IP Library Granted Patent US 10,690,125
Granted Patent B2
US 10,690,125 · App. 16/085,428 · Granted Jun 23, 2020

Displacement control valve

Inventors: Masahiro Hayama (Tokyo, JP); Hideki Higashidozono (Tokyo, JP); Kohei Fukudome (Tokyo, JP); Daichi Kurihara (Tokyo, JP)
Assignee: EAGLE INDUSTRY CO., LTD.
F04B27/18F04B27/1804F04B49/12F16K11/02F16K11/025F16K11/0716F04B2027/1813F04B2027/1827F04B2027/1831F04B2027/1859F04B2201/0206
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Quick Facts
Patent No.
US 10,690,125
App. No.
16/085,428
Granted
Jun 23, 2020
Kind
B2
Abstract

A displacement control valve improved in the function of discharging a liquid refrigerant in a control chamber at startup achieves a reduction in startup time and an improvement in operating efficiency during control of a variable displacement compressor simultaneously. An opening area between a third valve section and a third valve seat surface in a control area to control the flow rate or pressure in a working control chamber is set smaller than an area of an auxiliary communicating passage, thereby reducing the minimum area of a Pc-Ps flow path in the control area.

Claims (41)

1. A displacement control valve that controls a flow rate or pressure in a working control chamber according to a degree of opening of a valve unit, comprising:

a valve body including a first valve chest that communicates with first communicating passages for passing fluid at control pressure, a second valve chest that has a second valve seat surface for a valve hole communicating with the first valve chest and communicates with second communicating passages for passing fluid at discharge pressure, and a third valve chest that communicates with third communicating passages for passing fluid at suction pressure and has a third valve seat surface;

a valve element disposed in the valve body and having an intermediate communicating passage communicating with the first valve chest and the third communicating passages, the valve element having a second valve section that separates from and comes into contact with the second valve seat surface to open and close the valve hole communicating with the first valve chest and the second valve chest, a third valve section that opens and closes opposite to, and in conjunction with, the second valve section and separates from and comes into contact with the third valve seat surface to open and close communication between the intermediate communicating passage and the third communicating passages, and a first valve section that is disposed in the first valve chest and opens and closes in the same direction as, and in conjunction with, the second valve section;

a pressure-sensitive element that is disposed in the first valve chest and extends and contracts in response to suction pressure, the pressure-sensitive element having, at an extending and contracting free end thereof, a valve seat that separates from and comes into contact with the first valve section to open and close communication between the first valve chest and the intermediate communicating passage;

an auxiliary communicating passage provided in the first valve section in the first valve chest or in the valve seat for the first valve section, for enabling communication between an interior of the first valve chest and the intermediate communicating passage; and

a solenoid unit mounted to the valve body for actuating the valve element in a travel direction to open and close the valve sections of the valve element according to a current, wherein

an opening area between the third valve section and the third valve seat surface in a control area to control the flow rate or pressure in the working control chamber is set smaller than an area of the auxiliary communicating passage, and

a maximum opening area between the third valve section and the third valve seat surface with the second valve section in a closed state is set equal to or substantially equal to the area of the auxiliary communicating passage.

2. The displacement control valve according to claim 1 , wherein in the course of travel of the valve element from a closed state of the second valve section to a closed state of the third valve section, production of the opening area between the third valve section and the third valve seat surface changes from production by a travel direction gap in the travel direction of the valve element to production by a radial gap in a radial direction that is at right angles to the travel direction of the valve element, and the radial gap is set smaller than the area of the auxiliary communicating passage.

3. The displacement control valve according to claim 2 , wherein the third valve seat surface is formed in a stepped shape including a large-diameter portion extending on a second valve chest side in the travel direction of the valve element, a valve seat extending continuously from the large-diameter portion in a direction that is at substantially right angles to the travel direction of the valve element, and a small-diameter portion extending continuously from the valve seat toward a proximal end, and the third valve section opposite the third valve seat surface has an opposing surface portion that is opposite the large-diameter portion and is smaller in diameter than the large-diameter portion and larger in diameter than the small-diameter portion, and a contact portion that can be brought into contact with the valve seat.

