Coned disc spring
US-9400027-B2 · Jul 26, 2016 · US
US11542931B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11542931-B2 |
| Application number | US-201816763800-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 12, 2018 |
| Priority date | Nov 15, 2017 |
| Publication date | Jan 3, 2023 |
| Grant date | Jan 3, 2023 |
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Official abstract text for this publication.
A capacity control valve includes: a valve body (10) having first communication passages (11), second communication passages (12), third communication passages (13), and a main valve seat (15a); a valve element (20) having an intermediate communication passage (29), a main valve portion (21c) and an auxiliary valve portion (23d); a pressure-sensitive element (24) disposed in the valve body (10); a solenoid (30) that drives a rod (36); a first biasing member (43) that biases in a valve closing direction of the main valve portion (21c); and a second biasing member (44) that biases in a valve opening direction of the main valve portion (21c), wherein the rod (36) moves relative to the valve element (20) to press the pressure-sensitive element (24). The capacity control valve can efficiently discharge a liquid refrigerant and can decrease a driving force of a compressor during a liquid refrigerant discharge operation.
Opening claim text (preview).
The invention claimed is: 1. A capacity control valve that controls a flow rate or a pressure of a variable capacity compressor according to a valve opening of a valve unit, characterized by comprising: a valve body including first communication passages that pass fluid under a first pressure, second communication passages that are arranged adjacent to the first communication passages and pass fluid under a second pressure, third communication passages that pass fluid under a third pressure, and a main valve seat that is disposed in a valve hole communicating the second communication passages and the third communication passages; a pressure-sensitive element that is arranged in the valve body on the side of the third communication passages and extends and contracts in response to an ambient pressure; a valve element including an intermediate communication passage that communicates the first communication passages and the third communication passages, a main valve portion that is separated from and comes into contact with the main valve seat to open and close the valve hole, and an auxiliary valve portion that is separated from and comes into contact with the pressure-sensitive element to open and close the intermediate communication passage; a solenoid that drives a rod; a first biasing member that biases in a valve closing direction of the main valve portion; and a second biasing member that biases in a valve opening direction of the main valve portion, wherein that a biasing force of the second biasing member is larger than a biasing force of the first biasing member, that the rod moves relative to the valve element to press the pressure-sensitive element, that the second biasing member is arranged in the intermediate communication passage, and that the second biasing member is disposed between a flange portion of a head portion of the pressure-sensitive element and a stepped portion formed on the rod. 2. The capacity control valve according to claim 1 , wherein the first biasing member is disposed between the solenoid and the valve element. 3. The capacity control valve according to claim 1 , wherein the solenoid further includes a plunger connected to the rod, a core arranged between the plunger and the valve body, and an electromagnetic coil, and the second biasing member is disposed between the plunger and the core. 4. The capacity control valve according to claim 1 , wherein the rod includes a locking portion that is separated from and comes contact with the valve element. 5. The capacity control valve according to claim 1 , wherein the rod includes a pressing portion that presses the pressure-sensitive element. 6. The capacity control valve according to claim 1 , wherein the first pressure is a suction pressure of the variable capacity compressor, the second pressure is a discharge pressure of the variable capacity compressor, and the third pressure is a pressure in a crank chamber of the variable capacity compressor. 7. The capacity control valve according to claim 1 , wherein the first pressure is a pressure in a crank chamber of the variable capacity compressor, the second pressure is a discharge pressure of the variable capacity compressor, and the third pressure is a suction pressure of the variable capacity compressor. 8. A method of controlling a capacity control valve, comprising using the capacity control valve according to claim 1 , when the auxiliary valve portion is in an open state, bringing the main valve portion from a closed state into an open state. 9. The capacity control valve according to claim 2 , wherein the solenoid further includes a plunger connected to the rod, a core arranged between the plunger and the valve body, and an electromagnetic coil, and the second biasing member is disposed between the plunger and the core.
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