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李安邦,1989年出生,安徽桐城人,中共党员,工学博士,西安建筑科技大学副教授,博士生导师,土木工程学院院长助理。兼任结构工程与抗震教育部重点实验室管理委员会委员兼秘书、陕西省结构与抗震重点实验室管理委员会委员兼秘书、中国土木工程学会先进工程材料分会理事,并担任SCI期刊BUILDINGS与FRONTIERS IN MATERIALS客座编辑。
研究方向主要集中于钢结构耐久性及高性能复合材料在土木工程中的应用。主持国家自然科学基金项目2项(面上、青年各1项)、省部级科研项目4项、厅局级科研项目2项,参与国家级科研项目6项。发表SCI/EI检索论文40余篇,参编专著3部、住建部“十四五”规划教材1部,参编标准2部,授权专利及软件著作权各10余项。荣获省部级科学技术奖一等奖2项、二等奖2项、厅局级科技奖一等奖3项,获评陕西省优秀博士学位论文。
欢迎土木工程、力学、材料科学与工程、计算机等学科背景的同学报考硕博士研究生,鼓励学科交叉融合,支持学生进一步深造!
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg1. 国家自然科学基金面上项目(52578243),高寒地区锈层稳定化处理耐候钢焊接接头腐蚀疲劳损伤机理与寿命评估,2026-01至2029-12,主持;
2. 国家自然科学基金青年项目(52008331), CFRP板加固锈蚀钢板疲劳机理与寿命评估, 2021-01至 2023-12, 主持;
3. 绿色建筑全国重点实验室自主研究课题(LSZZ-Y202407), 锈蚀冷弯薄壁型钢自攻螺钉连接承载性能退化机理与计算方法, 2025-01至 2026-12, 主持;
4. 陕西省教育厅科学研究计划青年创新团队项目(24JS139), 锈蚀冷弯薄壁型钢自攻螺钉连接承载性能退化机理与计算方法, 2025-01 至 2027-12, 主持;
5. 陕西省重点研发计划项目(2022SF-467), 城市既有桥梁锈损钢结构疲劳性能评定与CFRP加固提升关键技术研究, 2022-01 至 2023-12, 主持;
6. 中国博士后科学基金面上项目(2021MD703867), CFRP板加固锈蚀钢板疲劳裂纹萌生与扩展机理及寿命预测,2022-01 至 2023-06,主持;
7. 陕西省教育厅科学研究计划重点项目(21JS030), 碳纤维复合材料加固锈蚀钢板疲劳裂纹萌生扩展规律及寿命预测方法,2021-01 至 2022-12,主持;
8. 西部绿色建筑国家重点实验室自主研究课题基金(LSZZ202114), 负载条件下CFRP加固锈蚀钢板疲劳性能研究, 2021-01 至 2022-12, 主持;
9. 校企联合基金(XAJD-YF22N015),预应力CFRP板无粘结加固锈蚀钢梁疲劳机理及设计方法,2022-01 至2023-12,主持;
10. 西安建筑科技大学优秀博士论文培育基金项目(6040317005),2016-09 至 2019-12, 主持;
11. 国家自然科学基金专项项目(52341803),基于低碳建筑目标的混凝土材料-结构一体化设计理论与方法, 2024-01 至 2026-12, 参与;
12. 十三五国家重点研发计划项目(2016YFC0701305), 既有工业建筑锈损钢结构安全评定与加固技术研究, 2016-07至 2019-06, 参与;
13. 国家自然科学基金面上项目(52178165), 锈蚀冷弯薄壁型钢结构承载性能退化机理与评定方法, 2022-01至 2025-12, 参与;
14. 国家自然科学基金面上项目(52178163), 冻融环境锈蚀钢筋混凝土构件疲劳性能研究,2022-01至 2025-12,参与;
15. 国家自然科学基金面上项目(52278316), 锈蚀摩擦型高强螺栓连接疲劳破坏机理与寿命预测方法研究,2023-01至2026-12, 参与;
16. 国家自然科学基金面上项目(52278216), 流水冲蚀与盐蚀共同作用下铬合金钢筋锈蚀及混凝土锈胀开裂行为研究,2023-01至2026-12, 参与。
一、论文
1) 李安邦, 王露, 张卓凡, 陈旭东, 徐善华. 纤维增强复合材料(FRP)加固锈蚀钢板静力性能试验[J/OL].复合材料学报. https://doi.org/10.13801/j.cnki.fhclxb.20260604.008
2) 李安邦, 王露, 吴恒, 陈旭东, 徐善华. 外贴CFRP板加固持载损伤钢板疲劳性能试验与寿命计算[J/OL].工程力学,1-15[2026-03-11]. https://link.cnki.net/urlid/ 11.2595.O3.20260310.1120.022.
