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陳譽

(福州大學土木工程學院教授)

鎖定
陳譽,男,1978年4月出生,湖北公安人,教授,博士生導師,國家萬人計劃科技創新領軍人才科技部中青年科技創新領軍人才 [1]  ,國務院政府特殊津貼專家,福建省“百人計劃”創新人才,閩江學者特聘教授,福建省引進高層次人才(A類),湖北省有突出貢獻中青年專家,湖北省傑出青年基金獲得者,同濟大學結構工程專業工學博士,同濟大學橋樑工程專業博士後。
社會兼職:科技部評審專家,中國鋼結構協會專家委員,結構抗火專業委員會委員,中國工程建設標準化協會預應力工程專業委員會委員,中國鋼結構協會鋼-混凝土組合結構分會理事,中國鋼結構協會核電鋼結構分會理事,《工業建築》理事,《World Journal of Engineering》Associated Editor,《Journal of Structural Engineering》,《Engineering Structures》、《Composites Part B:Engineering》、《Construction and Building Materials》、《Thin-Walled Structures》、《Journal of Constructional SteelResearch》、《Composite Structures》、《土木工程學報》、《建築結構學報》、《工程力學》、《複合材料學報》等國內外知名期刊審稿人,國家自然科學基金、福建省自然科學基金、浙江省自然科學基金同行評議專家。共培養90餘名研究生,目前指導在校博士後2名,博士研究生5名,碩士研究生22名,其中20名獲得研究生國家獎學金,1名獲得省級優秀學位論文。
中文名
陳譽
民    族
籍    貫
湖北荊州
出生日期
1978年04月
畢業院校
同濟大學
職    業
教師
主要成就
國家萬人計劃科技創新領軍人才
出生地
湖北公安
研究方向
鋼結構,組合結構,複合材料

陳譽人物經歷

師從陳以一副校長和趙憲忠院長,獲同濟大學結構工程專業鋼結構方向博士學位。2014年破格晉升教授和博士生導師,2018年獲得國務院政府特殊津貼專家,2021年獲得國家萬人計劃科技創新領軍人才。
社會兼職:科技部評審專家,結構抗火專業委員會委員,中國鋼結構協會鋼-混凝土組合結構分會理事,《工業建築》理事,中國鋼結構協會專家委員會委員,《World Journal of Engineering》Associated Editor,《Engineering Structures》、《Composites Part B: Engineering》、《Construction and Building Materials》、《Thin-Walled Structures》、《Steel and Composite Structures》、《Journal of Constructional Steel Research》、《Journal of Adhesion Science and Technology》、《Structural Engineering and Mechanics》、《Advances in Mechanical Engineering》、《Applied Ocean Research》、《Advances in Structural Engineering》、《Journal of Central South University》、《土木工程學報》、《建築結構學報》、《工程力學》、《複合材料學報》、《建築科學與工程學報》、《鐵道科學與工程學報》、《浙江工業大學學報》和《土木工程與管理學報》審稿人,廈門市建設工程評標專家,國家自然科學基金、福建省自然科學基金、浙江省自然科學基金同行評議專家。

陳譽研究方向

(1)鋼結構理論及設計
(2)鋼-混凝土組合結構
(3)複合材料結構
(4)鋼結構橋樑理論及設計
(5)結構數值模擬技術研究
(6)結構抗震設計及抗震加固
(7)高層建築結構設計理論

陳譽主講課程

(1)土木工程專業本科生課程:鋼結構基本原理、房屋建築鋼結構設計、混凝土結構基本原理和鋼筋混凝土與砌體結構設計
(2)結構工程和橋樑工程專業碩士研究生課程:鋼-混凝土組合結構、結構可靠度理論及其應用、道路工程災害防治與防護原理
(3)結構工程和橋樑工程專業博士研究生課程:高等鋼結構理論、薄壁型鋼混凝土結構理論

陳譽科研項目

(1)沿海濕熱耦合作用下型鋼混凝土組合柱劣化機理研究:國家自然科學基金面上項目(項目編號: 52078138)。主持(執行中)
(2)拉擠型GFRP管-混凝土-型鋼組合柱受力性能與設計方法研究:國家自然科學基金面上項目(項目編號: 51778066)。主持(已結題)
(3)不鏽鋼管混凝土桁架受力性能與設計方法研究:國家自然科學基金面上項目(項目編號:51478047)。主持(已結題)
(4)彎曲弦杆的鋼管混凝土相貫節點靜動力性能與設計方法研究:國家自然科學基金面上項目(項目編號:51278209)。主持(已結題)
(5)鋼管混凝土桁架節點力學性能與設計方法研究:國家自然科學青年基金項目(項目編號:51008133)。主持(已結題)
(6)考慮冗餘度的組合框架體系面向地震和連續性倒塌綜合設計理論及其產業化:福建省引導性項目(項目編號:2021Y0003)。主持(執行中)
(7)大跨度空間方圓鋼管節點極限承載力與抗震性能研究:湖北省傑出青年基金項目(項目編號: 2017CFA070)。主持(已結題)
(8)大偏心圓鋼管桁架節點受力性能研究:福建省自然科學基金面上項目(項目編號: 2012J01219)。主持(已結題)
(9)方鋼管搭接節點力學性能與設計方法研究:福建省自然科學基金面上項目(項目編號:2010J01299)。主持(已結題)
(10)海洋石油平台方鋼管混凝土節點力學性能與設計方法研究:大連理工大學海岸和近海工程國家重點實驗室基金資助項目(項目編號:LP1005)。主持(已結題)
(11)基於結構整體行為的鋼管混凝土桁架節點非剛性性能:福建省青年人才項目(項目編號:2007F3065)。主持(已結題)
(12)新型近海海洋平台鋼管混凝土節點受力性能及設計理論:大連理工大學海岸和近海工程國家重點實驗室基金資助項目(項目編號:LP0705)。主持(已結題)
(13)裝配式半剛性框架-波紋鋼板剪力牆結構體系的研發及產業化:福州市科技計劃項目(項目編號: 2020-GX-23)。主持(執行中)
(14)東南沿海濕熱耦合作用下型鋼柱劣化機理研究及其關鍵技術:福州市科技計劃項目(項目編號: 2021-Y-083)。主持(執行中)
(15) “數字中國”戰略下智慧建造創新實踐體系研究生培養模式綜合改革研究:福州大學研究生教育教學改革項目。主持(執行中)
(16) 鋼結構基本原理:福州大學2022年本科規劃教材重點項目。主持(執行中)

