Please submit manuscripts in either of the following two submission systems

    ScholarOne Manuscripts

  • ScholarOne
  • 勤云稿件系统

  • 登录

Search by Issue

  • 2024 Vol.31
  • 2023 Vol.30
  • 2022 Vol.29
  • 2021 Vol.28
  • 2020 Vol.27
  • 2019 Vol.26
  • 2018 Vol.25
  • 2017 Vol.24
  • 2016 vol.23
  • 2015 vol.22
  • 2014 vol.21
  • 2013 vol.20
  • 2012 vol.19
  • 2011 vol.18
  • 2010 vol.17
  • 2009 vol.16
  • No.1
  • No.2

Supervised by Ministry of Industry and Information Technology of The People's Republic of China Sponsored by Harbin Institute of Technology Editor-in-chief Yu Zhou ISSNISSN 1005-9113 CNCN 23-1378/T

期刊网站二维码
微信公众号二维码
Related citation:Shi-Yi Liu,Yao-Jun Ge.Large Deformation Beam/Cable Element with Implicit Kinematic Model[J].Journal of Harbin Institute Of Technology(New Series),2013,20(6):1-8.DOI:10.11916/j.issn.1005-9113.2013.06.001.
【Print】   【HTML】   【PDF download】   View/Add Comment  Download reader   Close
←Previous|Next→ Back Issue    Advanced Search
This paper has been: browsed 3708times   downloaded 2382times 本文二维码信息
码上扫一扫!
Shared by: Wechat More
Large Deformation Beam/Cable Element with Implicit Kinematic Model
Author NameAffiliation
Shi-Yi Liu State Key Laboratory of Disaster Reduction in Civil Engineering, Tongji University, Shanghai 200092, China 
Yao-Jun Ge State Key Laboratory of Disaster Reduction in Civil Engineering, Tongji University, Shanghai 200092, China 
Abstract:
This paper proposes a 3D 2-node element for beams and cables. Main improvements of the element are two new interpolation functions for beam axis and cross-sectional rotation. New interpolation functions employ implicit functions to simulate large deformations. In the translational interpolation function, two parameters which affect lateral deflection geometry are defined implicitly through nonlinear equations. The proposed translational interpolation function is shown to be more accurate than Hermitian function at large deformations. In the rotational interpolation function, twist rate is defined implicitly through a torsional continuity equation. Cross-sectional rotation which is strictly consistent to beam axis is obtained through separate bending rotation interpolation and torsional rotation interpolation. The element model fully accounts for geometric nonlinearities and coupling effects, and thus, can simulate cables with zero bending stiffness. Stiffness matrix and load vector have been derived using symbolic computation. Source code has been generated automatically. Numerical examples show that the proposed element has significantly higher accuracy than conventional 2-node beam elements under the same meshes for geometrically nonlinear problems.
Key words:  large deformation analysis  2-node interpolation functions  consistent rotational interpolation  implicit functions  symbolic computation
DOI:10.11916/j.issn.1005-9113.2013.06.001
Clc Number:TU323.3
Fund:

LINKS