Araştırma Makalesi

Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars

Cilt: 23 Sayı: 1 1 Mart 2020
PDF İndir
EN TR

Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars

Öz

In this study, the effect of binary and ternary cementitious systems composed of portland cement, high-lime fly ash and silica fume on the compressive strength, alkali-silica reaction (ASTM C 1567) and drying shrinkage of mortar mixtures was researched. For this purpose, binary and ternary binders were prepared with partial replacement of cement with either fly ash (15wt% and 30wt%) or silica fume (5wt%) or both mineral admixtures (15wt+%5wt% and 30wt%+5wt%). An alkali reactive basalt aggregate was used in this study. It was found that partial replacement of cement with high-lime fly ash reduced the strength of mortar mixtures even up to 28-days. Besides, addition of 5% silica fume had not a significant effect on the early strength of fly ash-bearing mixtures. However, silica fume inclusion improved the 28-day strength of mixtures. In terms of alkali-silica reaction (ASR), the fly ash with lower lime content reduced the 14-day expansion more than that of fly ash with higher lime content. The opposite results were the case in 28-day ASR expansions. The ASR expansions of the fly ash-bearing mixtures were significantly reduced by the introduction of the additional 5% silica fume to these mixtures. However, silica fume incorporation remarkably increased the drying shrinkage values of the mixtures. Finally, fly ash with higher lime content was found to be more satisfactory in terms of compressive strength, alkali-silica reaction and drying shrinkage in the ternary binder system.

Anahtar Kelimeler

Kaynakça

  1. 1. Thomas M. D. A., Shehata M. H., Shashiprakash S. G., Hopkins D. S. and Cail K., “Use of ternary cementitious systems containing silica fume and fly ash in concrete”, Cement and Concrete Research, 29: 1207-1214, (1999).
  2. 2. Lam L., Wong Y. L. and Poon C. S., “Degree of hydration and gel/space ratio of high-volume fly ash/cement systems”, Cement and Concrete Research, 30: 747-756, (2000).
  3. 3. Zhang Y. M., Sun W. and Yan H. D., “Hydration of high-volume fly ash cement pastes”, Cement and Concrete Composites, 22: 445-452, (2000).
  4. 4. Yazıcı H., Aydın S., Yiğiter H. and Baradan B., “Effect of steam curing on class C high-volume fly ash concrete mixtures”, Cement and Concrete Research, 35: 1122-1127, (2005).
  5. 5. Hemalatha T. and Sasmal S., “Early-age strength development in fly ash blended cement composites: Investigation through chemical activation”, Magazine of Concrete Research, (Ahead of Print), (2018).
  6. 6. Mehta P. K. and Monteiro P. J. M., “Concrete: Microstructure, properties, and materials", Third edition, McGraw-Hill, (2006).
  7. 7. Malhotra V. M. and Carette G. G., “Silica fume concrete-properties, applications and limitations”, Concrete International: Design and Construction, 5: 40-46, (1983).
  8. 8. Bickely J. A., Ryell J., Rogers C. and Hooton R. D., “Some characteristic of high strength concrete”, Canadian Journal of Civil Engineering, 18: 885-889, (1991).

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

1 Mart 2020

Gönderilme Tarihi

15 Temmuz 2018

Kabul Tarihi

19 Şubat 2019

Yayımlandığı Sayı

Yıl 2020 Cilt: 23 Sayı: 1

Kaynak Göster

APA
Gökçe, H. S., Hosseinnezhad, H., Üzüm, O., Hatungimana, D., & Ramyar, K. (2020). Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars. Politeknik Dergisi, 23(1), 61-66. https://doi.org/10.2339/politeknik.444036
AMA
1.Gökçe HS, Hosseinnezhad H, Üzüm O, Hatungimana D, Ramyar K. Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars. Politeknik Dergisi. 2020;23(1):61-66. doi:10.2339/politeknik.444036
Chicago
Gökçe, H. Süleyman, Hojjat Hosseinnezhad, Onur Üzüm, Daniel Hatungimana, ve Kambiz Ramyar. 2020. “Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars”. Politeknik Dergisi 23 (1): 61-66. https://doi.org/10.2339/politeknik.444036.
EndNote
Gökçe HS, Hosseinnezhad H, Üzüm O, Hatungimana D, Ramyar K (01 Mart 2020) Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars. Politeknik Dergisi 23 1 61–66.
IEEE
[1]H. S. Gökçe, H. Hosseinnezhad, O. Üzüm, D. Hatungimana, ve K. Ramyar, “Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars”, Politeknik Dergisi, c. 23, sy 1, ss. 61–66, Mar. 2020, doi: 10.2339/politeknik.444036.
ISNAD
Gökçe, H. Süleyman - Hosseinnezhad, Hojjat - Üzüm, Onur - Hatungimana, Daniel - Ramyar, Kambiz. “Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars”. Politeknik Dergisi 23/1 (01 Mart 2020): 61-66. https://doi.org/10.2339/politeknik.444036.
JAMA
1.Gökçe HS, Hosseinnezhad H, Üzüm O, Hatungimana D, Ramyar K. Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars. Politeknik Dergisi. 2020;23:61–66.
MLA
Gökçe, H. Süleyman, vd. “Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars”. Politeknik Dergisi, c. 23, sy 1, Mart 2020, ss. 61-66, doi:10.2339/politeknik.444036.
Vancouver
1.H. Süleyman Gökçe, Hojjat Hosseinnezhad, Onur Üzüm, Daniel Hatungimana, Kambiz Ramyar. Optimising High Lime Fly Ash Content By Means of Silica Fume İncorporation To Control Alkali-Silica Reaction And Drying Shrinkage of Mortars. Politeknik Dergisi. 01 Mart 2020;23(1):61-6. doi:10.2339/politeknik.444036

Cited By

 
TARANDIĞIMIZ DİZİNLER (ABSTRACTING / INDEXING)
181341319013191 13189 13187 13188 18016 

download Bu eser Creative Commons Atıf-AynıLisanslaPaylaş 4.0 Uluslararası ile lisanslanmıştır.