• Bulletin of the Chinese Ceramic Society
  • Vol. 42, Issue 3, 808 (2023)
XIANG Jichao1, YANG Zhao1,2,*, XIONG Hao1, and WANG Yuzhang1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: Cite this Article
    XIANG Jichao, YANG Zhao, XIONG Hao, WANG Yuzhang. Self-Centering and Energy Dissipation Performance of SMAF/PVA Hybrid Fiber Reinforced Engineered Cementitious Composite Beams[J]. Bulletin of the Chinese Ceramic Society, 2023, 42(3): 808 Copy Citation Text show less
    References

    [2] OLIVEIRA J P, MIRANDA R M, BRAZ FERNANDES F M. Welding and joining of NiTi shape memory alloys: a review[J]. Progress in Materials Science, 2017, 88: 412-466.

    [4] ELBAHY Y I, YOUSSEF M A. Flexural behaviour of superelastic shape memory alloy reinforced concrete beams during loading and unloading stages[J]. Engineering Structures, 2019, 181: 246-259.

    [5] MAO J Z, JIA D G, YANG Z L, et al. Seismic performance of concrete bridge piers reinforced with hybrid shape memory alloy (SMA) and steel bars[J]. Journal of Earthquake and Tsunami, 2020, 14(1): 2050001.

    [6] PARVIN A, RAAD J. Internal and external reinforcement of concrete members by use of shape memory alloy and fiber reinforced polymers under cyclic loading-a review[J]. Polymers, 2018, 10(4): 376.

    [7] ABDULRIDHA A, PALERMO D. Behaviour and modelling of hybrid SMA-steel reinforced concrete slender shear wall[J]. Engineering Structures, 2017, 147: 77-89.

    [9] LI X P, LI M, SONG G B. Energy-dissipating and self-repairing SMA-ECC composite material system[J]. Smart Materials and Structures, 2015, 24(2): 025024.

    [10] SHERIF M M, KHAKIMOVA E M, OZBULUT O E, et al. Behavior of mortar beams with randomly distributed superelastic shape memory alloy fibers[J]. Journal of Intelligent Material Systems and Structures, 2018, 29(4): 684-695.

    [11] DEHGHANI A, ASLANI F. Crack recovery and re-centring performance of cementitious composites with pseudoelastic shape memory alloy fibres[J]. Construction and Building Materials, 2021, 298: 123888.

    [12] DEHGHANI A, ASLANI F. The synergistic effects of shape memory alloy, steel, and carbon fibres with polyvinyl alcohol fibres in hybrid strain-hardening cementitious composites[J]. Construction and Building Materials, 2020, 252: 119061.

    [16] SHERIF M M, TANKS J, OZBULUT O E. Acoustic emission analysis of cyclically loaded superelastic shape memory alloy fiber reinforced mortar beams[J]. Cement and Concrete Research, 2017, 95: 178-187.

    [17] CHOI E, MOHAMMADZADEH B, KIM D, et al. A new experimental investigation into the effects of reinforcing mortar beams with superelastic SMA fibers on controlling and closing cracks[J]. Composites Part B: Engineering, 2018, 137: 140-152.

    [18] SHAJIL N, SRINIVASAN S M, SANTHANAM M. Self-centering of shape memory alloy fiber reinforced cement mortar members subjected to strong cyclic loading[J]. Materials and Structures, 2013, 46(4): 651-661.

    [19] NASSIRI-MONFARED A, BAGHANI M, ZAKERZADEH M R, et al. Developing a semi-analytical model for thermomechanical response of SMA laminated beams, considering SMA asymmetric behavior[J]. Meccanica, 2018, 53(4): 957-971.

    XIANG Jichao, YANG Zhao, XIONG Hao, WANG Yuzhang. Self-Centering and Energy Dissipation Performance of SMAF/PVA Hybrid Fiber Reinforced Engineered Cementitious Composite Beams[J]. Bulletin of the Chinese Ceramic Society, 2023, 42(3): 808
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