298
Views
23
CrossRef citations to date
0
Altmetric
Original Articles

Effects of local metakaolin addition on rheological and mechanical performance of self-compacting limestone cement concrete

, , , &
Pages 963-985 | Received 01 Jun 2018, Accepted 03 Jan 2019, Published online: 23 Feb 2019

References

  • Madandoust R, Mousavi SY. Fresh and hardened properties of self-compacting concrete containing metakaolin. Constr Build Mater. 2012;35:752–760.
  • AFGC. Recommendations for the use of self-compacting concrete. Scientific and technical documents. [English ed.]. 2008.
  • Sabir BB, Wild S, Bai J. Metakaolin and calcined clays as pozzolans for concrete: a review. Cem Concr Compos. 2001;23:441–454.
  • Siddique R, Klaus J. Influence of metakaolin on the properties of mortar and concrete: a review. Appl Clay Sci. 2009;43:392–400.
  • Khatib JM, Hibbert JJ. Selected engineering properties of concrete incorporating slag and metakaolin. Constr Build Mater. 2005;19:460–472.
  • Kadri E-H, Kenai S, Ezziane K, et al. Influence of metakaolin and silica fume on the heat of hydration and compressive strength development of mortar. Appl Clay Sci. 2011;53:704–708.
  • Said-Mansour M, Kadri EH, Kenai S, et al. Influence of calcined kaolin on mortar properties. Constr Build Mater. 2011;25:2275–2282.
  • Lenka S, Panda KC. Effect of metakaolin on the properties of conventional and self-compacting concrete. Adv Concr Constr. 2017;5:31–48.
  • Sonebi M, Lachemi M, Hossain KMA. Optimisation of rheological parameters and mechanical properties of superplasticised cement grouts containing metakaolin and viscosity modifying admixture. Constr Build Mater. 2013;38:126–138.
  • Vance K, Kumar A, Sant G, et al. The rheological properties of ternary binders containing Portland cement, limestone, and metakaolin or fly ash. Cem Concr Res. 2013;52:196–207.
  • Khayat KH. Workability, testing, and performance of self-consolidating concrete. ACI Mater J. 1999;96:3 346–354.
  • Wild S, Khatib JM, Jones A. Relative strength, pozzolanic activity and cement hydration in superplasticised metakaolin concrete. Cem Concr Res. 1996;26:1537–1544.
  • Khatib JM, Clay RM. Absorption characteristics of metakaolin concrete. Cem Concr Res. 2004;34:19–29.
  • NF P 18–513. Additions for concrete – metakaolin – specifications and conformity criteria. August. 2012.
  • Boukendakdji O, Kenai S, Kadri EH, et al. Effect of slag on the rheology of fresh self-compacted concrete. Constr Build Mater. 2009;23:2593–2598.
  • Okamura H, Ozawa K. Mix design for self-compacting concrete. Concr Lib JSCE. 1995;25:107–120.
  • EFNARC. Specification and guidelines for self-compacting concrete. Norfolk (UK): European federation for specialist construction chemicals and concrete systems; 2002.
  • Turk K. Viscosity and hardened properties of self-compacting mortars with binary and ternary cementitious blends of fly ash and silica fume. Constr Build Mater. 2012;37:326–334.
  • Safiuddin M, West JS, Soudki KA. Flowing ability of the mortars formulated from self-compacting concretes incorporating rice husk ash. Constr Build Mater. 2011;25:973–978.
  • Domone P, Jin J. Properties of mortar for self-compacting concrete. PRO 7. In: First International RILEM Symposium on Self-Compacting Concrete; Stockholm (Sweden); 1999.
  • Soualhi H, Kadri EH, Ngo TT, et al. A vane rheometer for fresh mortar: development and validation. Appl Rheol. 2014;24:22594.
  • Belaidi ASE, Azzouz L, Kadri E, et al. Effect of natural pozzolana and marble powder on the properties of self-compacting concrete. Constr Build Mater. 2012;31:251–257.
  • Ilić B, Radonjanin V, Malešev M, et al. Effects of mechanical and thermal activation on pozzolanic activity of kaolin containing mica. Appl Clay Sci. 2016;123:173–181.
  • Vizcayno C, de Gutiérrez RM, Castello R, et al. Pozzolan obtained by mechanochemical and thermal treatments of kaolin. Appl Clay Sci. 2010;49:405–413.
  • Fabbri B, Gualtieri S, Leonardi C. Modifications induced by the thermal treatment of kaolin and determination of reactivity of métakaolin. Appl Clay Sci. 2013;73:2–10.
  • Souri A, Golestani-Fard F, Naghizadeh R, et al. An investigation on pozzolanic activity of Iranian kaolins obtained by thermal treatment. Appl Clay Sci. 2015;103:34–39.
  • Bich C, Ambroise J, Péra J. Influence of degree of dehydroxylation on the pozzolanic activity of metakaolin. Appl Clay Sci. 2009;44:194–200.
  • Shafiq N, Nuruddin MF, Khan SU, et al. Calcined kaolin as cement replacing material and its use in high strength concrete. Constr Build Mater. 2015;81:313–323.
  • Ajayi AO, Atta AY, Aderemi BO, et al. Novel method of metakaolin dealumination – preliminary investigation. J Appl Sci Res. 2010;6:1539–1546.
  • Galan E, Aparicio P, Miras A, et al. Technical properties of compounded kaolin sample from Griva (Macedonia, Greece). Appl Clay Sci. 1996;10:477–490.
  • Gámiz E, Melgosa M, Sánchez-Marañón M, et al. Relationships between chemico-mineralogical composition and color properties in selected natural and calcined Spanish kaolins. Appl Clay Sci. 2005;28:269–282.
  • Kakali G, Perraki T, Tsivilis S, et al. Thermal treatment of kaolin: the effect of mineralogy on the pozzolanic activity. Appl Clay Sci. 2001;20:73–80.
