IP Library Granted Patent US 10,443,598
Granted Patent B2
US 10,443,598 · App. 15/386,824 · Granted Oct 15, 2019

Vane pump device for controlling force applied to vanes

Inventor: Toshio Nishikawa (Haga-gun, JP)
Assignee: Showa Corporation
F04C15/06F01C21/08F01C21/0809F01C21/0836F01C21/108F04C2/344F04C2/3446F04C2210/206F04C2240/30
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Quick Facts
Patent No.
US 10,443,598
App. No.
15/386,824
Granted
Oct 15, 2019
Kind
B2
Abstract

An embodiment provides a vane pump device. In the vane pump device, vane grooves of a rotor include columnar grooves which accommodate oil, and support the vanes. An inner-plate low pressure side recess portion is provided in an end surface of an inner plate along a rotation direction of the rotor, and supplies oil to the columnar grooves. It includes a low pressure side upstream recess portion, a low pressure side downstream recess portion, and a low pressure side connection recess portion through which the low pressure side upstream recess portion is connected to the low pressure side downstream recess portion. The width of the low pressure side upstream recess portion is equal to that of the low pressure side downstream recess portion. The width of the low pressure side connection recess portion is narrower than that of the low pressure side upstream recess portion.

Claims (40)

1. A vane pump device comprising:

multiple vanes;

a rotor that includes vane grooves which are recessed from an outer circumferential surface of the rotor such that the vanes are supported in such a way as to be configured to move in a radial direction of rotation, and which form center side spaces accommodating a working fluid on a rotation center side, and that rotates due to a rotating force received from a rotation shaft;

a cam ring that includes an inner circumferential surface facing the outer circumferential surface of the rotor, and surrounds the rotor; and

a cover member that is disposed on one end portion side of the cam ring in a direction of a rotation axis to cover an opening of the cam ring,

wherein a first recess portion and a second recess portion are provided in a cam ring side end surface of the cover member along a rotation direction of the rotor,

wherein the working fluid is supplied to the center side spaces through the first recess portion and the second recess portion,

wherein the first recess portion includes;

a first groove portion that accommodates the working fluid,

a second groove portion that is positioned on a downstream side of the first groove portion in the rotation direction, and

a third groove portion that connects the first groove portion and the second groove portion, and that reduces a passage of the working fluid flowing between the first groove portion and the second groove portion,

wherein a width of the first groove portion and a width of the second groove portion in the radial direction of rotation are the same,

wherein a width of the third groove portion being narrower than the width of the first groove portion in the radial direction of rotation is larger than a depth of the third groove portion,

wherein the depth of the third groove portion being shallower than a depth that of the first groove portion in the direction of the rotation axis is equal or smaller than 0.5 times and depth of the second groove poriton in the direction of the rotation axis, and

wherein the first recess portion is separated from the second recess portion in the rotation direction.

2. The vane pump device according to claim 1 , further comprising:

another cover member that is disposed on the other end portion side of the cam ring in the direction of the rotation axis to cover an opening of the cam ring,

wherein another recess portion and a through-hole are provided in a cam ring side end surface of the other cover member along the rotation direction of the rotor, and supply the working fluid to the center side spaces at a position facing the first recess portion.

3. The vane pump device according to claim 2 ,

wherein the through-hole is provided at a position facing the first groove portion, and a size of the through-hole is equal to the width of the first groove portion in the radial direction of rotation.

4. The vane pump device according to claim 1 ,

wherein the third groove portion includes multiple connection portions that connect the first groove portion and the second groove portion.

5. The vane pump device according to claim 1 ,

wherein the first recess portion is separated from the second recess portion so as not to communicate with each other.

6. The vane pump device according to claim 1 ,

wherein the third groove portion has a shape such that pressures of the working fluid inside the first groove portion and inside the second groove portion are determined by the shape.

7. A vane pump device comprising:

multiple vanes;

a rotor that includes vane grooves which are recessed from an outer circumferential surface of the rotor such that the vanes are supported in such a way as to be configured to move in a radial direction of rotation, and which form center side spaces accommodating a working fluid on a rotation center side, and that rotates due to a rotating force received from a rotation shaft;

a cam ring that includes an inner circumferential surface facing the outer circumferential surface of the rotor, and surrounds the rotor; and

a cover member that is disposed on one end portion side of the cam ring in a direction of a rotation axis to cover an opening of the cam ring,

wherein a first recess portion and a second recess portion are provided in a cam ring side end surface of the cover member along a rotation direction of the rotor,

wherein the working fluid is supplied to the center side spaces through the first recess portion and the second recess portion,

wherein the first recess portion includes;

a first groove portion that accommodates the working fluid,

a second groove portion that is positioned on a downstream side of the first groove portion in the rotation direction, and

a third groove portion that connects the first groove portion and the second groove portion, and that reduces a passage of the working fluid flowing between the first groove portion and the second groove portion,

wherein a width of the third groove portion being narrower than a width of the first groove portion in the radial direction of the rotation is larger than a depth of the third groove portion,

wherein the depth of the third groove portion being shallower than a depth that of the first groove portion in the direction of the rotation axis is equal or smaller than 0.5 times a depth of the second groove portion in the direction of the rotation axis, and

wherein the first recess portion is separated from the second recess portion in the rotation direction.

Assignments (2)
MERGER Recorded Feb 2, 2022
From: SHOWA CORPORATION
To: HITACHI ASTEMO, LTD.
Reel/Frame 059682/0321 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2016
From: NISHIKAWA, TOSHIO
To: SHOWA CORPORATION
Reel/Frame 041133/0739 →
Priority Claims (1)
JP 2015-255415 · Dec 25, 2015 · national
Continuity (1)
Related Publication 20170184102A1 · Jun 29, 2017