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By Using Ansys, Conduct a Free Vibration Analysis of a Cantilever Beam for Several Materials with Different Cross Sections

  • Prashant Mali,
  • Swanand Kulkarni

摘要

The analysis of vibration in a cantilever beam is crucial for many mechanical applications, including machinery, building construction, propeller shafts and areophane wings. A thorough analysis was conducted to assess the effects of changing the cantilever beam’s length, width, and thickness. In this paper, study is done. This is done by keeping an eye on the beam’s native frequency as this sways freely there are two distinct phases to the study. The first stage is hypothetically carried out by figuring out the inherent frequency of a specimen with different lengths, widths, and thicknesses while attempting to change the specimen’s material. This indicates how the specimen’s measurements and substance have the greatest impact on minimizing resonance frequencies. The outcomes of the second phase are used to validate the outcomes of the first phase. In order to achieve this, the experimental phase conditions are modelled into ANSYS Workbench 14.5 while taking into in adjusting the specimen material, take into account the cantilever beam with different lengths, thicknesses, and widths. The theoretically derived findings are then compared to all of the data from the ANSYS workbench package. It was calculated that 1.655% was the highest conceivable percentage of natural frequency inaccuracy.