  • Badogiannis E, Kakali G, Dimopoulou G, et al. Metakaolin as a main cement constituent. Exploitation of poor Greek kaolins. Cem Concr Compos. 2005;27:197–203.
  • Karahan O, Hossain KMA, Ozbay E, et al. Effect of metakaolin content on the properties self-consolidating lightweight concrete. Constr Build Mater. 2012;31:320–325.
  • ACI 238.1R-08. Report on measurements of workability and rheology of fresh concrete. Farmington Hills (MI): ACI Committee 238; 2008.
  • Perlot C, Rougeau P, Dehaudt S. Slurry of metakaolin combined with limestone addition for self-compacted concrete. Application for precast industry. Cem Concr Compos. 2013;44:50–57.
  • Khaleel OR, Abdul Razak H. Mix design method for self-compacting metakaolin concrete with different properties of coarse aggregate. Mater Des. 2014;53:691–700.
  • Hassan AAA, Lachemi M, Hossain KMA. Effect of metakaolin on the rheology of self-consolidating concrete. In: Khayat KH, Feys D, editors. Design, Production and Placement of Self-Consolidating Concrete. RILEM Bookseries. Vol. 1. Dordrecht: Springer; 2010. p. 103–112.
  • Tsivilis S, Chaniotakis E, Kakali G, et al. An analysis of the properties of Portland limestone cements and concrete. Cem Concr Compos. 2002;24:371–378.
  • Melo KA, Carneiro AMP. Effect of metakaolin’s finesses and content in self-consolidating concrete. Constr Build Mater. 2010;24:1529–1535.
  • Banfill P, Frias M. Rheology and conduction calorimetry of cement modified with calcined paper sludge. Cem Concr Res. 2007;37:184–190.
  • Gołaszewski J. Influence of cement properties on new generation superplasticizers performance. Constr Build Mater. 2012;35:586–596.
  • El-Barrak M, Mouret M, Bascoul A. Self-compacting concrete paste constituents: hierarchical classification of their influence on flow properties of the paste. Cem Concr Compos. 2009;31:12–21.
  • Bauchkar SD, Chore HS. Experimental studies on rheological properties of smart dynamic concrete. Adv Concr Constr. 2017;5:183–199.
  • Banfill PFG. Rheological methods for assessing the flow properties of mortar and related materials. Constr Build Mater. 1994;8:43–50.
  • Hu C. Rheology of fluid concretes [PhD thesis] (in French). Paris (France): ENPC; 1995.
  • Jau W-C, Yang C-T. Development of a modified concrete rheometer to measure the rheological behavior of conventional and self-consolidating concretes. Cem Concr Compos. 2010;32:450–460.
  • Schwartzentruber LD, Le Roy R, Cordin J. Rheological behaviour of fresh cement pastes formulated from a self-compacting concrete (SCC). Cem Concr Res. 2006;36:1203–1213.
  • Ferraris CF, Obla KH, Hill R. The influence of mineral admixtures on the rheology of cement paste and concrete. Cem Concr Res. 2001;31:245–255.
  • Ambroise A, Maximilien S, Pera J. Properties of métakaolin blended cements. Advn Cem Bas Mater. 1994;1:161–168.
  • Bai J, Wild S. Investigation of the temperature change and heat evolution of mortar incorporating PFA and metakaolin. Cem Concr Compos. 2002;24:201–209.
  • Pinto RCA, Hover KC. Superplasticizer and silica fume addition effects on heat of hydration of mortar mixtures with low water-cementitious ratio. ACI Mater J. 1999;96:600–604.
  • Hawkins P, Tennis P, Detwiler R. The use of limestone in Portland cement: a state-of-the-art review. EB227. Skokie (IL): Portland Cement Association; 2003.
  • Liu M. Wider application of additions in self-compacting concrete [PhD thesis]. London (UK): University College London; 2009.
  • Barbhuiya S. Effects of fly ash and dolomite powder on the properties of self-compacting concrete. Constr Build Mater. 2011;25:3301–3305.
  • Uysal M. The influence of coarse aggregate type on mechanical properties of fly ash additive self-compacting concrete. Constr Build Mater. 2012;37:533–540.
  • Pade C. Self-compacting concrete: test methods for SCC. Taastrup (Denmark): Danish Technological Institute; 2005.
  • Bessa-Badreddine A. Study of the contribution of mineral additions on the physical, mechanical and durability properties of mortars [PhD thesis] (in French). Paris (France): Cergy-Pontoise University; 2004.
  • Assié S. Durability of self-compacting concrete [PhD thesis]. Toulouse (France): INSA; 2004.
  • Neville M. Properties of concrete. 4th and final ed. London (UK): Addison Wesley Longman Limited; 1996.
  • Badogiannis E, Tsivilis S. Exploitation of poor Greek kaolins: durability of metakaolin concrete. Cem Concr Compos. 2009;31:128–133.
  • Cassagnabère F, Mouret M, Escadeillas G, et al. Metakaolin, a solution for the precast industry to limit the clinker content in concrete: mechanical aspects. Constr Build Mater. 2010;24:1109–1118.
  • Poon CS, Kou SC, Lam L. Compressive strength, chloride diffusivity and pore structure of high performance metakaolin and silica fume concrete. Constr Build Mater. 2006;20:858–865.
  • Poon C-S, Lam L, Kou SC, et al. Rate of pozzolanic reaction of metakaolin in high-performance cement pastes. Cem Concr Res. 2001;31:1301–1306.
  • Menadi B, Kenai S, Khatib J, et al. Strength and durability of concrete incorporating crushed limestone sand. Constr Build Mater. 2009;23:625–633.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.