Home | About Journal  | Editorial Board  | Instruction | Subscription | Advertisement | Message Board  | Contact Us | 中文
MODERN TUNNELLING TECHNOLOGY 2023, Vol. 60 Issue (2) :103-114    DOI:
Current Issue | Next Issue | Archive | Adv Search << [an error occurred while processing this directive] | [an error occurred while processing this directive] >>
A Study on the Bearing Characteristics of Composite Concrete-filled Steel Tube Support Structure in Tunnels
(1. School of Transportation Engineering, Shandong Jianzhu University, Jinan 250101; 2. China Construction Civil Engineering Co.,Ltd., Jinan 250101; 3. School of Civil Engineering, Ludong University, Yantai 264025; 4. The First Company of China Eighth Engineering Bureau Ltd., Jinan 250000)
Download: PDF (6223KB)   HTML (1KB)   Export: BibTeX or EndNote (RIS)      Supporting Info
Abstract To investigate the deformation and failure characteristics and bearing mechanism of composite concretefilled steel tube support structure, pure bending indoor tests and refined numerical simulation are carried out for support structures, taking into account the arch frame-concrete bond-slip characteristics on the basis of typical failure mode of support structures. An in-depth analysis is conducted on the mechanical response of the specimens under the action of bending moment, so as to clarify the impact pattern of different parameters, such as arch frame installation position, shotcrete strength, steel mesh diameter and protective layer thickness, on the structural bearing capacity. The results show that the concrete-filled steel tube specimens without steel mesh (SRCS-FW) are weaker in strength, the concrete cracks rapidly and then slips with the arch frame, while the concrete-filled steel tube specimens with double-layer steel mesh (SRCS-FS) are better in terms of deformation effect and display better bearing characteristics later. Besides, the SRCS-FS specimen has a higher strength of critical slip failure and its ultimate bending moment is 40.9% higher than that of the SRCS-FW specimen. Furthermore, the synergistic effect of the arch frame, the steel mesh and the concrete is significant in the elastic deformation phase of the component. The tensile force of the specimen in the cracking phase is mainly shared by the tensile-side steel mesh and the arch frame, while the pressure is shared by the arch frame and the concrete under compression. It is suggested that the parameter design for the support structure should take into account its load-bearing performance, economy and engineering experience, and construction convenience.
Service
Email this article
Add to my bookshelf
Add to citation manager
Email Alert
RSS
Articles by authors
SUN Huibin1 ZHANG Jianli2 YANG Huixiang1 YANG Hui2 WANG Lei3 WEI Jun2 LIN Weinan3
KeywordsTunnel engineering   Concrete-filled steel tube   Composite support structure   Bearing characteristics   Parameter analysis     
Abstract: To investigate the deformation and failure characteristics and bearing mechanism of composite concretefilled steel tube support structure, pure bending indoor tests and refined numerical simulation are carried out for support structures, taking into account the arch frame-concrete bond-slip characteristics on the basis of typical failure mode of support structures. An in-depth analysis is conducted on the mechanical response of the specimens under the action of bending moment, so as to clarify the impact pattern of different parameters, such as arch frame installation position, shotcrete strength, steel mesh diameter and protective layer thickness, on the structural bearing capacity. The results show that the concrete-filled steel tube specimens without steel mesh (SRCS-FW) are weaker in strength, the concrete cracks rapidly and then slips with the arch frame, while the concrete-filled steel tube specimens with double-layer steel mesh (SRCS-FS) are better in terms of deformation effect and display better bearing characteristics later. Besides, the SRCS-FS specimen has a higher strength of critical slip failure and its ultimate bending moment is 40.9% higher than that of the SRCS-FW specimen. Furthermore, the synergistic effect of the arch frame, the steel mesh and the concrete is significant in the elastic deformation phase of the component. The tensile force of the specimen in the cracking phase is mainly shared by the tensile-side steel mesh and the arch frame, while the pressure is shared by the arch frame and the concrete under compression. It is suggested that the parameter design for the support structure should take into account its load-bearing performance, economy and engineering experience, and construction convenience.
