IP Library › Granted Patent US 10,662,970
Granted Patent B2
US 10,662,970 · App. 15/778,498 · Granted May 26, 2020

Vortex pump

Inventor: Eiji Nakamura (Handa, JP)
Assignee: AISAN KOGYO KABUSHIKI KAISHA
F04D29/30F04D23/008F04D29/188F04D29/242
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Quick Facts
Patent No.
US 10,662,970
App. No.
15/778,498
Granted
May 26, 2020
Kind
B2
Abstract

An impeller may include a plurality of blades disposed along a rotation direction in an outer circumferential portion of at least one end surface of two end surfaces of the impeller; a plurality of blade grooves; and an outer circumferential wall disposed at an outer circumferential edge and closing the plurality of grooves. The housing may include an opposing groove opposing a blade groove region and extending along the rotation direction of the impeller. In a plan view of the one end surface of the two end surfaces of the impeller, each of the plurality of the blades may be curved, and a central portion of each of the blades may be positioned frontward in the rotation direction of the impeller than both ends of the blade.

Claims (22)

1. A vortex pump configured to pump gas, the pump comprising:

a housing; and

an impeller housed in the housing and configured to rotate about a rotation axis, wherein

the impeller comprises:

a plurality of blades disposed along a rotation direction in an outer circumferential portion of each of two end surfaces of the impeller;

a plurality of blade grooves, each of the plurality of blade grooves being disposed between adjacent blades; and

an outer circumferential wall disposed at an outer circumferential edge and closing the plurality of grooves at an outer circumferential side of the impeller, wherein

the housing comprises an opposing groove opposing a blade groove region and extending along the rotation direction of the impeller,

each of the plurality of the blade grooves is opened at the one end surface of the impeller, and closed at the other end surface of the impeller, and

in a plan view of the one end surface of the impeller,

each of the plurality of the blades is curved, and

a central portion of each of the blades is positioned frontward in the rotation direction of the impeller than both end portions of the blade,

each of the plurality of the blades on the one end surface of the impeller is inclined such that the end portion thereof on the one end surface side of the impeller is positioned frontward in the rotation direction of the impeller than the end portion thereof on the other end surface side of the impeller, and

each of the plurality of the blades on the one end surface of the impeller comprises constantly sloped inclined surfaces on both sides in the rotation direction of the impeller,

a distance between the constantly sloped inclined surfaces of each of the plurality of the blades on the one end surface of the impeller gradually spreads from the one end surface toward the other end surface of the impeller, and a thickness of each of the plurality of the blades on the one end surface of the impeller gradually increases from the one end surface to the other end surface side of the impeller.

2. The vortex pump as in claim 1 , wherein

in the plan view of the one end surface of the impeller, in each of the plurality of the blades, a line connecting an end thereof on an outer circumferential side of the impeller and a center of the impeller is positioned backward in the rotation direction of the impeller than a line connecting an end thereof on a central side of the impeller and the center of the impeller.

3. The vortex pump as in claim 1 , wherein

the vortex pump is configured to:

be mounted on an automobile;

suction vaporized fuel from a canister adsorbing the vaporized fuel in a fuel tank into the vortex pump; and

supply the suctioned vaporized fuel to an intake pipe of an engine of the automobile.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2018
From: NAKAMURA, EIJI
To: AISAN KOGYO KABUSHIKI KAISHA
Reel/Frame 045886/0116 →
Priority Claims (1)
JP 2015-229106 · Nov 24, 2015 · national
Continuity (1)
Related Publication 20190032672A1 · Jan 31, 2019
Cited By (1)
US 12,480,503