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Erschienen in: Innovative Infrastructure Solutions 3/2020

01.12.2020 | Technical paper

Influence of nanomaterial on high-volume fly ash concrete: a statistical approach

verfasst von: Avuthu Narender Reddy, P. Narashima Reddy, Bode Venkata Kavyateja, G. Gautham Kishore Reddy

Erschienen in: Innovative Infrastructure Solutions | Ausgabe 3/2020

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Abstract

This work is focused on the mechanical properties of ternary blended nanoconcrete replacing cement with fly ash and nanosilica in the optimized percentage. Ternary blended nanoconcrete mix is designed with 0.45 water-to-binder ratio and 438 kg/m3 of cementitious content in all mixtures with a combination of various percentages of nanosilica and 40% of fly ash by weight of cement. The mechanical properties like compressive, split tensile and flexural strength tests at the age of 7, 14 and 28 days are performed. With the addition of nanosilica, the enhancement was observed in all mechanical properties, but when the dosage of nanosilica was more than optimum, bleeding as well as segregation in concrete was observed. Response surface method was used in predicting the values of compressive strength in this work, which was found to be in agreement with the experimental observations with at least 95% confidence levels.

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Literatur
1.
Zurück zum Zitat Aly M, Hashmi MSJ, Olabi AG, Messeiry M, Abadir EF, Hussain AI (2012) Effect of colloidal nano-silica on the mechanical and physical behavior of waste-glass cement mortar. Mater Des 33:127–135CrossRef Aly M, Hashmi MSJ, Olabi AG, Messeiry M, Abadir EF, Hussain AI (2012) Effect of colloidal nano-silica on the mechanical and physical behavior of waste-glass cement mortar. Mater Des 33:127–135CrossRef
3.
Zurück zum Zitat Kim SS, Hooton RD, Cho TJ, Lee JB (2014) Comparison of innovative nano fly ash with conventional fly ash and nano-silica. Can J Civ Eng 41(5):396–402CrossRef Kim SS, Hooton RD, Cho TJ, Lee JB (2014) Comparison of innovative nano fly ash with conventional fly ash and nano-silica. Can J Civ Eng 41(5):396–402CrossRef
4.
Zurück zum Zitat Sun J, Shen X, Tan G, Tanner JE (2019) Modification effects of nano-SiO2 on early compressive strength and hydration characteristics of high-volume fly ash concrete. J Mater Civ Eng 31(6):04019057CrossRef Sun J, Shen X, Tan G, Tanner JE (2019) Modification effects of nano-SiO2 on early compressive strength and hydration characteristics of high-volume fly ash concrete. J Mater Civ Eng 31(6):04019057CrossRef
7.
Zurück zum Zitat Supit SW, Shaikh FU, Sarker PK (2013) Effect of nano silica and ultrafine fly ash on compressive strength of high volume fly ash mortar. In: Applied mechanics and materials, vol 368, pp 1061–1065. Trans Tech Publications Ltd Supit SW, Shaikh FU, Sarker PK (2013) Effect of nano silica and ultrafine fly ash on compressive strength of high volume fly ash mortar. In: Applied mechanics and materials, vol 368, pp 1061–1065. Trans Tech Publications Ltd
8.
Zurück zum Zitat Reddy AN, Meena T (2017) An experimental investigation on mechanical behavior of eco-friendly concrete. IOP Conf Ser Mater Sci Eng 263:032010CrossRef Reddy AN, Meena T (2017) An experimental investigation on mechanical behavior of eco-friendly concrete. IOP Conf Ser Mater Sci Eng 263:032010CrossRef
10.
Zurück zum Zitat Mussa MH, Mutalib AA, Hamid R, Raman SN (2018) Dynamic properties of high volume fly ash nanosilica (HVFANS) concrete subjected to combined effect of high strain rate and temperature. Latin Am J Solids Struct 15(1):e06CrossRef Mussa MH, Mutalib AA, Hamid R, Raman SN (2018) Dynamic properties of high volume fly ash nanosilica (HVFANS) concrete subjected to combined effect of high strain rate and temperature. Latin Am J Solids Struct 15(1):e06CrossRef
