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2024 | OriginalPaper | Buchkapitel

Combined Metakaolin and Ground Granulated Blast-Furnace Slag-Induced Concrete for Marine Environment

verfasst von : Thomas Nynweph Gmawlue, Pankaj Kumar

Erschienen in: Recent Advances in Structural Engineering

Verlag: Springer Nature Singapore

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Abstract

Incorporating extra materials called admixtures is one of the major ways researchers have been using to produce concrete that can overcome adverse exposure conditions. In this light, this study experimented with the combined usage of Metakaolin (MK) and Ground Granulated Blast-furnace Slag (GGBS) by partially replacing cement at 40%, 50% and 60% and maintaining water to cementitious content (w/cm) at 0.45 to know to what extent can cement be replaced by this blend to give better durability performance without compromising the strength. The experimental program included tests on concrete durability properties such as water absorption, permeable void and sorptivity as well as compressive and flexural strength of concrete exposed to artificial saline water. This study found out that samples with 40% cement replacement by 30% GGBS and 10% MK performed better than other partial replacement levels in regards to compressive strength (31.56 MPa) and the overall durability properties investigated (5.73%, 16.86%, 0.0209, 0.00243 for water absorption, permeable void, primary sorptivity and secondary sorptivity, respectively). The samples with 60% cement replacement having 40% GGBS and 20% MK gave the best resistance to primary sorptivity (0.01801) but had the worst performance for compressive strength (16.14 MPa) in saline water. It is concluded that replacing cement by combining MK and GGBS can give satisfactory performance for durable concrete in Marine Environment, however, the partial replacement of cement should not be more than 40%. Incorporating GGBS and MK has environmental benefit as they are waste materials and their usage should be encouraged.

