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Evaluating the creep behaviour of plastic-processed aggregate-based concrete

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15 mar 2025

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Zafar, I., Sustainable Alternatives for Green Mortar: Quarry Waste and Ultra high fly ash utilization, In: The Proceedings of International Conference on Sustainability: Developments and Innovations – Prince Sultan University, Riyadh, KSA. IOP Conference Series: Earth and Environmental Science, 2022, Vol. 1026, No. 1, p. 012034 Zafar I. Sustainable Alternatives for Green Mortar: Quarry Waste and Ultra high fly ash utilization In: The Proceedings of International Conference on Sustainability: Developments and Innovations – Prince Sultan University, Riyadh, KSA. IOP Conference Series: Earth and Environmental Science 2022 Vol. 1026 No. 1 p. 012034 Search in Google Scholar

Wendling, A., Sadhasivam, K., Floyd, R.W., Creep and shrinkage of lightweight self-consolidating concrete for prestressed members, Constr. Build. Mater., 2018, 167: 205–215 Wendling A. Sadhasivam K. Floyd R.W. Creep and shrinkage of lightweight self-consolidating concrete for prestressed members Constr. Build. Mater. 2018 167 205 215 Search in Google Scholar

Bischoff, P.H, Torres, L., Rational approach for computing long-term deflection of reinforced concrete, ACI Struct. J., 2021, 118: 215–224 Bischoff P.H Torres L. Rational approach for computing long-term deflection of reinforced concrete ACI Struct. J. 2021 118 215 224 Search in Google Scholar

Mehta, P.K., Monteiro, P.J.M., Concrete: microstructure, properties, and materials. 4th ed., McGraw-Hill Education, 1325 Avenue of the Americas New York, NY 10019, USA, 2006 Mehta P.K. Monteiro P.J.M. Concrete: microstructure, properties, and materials 4th ed. McGraw-Hill Education, 1325 Avenue of the Americas New York, NY 10019 USA 2006 Search in Google Scholar

Neville, A., Creep of concrete and behavior of structures part II: Dealing with problems, Concr. Int., 2002, 24(6): 52–55 Neville A. Creep of concrete and behavior of structures part II: Dealing with problems Concr. Int. 2002 24 6 52 55 Search in Google Scholar

Zou, D., Liu, T., Teng, J., Du, C., Li, B., Influence of creep and drying shrinkage of reinforced concrete shear walls on the axial shortening of high-rise buildings, Constr. Build. Mater., 2014, 55: 46–56 Zou D. Liu T. Teng J. Du C. Li B. Influence of creep and drying shrinkage of reinforced concrete shear walls on the axial shortening of high-rise buildings Constr. Build. Mater. 2014 55 46 56 Search in Google Scholar

Mohammadhosseini, H., Alyousef, R., Lim, N.H., Tahir, M.M., Alabduljabbar, H., Mohamed, A.M. Creep and drying shrinkage performance of concrete composite comprising waste polypropylene carpet fibres and palm oil fuel ash, J. Build. Eng., 2020, 30: 101250 Mohammadhosseini H. Alyousef R. Lim N.H. Tahir M.M. Alabduljabbar H. Mohamed A.M. Creep and drying shrinkage performance of concrete composite comprising waste polypropylene carpet fibres and palm oil fuel ash J. Build. Eng. 2020 30 101250 Search in Google Scholar

Lee, J.H., Choi, R.J., Kwon, H.C., Min, K.H., An experimental study on creep characteristics of high strength concrete of 100 MPa, J. Korean Soc. Hazard. Mitig., 2018, 18: 13–18 Lee J.H. Choi R.J. Kwon H.C. Min K.H. An experimental study on creep characteristics of high strength concrete of 100 MPa J. Korean Soc. Hazard. Mitig. 2018 18 13 18 Search in Google Scholar