陳譽個人專著

(1)陳譽,何康(專著).圓鋼管節點靜力性能與應力集中係數研究. 北京:科學出版社,2019
(2)陳譽,何康(專著).異型鋼管節點受力性能與設計方法. 北京:科學出版社,2019

陳譽代表論文

(1) Chen Y, Feng R, Wang J. Behaviour of bird-beaksquare hollow section X-joints under in-plane bending[J]. Thin-Walled Structures, 2015, 86(1):94-107.(SCI, EI) (IF=5.881)(1區)(ESI高被引論文)
(2) Chen Y, Chen XX, Wang CY. Experimental and finite elementanalysis research on cold-formed steel lipped channel beams under web crippling[J].Thin-Walled Structures, 2015, 87(2):41-52. (SCI, EI) (IF=5.881)(1區)
(3) Chen Y, Feng R, Wang J. Behaviour of bird-beaksquare hollow section X-joints under out-of-plane bending[J]. Journal of Constructional Steel Research,2015, 106(3):234-245. (SCI, EI)(IF=4.349)(2區)
(4) Chen XX, Chen Y*, Chen DF. Plate reinforcedsquare hollow section X-Joints subjected to in-plane moment[J]. Journal of Central SouthUniversity, 2015, 22(3):1002-1015.(SCI, EI) (Corresponding author). (IF=2.392)(3區)
(5) Chen Y, Wu Y. Behaviour of squarehollow section brace-H-shaped steel chord T-joints under axial compression[J].Thin-Walled Structures, 2015, 89(4):192-204. (SCI, EI) (IF=5.881)(1區)
(6) Chen Y, Chen XX, Wang CY. Aluminum tubular sectionssubjected to web crippling[J]. Thin-WalledStructures, 2015, 90(5):49-60. (SCI, EI)(IF=5.881) (1區)
(7) Chen Y, Wang J. Axial compression physicaltesting of traditional and bird beak SHS T-Joints[J]. Journal of Central South University, 2015, 22(6):2328-2338. (SCI, EI) (IF=2.392)(3區)
(8) Chen Y, Wang CY. Web crippling behavior of pultruded GFRP rectangular hollowsections[J]. CompositesPart B: Engineering, 2015, 77(8):112-121.(SCI, EI) (IF=11.322)(1區)
(9) Chen Y, Wang CY. Test on pultruded GFRP I-section underweb crippling[J]. Composites Part B: Engineering,2015, 77(8):27-37. (SCI, EI) (IF=11.322)(1區)
(10) Feng R, Chen Y*, Gao SW,Zhang W. Numerical investigation of concrete-filled multi-planar CHS Inverse-Triangulartubular truss[J]. Thin-Walled Structures,2015, 94(9):23-37. (SCI, EI). (Corresponding author) (IF=5.881)(1區)
(11) Chen Y, Feng R, Gao SW. Experimental study of concrete-filledmultiplanar circular hollow section tubular trusses[J]. Thin-Walled Structures, 2015, 94(9):199-213.(SCI, EI) (IF=5.881)(1區)
(12) Chen Y, Feng R, Wang CY. Tests of steel and composite CHS X-joints withcurved chord under axial compression[J]. Engineering Structures, 2015, 99(9):423-438.(SCI, EI) (IF=5.582)(2區)
(13) Chen Y, Feng R, Wang CY. Tests of bare and concrete-filledCHS T-joints with concave chord under axial compression[J]. Construction and Building Materials, 2015, 93(9):144-156.(SCI, EI) (IF=7.693)(1區)
(14) Wang CY, Chen Y*, Chen XX, Chen DF.Experimental and numerical research on out-of-plane flexural property of platesreinforced SHS X-joints[J]. Thin-Walled Structures, 2015,94(9):466-477. (SCI, EI). (Corresponding author) (IF=5.881)(1區)
(15) Yang J, Chen Y*, Hu K. Stress concentrationfactors of negative large eccentricity tubular N-joints under axial compressiveloading in vertical brace[J]. Thin-Walled Structures, 2015,96(11):359-371. (SCI, EI). (Corresponding author) (IF=5.881)(1區)
(16) Feng R, Chen Y*, Wei L, Ruan XF. Behaviourof CHS brace-to-H-shaped chord X-joints under in-plane bending[J]. Journal of ConstructionalSteel Research, 2015, 114:8-19.(SCI, EI) (Corresponding author) (IF=4.349)(2區)
(17) Chen Y, Wu Y, Ruan XF, Feng R. Tests of SHSbrace-H-shaped chord X-joints under in-plane bending[J]. Thin-Walled Structures, 2015,97(12):171-185. (SCI, EI) (IF=5.881)(1區)
(18) Chen Y, Wang J. Numerical study and designequations of square and diamond bird-beak SHS T-joints under axial compression[J]. Thin-Walled Structures, 2015,97(12):215-224. (SCI, EI) (IF=5.881)(1區)
(19) Chen Y, Chen XX, Wang CY. Web crippling of galvanizedsteel tube strengthened by CFRP sheets[J]. Composites Part B: Engineering, 2016, 84(1):200-210.(SCI, EI) (IF=11.322)(1區)
(20) Chen Y, Feng R, Wei L. Design of CHSbrace-to-H-shaped chord T-joints under axial compression[J]. Thin-Walled Structures, 2016,98(1):274-284. (SCI, EI) (IF=5.881)(1區)
(21) Chen Y, Feng R, Xiong LL. Experimental andnumerical investigations on steel–concrete–PVC SHS joints under axialcompression[J]. Construction and Building Materials, 2016, 102(1):654-670. (SCI,EI) (IF=7.693)(1區)
(22) Chen Y, Chen XX, Wang CY. Experimental and finiteelement analysis research on I-Beam under web crippling[J]. Materials and Structures,2016, 49(1-2): 421-437. (SCI, EI) (IF=4.285)(3區)
