IP Library Granted Patent US 7,441,563
Granted Patent B2
US 7,441,563 · App. 11/706,789 · Granted Oct 28, 2008

Thermostatic expansion valve with check valve

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Quick Facts
Patent No.
US 7,441,563
App. No.
11/706,789
Granted
Oct 28, 2008
Kind
B2
Abstract

A valve is provided that comprises a valve body including an inlet, an outlet, and a check valve chamber having an opening through the side of the valve body. The valve has a cover secured within the side opening in the valve body. A first valve opening is disposed between the inlet chamber and outlet chamber. A control valve is movable relative to the first valve opening to regulate fluid flow through the first opening when fluid flow is in the inlet-to-outlet direction, and is movable to engage the first valve opening to restrict fluid flow in the outlet-to-inlet direction. The valve comprises a second valve opening disposed between the check valve chamber and the outlet chamber. A check valve member is movable relative to the second valve opening to restrict forward flow and permit reverse flow through the second valve opening.

Claims (41)

1. A valve for controlling bidirectional flow of fluid, comprising:

a valve body having an inlet chamber, an outlet chamber, a side chamber, and a passageway between the inlet chamber and side chamber, the passageway being entirely disposed within the valve body;

a cover secured over the side chamber in the valve body, said cover including a flat surface that is spaced apart from the second valve opening and spans across the entire opening area of the second valve opening;

a first valve opening disposed between the inlet chamber and outlet chamber;

a second valve opening disposed between the side chamber and outlet chamber;

a control valve element movable relative to the first valve opening to regulate fluid flow from the inlet through the outlet when fluid flow is in the inlet-to-outlet direction, the control valve element being movable to sealingly engage the first valve opening when fluid flow is in the outlet-to-inlet direction;

a check valve member disposed in the recess adjacent the second valve opening, the check valve member having a generally flat portion defining a first side that faces the second valve opening, a second side having a raised portion, and at least one generally flat aligning member depending from a peripheral edge of the flat portion, said at least one aligning member projecting generally orthogonally from the flat portion side that faces the second valve opening, and extending in a direction parallel with the direction of movement of the check valve member, the at least one aligning member being slidably disposed within a slot positioned outside the opening area of the second valve opening in the valve body, the check valve member being movable relative to the second valve opening in response to fluid pressure acting against the flat portion, said check valve member being movable to permit the generally flat portion side facing the second valve opening to engage the second valve opening to restrict fluid flow through the second valve opening when fluid flow is in the inlet-to-outlet direction, and movable away from the second valve opening to permit fluid flow through the second valve opening to the inlet chamber when fluid flow is in the outlet-to-inlet direction, wherein the at least one aligning member is configured to slide within the at least one slot to guide the movement of the check valve member relative to the second valve opening, and the raised portion is sized such that when the check valve member is moved away from the second valve opening, the raised portion engages the flat surface of said cover before the alignment member slides out of said slot, to thereby prevent said alignment member from sliding out of said slot.

2. The valve of claim 1 , wherein fluid pressure acting against the surface area of the check valve member holds the check valve member against the second valve opening, to restrict fluid flow from the inlet through the second valve opening to the outlet when fluid is flowing in an inlet-to-outlet direction.

3. The valve of claim 1 wherein the check valve member further comprises a raised portion that is on the side opposite the at least one aligning member, and is adapted to limit the extent of movement of the check valve member away from the second valve opening.

4. The valve of claim 1 wherein the at least one aligning member comprises at least two members projecting from the flat portion of the check valve member.

5. The valve of claim 1 , wherein the cover is secured to the valve body for enclosing and sealing off the side chamber.

6. The valve of claim 5 wherein the cover plate is secured within the valve body side chamber by a means selected from one of a group consisting of an interference press fit, an adhesive, an ultrasonic weld, or a weld.

7. A valve for controlling bidirectional flow of fluid through the valve comprising:

a valve body having an inlet chamber and an outlet chamber;

a first valve opening disposed between the inlet chamber and outlet chamber;

a second valve opening disposed between the inlet chamber and outlet chamber;

a control valve element being movable relative to the first valve opening to regulate the rate of fluid flow from the inlet through the outlet, and being movable to sealingly engage the first valve opening to restrict fluid flow through the first valve opening;

a cover plate secured to the body for enclosing a chamber defined by a recess in the valve body adjacent the second valve opening; and

a check valve member disposed within the recess adjacent the second valve opening, the check valve member having a generally flat portion defining a side that faces the second valve opening, and at least one generally flat aligning member depending from a peripheral edge of the flat portion, said at least one aligning member projecting generally orthogonally from the flat portion side that faces the second valve opening, and extending in a direction parallel with the direction of movement of the check valve member, the at least one aligning member being slidably disposed within a slot positioned outside the opening area of the second valve opening in the valve body, the check valve member being movable relative to the second valve opening in response to fluid pressure acting against the flat portion, wherein said check valve member is movable to engage the second valve opening to prevent fluid flow through the second valve opening when fluid flow is in the inlet-to-outlet direction, and is movable to permit fluid flow through the second valve opening to the inlet when fluid flow is in the outlet-to-inlet direction; wherein the at least one aligning member is slidably disposed within at least one slot within the valve body so as to slide within the at least one slot to guide the movement of the check valve member relative to a valve opening within the valve body; and wherein the cover portion includes a flat surface that is spaced apart from the second valve opening and spans across the entire opening area of the second valve opening, and the check valve members raised portion is sized such that when the check valve member is moved away from the second valve opening, the raised portion engages the flat surface of said cover before the alignment member slides out of said slot, to thereby prevent said alignment member from sliding out of said slot.

