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NAJIMI, M.–SOBHANI, J.–POURKHORSHIDI, A.: A comprehensive study on no-slump concrete: from laboratory towards manufactory. Construction and Building Materials. Vol. 30, 2012, pp. 529-536. Search in Google Scholar

YUAN, T.-F. - LEE, J.-Y. - YOON, Y. S.: Enhancing the tensile capacity of no-slump high-strength high-ductility concrete. Cement and Concrete Composites. Vol. 106, 2020, pp. 103458. Search in Google Scholar

COMMITTEE, A. Guide for selecting proportions for no-slump concrete reported by ACI committee 211. in American Concrete Institute. 2002. Search in Google Scholar

HUNG, L. - KAEWMANEE, K. - TANGTERMSIRIKUL, S.: Early-Age Compressive Strength of No-Slump Concrete Taking into Account the Effect of Curing Temperature. Science & Technology Asia. 2021, pp. 25-33. Search in Google Scholar

HÜSKEN, G. - BROUWERS, H.: On the early-age behavior of zero-slump concrete. Cement and concrete research. Vol. 42, Iss.(3) 2012, pp. 501-510. Search in Google Scholar

ZHOU, C. - CHEN, Z.: Mechanical properties of recycled concrete made with different types of coarse aggregate. Construction and Building Materials. Vol. 134, 2017, pp. 497-506. Search in Google Scholar

BELAÏD, F.: How does concrete and cement industry transformation contribute to mitigating climate change challenges? Resources, Conservation & Recycling Advances. Vol. 15, 2022, pp. 200084. Search in Google Scholar

BEHERA, M. - BHATTACHARYYA, S. - MINOCHA, A. - DEOLIYA, R. - MAITI, S.: Recycled aggregate from C&D waste & its use in concrete – A breakthrough towards sustainability in construction sector: A review. Construction and Building Materials. Vol. 68, 2014, pp. 501-516. Search in Google Scholar

DUAN, H. - MILLER, T. R. - LIU, G. - TAM, V. W.: Construction debris becomes growing concern of growing cities. Waste Management. Vol. 83, 2019, pp. 1-5. Search in Google Scholar

HARISH, B. - RAMANA, N. V. - GNANESWAR, K.: Experimental and analytical studies on recycled coarse aggregate concrete. Materials Today: Proceedings. Vol. 46, 2021, pp. 294-300. Search in Google Scholar

ATTRI, G. K. - GUPTA, R. - SHRIVASTAVA, S.: Impact of recycled concrete aggregate on mechanical and durability properties of concrete paver blocks. Materials Today: Proceedings. Vol. 42, 2021, pp. 975-981. Search in Google Scholar

KUMAR, G. - GUPTA, R. C. - SHRIVASTAVA, S.: Sustainable Zero-Slump Concrete Containing Recycled Aggregates from Construction and Demolition Waste of a 63-Year-Old Demolished Building. Journal of Materials in Civil Engineering. Vol. 34, Iss. 7, 2022, pp. 04022115. Search in Google Scholar

ASTM C150/C150M: Standard Specification for Portland Cement. 2022. Search in Google Scholar

ASTM C33/C33M, A.: Standard Specification for Concrete Aggregates. 2023. Search in Google Scholar

ASTM C143/C143M, A.: Standard Test Method For Slump of Hydraulic-Cement Concrete. 2020. Search in Google Scholar

1881-116, B.S.: Method for determination of compressive strength of concrete cubes. 1983. Search in Google Scholar

ASTM C597.: Standard Test Method for Ultrasonic Pulse Velocity Through Concrete. American Society for Testing and Materials. 2022. Search in Google Scholar

ASTM C293/C293M: Standard test method for flexural strength of concrete (Using simple beam with center-point loading. American Society for Testing and Materials. 2016. Search in Google Scholar

ASTM C642: Standard test method for density, absorption, and voids in hardened Concrete. American Society for Testing and Materials. 2021. Search in Google Scholar

SURENDAR, M. - ANANTHI, G. B. G. - SHARANIYA, M. - DEEPAK, M. - SOUNDARYA, T.: Mechanical properties of concrete with recycled aggregate and M− sand. Materials Today: Proceedings. Vol. 44, 2021, pp. 1723-1730. Search in Google Scholar

BARHMAIAH, B. - PRIYANKA, M. L. - PADMAKAR, M.: Strength analysis and validation of recycled aggregate concrete. Materials Today: Proceedings. Vol. 37, 2021, pp. 2312-2317. Search in Google Scholar

VERIAN, K. P. - ASHRAF, W. - CAO, Y.: Properties of recycled concrete aggregate and their influence in new concrete production. Resources, Conservation and Recycling. Vol. 133, 2018, pp. 30-49. Search in Google Scholar

THOMAS, J. - THAICKAVIL, N. N. - WILSON, P.: Strength and durability of concrete containing recycled concrete aggregates. Journal of Building Engineering. Vol. 19, 2018, pp. 349-365. Search in Google Scholar

CANTERO, B. - BRAVO, M. - DE BRITO, J. - DEL BOSQUE, I. S. - MEDINA, C.: Mechanical behaviour of structural concrete with ground recycled concrete cement and mixed recycled aggregate. Journal of Cleaner Production. Vol. 275, 2020, pp. 122913. Search in Google Scholar

MALHOTRA, V.: Testing hardened concrete: Non-destructive methods. ACI Monograph ACI. Iowa State University Press, 1976. Search in Google Scholar

KURDA, R. - DE BRITO, J. - SILVESTRE, J. D.: Indirect evaluation of the compressive strength of recycled aggregate concrete with high fly ash ratios. Magazine of Concrete Research. Vol. 70, Iss. 4, 2018, pp. 204-216. Search in Google Scholar

HO, N. Y. - LEE, Y. P. K. - LIM, W. F. - ZAYED, T. - CHEW, K. C. - LOW, G. L. - TING, S. K.: Efficient utilization of recycled concrete aggregate in structural concrete. Journal of Materials in Civil Engineering. Vol. 25, Iss. 3, 2013, pp. 318-327. Search in Google Scholar

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