IP Library › Granted Patent US 11,306,645
Granted Patent B2
US 11,306,645 · App. 16/985,698 · Granted Apr 19, 2022

Cooling water control valve device

Inventors: Ryo Sano (Kariya, JP); Yosuke Tanaka (Kariya, JP)
Assignee: DENSO CORPORATION
F01P7/14F16K3/265E21B33/038F01P2007/146F16L25/12
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Quick Facts
Patent No.
US 11,306,645
App. No.
16/985,698
Granted
Apr 19, 2022
Kind
B2
Abstract

A housing unit includes a cylindrical passage member, through which cooling water flows. A valve unit includes a valve main body rotatable around its axis and a valve opened portion formed in an outer peripheral surface of the valve main body, through which the cooling water can pass. A valve seat unit includes a positioned member and a valve seat surface. An outer peripheral surface of the positioned member is positioned in a radial direction by an inner peripheral surface of the cylindrical passage member and the positioned member is movable in an axial direction in a reciprocal manner. The valve seat surface holds a fluid tight condition between the valve seat surface and the valve main body when it is in contact with the outer peripheral surface of the valve main body. A biasing member biases the valve seat unit in such a way that the valve seat surface is pushed to the outer peripheral surface of the valve main body. The cylindrical passage member includes a groove formed in an inner peripheral surface thereof at least in a part of an overlapping area, at which the cylindrical passage member and the positioned member overlap each other in the axial direction. The groove is recessed in a radial-outward direction from the inner peripheral surface.

Claims (42)

1. A cooling water control valve device for controlling a flow amount of cooling water passing through an internal combustion engine comprising:

a housing unit having a cylindrical passage member, through which the cooling water flows;

a valve unit having a valve main body rotatable around its axis and a valve opened portion formed at an outer peripheral surface of the valve main body, through which the cooling water passes;

a valve seat unit having a positioned member of a cylindrical shape or an annular shape and a valve seat surface of an annular shape, wherein an outer peripheral surface of the positioned member is positioned by an inner peripheral surface of the cylindrical passage member and the positioned member is movable in an axial direction of the positioned member in a reciprocal manner, and wherein the valve seat surface is capable of holding a fluid tight condition between the valve main body and the valve seat surface when the valve seat surface is in contact with the outer peripheral surface of the valve main body on an axial side of the positioned member;

a biasing member for biasing the valve seat unit in such a way that the valve seat surface is pushed to the outer peripheral surface of the valve main body; and

multiple grooves formed in the cylindrical passage member at least in a part of an overlapping area, at which the cylindrical passage member and the positioned member overlap each other in an axial direction of the cylindrical passage member,

wherein each of the grooves is formed in the inner peripheral surface of the cylindrical passage member in such a way that the groove is recessed in a radial-outward direction of the cylindrical passage member from the inner peripheral surface,

wherein each of the grooves extends in the axial direction of the cylindrical passage member, and

wherein the multiple grooves are arranged in a circumferential direction of the cylindrical passage member.

2. A cooling water control valve device for controlling a flow amount of cooling water passing through an internal combustion engine comprising:

a housing unit having a cylindrical passage member, through which the cooling water flows;

a valve unit having a valve main body rotatable around its axis and a valve opened portion formed at an outer peripheral surface of the valve main body, through which the cooling water passes;

a valve seat unit having a positioned member of a cylindrical shape or an annular shape and a valve seat surface of an annular shape, wherein an inner peripheral surface of the positioned member is positioned by an outer peripheral surface of the cylindrical passage member and the positioned member is movable in an axial direction of the positioned member in a reciprocal manner, and wherein the valve seat surface is capable of holding a fluid tight condition between the valve main body and the valve seat surface when the valve seat surface is in contact with the outer peripheral surface of the valve main body on an axial side of the positioned member;

a biasing member for biasing the valve seat unit in such a way that the valve seat surface is pushed to the outer peripheral surface of the valve main body; and

multiple grooves formed in the cylindrical passage member at least in a part of an overlapping area, at which the cylindrical passage member and the positioned member overlap each other in an axial direction of the cylindrical passage member,

wherein each of the grooves is formed in the outer peripheral surface of the cylindrical passage member in such a way that the groove is recessed in a radial-inward direction of the cylindrical passage member from the outer peripheral surface,

wherein each of the grooves extends in the axial direction of the cylindrical passage member, and

wherein the multiple grooves are arranged in a circumferential direction of the cylindrical passage member.

