Araştırma Makalesi

Reuse of Industrial Metal Wastes as Partial Replacement of Aggregates in Mortar Production

Cilt: 12 Sayı: 5 31 Aralık 2021
  • Nihan Gülmez *
PDF İndir
EN

Reuse of Industrial Metal Wastes as Partial Replacement of Aggregates in Mortar Production

Abstract

Sustainable waste management is becoming more and more important in the construction industry due to increasing waste costs as well as environmental effects. As a result of increasing level of wastes and environmental damage, the use of these wastes has become the focus for beneficial construction activities and sustainable industrial applications. This study presents experimental results on the effect of industrial wastes on the performance of cementitious mixtures. The scope of this study, therefore, was to assess the effect of waste aluminium on physical and mechanical properties of cement based mixtures prepared in different compositions. Consistency, bulk density, porosity, absorption, flexural and compressive strength tests were carried out on mixtures produced by using waste aluminium aggregates in different percentages instead of fine aggregate. Results showed that mixtures prepared with 4% aluminium aggregates had the highest water absorption and porosity. With the addition of %1 lathe waste, it was observed that the flexural behavior of mortar was maximum and the optimum percentage for flexural strength was noted. In addition, when mixtures produced with the same percentage of aluminium were compared, the amount of binder played a significant role on both compressive and flexural strength. Results have shown that to incorporate aluminium into mixtures can be a suitable solution for recycling in industrial applications.

Keywords

Kaynakça

  1. [1] M. Batayneh, I. Marie, I. Asi, “Use of selected waste materials in concrete mixes,” Waste Management, vol. 27, pp. 1870–1876, 2007.
  2. [2] A. J. Babafemi, B. Savija, S. C. Paul, V. Anggraini, “Engineering properties of concrete with waste recycled plastic: a review,” Sustainability, vol. 10, no 11, pp. 1-26, 2018.
  3. [3] N. K. Sharma, P. Kumar, S. Kumar, B. S. Thomas, R.C. Gupta, “Properties of concrete containing polished granite waste as partial substitution of coarse aggregate,” Construction and Building Materials, vol. 151, pp. 158–163, 2017.
  4. [4] J. Junak, N. Stevulova, “Natural aggregate totally replacement by mechanically treated concrete waste,” SSP - Journal of Civil Engineering, vol. 10, no 1, pp. 83-90, 2015.
  5. [5] S. Khan, N. Maheshwari, G. Aglave, R. Arora, “Experimental design of green concrete and assessing its suitability as a sustainable building material,” Materials Today: Proceedings, vol. 26 pp. 1126-1130, 2020.
  6. [6] F. Min, Z. Yao, T. Jiang, “Experimental and numerical study on tensile strength of concrete under different strain rates,” The Scientific World Journal, 2014, Art. no. 173531.
  7. [7] W. Zeng, Y. Ding, Y. Zhang, F. Dehn, “Effect of steel fiber on the crack permeability evolution and crack surface topography of concrete subjected to freeze-thaw damage,” Cement and Concrete Research, vol. 138, 2020, Art. no. 106230.
  8. [8] D. Yoo, I. You, “Liquid crystal display glass powder as a filler for enhancing steel fiber pullout resistance in ultra-high-performance concrete,” Journal of Building Engineering, vol. 33, 2021, Art. no. 101846.

Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

Araştırma Makalesi

Yazarlar

Yayımlanma Tarihi

31 Aralık 2021

Gönderilme Tarihi

1 Kasım 2021

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2021 Cilt: 12 Sayı: 5

Kaynak Göster

IEEE
[1]N. Gülmez, “Reuse of Industrial Metal Wastes as Partial Replacement of Aggregates in Mortar Production”, DÜMF MD, c. 12, sy 5, ss. 875–880, Ara. 2021, doi: 10.24012/dumf.1051502.

Cited By

DUJE tarafından yayınlanan tüm makaleler, Creative Commons Atıf 4.0 Uluslararası Lisansı ile lisanslanmıştır. Bu, orijinal eser ve kaynağın uygun şekilde belirtilmesi koşuluyla, herkesin eseri kopyalamasına, yeniden dağıtmasına, yeniden düzenlemesine, iletmesine ve uyarlamasına izin verir. 24456