Claims
- 1. A fluid port comprising a rotor, a cam ring surrounding said rotor, pumping elements carried by said rotor in sliding engagement with said cam ring, said cam ring and said rotor cooperating to define a pumping chamber, an inlet port and an outlet port communicating with said pumping chamber, valve means for controlling the rate of flow of fluid delivered by said pump comprising a valve housing, a high pressure valve port communicating with said outlet port, a valve bypass port communicating with said inlet port, a movable valve spool, a valve chamber slidably receiving said valve spool, said movable valve spool controlling the degree of communication between said high pressure port and said bypass port, a venturi element having a throat portion, an inlet portion and an outlet portion connected by said throat portion, said venturi element inlet portion communicating with said high pressure port and said venturi element outlet portion being connected to a delivery passage, spring means normally biasing said valve spool toward a position that interrupts the communication between said high pressure port and said bypass port, venturi pressure passage means connecting said venturi throat with one side of said valve spool whereby the venturi throat pressure reduction supplements the force of said spring acting on said valve spool, and a supplemental valve port in said valve chamber located near said bypass port and adapted to be uncovered by said valve spool to establish communication between said venturi pressure passage and said bypass port when the speed of said pump exceeds a predesigned value whereby the rate of increase of pump delivery upon a given increase in pump speed is lower at high speeds than it is at lower speeds.
- 2. A positive displacement pump having high and low pressure sides for delivering pressure to a fluid delivery passage comprising fluid pumping members, a venturi flow control valve mechanism comprising a valve body, a valve chamber in said valve body, a valve spool in said valve chamber, a high pressure valve port communicating with the high pressure side of said pump, a bypass valve port communicating with the low pressure side of said pump, spring means producing a force acting on said valve spool in one direction to restrict the degree of communication between said high pressure valve port and said bypass valve port, a venturi flow element comprising a venturi throat communicating on one side thereof with said high pressure valve port and on the other side thereof with said fluid delivery passage, a venturi pressure passage connecting said throat with one side of said valve spool whereby the venturi pressure supplements the force of said spring, an auxiliary port communicating with said valve chamber and said venturi passage, said auxiliary port being uncovered by said valve spool to establish communication between said venturi passage and said bypass passage when the rate of fluid delivery from said pump exceeds a predetermined value whereby the rate of increase of fluid delivery upon a given increase in pump speed is reduced when the speed of the pump is above a predetermined value.
REFERENCE TO RELATED DISCLOSURES
This application is a division of U.S. application Ser. No. 901,915, filed May 1, 1978, now U.S. Pat. No. 4,207,038. It is related also to U.S. application Ser. No. 885,912, filed Mar. 13, 1978, now U.S. Pat. No. 4,199,304.
US Referenced Citations (7)
Divisions (1)
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Number |
Date |
Country |
Parent |
901915 |
May 1978 |
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