Determination of Natural Frequency Values In Bending Sheet Metals Using Finite Element Method


Authors : Yahya IŞIK; Muhammed DOĞDU

Volume/Issue : Volume 8 - 2023, Issue 9 - September

Google Scholar : https://bit.ly/3TmGbDi

Scribd : https://tinyurl.com/yu5pbrf9

DOI : https://doi.org/10.5281/zenodo.8394786

Abstract : The materials commonly used in industry today are steels and aluminum. In this study, using 6112 DKP steel sheet material and 1050 H14 aluminum sheet material, the effect of variable parameters on the natural frequency of the sheets subjected to the press brake production process was comparatively examined with the finite element method. Variable parameters for twisted sheet metal; It is determined as material, sheet thickness, bending length, bending width, bending angle and bending radius. Models with variable parameters were designed in 3D with Solidworks. These models were determined by using Ansys software using the finite element method and the effects of variable parameters on natural frequencies were determined and examined comparatively with the help of graphics. It has been determined that 1050 H14 aluminum sheet materials will resonate at higher frequencies when the model is designed with the same bending parameters.

Keywords : 6112 DKP Sheet, 1050 H14 Sheet, Modal Analysis, Natural Frequency, Twist Parameters.

The materials commonly used in industry today are steels and aluminum. In this study, using 6112 DKP steel sheet material and 1050 H14 aluminum sheet material, the effect of variable parameters on the natural frequency of the sheets subjected to the press brake production process was comparatively examined with the finite element method. Variable parameters for twisted sheet metal; It is determined as material, sheet thickness, bending length, bending width, bending angle and bending radius. Models with variable parameters were designed in 3D with Solidworks. These models were determined by using Ansys software using the finite element method and the effects of variable parameters on natural frequencies were determined and examined comparatively with the help of graphics. It has been determined that 1050 H14 aluminum sheet materials will resonate at higher frequencies when the model is designed with the same bending parameters.

Keywords : 6112 DKP Sheet, 1050 H14 Sheet, Modal Analysis, Natural Frequency, Twist Parameters.

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