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Literatur
1.
Zurück zum Zitat Shetty M (2000) Concrete technology and practice, 1st ed. S. Chand & Company LTD, New Delhi Shetty M (2000) Concrete technology and practice, 1st ed. S. Chand & Company LTD, New Delhi
2.
Zurück zum Zitat Indian Standard 456 (2000) Plain and reinforced concrete-code of practice. Bureau of Indian Standard, New Delhi-110002 Indian Standard 456 (2000) Plain and reinforced concrete-code of practice. Bureau of Indian Standard, New Delhi-110002
3.
Zurück zum Zitat Santhanam M, Otieno M (2016) Deterioration on concrete in marine environment, in marine concrete structures: design. Cambridge, Woodhead Publishing Series, Durability and Performance, pp 138–144 Santhanam M, Otieno M (2016) Deterioration on concrete in marine environment, in marine concrete structures: design. Cambridge, Woodhead Publishing Series, Durability and Performance, pp 138–144
5.
Zurück zum Zitat Qu F, Li W, Dong W, Tam V, Yu T (2021) Durability deterioration of concrete under marine environment from material to structure: a critical review. J Build Eng 35(2021):102074CrossRef Qu F, Li W, Dong W, Tam V, Yu T (2021) Durability deterioration of concrete under marine environment from material to structure: a critical review. J Build Eng 35(2021):102074CrossRef
6.
Zurück zum Zitat Anand V, Kumar V, Bhat A (2017) An experimental investigation on the performance of high volume ground granulated blast furnace slag concrete. Int J Civ Eng Technol 8(2):328–337 Anand V, Kumar V, Bhat A (2017) An experimental investigation on the performance of high volume ground granulated blast furnace slag concrete. Int J Civ Eng Technol 8(2):328–337
7.
Zurück zum Zitat Nawy E (2008) Concrete construction engineering handbook. 2nd, Ed., Taylor & Francis Group, LLC, Boca Raton Nawy E (2008) Concrete construction engineering handbook. 2nd, Ed., Taylor & Francis Group, LLC, Boca Raton
8.
Zurück zum Zitat Divsholi B, Lim T, Teng S (2014) Durability Properties and microstructure of ground granulated blast furnace slag cement concrete. Int J Struct Mater 8(2014):157–164CrossRef Divsholi B, Lim T, Teng S (2014) Durability Properties and microstructure of ground granulated blast furnace slag cement concrete. Int J Struct Mater 8(2014):157–164CrossRef
9.
Zurück zum Zitat Al-Oran A, Safiee N, Nasir N (2022) Fresh and hardened concrete properties of self-compacting concrete using metakaolin and GGBS as cement replacement. Eur J Environ Civ Eng 26(1):379–392CrossRef Al-Oran A, Safiee N, Nasir N (2022) Fresh and hardened concrete properties of self-compacting concrete using metakaolin and GGBS as cement replacement. Eur J Environ Civ Eng 26(1):379–392CrossRef
10.
Zurück zum Zitat Buchwald A, Tatarin R, Stephan D (2009) Reaction progress of alkaline-activated metakaolin-ground granulated blast furnace slag blends. J Mater Sci 44(2009):5609–5617CrossRef Buchwald A, Tatarin R, Stephan D (2009) Reaction progress of alkaline-activated metakaolin-ground granulated blast furnace slag blends. J Mater Sci 44(2009):5609–5617CrossRef
11.
Zurück zum Zitat Chen K, Wu D, Yi M, Cai Q, Zhang Z (2021) Mechanical and durability properties of metakaolin blended with slag geopolymer mortars used for pavement repair. Constr Build Mater 281(2021):122566CrossRef Chen K, Wu D, Yi M, Cai Q, Zhang Z (2021) Mechanical and durability properties of metakaolin blended with slag geopolymer mortars used for pavement repair. Constr Build Mater 281(2021):122566CrossRef
12.
Zurück zum Zitat Douamba W, Lawane A, Bello L, Messan M (2018) Effect of Metakaolin as partial substitution to portland cement on the mechanical and durability properties of high performance concrete. Am J Civ Eng Archit 6(6):253–259 Douamba W, Lawane A, Bello L, Messan M (2018) Effect of Metakaolin as partial substitution to portland cement on the mechanical and durability properties of high performance concrete. Am J Civ Eng Archit 6(6):253–259
13.
Zurück zum Zitat Marhortra V (2008) Mineral admixture. In: Concrete construction handbook. Taylor and Francis Group, LLC, Boca Raton, pp 28–77 Marhortra V (2008) Mineral admixture. In: Concrete construction handbook. Taylor and Francis Group, LLC, Boca Raton, pp 28–77
14.
Zurück zum Zitat Afhaeipour A, Madhkhan M (2017) Effect of ground granulated blast-furnace slag (GGBFS) on RCCP durability. Constr Build Mater 141:533–541CrossRef Afhaeipour A, Madhkhan M (2017) Effect of ground granulated blast-furnace slag (GGBFS) on RCCP durability. Constr Build Mater 141:533–541CrossRef
15.
Zurück zum Zitat Elavarasan S, Priya A, Ajai N, Akash S, Annie T, Bhuvana G (2021) Experimental study on partial replacement of cement by metakaolin and GGBS. Materialstoday Proc 37(2):3527–3530 Elavarasan S, Priya A, Ajai N, Akash S, Annie T, Bhuvana G (2021) Experimental study on partial replacement of cement by metakaolin and GGBS. Materialstoday Proc 37(2):3527–3530
16.
Zurück zum Zitat ASTM International D1141: Standard practice for the preparation of substitute ocean water. American Standard for Testing and Materials, West Conshohocken, PA, 98 ASTM International D1141: Standard practice for the preparation of substitute ocean water. American Standard for Testing and Materials, West Conshohocken, PA, 98
17.
Zurück zum Zitat Indian Standards (2002) Methods of tests for strength of concrete (incorporating amendment nos. 1&2). Bureau of Indian Standards, New Delhi Indian Standards (2002) Methods of tests for strength of concrete (incorporating amendment nos. 1&2). Bureau of Indian Standards, New Delhi
18.
Zurück zum Zitat ASTM International 642: Standard test method for density, absorption, and voids in hardened concrete. American Standard for Testing and Materials, West Conshohocken, PA, 97 ASTM International 642: Standard test method for density, absorption, and voids in hardened concrete. American Standard for Testing and Materials, West Conshohocken, PA, 97
19.
Zurück zum Zitat ASTM International 1585: measurement of rate of absorption of water by hydraulic cement concrete. West Conshohocken, PA, 04 ASTM International 1585: measurement of rate of absorption of water by hydraulic cement concrete. West Conshohocken, PA, 04
Metadaten
Titel
Combined Metakaolin and Ground Granulated Blast-Furnace Slag-Induced Concrete for Marine Environment
verfasst von
Thomas Nynweph Gmawlue
Pankaj Kumar
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-9502-8_34