IP Library Granted Patent US 10,148,150
Granted Patent B2
US 10,148,150 · App. 14/912,529 · Granted Dec 4, 2018

Liquid pump

Inventors: Kiyoshi Nagata (Kariya, JP); Tetsuo Hayakawa (Kariya, JP); Masaya Ootake (Kariya, JP)
Assignee: DENSO CORPORATION
H02K5/22F02M37/08F04D3/005F04D5/002F04D13/06F04D13/0693F04D29/181F04D29/528F02M37/10F02M2037/082
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Quick Facts
Patent No.
US 10,148,150
App. No.
14/912,529
Granted
Dec 4, 2018
Kind
B2
Abstract

A cover end of a fuel pump is formed by resin molding and has a tubular portion, which holds a bearing that is placed along a central axis of the tubular portion and rotatably supports one end portion of a shaft of a motor arrangement. Furthermore, three terminals, which supply three-phase electric power received from an outside to windings on a phase-by-phase basis, are insert molded in the cover end. In the cover end, a first transverse passage, which is formed between the first terminal and the second terminal in a circumferential direction, and a second transverse passage, which is formed between the second terminal and the third terminal in the circumferential direction, are configured into a form of V-shape, which diverges in a radially outer direction, in a view taken in an axial direction.

Claims (46)

1. A liquid pump configured to pump a liquid, comprising:

a motor arrangement that has:

a stator, in which a plurality of windings is wound around cores; and

a rotor, which includes a plurality of magnetic poles and is configured to rotate about a rotational axis of a shaft by a magnetic field generated at the stator;

a housing that is configured into a tubular form and receives the stator and the rotor, wherein a plurality of outer passages, each of which passes between an inner wall of the housing and an outer wall of the stator and extends through the motor arrangement in an axial direction, is formed in the housing;

a cover end that is resin molded integrally with one end portion of the stator on one axial side of the motor arrangement and closes an opening of the housing, wherein:

a tubular portion, which holds a bearing that rotatably supports one end portion of the shaft, is formed along a central axis at a side of the cover end where the motor arrangement is located;

a discharge conduit, which has a discharge passage in an inside of the discharge conduit, is formed at an opposite side of the cover end, which is opposite from the motor arrangement; and

a first terminal, a second terminal and a third terminal, which are configured to supply three-phase electric power received from an outside to the plurality of windings on a phase-by-phase basis, are respectively insert molded in a first resin portion, a second resin portion and a third resin portion of the cover end to seal the first terminal, the second terminal and the third terminal from the liquid; and

a pump arrangement that includes a rotatable member, which is configured to rotate together with the rotor on another axial side of the motor arrangement to pump the liquid, wherein:

the first terminal, the second terminal and the third terminal are arranged one after another in this order at predetermined intervals in a circumferential direction on an opposite side of an imaginary plane that includes the central axis of the cover end, wherein the opposite side of the imaginary plane is opposite from another side of the imaginary plane where the discharge conduit is formed;

the cover end includes a plurality of transverse passages, which are formed by a plurality of slide mold parts, while each of the plurality of transverse passages radially communicates a corresponding one of the plurality of outer passages to an inner passage, which is formed around the tubular portion and is communicated with the discharge passage; and

the plurality of transverse passages includes:

a first transverse passage, which is formed between the first resin portion, in which the first terminal is insert molded, and the second resin portion, in which the second terminal is insert molded, in the circumferential direction, and

a second transverse passage, which is formed between the second resin portion, in which the second terminal is insert molded, and the third resin portion, in which the third terminal is insert molded, in the circumferential direction; and

the first transverse passage and the second transverse passage together are a V-shape, which diverges in a radially outer direction when viewed in the axial direction; and

inner surfaces of the V-shape that bound the second resin portion are configured to limit deterioration of a coaxiality of the tubular portion caused by a deformation at a time of molding.

2. The liquid pump according to claim 1 , wherein the first terminal, the second terminal and the third terminal are arranged at 60 degree intervals about the central axis of the cover end.

3. The liquid pump according to claim 1 , wherein the first terminal, the second terminal and the third terminal are respectively made of identical members, which are identical to each other.