4. The displacement control valve according to claim 2 , wherein the third valve seat surface is formed in a cylindrical shape having an inner-diameter surface portion, an outer-diameter surface portion, and a valve seat extending in a direction that is at right angles to the travel direction of the valve element, and the third valve section opposite the third valve seat surface is formed in a stepped shape including an outer-diameter surface portion larger in diameter than the inner-diameter surface portion, a contact portion that extends continuously from the outer-diameter surface portion of the third valve section in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element, and can be brought into contact with the valve seat, an inclined portion that extends continuously from the contact portion, is smaller in diameter than the inner-diameter surface portion, and is inclined radially inwardly away from the second valve section, and a step extending continuously from the inclined portion in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element.

5. The displacement control valve according to claim 1 , wherein the third valve seat surface is formed in a stepped shape including a large-diameter portion extending on a second valve chest side in the travel direction of the valve element, a valve seat extending continuously from the large-diameter portion in a direction that is at substantially right angles to the travel direction of the valve element, and a small-diameter portion extending continuously from the valve seat toward a proximal end, and the third valve section opposite the third valve seat surface has an opposing surface portion that is opposite the large-diameter portion and is smaller in diameter than the large-diameter portion and larger in diameter than the small-diameter portion, and a contact portion that can be brought into contact with the valve seat.

6. The displacement control valve according to claim 5 , wherein the third valve seat surface is formed in a cylindrical shape having an inner-diameter surface portion, an outer-diameter surface portion, and a valve seat extending in a direction that is at right angles to the travel direction of the valve element, and the third valve section opposite the third valve seat surface is formed in a stepped shape including an outer-diameter surface portion larger in diameter than the inner-diameter surface portion, a contact portion that extends continuously from the outer-diameter surface portion of the third valve section in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element, and can be brought into contact with the valve seat, an inclined portion that extends continuously from the contact portion, is smaller in diameter than the inner-diameter surface portion, and is inclined radially inwardly away from the second valve section, and a step extending continuously from the inclined portion in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element.

7. The displacement control valve according to claim 1 , wherein the third valve seat surface is formed in a cylindrical shape having an inner-diameter surface portion, an outer-diameter surface portion, and a valve seat extending in a direction that is at right angles to the travel direction of the valve element, and the third valve section opposite the third valve seat surface is formed in a stepped shape including an outer-diameter surface portion larger in diameter than the inner-diameter surface portion, a contact portion that extends continuously from the outer-diameter surface portion of the third valve section in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element, and can be brought into contact with the valve seat, an inclined portion that extends continuously from the contact portion, is smaller in diameter than the inner-diameter surface portion, and is inclined radially inwardly away from the second valve section, and a step extending continuously from the inclined portion in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element.

8. A displacement control valve that controls a flow rate or pressure in a working control chamber according to a degree of opening of a valve unit, comprising:

a valve body including a first valve chest that communicates with first communicating passages for passing fluid at control pressure, a second valve chest that has a second valve seat surface for a valve hole communicating with the first valve chest and communicates with second communicating passages for passing fluid at discharge pressure, and a third valve chest that communicates with third communicating passages for passing fluid at suction pressure and has a third valve seat surface;

a valve element disposed in the valve body and having an intermediate communicating passage communicating with the first valve chest and the third communicating passages, the valve element having a second valve section that separates from and comes into contact with the second valve seat surface to open and close the valve hole communicating with the first valve chest and the second valve chest, a third valve section that opens and closes opposite to, and in conjunction with, the second valve section and separates from and comes into contact with the third valve seat surface to open and close communication between the intermediate communicating passage and the third communicating passages, and a first valve section that is disposed in the first valve chest and opens and closes in the same direction as, and in conjunction with, the second valve section;

a pressure-sensitive element that is disposed in the first valve chest and extends and contracts in response to suction pressure, the pressure-sensitive element having, at an extending and contracting free end thereof, a valve seat that separates from and comes into contact with the first valve section to open and close communication between the first valve chest and the intermediate communicating passage;

