Experimental load capacity and power loss of herringbone grooved gas lubricated journal bearings
Herringbone grooved gas lubricated journal bearing load capacity, attitude angle and power loss measurements
Engineering topics
Publications and source records attributed to Cunningham, R. E..
Herringbone grooved gas lubricated journal bearing load capacity, attitude angle and power loss measurements
Calculation of rotor critical speeds for two bearing rotor system from rigid body theory using film stiffness as determined from zero speed, load eccentricity data
Load capacity, attitude angle, and power loss were determined for 1-1/2-in.-diam herringbone grooved journal bearings operating in air to speeds of 60,000 rpm. Results showed that groove-to-ridge-clearance ratios of 2.0 to 2.4 give a greater load capacity than do ratios outside this optimum range. Agreement with a small-eccentricity pressure perturbation theory was good for groove-to-ridge-clearance ratios in the optimum range. Power loss, relative to that calculated for a plain bearing of the same dimensions, did not vary widely for the range of geometric variables used. Relative power loss generally increased with speed and was generally comparable to that for a plain bearing.
Experimental load capacity and power loss of herringbone grooved gas lubricated journal bearings
Externally pressurized air journal bearings load capacity, film stiffness, attitude-eccentricity locus and mass flow, studying supply pressure and shaft rotation effects
Externally pressurized gas lubricated journal bearings zero load rotating stability, using digital computer
Load and stiffness characteristics of rotating externally pressurized air journal bearings
Air flow and attitude angle compared with theory for rotating externally pressurized air journal bearings
Power loss experiments on herringbone grooved, gas lubricated journal bearings
Herringbone grooved gas lubricated journal bearing stability, testing effects of geometries and clearances on onset speed for half frequency whirl
Small eccentricity stability analysis for externally pressurized gas lubricated bearings with journal rotation
Herringbone grooved gas lubricated journal bearing stability, testing effects of geometries and clearances on onset speed for half frequency whirl
Bearing designs, which shape the surface to create artificial fluid-film wedges in the absence of any applied radial load, generate radial restoring forces to keep journals from whirling. Helical- or herringbone-grooved journals or rotors show most promise of stable operation, with no sacrifice in load capacity.
High revolutions per minute rotor stability of herringbone-grooved gas-lubricated journal bearings
Herring bone-groove geometry effects on stability of gas lubricated journal bearing
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