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Published: Građevinar 74 (2022) 8
Paper type: Scientific research paper
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Mechanical and radiation attenuation properties of conventional and heavy concrete with diverse aggregate and water/cement ratios

Ilker Ustabas, Mustafa Demirci, Hasan Baltas, Yılmaz Demir, Sakir Erdogdu, Zafer Kurt, Talip Cakmak

Abstract

This paper presents the results of comprehensive laboratory work conducted for investigating the mechanical and radiation attenuation characteristics of heavyweight concrete produced with pyrite, chromium, and magnetite aggregates and normal weight concretes produced with three different water/ cement (w/c) ratios. Various experiments were conducted to determine the compressive strengths, ultrasound transmission velocities, experimental elasticity modules, and mass attenuation coefficients of these concretes. Heavy and normal weight concretes exhibited similar behaviour in terms of compressive strength and elasticity modules. In heavyweight concretes, with increased w/c ratios (by keeping the amount of water constant and decreasing the amount of cement), the corresponding density increased due to the increase in the amount of high-density aggregates rather than cement in the composition of concrete. Thus, heavyweight concretes produced with a high w/c ratio and low strength can absorb more X-rays. Mass attenuation coefficients converge in heavy and normal weight concretes with different densities at high energy levels.

Keywords
heavy weight concrete, elasticity modules, magnetite aggregate, mass attenuation coefficient

HOW TO CITE THIS ARTICLE:

Ustabas, I., Demirci, M., Baltas, H., Demir, . Y., Erdogdu, S., Kurt, Z., Cakmak, T.: Mechanical and radiation attenuation properties of conventional and heavy concrete with diverse aggregate and water/cement ratios, GRAĐEVINAR, 74 (2022) 8, pp. 635-645, doi: https://doi.org/10.14256/JCE.3382.2021

OR:

Ustabas, I., Demirci, M., Baltas, H., Demir, . Y., Erdogdu, S., Kurt, Z., Cakmak, T. (2022). Mechanical and radiation attenuation properties of conventional and heavy concrete with diverse aggregate and water/cement ratios, GRAĐEVINAR, 74 (8), 635-645, doi: https://doi.org/10.14256/JCE.3382.2021

LICENCE:

Creative Commons License
This paper is licensed under a Creative Commons Attribution 4.0 International License.
Authors:
1 USTABAS WEB
Ilker Ustabas
Recep Tayyip Erdogan University, Rize, Turkey
Engineering and Arts Faculty
Department of Civil Engineering
2 DEMIRCI WEB
Mustafa Demirci
Recep Tayyip Erdogan University, Rize, Turkey
Technical Vocational School Construction Technology Program
3 BALTAS WEB
Hasan Baltas
Recep Tayyip Erdogan University, Rize, Turkey
Engineering and Arts Faculty
4 DEMIR WEB
Yılmaz Demir
Recep Tayyip Erdogan University, Rize, Turkey
Engineering and Arts Faculty
Department of Geology Engineering
5 ERDOGDU WEB
Sakir Erdogdu
Karadeniz Technical University, Trabzon, Turkey
Engineering and Arts Faculty
6 KURT WEB
Zafer Kurt
Recep Tayyip Erdogan University, Rize, Turkey
Engineering and Arts Faculty
Department of Civil Engineering
7 CAKMAK WEB
Talip Cakmak
Recep Tayyip Erdogan University, Rize, Turkey
Engineering and Arts Faculty
Department of Civil Engineering