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- W3165278315 abstract "The coatings on materials have contributed significantly in engineering applications and its attributes could be studied unconventionally through vibration signatures. In this work, three different bearings (NBC6205) are coated with Zn3(PO4)2, copper and nickel, all deposited by electroplating. The results obtained after measurements of surface finish of the coated surface shows that the surface finish of zinc phosphate is better than copper and surface texture of copper is smoother than nickel. Under load, all three bearings are made to run at three different rpm and their vibrational signals are being acquired. The statistical parameters are calculated for the acquired signals for different coatings at different rpm and results are compared with reference to the properties of coating. It is observed that bearing with zinc phosphate coating is giving less values of statistical moment, because Zn3(PO4)2 has better surface finish followed by copper and nickel. Further, analysis is done to get spectral contents of the acquired signals by taking Fast Fourier transform (FFT), where it is found RMS, standard deviation (SD), Logarithmic energy (LE) and Shannon Entropy (SE) are showing rising trend compare to other parameters of spectral contents. Due to the low value of spectral content, it is clear that signal is less harsh in zinc phosphate coating, which further reflects its better surface finish level. Then sensitivity index is calculated so as to get most sensitive parameter among the responded parameters. From results, it is found that SE of spectral contents is the most sensitive parameter, which is showing considerable deviation and could be proposed as reference to reveal the distinct values of surface finish." @default.
- W3165278315 created "2021-06-07" @default.
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- W3165278315 date "2021-05-01" @default.
- W3165278315 modified "2023-10-01" @default.
- W3165278315 title "Comparison of roughness level in ball bearing using statistical analysis of vibration signal" @default.
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- W3165278315 doi "https://doi.org/10.1016/j.matpr.2021.05.001" @default.
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