## Basic Lubrication Theory |

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### Contents

Reynolds equation | 18 |

Convergingdiverging wedge | 32 |

Pad bearings tilted and fixed | 48 |

Copyright | |

11 other sections not shown

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### Common terms and phrases

angle axial boundary conditions centipoises centistokes centre of pressure Chapter coefficient of friction computed considered constant continuity of flow converging wedge cos2 course defined deflexion derived diameter dimensional analysis discs dp/dx dx dy eccentricity ratio effective viscosity equal exponential film shape flow rate fluid footstep bearing force formula frequency full Sommerfeld gears Geometry given gives groove half shaft heat hence Hertz hydrostatic infinitely long integral journal bearings length LjD ratios load carried loge lubrication theory mineral oil minimum film thickness non-dimensional oil film thickness oil flow oil whirl plotted poises pressure curve pressure gradient radial clearance radius recess rev/min Reynolds condition Reynolds equation rotating rotor scuffing sec2 shaft speed shear stress shown in Figure sintered solution Sommerfeld variable specific gravity squeeze film subtangent surface temperature rise term theory usually velocity vibration Viscosity index width zero