Finite element based investigation of buckling and vibration behaviour of thin walled box beams

Authors

  • Kandasamy Ramkumar Volvo Construction Equipment, Volvo India Pvt Ltd.
  • H. Kang Volvo Construction Equipment, Volvo Group Korea Co. Ltd.

Keywords:

thin-walled box, vibration, buckling, composite, FEM

Abstract

Thin-walled box type conventional and composite structures are having wide applications for building the structural system which are used in advanced ships, aerospace, civil, construction equipment and etc. Often these structures are subjected to vibration and buckling due to the environmental effect such as mechanical, thermal, electrical, magnetic, and acoustic or a combination of these. Also dampingmaterial and structural stiffness plays an important role for the improvement of vibration, noise control, fatigue and bulking resistance of these structures. So it is important to know the dynamic and buckling characteristics of these structures. Pre-stress in a structure affects the stiffness, which modifies the dynamic and stability characteristics of the structure. So it is also important to know the influence of pre-stress on the vibration and buckling character. In this paper, buckling and dynamic characteristics of the thin-walled box type structures are analyzed using finite element software ANSYS.

Downloads

Published

31-Dec-2013

Issue

Section

Articles

How to Cite

“Finite element based investigation of buckling and vibration behaviour of thin walled box beams” (2013) Applied and Computational Mechanics, 7(2). Available at: https://acm.kme.zcu.cz//article/view/212 (Accessed: 24 May 2025).