本科生课程 组合结构设计 钢结构设计 科技与专业外语 研究生课程
科技论文写作 生物建造技术 工程材料力学性能 教学成果 ² 教改项目
新时期工程教育专业认证视域下地方高校土木工程专业人才培养模式改革与实践(2019JGZ-09),苏州科技大学教学改革与研究项目,2020.03-2022.03,共同主持 ² 教改论文
陈鑫, 刘聪, 李启才, 凌志彬. 基于OBE的课程目标全过程达成情况评价方法与实践—以科技与专业外语课程为例. 高等建筑教育, 2024, 33(6): 32-40. 孙国华, 蔡新江, 范存新, 陈鑫, 凌志彬, 陈建兵. 土木工程专业培养目标合理性及达成评价研究. 高等建筑教育, 2022, 31(3): 19-27. 黎明, 陈鑫, 凌志彬, 齐益. 基于《组合结构设计》课程的国际化人才培养教学改革研究. 产业与科技论坛. 2022, 21(11): 141-143. 刘聪,陈鑫,凌志彬. 基于课程思政的"土木工程专业英语"教学研究. 科教导刊, 2021, 7(3): 109-111. 齐益、陈鑫、凌志彬. "土建工程基础"课程思想政治教育改革探索. 科教导刊, 2020, 32(11): 101-102. 凌志彬, 杨会峰, 孙国华. 中国木结构教学实践与探索. 高等建筑教育, 2018, 27(6): 82-86. 主/参编教材 (英) 杰克•波蒂厄斯, (英) 彼得•罗斯 编著, 杨会峰, 凌志彬 译. Eurocode 5设计指南:房屋建筑木结构设计—EN 1995-1-1 [M]. 北京:人民交通出版社, 2020. 于安林, 毛小勇, 赵宝成, 凌志彬. 《钢结构设计》(英文版).中国建筑工业出版社, 2026. (共同主编) ² 教学获奖
第十三届江苏省高校土木工程专业、智能建造专业青年教师讲课竞赛 二等奖, 2024 固本创新、一破两促 构建新时代一流土木工程本科人才培养体系的实施与探索. 苏州科技大学校级教学成果二等奖, 2024 (6/9) 苏州科技大学教案设计比赛 一等奖, 2023 苏州科技大学微课教学比赛 优秀奖, 2023 苏州科技大学校优秀毕业设计(指导教师), 2021 江苏省高等学校土木工程学科“吕志涛院士”优秀硕士学位论文(指导教师),2025 苏州科技大学校级优秀硕士论文(指导教师), 2024 苏州科技大学交通银行奖教金,2019 ² 指导竞赛
江苏省研究生现代木结构装配式低碳发展学术创新论坛 一等奖(指导老师), 2024 江苏省研究生现代木结构装配式低碳发展学术创新论坛 二等奖(指导老师), 2024 江苏省研究生“绿意未来·零碳木构”科研创新实践大赛 优秀指导老师, 2023 江苏省研究生“绿意未来·零碳木构”科研创新实践大赛 金奖(指导老师), 2023 第十六届江苏省大学生土木工程结构创新竞赛 二等奖(指导老师), 2019 |
研究方向 钢结构、木结构、新型组合结构及其抗震 科研项目 国家自然科学基金面上项目,型钢-正交胶合木楼板组合框架协同工作机制与抗震机理及设计方法, 2027.01-2030.12. 主持 国家自然科学基金青年基金项目, 带新型抗剪连接件木-混凝土组合梁力学性能及增强机理, 2018.01-2020.12. 主持 江苏省自然科学基金面上项目, 型钢-正交胶合木组合梁-钢柱组合节点转动与滞回性能研究, 2022.07-2025.06.主持 江苏省自然科学基金青年基金项目, FRP增强带新型剪力件木-混凝土组合梁力学性能及其设计方法, 2017.07-2020.06.主持 江苏省高校自然科学研究面上项目, 带装配式剪力件木-混凝土组合梁的结构性能及增强效果, 2017.09-2019.08. 主持 建筑结构加固改造与地下空间工程教育部重点实验室开放课题, 干式连接木-混凝土组合梁受力机理与设计方法, 2024.1-2025.12, 主持 国家自然科学基金面上项目, 木-混凝土组合梁与木柱组合节点的受力机理与结构性能研究, 2019.01-2022.12. 参与 企业委托横向项目, 合肥第八中学5号楼南大门静载测试与分析, 2024.07-2024.08, 主持 企业委托横向项目, 预应力张弦胶合木梁性能测试与分析, 2022.04-2023.06, 主持 企业委托横向项目, 张索木梁静载测试, 2021.06-2021.08, 项目执行人
代表性论著 [1] Zhibin Ling*, Zheng Li, Kepei Wang, Rongfan Li. Experimental and theoretical investigation of steel-cross laminated timber composite beams with grouted shear connectors. ASCE-Journal of Structural Engineering 2026. 152(10): 04026146. [2] Zhibin Ling, Hao Wang, Xiuqiang Rong, Zheng Li, Lingfeng Zhang, Wei Zheng. Experimental behaviour of notched timber-concrete connections with glued-in rod under different test configurations and loading protocols. Materials and Structures 2026, 59(16): 1-23. [3] Zhibin Ling*, Zheng Li, Zhoujun Li, Chao Yang, Wei Zheng, Lingfeng Zhang. Experimental investigation of axial pull-out behavior of glued-in threaded rods in cross-laminated timber. Bioresources 2025; 20(3), 5407–5428. [4] Chao Yang, Zhibin Ling*, Zheng Li, Zhiqiang Qin, Jie Shen. Numerical Modelling and Theoretical Analysis of Timber-Concrete Glued-in Threaded Rod Shear Connectors with and without Notches. Bioresources 2025; 20(4), 10460–10486. [5] Zhibin Ling*, Zheng Li, Fan Lu, Huifeng Yang, Wei Zheng, Lingfeng Zhang. Flexural strengthening