Effect of Repeated Loads on Modulus of Elasticity for Fiber Reinforced Concrete
محتوى المقالة الرئيسي
الملخص
In this research the effect of repeated loads on the initial modulus of elasticity for the fiber reinforced concrete was studied by casting six standard cylinders specimen (150*300mm) for every ratio of fiber, three volume ratios of steel fiber (0,0.4,0.8,1.2)%,were used after 28 days the specimen was tested choosing mix with water cement ratio that gives slump about (80-100) mm. The modulus of elasticity for fiber reinforced concrete cylinders at 28 days for the same ratio were tested by applying load on the three specimens until failure. The other specimens was studied under loads ratio (50%, 60%,75%) from the ultimate load under 25 repeated load then the stress-strain curve was found until load failure. The modulus of elasticity was calculated from the linear part of the stress-strain relationship.
المقاييس
تفاصيل المقالة

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المراجع
Hartmann T., ”Steel Fiber Reinforced Concrete”, Department of Structural Engineering Royal Institute of Technology, Stockholm, April-May 1999, pp.1- 44.
ACI Committee 544, ”Guide for Specifying , proportioning, Mixing, placing, and Finishing Steel Fiber Reinforced Concrete”, ACI Journal, Vol. 81, May, 1993, pp.140-148.
Romualdi, J.P. and Baston, G.B., “The behavior of reinforced concrete beams with closely spaced reinforcement”, ACI Journal, Proceeding, Vol.60, No.6, June 1963, pp.775-789. DOI: https://doi.org/10.14359/7878
Romualdi, J.P. and Mandel, J.A.” Tensile strength of concrete affected by uniformly distributed and closely spaced short lengths of wire reinforcement”, ACI, Journal, Proceeding, Vol.61, No.6, June 1964, pp. 657-671. DOI: https://doi.org/10.14359/7801
حمدي علي احسان ،دراسة بعض خواص الخرسانة الخالية من الرمل ،رسالة ماجستير هندسة البناء والانشاءات الجامعة التكنولوجية بغداد العراق 1985.
Otter, D. and Naaman, A.E., ” Properities of steel fiber reinforced concrete under cyclic loading”, ACI Journal, July-August 1988, pp.254- 261.
Tanigawa, Y. and Hatanaka, S., “Stress-strain relations of steel fiber reinforced concrete under repeated compressive load”, Cement and Concrete Research, Vol. 13, 1983, PP.801-808. DOI: https://doi.org/10.1016/0008-8846(83)90081-9
Cowell, W.L.,”Youngs modulus of elasticity and poisons ratio of plain concrete”, Naval civil engineering lab port hueneme calif. April, 1964, pp. 1-38.
Balendran R.V.,” Estimating the elastic modulus of concrete made with artificially manufactured lightweight aggregates”, Structural survey, Volume 13, Number 2, 1995, pp. 16-20(5). DOI: https://doi.org/10.1108/02630809510094526
British Standards (BSI), “Aggregates from natural sources for concrete”, B.S.882-1973 and B.S. 882-1983.
ASTM (C469-02),”Static Modulus of Elasticity and Poisson’s Ratio of Concrete in Compression”, American Society for Testing and Materials, 2002.
ASTM (C617-98)(Reap proved 2003),”Capping Cylindrical Concrete Specimens”, American Society for Testing and Materials, 2003.
ACI(318-05 Committee), ”Building Code Requirements for Structural Concrete Appendix D: Anchorage Requirement”, American Concrete Institute, Farmington Hills, Michigan, 2005, pp.379-406.