Frech-Baronet, J., Sorelli, L., Chen, Z., A closer look at the temperature effect on basic creep of cement pastes by microindentation, Constr. Build. Mater., 2020, 258: 119455 Frech-Baronet J. Sorelli L. Chen Z. A closer look at the temperature effect on basic creep of cement pastes by microindentation Constr. Build. Mater. 2020 258 119455 Search in Google Scholar

Liu, Y.S., Pang, J.Y., Yao, W.J., Effects of high temperature on creep behaviour of glazed hollow bead insulation concrete, Materials, 2020, 13(17): 3658 Liu Y.S. Pang J.Y. Yao W.J. Effects of high temperature on creep behaviour of glazed hollow bead insulation concrete Materials 2020 13 17 3658 Search in Google Scholar

Ltifi, M., Zafar, I., Effect of total substitution of crushed limestone sand on concrete durability, Eur. J. Environ. Civ. Eng., 2019, 26(1): 121–143 Ltifi M. Zafar I. Effect of total substitution of crushed limestone sand on concrete durability Eur. J. Environ. Civ. Eng. 2019 26 1 121 143 Search in Google Scholar

Muthusamy, K., Rasid, M.H., Jokhio, G.A., Budiea, A.M., Hussin, M.W., Mirza, J., Coal bottom ash as sand replacement in concrete: A review, Constr. Build. Mater., 2020, 236: 117507 Muthusamy K. Rasid M.H. Jokhio G.A. Budiea A.M. Hussin M.W. Mirza J. Coal bottom ash as sand replacement in concrete: A review Constr. Build. Mater. 2020 236 117507 Search in Google Scholar

Mohammed, A.A., Mohammed, I.I., Mohammed, S.A., Some properties of concrete with plastic aggregate derived from shredded PVC sheets, Constr. Build. Mater., 2019, 201: 232–245 Mohammed A.A. Mohammed I.I. Mohammed S.A. Some properties of concrete with plastic aggregate derived from shredded PVC sheets Constr. Build. Mater. 2019 201 232 245 Search in Google Scholar

Ismail, Z.Z., Al-Hashmi, E.A., Use of waste plastic in concrete mixture as aggregate replacement, Waste Manag., 2008, 28(11): 2041–2047 Ismail Z.Z. Al-Hashmi E.A. Use of waste plastic in concrete mixture as aggregate replacement Waste Manag. 2008 28 11 2041 2047 Search in Google Scholar

Abu-Saleem, M., Zhuge, Y., Hassanli, R., Ellis, M., Rahman, Z., Levett, P., Evaluation of concrete performance with different types of recycled plastic waste for kerb application, Constr. Build. Mater., 2021, 293: 123477 Abu-Saleem M. Zhuge Y. Hassanli R. Ellis M. Rahman Z. Levett P. Evaluation of concrete performance with different types of recycled plastic waste for kerb application Constr. Build. Mater. 2021 293 123477 Search in Google Scholar

Islam, M.J., Shahjalal, M., Effect of polypropylene plastic on concrete properties as a partial replacement of stone and brick aggregate, Case Stud. Constr. Mater., 2021, 15: e00627 Islam M.J. Shahjalal M. Effect of polypropylene plastic on concrete properties as a partial replacement of stone and brick aggregate Case Stud. Constr. Mater. 2021 15 e00627 Search in Google Scholar

Tayeh, B.A., Almeshal, I., Magbool, H.M., Alabduljabbar, H., Alyousef R., Performance of sustainable concrete containing different types of recycled plastic, J. Clean. Prod., 2021, 328: 129517 Tayeh B.A. Almeshal I. Magbool H.M. Alabduljabbar H. Alyousef R. Performance of sustainable concrete containing different types of recycled plastic J. Clean. Prod. 2021 328 129517 Search in Google Scholar