of timber-concrete composite beams using mechanically fastened and externally bonded combining mechanically fastened strengthening techniques. Journal of Building Engineering 2023; 78: 107645. (SCI/EI) [6]Zhibin Ling*, Zhoujun Li, Xiuqiang Rong, Huiyuan Shi. Effect of test configurations and loading protocols on performance of timber-concrete connectors. Construction and Building Materials 2023; 367: 130244. (SCI/EI) [7] Zhibin Ling*, Henan Zhang, Quanmeng Mu, Zhe Xiang, Lingfeng Zhang, Wei Zheng. Shear performance of assembled shear connectors for timber –concrete composite beams. Construction and Building Materials 2022; 329: 127158. (SCI/EI) [8] Henan Zhang, Zhibin Ling*. Finite Element Modeling on Shear Performance of Grouted Stud Connectors for Steel–Timber Composite Beams. Materials 2022; 15: 1196. (SCI) [9]Zhibin Ling*, Xiuqiang Rong, Zhe Xiang. Laterally loaded performance of single dowel-type fastener used for steel plate-to-timber connections. Structures 2021; 34: 1985-1997. (SCI/EI) [10]Zhibin Ling, Weiqing Liu*, Jingsong Shao. Experimental and theoretical investigation on shear behaviour of small-scale timber beams strengthened with Fiber-Reinforced Polymer composites. Composite Structures 2020; 240: 111989. (SCI/EI) [11]Zhibin Ling*, Zhe Xiang, Weiqing Liu, Huifeng Yang*, Ju Tang. Load-slip behaviour of glue laminated timber connections with glued-in steel rod parallel to grain. Construction and Building Materials 2019; 227: 117028. (SCI/EI) [12]Zhibin Ling*, Weiqing Liu, Huifeng Yang, Xin Chen. Modelling of glued laminated timber joints with glued-in rod considering bond-slip location function. Engineering Structures 2018; 176: 90-102. (SCI/EI) [13] Zhibin Ling#*, Huifeng Yang#, Weiqing Liu*, Shijun Zhu, Xin Chen. Local bond stress-slip relationships between glue laminated timber and epoxy bonded-in GFRP rod. Construction and Building Materials 2018; 170: 1-12. (SCI/EI) [14]Zhibin Ling, Weiqing Liu*, Frank Lam, Huifeng Yang, Weidong Lu. Bond behavior between softwood glulam and epoxy bonded-in threaded steel rod. Journal of Materials in Civil Engineering ASCE, 2016; 28(3): 06015011. (SCI/EI) [15]Zhibin Ling#, Huifeng Yang#, Weiqing Liu*, Weidong Lu, Ding Zhou, Lu Wang. Pull-out strength and bond behaviour of axially loaded rebar glued-in glulam. Construction and Building Materials 2014; 65: 440-449. (SCI/EI) [16] Wei Zheng, Dong Li, Zhiqiang Wang, Zhibin Ling, Runzhou Huang, Xiaowei Wang. Experimental and numerical investigation on the lateral performance of screwed midply-bamboo shear walls. ASCE-Journal of Structural Engineering 2026; 152 (9): 04026120. [17] Lingfeng Zhang, Weiqing Liu, Ahmed Ahmad Omar, Zhibin Ling, Dongdong Yang, Yan Liu. Postfire performance of pultruded wood-cored GFRP sandwich beams. Thin-walled Structures 2023; 193: 111240. (SCI/EI) [18] Lingfeng Zhang, Kun Wang*, Zhibin Ling, Ahmed Ahmad Omar, Kai Guo. Bond-slip behavior