11.
Zurück zum Zitat Reddy AN, Mounika P, Moulika P (2018) Study on effect of alccofine and nano silica on properties of concrete—a review. Int J Civ Eng Technol 9(13):559–565 Reddy AN, Mounika P, Moulika P (2018) Study on effect of alccofine and nano silica on properties of concrete—a review. Int J Civ Eng Technol 9(13):559–565
12.
Zurück zum Zitat Singh LP, Karade SR, Bhattacharyya SK, Yousuf MM, Ahalawat S (2013) Beneficial role of nanosilica in cement based materials—a review. Constr Build Mater 47:1069–1077CrossRef Singh LP, Karade SR, Bhattacharyya SK, Yousuf MM, Ahalawat S (2013) Beneficial role of nanosilica in cement based materials—a review. Constr Build Mater 47:1069–1077CrossRef
13.
Zurück zum Zitat Kupwade-Patil K, Al-Aibani AF, Abdulsalam MF, Mao C, Bumajdad A, Palkovic SD, Buyukozturk O (2016) Microstructure of cement paste with natural pozzolanic volcanic ash and Portland cement at different stages of curing. Constr Build Mater 113:423–441CrossRef Kupwade-Patil K, Al-Aibani AF, Abdulsalam MF, Mao C, Bumajdad A, Palkovic SD, Buyukozturk O (2016) Microstructure of cement paste with natural pozzolanic volcanic ash and Portland cement at different stages of curing. Constr Build Mater 113:423–441CrossRef
14.
Zurück zum Zitat IS 10262 (2009) Indian standard code of practice for concrete mix proportioning-guidelines. IS 10262: 2009, New Delhi, India IS 10262 (2009) Indian standard code of practice for concrete mix proportioning-guidelines. IS 10262: 2009, New Delhi, India
15.
Zurück zum Zitat IS 12269 (2013) Indian standard code of practice for ordinary Portland cement 53 grade-specification. IS 12269: 2013, New Delhi, India IS 12269 (2013) Indian standard code of practice for ordinary Portland cement 53 grade-specification. IS 12269: 2013, New Delhi, India
16.
Zurück zum Zitat IS 516 (1959) Indian standard code of practice for methods of tests for strength of concrete. IS 516: 1959, New Delhi, India IS 516 (1959) Indian standard code of practice for methods of tests for strength of concrete. IS 516: 1959, New Delhi, India
17.
Zurück zum Zitat IS 383 (2016) Indian standard code of practice for specification for coarse and fine aggregates from natural sources for concrete. IS 383: 2016, New Delhi, India IS 383 (2016) Indian standard code of practice for specification for coarse and fine aggregates from natural sources for concrete. IS 383: 2016, New Delhi, India
18.
Zurück zum Zitat Reddy PN, Naqash JA (2020) Effectiveness of polycarboxylate ether on early strength development of alccofine concrete. Pollack Period Int J Eng Inf Sci 15(1):79–90 Reddy PN, Naqash JA (2020) Effectiveness of polycarboxylate ether on early strength development of alccofine concrete. Pollack Period Int J Eng Inf Sci 15(1):79–90
19.
Zurück zum Zitat Jindal BB, Parveen, Singhal D, Goyal A (2018) Predicting relationship between mechanical properties of low calcium fly ash-based geopolymer concrete. Trans Indian Ceram Soc 76(4):258–265CrossRef Jindal BB, Parveen, Singhal D, Goyal A (2018) Predicting relationship between mechanical properties of low calcium fly ash-based geopolymer concrete. Trans Indian Ceram Soc 76(4):258–265CrossRef
20.
Zurück zum Zitat Reddy PN, Naqash JA (2019) Durability and mechanical properties of concrete modified with ultra-fine slag. Int J Innov Technol Explor Eng 8(5):230–234 Reddy PN, Naqash JA (2019) Durability and mechanical properties of concrete modified with ultra-fine slag. Int J Innov Technol Explor Eng 8(5):230–234
21.
