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Research Articles

Effect of seawater dry-wet cycling on the durability of concrete repair materials

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References

  • Qian R, Zhang Y, Zhang Y, et al. Various gas transport properties in concrete considering transporting mechanisms and testing methods-A review, constr. Build. Mater. 2023;389:131636. doi: 10.1016/j.conbuildmat.2023.131636.
  • Abellan-Garcia J, Iqbal Khan M, Abbas YM, et al. The drying shrinkage response of recycled-waste-glass-powder-and calcium-carbonate-based ultrahigh-performance concrete. Constr. Build. Mater. 2023;379:131163. doi: 10.1016/j.conbuildmat.2023.131163.
  • Rong X, Li L, Huang W, et al. Experimental investigation of the seismic resistance of RC beam–column connections after freeze–thaw cycle treatment. Eng. Struct. 2023;290:116330. doi: 10.1016/j.engstruct.2023.116330.
  • Liu X, Liu R, Xie X, et al. Chloride corrosion resistance of cement mortar with recycled concrete powder modified by nano-silica. Constr. Build. Mater. 2023;364:129907. doi: 10.1016/j.conbuildmat.2022.129907.
  • Nanni A, Lista WL. Concrete cracking in coastal areas: problems and solutions. Concr. Int. 1988;10:67–72.
  • Ansari M, Safiey A. Corrosion effects on mechanical behavior of steel fiber reinforced concrete, including fibers from recycled tires. Comput. Concr. 2020;26:367–375. doi: 10.12989/CAC.2020.26.4.367.
  • Hu S, Wang H, Zhang G, et al. Bonding and abrasion resistance of geopolymeric repair material made with steel slag. Cem. Concr. Compos. 2008;30(3):239–244. doi: 10.1016/j.cemconcomp.2007.04.004.
  • Di H, Liu S, Han K, et al. Reinforcement of broken coal rock using ultrafine sulfoaluminate cement–based grouting materials. J. Mater. Civ. Eng. 2022;34(6):4022082. doi: 10.1061/(ASCE)MT.1943-5533.0004229.
  • Shi C, Yang Y. Unveiling the effects of quicklime on the properties of sulfoaluminate Cement-Ordinary Portland Cement-Mineral admixture repairing composites and their sulphate resistance. Materials. 2023;16(11):4026. doi: 10.3390/ma16114026.
  • Ma C, Peng J, Guo Z, et al. Property evaluation of magnesia-based cement emulsified asphalt mortar (MCAM) as pavement repair material. Int. J. Pavement Eng. 2023;24(1):2209264. doi: 10.1080/10298436.2023.2209264.
  • Li Y, Shi T, Li Y, et al. Damage of magnesium potassium phosphate cement under dry and wet cycles and sulfate attack. Constr. Build. Mater. 2019;210:111–117. doi: 10.1016/j.conbuildmat.2019.03.213.
  • Rashid K, Ueda T, Zhang D, et al. Experimental and analytical investigations on the behavior of interface between concrete and polymer cement mortar under hygrothermal conditions. Constr. Build. Mater. 2015;94:414–425. doi: 10.1016/j.conbuildmat.2015.07.035.
  • Yang B, Ji R, Lan Q, et al. Sulfate Freeze-Thaw resistance of magnesium potassium phosphate cement mortar. Materials. 2022;15(9):3342. doi: 10.3390/ma15093342.
  • Fu Q, Lian F, Liu S, et al. Seawater resistance mechanism of reinforcing bar–concrete composite structures restored by repair material incorporating multiple admixtures in a simulated marine splash zone. Ocean Eng. 2022;253:111316. doi: 10.1016/j.oceaneng.2022.111316.
  • Liu F, Zhang T, Luo T, et al. Study on the deterioration of concrete under Dry-Wet cycle and sulfate attack. Materials. 2020;13(18):4095. doi: 10.3390/ma13184095.
  • Choo YJ, Lee GH, Lee S, et al. Effects of wollastonite fiber and Styrene-Butadiene latex polymer on the Long-Term durability of Cement-Based repair materials. Materials. 2022;15(15):5433. doi: 10.3390/ma15155433.
  • Lee S. Mechanical properties and durability of mortars made with Organic-Inorganic repair material. J. Test. Eval. 2021;49(6):20200024. doi: 10.1520/JTE20200024.
  • Otsuki N, Nagataki S, Nakashita K. Evaluation of AgNO3 solution spray method for measurement of chloride penetration into hardened cementitious matrix materials. ACI Mater. J. 1992;89:587–592. doi: 10.14359/4036.