an auxiliary communicating passage provided in the first valve section in the first valve chest or in the valve seat for the first valve section, for enabling communication between an interior of the first valve chest and the intermediate communicating passage; and

a solenoid unit mounted to the valve body for actuating the valve element in a travel direction to open and close the valve sections of the valve element according to a current, wherein

an opening area between the third valve section and the third valve seat surface in a control area to control the flow rate or pressure in the working control chamber is set smaller than an area of the auxiliary communicating passage, and

in the course of travel of the valve element from a closed state of the second valve section to a closed state of the third valve section, production of the opening area between the third valve section and the third valve seat surface changes from production by a travel direction gap in the travel direction of the valve element to production by a radial gap in a radial direction that is at right angles to the travel direction of the valve element, and the radial gap is set smaller than the area of the auxiliary communicating passage.

9. The displacement control valve according to claim 8 , wherein the third valve seat surface is formed in a stepped shape including a large-diameter portion extending on a second valve chest side in the travel direction of the valve element, a valve seat extending continuously from the large-diameter portion in a direction that is at substantially right angles to the travel direction of the valve element, and a small-diameter portion extending continuously from the valve seat toward a proximal end, and the third valve section opposite the third valve seat surface has an opposing surface portion that is opposite the large-diameter portion and is smaller in diameter than the large-diameter portion and larger in diameter than the small-diameter portion, and a contact portion that can be brought into contact with the valve seat.

10. The displacement control valve according to claim 9 , wherein the third valve seat surface is formed in a cylindrical shape having an inner-diameter surface portion, an outer-diameter surface portion, and a valve seat extending in a direction that is at right angles to the travel direction of the valve element, and the third valve section opposite the third valve seat surface is formed in a stepped shape including an outer-diameter surface portion larger in diameter than the inner-diameter surface portion, a contact portion that extends continuously from the outer-diameter surface portion of the third valve section in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element, and can be brought into contact with the valve seat, an inclined portion that extends continuously from the contact portion, is smaller in diameter than the inner-diameter surface portion, and is inclined radially inwardly away from the second valve section, and a step extending continuously from the inclined portion in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element.

11. The displacement control valve according to claim 8 , wherein the third valve seat surface is formed in a cylindrical shape having an inner-diameter surface portion, an outer-diameter surface portion, and a valve seat extending in a direction that is at right angles to the travel direction of the valve element, and the third valve section opposite the third valve seat surface is formed in a stepped shape including an outer-diameter surface portion larger in diameter than the inner-diameter surface portion, a contact portion that extends continuously from the outer-diameter surface portion of the third valve section in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element, and can be brought into contact with the valve seat, an inclined portion that extends continuously from the contact portion, is smaller in diameter than the inner-diameter surface portion, and is inclined radially inwardly away from the second valve section, and a step extending continuously from the inclined portion in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element.

12. A displacement control valve that controls a flow rate or pressure in a working control chamber according to a degree of opening of a valve unit, comprising:

a valve body including a first valve chest that communicates with first communicating passages for passing fluid at control pressure, a second valve chest that has a second valve seat surface for a valve hole communicating with the first valve chest and communicates with second communicating passages for passing fluid at discharge pressure, and a third valve chest that communicates with third communicating passages for passing fluid at suction pressure and has a third valve seat surface;

a valve element disposed in the valve body and having an intermediate communicating passage communicating with the first valve chest and the third communicating passages, the valve element having a second valve section that separates from and comes into contact with the second valve seat surface to open and close the valve hole communicating with the first valve chest and the second valve chest, a third valve section that opens and closes opposite to, and in conjunction with, the second valve section and separates from and comes into contact with the third valve seat surface to open and close communication between the intermediate communicating passage and the third communicating passages, and a first valve section that is disposed in the first valve chest and opens and closes in the same direction as, and in conjunction with, the second valve section;

a pressure-sensitive element that is disposed in the first valve chest and extends and contracts in response to suction pressure, the pressure-sensitive element having, at an extending and contracting free end thereof, a valve seat that separates from and comes into contact with the first valve section to open and close communication between the first valve chest and the intermediate communicating passage;