(23) Chen Y, Chen XX, Wang CY. Tests and behaviorof hot-rolled channel steel sections subjected to web crippling[J]. Journal of Constructional SteelResearch, 2016, 117(2): 101-114. (SCI, EI) (IF=4.349)(2區)
(24) Feng R, Chen Y*, Wang CY. Tests of CHS T-jointswith convex chord under axial compression[J]. Journal of Constructional SteelResearch, 2016, 117(2): 139-151. (SCI, EI). (Corresponding author) (IF=4.349)(2區)
(25) Chen Y, Chen DF. Ultimate capacities formulaeof collar and doubler plates reinforced SHS X-joints under in-plane bending[J]. Thin-Walled Structures, 2016,99(2):21-34. (SCI, EI). (IF=5.881)(1區)
(26) Chen Y, Yang J, Hu K. Parametric study andformulae of SCFs for positive large eccentricity CHS N-joints[J]. Journal of Constructional SteelResearch, 2016, 120(4):117-131. (SCI, EI). (IF=4.349) (2區)
(27) Chen Y, Hu K, Yang J. Investigation on SCFsof concrete-filled circular chord and square braces K-joints under balancedaxial loading[J]. Steel and Composite Structures,2016, 21(6):1227-1249. (SCI, EI). (IF=6.144)(2區)
(28) Chen Y, Feng R, Ruan XF. Behaviour ofsteel-concrete-steel SHS X-joints under axial compression[J]. Journal of Constructional SteelResearch, 2016, 122(7):469-487. (SCI, EI). (IF=4.349) (2區)
(29) Chen Y, Feng R, Xiong LL. Experimental andnumerical investigations on double-skin CHS tubular X-joints under axial compression[J]. Thin-Walled Structures, 2016,106(9):268-283. (SCI, EI). (IF=5.881)(1區)
(30) Huang SQ, Chen Y*, Wang CY, Du GF. Behaviorof galvanized steel tube subjected to web crippling[J]. Journal of Central SouthUniversity, 2016, 23(10):2705-2719. (SCI, EI) (Corresponding author). (IF=2.392)(3區)
(31) Feng R, Chen Y*, Chen DF. Experimental andnumerical investigations on collar plate and doubler plate reinforced SHS T-jointsunder axial compression[J]. Thin-Walled Structures, 2017, 110(1): 75-87. (SCI, EI) (Correspondingauthor). (IF=5.881)(1區)
(32) Chen Y, Feng R, Wang LP. Flexural behaviour ofconcrete-filled stainless steel SHS and RHS tubes[J]. Engineering Structures, 2017, 134(3):159-171. (SCI, EI) (IF=5.582)(2區)
(33) Chen Y, Ran F, Shao YB, Zhang XT. Bond-slipbehaviour of concrete-filled stainless steel circular hollow section tubes[J]. Journal of Constructional SteelResearch, 2017, 130(3):248-263. (SCI, EI). (IF=4.349)(2區)
(34) Feng R, Chen Y*, Gong WZ. Flexural behaviour of concrete-filledaluminium alloy thin-walled SHS and RHS tubes[J]. Engineering Structures, 2017, 137(4):33-49. (SCI, EI) (Corresponding author) (IF=5.582)(2區)
(35) Chen Y, Wan J, Hu K, Yang J, Chen XX. Stressconcentration factors of circular chord and square braces K-joints under axialloading[J]. Thin-Walled Structures, 2017(4), 113:287-298. (SCI, EI). (IF=5.881)(1區)
(36) Chen Y, Feng R, Xu J. Flexural behaviour of CFRPstrengthened concrete-filled aluminium alloy CHS tubes[J]. Construction and Building Materials,2017, 142(7):295-319. (SCI, EI). (IF=7.693)(1區)
(37) Zhou WB, Chen Y*, Wang K, Han SH, Galarza FP. Experimental research on circular concrete filledstainless steel tubular truss[J]. Thin-Walled Structures, 2017, 117(8):224-238.(SCI, EI) (Corresponding author). (IF=5.881)(1區)
(38) Feng R, Chen Y*, Chen T. Flexural behaviour ofconcrete-filled CHS X-joints with curved chord under out-of-plane bending[J]. Engineering Structures, 2017, 145(8):254-272. (SCI, EI) (Corresponding author).(IF=5.582)(2區)
(39) Wan J, Chen Y*, Wang K, Han SH. Residual strength of CHScolumns after lateral impact[J]. Thin-Walled Structures,2017, 118(9):23-36. (SCI, EI) (Corresponding author). (IF=5.881)(1區)
(40) Han SH, Chen Y*, Wentao Xie. Behaviour of square hollowsteel tubular (SHST) stub columns after elevated temperature[J]. Journal ofConstructional Steel Research, 2017,136(9):177-192. (SCI, EI) (Corresponding author). (IF=4.349)(2區)
(41) Chen Y, Wan J, Wang K. Residual axial bearingcapacity of square steel tubes after lateral impact[J]. Journal of Constructional Steel Research, 2017, 137(10):325-341.(SCI, EI) (IF=4.349)(2區)
(42) Chen Y, Feng R, Fu LQ. Investigation of grouted stainlesssteel SHS tubular X- and T-joints subjected to axial compression[J]. Engineering Structures, 2017, 150(11):318-333. (SCI, EI) (IF=5.582)(2區)
(43) Zhang WX, Chen Y*. Tests on GFRP pultruded profileswith channel section subjected to web crippling[J]. Applied Composite Materials,2017, 24(4):849-862. (SCI, EI) (Correspondingauthor) (IF=2.368)(4區)
(44) Xie WT, Chen Y*, Han SH, ZhouWB, He K. Research on Isteel reinforced concrete-filled GFRP tubular short columns[J]. Thin-WalledStructures, 2017, 120(11):282-296. (SCI, EI) (Corresponding author). (IF=5.881)(1區)
