Finite Element Based Member Stiffness Evaluation of Axisymmetric Bolted Joints

Author:

Sethuraman Raju1,Sasi Kumar T.1

Affiliation:

1. Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai 600036, India

Abstract

For a reliable design of bolted joints, it is necessary to evaluate the actual fraction of the external load transmitted through the bolt. The stiffness of the bolt and the member of the joint decide the fractions of external load shared by the bolt and the member. Bolt stiffness can be evaluated simply by assuming the load flow to be uniform across the thickness and the deformation is homogeneous. Then, bolt may be modeled as a tension member and the stiffness can be easily evaluated. But, the evaluation of the member stiffness is difficult because of the heterogeneous deformation. In the present work, joint materials are assumed to be isotropic and homogeneous, and linear elastic axisymmetric finite element analysis was performed to evaluate the member stiffness. Uniform displacement and uniform pressure assumptions are employed in idealizing the boundary conditions. Wide ranges of bolt sizes, joint thicknesses, and material properties are considered in the analysis to evaluate characteristic behavior of member stiffness. Empirical formulas for the member stiffness evaluation are proposed using dimensionless parameters. The results obtained are compared with the results available in the literature.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference11 articles.

1. Computation of Member Stiffness in Bolted Connections;Wileman;ASME J. Mech. Des.

2. VDI 2230, Systematic Calculation of High Duty Bolted Joints—Joints With One Cylindrical Bolt, February 2003.

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