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[1] Design Methods of Integral-Lift Tubular Steel Scaffolds for High-rise Building Construction(SCI 000298949700004,EI 20120314684894) The Structural Design of Tall and Special Buildings, 2012,
[2] FEM Simulation of an Elliptical-shaped Corrugated Steel Culvert Pipe for Highway Construction Applied Mechanics and Materials(EI 20114414470355), 2011,
[3] 高层建筑施工附着升降脚手架的设计计算方法 工业建筑, 2011,
[4] Study on Effect of Traffic Loading on Fatigue Reliability for Steel Highway Bridges in China Proceeding of the 11th International Symposium on Structural Engineering, Science Press.(CPCI-S 000292890601012), 2010,
[5] Study on Fatigue Traffic Loading for Highway Bridges in China Key Engineering Materials(EI 20110113545559, CPCI-S 000287421700202), 2010,
[6] Application of Strain Time Histories through Field Strain Measurement for Fatigue-load Model of Highway Bridges Proceeding of 2010 International Symposium on Safety Science and Technology, Science Press & Science Press USA Inc.(CPCI-S 000294650901085), 2010,
[7] 高层建筑施工附着升降脚手架的极限承载力(2) 四川建筑科学研究, 2009,
[8] 高层建筑施工附着升降脚手架的极限承载力(1) 四川建筑科学研究, 2009,
[9] 公路钢桥疲劳车辆荷载研究进展 建筑钢结构进展, 2009,
[10] Research and Scale Model Test on the Local Stability of Steel Box Arch Segment of Lupu Bridge Proceedings of the Fourth International Conference on Advances in Steel Structures, Shanghai, ELSEVIER., 2005,
[11] Wind Load on Integral-lift Scaffolds for Tall Building Construction(SCI000228532400012, EI05209099246) Journal of Structural Engineering, ASCE., 2005,
[12]Yue Feng. 高层建筑附着整体升降钢管脚手架风振系数研究 地震工程与工程振动, 2004,
[13] 高层建筑附着升降钢管脚手架风荷载的计算(下) 建筑技术, 2004,
[14] 高层建筑附着升降钢管脚手架风荷载的计算(上) 建筑技术, 2004,
[15] The Research on Wind Vibration Coefficient of Scaffold Attached to Tall Buildings Proceedings of Sixth Pacific Structural Steel Conference, Beijing, Seismological Press, 2001,
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