Experimental and Numerical Investigation of Temperature Development of Ohmic Heating Cured Nonmass Concrete under Subzero Temperature

Author:

Qi Beimeng1,Zhou Zheng2,Tian Weichen2ORCID,Ouyang Mingzhe2,Wang Xiaocheng3,Shi Qiang3,Wang Ye3,Sun Yang4,Wang Wei2

Affiliation:

1. College of Quality & Safety Engineering, China Jiliang University, Hangzhou 310018, China

2. School of Civil Engineering, Harbin Institute of Technology, Harbin 150090, China

3. State Grid Inner Mongolia East Power Co., Ltd., Construction Branch, Hohhot 010000, China

4. State Grid Inner Mongolia East Power Co., Ltd., Institute of Economics and Technology, Hohhot 010000, China

Abstract

In this paper, carbon fiber/carbon nanofiber strengthening nonmass concrete slab was designed, and ohmic heating (OH) curing was used to promote the strength formation of the slab under −20°C. COMSOL multiphysical field coupling program has been used to simulate the heating process of nonmass concrete slabs under different conditions. COMSOL analysis results showed that the optimal loading power density of OH cured sample under −20°C was 1000 W/m2∼1200 W/m2. Moreover, numerical analysis results were experimentally validated by the multipoint temperature measurement method. Furthermore, the mechanical properties showed that the compressive strength of the sample cured by 2 days OH curing at −20°C reached up to 48.2 MPa. SEM analysis exhibited that OH curing could improve the interfacial transition zone (ITZ) between the fiber and the matrix, leading to a denser microstructure. This study proved that COMSOL program could provide good theoretical guidance for OH cured nonmass cement concrete under subzero temperature. This work establishes an accurate guideline for electric power supplementation, laying a solid foundation of winter construction with high efficiency and low energy consumption.

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

Reference34 articles.

1. Standard specification for cold weather concreting (306.1-90);B. Ciuk;Concrete,1990

2. Cold weather concreting strategies;R. L. Kozikowski;Concrete International,2014

3. The effects of urea on strength gaining of fresh concrete under the cold weather conditions;R. Demirboga;Construction and Building Materials,2014

4. Low temperature property and salt releasing characteristics of antifreeze asphalt concrete under static and dynamic conditions

5. Study on the antifreeze performance of porous cement stabilized macadam

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