Accès libre

Retracted: Non-Linear Analysis of Hybrid Reinforced T- Beam with Partial Substitution Recycled Rubberized Concrete

À propos de cet article

Citez

OZBAY, E. – MOHAMED, L. - UMUR K. S.: Compressive strength, abrasion resistance and energy absorption capacity of rubberized concretes with and without slag. Materials and Structures, Vol. 44, No. 7, 2010, pp. 1297–1307. Search in Google Scholar

OIKONOMOU, N. - MAVRIDOU, S.: The use of waste tire rubber in civil engineering works. Sustainability of Construction Materials, 2009, pp. 213–238. Search in Google Scholar

NAJIM, K. B. - HALL, M. R.: A Review of the fresh/hardened properties and applications for plain- (PRC) and self-compacting rubberized concrete (SCRC). Construction and Building Materials, Vol. 24, No. 11, 2010, pp. 2043–2051. Search in Google Scholar

ZHENG, L. - SHARON, H. X. - YUAN, Y.: Experimental investigation on dynamic properties of rubberized concrete. Construction and Building Materials, Vol. 22, No. 5, 2008, pp. 939–947. Search in Google Scholar

NAJIM, K. B. – MATTHEW, R. H.: Mechanical and dynamic properties of self-compacting crumb rubber modified concrete. Construction and Building Materials, Vol. 27, No. 1, 2012, pp. 521–530. Search in Google Scholar

ISMAIL, M. K. – ASSEM, A. A. H.: An experimental study on flexural behavior of large-scale concrete beams incorporating crumb rubber and steel fibers. Engineering Structures, Vol. 145, 2017, pp. 97–108. Search in Google Scholar

MENDIS, A. S. M. - SAFAT AL-DEEN – MAHMUD, A.: Flexural shear behavior of reinforced crumbed rubber concrete beam. Construction and Building Materials, Vol. 166, 2018, pp. 779–791. Search in Google Scholar

MOHANKAR, R. H. - PIDURKAR, M. D. - THAKRE, P. V. – PAKHARE, S. S.: Hybrid fiber reinforced concrete. International Journal of Science, Engineering and Technology Research (IJSETR), Vol. 5, No.1, 2016. Search in Google Scholar

NES, L. G. - JAN, A. Ø.: Structural behavior of layered beams with fiber-reinforced LWAC and normal density concrete. Materials and Structures, Vol. 49, No. 1–2, 2015, pp. 689–703. Search in Google Scholar

OLOKE, D. – PAUL, O. – DAVID, P.: Demonstrating hybrid concrete construction performance through virtual simulation–a case study approach. Proceedings of the first SCRI International Symposium, 2004. Search in Google Scholar

COVENTRY, K. - RICHARDSON, A. – ELI, D.: Impact resistance of concrete - using slit rubber from tyres. Euro-Elecs-2015: Latin American and European Conference on Sustainable Buildings and Communities - Guimaraes, 2015, pp. 347-354. Search in Google Scholar

LI, V.C.: A Simplified micromechanical model of compressive strength of fiber-reinforced cementitious composites. Cement and Concrete Composites, Vol. 14, No. 2, 1992, pp. 131–141. Search in Google Scholar

AL-TAYEB, M. - BAKAR, B. – HANAFI, I. - AKIL, H.: Experimental and nonlinear dynamic analysis of hybrid powder rubberized-normal concrete under impact load. Caspian Journal of Applied Sciences Research, Vol. 1, No. 11, 2012. Search in Google Scholar

AHMED, T. N.: Effect crumb rubber aggregate on toughness and impact energy of steel fiber concrete, PhD thesis. School of Civil Engineering University Sains Malaysia, 2017. Search in Google Scholar

MOHD, A. B. A. W. – BADORUL, H. A. B.: Stress-strain responds of full scale rubberized reinforced concrete beam in bending, Dissertation. School of Civil Engineering, University Sains Malaysia, 2016. Search in Google Scholar

MOHAMED ESSAM: Performance of hybrid reinforced T - Beam with partial substitution recycled rubberized concrete. PhD. Thesis in preparation, Banha University, 2022. Search in Google Scholar

MAJOR, M. - MAJOR, I. - KUCHÁROVÁ, D. - KULIŃSKI, K.: Reduction of dynamic impacts in block made of concrete – rubber composites. Civil and Environmental Engineering, Vol. 14, Iss. 1, 2018, pp. 61–68. Search in Google Scholar

SUCHARDA, O. – MATECKOVA, P. – BILEK, V.: Non-Linear Analysis of an RC Beam Without Shear Reinforcement with a Sensitivity Study of the Material Properties of Concrete. Slovak Journal of Civil Engineering, Vol. 28, No. 1, 2020, pp. 33–43. Search in Google Scholar

VALAŠÍK, A. – BENKO, V. – STRAUSS, A. – TÄUBLING, B.: Reliability assessment of slender concrete columns at the stability failure. AIP Conference Proceedings, Vol. 1922, 2018, pp. 130010-1-130010-7. Search in Google Scholar

STRAUSS, A. – BENKO, V. – TÄUBLING, B. – VALAŠÍK, A. – ČUHÁK, M.: Reliability of slender columns. Beton und Stahlbetonbau, Vol. 112, No. 7, 2017, pp. 392-401. Search in Google Scholar

WU, L. – CHUNG C. N. – MAJOR, Z. – LAURENT, A. – LUDOVIC, N.: From SEM images to elastic responses: A stochastic multiscale analysis of UD fiber reinforced composites. Composite Structures, Vol. 189, 2018. Search in Google Scholar

KOZIELOVA, M. – MARCALIKOVA, Z. – MATECKOVA, P. – SUCHARDA, O.: Numerical Analysis of Reinforced Concrete Slab with Subsoil, Civil and Environmental Engineering, Vol. 16, Iss. 1, 2020, pp. 107-118. Search in Google Scholar

SAS IP, 1999: ANSYS Theory Reference Release 5.6, ANSYS, Inc. Canonsburg, Pennsylvania, USA. Search in Google Scholar