1、专著
[1]施 刚,陈学森,胡方鑫. 高强度钢材钢结构 (II). 北京:中国建筑工业出版社. 2020.
[2]施 刚,王 喆,陈学森,张宏亮,尹 昊,王 琼. 矩形钢管柱端板式连接钢结构. 北京:中国建筑工业出版社. 2020.
[3]施 刚,石永久,班慧勇. 高强度钢材钢结构. 北京:中国建筑工业出版社. 2014.
[4]石永久,施 刚,王元清,陈 宏. 多高层钢框架梁柱节点——理论与设计. 北京:中国建筑工业出版社. 2014.
2、译著
[5]IABSE 编著. 施 刚 译. 高性能钢材在钢结构中的应用. 北京:中国建筑工业出版社. 2010.
3、英文期刊
[6]Gang Shi, Naizhou Zhang, Lianjin Bao, Xiaoming Chen, Feng Zhou, Sheng Jiang, Huatian Zhao. Experimental study on cruciform welded connections with thick steel plates in moment-resisting beam-to-column joints. Engineering Structures. 2025, 311: 119914. (SCI 检索)
[7]Gang Shi, Chenhao Liu, Ziqian Zhang, Le Zhou, Huatian Zhao. Investigations on buckling behavior of asymmetric L-shaped box-T section columns under eccentric compression. Thin-Walled Structures. 2025, 211: 113047. (SCI 检索)
[8]Gang Shi, Lintao Hou, Huatian Zhao. Numerical study on the seismic behaviour of high-strength steel moment-resisting frames: multi-scale modelling and validation. Thin-Walled Structures. 2025, 208: 112807. (SCI 检索)
[9]Gang Shi, Sheng Jiang, Naizhou Zhang, Lintao Hou, Huatian Zhao. Seismic performance of double-sided plate-reinforced connections between steel beams and built-up box columns. Thin-Walled Structures. 2025, 208: 112872. (SCI 检索)
[10]Gang Shi, Shiqi Zhou, Shihao Wang, Huatian Zhao. Retrofitting of circular steel tubes against overall buckling using stiffened sleeves: Concept and experiments. Thin-Walled Structures. 2025, 208: 112868. (SCI 检索)
[11]Meng Wang, Haixin Duan, Gang Shi. Equivalent loading protocols for steel plate shear wall considering seismic action characteristics. Journal of Constructional Steel Research. 2025, 228: 109442. (SCI 检索)
[12]Jiaying Huang, Huatian Zhao, Yang Gao, Gang Shi. Numerical study on cyclic behaviour of triple grades hybrid high-performance steel structure. Engineering Structures. 2025, 327: 119605. (SCI 检索)
[13]Jiaying Huang, Huatian Zhao, Yang Gao, Gang Shi. Finite element analysis and design of triple grades hybrid high-performance steel structure (TGHSS). Engineering Structures. 2025, 330: 119909. (SCI 检索)
[14]Naizhou Zhang, Sheng Jiang, Xiaoming Chen, Lianjin Bao, Feng Zhou, Huatian Zhao, Gang Shi. Experimental study on seismic behaviour of thick-flange steel beam to square CFST column joints with internal diaphragms. Engineering Structures. 2024, 319: 118792. (SCI 检索)
[15]Naizhou Zhang, Huatian Zhao, Lianjin Bao, Feng Zhou, Xiaoming Chen, Sheng Jiang, Gang Shi. Mechanical properties and constitutive models of butt-welds in Q345GJ thick steel plates. Journal of Constructional Steel Research. 2024, 213: 108321. (SCI 检索)
[16]Sheng Jiang, Gang Shi, Naizhou Zhang, Lintao Hou, Huatian Zhao. Experimental study on seismic behavior of high strength steel flange-plate connections with box columns. Thin-Walled Structures. 2024, 194: 111285. (SCI 检索)
[17]Meng Wang, Haixin Duan, Gang Shi. Cyclic behavior of improved low-yield point steel plate shear walls with T-shaped stiffeners. Journal of Building Engineering. 2024, 94: 109997. (SCI 检索)