(45) Chen Y, Kai Wang, Feng R, Kang He, Wang LP. Flexuralbehaviour of concrete-filled stainless steel CHS subjected to static loading[J]. Journal of Constructional SteelResearch, 2017, 139(12):30-43. (SCI, EI) (IF=4.349)(2區)
(46) Chen Y, Feng R, He K, Chen XX, Huang JF.Flexural behaviour of concrete-filled stainless steel SHS and RHS tubesstrengthened by CFRP[J]. Thin-Walled Structures, 2018, 122(1):208-229. (SCI, EI) . (IF=5.881)(1區)
(47) He K, Chen Y*, Wan J. Web crippling behaviorof grouted galvanized rectangular steel tube[J]. Thin-Walled Structures, 2018,122(1):300-313. (SCI, EI) (Corresponding author). (IF=5.881)(1區)
(48) Chen Y, Feng R. Tests of concrete-filled circularhollow section X-joints with curved chord under in-plane bending[J]. Advances in Structural Engineering, 2017, 20(12):1948-1961. (SCI,EI). (IF=2.438)(4區)
(49) Feng R, Chen Y*, Wei JG, Huang JY, Huang JF, He K. Experimentaland numerical investigations on flexural behaviour of CFRP reinforcedconcrete-filled stainless steel CHS tubes[J]. Engineering Structures, 2018, 156(2):305-321. (SCI, EI) (Corresponding author) (IF=5.582)(2區)
(50) Wang K, Chen Y*, Wan J, Han SH, Liao LC. Compressive behaviorof post-heated circular CFST short columns externally strengthened with CFRPsheets[J]. Journalof Adhesion Science and Technology, 2018, 32(8):833-853.(SCI, EI) (Corresponding author) (IF=2.431)(4區)
(51) Feng R, Chen Y*, He K, Wei JG, Chen BC, ZhangXT. Push-out tests of concrete-filled stainless steel SHS tubes[J]. Journal of Constructional SteelResearch, 2018, 145(6):58-69. (SCI, EI) (Corresponding author) (IF=4.349)(2區)
(52) Chen Y, Xie WT, Han SH, Wang K. Investigation onmechanical behavior of I-section steel short columns after elevated temperature[J].Fire Technology, 2018, 54(2):503-529. (SCI,EI) (IF=3.605)(4區)
(53) Chen Y, Wang K, He Kang, Wei JG, Wan J. CompressiveBehavior of CFRP-confined post heated square CFST stub columns[J]. Thin-Walled Structures, 2018,127(6):434-445. (SCI, EI). (IF=5.881)(1區)
(54) Zhang XY, Chen Y*, Wan J, Wang K, He K, ChenXX, Wei JG, Jiang GP. Tests on residual ultimate bearing capacity of squareCFST columns after impact[J]. Journal of Constructional Steel Research, 2018, 147(8):27-42. (SCI,EI) (Corresponding author) (IF=4.349)(2區)
(55) Chen Y, He K, Han SH, Wei JG. Experimentalinvestigation of square concrete filled stainless steel tubular stub columnsafter exposure to elevated temperatures[J]. Thin-Walled Structures, 2018, 130(9):12-32. (SCI, EI). (IF=5.881)(1區)
(56) Feng R, Zhu W, Wan HY, Chen AY, Chen Y*. Tests ofperforated aluminium alloy SHSs and RHSs under axial compression[J]. Thin-WalledStructures, 2018, 130(9):194-212. (SCI,EI) (Corresponding author) (IF=5.881)(1區)
(57) Zhang JC, Huang YS, Chen Y*, Du GF, Zhou LJ.Numerical and experimental study on seismic behavior of concrete-filledT-section steel tubular columns and steel beam planar frames[J]. Journal of Central SouthUniversity, 2018, 25(7):1774-1785. (SCI, EI) (Corresponding author) (IF=2.392)(3區)
(58) Chen Y, Wan J, He K. Experimentalinvestigation on axial compressive strength of lateral impact damaged shortsteel columns repaired with CFRP sheets[J]. Thin-Walled Structures,2018, 131(10):531-546. (SCI, EI) (Corresponding author) (IF=5.881)(1區)
(59) Chen Y, Feng R. Behaviour concrete-filleddouble-skin circular hollow section cross joints under axial compression[J]. International Journal of SteelStructures, 2018, 18(3):750-772. (SCI, EI) (Corresponding author) (IF=1.541)(4區)
(60) Chen Y, Feng R, Gong WZ. Flexural behavior ofconcrete-filled aluminum alloy circular hollow
section tubes[J]. Constructionand Building Materials, 2018, 165(3):173-186. (SCI, EI). (IF=7.693)(1區)
(61) Feng R, Chen Y, Wei JG, He K, Fu LQ. Behaviourof grouted stainless steel tubular X-joints with CHS chord under axialcompression[J]. Thin-Walled Structures, 2018, 124(3):323-342. (SCI, EI) (Correspondingauthor) (IF=5.881)(1區)
(62) Zhao BD, Chen Y, Liu CQ, Wu HD, Wang T, Wei XD. An axialsemi-rigid connection model for cross-type transverse branch plateto-CHS joints[J].Engineering Structures, 2019, 181(2):413-426. (SCI, EI) (IF=5.582)(2區)
(63) Chen Y, He K, Zhang WX, B.C. Chen BC,Wei JG. Experimental and numerical investigations onskewed plate-to-SHS X-joints under compression[J]. Advanced SteelConstruction, 2018, 14(4):539-561. (SCI,EI) (IF=1.313)(4區)