KeywordsTunnel engineering,   Concrete-filled steel tube,   Composite support structure,   Bearing characteristics,   Parameter analysis     
Cite this article:   
SUN Huibin1 ZHANG Jianli2 YANG Huixiang1 YANG Hui2 WANG Lei3 WEI Jun2 LIN Weinan3 .A Study on the Bearing Characteristics of Composite Concrete-filled Steel Tube Support Structure in Tunnels[J]  MODERN TUNNELLING TECHNOLOGY, 2023,V60(2): 103-114
URL:  
http://www.xdsdjs.com/EN/      或     http://www.xdsdjs.com/EN/Y2023/V60/I2/103
 
No references of article
[1] SUN Yi.Analysis of Stress Characteristics and Stability of Initial Support Arch of Tunnels with the Spatial Effect of Truss Structure Taken into Consideration[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(3): 34-43
[2] JI Yunpeng1,2 FANG Lingguo3 TANG Haotian4 ZHANG Xingli1,2 WANG Xiangjin1,2 BAI Yuntian1,2.Study on Forces on Pipe Umbrella Support in the Whole Process of Tunnel Excavation[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(3): 123-138
[3] WANG Xiuling1,2.Model Experimental Study on Interaction Characteristics of Rock and Structure in Weak Rock Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(3): 164-174
[4] ZHOU Baochun1,2.SUMO-based Simulation and Evaluation of Traffic Organization Scheme for Yuelongmen Tunnel[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(3): 274-281
[5] YAN Bo1 ZHANG Junru2 ZHANG Xinjin1 PENG Lei1 Ning Bo1.A Study on the Stability of Surrounding Rocks in Construction of Undercrossing Tunnels with Super-large Section Based on Radial Displacement Release Rate of Surrounding Rocks[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(2): 115-124
[6] CUI Guangyao1 MA Jianfei2 NING Maoquan3,4 TANG Zaixing3,4 LIU Shunshui3,4 TIAN Yuhang1.A Study on Optimization of Reinforcement Scheme for Adjacent Construction of Super-large Rectangular Pipe Jacking Shield Tunnel in Soft Ground[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(2): 178-184
[7] JIANG Yajun1 ZHENG Yi1 YU Liangmin1 CUI Hengtao1 CAO Danyang2.Effect of Glass Dust on the Resistance of Concrete to Calcium Corrosion under Contact Corrosion Conditions[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(2): 223-229
[8] YU Li1,2 WANG Song1,2 LUO Xiang1,2 WANG Xiaoyong3 GUO Xiaohan1,2 DUAN Ruyu1,2.A Study on Geometric Design Parameters of Grille Sunshades in Highway Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(1): 34-46
[9] YAO Zhixiong1,2,3 LIU Mengfei1 WU Bo4 LIU Yaoxing1 CHEN Ximao5 ZHENG Guowen5 LUO Zhiyi1.Study on Stability and Initial Support Optimization of Multi-tunnel Based on Bearing Characteristics[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(1): 119-129
[10] JIANG Shuping1,2 LI Jing1 ZHANG Dandan1 CAO Peng2.Experimental Study on the Law of Heat Transfer of Tube Structure of the Steel-concrete-steel Immersed Tube Tunnel[J]. MODERN TUNNELLING TECHNOLOGY, 2023,60(1): 168-178
[11] XU Fuqiang DU Zhigang CHEN Can.Distribution and Development Characteristics of Urban Road Tunnels in China[J]. MODERN TUNNELLING TECHNOLOGY, 2022,59(6): 35-41
[12] SONG Zhanping1,2,3 PEI Jiafeng1,3 PAN Hongwei2,4 SUN Ze1,3 DING Libo5.Analysis on the Support Effect of Advance Large Pipe Umbrella at Portal Section of Shallow Tunnel under Unsymmetrical Load[J]. MODERN TUNNELLING TECHNOLOGY, 2022,59(6): 86-96
[13] CUI Guangyao1 SHI Wenhao1 WANG Daoyuan2 WANG Mingsheng3.Study on the Thermal Insulation and Shock Absorption Technology for Tunnels Crossing the Heat-conducting Fault in a Highly Seismic Zone[J]. MODERN TUNNELLING TECHNOLOGY, 2022,59(6): 70-76
[14] LI Zhen1 LENG Xianlun2,3 YIN Qiuyu4.Research on the Temperature Distribution Characteristics of Tunnel Fire Based on Distributed Optical Fiber Monitoring[J]. MODERN TUNNELLING TECHNOLOGY, 2022,59(6): 132-139
[15] CAO Yan1 WANG Ruiwen1,2 ZHAO Weiwei2 SHI Qibin3 PAN Xuhui3 OU Dingfu1,2.Application Research on the Bionic Self-healing Technology for Secondary Lining Concrete of Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2022,59(6): 250-257
Copyright 2010 by MODERN TUNNELLING TECHNOLOGY