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Analysis of thrust pad bearing under mixed-EHL regime considering combined effect of deterministic and stochastic surface roughness
Analysis of thrust pad bearing under mixed-EHL regime considering combined effect of deterministic and stochastic surface roughness
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Analysis of thrust pad bearing under mixed-EHL regime considering combined effect of deterministic and stochastic surface roughness
Analysis of thrust pad bearing under mixed-EHL regime considering combined effect of deterministic and stochastic surface roughness

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Analysis of thrust pad bearing under mixed-EHL regime considering combined effect of deterministic and stochastic surface roughness
Analysis of thrust pad bearing under mixed-EHL regime considering combined effect of deterministic and stochastic surface roughness
Journal Article

Analysis of thrust pad bearing under mixed-EHL regime considering combined effect of deterministic and stochastic surface roughness

2023
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Overview
This research paper focuses on evaluating the performance of a Rayleigh step bearing under thermo-mixed-EHL condition combining the effect of deterministic and stochastic surface roughness. Sinusoidal and sawtooth waveforms are considered as the deterministic roughness on the bearing’s surface, whereas stochastic roughness such as isotropic, longitudinal, and transverse roughness is considered on both interacting surfaces. The shear flow factor has been taken into consideration for the stochastic roughness of different standard deviations in roughness heights. All related equations are iteratively solved using an advanced computational algorithm. A remarkable change in the bearing’s performance is witnessed due to the combined action of deterministic and stochastic roughness. In the contact area, generated pressure is maximum in bearing having sawtooth with transverse roughness, whereas this pressure is minimum in bearing having sinusoidal with longitudinal roughness. A significant change in bearing’s performance is witnessed upon changing the value of convergence ratios, base length ratios, and roughness parameters.