between reactive powder concrete and H-shaped steel. Journal of Constructional Steel Research, 2023; 210: 108058. (SCI/EI) [19]Weidong Lu*, Zhibin Ling, Qifan Geng, Weiqing Liu, Huifeng Yang, Kong Yue. Study on flexural behavior of glulam beams reinforced by near surface mounted (NSM) CFRP laminates. Construction and Building Materials 2015; 91: 23-31. (SCI/EI) [20] Fubing Zhang, Weiqing Liu*, Zhibin Ling, Hai Fang, Dandan Jin. Mechanical performance of GFRP-profiled steel sheeting composite sandwich beams in four-point bending. Composite Structures 2018; 206: 921-932. (SCI/EI) [21]Lingfeng Zhang, Weiqing Liu, Lu Wang, Zhibin Ling., On-axis and off-axis compressive behavior of pultruded GFRP composites at elevated temperatures, Composite Structures 2020, 236: 111891. (SCI/EI) [22]Lingfeng Zhang, Weiqing Liu*, Lu Wang, Zhibin Ling. Mechanical behavior and damage monitoring of pultruded wood-cored GFRP sandwich components, Composite Structures 2019; 215: 502-520. (SCI/EI) [23] Zhibin Ling, Weiqing Liu, Huifeng Yang, Zhe Xiang. Cyclic Load Behaviour of Beam-to-column Glulam Joints Combining Glued-in rods with Steel Brackets. In Proc. 15th World Conference on Timber Engineering Seoul, Republic of Korea, CD-ROM Proceedings, 2018 [24] Zhibin Ling, Weiqing Liu, Huifeng Yang, Weidong Lu. Numerical simulation on bond behavior between glulam and glued-in rod. In Proc. 14th World Conference on Timber Engineering Vienna City, Austria, CD-ROM Proceedings, 2016 [25] Zhibin Ling, Weiqing Liu, Huifeng Yang, Weidong Lu. Bond behavior of glued-in timber joint with deformed bar epoxied in glulam. In Proc. 13th World Conference on Timber Engineering Quebec City, Canada, CD-ROM Proceedings, 2014. [26] 凌志彬, 刘成根, 韦俊. 胶合木灌浆植筋连接抗拔性能试验研究. 中南林业科技大学学报. 2027. (录用待刊) [27]刘敬知, 凌志彬*, 尚进鑫.钢-CLT 组合梁-钢柱组合节点的初始转动刚度研究.建筑钢结构进展. 2026, 28(4): 38-46. [28]王浩, 凌志彬*, 潘威成, 朱宇轩.内填木芯钢管混凝土短柱轴压性能研究[J/OL].建筑钢结构进展. https://doi.org/10.13969/j.jzgjgjz.20250328001(网络首发,2025) [29] 凌志彬*, 刘淳, 张赫男. 钢-正交胶合木组合梁浆锚栓钉连接件受剪性能. 建筑结构学报: 2024, 45(3): 232-242. [30] 凌志彬*, 朱宇轩, 宋千军. 正交胶合木抗压承载力试验研究. 林产工业, 2023, 60(08): 25-32+46. [31] 凌志彬, 穆泉蒙. 负弯矩作用下钢-CLT组合梁-钢柱组合节点转动性能有限元模拟. 林产工业, 2022, 59(9): 36-43. [32]荣秀强, 凌志彬*. 内填木芯钢管混凝土短柱轴压性能有限元分析. 建筑钢结构进展, 2022, 24(5): 8-17. [33]周金将,杨舒涵,纪微, 凌志彬*.自攻螺钉增强胶合木沿胶缝横纹受压承载力试验研究. 建筑结构, 2022, 52(18): 138-144+132. [34]李荣帆, 凌志彬*, 穆泉蒙, 张赫男. 浆锚栓钉连接钢-正交胶合木组合梁抗弯性能有限元分析. 木材科学与技术, 2022, 36(3): 80-89. [35] 凌志彬*, 陆帆, 杨会峰. 胶合木植筋节点抗拔性能理论预测. 南京工业大学学报(自然科学版), 2021, 43(5): 654-662. [36] 凌志彬*, 刘伟庆, 杨会峰. 木结构植筋连接研究现状与展望. 结构工程师, 2017, 33(6): 188-195. [37]凌志彬*, 刘伟庆, 杨会峰. 胶合木植筋节点黏结锚固可靠度分析与设计建议. 南京工业大学学报(自然科学版), 2016, 38(5): 1-6. [38]杨会峰, 凌志彬, 刘伟庆*, 陆伟东. 单调与低周反复荷载作用下胶合木梁柱延性抗弯节点试验研究. 建筑结构学报, 2015, 36(10): 131-138. (EI) [39]凌志彬, 刘伟庆*, 杨会峰, 陆伟东. 考虑位置函数的胶合木植筋粘结-滑移关系研究. 工程力学, 2016, 33(3): 95-103. (EI) [40] 凌志彬, 杨会峰*, 刘伟庆, 陆伟东. 胶合木植筋黏结锚固性能试验研究. 建筑结构学报, 2013, 34(9): 132-141. (EI)
标准规程 CECS标准:木-混凝土组合楼盖技术标准(T/CECS 2179-2026),参编 |