Castillo, E.R., Almesfer, N., Saggi, O., Ingham, J.M., Light-weight concrete with artificial aggregate manufactured from plastic waste, Constr. Build. Mater., 2020, 265: 120199 Castillo E.R. Almesfer N. Saggi O. Ingham J.M. Light-weight concrete with artificial aggregate manufactured from plastic waste Constr. Build. Mater. 2020 265 120199 Search in Google Scholar

Alqahtani, F.K., Khan, M.I., Ghataora, G., Inventors; King Saud University, assignee. Synthetic aggregate for use in concrete, United States patent US 8,921,463, 2014 Alqahtani F.K. Khan M.I. Ghataora G. Inventors; King Saud University, assignee. Synthetic aggregate for use in concrete United States patent US 8,921,463 2014 Search in Google Scholar

Kim, Y.H., Trejo, D., Hueste, M.B.D., Kim, J.J., Experimental study on creep and durability of high-early-strength selfconsolidating concrete for precast elements, ACI Mater. J., 2011, 108: 128 Kim Y.H. Trejo D. Hueste M.B.D. Kim J.J. Experimental study on creep and durability of high-early-strength selfconsolidating concrete for precast elements ACI Mater. J. 2011 108 128 Search in Google Scholar

Wu, F., Liu, C., Sun, W., Zhang, L., Ma, Y., Mechanical and creep properties of concrete containing apricot shell lightweight aggregate, KSCE J. Civ. Eng., 2019, 23: 2948–2957 Wu F. Liu C. Sun W. Zhang L. Ma Y. Mechanical and creep properties of concrete containing apricot shell lightweight aggregate KSCE J. Civ. Eng. 2019 23 2948 2957 Search in Google Scholar

Shen, D., Jiang, J., Shen, J., Yao, P., Jiang, G., Influence of prewetted lightweight aggregates on the behavior and cracking potential of internally cured concrete at an early age, Constr. Build. Mater., 2015, 99: 260–271 Shen D. Jiang J. Shen J. Yao P. Jiang G. Influence of prewetted lightweight aggregates on the behavior and cracking potential of internally cured concrete at an early age Constr. Build. Mater. 2015 99 260 271 Search in Google Scholar

Tang, W.C., Cui, H.Z., Wu, M., Creep and creep recovery properties of polystyrene aggregate concrete, Constr. Build. Mater., 2014, 51: 338–343 Tang W.C. Cui H.Z. Wu M. Creep and creep recovery properties of polystyrene aggregate concrete Constr. Build. Mater. 2014 51 338 343 Search in Google Scholar

Chen, H.J., Tsai, W.P., Tang, C.W., Liu T.H., Time-dependent properties of lightweight concrete using sedimentary lightweight aggregate and its application in prestressed concrete beams. Struct. Eng. Mech., 2011, 39: 833–847 Chen H.J. Tsai W.P. Tang C.W. Liu T.H. Time-dependent properties of lightweight concrete using sedimentary lightweight aggregate and its application in prestressed concrete beams Struct. Eng. Mech. 2011 39 833 847 Search in Google Scholar

Alqahtani, F. K., U.S. Patent No. 10,294,155. U.S. Patent and Trademark Office, Washington, DC, 2019 Alqahtani F. K. U.S. Patent No. 10,294,155. U.S. Patent and Trademark Office Washington, DC 2019 Search in Google Scholar

ASTM C136/C136M-14, Standard test method for sieve analysis of fine and coarse aggregates, ASTM International, West Conshohocken, PA, USA, 2014 ASTM C136/C136M-14 Standard test method for sieve analysis of fine and coarse aggregates ASTM International West Conshohocken, PA, USA 2014 Search in Google Scholar

ASTM C29/C29M-16, Standard test method for bulk density (“Unit Weight”) and voids in aggregate, ASTM International, West Conshohocken, PA, USA, 2016 ASTM C29/C29M-16 Standard test method for bulk density (“Unit Weight”) and voids in aggregate ASTM International West Conshohocken, PA, USA 2016 Search in Google Scholar

