Nuclear Engineering and Technology (Jun 2015)

Free vibration analysis of perforated plate with square penetration pattern using equivalent material properties

  • Myung Jo Jhung,
  • Kyeong Hoon Jeong

DOI
https://doi.org/10.1016/j.net.2015.01.012
Journal volume & issue
Vol. 47, no. 4
pp. 500 – 511

Abstract

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In this study, the natural frequencies of the perforated square plate with a square penetration pattern are obtained as a function of ligament efficiency using the commercial finite-element analysis code ANSYS. In addition, they are used to extract the effective modulus of elasticity under an assumption of a constant Poisson's ratio. The effective modulus of elasticity of the fully perforated square plate is applied to the modal analysis of a partially perforated square plate using a homogeneous finite-element analysis model. The natural frequencies and the corresponding mode shapes of the homogeneous model are compared with the results of the detailed finite-element analysis model of the partially perforated square plate to check the validity of the effective modulus of elasticity. In addition, the theoretical method to calculate the natural frequencies of a partially perforated square plate with fixed edges is suggested according to the Rayleigh–Ritz method.

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