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A new 3-D element formulation on displacement of steel-concrete composite box beam 被引量:2

A new 3-D element formulation on displacement of steel-concrete composite box beam
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摘要 Slip of a composite box beam may reduce its stiffness, enlarge its deformation and affect its performance. In this work, the governing differential equations and boundary conditions of composite box beams were established. Analytic solutions of combined differential equations were also established. Partial degree of freedom was adopted to establish a new FEA element of three-dimensional beam, taking into account the slip effect. Slip and its first-order derivative were introduced into the nodes of composite box beams as generalized degree of freedom. Stiffness matrix and load array of beam elements were established. A three-dimensional nonlinear calculation program was worked out. The results show that the element is reliable and easy to divide and is suitable for special nonlinear analysis of large-span composite box beams. Slip of a composite box beam may reduce its stiffness, enlarge its deformation and affect its performance. In this work, the governing differential equations and boundary conditions of composite box beams were established. Analytic solutions of combined differential equations were also established. Partial degree of freedom was adopted to establish a new FEA element of three-dimensional beam, taking into account the slip effect. Slip and its first-order derivative were introduced into the nodes of composite box beams as generalized degree of freedom. Stiffness matrix and load array of beam elements were established. A three-dimensional nonlinear calculation program was worked out. The results show that the element is reliable and easy to divide and is suitable for special nonlinear analysis of large-span composite box beams.
出处 《Journal of Central South University》 SCIE EI CAS 2013年第5期1354-1360,共7页 中南大学学报(英文版)
基金 Project(50708112) supported by the National Natural Science Foundation of China Project(IRT1296) supported by the Program for Changjiang Scholars and Innovative Research Team in University
关键词 混凝土组合梁 元素 3-D 广义自由度 三维非线性 配方 位移 单元刚度 steel-concrete composite box beam shear deformation slip effect variational method finite beam element method
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参考文献25

  • 1VIEST I M, COLACO J P, FURLONG R W, GRIFFIS L G, LEON R T, WYLLIE Jr L A. Composite construction design for buildings [M]. New York: McGraw-Hill, 1997: 22-23.
  • 2OEHLERS D J, BRADFORD M A. Composite steel and concrete structural members: Fundamental behaviour [M]. Oxford: Pergamon Press, 1995: 77-78.
  • 3WU Ya-ping, LAI Yuan-ming, ZHANG Xue-fu, ZHU Yuan-lin. A finite beam element for analyzing shear lag and shear deformation effects in composite-laminated box girders [J]. Computers and Structures, 2004, 82(9110): 763-771.
  • 4SEONG M J, MAENG H C, IN L. Static and dynamic analysis of composite box beams using large deflection theory [J]. Computers and Structures, 1995, S7(4): 63S-642.
  • 5LUO Yang-jun, WU Xiao-xiang, ALEX L. Three-dimensional layout design of steel-concrete composite structures using topology optimization [J]. Advanced Materials Research, 2011, 308/309/310: 886-889.
  • 6JUNQ W P, SEUNQ E K. Nonlinear inelastic analysis of steel-concrete composite beam-columns using the stability functions [J]. Structural Engineering and Mechanics, 2008, 30(6): 763-785.
  • 7NEWMARK N M, SIESS C P, VIEST I M. Tests and analysis of composite beams with incomplete interaction [J]. Proceedings of the Society of Experimental Stress Analysis, 19SI, 9(1): 75-92.
  • 8FAELLA C, MARTINELLI E, NIGRO E. Steel and concrete composite beams with flexible shear connection: exact analytical expression of the stiffness matrix and applications [J]. Computers and Structures, 2002, 30(11): 1001-1009.
  • 9RANZI G, BRADFORD M A, UY B. A direct stiffness analysis of a composite beam with partial interaction [J]. International Journal for Numerical Methods in Engineering, 2004, 61(S): 657-672.
  • 10RANZI G, BRADFORD M A. Analysis of composite beams with partial interaction using the direct stiffness approach for time effects [J]. International Journal for Numerical Methods in Engineering, 2009, 78(S): S64-S86.

同被引文献16

  • 1王连广,刘嵩,杨丽君.预应力钢与高强混凝土组合梁有限元分析[J].沈阳建筑大学学报(自然科学版),2005,21(3):192-195. 被引量:3
  • 2GB50010--2010.混凝土结构设计规范[S].
  • 3GB50017--2003.钢结构设计规范[S].[S].,..
  • 4Johnson R P. Composite structure of steel and concrete, vol. 1 : Beams. columns, frames and application in building. 2nd [ M ]. Oxford : Black- well Scientific, 1994: 241-246.
  • 5林宗凡钢一混凝士组合结构[M].上海:同济大学出版社,2004.
  • 6Yangjun Luo, Li, A. Nonlinear numerical simulation of bonded steel- concrete composite bears by finite element analysis [ C ]//Electric Technology and Civil Engineering: International Corffence, 2011.
  • 7Ehab EI-Lobody, Dennis Lain. Finite Element Analysis of Steel- Concrete Composite Girders [ J] Advances in Structural Engineer- ing, 2009, 6(4) : 267-281.
  • 8Wen Hu Li, Feng Hua Zhao. Experimental Investigation and Nonlin- ear Finite Element Analysis of U-Shaped Steel-Concrete Composite Beam[ J]. Applied Mechanics and Materials, 2012, 1799 (166) : 477-481.
  • 9R P Johnson. Composite structures of steel and concrete [ M ]. Lon- don: Granade Publishing, 1975.
  • 10胡少伟,涂启华,陈亮.考虑栓钉滑移效应及钢筋作用的组合梁受力分析[J].钢结构,2008,23(8):42-45. 被引量:4

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