3) Anbang Li*, Lu Wang, Heng Wu, Qi Sun, Shanhua Xu. Effect ofinitial preload on fatigue crack propagation in CFRP-strengthened steel plateswith central cracks. Thin-Walled Structures, Volume 217, Part A, 2025,113841.
4) 李安邦, 吴恒, 王露, 马洪旺, 徐善华. S355J2W耐候钢T型焊接接头残余应力分布研究[J/OL].世界桥梁,1-9[2026-05-09].https://link.cnki.net/urlid/42.1681.U.20260408. 1452.010.
5) Jiebin Wu,Shanhua Xu*, Anbang Li*, Bin Wang, Youde Wang. Prediction model of fatiguecrack propagation life of corroded steel plate considering pit characteristics[J].International Journal of Fatigue, 2025, 190, 108591.
6) Jiebin Wu, Shanhua Xu*, Anbang Li*, Youde Wang*.Full-range fatigue life prediction model for corroded steel rebars: 3Dpit-cracks coupling mechanism and validation[J]. Engineering FractureMechanics, 2025, 328:111558.
7) Shanhua Xu, Hongjie Yang*, Anbang Li*, Youde Wang,Jiebin Wu, Lu Wang, Hao Wang. Comparative study of corrosion evolution andmechanical performance degradation of Q235B and Q420B steels for transmissiontowers[J]. Construction and Building Materials, 2025, 504:144616.
8) Hao Wang*,Shangxian Hu, Anbang Li*, Xiaogang Liu, Shanhua Xu. Study on hysteresisperformance of corroded CHS T-joints underin-plane bending load[J]. Journal of Building Engineering, 2024,95: 110358.
9) Qianzhi Xue,Shanhua Xu*, Anbang Li*, Youde Wang*. Local–overall buckling behavior ofcorroded intermediate compression-bending H-section steel columns[J]. EngineeringStructures, 2024, 308:118025.
10)Zhang Hua, Zhao Lu, Li Anbang*, Xu Shanhua. Design and hystereticperformance analysis of a novel multi-layer self-centering damper with shapememory alloy[J]. Buildings, 2024, 14, 483.
11)Wang Hao, Li Anbang*. Effects of mixed corrosion damage on constitutiverelation and ductile fracture behavior of butt-welded joints under cyclicloading [J]. Structures, 2023, 55:2341-2357.
12)Li Anbang*, Wang Lu, Xu Shanhua. Fatigue crackpropagation prediction of corroded steel plate strengthened with carbon fiberreinforced polymer (CFRP) plates[J]. Polymers 2022, 14, 4738.
13)Li Anbang, Xu Shanhua. Interfacial bond-slip modelfor CFRP plate externally bonded to corroded steel plate[J]. Materials,2022, 15(23), 8488.
14)Li Anbang, Wang Hao, Li Han, Kong Deliang, XuShanhua*. Stress concentration analysis of the corroded steel platestrengthened with carbon fiber reinforced polymer (CFRP) plates[J]. Polymers,2022, 14, 3845.