(64) Chen Y, He K, Han SH, Yuan Y. Experimentalstudy on three-layer tempered glass panel on quadrilateral simple bearing underlocal uniformly distributed load[J]. Thin-Walled Structures, 2019, 139(6):294-309.(SCI, EI) (IF=5.881)(1區)
(65) Pi T, Chen Y*, He K, Han SH, Wan J. Study oncircular CFST stub columns with double inner square steel tubes[J]. Thin-Walled Structures, 2019,140(7):195-208. (SCI, EI) (Corresponding author) (IF=5.881)(1區)
(66) He K, Chen Y*. Experimental evaluation ofbuilt-in channel steel concrete-filled GFRP tubular stub columns under axialcompression[J]. Composite Structures, 2019, 219(7):51-68. (SCI, EI) (Correspondingauthor) (IF=6.603)(1區)
(67) Zhang XY, Chen Y*, Shen XS, Zhu Y. Behavior of circularCFST columns subjected to different lateral impact energy[J]. Applied Sciences-Basel, 2019, 9(6):1134. (SCI, EI) (Correspondingauthor) (IF=2.838)(3區)
(68) He K, Chen Y*, Han SH. Experimentalinvestigation of square stainless steel tubular stub columns after elevatedtemperatures[J]. Journal of Constructional Steel Research, 2019, 159(8):397-414. (SCI,EI) (Corresponding author) (IF=4.349)(2區)
(69) He K, Chen Y *. Experimental investigationon stability of circular steel tubular stub columns at elevated temperatures underaxial compression[J]. International Journal of Structural Stability and Dynamics, 2019, 19(6):1950063. (SCI, EI) (Correspondingauthor) (IF=2.957)(3區)
(70) He K, Chen Y*, Xie WT. Test on axialcompression performance of nano-silica concrete-filled angle steel reinforcedGFRP tubular column[J]. Nanotechnology Reviews, 2019,8(1):523-538. (SCI, EI) (Corresponding author) (IF=7.848)(2區)
(71) Lin QJ, Chen Y*, Liu C. Mechanical properties of circular concrete filled stainless steel tube
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(72) Zhuang CL, Chen Y*. Effect of Nano-SiO2 on concrete properties: a review[J]. Nanotechnology Reviews, 2019, 8(1):562-572. (SCI, EI) (Correspondingauthor) (IF=7.848)(2區)
(73) Guo Z, Chen Y*. Experimental study on photocatalyticdegradation efficiency of mixed crystal nano-TiO2 concrete[J]. Nanotechnology Reviews, 2019, 8(1):590-612. (SCI, EI) (Correspondingauthor) (IF=7.848)(2區)
(74) Zhu QX, Chen Y*. Static behavior of X-jointswith SHS chord and CHS braces[J]. Journal of Constructional Steel Research,2019, 162(11):1-17. (SCI, EI) (Corresponding author) (IF=4.349)(2區)
(75) Wu LS, L ZH, Zhuang CL, Hu RH, Chen Y*. MechanicalProperties of Nano SiO2 and Carbon Fiber Reinforced Concrete after Exposure to HighTemperatures[J]. Materials, 2019, 12(3773):1-15. (SCI,EI) (Corresponding author) (IF=3.748)(3區)
(76) Ye MY, Pan JH, Guo Z, Liu XY, Chen Y*. Effect of ballmilling process on the photocatalytic performance of CdS/TiO2 composite[J]. NanotechnologyReviews, 2020, 9:558–567. (SCI, EI) (Corresponding author) (IF=7.848)(2區)
(77) He K, Chen Y*, Mei MJ. Study on influencing factors ofphotocatalytic performance of CdS/TiO2 nanocomposite concrete[J]. NanotechnologyReviews, 2020, 9:1160–1169.(SCI, EI) (Corresponding author) (IF=7.848)(2區)
(78) He K, Chen Y*. Experimental investigationof fire-exposed steel tubular stub columns wrapped with CFRP sheets[J]. Composite Structures, 2020, 253:112807.(SCI, EI) (Corresponding author) (IF=6.603)(1區)
(79) Qiao HY, Chen Y*, Wang JP, Chen CW. Experimentalstudy on beam-to-column connections with reduced beam section againstprogressive collapse[J]. Journal of ConstructionalSteel Research, 2020, 175:106358. (SCI, EI) (Corresponding author)(IF=4.349)(2區)
(80) Chen XX, Chen Y*. Experimental Study onDamage Identification of Nano-SiO2 Concrete Filled GFRP Tube Column UsingPiezoceramic Transducers[J]. Sensors, 2020, 20:2883.(SCI, EI) (Corresponding author) (IF=3.847)(3區)
(81) Qiao HY, Luo CS, Wei JP, Chen Y*. Progressive Collapse Analysisfor Steel-Braced Frames Considering Vierendeel Action[J]. Journal of Performanceof Constructed Facilities, 2020, 34(4):04020069. (SCI,EI) (Corresponding author) (IF=2.372)(4區)
(82) Chen CW, Qiao HY, Wang JP, ChenY*. Progressive collapse behavior of joints in steel moment framesinvolving reduced beam section[J]. EngineeringStructures, 2020, 225:111297. (SCI, EI) (Corresponding author) (IF=5.582)(2區)
(83) He K, Chen Y*, Yan Y. Axialmechanical properties of concrete-filled GFRP tubular hollow composite columns[J]. CompositeStructures, 2020, 243(1):1-15. (SCI, EI) (Correspondingauthor) (IF=6.603)(1區)
(84) Guo Z, Chen Y*, Wang Y, Jiang MY. Experimental study onsquare concrete-filled double skin steel tubular short columns[J]. Thin-WalledStructures, 2020, 156:107017. (SCI, EI) (Corresponding author) (IF=5.881)(1區)
