• Bulletin of the Chinese Ceramic Society
  • Vol. 43, Issue 5, 1897 (2024)
GENG Limin1, DU Hongxiu1,*, NIE Xiaoqing2, ZHOU Xingyu1..., YAN Changhao1 and LEI Yibin3|Show fewer author(s)
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  • 1[in Chinese]
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    GENG Limin, DU Hongxiu, NIE Xiaoqing, ZHOU Xingyu, YAN Changhao, LEI Yibin. Experimental Study on Sound Barrier Performance of Fly Ash Ceramsite Lightweight Concrete[J]. Bulletin of the Chinese Ceramic Society, 2024, 43(5): 1897 Copy Citation Text show less
    References

    [1] CHEN X,ZHANG Y C,CHEN Y Q,et al. Research and exploration of aerodynamic effect of high-speed railway sound barrier in China[J]. China Railway Science,2023,44(4): 84-91 (in Chinese).

    [2] XUE Z,RU X,LI S F,et al. Study on adding noise barrier to existing railway bridges[J]. Railway Engineering Technology and Economy,2023,38(3): 9-13+36 (in Chinese).

    [3] HAO L,LIN Q,SONG Y Q,et al. Study on noise reduction of sound barrier of expressway based on finite element simulation[J]. Modern Transportation and Metallurgical Materials,2023,3(1): 89-93 (in Chinese).

    [4] WANG Y W. Application of noise barrier technology in traffic noise control[J]. Journal of Shanghai Ship and Shipping Research Institute,2022,45(4): 75-78 (in Chinese).

    [5] YAN F,CHEN Y L,CHEN Z P,et al. Cyclic compressive mechanical performance of fly ash ceramsite lightweight aggregate concrete[J]. Bulletin of the Chinese Ceramic Society,2020,39(8): 2615-2621 (in Chinese).

    [6] LIU L. Study on basic mechanical properties of fly ash aggregate concrete in early age[J]. Sichuan Cement,2016(5): 302+285 (in Chinese).

    [7] LI R. Experimental study on properties of fly ash ceramsite lightweight aggregate concrete[D]. Yinchuan: Ningxia University,2015 (in Chinese).

    [8] SHI Y J,BAI H R,LI J K. Lytag concrete antifreeze performance study[J]. Concrete,2016(11): 86-89 (in Chinese).

    [9] CHAI C J,SONG H P,FENG Z J,et al. Research progress on the fly ash ceramsite[J]. Clean Coal Technology,2020,26(6): 11-22 (in Chinese).

    [10] WU J. Study on mechanical properties and durability of nano-SiO2 modified fly ash ceramsite concrete[D]. Changchun: Jilin University,2019 (in Chinese).

    [11] CHEN X. Study on durability of ceramsite concrete pavement mixed with fly ash[D].Chongqing: Chongqing Jiaotong University,2017 (in Chinese).

    [12] DUAN C Y,CUI G,XU X B,et al. Sound absorption characteristics of a high-temperature sintering porous ceramic material[J]. Applied Acoustics,2012,73(9): 865-871.

    [13] WANG Y,ZHU W X,SHAO L,et al. Performance analysis of city subway rail acoustic panels[J]. Construction Technology,2014,43(10): 102-105 (in Chinese).

    [14] CHUN Y Y. Sintering-free preparation of porous ceramsite of fly ash using temperature decomposing pore former and its sound-absorbing performance[D]. Liuzhou: Guangxi University of Science and Technology,2018 (in Chinese).

    [15] YU P,ZHAO J. Durability analysis of sintered fly ash concrete[J]. Low Temperature Architecture Technology,2009,31(8): 1-3 (in Chinese).

    [16] ZHANG B. Study on basic properties and related durability of fly ash ceramsite concrete[D]. Baotou: Inner Mongolia University of Science & Technology,2012 (in Chinese).

    GENG Limin, DU Hongxiu, NIE Xiaoqing, ZHOU Xingyu, YAN Changhao, LEI Yibin. Experimental Study on Sound Barrier Performance of Fly Ash Ceramsite Lightweight Concrete[J]. Bulletin of the Chinese Ceramic Society, 2024, 43(5): 1897
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