Gas-lubricated Bearings
Author: Gilbert F. Boeker
Publisher:
Published: 1958
Total Pages: 310
ISBN-13:
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Author: Gilbert F. Boeker
Publisher:
Published: 1958
Total Pages: 310
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher:
Published: 1961
Total Pages: 654
ISBN-13:
DOWNLOAD EBOOKAuthor: Dudley D. Fuller
Publisher:
Published: 1959
Total Pages: 648
ISBN-13:
DOWNLOAD EBOOKAuthor: Bernard J. Hamrock
Publisher: CRC Press
Published: 2004-03-15
Total Pages: 747
ISBN-13: 1135537755
DOWNLOAD EBOOKSpecifically focusing on fluid film, hydrodynamic, and elastohydrodynamic lubrication, this edition studies the most important principles of fluid film lubrication for the correct design of bearings, gears, and rolling operations, and for the prevention of friction and wear in engineering designs. It explains various theories, procedures, and equations for improved solutions to machining challenges. Providing more than 1120 display equations and an introductory section in each chapter, Fundamentals of Fluid Film Lubrication, Second Edition facilitates the analysis of any machine element that uses fluid film lubrication and strengthens understanding of critical design concepts.
Author: Bai Shaoxian
Publisher: Academic Press
Published: 2019-07-10
Total Pages: 240
ISBN-13: 0128172916
DOWNLOAD EBOOKGas Thermohydrodynamic Lubrication and Seals provides contemporary theory and methods for thermo-hydrodynamic lubrication analysis in the design of gas bearings and seals. The title includes information on gas state equations and gas property, derivation of gas thermohydrodynamic lubrication equations, the theory of isothermal gas lubrication, thermal gas lubrication of rigid surfaces, gas thermoelastic hydrodynamic lubrication of face seals, vapor-condensed gas lubrication of face seals, experimental methods, and the design of gas face seals. Readers will find state-of-the-art, practical knowledge based on fifty years of research and application. - Describes thermohydrodynamic lubrication analysis for the design of gas bearings and seals - Considers the increased operational speed, pressure and temperature of mechanical equipment in relation to gas bearings and seals - Describes multi-field coupled gas lubrication theory and analytical methods - Provides a model and detailed data on the lubricating properties of typical gas bearings and seals - Gives comprehensive coverage of the field based on a half-century of research and application
Author:
Publisher:
Published: 1961
Total Pages: 648
ISBN-13:
DOWNLOAD EBOOKAuthor: G. Heinrich
Publisher: Springer
Published: 2014-05-04
Total Pages: 57
ISBN-13: 3709127181
DOWNLOAD EBOOKAuthor: Edgar J. Gunter
Publisher:
Published: 1964
Total Pages: 236
ISBN-13:
DOWNLOAD EBOOKAuthor: John William Powell
Publisher:
Published: 1964
Total Pages: 338
ISBN-13:
DOWNLOAD EBOOKAuthor: Mihir Kumar Ghosh
Publisher: McGraw Hill Professional
Published: 2014-06-20
Total Pages: 497
ISBN-13: 0071834982
DOWNLOAD EBOOKComprehensive coverage of fluid film lubrication Written by global experts in the field, this in-depth engineering resource discusses the theory, design, analysis, and application of fluid film lubrication, providing proven methods for reducing friction in rotating machinery components. The book thoroughly addresses all aspects of the topic, from viscosity and rotor-bearing dynamics to elastohydrodynamic lubrication and fluid inertia effects. Fully worked examples, analytical and numerical methods of solutions, practice problems, and detailed illustrations are included in this authoritative reference. Fundamentals of Fluid Film Lubrication covers: Introduction to tribology Viscosity and rheology of lubricants Mechanics of lubricant films and basic equations Hydrodynamic lubrication Finite bearings Thermohydrodynamic analysis of fluid film bearings Design of hydrodynamic bearings Dynamics of fluid film bearings Externally pressurized lubrication Fluid inertia effects and turbulence in fluid film lubrication Gas-lubricated bearings Hydrodynamic lubrication of rolling contacts Elastohydrodynamic lubrication Vibration analysis with lubricated ball bearings Thermal effect in rolling–sliding contacts