  • Pontes CV, Réus GC, Araújo EC, et al. Silver nitrate colorimetric method to detect chloride penetration in carbonated concrete: how to prevent false positives. J. Build. Eng. 2021;34:101860. doi: 10.1016/j.jobe.2020.101860.
  • Build N. 492. Concrete, mortar and cement-based repair materials: chloride migration coefficient from non-steady-state migration experiments. UDC 691.32/691.53/691.54; Approved 1999–11.
  • Yuan X, Liu B, Cui G, et al. Effect of mineral admixtures on durability of concrete in wetting–drying cyclic sulfate environment. J. Chin. Ceram. Soc. 2009;37:1754–1759. doi: 10.3321/j.issn:0454-5648.2009.10.031.
  • Wang K, Guo J, Wu H, et al. Influence of dry-wet ratio on properties and microstructure of concrete under sulfate attack. Constr. Build. Mater. 2020;263:120635.doi: 10.1016/j.conbuildmat.2020.120635.
  • Wu C, Jiang W, Zhang C, et al. Preparation of solid-waste-based pervious concrete for pavement: a two-stage utilization approach of coal gangue. Constr. Build. Mater. 2022;319:125962. doi: 10.1016/j.conbuildmat.2021.125962.
  • Chen H, Chen X, Tan W, et al. Durability performance of waste glass powder and calcium oxide added sodium carbonate-activated slag mortar. Mater. Today Commun. 2023;36:106472. doi: 10.1016/j.mtcomm.2023.106472.
  • Gao Y, Luo J, Zhang J, et al. Repairing performances of novel cement mortar modified with graphene oxide and polyacrylate polymer. Nanotechnol. Rev. 2022;11(1):1778–1791. doi: 10.1515/ntrev-2022-0091.
  • Srinivas D, Ramagiri KK, Kar A, et al. Experimental characterization of quaternary blended mortar exposed to marine environment using mechanical strength, corrosion resistance and chemical composition. J. Build. Eng. 2021;42:102822. doi: 10.1016/j.jobe.2021.102822.
  • Chen D, Deng Y, Shen J, et al. Study on damage rules on concrete under corrosion of freeze-thaw and saline solution. Constr. Build. Mater. 2021;304:124617. doi: 10.1016/j.conbuildmat.2021.124617.
  • Wu K, Zhu H, Ibrahim YE, et al. Performance evaluation of bond strength and fiber type on the mechanical properties of polyurethane-based polymer mortar, case. Stud. Constr. Mater. 2023;18:e2114. doi: 10.1016/j.cscm.2023.e02114.
  • Van Thillo L, Blom J, Moreels A, et al. Influence of aggregates, glass fibre reinforcement and recycled aggregates on polyester mortar. Constr. Build. Mater. 2021;293:123534. doi: 10.1016/j.conbuildmat.2021.123534.
  • Zhang M, Li H. Pore structure and chloride permeability of concrete containing nano-particles for pavement. Constr. Build. Mater. 2011;25(2):608–616. doi: 10.1016/j.conbuildmat.2010.07.032.
  • Yao Y, Liu C, Liu H, et al. Deterioration mechanism understanding of recycled powder concrete under coupled sulfate attack and freeze–thaw cycles. Constr. Build. Mater. 2023;388:131718. doi: 10.1016/j.conbuildmat.2023.131718.
  • Meng T, Yang X, Wei H, et al. Study of the relationship between the water binder ratio and strength of mixed recycled aggregate concrete based on brick content. Constr. Build. Mater. 2023;394:132148. doi: 10.1016/j.conbuildmat.2023.132148.
  • Li Y, Gao Y, Zheng X, et al. Pore structure and compressive strength of tailings concrete under Dry-Wet cycles of chloride attack. J. Perform. Constr. Facil. 2021;35(5):4021048. doi: 10.1061/(ASCE)CF.1943-5509.0001625.
  • Wang J, Zhang J, Cao D. Pore characteristics of recycled aggregate concrete and its relationship with durability under complex environmental factors. Constr. Build. Mater. 2021;272:121642. doi: 10.1016/j.conbuildmat.2020.121642.
  • Winslow D, Liu D. The pore structure of paste in concrete. Cem. Concr. Res. 1990;20(2):227–235. doi: 10.1016/0008-8846(90)90075-9.
  • Penttala V. Causes and mechanisms of deterioration in reinforced concrete, in: Fail. Distress Repair Concr. Struct., Elsevier Ltd, 2009, pp. 3–31. doi: 10.1533/9781845697037.1.3.
  • Lu H, Zou J, Zhang T, et al. Study on a new cementitious material waterborne modified epoxy resin under sealed conditions for oil and gas wells. Constr. Build. Mater. 2023;387:131588. doi: 10.1016/j.conbuildmat.2023.131588.

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