IP Library Granted Patent US 10,227,976
Granted Patent B2
US 10,227,976 · App. 14/870,162 · Granted Mar 12, 2019

High-pressure fuel pump

Inventor: Hiroki Inatani (Toyota, JP)
Assignee: DENSO CORPORATION
F04B53/143F02M59/102F02M59/442F04B1/0448F04B9/042F04B17/05F04B53/02F04B53/14F04B53/16F02M2200/8061F16J9/18
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Quick Facts
Patent No.
US 10,227,976
App. No.
14/870,162
Granted
Mar 12, 2019
Kind
B2
Abstract

A pump body includes a pump inserted portion inserted in a pump mount hole. A cylinder has a compression chamber at one end side and opens in an end surface of the pump inserted portion at the other end side. A plunger is actuated by a cam and is movable in the cylinder. A seal member restricts fuel in the compression chamber to leak through a slidable gap between the plunger and the cylinder and restricts lubricating oil flowing through the slidable gap into the compression chamber. A retaining member retains the seal member at a predetermined position in the axial direction and restricts the plunger from falling out of the cylinder. The retaining member is press-fitted to an end of the pump inserted portion.

Claims (58)

1. A high-pressure fuel pump comprising:

a pump body including a pump inserted portion, which is configured to be inserted in a pump mount hole on a side of an engine;

a cylinder extending in an axial direction of the pump body, the cylinder having a compression chamber on one end side in the axial direction, the cylinder opening in an axial end surface of the pump inserted portion on an other end side in the axial direction;

a plunger inserted in the cylinder, the plunger configured to be actuated by a cam, which is equipped to a shaft on the side of the engine, and movable back and forth in the cylinder;

a seal member configured to restrict fuel in the compression chamber from leaking through a slidable gap, which is between the plunger and the cylinder, to the side of the engine, the seal member further configured to restrict lubricating oil on the side of the engine from flowing through the slidable gap into the compression chamber; and

a retaining member configured to retain the seal member at a predetermined position in the axial direction and to restrict directly or indirectly the plunger from falling out of the cylinder when being mounted to the side of the engine, wherein

the retaining member is press-fitted to an end of the pump inserted portion,

the plunger has a plunger sliding portion on the one end side in the axial direction and a small-diameter tubular portion on the other end side in the axial direction,

the small-diameter tubular portion is reduced in outer diameter relative to the plunger sliding portion to form a step between the small-diameter tubular portion and the plunger sliding portion,

the small-diameter tubular portion is projected from an interior of the cylinder toward the cam,

the retaining member has

a press-fitting tubular portion on the one end side in the axial direction and

a stepped portion on an inner circumferential periphery on the other end side relative to the press-fitting tubular portion,

the step of the plunger is configured to make contact directly with the stepped portion and to be latched on the stepped portion to restrict the plunger from falling out, and

the seal member is disposed on the one end side of the stepped portion in the axial direction.

2. The high-pressure fuel pump according to claim 1 , wherein

the press-fitting tubular portion is at a radially outside in the retaining member

the press-fitting tubular portion is press-fitted to a radially outside of the pump inserted portion.

3. The high-pressure fuel pump according to claim 2 , wherein

the retaining member forms an annular sealing space with an outer circumferential periphery of the plunger, and

the seal member is located at the sealing space.

4. The high-pressure fuel pump according to claim 2 , wherein

the pump inserted portion forms an annular sealing space with an outer circumferential periphery of the plunger, and

the seal member is located at the sealing space.

5. The high-pressure fuel pump according to claim 4 , wherein

the press-fitting tubular portion is at a radially inside in the retaining member

the press-fitting tubular portion is press-fitted to a radially inside of the pump inserted portion.

6. The high-pressure fuel pump according to claim 1 , wherein

the step of the plunger is configured to make contact directly with the stepped portion without making contact with the sealing member and to be latched on the stepped portion to restrict the plunger from falling out.

7. A high-pressure fuel pump comprising:

a pump body including a pump inserted portion, which is configured to be inserted in a pump mount hole on a side of an engine;

a cylinder extending in an axial direction of the pump body, the cylinder having a compression chamber on one end side in the axial direction, the cylinder opening in an axial end surface of the pump inserted portion on an other end side in the axial direction;

a plunger inserted in the cylinder, the plunger configured to be actuated by a cam, which is equipped to a shaft on the side of the engine, and movable back and forth in the cylinder;

a seal member configured to restrict fuel in the compression chamber from leaking through a slidable gap, which is between the plunger and the cylinder, to the side of the engine, the seal member further configured to restrict lubricating oil on the side of the engine from flowing through the slidable gap into the compression chamber; and

a retaining member configured to retain the seal member at a predetermined position in the axial direction and to restrict directly or indirectly the plunger from falling out of the cylinder when being mounted to the side of the engine, wherein

the retaining member is press-fitted to an end of the pump inserted portion,

the plunger has a plunger sliding portion on the one end side in the axial direction and a small-diameter tubular portion on the other end side in the axial direction,

the small-diameter tubular portion is reduced in outer diameter relative to the plunger sliding portion to form a step between the small-diameter tubular portion and the plunger sliding portion,

the small-diameter tubular portion is projected from an interior of the cylinder toward the cam,

the retaining member has

a press-fitting tubular portion on the one end side in the axial direction and

an annular groove on an internal periphery on the other end side relative to the press-fitting tubular portion,

the annular groove is equipped with a snap ring, and

the step of the plunger is configured to make contact directly with the snap ring and to be latched on the snap ring to restrict the plunger from falling out.

8. The high-pressure fuel pump according to claim 7 , wherein

the retaining member has a press-fitting tubular portion at a radially outside on the one end side in the axial direction, and

the press-fitting tubular portion is press-fitted to a radially outside of the pump inserted portion.

9. The high-pressure fuel pump according to claim 7 , wherein

the retaining member has a press-fitting tubular portion at a radially inside on the one end side in the axial direction, and

the press-fitting tubular portion is press-fitted to a radially inside of the pump inserted portion.

10. The high-pressure fuel pump according to claim 8 , wherein

the retaining member forms an annular sealing space with an outer circumferential periphery of the plunger, and

the seal member is located at the sealing space.

11. The high-pressure fuel pump according to claim 8 , wherein

the pump inserted portion forms an annular sealing space with an outer circumferential periphery of the plunger, and

the seal member is located at the sealing space.

12. The high-pressure fuel pump according to claim 7 , wherein

the step of the plunger is configured to make contact directly with the snap ring without making contact with the sealing member and to be latched on the snap ring to restrict the plunger from falling out.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2015
From: INATANI, HIROKI
To: DENSO CORPORATION
Reel/Frame 036689/0175 →
Priority Claims (1)
JP 2015-15277 · Jan 29, 2015 · national
Continuity (1)
Related Publication 20160222960A1 · Aug 4, 2016