IP Library Granted Patent US 10,704,514
Granted Patent B2
US 10,704,514 · App. 16/093,749 · Granted Jul 7, 2020

Fuel supply device

Inventors: Kiyomori Kobayashi (Kariya, JP); Rui Adachi (Kariya, JP); Norihiro Hayashi (Kariya, JP)
Assignee: DENSO CORPORATION
F02M37/103B60K15/03F02M37/00F02M37/0017F02M37/10B60K2015/03111B60K2015/03243B60K2015/03453B60K2015/03467
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Quick Facts
Patent No.
US 10,704,514
App. No.
16/093,749
Granted
Jul 7, 2020
Kind
B2
Abstract

A coupling stay includes a support inner peripheral surface extending along a rotational axis and providing radial support to a rotatable shaft portion of a pump unit, which extends along the rotational axis. A support lateral surface extends in a longitudinal direction and provides thrust support to the pump unit. The support inner peripheral surface extends from the support lateral surface in the transverse direction. A lock claw projects from the coupling stay. A lock projection projects from the pump unit and is operable to lock rotation of the pump unit relative to the coupling stay about the rotational axis upon fitting of the lock projection between the support lateral surface and the lock claw. A height of a contact part of the lock projection, which contacts the support lateral surface, is limited to be equal to or lower than the rotational axis.

Claims (20)

1. A fuel supply device that is configured to supply fuel from an inside of a fuel tank to an internal combustion engine, the fuel supply device comprising:

a cover body that is installed to an upper wall of the fuel tank;

a pump unit, in which one of a rotatable shaft portion and a support inner peripheral surface is formed to extend along a rotational axis that extends in a transverse direction, wherein a bottom of the pump unit is configured to be placed on a bottom wall of the fuel tank, and the pump unit is configured to discharge the fuel, which is in the inside of the fuel tank, toward the internal combustion engine;

a coupling stay, in which another one of the rotatable shaft portion and the support inner peripheral surface is formed to extend along the rotational axis, wherein:

the coupling stay couples between the cover body and the pump unit;

the another one of the rotatable shaft portion and the support inner peripheral surface provides radial support to the one of the rotatable shaft portion and the support inner peripheral surface;

a support lateral surface of the coupling stay, which extends in a longitudinal direction of the coupling stay, provides thrust support to the pump unit; and

the another one of the rotatable shaft portion and the support inner peripheral surface extends from the support lateral surface in the transverse direction;

a lock claw that projects from the coupling stay; and

a lock projection that projects from the pump unit and is operable to lock rotation of the pump unit relative to the coupling stay about the rotational axis upon fitting of the lock projection between the support lateral surface and the lock claw, wherein in a state where the lock projection is fitted between the support lateral surface and the lock claw while the bottom of the pump unit is placed on the bottom wall of the fuel tank, a contact surface of the lock projection, which contacts the support lateral surface, is entirely placed on a side of the rotational axis where the bottom wall of the fuel tank is placed in the longitudinal direction of the coupling stay.

2. The fuel supply device according to claim 1 , wherein the coupling stay includes a resilient support portion, which is provided to the another one and is resiliently deformable.

3. The fuel supply device according to claim 1 , wherein the rotatable shaft portion, which is formed as the one in the pump unit and extends along the rotational axis, is fitted to a radially inner side of the support inner peripheral surface that is formed as the another one at the coupling stay.

4. The fuel supply device according to claim 3 , wherein the support inner peripheral surface is formed by an inner peripheral surface of an elongated hole that forms a space on a side of the rotatable shaft portion, at which the bottom wall is placed, in the coupling stay.

5. The fuel supply device according to claim 3 , wherein:

a diameter of the rotatable shaft portion is increased at a distal end part of the rotatable shaft portion located at a projecting side of the rotatable shaft portion; and

the distal end part of the rotatable shaft portion is engaged to the coupling stay on an opposite side of the coupling stay that is opposite from the support lateral surface.

6. The fuel supply device according to claim 1 , wherein the pump unit includes an interposing portion that is interposed between the bottom wall and the coupling stay.

7. The fuel supply device according to claim 1 , further comprising a resilient member that exerts a restoring force against the coupling stay toward the bottom wall, wherein a line of action of the restoring force, which is exerted against the coupling stay, extends between a radial support part of the coupling stay, which supports the pump unit, and the contact part.

8. The fuel supply device according to claim 7 , wherein in the coupling stay, the radial support part and the contact part are decentered toward two peripheral edge parts, respectively, between which the rotational axis is interposed in another transverse direction that transverses the rotational axis.

9. The fuel supply device according to claim 1 , wherein a height of an uppermost end part of the lock claw in the longitudinal direction is set to be lower than a height of the rotational axis.

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 Oct 15, 2018
From: KOBAYASHI, KIYOMORI; ADACHI, RUI; HAYASHI, NORIHIRO
To: DENSO CORPORATION
Reel/Frame 047164/0815 →
Priority Claims (1)
JP 2016-84353 · Apr 20, 2016 · national
Continuity (1)
Related Publication 20190078541A1 · Mar 14, 2019