(85) Guo Z, Chen Y*. Experimental study on compressivebehavior of concrete-filled GFRP tubular stub columns after being subjected toacid corrosion[J]. Composite Structures, 2020, 204:110048 (SCI, EI)(Corresponding author) (IF=6.603)(1區)
(86) Yang X, Tang C, Chen Y*, Qiao TY. Compressive behaviorof steel-reinforced concrete-filled square steel tubular stub columns afterexposure to elevated temperature[J]. Engineering Structures, 2020, 204:110048.(SCI, EI) (Corresponding author) (IF=4.471)(2區)
(87) He K, Zhang XY, Chen Y*. Research on vertical bearingcapacity of circular concrete filled winding GFRP tubular columns after lateralimpact[J]. Composite Structures, 2020, 252:112753. (SCI, EI)(Corresponding author) (IF=6.603)(1區)
(88) Guo Z, Wang J, Chen Y*. Research on mechanical behaviorof three-layer toughened sandwich glass with trilateral simple support[J]. CompositeStructures, 2020, 252:112738. (SCI, EI) (Corresponding author) (IF=6.603)(1區)
(89) Guo Z, Chen Y*. Investigation on flexural behavior of double-layertoughened sandwich glass with trilateral simple support[J]. CompositeStructures, 2020, 252:112783. (SCI, EI) (Corresponding author) (IF=6.603)(1區)
(90) He K, Chen Y*. Experimental study on mechanicalproperties of sandwich tempered glass unidirectional composite laminate[J]. CompositeStructures, 2020, 255:112980. (SCI, EI) (Corresponding author) (IF=6.603)(1區)
(91) He K, Chen Y*, and Wang J. Axial Mechanical Propertiesof Timber Columns Subjected to Freeze-Thaw Cycles[J]. Journal of Renewable Materials,2020, 8(8):969-992. (SCI, EI) (Corresponding author)(IF=2.115)(4區)
(92) He K, Chen Y*, and Wang J. Axial mechanical propertiesof small-diameter round timber short columns after exposure to elevatedtemperatures[J]. Wood Research, 2020, 65 (6):925-936. (Corresponding author)(IF=1.254)(4區)
(93) Zhu Y, Chen Y*, Feng R. Flexural behavior of concrete-filledSHS and RHS aluminum alloy tubes strengthened with CFRP[J]. CompositeStructures 2020, 238(1):1-23. (SCI, EI) (Correspondingauthor) (IF=6.603)(1區)
(94) Guo Z, Zhu QX, Wu WD, Chen Y*. Research onbond–slip performance between pultruded glass fiber-reinforced polymer tube andnano-CaCO3 concrete[J]. Nanotechnology Reviews, 2020, 9:1-13.(SCI, EI) (Correspondingauthor) (IF=7.848)(3區)
(95) Guo Z , Zhu Y , Chen Y*, Zhao Y .Test on residualultimate strength of pultruded concrete-filled GFRP tubular short columns afterlateral impact[J]. Composite Structures, 2021, 260:113520.(SCI, EI)(Corresponding author) (IF=6.603)(1區)
(96) Ye MY, Guo Z, Chen CW, Chen Y*. Shaking tabletest study on seismic performance of UHPC rectangular hollow bridge pier[J]. CompositeStructures, 2021, 275:114435. (SCI, EI) (Corresponding author) (IF=6.603)(1區)
(97) Guo Z, Yang J, Li ZH, Chen Y*. Experimentalinvestigation on hysteretic behavior of circular hollow steel tubular columnsafter lateral impacts[J]. Engineering Structures, 2021, 232:111861.(SCI, EI) (Corresponding author) (IF=5.582)(2區)
(98) Zhang XY, Lin X, Chen Y*. Study on mechanicalproperties of steel fiber reinforced nano-concrete (SFRNC) after elevated temperature[J].Composite Structures, 2021, 268:113941. (SCI, EI) (Corresponding author)(IF=6.603)(1區)
(99) Guo Z, Zhuang CL, Li ZH, Chen Y*. Mechanicalproperties of carbon fiber reinforced concrete (CFRC) after exposure to hightemperatures[J]. Composite Structures, 2021, 256:113072. (SCI, EI) (Correspondingauthor) (IF=6.603)
(100) Guo Z, Li ZH, Chen Y*. Experimental study onmechanical behavior of double-layer toughened sandwich glass with two-side simplesupport[J]. Thin-Walled Structures, 2021, 158:107154. (SCI, EI). (Correspondingauthor) (IF=5.881)(1區)
(101) Qiao HY, Pan JH, Chen Y∗,Pan JK. Behaviour of stub columns with initial crack defects under axial compression[J].Thin-Walled Structures, 2021, 163:107736. (SCI, EI). (Corresponding author)(IF=5.881)(1區)
(102) Lin ST, Qiao HY, Wang JP, Shi JH, Chen Y*. Anti-collapseperformance of steel frames with RWS connections under a column removalscenario[J]. Engineering Structures, 2021, 227 :111495. (SCI, EI) (Correspondingauthor) (IF=5.582)(2區)
(103) Guo Z, Li CK, Zhu QX, Chen Y*. Behavior ofpartially concrete-filled X-joints with CHS braces and SHS chord under axialcompression[J]. Journal of Constructional Steel Research, 2021 184:106773(SCI,EI) (Corresponding author) (IF=4.349)(2區)
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(105) Kong WY, Huang YF, Guo Z, Zhang XY, Chen Y*. Experimentalstudy on square hollow stainless steel tube trusses with three joint types and differentbrace widths under vertical loads[J]. Reviews on Advanced Materials Science,2021, 60:519–540. (SCI, EI) (Corresponding author) (IF=5.028)(4區)
