Influence of cyclic temperature variation on mechanical properties of Dazu Rock Carving sandstone under triaxial stress condition
Civil Engineering|更新时间:2025-11-14
|
Influence of cyclic temperature variation on mechanical properties of Dazu Rock Carving sandstone under triaxial stress condition
“The mechanical properties of Dazu Rock Carvings sandstone in Chongqing deteriorated under the alternating action of cold and hot, the strength and elastic modulus decreased, and the failure mode became complex.”
Journal of Civil and Environmental EngineeringVol. 47, Issue 2, Pages: 39-48(2025)
作者机构:
1.大足石刻研究院,重庆 402360
2.重庆大学 土木工程学院,重庆 400075
3.重庆市地质矿产勘查开发局,重庆 401121
作者简介:
JIANG Siwei (1968- ), research fellow of museum, main research interest: protection of grotto temples, E-mail: 1240071816@qq.com.
基金信息:
Special Key Project of Chongqing Technology Innovation and Application Development(CSTB2022TIAD-KPX0095);Foundation of Academy of Dazu Rock Carvings(H20220387);Chongqing Talent Program(CQYC20210204131);Special Project of Performance Incentive and Guidance for Scientific Research Institutions in Chongqing(cstc2021jxjl00004)
JIANG Siwei,WANG Chenglong,LIU Dongsheng,et al.Influence of cyclic temperature variation on mechanical properties of Dazu Rock Carving sandstone under triaxial stress condition[J].Journal of Civil and Environmental Engineering,2025,47(02):39-48.
JIANG Siwei,WANG Chenglong,LIU Dongsheng,et al.Influence of cyclic temperature variation on mechanical properties of Dazu Rock Carving sandstone under triaxial stress condition[J].Journal of Civil and Environmental Engineering,2025,47(02):39-48. DOI: 10.11835/j.issn.2096-6717.2023.105.
Influence of cyclic temperature variation on mechanical properties of Dazu Rock Carving sandstone under triaxial stress condition
Experimental study on physical and mechanical properties of expansive soil improved by EICP
Experimental study on mechanical performance of GFRP-self-compacting RPC composite specimens
Experimental study on mechanical properties of fiber-reinforced cemented soil with the low temperature curing condition subjected to effect of salt and drying-wetting cycles
Mechanical properties of multiple-structure thick overburden pervious foundation based on fluid-solid coupling
Related Author
GUO Hejia
ZHANG Jiawei
WANG Huan
LIU Wanli
ZHU Mingqiao
WANG Xiwang
Yongmei QIAN
Junjie ZHENG
Related Institution
School of Civil Engineering and Architecture, Henan University
Road School, Henan College of Transportation
China MCC5 Group Corp., Ltd.
Hunan Engineering Research Center for Intelligently Prefabricate Passive House, Hunan University of Science and Technology
School of Civil Engineering, Hunan University of Science and Technology