4. The liquid pump according to claim 1 , wherein the first transverse passage and the second transverse passage are perpendicular to each other.

5. The liquid pump according to claim 1 , wherein the liquid pump is a fuel pump, which pumps fuel that serves as the liquid and is drawn from a fuel tank.

6. The liquid pump according to claim 1 , wherein:

the second resin portion includes a first side surface that forms the first transverse passage, and includes a second side surface that forms the second transverse passage; and

the first side surface is perpendicular to the second side surface when viewed in the axial direction.

7. A liquid pump configured to pump a liquid, comprising:

a motor arrangement that has:

a stator, in which a plurality of windings is wound around cores; and

a rotor, which includes a plurality of magnetic poles and is configured to rotate about a rotational axis of a shaft by a magnetic field generated at the stator;

a housing that is configured into a tubular form and receives the stator and the rotor, wherein a plurality of outer passages, each of which passes between an inner wall of the housing and an outer wall of the stator and extends through the motor arrangement in an axial direction, is formed in the housing;

a cover end that is resin molded integrally with one end portion of the stator on one axial side of the motor arrangement and closes an opening of the housing, wherein:

a tubular portion, which holds a bearing that rotatably supports one end portion of the shaft, is formed along a central axis at a side of the cover end where the motor arrangement is located;

a discharge conduit, which has a discharge passage in an inside of the discharge conduit, is formed at an opposite side of the cover end, which is opposite from the motor arrangement; and

a first terminal, a second terminal and a third terminal, which are configured to supply three-phase electric power received from an outside to the plurality of windings on a phase-by-phase basis, are respectively insert molded in a first resin portion, a second resin portion and a third resin portion of the cover end to seal the first terminal, the second terminal and the third terminal from the liquid; and

a pump arrangement that includes a rotatable member, which is configured to rotate together with the rotor on another axial side of the motor arrangement to pump the liquid, wherein:

the first terminal, the second terminal and the third terminal are arranged one after another in this order at predetermined intervals in a circumferential direction on an opposite side of an imaginary plane that includes the central axis of the cover end, wherein the opposite side of the imaginary plane is opposite from another side of the imaginary plane where the discharge conduit is formed;

the cover end includes a plurality of transverse passages, which are formed by a plurality of slide mold parts, while each of the plurality of transverse passages radially communicates a corresponding one of the plurality of outer passages to an inner passage, which is formed around the tubular portion and is communicated with the discharge passage; and

the plurality of transverse passages includes:

a first transverse passage, which is formed between the first resin portion, in which the first terminal is insert molded, and the second resin portion, in which the second terminal is insert molded, in the circumferential direction, and

a second transverse passage, which is formed between the second resin portion, in which the second terminal is insert molded, and the third resin portion, in which the third terminal is insert molded, in the circumferential direction;

the first transverse passage and the second transverse passage form a V-shape, which diverges in a radially outer direction when viewed in the axial direction;

the second resin portion includes a first side surface that forms the first transverse passage, and includes a second side surface that forms the second transverse passage; and

the first side surface is perpendicular to the second side surface when viewed in the axial direction.

8. The liquid pump according to claim 7 , wherein the first terminal, the second terminal and the third terminal are arranged at 60 degree intervals about the central axis of the cover end.

9. The liquid pump according to claim 7 , wherein the first terminal, the second terminal and the third terminal are respectively made of identical members, which are identical to each other.

10. The liquid pump according to claim 7 , wherein the first transverse passage and the second transverse passage are perpendicular to each other.

11. The liquid pump according to claim 7 , wherein the liquid pump is a fuel pump, which pumps fuel that serves as the liquid and is drawn from a fuel tank.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2023
From: DENSO CORPORATION
To: AISAN KOGYO KABUSHIKI KAISHA
Reel/Frame 064074/0010 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2016
From: NAGATA, KIYOSHI; HAYAKAWA, TETSUO; OOTAKE, MASAYA
To: DENSO CORPORATION
Reel/Frame 037756/0189 →
Priority Claims (1)
JP 2013-191594 · Sep 17, 2013 · national
Continuity (1)
Related Publication 20160201623A1 · Jul 14, 2016