Performance of the HFRC beam with E-glass and Basalt fibre under Torsion

S. Manikandaprabhu1, Deendayal Rathod1
1National Institute of Technology (NIT), Tamil Nadu, Tiruchirappalli, India, Email

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Li VC (2003) On engineered cementitious composites (ECC). J Adv Concr Technol 1(3):215–230. https://doi.org/10.3151/jact.1.215

Bencardino F, Rizzuti F, Spadea G, Swamy RN (2010) Experimental evaluation of fibre reinforced concrete fracture properties. Compos B Eng 41(1):17–24

Rachchh NV, Trivedi DN (2018) Mechanical characterization and vibration analysis of hybrid E-glass/bagasse fibre polyester composites. Materials Today: Proceedings 5:7692–7700

Iskender M, Karasu B (2018) Glass fibre reinforced concrete (GFRC). El-Cezeri Journal of Science and Engineering 5(1):136–162

Sivakumar VR, Kavitha OR, Prince Arulraj G, Srisanthi VG (2017) An experimental study on combined effects of glass fibre and metakaolin on the rheological, mechanical, and durability properties of self-compacting concrete. Appl Clay Sci 147:123–127

Adesina A, Bastani A, Heydariha JZ, Sreekanta D, David L (2020) Performance of basalt fibre -reinforced concrete for pavement and flooring applications. Innovation and Infrastructure Solution 5:103

Sagar B, Sivakumar MVN (2021) Performance evaluation of basalt fibre -reinforced polymer rebars in structural concrete members–a review. Innovation Infrastructure Solution. https://doi.org/10.1007/s41062-020-00452-2

Rathod D, Sundaramoorthy M (2021) Effect of hybrid E-glass and basalt fibre on the flexural behaviour of concrete. Proceedings of the Institution of Civil Engineers - Construction Materials. https://doi.org/10.1680/jcoma.20.00051

RF Hassan, MH Jaber, NH Al-Salim, HH Hussein (2020) Experimental research on torsional strength of synthetic/steel fibre -reinforced hollow concrete beam. Engineering Structures. 220.

Punmia BC, Kumar JA, Kumar JA (2007) Limit state design of reinforced concrete. Laxmi Publications (P) Ltd, New Delhi, p 194

Gradinaru CM, Serbanoiu AA, Serbanoiu BV (2018) Fibre-reinforced concrete—A sustainable material in the context of building industry and environmental challenges. Advances in Environmental Sciences 10(1):1–6

Bencardino F (2013) Mechanical parameters and post-cracking behaviour of HPFRC according to three-point and four-point bending test. Advances in Civil Engineering. https://doi.org/10.1155/2013/179712

Vishaul K, Manikandaprabhu S, Radhakrishnan R (2020) Structural behaviour of hybrid fibre reinforced concrete – An experimental study. Materials today proceedings. https://doi.org/10.1016/j.matpr.2020.09.784

Olivito RS, Zuccarello FA (2010) An experimental study on the tensile strength of steel fibre reinforced concrete. Compos B Eng 41(3):246–255

Caggiano A, Folino P, Lima C, Martinelli E, Pepe M (2017) On the mechanical response of Hybrid Fibre Reinforced Concrete with Recycled and Industrial Steel Fibres. Constr Build Mater 147:286–295

Bhosale AB, Prakash SS (2020) Crack propagation analysis of synthetic vs steel vs hybrid fibre -reinforced concrete beams using digital image correlation technique. International Journal of Concrete Structures and Material. https://doi.org/10.1186/s40069-020-00427-8

Gunasekaran K, Ramasubramani R, Annadurai R, Prakash Chandar S (2014) Study on reinforced lightweight coconut shell concrete beam behaviour under torsion. Mater Des 57:374–382

BIS (Bureau of Indian Standards) (2009) IS 10262–2009, Guidelines for concrete mix design proportioning, BIS, New Delhi, India.

Praveen Kumar K, Radhakrishna, (2015) Strength and Workability of Cement Mortar with Manufactured Sand. International Journal of Research in Engineering and Technology 4(1):186–189

Ramasubramani R, Gunasekaran K (2021) Sustainable Alternate Materials for Concrete Production from Renewable Source and Waste. Sustainability 13(3):1204

BIS (Bureau of Indian Standards) (1970) IS 383–1970, Specification for coarse and fine aggregates from natural sources for concrete, BIS, New Delhi, India.

Ali MA, White RN (1999) Toward a rational approach for the design of minimum torsion reinforcement. ACI Struct J 96(1):40–45

Macgregor JG, Ghoneim MG (1995) Design for torsion. ACI Struct J 92(2):211–218

ACI (American Concrete Institute) (1989) ACI 318–1989. Building code requirements for reinforced concrete and commentary, Farmington Hills, United States of America.

ACI (American Concrete Institute) (1995) ACI 318–1995. Building code requirements for structural concrete and commentary, Farmington Hills, United States of America.

Hsu YC, Hwang CS (1977) Torsional limit design of spandrel beams. ACI Struct J 74(2):71–79

Park R, Paulay T (1975) Reinforced concrete structures. A Wiley-interscience publication, John Wiley and Sons, New York, London, Sydney, Toronto