15)Li Anbang, Ma Hongwang, Xu Shanhua.Three-dimensional morphology and watershed-algorithm-based method for pittingcorrosion evaluation[J]. Buildings 2022, 12, 1908.
16)Anbang Li*, Shanhua Xu*, Youde Wang, Cheng Wu, Biao Nie. Fatigue behaviorof corroded steel plates strengthened with CFRP plates[J]. Construction& Building Materials, 2022, 314: 125707.
17)Li Anbang*, Xu Shanhua*, Wang Hao, Huifeng Zhang, Yan Wang. Bondbehaviour between CFRP plates and corroded steel plates[J]. CompositeStructures, 2019, 220:221-235.
18)李安邦,徐善华*,吴成,聂彪. 外贴 CFRP 板加固锈蚀钢板疲劳性能试验研究[J]. 土木工程学报,2021,54(07): 62-72.
19)Xu Shanhua, Li Anbang*, Ji Zengyang, et al. Seismic performance ofreinforced concrete columns after freeze–thaw cycles[J]. Construction &Building Materials, 2016, 102:861-871.
20)Xu Shanhua, Li Anbang*, Wang Hao. Bond properties for deformed steel barin frost-damaged concrete under monotonic and reversed cyclic loading[J]. Construction& Building Materials, 2017, 148:344-358.
21)李安邦*,徐善华.锈蚀对钢板表面特性及CFRP板-锈蚀钢板界面黏结性能的影响[J].复合材料学报. 2022, 39(2):746-758.
22)李安邦, 徐善华*.中性盐雾加速腐蚀钢结构表面形貌分形维数表征[J].材料导报, 2019, 33(10): 3502-3507.
23)Li Anbang, Wang Hao, Li Han, Kong Deliang, XuShanhua*. Estimation of bond strength and effective bond length for the doublestrap joint between carbon fiber reinforced polymer (CFRP) plate and corrodedsteel plate[J]. Polymers, 2022, 14(15): 3069.
24)Li Anbang, Xu Shanhua*, Wang Youde. Effects of frost-damage on mechanicalperformance of concrete[J]. Journal of Wuhan University ofTechnology(Materials Science Edition), 2017, 32(1):129-135.
25)李安邦, 黄烜, 聂彪, 徐善华. SMA叠层变刚度水平万向阻尼器滞回性能研究[J]固体力学学报, 2023, 44(2):232-248.
26)Hongjie Yang, Shanhua Xu*,Youde Wang, Anbang Li, Xiaodong Zhou, Jiebin Wu, Hao Wang, Kai Xu. Experimentaland numerical study on the load-bearing performance of corroded Q420B anglesteel members under axial compression[J]. Engineering Structures, 2026,360:122818.
27)Hongjie Yang,Shanhua Xu*, Youde Wang, Anbang Li, Kai Xu, Ziming Liu. Experimental and numericalstudy on the compressive behaviour of corroded Q420B high-strength angle steelmembers with single-leg connections[J]. Thin-Walled Structures, 2026,225: 114758.
28)Hongjie Yang,Shanhua Xu*, Youde Wang, Anbang Li, Jiebin Wu, Xiaodong Zhou, LuWang. Fracture behavior and constitutive modeling of corroded Q420B steel:Experimental and numerical study[J]. Journal of Constructional SteelResearch, 2026, 237: 110133.
29)Zhiyuan Liu, Shanhua Xu*, Sen Fu, Anbang Li, Youde Wang. Experimental andnumerical investigation on the pull-out performance of corroded screwconnections in cold-formed thin-walled steel structures. Thin-WalledStructures, Volume 217, Part A, 2025,113848.
30)Zhiyuan Liu, Shanhua Xu, Sen Fu, Anbang Li, Youde Wang. Crevice corrosioncharacteristics and impact on the shear performance of screw connections[J]. Structures, Volume 80, 2025, 109809.
31)Zhiyuan Liu, Shanhua Xu*, Sen Fu,Anbang Li, Youde Wang. Pull-through performance of corroded screw connectionsin cold-formed thin-walled steel structures[J]. Structures, 2025, 79:109582.
