Thermodynamic response of concrete under microwave heating and conventional heating
Civil Engineering|更新时间:2023-05-25
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Thermodynamic response of concrete under microwave heating and conventional heating
Journal of Civil and Environmental EngineeringVol. 45, Issue 3, Pages: 107-115(2023)
作者机构:
1.西安建筑科技大学,理学院,西安 710055
2.西安建筑科技大学,土木工程学院,西安 710055
3.西安建筑科技大学,陕西省岩土与地下空间工程重点实验室,西安 710055
作者简介:
SHAO Zhushan (1968- ), professor, doctorial supervisor, main research interests: thermodynamic response of concrete and rock materials, E-mail: shaozhushan@xauat.edu.cn.
基金信息:
National Natural Science Foundation of China(11872287);key R&D Program of Shannxi Province(2019ZDLGY01-10)
SHAO Zhushan, ZHANG Hongliang, WEI Wei, et al. Thermodynamic response of concrete under microwave heating and conventional heating[J]. Journal of Civil and Environmental Engineering, 2023, 45(3): 107-115.
DOI:
SHAO Zhushan, ZHANG Hongliang, WEI Wei, et al. Thermodynamic response of concrete under microwave heating and conventional heating[J]. Journal of Civil and Environmental Engineering, 2023, 45(3): 107-115. DOI: 10.11835/j.issn.2096-6717.2021.138.
Thermodynamic response of concrete under microwave heating and conventional heating
Traditional concrete crushing technology has the disadvantages such as large damage of coarse aggregates
serious mechanical wear and high energy consumption. These problems can be solved by microwave treatment of concrete before crushing. To evaluate industrial applicability of this technology
concrete specimens were heated by different microwave power
and compared with conventional heating method
the heating efficiency and macro-crack propagation mechanism of concrete were investigated. Then the uniaxial compressive strength test was carried out to obtain the strength weakening law of concrete under different heat treatment conditions. The results illustrate that compared with the conventional heating method
microwave heating technology can effectively promote the internal and surface crack propagation of concrete
thus reducing the strength of concrete
and has higher efficiency and less energy consumption under high microwave input power. Besides
the results show that the concrete which is not completely dried is easy to burst at low temperature under microwave heating
and the relationship between burst time and power level is a negative power function
and the relationship between burst time and drying time is a positive power function.
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