Microstructural Analysis of Triple Blended High-Performance Concrete Incorporating Ceramic Waste and Metakaolin

Authors

  • Patel Dixitkumar Bharatbhai, Abhijitsinh Parmar

Keywords:

High Performance Concrete; Micro Structure, Mechanical Property, Waste Material, Micro analysis.

Abstract

The analysis of micro structural property of triple blended high-performance concrete provides essential information about the internal molecular bonding and Mechanical Properties of the concrete. The mechanical property of the concrete can be improved by setting up porosity, homogeneity, microstructural arrangement of ingredient etc. The micro structural analysis helps to improve the desirable property of high-performance concrete to open the application in      Prestressed, Prefabricated concrete member, High Rise buildings, Bridges etc. The disadvantage of high-performance concrete is high cement content which increases the overall cost, to reduce the cost of the concrete without compromising the mechanical properties and durability of the concrete, in this study the waste material metakaolin and ceramic waste is incorporated as a partial replacement of cement. The objective of the present study to assess microstructural assessment using X-Ray Diffraction (XRD), Scanning Electron Microscopy (SEM), Electro Static Discharge (ESD), Interfacial Transition Zone (ITZ) etc. The Outcome of this experimental study shows greater feasibility of using waste material into the concrete mix for not only making the Concrete Cost effective but also environment protective too.

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References

Maslehuddin M, Awan FR, Shameem M, Ibrahim M, Ali MR. Effect of electric arc furnace dust on the properties of OPC and blended cement concretes. Constr Build Mater 2011;25(2):308–12.

Roslan NH, Ismail M, Khalid NHA, Muhammad B. Properties of concrete containing electric arc furnace steel slag and steel sludge. J Build Eng 2020;28(March).

Lozano-Lunar A, da Silva PR, de Brito j, Alvarez JI, Fernandez JM, Jimenez JR. Performance and durability properties of self-compacting mortars with electric arc furnace dust as filler. J Clean Prod 2019;219(May):818–32.

Cholake ST, Farzana R, Numata T, Sahajwalla. Transforming electric arc furnace waste into value added building products. J Clean Prod 2018;171(January):1128–39.

Morgana CA, de Vargas AS, Bianchini L. Study of electric-arc furnace dust (EAFD) in fly ash and rice husk ash-based geopolymers. Adv Powder Technol 2017;28(September (9)):2032–4.

Maslehuddin M, Al-Amoudi OSB, Rahman MK, Ali MR, Barry MS. Properties of cement kiln dust concrete. Constr Build Mater 2009;23(6):2357–61.

Shoaib M, Balaha M, Abdel-Rahman A. Influence of cement kiln dust substitution on the mechanical properties of concrete. Cem Concr Res 2000;30(2):371–7.

Shubbar AA, Jafer H, Abdulredha M, Al-Khafaji ZS, Nasr MS, Al Masoodi Z, et al. Properties of cement mortar incorporated high volume fraction of GGBFS and CKD from 1 day to 550 days. Build Eng 2020;30(July).

Khater HM. Hybrid slag geopolymer composites with durable characteristics activated by cement kiln dust. Constr Build Mater 2019;228(December).

Alnahal W, Taha R, Al-Nasseri H, Nishad S. Effect of using cement kiln dust as a nano-material on the strength of cement mortars. Struct Eng 2017;22(August):1361–8.

Rostami J, Khandel O, Sedighardekani R, Sahneh AR, Ghahari SA. Enhanced workability, durability, and thermal properties of cement-based composites with aerogel and paraffin coated recycled aggregates. Journal of Cleaner Production. 2021;297:126518. Available from: https://dx.doi.org/10.1016/j.jclepro. 2021.126518.

Khan MDI, Sayyed MAA, Yadav GS, Varma SH. The impact of fly ash and structural fiber on the mechanical properties of concrete. Materials Today: Proceedings. 2021;39(Part1):508–512. Available from: https://dx.doi.org/10.1016/j.matpr.2020.08.242.

Khan I, Sravanthi M, Prasanna EL. An experimental study of the mechanical properties of s glass fiber reinforced high strength concrete partially replacing cement with nano silica. International Journal of Civil Engineering and Technology. 2018;9(4):1398–1409. Available from: https://iaeme.com/ MasterAdmin/Journal_uploads/IJCIET/VOLUME_9_ISSUE_4/IJCIET_09_04_155.pdf.

Khan MI, Ram VV, Patel VI. Influence of Pretreatment Methods for Coarse Recycled Aggregates on the Performance of Alkali-Activated Concrete.

Arabian Journal for Science and Engineering. 2024;49:5579–5597. Available from: https://dx.doi.org/ 10.1007/s13369-023-08436-x.

Khan MI, Sayyed MAA, Ali MMA. Examination of cement concrete containing micro silica and sugarcane bagasse ash subjected to sulphate and chloride attack. Materials Today: Proceedings. 2021;39(Part 1):558–562. Available from: https://dx.doi.org/10.1016/j.matpr.2020.08.468.

Khan MI, Challa B, Varma SH, Sayyed MAA, , and. Sorptivity and Durability Assessment of Dolomite Impregnated Ternary Concrete. International Journal of Recent Technology and Engineering (IJRTE). 2019;8(2):5676–5681. Available from: https://dx.doi.org/10.35940/ ijrte.b2896.078219.

Haripriya S, Rajesh B, Sudarshan DS, khan MI, Bhaskar B, et al. Strength Characteristics of Recycled Aggregate Concrete by Ann. International Journal of Innovative Technology and Exploring Engineering. 2020;9(3):1210–1214. Available from: https://dx.doi.org/10.35940/ijitee.c8624.019320.

Haripriya S, Khan MI, Swetha D, Alok G, Bhaskar B, Kumar PS, et al. Prediction of Compressive Strength with the Variation of Steel Fiber in the Concrete by Using ANN. IOP Conference Series: Materials Science and Engineering. 2020;1006(1):1–12. Available from: https://dx.doi.org/10.1088/1757-899x/1006/ 1/012035.

Wang W, Noguchi T. Alkali-silica reaction (ASR) in the alkali-activated cement (AAC) system: A state-of-the-art review. Construction and Building Materials. 2020;252:119105. Available from: https://dx.doi.org/10.1016/ j.conbuildmat.2020.119105.

Yoro KO, Daramola MO. CO2 emission sources, greenhouse gases, and the global warming effect. Advances in Carbon Capture. 2020; p. 3–28. Available from: https://doi.org/10.1016/B978-0-12-819657-1.00001-3.

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Published

12.06.2024

How to Cite

Patel Dixitkumar Bharatbhai. (2024). Microstructural Analysis of Triple Blended High-Performance Concrete Incorporating Ceramic Waste and Metakaolin. International Journal of Intelligent Systems and Applications in Engineering, 12(4), 3397 –. Retrieved from https://ijisae.org/index.php/IJISAE/article/view/6847

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Section

Research Article