8. A valve for controlling bidirectional flow of fluid through the valve comprising:

a valve body having an inlet chamber and an outlet chamber;

a first valve opening disposed between the inlet chamber and outlet chamber;

a second valve opening disposed between the inlet chamber and outlet chamber;

a control valve element being movable relative to the first valve opening to regulate the rate of fluid flow from the inlet through the outlet, and being movable to sealingly engage the first valve opening to restrict fluid flow through the first valve opening;

a check valve member disposed within a recess adjacent the second valve opening, the check valve member having a generally flat portion defining a side that faces the second valve opening, and at least one generally flat aligning member depending from a peripheral edge of the flat portion, said at least one aligning member projecting generally orthogonally from the flat portion side that faces the second valve opening, and extending in a direction parallel with the direction of movement of the check valve member, the at least one aligning member being slidably disposed within a slot positioned outside the opening area of the second valve opening in the valve body, the check valve member being movable relative to the second valve opening in response to fluid pressure acting against the flat portion, wherein said check valve member is movable to engage the second valve opening to prevent fluid flow through the second valve opening when fluid flow is in the inlet-to-outlet direction, and is movable to permit fluid flow through the second valve opening to the inlet when fluid flow is in the outlet-to-inlet direction; wherein the at least one aligning member is slidably disposed within at least one slot within the valve body so as to slide within the at least one slot to guide the movement of the check valve member relative to a valve opening within the valve body; and wherein the at least one alignment member received within the slot is intrinsically configured to restrict the rotation of the check valve member relative to the second valve opening.

9. The valve of claim 3 wherein the check valve member's raised portion is sized such that when the check valve member is moved away from the second valve opening, the raised portion engages the flat surface of said cover before the alignment member slides out of said slot, to thereby prevent said alignment member from sliding out of said slot.

10. The valve of claim 1 , where the at least one alignment member is configured to restrict the rotation of the check valve member relative to the second valve opening, as a result of the generally flat alignment member being received within the slot.

11. A valve for controlling bidirectional flow of fluid, comprising:

a valve body having an inlet chamber, an outlet chamber, a side chamber, and a passageway between the inlet chamber and side chamber, the passageway being entirely disposed within the valve body;

a cover secured over the side chamber in the valve body, said cover including a flat surface that is spaced apart from the second valve opening and spans across the entire opening area of the second valve opening;

a first valve opening disposed between the inlet chamber and outlet chamber;

a second valve opening disposed between the side chamber and outlet chamber;

a slot disposed in the valve body outside of but adjacent to the second valve opening;

a control valve element movable relative to the first valve opening to regulate fluid flow from the inlet through the outlet when fluid flow is in the inlet-to-outlet direction, the control valve element being movable to sealingly engage the first valve opening when fluid flow is in the outlet-to-inlet direction; and

a check valve member disposed in the recess adjacent the second valve opening, the check valve member having:

a generally flat portion having a sealing surface on a first side that faces the second valve opening,

a raised portion on the generally flat portion, disposed on the side opposite the sealing surface, and

a generally flat aligning member depending from a peripheral edge of the generally flat portion and projecting generally orthogonally from the sealing surface side towards the second valve opening, said generally flat alignment member being slidably disposed within said slot, such that the generally flat alignment member is configured to restrict the rotation of the check valve member relative to the second valve opening as a result of the generally flat alignment member being received within said slot,

wherein the check valve member is movable in response to fluid pressure acting against the flat portion to permit the sealing surface to engage the second valve opening to restrict fluid flow through the second valve opening when fluid flow is in the inlet-to-outlet direction, and movable away from the second valve opening to permit fluid flow through the second valve opening to the inlet chamber when fluid flow is in the outlet-to-inlet direction,

wherein said raised portion is sized such that when the check valve member is moved away from the second valve opening, the raised portion engages the flat surface of said cover before the alignment member slides out of said slot, to thereby prevent said alignment member from sliding out of said slot.

12. The valve of claim 11 wherein fluid pressure acting against the generally flat portion of the check valve member holds the check valve member against the second valve opening, to restrict fluid flow from the inlet through the second valve opening to the outlet when fluid is flowing in an inlet-to-outlet direction.

Assignments (6)
SECURITY INTEREST Recorded Jul 9, 2024
From: COPELAND COMFORT CONTROL LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 068255/0466 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND COMFORT CONTROL LP
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 064278/0165 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND COMFORT CONTROL LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 064280/0333 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND COMFORT CONTROL LP
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 064286/0001 →
SUPPLEMENTAL IP ASSIGNMENT AGREEMENT Recorded May 30, 2023
From: EMERSON ELECTRIC CO.
To: COPELAND COMFORT CONTROL LP
Reel/Frame 063804/0611 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2007
From: HUIQING, LI; CAMPBELL, RONALD L.; NOBLE, MICHAEL J.; SCIUTO, GEORGE J.
To: EMERSON ELECTRIC CO.
Reel/Frame 018994/0280 →