Open Access
Issue |
E3S Web Conf.
Volume 596, 2024
International Conference on Civil, Materials, and Environment for Sustainability (ICCMES 2024)
|
|
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Article Number | 01018 | |
Number of page(s) | 7 | |
Section | Civil, Materials and Environment for Sustainability ICCMES 2024 | |
DOI | https://doi.org/10.1051/e3sconf/202459601018 | |
Published online | 22 November 2024 |
- Naito, C., Olmati, P., Trasborg, P., Davidson, J. & Newberry, C. “Assessment of insulated concrete walls to close-in blast demands. J. Perform. Construct. Facil. 29(6), (2014): 04014149. [Google Scholar]
- Li, J., Wu, C. & Hao, H. “Experimental investigation of ultra-high performance concrete slabs under contact explosions”. Int. J. Impact Eng. 93, (2016): 62–75. [CrossRef] [Google Scholar]
- Hao, H., Hao, Y., Li, J. & Chen, W. “Review of the current practices in blast-resistant analysis and design of concrete structures”. Adv. Struct. Eng. 19(8), (2016): 1193–1223. [CrossRef] [Google Scholar]
- Ekstrom, J., Rempling, R. & Plos, M. “Spalling in concrete subjected to shock wave blast”. Eng. Struct. 122, (2016): 72–82. [CrossRef] [Google Scholar]
- Shamim, S., Ahmad, S. & Khan, R. A. “Numerical modelling of masonry panel subjected to surface blast loading. J. Xi’an Univ”. Arch. Technol. 12(7), (2020): 846–857. [Google Scholar]
- Shamim, S., Ahmad, S. & Khan, R. A. “Finite element analysis of masonry wall subjected to blast loading”. Int J Adv Mech Civ Eng 6, (2019): 50– 53. [Google Scholar]
- Ahmad, S. et al. Experimental study of masonry wall exposed to blast loading. Mater Constr 64, e007 (2014). [Google Scholar]
- Shi, Y., Xiong, W., Li, Z.-X. & Qingfeng, Xu. Experimental studies on the local damage and fragments of unreinforced masonry walls under close-in explosions. Int. J. Impact Eng. 90, (2016): 122–131. [CrossRef] [Google Scholar]
- Li, Z. et al. Experimental and numerical study on CFRP strip strengthened clay brick masonry walls subjected to vented gas explosions. Int. J. Impact Eng. 129, (2019): 66–79. [CrossRef] [Google Scholar]
- Shamim, S., Khan, R. A. & Ahmad, S. Fragility analysis of masonry wall subjected to blast loading. Structures 39, (2022): 1016–1030. [CrossRef] [Google Scholar]
- Shamim, S., Ahmad, S. & Khan, R. A. Blast vulnerability of multi-storey masonry infll reinforced concrete frames. Civ. Eng. Archit. 9(3), (2021): 853–868. [CrossRef] [Google Scholar]
- Shamim, S., Ahmad, S. & Khan, R. A. An investigation on response of blast load on masonry structure. Lect. Notes Civ. Eng. 58, (2019): 527– 538. [Google Scholar]
- Shamim, S., Ahmad, S. & Khan, R. A. Numerical study on dynamic response of hollow and cavity type clay brick masonry infll panels subjected to blast loading. Eng. Failure Anal. 146, (2023): 107104. [CrossRef] [Google Scholar]
- Raza, I., Shamim, S., Ahmad, S. & Khan, R. A. “Isotropic modelling and blast analysis of heritage structure. Mater”. Today Proc. 66, (2022): 2547– 2553. [Google Scholar]
- Raza, I., Shamim, S., Ahmad, S. & Khan, R. A. “Analysis of two-storey masonry structure under blast loading. Mater”. Today Proc. 80, (2023): 1605–1610. [Google Scholar]
- Shamim, S., Ahmad, S. & Khan, R. A. “Dynamic response of masonry panel under high-strain loading condition”. Adv. Struct. Mech. Appl. 26, (2022): 78–89. [Google Scholar]
- Wu, C. & Hao, H. Derivation of 3D masonry properties using numerical homogenization technique. Int. J. Numer. Methods Eng. 66(11), (2010): 1717–1737., [Google Scholar]
- Ma, G., Hao, H. & Lu, Y. “Homogenization of masonry using numerical simulations”. J. Eng. Mech. 127(5), (2001): 421–431. [CrossRef] [Google Scholar]
- Macorini, L. & Izzuddin, B. A. “Nonlinear analysis of unreinforced masonry walls under blast loading using mesoscale partitioned modeling”. J. Struct. Eng. 140(8), (2014): A4014002.1-A4014002.10. [CrossRef] [Google Scholar]
- Formica, G., Sansalone, V. & Casciaro, R. “A mixed solution strategy for the nonlinear analysis of brick masonry walls. Comput. Methods Appl. Mech. Eng. 191(51), (2002): 5847–5876. [CrossRef] [Google Scholar]
- Hamed, E. & Rabinovitch, O. “Nonlinear dynamic behavior of unreinforced masonry walls subjected to out-of-plane loads”. J. Struct. Eng. 134(11), 1743–1753. [Google Scholar]
- Guo, Q., Gou, Y., Chen, J., Zhang, Y. & Zhou, Y. “Dynamic response of foam concrete under low- velocity impact: Experiments and numerical simulation”. Int. J. Impact Eng. 146, (2020): 103693. [CrossRef] [Google Scholar]
- Feng, S., Zhou, Y., Wang, Y. & Lei, M. “Experimental research on the dynamic mechanical properties and damage characteristics of lightweight foamed concrete under impact loading”. Int. J. Impact Eng. 140, 103558 (2020). [CrossRef] [Google Scholar]
- Nian, W., Subramaniam, K. V. L. & Andreopoulos, Y. “Experimental investigation on blast response of cellular concrete”. Int. J. Impact Eng. 96, (2016): 105–115. [CrossRef] [Google Scholar]
- Li, Z. et al. “Experimental and numerical study of basalt fber reinforced polymer strip strengthened autoclaved aerated concrete masonry walls under vented gas explosions”. Eng. Struct. 152, (2017): 901–919. [CrossRef] [Google Scholar]
- Li, Z. et al. “Study of autoclaved aerated concrete masonry walls under vented gas explosion”. Eng. Struct. 141, (2017): 444–460. [CrossRef] [Google Scholar]
- Yu, Q. et al. “Experimental and numerical investigation of polymer-reinforced and normal autoclaved aerated concrete masonry walls under large TNT explosive loads”. Int. J. Impact Eng. 164, (2022): 104188. [CrossRef] [Google Scholar]
- Mollaei, S., Babaei Ghazijahani, R. & Noroozinejad Farsangi, E. “Investigation of behavior of masonry walls constructed with autoclaved aerated concrete blocks under blast loading”. Appl. Sci. 12, (2022): 8725. [CrossRef] [Google Scholar]
- Kamal Arif M., “Autoclaved Aerated Concrete (AAC): A Sustainable Building Material [Online] Available from http://www.masterbuilder.co.in/autoclaved-aerated-concrete-aaca-sustainablebuilding-material/, accessed on 10 May (2020). [Google Scholar]
- Kulbhushan K., Kumar S., Chaudhary R., Ahmad S., Gupta S., & Chaurasia R.. “A Contextual Analysis of the Advantages by Using Lightweight Concrete Blocks as Substitution of Bricks”, International Research Journal of Engineering and Technology (IRJET), 5(2), (2018): 926–931. [Google Scholar]
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