International Journal of Theoretical and Applied Mechanics
  • Year: 2009
  • Volume: 4
  • Issue: 1

Analysis of Adhesive Bonded Single Lap Joints in Hybrid Composites Subjected to Transverse Load With LC-US End Conditions

  • Author:
  • M. Venkateswara Rao1, K. Mohana Rao2, V. Rama Chandra Raju3, V. Bala Krishna Murthy4, V.V. Sridhara Raju4
  • Total Page Count: 10
  • Page Number: 39 to 48

1Mechanical Engineering Department, Bapatla Engineering College, Bapatla, A.P, India. Email: mvr2007rao@rediffmail.com

2K.L. College of Engineering, Vaddeswaram, A.P., India.

3J.N.T. University, Vizayanagaram, A.P., India.

4Mechanical Engineering Department, P. V. P. Siddhartha Institute of Technology, Vijayawada, A.P, India.

Abstract

The present investigation deals with the static analysis of adhesive bonded single lap joint in Hybrid composite using three-dimensional theory of elasticity based finite element method. The finite element model is validated with the available results in the literature for the longitudinal loading of a single lap joint (SLJ) made of specially orthotropic laminates and is extended for the analysis of Hybrid (FRP-Steel) single lap joint subjected to transverse loads. The out-of-plane normal and shear stresses are computed at the interfaces of the adherends and adhesive, and at mid surface of the adhesive. The results of the present analysis reveals that the three-dimensional stress analysis is required for the analysis of adhesive bonded single lap joint in Hybrid (FRP-Steel) composites.

Keywords

SLJ, FEM, FRP, Inter-laminar stresses