[18]Sheng Jiang, Gang Shi, Naizhou Zhang, Huatian Zhao, Teng Sun. Experimental study on seismic behavior of cover-plate connections between steel beams and high strength steel box columns. Thin-Walled Structures. 2023, 193: 111208. (SCI 检索)
[19]Huatian Zhao, Gang Shi, Shuailing Li, Naizhou Zhang, Shanxiang Zhuang, Bin Zhu. Experimental and numerical study of undersized shear panel dampers with bolted connections. Engineering Structures. 2023, 280, 115699. (SCI 检索)
[20]An-Ping Chou, Gang Shi, Chenhao Liu, Le Zhou. Residual stress and compression buckling of large welded equal-leg steel angles. Journal of Constructional Steel Research. 2023, 201, 107756. (SCI 检索)
[21]Meng Wang, Haixin Duan, Gang Shi. Experimental study on seismic performance of low-yield point steel plate shear walls. Thin-Walled Structures. 2023, 191: 111093. (SCI 检索)
[22]Jing Luo, Shuailing Li, Lingtao Mao, Gang Shi. Constitutive model of duplex stainless steel S22053 and its weld under cyclic large plastic strain loading. Journal of Constructional Steel Research. 2023, 205, 107882. (SCI 检索)
[23]Naizhou Zhang, Huatian Zhao, Feng Zhou, Xiaoming Chen, Lianjin Bao, Gang Shi*. Mechanical properties and constitutive model of Q345GJ thick steel plate in China. Construction and Building Materials. 2023, 406: 133288. (SCI 检索)
[24]Huatian Zhao, Gang Shi, Yang Gao. Experimental study on cyclic behaviour of low yield point steel buckling-restrained braces. Engineering Structures. 2023, 277: 115464. (SCI 检索)
[25]Gang Shi, Huatian Zhao, Yang Gao. Experimental study on triple grades hybrid high-performance steel structure (TGHSS): Members and joints. Engineering Structures. 2022, 273: 115109. (SCI 检索)
[26]Gang Shi, Huatian Zhao, Yang Gao. Development of triple grades hybrid high-performance steel structure (TGHSS): Concept and experiments. Engineering Structures, 2022, 266: 114654. (SCI 检索)
[27]Ziqian Zhang, Gang Shi, Shihao Wang, Le Zhou. Investigation on buckling behavior of T-shaped box-T section columns under axial loading. Engineering Structures. 2022, 254: 113904. (SCI检索)
[28]Gang Shi, Shihao Wang, Chengxiao Rong. Experimental investigation into mechanical properties of Q345 steel after fire. Journal of Constructional Steel Research, 2022, 199: 107582. (SCI 检索)
[29]Huatian Zhao, Gang Shi, Xuesen Chen, Tanshu Xiao. Finite element analysis and design of retrofitted beam-to-column joints with welded haunches. Journal of Constructional Steel Research, 2021, 186: 106924. (SCI检索)
[30]Huatian Zhao, Gang Shi, Xuesen Chen, Tanshu Xiao. Numerical simulation and mechanical model of steel beam-to-column joints retrofitted by haunches. Journal of Constructional Steel Research, 2021, 185: 106858. (SCI检索)
[31]Ziqian Zhang, Gang Shi, Lintao Hou, Le Zhou. Geometric dimension and imperfection measurements of box-T section columns using 3D scanning. Journal of Constructional Steel Research, 2021, 183: 106742. (SCI检索)
[32]Gang Shi, Shihao Wang, Xuesen Chen, Chengxiao Rong. Post-fire mechanical properties of base metal and welds of Q235 steel. Journal of Constructional Steel Research, 2021, 183: 106767. (SCI 检索)
[33]Ziqian Zhang, Gang Shi, Xuesen Chen, Lijun Wang, Le Zhou. Residual stress measurements and modeling of built-up box-T sections. Thin-Walled Structures. 2021, 160: 107336. (SCI检索)
