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[1] TANG, W. C. - RYAN, P. C. - CUI, H. Z. - LIAO, W.: Properties of Self-Compacting Concrete with Recycled Coarse Aggregate. Advs. in Mats. Sci. and Eng., 2016, 11 p.10.1155/2016/2761294 Search in Google Scholar

[2] DUAN, Z. - HAN, N. - SINGH, A. - XIAO, J.: Multi-Scale Investigation on Concrete Prepared with Recycled Aggregates from Different Parent Concrete. J. of Renewable Mats., 8, 11, 2020, pp. 1375-1390.10.32604/jrm.2020.013044 Search in Google Scholar

[3] SILVA, F. A. N. - DELGADO, J. M. P. - AZEVEDO, A. C. - LIMA, A. G. B. - VIEIRA, C. S.: Preliminary Analysis of the Use of Construction Waste to Replace Conventional Aggregates in Concrete. Buildings, 11, 81, 2021, 13 p.10.3390/buildings11030081 Search in Google Scholar

[4] OAD, M. - BULLER, A. H. - MEMON, B. A. - MEMON, N. A. - TUNIO, Z. A. - MEMON, M. A.: Effect of Water-Cement Ratio on Flexural Strength of RC Beams Made with Partial Replacement of Coarse Aggregates with Coarse Aggregates from Old Concrete. Eng., Technol. & Applied Sci. Res., 9, 1, 2019, pp. 3826-3831.10.48084/etasr.2499 Search in Google Scholar

[5] YANG, I. H. - PARK, J. - KIM, K. C. - LEE, H.: Structural Behavior of Concrete Beams Containing Recycled Coarse Aggregates under Flexure. Advs. in Mats. Sci. and Eng., 2020, 15 p.10.1155/2020/8037131 Search in Google Scholar

[6] AL-LUHYBI, A. S. - QADER, D. N.: Mechanical Properties of Concrete with Recycled Plastic Waste. Civil and Environmental Engineering, 17, 2, 2021, pp. 629-643, https://doi.org/10.2478/cee-2021-0063. Search in Google Scholar

[7] ETXEBERRIA, M. - MARI´, A. R. - VA´ZQUEZ, E.: Recycled aggregate concrete as structural material. Mats. and Strucs., 40, 2007, pp. 529–541.10.1617/s11527-006-9161-5 Search in Google Scholar

[8] KUMUTHA, R. - VIJAI, K.: Strength of Concr. Incorporating Aggregates Recycled from Demolition Waste. ARPN J. of Eng. and Applied Scis., 5, 5, 2010, pp. 64-71. Search in Google Scholar

[9] BASHANDY, A. A. - SOLIMAN, N. M. - HAMDY, M.: Recycled Aggregate Self-curing High-strength Concrete. Civ. Eng. J., 3, 6, 2017, pp. 427-441.10.28991/cej-2017-00000102 Search in Google Scholar

[10] GHOLAMPOUR, A. - OZBAKKALOGLU, T.: Time-dependent and long-term mechanical properties of concretes incorporating different grades of coarse recycled concrete aggregates. Eng. Strucs., 157, 2018, pp. 224–234.10.1016/j.engstruct.2017.12.015 Search in Google Scholar

[11] SADOWSKA- BURACZEWSKA, B. - BARNAT- HUNEK, D. - SZAFRANIEC, M.: Influence of Recycled High-Performance Aggregate on Deformation and Load-Carrying Capacity of Reinforced Concrete Beams. Materials, 13, 186, 2020, 18 p.10.3390/ma13010186 Search in Google Scholar

[12] SADOWSKA- BURACZEWSKA, B. - GRZEGORCZYK- FRA´NCZAK, M.: Sustainable Recycling of High-Strength Concrete as an Alternative to Natural Aggregates in Building Structures. Sustainability, 13, 4286, 2021, 16 p.10.3390/su13084286 Search in Google Scholar

[13] ULLOA-MAYORGA, V. A. - URIBE-GARCÉS, M. A. - PAZ-GÓMEZ, D. P. - ALVARADO, Y. A. -TORRES, B. - GASCH, I.: Performance of pervious concrete containing combined recycled aggregates. Ingeniería e Investigación, 38, 2, 2018, pp. 34-41.10.15446/ing.investig.v38n2.67491 Search in Google Scholar

[14] MALEŠEV, M. - RADONJANIN, V. - MARINKOVIĆ, S.: Recycled Concrete as Aggregate for Structural Concrete Production. Sustainability, 2010, 2, pp. 1204-1225.10.3390/su2051204 Search in Google Scholar

[15] MCNEIL, K. - KANG, T. H. K.: Recycled Concrete Aggregates: A Review. Int. J. of Concr. Strucs. and Mats., 7, 1, 2013, pp. 61–69.10.1007/s40069-013-0032-5 Search in Google Scholar

[16] GHALEHNOVI, M. - KARIMIPOUR, A. - DE BRITO, J. - CHABOKI, H. R.: Crack Width and Propagation in Recycled Coarse Aggregate Concrete Beams Reinforced with Steel Fibres. Applied Sciences, 10, 7587, 2020, 27 p.10.3390/app10217587 Search in Google Scholar

[17] AREZOUMANDI, M. - SMITH, A. - VOLZ, J. S. - KHAYAT, K. H.: An experimental study on flexural strength of reinforced concrete beams with 100 % recycled concrete aggregate. Eng. Strucs., 88, 2015, pp. 154–162.10.1016/j.engstruct.2015.01.043 Search in Google Scholar

[18] SEARA-PAZ, S. - GONZALEZ-FONTEBOA, B. - MART´INEZ-ABELLA, F. - EIRAS-LOPEZ, J.: Flexural performance of reinforced concrete beams made with recycled concrete coarse aggregate. Eng. Strucs., 156, 2018, pp. 32–45.10.1016/j.engstruct.2017.11.015 Search in Google Scholar

[19] SUNAYANA, S. - BARAI, S. V.: Flexural performance and tension-stiffening evaluation of reinforced concrete beam incorporating recycled aggregate and fly ash. Constr. and Build. Mats., 174, 2018, pp. 210–223.10.1016/j.conbuildmat.2018.04.072 Search in Google Scholar

[20] FAHMY, M. F. M. - IDRISS, L. K.: Flexural behavior of large scale semi-precast reinforced concrete T-beams made of natural and recycled aggregate concrete. Eng. Strucs., Vol. 198, 2019, 16 p.10.1016/j.engstruct.2019.109525 Search in Google Scholar

[21] WANG, F. - YU, Y. - ZHAO, X. - XU, J. - XIE, T. - DERESA, S. T.: Performance Evaluation of Reinforced Recycled Aggregate Concrete Columns under Cyclic Loadings. Applied Sciences, 9, 1460, 2019, 27 p.10.3390/app9071460 Search in Google Scholar

[22] IRAQI STANDARD SPECIFICATION NO.5/1984.: Portland cement. Central Organization for Standardization and Control Quality. Search in Google Scholar

[23] IRAQI STANDARD SPECIFICATION NO. 45/1984.: Aggregate from Natural Sources for Concrete and Construction. Central Organization for Standardization and Control Quality. Search in Google Scholar

[24] BS EN 12390-3:2019: Testing hardened concrete - Compressive strength of test specimens. British Standards Institution, 2019. Search in Google Scholar

[25] ASTM C496/C496M-11.: Standard Test Method for Splitting Tensile Strength of Cylindrical Concrete Specimens. American Society of Testing and Materials, 2011. Search in Google Scholar