(106) Lin ST, Wang JP, Qiao HY, Chen Y*, Zhou Y.Performance of Steel Frames with Different Web Bolt Number and Arrangements ina Column-Loss Scenario[J]. Journal of Structural Engineering, 2021, 147(10):04021150.(Corresponding author) (IF=3.858)(3區)
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(108) Zhang XY, Chen Y*, Ye MY. Research on square concretefilled GFRP tube columns strengthened with CFRP sheet[J]. CompositeStructures, 2021, 275:114407. (SCI, EI) (Corresponding author) (IF=6.603)(1區)
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(110) Lin Q, Xue XL, Guo Z, Zhao Y, Chen Y*. Test onshear behavior of less-tightened high-strength bolted connections[J]. Structures,2021, 34:3622–3639. (SCI, EI) (Corresponding author) (IF=4.010)(3區)
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(113) Zhang XY, Xu ZJ, Zhu Y, Kong WY, Lin X, Zhang C,Chen Y*. Behavior of square pultruded GFRP tube filled with seawater and seasand concrete beam[J]. Composite Structures, 2022, 284:115183. (SCI, EI)(Corresponding author) (IF=6.603)(1區)
(114) Kong WY, Lin QJ, ZhangXY, Chen Y*. Test on axial compression performance of perforated weldedH-shaped steel stub column[J]. Journal of Constructional Steel Research,2022, 191:107191. (SCI, EI) (Corresponding author) (IF=4.349)(2區)
(115) Luo CS, Wang FX, Chen HY, Qi A, Chen Y*. Studyon the hysteretic behavior of recycled aggregate concrete-filled steel tubecolumns containing ferronickel slag[J]. Journal of Building Engineering,2022, 46:103695. (SCI, EI). (Corresponding author) (IF=7.144)(2區)
(116) Zhang XY, Lin X, Sun LH, Lei YC, Chen JC, Lin HZ,Chen Y*. Double shear tests of high-strength steelbolted connections with reduced tightening[J]. Journal of BuildingEngineering, 2022, 46:103842. (SCI, EI) (Corresponding author) (IF=7.144)(2區)
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(118) Chen YY, Chen Y*. Residual shearing strength offillet weld connections after exposure to elevated temperature[J]. Journalof Constructional Steel Research, 2022, 188:107049. (SCI, EI) (Correspondingauthor) (IF=4.349)(2區)
(119) Qiao HY, Guo ZZ, Chen Y*. Experimentalinvestigation of a substructure in a frame with castellated steel beams in caseof a column loss[J]. Engineering Structures, 2022, 255:113926. (SCI, EI)(Corresponding author) (IF=5.582)(2區)
(120) Qiao HY, Xie XY, Chen Y*. Improvement of progressivecollapse resistance for a steel frame system with beam–web opening[J]. EngineeringStructures, 2022, 256:113995. (SCI, EI) (Corresponding author) (IF=5.582)(2區)
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(122) Guo Z, Xu ZJ, Lin HZ, Zheng ZY, Su HJ, Chen JC, ChenY*. Experimental tests of post-fire beam-column assemblies with WUF-Bconnections against progressive collapse[J]. Journal of Constructional SteelResearch, 2022, 192:107249. (SCI, EI) (Corresponding author) (IF=4.349)(2區)
(123) Zhang XY, Cai SH, Wang ZH, Qiao HY, Lin GX, Wu XL,Chen Y*. Research on mechanical properties of ultra-high performance fiberreinforced cement-based composite after elevated temperature [J]. CompositeStructures, 2022, 291:115584. (SCI, EI) (Corresponding author) (IF=6.603)(1區)
(124)Guo Z, Li ZH, Xing ZQ, Chen Y*, Zheng ZY, Lin GX. Numerical analyses ofpost-fire beam-column assemblies with WUF-B connections against progressivecollapse [J]. Engineering Failure Analysis, 2022, 140:106502. (SCI, EI)(Corresponding author) (IF=3.634)(2區)
(125) Luo CS, Wang FX, Chen HY, Chen LB, Fu CJ, Chen Y*,Liao QL. Castellatedsteel beams under impact load[J]. Journal of Constructional Steel Research, 2022, 196:107394.(SCI, EI) (Corresponding author) (IF=4.349)(2區)
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(127) Guo Z, Xing ZQ, Zhang H, Zhang HW, Chen L, Chen Y*,Chen CW, Zheng JH. Anti-collapse performance assessment of steel beam-columnsubstructures with all-welded connections after exposure to fire[J]. Journalof Constructional Steel Research, 2022, 197:107465. (SCI, EI)(Corresponding author) (IF=4.349)(2區)
(128) Wu ZQ, Xu ZJ, Qiao HY,Chen Y*, Chen L, Chen WY. Study on anti-progressive collapse performance ofassembled steel frame joints with Z-type cantilever beam splices [J]. Journalof Constructional Steel Research, 2022, 199:107593. (SCI, EI)(Corresponding author) (IF=4.349)(2區)
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陳譽發明專利