32)Hao Wang, Shanhua Xu, Youde Wang, Anbang Li, Shilong Zhang, XiaodongZhou, Zhihao Fang. Hysteretic behavior and cyclic constitutive model indifferent parts of corroded cold-formed thin-walled steel[J]. Constructionand Building Materials, Volume 489, 2025,142224.
33)Hao Wang, Shanhua Xu*, Youde Wang*,Anbang Li, Zhihao Fang, Xiaodong Zhou. Probabilistic reliability assessment ofcorroded three-edge simply supported steel plates under compression[J]. Structures, 2025, 80:110110.
34)Fan Zhang, Bo Wen, Ditao Niu, Yixuan Han, Anbang Li, Bingbing Guo, YaoLv. Low embodied carbon optimization design of concrete frame structures[J]. Journalof Building Engineering, Volume 111, 2025, 113213.
35)张海江,徐善华,张宗星,李安邦, 王友德.基于微观机制的锈蚀钢板韧性断裂准则研究[J/OL].工程力学, 1-7 [2024-10-16]. http: //kns.cnki.net/kcms/detail/ 11.2595.O3.20241008.1403.016.html.
36)Nie Biao, Xu Shanhua, Hu Weicheng, Chen Huapeng, Li Anbang, ZhangZongxing. Elastic local buckling behaviour of corroded cold-formed steelcolumns[J]. Steel and Composite Structures, 2023, 48(1):27-41.
37)Han Li, Minghao Li, Qingxin Zhao, Shanhua Xu, Anbang Li, Youde Wang. Bondbehavior between CFRP and steel structures with random corrosion defects[J]. CaseStudies in Construction Materials, 2024, 20: e02865.
38)Wang Hao, Xu Shanhua, Li Anbang, et al. Experimental and numericalinvestigation on seismic performance of corroded welded steel connections[J]. EngineeringStructures, 2018, 174:10-25.
39)Xu Shanhua, Wang Hao, Li Anbang, et al. Effects of corrosion on surfacecharacterization and mechanical properties of butt-welded joints[J]. Journalof Constructional Steel Research, 2016, 126:50-62.
40)Wang Youde, Xu Shanhua, Wang Hao, Li Anbang. Predicting the residualstrength and deformability of corroded steel plate based on the corrosionmorphology[J]. Construction & Building Materials, 2017, 152:777-793.
41)Wang Hao, Xu Shanhua, Wang Youde, Li Anbang. Effect of pittingdegradation on ductile fracture initiation of steel butt-welded joints[J]. Journalof Constructional Steel Research, 2018, 148:436-449.
42)Xu Shanhua, Nie Biao, Li Anbang. Bond properties for plain bars infrost-damaged concrete[J]. Magazine of Concrete Research,2019,18:975-988.
43)Wang Youde, Xu Shanhua, Li Anbang. Flexural performance evaluation ofcorroded steel beams based on 3D corrosion morphology[J]. Structure andInfrastructure Engineering. 2020, 16(11): 1562-1577.
44)Nie Biao, Xu Shanhua, Zhang Zongxing, Li Anbang.Surface morphology characteristics and mechanical properties of corrodedcold-formed steel channel sections[J]. Journal of Building Engineering,2021, (10):102786.
45)Nie Biao, Xu Shanhua, Wang Youde, Li Anbang, ZhangZongxing. Local buckling of corroded cold-formed steel stub columns[J]. Structures,2021, 29, 1837-1846.
46)徐善华, 李安邦, 崔焕平,等.反复荷载作用下碳化混凝土应力-应变关系试验[J].哈尔滨工业大学学报, 2015, 47(12):57-63.
47)徐善华, 李安邦, 崔焕平,等.单调荷载作用下碳化混凝土应力-应变关系试验研究[J].建筑结构,2016, 46(6):81-85.
