مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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Information Journal Paper

Title

PREDICTION OF TWIST AT CRACKING TORQUE OF FERROCEMENT “U” WRAPPED RCC BEAMS

Pages

  173-190

Abstract

 Wrapping technology is one of the effective ways of strengthening concrete elements. Several researchers reported the effectiveness of Glass fiber reinforced polymers and carbon fiber reinforced polymers for improving the strength of the concrete elements. Wrapping on three sides is one of the effective methods for strengthening the beams supporting slabs. Very less literature is available on the strength enhancement of "U" wrapped concrete elements subjected to torsional loads. In this investigation an attempt is made to quantify the improvement in twist of "U" wrapped rectangular concrete members subjected to torsional loads "U" wraps. Carbon fiber has taken the drivers seat as a wrapping material in developed countries. From cost effective point of view FERROCEMENT can be used as a wrapping material in place of FRP. Beams were cast with different number of mesh layers, different torsional reinforcement, different grades of concrete and mortar. The beams were analyzed with MARS. ANALYTICAL MODEL was developed to predict secant stiffness at cracking torque. The predictions for TWIST AT CRACKING TORQUE are in good agreement with experimental test results.

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    Cite

    APA: Copy

    BEHERA, G.C.. (2017). PREDICTION OF TWIST AT CRACKING TORQUE OF FERROCEMENT “U” WRAPPED RCC BEAMS. ASIAN JOURNAL OF CIVIL ENGINEERING (BUILDING AND HOUSING), 18(2), 173-190. SID. https://sid.ir/paper/299223/en

    Vancouver: Copy

    BEHERA G.C.. PREDICTION OF TWIST AT CRACKING TORQUE OF FERROCEMENT “U” WRAPPED RCC BEAMS. ASIAN JOURNAL OF CIVIL ENGINEERING (BUILDING AND HOUSING)[Internet]. 2017;18(2):173-190. Available from: https://sid.ir/paper/299223/en

    IEEE: Copy

    G.C. BEHERA, “PREDICTION OF TWIST AT CRACKING TORQUE OF FERROCEMENT “U” WRAPPED RCC BEAMS,” ASIAN JOURNAL OF CIVIL ENGINEERING (BUILDING AND HOUSING), vol. 18, no. 2, pp. 173–190, 2017, [Online]. Available: https://sid.ir/paper/299223/en

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