Applied Engineering

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Behavior of Two-Way Post Tension Flat Slab

Received: 8 December 2018    Accepted: 25 December 2018    Published: 22 January 2019
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Abstract

Post tension floors (PT) are one of the most widely used system which are very effective method regarding ultimate and serviceability limit states. A numerical model for discretized the two-way reinforced concrete flat slab with different system is investigated by using RAM software. The effects of different parameters are investigated in this study. Parameters investigated include concrete strength, thickness of the flat slab, different values of jacking (force (P) / area of strand (A)) and also, study the flat slab with opening by changing the values of P/A. Results indicated significant effect of PT system in the flat slab by decreasing the deflection. Also, the magnitude of the bending moment is reversed at one internal column by increasing the value of P/A for large thickness.

DOI 10.11648/j.ae.20180202.14
Published in Applied Engineering (Volume 2, Issue 2, December 2018)
Page(s) 54-59
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Buildings, Structures & Design, Concrete Structures, Slabs, Stress Analysis, Post Tension, Finite Element Modeling, Ram Software

References
[1] Adekunle, Ph. A. and Shodolapo, O. F., (Analytical Investigation of Prestressed Concrete Structures Incorporating Combined Post Tensioned and Post Compressed Reinforcements) ARPN Journal of Engineering and Applied Sciences, Vol. 6, No. 12, December, PP.55-61 (2011).
[2] Armin G. and Abdul K. M., (Ultimate Strength of Post-tension Hollow Core Slab (HCS) for IBS Constructions), Journal of Civil Engineering and Building Materials (ISSN 2223‐487X) Vol. 2, No.2, PP. 64-77 (2012).
[3] Ellobody, E. and Bailey, C. G., (Behaviour of Unbonded Post Tensioned One-way Concrete Slabs), Advances in Structural Engineering Vol. 11, No. 1 (2008).
[4] Gianluca, R. and Andrea, O,. (Ultimate Behaviour and Design of Post-Tensioned Composite Slabs) Engineering Structures Volume 150, 1 November, PP. 711-718(2017).
[5] Hossam-Eldin, A. E., Tamer E., Abd el Wahab, E. and Amr, A. A., (Behavior of Post Tensioned Fiber Concrete Beams), HBRC Journal, vol. 9, PP. 216 226 (2013).
[6] Kenneth, B. B., (Two Way Post Tensioned Slabs With Bonded Tendons), PTI Journal, Vol. 8, No. 2, December, PP. 43- 48 (2012).
[7] Kim, K. S. and Lee , D. H., (Nonlinear Analysis Method for Continuous Post Tensioned Concrete Members with Unbonded Tendons), Engineering Structures, Vol.40, PP. 487–500 (2012).
[8] Llinca, M. and Aliz, M., (A Study on a Two-Way Post-Tensioned Concrete Waffle Slab), Procedia Technology Volume 22, PP. 227-234(2016)
[9] Mohammad, M. R., Brian U. and Olivia, M.,(Experimental and Numerical Study of the Bond–Slip Relationship for Post-Tensioned Composite Slabs), Journal of Constructional Steel Research Volume 114, November, PP. 362-379 (2015).
[10] Zhan, N., Fu, C. C. and Che, H., (Experiment and Numerical Modeling of Prestressed Concrete Curved Slab with Spatial Unbonded tendons), Engineering Structures, Vol. 33, PP. 747–756 (2011).
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  • APA Style

    Hanaa E. Abd-El-Mottaleb, Heba A. Mohamed. (2019). Behavior of Two-Way Post Tension Flat Slab. Applied Engineering, 2(2), 54-59. https://doi.org/10.11648/j.ae.20180202.14

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    ACS Style

    Hanaa E. Abd-El-Mottaleb; Heba A. Mohamed. Behavior of Two-Way Post Tension Flat Slab. Appl. Eng. 2019, 2(2), 54-59. doi: 10.11648/j.ae.20180202.14

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    AMA Style

    Hanaa E. Abd-El-Mottaleb, Heba A. Mohamed. Behavior of Two-Way Post Tension Flat Slab. Appl Eng. 2019;2(2):54-59. doi: 10.11648/j.ae.20180202.14

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  • @article{10.11648/j.ae.20180202.14,
      author = {Hanaa E. Abd-El-Mottaleb and Heba A. Mohamed},
      title = {Behavior of Two-Way Post Tension Flat Slab},
      journal = {Applied Engineering},
      volume = {2},
      number = {2},
      pages = {54-59},
      doi = {10.11648/j.ae.20180202.14},
      url = {https://doi.org/10.11648/j.ae.20180202.14},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ae.20180202.14},
      abstract = {Post tension floors (PT) are one of the most widely used system which are very effective method regarding ultimate and serviceability limit states. A numerical model for discretized the two-way reinforced concrete flat slab with different system is investigated by using RAM software. The effects of different parameters are investigated in this study. Parameters investigated include concrete strength, thickness of the flat slab, different values of jacking (force (P) / area of strand (A)) and also, study the flat slab with opening by changing the values of P/A. Results indicated significant effect of PT system in the flat slab by decreasing the deflection. Also, the magnitude of the bending moment is reversed at one internal column by increasing the value of P/A for large thickness.},
     year = {2019}
    }
    

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    AU  - Hanaa E. Abd-El-Mottaleb
    AU  - Heba A. Mohamed
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    JO  - Applied Engineering
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    UR  - https://doi.org/10.11648/j.ae.20180202.14
    AB  - Post tension floors (PT) are one of the most widely used system which are very effective method regarding ultimate and serviceability limit states. A numerical model for discretized the two-way reinforced concrete flat slab with different system is investigated by using RAM software. The effects of different parameters are investigated in this study. Parameters investigated include concrete strength, thickness of the flat slab, different values of jacking (force (P) / area of strand (A)) and also, study the flat slab with opening by changing the values of P/A. Results indicated significant effect of PT system in the flat slab by decreasing the deflection. Also, the magnitude of the bending moment is reversed at one internal column by increasing the value of P/A for large thickness.
    VL  - 2
    IS  - 2
    ER  - 

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Author Information
  • Department of Structural Engineering, Faculty of Engineering, Zagazig University, Zagazig, Egypt

  • Department of Structural Engineering, Faculty of Engineering, Zagazig University, Zagazig, Egypt

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