate dependent properties of all the materials have been used in the analyses. Blast load is applied in the form of pressure-time history curve calculated using the TM5-1300 manual and the modified Friedlander's equation. Stress and peak displacement response of the sacrificial blast walls have been studied. It is observed that the sacrificial blast walls made up of steel fibre reinforced concrete show lesser stress and peak displacement, and thus higher blast response reduction capability. © 2013, Indian National Science Academy. All rights reserved.
引用
收藏
页码:717 / 723
页数:6
相关论文
共 50 条
  • [41] Finite Element Evaluation of Blast Design Response Criteria for Load-Bearing Precast Wall Panels
    Nickerson, Joseph M.
    Trasborg, Patrick A.
    Naito, Clay J.
    Newberry, Charles M.
    Davidson, James S.
    INTERNATIONAL JOURNAL OF PROTECTIVE STRUCTURES, 2015, 6 (01) : 155 - 173
  • [42] Fine-structure superplasticity in materials
    Nieh, TG
    Wadsworth, J
    JOURNAL OF THE CHINESE INSTITUTE OF ENGINEERS, 1998, 21 (06) : 659 - 689
  • [43] Blast resisting responses and upgrading technology for an underground structure subjected to external explosions
    Wang, Yanchao
    Zhao, Zhipeng
    Qiang, Hongfu
    Wang, Xinfeng
    Guo, Jianfeng
    STRUCTURES, 2023, 56
  • [44] Investigation of effect of perforations in honeycomb sandwich structure for enhanced blast load mitigation
    Shirbhate, P. A.
    Goel, M. D.
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2023, 30 (17) : 3463 - 3478
  • [45] Modelling blast wave propagation in a subsurfacegeotechnical structure made of an evolutive porous material
    Lu, Gongda
    Fall, Mamadou
    MECHANICS OF MATERIALS, 2017, 108 : 21 - 39
  • [46] Vectorial structure of the near-wall premixed flame
    Zhao, Peipei
    Wang, Lipo
    Chakraborty, Nilanjan
    PHYSICAL REVIEW FLUIDS, 2019, 4 (06):
  • [47] Analytical assessment of dynamic response of fiber-reinforced polymer laminate on concrete wall under blast loads
    Naiknimbalkar, Yashwardhan Pushkaraj
    Singh, Shamsher Bahadur
    Matsagar, Vasant Annasaheb
    SADHANA-ACADEMY PROCEEDINGS IN ENGINEERING SCIENCES, 2024, 49 (03):
  • [48] Numerical Investigation on Reduced Moment Resistance and Increased Reinforcement Spacing in Reinforced Concrete Wall Subjected to Blast Load
    Seman, M. A.
    Mohsin, S. M. Syed
    Zaidi, A. M. A.
    Jaini, Z. M.
    INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING, 2022, 14 (01): : 353 - 362
  • [49] Aerodynamic damping and fluid-structure interaction of blast loaded flexible structures
    Teich, Martien
    Gebbeken, Norbert
    Larcher, Martin
    PERFORMANCE, PROTECTION AND STRENGTHENING OF STRUCTURES UNDER EXTREME LOADING, 2011, 82 : 491 - 496
  • [50] Research advances of polyurea application in ship structure protection against blast loading
    Zhao Y.-J.
    Liu J.-H.
    Wang J.
    Wang H.-K.
    Chuan Bo Li Xue/Journal of Ship Mechanics, 2022, 26 (04): : 595 - 607