20240011486. ROTARY GEAR PUMP WITH A CENTERED DRIVE GEAR simplified abstract (ADVANCING PUMP TECHNOLOGY CORP.)

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ROTARY GEAR PUMP WITH A CENTERED DRIVE GEAR

Organization Name

ADVANCING PUMP TECHNOLOGY CORP.

Inventor(s)

Kim Pollard of Calgary (CA)

Ryan Chachula of Calgary (CA)

Dale Serafinchan of Calgary (CA)

Tom Bryant (US)

ROTARY GEAR PUMP WITH A CENTERED DRIVE GEAR - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240011486 titled 'ROTARY GEAR PUMP WITH A CENTERED DRIVE GEAR

Simplified Explanation

The abstract describes a rotary gear pump that consists of a housing, a drive gear, and an idler gear. The housing has a central axis and contains an intake port, a discharge port, and a gear chamber. The drive gear and idler gear are meshed together and rotate within the gear chamber to move fluid from the intake port to the discharge port. The drive gear is coaxial with the housing's central axis and can be directly coupled to the idler gear of another rotary gear pump.

  • The rotary gear pump includes a housing, drive gear, and idler gear.
  • The housing has a central axis and contains intake and discharge ports, as well as a gear chamber.
  • The drive gear and idler gear are meshed together and rotate within the gear chamber.
  • Fluid is displaced from the intake port to the discharge port by the rotating gears.
  • The drive gear has the same axis of rotation as the housing's central axis.
  • The drive gear can be directly coupled to the idler gear of another rotary gear pump.

Potential Applications:

  • Fluid transfer and pumping systems in various industries such as automotive, manufacturing, and oil and gas.
  • Used in hydraulic systems, lubrication systems, and cooling systems.
  • Can be utilized in chemical processing, food and beverage production, and pharmaceutical manufacturing.

Problems Solved by this Technology:

  • Efficiently moves fluid from one location to another.
  • Provides a compact and reliable pumping solution.
  • Reduces the risk of leakage and contamination.
  • Enables precise control and regulation of fluid flow.

Benefits of this Technology:

  • High efficiency and reliability in fluid transfer.
  • Compact design allows for easy installation and integration into existing systems.
  • Low maintenance requirements.
  • Provides precise and controlled fluid flow.
  • Reduces the risk of leakage and contamination.


Original Abstract Submitted

a rotary gear pump includes a housing, a drive gear, and an idler gear. the housing has a central axis extending in an axial direction, and defines an intake port, a discharge port, and a gear chamber in fluid communication with the intake port and the discharge port. the drive gear and the idler gear are intermeshed, and rotatably disposed within the gear chamber for displacing fluid from the intake port to the discharge port. the drive gear has an axis of rotation that is coaxial with the housing central axis. the drive gear may be directly coupled to the idler gear of a second rotary gear pump, which idler gear has an axis of rotation that is coaxial with the axis of rotation of the drive gear.