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Cites:

Information Journal Paper

Title

Behavior Pattern of Compressive and Tensile Strength of Structural Lightweight Concrete Consisting perlite, Leca and Steel Fiber

Pages

  47-57

Abstract

 Considering that the weight of the structure increases the forces involved, especially the lateral forces such as earthquakes, so for this reason, as far as we can take the building path, we have been able to withstand earthquake resistance to the structure. Since, one of the commonly used methods for producing the light eight concrete, utilizes the light weight aggregates with significant role in the concrete strength, proposing the optimized mix-design for the light weight concrete appears to be important. The result of experiments on 140 samples are representative of achieving to Structural lightweight concrete according to ASTM C330 Standard which limits the specific gravity of structural light weight concrete to 1850 kg/cm3 and limits the minimum Compressive strength of Structural lightweight concreteto170 kg/cm3. Specific gravity and Compressive strength of samples could be reached to defined limitation according to ASTM C330 Standard by using the very little particles of Pozzolans and by changing in Mix design.

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  • Cite

    APA: Copy

    Shaddel, Hossein, Kheyry ghojehbigli, Milad, & Enayati Tekleh, Abdollah. (2018). Behavior Pattern of Compressive and Tensile Strength of Structural Lightweight Concrete Consisting perlite, Leca and Steel Fiber. JOURNAL OF STRUCTURAL ENGINEERING, 15(2 ), 47-57. SID. https://sid.ir/paper/380056/en

    Vancouver: Copy

    Shaddel Hossein, Kheyry ghojehbigli Milad, Enayati Tekleh Abdollah. Behavior Pattern of Compressive and Tensile Strength of Structural Lightweight Concrete Consisting perlite, Leca and Steel Fiber. JOURNAL OF STRUCTURAL ENGINEERING[Internet]. 2018;15(2 ):47-57. Available from: https://sid.ir/paper/380056/en

    IEEE: Copy

    Hossein Shaddel, Milad Kheyry ghojehbigli, and Abdollah Enayati Tekleh, “Behavior Pattern of Compressive and Tensile Strength of Structural Lightweight Concrete Consisting perlite, Leca and Steel Fiber,” JOURNAL OF STRUCTURAL ENGINEERING, vol. 15, no. 2 , pp. 47–57, 2018, [Online]. Available: https://sid.ir/paper/380056/en

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