山東工商學(xué)院研究生導(dǎo)師介紹:李貴炳

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山東工商學(xué)院研究生導(dǎo)師介紹:李貴炳

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山東工商學(xué)院研究生導(dǎo)師介紹:李貴炳 正文

姓名 李貴炳 性別  
出生年月 1964.12 職稱/職位 教授
辦公電話 13963894399 郵箱地址 liguibing@zju.edn.com
學(xué)校名稱 山東工商學(xué)院 所在院系 管理科學(xué)與工程
研究方向 FRP增強材料,F(xiàn)RP增強混凝土結(jié)構(gòu),土木工程安全
通訊地址 山東省煙臺市萊山區(qū)濱海中路191號
個人簡介:教授,博士。1987年畢業(yè)于山東科技大學(xué)采礦工程系,獲得采礦工程學(xué)士學(xué)位;2004年、2007年畢業(yè)于浙江大學(xué)建工學(xué)院,分別獲得土木工程碩士、博士學(xué)位。
科研項目:
目前主持項目:
1)山東省自然科學(xué)基金,混凝土結(jié)構(gòu)增強用CFRP柔索研制及其力學(xué)性能(ZR2017MEE019),2017-2020;
已完成和參與項目:
1)住房與城鄉(xiāng)建設(shè)部,ANSYS在扣件式鋼管高支模體系穩(wěn)定承載力分析中的應(yīng)用研究(2009-K2-39),主持,完成;
2)國家安全生產(chǎn)監(jiān)督總局,物探技術(shù)在礦井瓦斯及水害預(yù)警預(yù)報中的應(yīng)用研究(08-123),2008,主持,完成;
3)教育部留學(xué)回國人員基金,纖維片材加固預(yù)載鋼筋混凝土梁抗彎性能試驗研究,2001;參與,完成;
4)上海市高等學(xué)校科學(xué)技術(shù)發(fā)展基金,梁柱節(jié)點處梁的抗彎加固試驗研究(03HK03),2004;
5)浙江省交通廳,既有橋梁鋼筋混凝土空/實心矩形板梁加固技術(shù)研究(2004H09),2004;
6)浙江省交通廳,寧海越溪橋結(jié)構(gòu)加固與耐久性失效修復(fù)技術(shù)研究,2006;
7)浙江省交通廳,碳纖維筋在公路鋼筋混凝土橋梁中的應(yīng)用研究(2005H06),2007;
8)國家863計劃項目,基于時變可靠度的重大混凝土橋梁全壽命維修優(yōu)化決策技術(shù)(2007AA04Z437),2008。
學(xué)術(shù)論文:
主要期刊論文
1)李貴炳,張愛暉,金偉良,持載下外貼CFRP加固RC梁抗彎性能研究,浙江大學(xué)學(xué)報(工學(xué)版),2005, V39(1),73-78;(EI)
2)李貴炳,張愛暉,金偉良,RC梁加固時的既有荷載對其抗彎性能的影響,土木工程學(xué)報,2006, V39(1), 13-20;(EI)
3)張愛暉,李貴炳,金偉良,預(yù)載水平及剪/彎承載力對剝離破壞的影響,建筑結(jié)構(gòu)學(xué)報,2007;(EI)
4)Zhang AH, Jin WL, Li GB. Behavior of Preloaded RC Beams Strengthened with CFRP Laminates, Journal of Zhejiang University, SCIENCE A, 2006, V7(3), 436-444;(SCI)
5)Guibing Li, Aihui Zhang, Yugang Guo. Effect of Preload Level on Flexural Load-carrying Capacity of RC Beams Strengthened by Externally Bonded FRP Sheets. Open Civil Engineering Journal, 2015, Vol.9, pp.426-434, (EI);
6)Guibing Li, Aihui Zhang, and Jin Weiliang. Effect of shear resistance on flexural debonding load-carrying capacity of CFRP-strengthened RC beams. Polymers, 2014, Vol.6(5), 1366-1380, (SCI);
7)Guibing Li, Aihui Zhang, and Yugang Guo. Debonding-Related Strain Limits for Externally Bonded FRP Sheets in Flexurally Strengthened Reinforced Concrete Beams. Open Civil Engineering Journal, 2013, Vol. 7, pp. 58-67; (EI)
8)Li G.B., Guo Y.G., Sun X.Y. Investigation on flexural performance of RC beams flexurally strengthened by side-bonded CFRP laminates. Open Civil Engineering Journal, 2012, Vol. 6, pp. 26-32; (EI)
主要會議論文
1)Li GB, Zhang AH, Jin WL. Predicting deflection of retrofitted reinforced concrete beams, 9thInternational Symposium on Structural Engineering for Young Experts, 2006, VOL.1: 858-864;(ISTP)
2)Li Guibing. Experimental studay on debonding mechanism in FRP-strengthened Rineforceed Concrete beams, the Second International Conference on Structural Condition Assessment, Monitoring and Improvement (SCAMI-2),2007;(ISTP)
3)Li Guibing. Effect of Shear-to-flexural strength ratio on debonding failure in CFRP-strengthened reinforced concrete beams, the Second International Conference on Structural Condition Assessment, Monitoring and Improvement (SCAMI-2), 2007;(ISTP)
4)Li Guibing, Zhang Auihui, Guo Yugang. Safety Testing and Assessment of Existing Reinforced Concrete Plate Girder Bridges Before and After Rehabilitation. International Symposium on Safety Science and Technology, 2010, Hangzhou. (EI/ISTP)
5)Li G.B., Guo Y.G., Sun X.Y. Evaluation of main code models for predicting flexural load-bearing capacity against intermediate crack-induced debonding in FRP-strengthened RC beams. Applied Mechanics and Materials, 2011, Vol. 71, pp. 1465-1468; (EI)
6)Li G.B., Sun xiaoyan, Guo yugang. Experimental investigation on first crack strength and crack width of reinforced concrete beams by side-bonding CFRP sheets. Advanced Materials Research, 2011, Vol. 194, pp.1449-1452; (EI)
7)Li G.B., Guo Y.G. Deflection Prediction of FRP-strengthened reinforced concrete beams. Advanced Materials Research, 2011,Vol. 243, pp. 621-624; (EI)
8)Li G.B., Guo Y.G., Sun X.Y. Evaluation of allowable FRP tensile strain in main codes for mitigation of debonding failure in FRP-strengthened RC beams. Applied Mechanics and Materials, 2011, Vol. 71, pp. 1469-1472; (EI)
9)Li G.B., Guo Y.G., Sun X.Y. Assessment of main models for predicting debonding load-bearing capacity against intermediate crack-induced debonding failure in FRP-strengthened RC beams. Advanced Materials Research, 2011, Vol. 311, pp. 1941-1944; (EI)
10)Li G.B., Guo Y.G., Sun X.Y. Investigation on intermediate crack induced debonding failure of FRP laminates in flexurally FRP-strengthened RC beams. Advanced Materials Research, 2011, Vol. 243, pp. 641-644; (EI)
11)Li G.B., Guo Y.G., Sun X.Y. Assessment of proposed models for determining allowable FRP tensile strain for mitigation of debonding failure in FRP-strengthened RC beams. Advanced Materials Research, 2011, Vol. 311, pp. 1945-1948; (EI)
 
 
 
 
 
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