Open Access
Issue
E3S Web Conf.
Volume 276, 2021
2021 5th International Conference on Water Conservancy, Hydropower and Building Engineering (WCHBE 2021)
Article Number 02019
Number of page(s) 8
Section Research on Building Structure and Construction Technology
DOI https://doi.org/10.1051/e3sconf/202127602019
Published online 23 June 2021
  1. Pryke J. F. S., 1982. Underpinning, Framing, Jacking-up and Moving Brick and Stone Masonry Structures. In: Proc. ICE Conf. London. [Google Scholar]
  2. Pryke J. F. S., 1983. Relevelling, Raising and Resisting Historic buildings. In: Proc. Symp IABSE. London. [Google Scholar]
  3. Wu E. J., Li A. Q., Zhang X. L. (2011) Development and Prediction of Building Monolithic Moving Technology. Construction Technology, 40(337): 1–7. [Google Scholar]
  4. Wu E. J. Research on key technolocy and application of building monolithic moving engineering[D]. Nanjing: Southeast university, 2003. (In Chinese) [Google Scholar]
  5. Cao Z. N. Study on behavior of reinforced concrete column prestressed underpinning joint[D]. Nanjing: Hohai university, 2013. (In Chinese) [Google Scholar]
  6. Yue Q. X., Zhang X., Jiang Z. R. (2016) Experimental study on mechanical properties of pre-stressed underpinning jionts. Journal of Buliding Structures, 37(8): 58–65. [Google Scholar]
  7. Wu E., Dong N., Yuan K. (2017) Experimental study on column underpinning joints with inclined steel bars. Structures & Buildings, 170(10): 751–764. [Google Scholar]
  8. Wu E. J., Li A. Q., Guo T. (2003) Experimental study on shear behavior of column-underpinning-node composed of profiled bar and bolt. Journal of southeast university (Natural Science Edition), 33(5): 631–634. [Google Scholar]
  9. Wu E. J., Zhang N. W. A detachable profile-steel underpinning device for RC column and its application method. [P]. Chinese Patent: 201710093223.0, 2017.02.01. [Google Scholar]
  10. Chen Z. P., Liang Y., Chen Y. L. (2014) Research on bonding strength of steel and concrete with different bonding interfaces. Applied Mechanics and Materials, 470: 838–841. [Google Scholar]
  11. Rabbat B.G., Russell H.G. (1985) Friction coefficient of steel on concrete or grout. Journal of Structure Engineering, 111(3): 505–515. [Google Scholar]
  12. Baltay P., Gjelsvik A. (1990) Coefficient of friction for steel on concrete at high normal stress. Journal of Materials in Civil Engineering, 2(1): 46–49. [Google Scholar]
  13. Xiao J. Z., Zhao W. P. (2012) Shear bond strength and friction coefficient between high-strength concrete and rolled steel plate after elevated temperatures exposure. Journal of building materials, 15(5): 697–702. [Google Scholar]
  14. Su Q. T., Du X., Li C. X. (2016) Tests of basic physical parameters of steel-concrete interface. Journal of TongJi university(natural science), 44(4):499-506. [Google Scholar]
  15. China Architecture & Building Press. Code for design of concrete structure. 2011. [Google Scholar]
  16. Standards Press of China. Industrial felt. 2012. 17. [Google Scholar]
  17. Standards Press of China. Tuffed carpets. 2009. [Google Scholar]

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