ASTM C127-15, Standard test method for relative density (specific gravity) and absorption of coarse aggregate, ASTM International, West Conshohocken, PA, USA, 2015 ASTM C127-15 Standard test method for relative density (specific gravity) and absorption of coarse aggregate ASTM International West Conshohocken, PA, USA 2015 Search in Google Scholar

ACI 211.2-98, American Concrete-ACI Committee 211, Standard practice for selecting proportions for structural lightweight concrete, Farmington Hills, MI, 2004 ACI 211.2-98 American Concrete-ACI Committee 211 Standard practice for selecting proportions for structural lightweight concrete Farmington Hills, MI 2004 Search in Google Scholar

ACI 211.1-91, American Concrete Institute-ACI Committee 211, Standard practice for selecting proportions for normal, heavyweight, and mass concrete, Farmington Hills, MI, 2009 ACI 211.1-91 American Concrete Institute-ACI Committee 211 Standard practice for selecting proportions for normal, heavyweight, and mass concrete Farmington Hills, MI 2009 Search in Google Scholar

BS EN 12390-7, Testing hardened concrete:Density of hardened concrete, British Standards Institution, London, UK, 2009 BS EN 12390-7 Testing hardened concrete:Density of hardened concrete British Standards Institution London, UK 2009 Search in Google Scholar

ASTM C39/C39M-16, Standard test method for compressive strength of cylindrical concrete specimens, ASTM International, West Conshohocken, PA, USA, 2016 ASTM C39/C39M-16 Standard test method for compressive strength of cylindrical concrete specimens ASTM International West Conshohocken, PA, USA 2016 Search in Google Scholar

ASTM C496/C496M-11, Standard test method for splitting tensile strength of cylindrical concrete specimens, ASTM International, West Conshohocken, PA, USA, 2011 ASTM C496/C496M-11 Standard test method for splitting tensile strength of cylindrical concrete specimens ASTM International West Conshohocken, PA, USA 2011 Search in Google Scholar

ASTM C469/C469M-14, Standard test method for static modulus of elasticity and poisson’s ratio of concrete in compression. ASTM International, West Conshohocken, PA, USA, 2014 ASTM C469/C469M-14 Standard test method for static modulus of elasticity and poisson’s ratio of concrete in compression ASTM International West Conshohocken, PA, USA 2014 Search in Google Scholar

ASTM C944/C944M-12, Standard test method for abrasion resistance of concrete or mortar surfaces by the rotating-cutter method. ASTM International, West Conshohocken, PA, USA, 2012 ASTM C944/C944M-12 Standard test method for abrasion resistance of concrete or mortar surfaces by the rotating-cutter method ASTM International West Conshohocken, PA, USA 2012 Search in Google Scholar

ASTM C512/C512M-15, Standard test method for creep of concrete in compression, ASTM International, West Conshohocken, PA, USA, 2015 ASTM C512/C512M-15 Standard test method for creep of concrete in compression ASTM International West Conshohocken, PA, USA 2015 Search in Google Scholar

ASTM C33/C33M-16, Standard specification for concrete aggregates, ASTM International, West Conshohocken, PA, USA, 2016 ASTM C33/C33M-16 Standard specification for concrete aggregates ASTM International West Conshohocken, PA, USA 2016 Search in Google Scholar

Sabaa, B., Ravindrarajah, R.S., Engineering properties of lightweight concrete containing crushed expanded polystyrene waste, Proceedings of the Symposium MM: Advances in Materials for Cementitious Composites, 1997, pp. 1–3 Sabaa B. Ravindrarajah R.S. Engineering properties of lightweight concrete containing crushed expanded polystyrene waste Proceedings of the Symposium MM: Advances in Materials for Cementitious Composites 1997 pp. 1 3 Search in Google Scholar

AASHTO, AASHTO LRFD bridge design specifications, American Association of State Highway and Transportation Officials, Washington, DC, 2007 AASHTO AASHTO LRFD bridge design specifications American Association of State Highway and Transportation Officials Washington, DC 2007 Search in Google Scholar