Zurück zum Zitat Reddy PN, Naqash JA (2019) Properties of concrete modified with ultra-fine slag. Karbala Int J Mod Sci 5(3):4CrossRef Reddy PN, Naqash JA (2019) Properties of concrete modified with ultra-fine slag. Karbala Int J Mod Sci 5(3):4CrossRef
22.
Zurück zum Zitat Reddy AN, Meena T (2019) A study on the effect of colloidal nano-silica on blended concrete containing fly ash and alccofine. Rom J Mater 49(2):217–224 Reddy AN, Meena T (2019) A study on the effect of colloidal nano-silica on blended concrete containing fly ash and alccofine. Rom J Mater 49(2):217–224
23.
Zurück zum Zitat IS 3812 (2013) Indian standard code of practice for pulverized fuel ash—specification, part 1 for use as pozzolana in cement, cement mortar and concrete. IS 3812: 2013, New Delhi, India IS 3812 (2013) Indian standard code of practice for pulverized fuel ash—specification, part 1 for use as pozzolana in cement, cement mortar and concrete. IS 3812: 2013, New Delhi, India
25.
Zurück zum Zitat Walzade SB, Rathi VR (2016) Durability study of high strength concrete using collidal nano SiO2. Int J Innov Res Sci Eng Technol 5:206–215 Walzade SB, Rathi VR (2016) Durability study of high strength concrete using collidal nano SiO2. Int J Innov Res Sci Eng Technol 5:206–215
26.
Zurück zum Zitat Reddy AN, Anitha D, Tilak UV (2014) Performance of alkali activated slag and alkali activated slag + fly ash with various alkali activators. Int J Eng Tech Res 2(1):73–78 Reddy AN, Anitha D, Tilak UV (2014) Performance of alkali activated slag and alkali activated slag + fly ash with various alkali activators. Int J Eng Tech Res 2(1):73–78
27.
Zurück zum Zitat Reddy AN (2019) An experimental study on effect of colloidal nano-silica on tetranary blended concrete. Adv Concr Constr 7(2):107–115 Reddy AN (2019) An experimental study on effect of colloidal nano-silica on tetranary blended concrete. Adv Concr Constr 7(2):107–115
28.
Zurück zum Zitat Zhang MH, Li H (2011) Pore structure and chloride permeability of concrete containing nano-particles for pavement. Constr Build Mater 25:608–616CrossRef Zhang MH, Li H (2011) Pore structure and chloride permeability of concrete containing nano-particles for pavement. Constr Build Mater 25:608–616CrossRef
29.
Zurück zum Zitat Narasimha Reddy P, Ahmed Naqash J (2019) Effect of alccofine on mechanical and durability index properties of green concrete. Int J Eng 32(6):813–819 Narasimha Reddy P, Ahmed Naqash J (2019) Effect of alccofine on mechanical and durability index properties of green concrete. Int J Eng 32(6):813–819
30.
Zurück zum Zitat Jindal BB, Singhal D, Sharma SK (2017) Suitability of ambient-cured alccofine added low-calcium fly ash-based geopolymer concrete. Indian J Sci Technol 10(12):1–10CrossRef Jindal BB, Singhal D, Sharma SK (2017) Suitability of ambient-cured alccofine added low-calcium fly ash-based geopolymer concrete. Indian J Sci Technol 10(12):1–10CrossRef
31.
Zurück zum Zitat Sharmila P, Dhinakaran G (2016) Compressive strength, porosity and sorptivity of ultra fine slag based high strength concrete. Constr Build Mater 120:48–53CrossRef Sharmila P, Dhinakaran G (2016) Compressive strength, porosity and sorptivity of ultra fine slag based high strength concrete. Constr Build Mater 120:48–53CrossRef
Metadaten
Titel
Influence of nanomaterial on high-volume fly ash concrete: a statistical approach
verfasst von
Avuthu Narender Reddy
P. Narashima Reddy
Bode Venkata Kavyateja
G. Gautham Kishore Reddy
Publikationsdatum
01.12.2020
Verlag
Springer International Publishing
Erschienen in
Innovative Infrastructure Solutions / Ausgabe 3/2020
Print ISSN: 2364-4176
Elektronische ISSN: 2364-4184
DOI
https://doi.org/10.1007/s41062-020-00340-9

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