Research on the Electrosensitivity and Electrothermal Properties of Intelligent High-Performance Concrete Materials

Author:

Zhang Yunlong12ORCID,Sun Huichao2,Qian Xuesong2ORCID,Wang Jing2,Tan Guojin3ORCID

Affiliation:

1. Key Laboratory for Comprehensive Energy Saving of Cold Regions Architecture of Ministry of Education, Jilin Jianzhu University, Changchun 130118, China

2. College of Traffic Science and Engineering, Jilin Jianzhu University, Changchun 130119, China

3. College of Transportation, Jilin University, Changchun 130025, China

Abstract

In order to enhance traditional building materials, High-performance concrete (HPC) is being modified by adding carbon and basalt fibers with volume contents of 0.75–1.25% and 0.15–0.35%, respectively. The original mechanical properties are maintained while developing the material’s intelligent self-sensing and self-heating functions, which are tested for pressure sensitivity and bending sensitivity, and with electrothermal tests. The results demonstrate that carbon fiber can significantly reduce the matrix resistivity of high-performance concrete, reaching the percolation threshold at a content of 1%. The inclusion of basalt fibers in the material results in a decrease in resistivity. However, the addition of mixed fibers leads to improved mechanical–electrical sensitivity under compression and bending, with a positive hybrid effect. The optimal contents for carbon fiber and basalt are 0.75% and 0.3%, respectively. In electrothermal tests, the specimen can reach a temperature of 104.5 °C with a heating rate of 25.86 °C/h, indicating the potential for self-monitoring and the electric melting of ice and snow. These findings provide support for the intelligent improvement of building structures in the new era.

Funder

Science and Technology Department of Jilin Province

Publisher

MDPI AG

Subject

General Materials Science

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