an auxiliary communicating passage provided in the first valve section in the first valve chest or in the valve seat for the first valve section, for enabling communication between an interior of the first valve chest and the intermediate communicating passage; and

a solenoid unit mounted to the valve body for actuating the valve element in a travel direction to open and close the valve sections of the valve element according to a current, wherein

an opening area between the third valve section and the third valve seat surface in a control area to control the flow rate or pressure in the working control chamber is set smaller than an area of the auxiliary communicating passage, and

the third valve seat surface is formed in a stepped shape including a large-diameter portion extending on a second valve chest side in the travel direction of the valve element, a valve seat extending continuously from the large-diameter portion in a direction that is at substantially right angles to the travel direction of the valve element, and a small-diameter portion extending continuously from the valve seat toward a proximal end, and the third valve section opposite the third valve seat surface has an opposing surface portion that is opposite the large-diameter portion and is smaller in diameter than the large-diameter portion and larger in diameter than the small-diameter portion, and a contact portion that can be brought into contact with the valve seat.

13. A displacement control valve that controls a flow rate or pressure in a working control chamber according to a degree of opening of a valve unit, comprising:

a valve body including a first valve chest that communicates with first communicating passages for passing fluid at control pressure, a second valve chest that has a second valve seat surface for a valve hole communicating with the first valve chest and communicates with second communicating passages for passing fluid at discharge pressure, and a third valve chest that communicates with third communicating passages for passing fluid at suction pressure and has a third valve seat surface;

a valve element disposed in the valve body and having an intermediate communicating passage communicating with the first valve chest and the third communicating passages, the valve element having a second valve section that separates from and comes into contact with the second valve seat surface to open and close the valve hole communicating with the first valve chest and the second valve chest, a third valve section that opens and closes opposite to, and in conjunction with, the second valve section and separates from and comes into contact with the third valve seat surface to open and close communication between the intermediate communicating passage and the third communicating passages, and a first valve section that is disposed in the first valve chest and opens and closes in the same direction as, and in conjunction with, the second valve section;

a pressure-sensitive element that is disposed in the first valve chest and extends and contracts in response to suction pressure, the pressure-sensitive element having, at an extending and contracting free end thereof, a valve seat that separates from and comes into contact with the first valve section to open and close communication between the first valve chest and the intermediate communicating passage;

an auxiliary communicating passage provided in the first valve section in the first valve chest or in the valve seat for the first valve section, for enabling communication between an interior of the first valve chest and the intermediate communicating passage; and

a solenoid unit mounted to the valve body for actuating the valve element in a travel direction to open and close the valve sections of the valve element according to a current, wherein

an opening area between the third valve section and the third valve seat surface in a control area to control the flow rate or pressure in the working control chamber is set smaller than an area of the auxiliary communicating passage, and

the third valve seat surface is formed in a cylindrical shape having an inner-diameter surface portion, an outer-diameter surface portion, and a valve seat extending in a direction that is at right angles to the travel direction of the valve element, and the third valve section opposite the third valve seat surface is formed in a stepped shape including an outer-diameter surface portion larger in diameter than the inner-diameter surface portion, a contact portion that extends continuously from the outer-diameter surface portion of the third valve section in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element, and can be brought into contact with the valve seat, an inclined portion that extends continuously from the contact portion, is smaller in diameter than the inner-diameter surface portion, and is inclined radially inwardly away from the second valve section, and a step extending continuously from the inclined portion in a radially inward direction that is a direction at substantially right angles to the travel direction of the valve element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2018
From: HAYAMA, MASAHIRO; HIGASHIDOZONO, HIDEKI; FUKUDOME, KOHEI; KURIHARA, DAICHI
To: EAGLE INDUSTRY CO., LTD.
Reel/Frame 046881/0619 →
Priority Claims (1)
JP 2016-054050 · Mar 17, 2016 · national
Continuity (1)
Related Publication 20190078562A1 · Mar 14, 2019
Cited By (11)
US 12,196,464 US 12,264,743 US 12,264,744 US 12,276,346 US 12,297,913 US 12,298,048 US 12,359,729 US 12,398,822 US 12,435,794 US 12,435,796 US 12,510,168