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Zygomalas M., Iványi P., Baniotopoulos C.C. Pullout of steel bolts from plates in structural steel connections, Proceedings of the 5th National (Greek) Conference on Metal Structures , (in Greek), 2005, pp. 338

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530 538 Pompo A., Stupak P. R., Nicolais L., Marchese B. Analysis of steel fiber pull-out from a cement matrix using video photography, Cement and Concrete Composites , Vol. 18

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II 5 11 Naaman A. E., Shah, S. P. (1976), Pull-out mechanism in steel fibre reinforced concrete. Proceedings, ASCE, 102(8, Aug.), 1537

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Naaman A. E., Shah S. P. (1976), Pull-out mechanism in steel fibre reinforced concrete. Proceedings, ASCE, 102(ST8, Aug.), 1537–1558. Shah S. P. Pull-out mechanism in steel fibre

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) modified cement-based matrices ,” Cement Concr. Res. , vol. 26 , no. 5 , pp. 657 – 662 , May 1996 . 10.1016/S0008-8846(96)85000-9 [7] E. Baran , T. Akis , and S. Yesilmen , “ Pull-out behavior of prestressing strands in steel fiber reinforced

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Iványi P. Numerical investigation of the pullout phenomenon of a bolt from a steel plate, Pollack Periodica , Vol. 3, No. 2, 2008, pp. 35–50. Iványi P. Numerical investigation of

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Kaziolas D. N., Efthymiou E., Zygomalas M., Baniotopoulos C. C. Investigation of the pull-out phenomenon in steel bolted connections, Numerical modeling and laboratory testing, In Transactions of FAMENA , Vol 33, No. 1, 2009, pp. 11

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Pollack Periodica
Authors: Bode Venkata Kavyateja, J. Guru Jawahar, Chundupalle Sashidhar, and Narasimha Reddy Panga

used for the normal concrete mix. Different concrete mix proportions were adopted. The study led to a conclusion that the enhanced filling ability of SCC results in higher bond strengths. Foroughi-Asl et al. [ 4 ] reported on pullout tests designed to

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. [9] P. Iványi , “ Numerical investigation of the pullout phenomenon of a bolt from a steel plate ,” Pollack Period. , vol. 3 , no. 2 , pp. 35 – 50 , 2007 . 10.1556/Pollack.3.2008.2.4 [10] C. R. Bass , J. R. Crandall , J. R. Bolton , W. D

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