ACI 209.2R-08, Guide for modeling and calculating shrinkage and creep in hardened concrete. American Concrete Institute, Farmington Hills, MI, 2008 ACI 209.2R-08 Guide for modeling and calculating shrinkage and creep in hardened concrete American Concrete Institute Farmington Hills, MI 2008 Search in Google Scholar

Shuraim, A.B., Aslam, F., Hussain, R.R., Alhozaimy, A.M., Coupled effect of coarse aggregate type and silica fume on creep coefficients of high-strength concrete, J. Mater. Civ. Eng., 2016, 28, 04016159 Shuraim A.B. Aslam F. Hussain R.R. Alhozaimy A.M. Coupled effect of coarse aggregate type and silica fume on creep coefficients of high-strength concrete J. Mater. Civ. Eng. 2016 28 04016159 Search in Google Scholar

Sheng-qi, M., Jie-chao, Z., Yuan-feng, W., Ruo-fei, Z., Creep-recovery of normal strength and high strength concrete, Constr. Build. Mater., 2017, 156: 175–183 Sheng-qi M. Jie-chao Z. Yuan-feng W. Ruo-fei Z. Creep-recovery of normal strength and high strength concrete Constr. Build. Mater. 2017 156 175 183 Search in Google Scholar

Bajaber, M.A., Hakeem, I.Y., UHPC evolution, development, and utilization in construction: a review, J. Mater. Res. Technol., 2021, 10: 1058–1074 Bajaber M.A. Hakeem I.Y. UHPC evolution, development, and utilization in construction: a review J. Mater. Res. Technol. 2021 10 1058 1074 Search in Google Scholar

Zeyad, A.M., Khan, A.H., Tayeh, B.A., Durability and strength characteristics of high-strength concrete incorporated with volcanic pumice powder and polypropylene fibers, J. Mater. Res. Technol., 2010, 9: 806–818 Zeyad A.M. Khan A.H. Tayeh B.A. Durability and strength characteristics of high-strength concrete incorporated with volcanic pumice powder and polypropylene fibers J. Mater. Res. Technol. 2010 9 806 818 Search in Google Scholar

Wu, F., Liu, C., Sun, W., Ma, Y., Zhang, L., Effect of peach shell as lightweight aggregate on mechanics and creep properties of concrete, Eur. J. Environ. Civ. Eng., 2020, 24: 2534–2552 Wu F. Liu C. Sun W. Ma Y. Zhang L. Effect of peach shell as lightweight aggregate on mechanics and creep properties of concrete Eur. J. Environ. Civ. Eng. 2020 24 2534 2552 Search in Google Scholar

Jansen, D.C., Kiggins, M.L., Swan, C.W., Malloy, R.A., Kashi, M.G., Chan, R.A., et al., Lightweight fly ash-plastic aggregates in concrete, Transp. Res. Rec., 2001, 1775(1): 44–52 Jansen D.C. Kiggins M.L. Swan C.W. Malloy R.A. Kashi M.G. Chan R.A. Lightweight fly ash-plastic aggregates in concrete Transp. Res. Rec. 2001 1775 1 44 52 Search in Google Scholar

Al-Manaseer, A.A., Dalal, T.R., Concrete containing plastic aggregates. Concr. Int., 1997, 19(8): 47–52 Al-Manaseer A.A. Dalal T.R. Concrete containing plastic aggregates Concr. Int. 1997 19 8 47 52 Search in Google Scholar

Lima, P.R., Leite, M.B., Santiago, E.Q., Recycled lightweight concrete made from footwear industry waste and CDW, Waste Manag., 2010, 30(6): 1107–1113 Lima P.R. Leite M.B. Santiago E.Q. Recycled lightweight concrete made from footwear industry waste and CDW Waste Manag. 2010 30 6 1107 1113 Search in Google Scholar