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Journal ArticleDOI

A novel technique to compute static and dynamic performance characteristics of aerostatic thrust bearing

TLDR
In this article, a novel technique based on finite element formulation is suggested to compute air film stiffness and damping coefficient in aerostatic thrust bearing for different geometries of recess.
Abstract
Purpose This study aims to analyze the dynamic performance of aerostatic thrust bearing for different geometries of recess. Different geometries of recess of equal recess area, i.e. circular, elliptical, rectangular and annular, have been considered in analysis. The work also analyzes the influence of tilt angle on the performance of thrust bearing. To compute the unknown pressure field, the Reynolds equation governing the flow of compressible lubricant (air) has been solved using finite element formulation. Further, separate finite element formulations have been carried out to compute fluid film stiffness and damping coefficients directly. This method provides quick computation of stiffness and damping coefficients of aerostatic thrust bearing than the usual approach. Design/methodology/approach As the Reynolds equation governing the flow of compressible lubricant is nonlinear partial differential equation, the computation of the stiffness and damping coefficient follows an iterative procedure. It requires a lot of computational energy. Therefore, in the present work, a novel technique based on finite element formulation is suggested to compute air film stiffness and damping coefficient in aerostatic thrust bearing. Findings A novel technique based on finite element formulation is illustrated to simulate the performance of tilted pad aerostatic thrust bearing. On the basis of simulated results, following key conclusions may be drawn. The static and dynamic performance of a circular aerostatic tilted thrust pad bearing is significantly affected with a change in the value of tilt parameter and the shape of the recess. Research limitations/implications Implications are as follows: direct computation of air film damping coefficient is performed without perturbation method in finite element method (FEM); influence of tilt on aerostatic thrust bearing is studied; influence of recess shape on aerostatic thrust bearing is observed; and finite element formulation of aerostatic thrust bearing is performed. Originality/value The present work will be quite useful for bearing designer and academicians.

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Citations
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Journal ArticleDOI

Magneto-hydrostatic lubrication of thrust bearings considering different configurations of recess

TL;DR: In this article, the influence of magnetic field and recess configurations on the performance of a bearing has been numerically investigated and the effect of the geometrical shape of the recess and restrictor has been investigated.
Journal ArticleDOI

Study on Dynamic Characteristics of Aerostatic Bearing with Elastic Equalizing Pressure Groove

TL;DR: In this paper, the dynamic characteristics of a new type of aerostatic bearing with the elastic equalizing pressure groove (EEPG) were studied by theoretical calculation and experiment, and the results showed that the perturbation frequency has a significant effect on the dynamic stiffness and equivalent damping coefficient of the bearing with EEPG.
Journal ArticleDOI

Analysis of static and dynamic characteristics of aerostatic bearing with reflux orifices

TL;DR: In this paper, the reverse throttling term is introduced into the Reynolds equation, and the adaptive damping factor is used in the Newton iteration method to improve convergence of numerical calculations.
Journal ArticleDOI

Analysis of Second-Order Thrust Bearing Coefficients Considering Misalignment Effect

TL;DR: In this article , the authors investigated the influence of misalignment, rotating speed, and mesh size on the bearing coefficients of an inclined pad hydrodynamic thrust bearing, which have not been previously investigated, to improve the accuracy of modeling thrust bearings.
Journal ArticleDOI

Design and Research of Symmetrical Multi-Throttle Thrust Hydrostatic Bearing Based on Comparative Analysis of Various Meshes

TL;DR: In this paper , a symmetrical multi-throttle thrust bearing in a precision turntable was used as the research object and compared and studied the advantages and disadvantages of sliced structured meshes, continuous structured meshes and unstructured meshes.
References
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Journal ArticleDOI

Influence of recess shape on the performance of a capillary compensated circular thrust pad hydrostatic bearing

TL;DR: In this article, a theoretical study concerning the static and dynamic performance of a circular thrust pad hydrostatic bearing having recesses of different geometric shapes has been performed using the Finite Element Method.
Journal ArticleDOI

Performance analysis of high-speed spindle aerostatic bearings

TL;DR: In this article, a detailed theoretical analysis of bearing performance is presented, in which the gas flow within the bearing is initially expressed in the form of simplified dimensionless Navier Stokes equations, and the nonlinear dimensionless Reynolds equation is then derived and subsequently discretized using the Newton method.
Journal ArticleDOI

CFD investigation of pressure depressions in aerostatic circular thrust bearings

TL;DR: In this paper, the rationale of the pressure depression phenomenon in aerostatic thrust bearings is investigated using computational fluid dynamics simulations using the turbulent full Navier-Stokes equations for steady, three-dimensional, compressible flows.
Journal ArticleDOI

Static and dynamic performance characteristics of an orifice compensated hydrostatic journal bearing with non-Newtonian lubricants

TL;DR: In this article, a theoretical study of the performance characteristics of non-Newtonian rigid orifice compensated multirecess journal bearings has been presented, where the generalized Reynolds equation governing the flow of lubricant having variable viscosity has been solved using the finite element method and iterative procedure.
Journal ArticleDOI

Dynamic tilt characteristics of aerostatic rectangular double-pad thrust bearings with compound restrictors

TL;DR: In this paper, the dynamic stiffness and damping coefficient of a double-pad bearing for tilt motion of a shaft are investigated, both theoretically and experimentally, and it was found that the dynamic tilt characteristics of the aerostatic thrust bearings considered in this paper are greatly influenced not only by design parameters such as the groove position and the groove depth but also by the squeeze effect.
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