(1) 一種混凝土預製箱梁快速起吊吊具(201710520176.3)
陳譽 何康
(2) 一種正交異性板U肋內部除鏽防腐裝置(201710808632.4)
陳譽 王力丹 張文學 李雲開 賈建興 張紅
(3) 混凝土模板側壓力的折減係數測量裝置及測量方法(201710751957.3)
陳譽 李雲開 張文學 王力丹 賈建興 張紅
(4) 樹狀柱的偏心支撐結構(201810541702.9)
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(5) 一種再生混凝土組合柱及其製備方法(201810459393.0)
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(10) 一種組合路面板結構(202010781944.2)
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(11) 一種鋼板剪力牆(202010756017.5)
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(12) 一種鋼管混凝土柱(202010910164.3)
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(13) 一種新型減震耗能器裝置(202010910239.8)
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(14) 一種用於橋樑頂推的臨時墩(202010911868.2)
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(15) 一種帶側向支撐的開孔軟鋼阻尼器(2021010565954.7)陳譽 郭毅 樂志誠 蔣署節

陳譽獲獎情況

(1)2021年第六批國家萬人計劃科技創新領軍人才
(2)2020年科技部中青年科技創新領軍人才
(3)2018年國務院政府特殊津貼專家
(4)2022年度“盧嘉錫優秀導師獎”
(5)2022年度“廈航獎教金”
(6)2022年第三批全國黨建工作樣板支部:福州大學土木工程學院青年馬克思主義者培養班黨支部(副書記)
(7)2021年福建省高校先進基層黨組織:福州大學土木工程學院青年馬克思主義者培養班黨支部(副書記)
(8)2021年泉州市高層次人才港灣計劃(第一層次)
(9)2020年度福建省科技進步二等獎:極端作用下大型複雜鋼管結構體系性能評估和提升技術及工程應用,排名第一
(10)2020年福建省引進高層次人才(A類)
(11)2020年福建省第七批引才“百人計劃”創新人才
(12)2019年度福建省科技進步一等獎:大跨度空間新型管桁架及複雜節點設計理論與應用研究,排名第一
(13)2018年度福建省科技進步一等獎:多肢組合結構設計理論及產業化關鍵技術,排名第四
(14)2017年“閩江學者獎勵計劃”特聘教授
(15)2017年度湖北省傑出青年基金項目獲得者
(16)2016年度湖北省有突出貢獻中青年專家
(17)2014年度福建省高校“新世紀優秀人才支持計劃”
(18)2014年度湖北省科技進步二等獎:高層建築非常規鋼-混凝土組合結構關鍵技術與應用,排名第七
(19)2013年福建省高校“傑出青年科研人才培育計劃”

陳譽學術會議

(1)2006年8月出席由加拿大University of Toronto(多倫多大學)主辦的在convention center in quebec city(位於魁北克城的會議中心)舉行的“11 INTERNATIONAL SYMPOSIUM and IIW INTERNATIONAL CONFERENCE on TUBULAR STRUCTURES”國際學術研討會。發表交流了“Experimental study on overlapped CHS K-joints with hidden seam unwelded”的論文。
(2)2007年7月出席由英國Oxford University(牛津大學)主辦的在St Catherine's College (聖.凱瑟琳學院)舉行的“6 INTERNATIONAL CONFERENCE on STEEL and ALUMINIUM STRUCTURES”國際學術研討會。發表交流了“Experimental and FEA research on hysteretic property of overlapped CHS K-joints”的論文。
(3)2015年7月在第23屆國際組合結構工程會議(ICCE-23)上受邀擔任鋼-混凝土組合結構分會主席並做分會報告。
(4)2017年6月在第一屆土木工程贛江論壇做“鋼管短柱衝擊後力學性能的試驗研究”特邀報告。
(5)2017年11月在鋼-混凝土組合結構分會第十六次學術會議做“不鏽鋼管混凝土桁架受力性能試驗研究”分會報告。
(6)2018年4月在第二屆土木工程贛江論壇做“CFRP布加固高温後鋼管混凝土短柱軸壓力學性能試驗研究”特邀報告。
(7)2018年7月在第十八屆全國現代結構工程學術研討會做特邀報告並獲得優秀中青年論文獎。
(8)2018年8月在第九屆海峽兩岸高校師生土木工程監測與控制研討會做學術報告。
(9)2018年8月在第六屆“土木工程結構試驗與檢測技術暨結構實驗教學”研討會做大會報告
(10)2018年8月在第十六屆鋼結構穩定疲勞學術交流會做大會報告,研究生張曉勇獲得優秀論文獎。
參考資料