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Design and Performance Analysis of Dual Membrane Restrictor for Hydrostatic Bearing

Shih-Chieh Lin, Yu-Hsiang Lo, Yu-Hsin Lin, Wei-Ting Tung, Ta-Hua Lai

2022Lubricants10 citationsDOIOpen Access PDF

Abstract

In this paper, a dual membrane restrictor design was proposed to improve the stiffness performance of the compensated hydrostatic bearing. Theoretical models for the proposed dual membrane restrictors were derived. Analysis of these models showed that a high stiffness region could be achieved at the desired loading region through the proper selection of the design parameters. A series of simulations were conducted to study the variations in the design parameters on the stiffness and clearance variations. It was found that the dimensionless membrane stiffness in the inlet restrictor, Kmi*, was the most dominant parameter for the performance of the compensated bearing system. The main advantages of the proposed dual membrane restrictor are the increase in flexibility by providing high stiffness at the desired loading region; and improving the stiffness performance of the bearing system especially at the desired loading region.

Topics & Concepts

StiffnessHydrostatic equilibriumDimensionless quantityBearing (navigation)Flexibility (engineering)MembraneMaterials scienceDual (grammatical number)Structural engineeringEngineeringMechanicsComputer scienceChemistryMathematicsPhysicsQuantum mechanicsArtificial intelligenceArtBiochemistryStatisticsLiteratureHydraulic and Pneumatic SystemsTribology and Lubrication EngineeringSilicone and Siloxane Chemistry