Behaviour of concrete by using artificial aggregates a review

  • Authors

    • K Manju
    • B Dhanush Kumar
    • S Suresh Kumar
    • S Nirmal Kumar
    2018-04-20
    https://doi.org/10.14419/ijet.v7i2.21.12183
  • GGBFS (Ground Granulated Blast Furnace Slag), hardening powder, light weight recycled aggregates.
  • Natural aggregate is not an environmental friendly material due to its destructive resource consuming nature. GGBS is a byproduct of steel industries, whereas GGBFS mixed with cement of 1:2 ratio making an artificial aggregate, whereas hardening powder used to spray made upon artificial aggregate to develop the strength of concrete. The basic properties of natural and artificial aggregates were determined. The mix design to be determined obtained for conventional concrete of control mix of grade M 25. The different mix proportions were prepared by replacement of 20, 40, 60, 80, 100 of natural aggregate instead of artificial aggregate. To check the compressive strength, split tensile strength determine. Based on the result we choose optimum percentage of aggregate and make it and concrete to determine the durability properties of concrete compared with natural aggregate.

     

     

  • References

    1. [1] Aanchuajaya K & Jaseelak H, “Feasibility study of electric arc furnace slag as fine aggregate in ggbs incorporated concreteâ€, International Journal of Advance Research and Innovative Ideas in Education (IJARIIE), Vol.2, (2017), pp.24 – 31.

      [2] Ouda AS, “Development of high-performance heavy density concrete using different aggregates for gamma-ray shieldingâ€, Progress in Nuclear Energy, Vol.79, (2015), 48-55.

      [3] Baskaran P, Karthickkumar M, Krishnamoorthy N, Saravanan P, Hemathnaveenk S & Vinothan KG, “Partially replacement of fine aggregate with GGBSâ€, International journal of civil engineering (SSRG-IJCE), Vol.4, (2017), pp.49 – 56.

      [4] Francesco C & Raffaele C, “Use of Cement Kiln Dust, Blast Furnace Slag and Marble Sludge in the Manufacture of Sustainable Artificial Aggregates by Means of Cold Bonding Pelletizationâ€, Materials Issn Journel, (2013), pp.34139 – 3159.

      [5] Harilal B & Job T, “Concrete made using cold bonded artificial aggregateâ€, American journal of engineering research (AJER), Vol.1, (2012), pp.20-25.

      [6] Jayalakshmi SN & Basil J, “Study of Properties of Concrete using GGBS and Recycled Concrete Aggregatesâ€, International Journal of Engineering Research & Technology (IJERT), Vol.5, (2016), pp.160 – 166.

      [7] Ravisankar K, Gowtham SK & Raghavan TR, “Experimental study on artificial fly ash aggregate concreteâ€, International Journal of Innovative Research in Science, Engineering, Vol.4, (2015), pp.11124 – 11132.

      [8] Hiraskar KG & Chetan P, “Use of Blast Furnace Slag Aggregate in Concreteâ€, International Journal of Scientific & Engineering Research, Vol.4, (2013), pp.95 – 98.

      [9] Nataraja MC, Dileep Kumar PG, Manu AS & Sanjay MC, “Use of granulated blast furnace slag as fine aggregate in cement mortarâ€, International journal and structural and structural research, Vol.2, (2013), pp.59 – 68.

      [10] Pavan Kumar M & Mahesh Y, “The Behaviour of Concrete by Partial Replacement of Fine Aggregate with Copper Slag and Cement with GGBSâ€, IOSR Journal of Mechanical and Civil Engineering, Vol.12, (2012), pp.51 – 56.

      [11] Narendra MD & Gangha G, “An experimental study on high performance concrete partially replacing cement and fine aggregate with GGBS & ROBO sandâ€, International Journal of Engineering Sciences & Emerging Technologies, Vol.7, (2015), pp.737-742.

      [12] Shariq M, Prasad J & Masood A, “Studies in ultrasonic pulse velocity of concrete containing GGBFSâ€, Construction and Building Materials, Vol.40, (2013), pp.944-950.

      [13] Palankar N, Shankar AR & Mithun BM, “Studies on eco-friendly concrete incorporating industrial waste as aggregatesâ€, International Journal of Sustainable Built Environment, Vol.4, No.2, (2015), pp.378-390.

      [14] Deb PS, Nath P & Sarker PK, “Drying shrinkage of slag blended fly ash geopolymer concrete cured at room temperatureâ€, Procedia Engineering, Vol.125, (2015), pp.594-600.

      [15] Pramodininaikgaonkar. “Green concrete using GGBFS, river pebbles and CRF as partial replacement to cement and aggregatesâ€, International journal of engineering research, Vol.5, (2016), pp.129 – 133.

      [16] Prasannakumar P, Suhas S, Ravikumar D, Roopa S, Keshavmurthy MS & Shivamagarwa, “Some physical and mechanical properties of concrete made from partial replacement of natural aggregates with artificially manufactured aggregates using ground granulated blast furnace slagâ€, International journal of research in engineering and technology, Vol.5, (2016), pp.47 – 52.

      [17] Priyadharshini P, Mohan G & Santhi AS, “Experimental study on cold bonded fly ash aggregatesâ€, International journal of civil and structural engineering, Vol.2, (2011), pp.493 – 501.

      [18] Siddique R & Kaur D, “Properties of concrete containing ground granulated blast furnace slag (GGBFS) at elevated temperaturesâ€, Journal of Advanced Research, Vol.3, No.1, (2012), pp.45-51.

      [19] Muralikrishnan S & Felixkala T, “Flexural behaviour of concrete using m30 & m60 gradeâ€, International journal of control theory and applications, Vol.10, (2017), pp.343 – 348.

      [20] Viveka S & Renuka R, “Study of strength characteristics of fly ash aggregates in light weight Concreteâ€, International journal of innovations in engineering and technology, Vol.6, (2016), pp.331-334.

      [21] Sayieda RZ, Maha RM, Doaa AA & Aya HM, “Effect of demolition/construction wastes on the properties of alkali activated slag cementâ€, Housing and Building National Research Center HBRC Journal, Vol.1, (2015), pp.1 – 6.

      [22] Srinivasan K, Mutharasi M, Vaishnavi R, Sajinmohan and Logeswaran V, “An experimental study on manufacture of artificial aggregates incorporating fly ash, rice husk ash and iron ore dustâ€, International journal of science, engineering and technology research (IJSETR), Vol.5, (2016), pp.163 – 168.

      [23] Logeswaran V, Dr.Ramakrishna G & Anandabaskaran V, “Studies on manufacture of artificial aggregates incorporating fly ash, rice husk ash and iron ore dustâ€, Singaporean journal of scientific research (SJSR) issue of international journal of applied sciences. Vol.7, (2015), pp.392 – 405.

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    Manju, K., Dhanush Kumar, B., Suresh Kumar, S., & Nirmal Kumar, S. (2018). Behaviour of concrete by using artificial aggregates a review. International Journal of Engineering & Technology, 7(2.21), 255-258. https://doi.org/10.14419/ijet.v7i2.21.12183