[34]Fangxin Hu, Gang Shi. Experimental study on seismic behavior of high strength steel frames: Local response. Engineering Structures. 2021, 229: 111620. (SCI检索)
[35]Gang Shi, Huatian Zhao, Xuesen Chen, Tanshu Xiao. Experimental study of cyclic behavior of retrofitted beam-to-column joints with welded haunches. Journal of Constructional Steel Research. 2020, 171: 106146. (SCI检索)
[36]Gang Shi, Ziqian Zhang, Le Zhou, Lu Yang, Wenjing Zhou. Experimental and numerical investigation on local–overall interactive buckling behavior of welded I-Section steel columns. Thin-Walled Structures. 2020, 151: 106763. (SCI检索)
[37]Gang Shi, Ziqian Zhang, Le Zhou, Yuan Gao. Experimental study and modeling of residual stresses of Q420 large-section angles. Journal of Constructional Steel Research. 2020, 167: 105958. (SCI检索)
[38]Xuesen Chen, Gang Shi. Experimental study on typically designed double-sided plate-reinforced joints with middle columns. Engineering Structures. 2020, 219: 110965. (SCI检索)
[39]Chen Xuesen, Gang Shi. Experimental study on seismic behaviour of cover-plate joints in high strength steel frames. Engineering Structures. 2019, 191: 292-310. (SCI检索)
[40]Chen Xuesen, Gang Shi. Cyclic tests on high strength steel flange-plate beam-to-column joints. Engineering Structures. 2019, 186: 564-581. (SCI检索)
[41]Gang Shi, Hao Yin, Fangxin Hu, Yao Cui. Experimental study on seismic behavior of full-scale fully prefabricated steel frame: Members and joints. Engineering Structures, 2018, 169: 162-178. (SCI检索)
[42]Gang Shi, Hao Yin, Fangxin Hu. Experimental study on seismic behavior of full-scale fully prefabricated steel frame: Global response and composite action. Engineering Structures, 2018, 169: 256-275. (SCI检索)
[43]Hao Yin, Gang Shi. Finite element analysis on the seismic behavior of fully prefabricated steel frames. Engineering Structures. 2018, 173: 28-51. (SCI检索)
[44]Fangxin Hu, Gang Shi, Yongjiu Shi. Constitutive model for full-range elasto-plastic behavior of structural steels with yield plateau: Formulation and implementation. Engineering Structures. 2018, 171: 1059-1070. (SCI检索)
4、中文期刊
[45]施 刚, 赵华田, 荣成骁, 丁大益, 刘 威, 周 健, 王 荣. 天津周大福金融中心复杂铸钢节点性能分析. 建筑结构. 2022, 52(4): 81-85. (CSCD检索)
[46]骆 晶, 施 刚, 毛灵涛, 郑 云. 双相型不锈钢S22053循环本构关系研究. 工程力学. 2021, 38(09): 171-181. (EI检索)
[47]陈学森, 施 刚, 陈玉峰. 高强钢螺栓连接电弧热喷铝接触面抗滑移系数试验研究. 建筑结构. 2021, 51(13): 87-92. (CSCD检索)
[48]施 刚, 张紫千, 陈学森, 高 源. 带焊接端板Q420大规格角钢残余应力试验研究. 建筑结构学报. 2020, 41(S2): 374-381. (EI检索)
[49]施 刚,陈经纬,陈 宏. 大跨桁架拱与混凝土支承结构协同工作分析. 建筑结构. 2017(15):6-10+48. (CSCD检索)
[50]施 刚, 张海涛, 侯和涛, 蔡建光, 厉亚宁, 孙 毅, 王海涛. 加热炉带壁板足尺钢结构抗震性能试验研究. 工程力学. 2014, 31(12): 40-46. (EI检索)
[51]施 刚, 班慧勇, 石永久, 王元清. 高强度钢材钢结构研究进展综述. 工程力学. 2013, 30(1): 1-13. (EI检索, 入选F5000)
[52]施 刚, 罗 翠, 王元清, 石永久, 李国星. 铝合金网壳结构中新型铸铝节点受力性能试验研究. 建筑结构学报. 2012, 33(3): 70-79. (EI检索)
[53]施 刚, 王元清, 石永久. 高强度钢材轴心受压构件的受力性能. 建筑结构学报. 2009, 30(2): 92-97. (EI检索, 入选F5000)
[54]施 刚, 金建钢, 傅爱华. 钢结构大六角头高强度螺栓应变松弛分析. 清华大学学报. 2010, 50(3): 342-345. (EI检索)
[55]施 刚, 石永久, 王元清. 运用ANSYS分析超高强度钢材钢柱整体稳定特性. 吉林大学学报. 2009, 39(1): 113-118. (EI检索)