48)徐善华,王友德,李安邦,等.冻融损伤混凝土重复受压本构关系[J].哈尔滨工业大学学报,2015,47(4):104-110.
49)徐善华, 孔德亮, 李安邦,等. 完全碳化混凝土单轴受压力学性能试验研究[J].西安建筑科技大学学报(自然科学版),2015, 47(2):187-191.
二、专著与教材
1. 《Rehabilitationof Metallic Civil Infrastructure Using Fiber-reinforced Polymer (FRP)Composites》Woodhead Publishing, 2024(参编)
2. 《遗产建筑保护材料学》中国建筑工业出版社, 2024(参编)
3. 《Recent advancesin durability improvement and low-carbon strategy of engineering materials andstructures》Frontiers in Materials, 2024(参编)
三、专利
1. 钢结构表面锈坑识别、提取与评价设备、方法及存储介质,ZL202010796518.6. (发明专利)
2. 一种复层包覆碳纤维加固防火隔热体系及其施工方法, ZL 202011119740.9. (发明专利)
3. 一种多向自复位形状记忆合金阻尼器及其安装方法,ZL201811319933.1(发明专利)
4. 滚球与形状记忆合金组合多维减隔振装置及其安装方法,ZL201811321038.3 (发明专利)
5. 一种多向叠层变刚度形状记忆合金阻尼器及其安装方法,ZL201811319914.9 (发明专利)
6. 一种板式受拉构件负载加固用实验装置, ZL202122799481.5.(实用新型专利)
7. 一种钢梁无粘结预应力加固装置, ZL 2023 21433040.6. (实用新型专利)
8. 一种端板连接节点加固结构, ZL 202023330722.3. (实用新型专利)
9. 一种高强螺栓保护装置, ZL 202220419634.0. (实用新型专利)
10. 一种耐腐蚀烟囱, ZL 202120247514.2. (实用新型专利)
四、软件著作权
1. 锈蚀钢板横切面边缘曲线分形维数计算软件V1.0,软著登字第8935513号。
2. 锈蚀钢板表面分形维数计算软件V1.0,软著登字第8935924号。
3. 锈蚀钢结构表面锈坑识别提取与评价软件V1.0,软著登字第8935512号。
4. 腐蚀钢板疲劳裂纹扩展寿命计算软件V1.0,软著登字第13486863号。
1. 李安邦(1/1). CFRP板加固锈蚀钢板疲劳性能及其设计方法研究, 陕西省优秀博士学位论文, 2022年.
2. 李安邦(5/15).腐蚀环境既有钢结构性能评估与提升关键技术, 中国钢结构协会科学技术奖一等奖(省部级), 2020年.
3. 李安邦(2/10).冶金工业建筑锈损钢结构诊治关键技术, 中国钢铁工业协会中国金属学会冶金科学技术奖二等奖(省部级), 2021年.
4. 李安邦(2/10).风振与锈蚀作用下储煤棚大跨度钢结构疲劳破坏机理与防治研究, 中国安全生产协会第四届安全科技进步奖二等奖(省部级), 2023年.
5. 李安邦(4/8).锈蚀钢板断裂性能评估关键技术研究与应用, 天津市钢结构学会科学技术奖一等奖(厅局级), 2023年.
6. 李安邦(4/11).腐蚀环境既有钢结构性能评估与提升关键技术, 陕西高等学校科学技术奖一等奖(厅局级), 2020年.
7. 李安邦(1/1). CFRP板加固锈蚀钢板疲劳性能及其设计方法研究, 西安建筑科技大学优秀博士学位论文, 2021年.
8. 李安邦(1/2). 锈蚀对钢板表面特性及CFRP板-锈蚀钢板界面黏结性能的影响, 中国科学文献计量评价研究中心高PCSI论文, 2023年.
9. 李安邦(3/11).既有钢筋混凝土结构抗震性能评估与提升关键技术及应用, 陕西省土木建筑学会科技进步奖特等奖(厅局级), 2024年.

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