3. The cooling water control valve device according to claim 1 , wherein

the multiple grooves are formed in the circumferential direction of the cylindrical passage member,

at least two of the multiple grooves are connected in the circumferential direction to form a connecting portion, and

a profile of the connecting portion on a cross section perpendicular to an axis of the cylindrical passage member is formed by a curved line or a straight line, which is protruded in a radial direction of the cylindrical passage member.

4. The cooling water control valve device according to claim 1 , wherein

the multiple grooves are formed at equal intervals in the circumferential direction of the cylindrical passage member.

5. A cooling water control valve device for controlling a flow amount of cooling water passing through an internal combustion engine comprising:

a housing unit having a cylindrical passage member, through which the cooling water flows;

a valve unit having a valve main body rotatable around its axis and a valve opened portion formed at an outer peripheral surface of the valve main body, through which the cooling water passes;

a valve seat unit having a positioned member of a cylindrical shape or an annular shape and a valve seat surface of an annular shape, wherein an outer peripheral surface of the positioned member is positioned by an inner peripheral surface of the cylindrical passage member and the positioned member is movable in an axial direction of the positioned member in a reciprocal manner, and wherein the valve seat surface is capable of holding a fluid tight condition between the valve main body and the valve seat surface when the valve seat surface is in contact with the outer peripheral surface of the valve main body on an axial side of the positioned member;

a biasing member for biasing the valve seat unit in such a way that the valve seat surface is pushed to the outer peripheral surface of the valve main body; and

multiple grooves formed in the positioned member at least in a part of an overlapping area, at which the cylindrical passage member and the positioned member overlap each other in the axial direction of the positioned member,

wherein each of the grooves is formed in the outer peripheral surface of the positioned member in such a way that the groove is recessed in a radial-inward direction of the positioned member from the outer peripheral surface,

wherein each of the grooves extends in the axial direction of the positioned member, and

wherein the multiple grooves are arranged in a circumferential direction of the positioned member.

6. A cooling water control valve device for controlling a flow amount of cooling water passing through an internal combustion engine comprising:

a housing unit having a cylindrical passage member, through which the cooling water flows;

a valve unit having a valve main body rotatable around its axis and a valve opened portion formed at an outer peripheral surface, through which the cooling water passes;

a valve seat unit having a positioned member of a cylindrical shape or an annular shape and a valve seat surface of an annular shape, wherein an inner peripheral surface of the positioned member is positioned by an outer peripheral surface of the cylindrical passage member and the positioned member is movable in an axial direction of the positioned member in a reciprocal manner, and wherein the valve seat surface is capable of holding a fluid tight condition between the valve main body and the valve seat surface when the valve seat surface is in contact with the outer peripheral surface of the valve main body on an axial side of the positioned member;

a biasing member for biasing the valve seat unit in such a way that the valve seat surface is pushed to the outer peripheral surface of the valve main body; and

multiple grooves formed in the positioned member at least in a part of an overlapping area, at which the cylindrical passage member and the positioned member overlap each other in the axial direction of the positioned member,

wherein each of the grooves is formed in the inner peripheral surface of the positioned member in such a way that the groove is recessed in a radial-outward direction of the positioned member from the inner peripheral surface,

wherein each of the grooves extends in the axial direction of the positioned member, and

wherein the multiple grooves are arranged in a circumferential direction of the positioned member.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2020
From: SANO, RYO; TANAKA, YOSUKE
To: DENSO CORPORATION
Reel/Frame 053408/0713 →
Priority Claims (1)
JP JP2018-021003 · Feb 8, 2018 · national
Continuity (2)
Continuation PCTJP2019004483 · Feb 7, 2019
Related Publication 20200362747A1 · Nov 19, 2020
Cited By (1)
US 12,429,140