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Refrigerant Control Valve Unit

A technology of refrigerant and control valve, applied in the direction of valve device, coolant flow control, valve operation/release device, etc., can solve problems such as defects

Active Publication Date: 2019-07-12
AISIN SEIKI KK
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In this assumption, although the rotor can be reduced in diameter, it will cause the same disadvantages as described above.

Method used

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  • Refrigerant Control Valve Unit
  • Refrigerant Control Valve Unit
  • Refrigerant Control Valve Unit

Examples

Experimental program
Comparison scheme
Effect test

no. 1 approach

[0075] [First Embodiment: Basic Configuration]

[0076] Such as figure 1 As shown, the refrigerant control valve device V is installed in a vehicle, and is provided with: an inlet PS that receives cooling water (an example of refrigerant) from an engine E that is an internal combustion engine; The radiator hose 1 sends out to the radiator R; and the second discharge port P2 sends the cooling water to the heater tank H through the heater hose 2 . The engine E has a cylinder head Ea and a cylinder block Eb, and cooling water is supplied from the cylinder head Ea to the inlet PS of the refrigerant control valve device V. As shown in FIG. In addition, the cooling water supplied to the radiator R and the cooling water supplied to the heater tank H are sent from the water inlet valve 3 to the water pump 4 (W / P), and returned from the water pump 4 to the cylinder Eb of the engine E.

[0077] In addition, in this first embodiment, the cooling water from the refrigerant control valve...

no. 2 approach 〕

[0123] In this second embodiment, the refrigerant control valve device V having the same structure as the previous embodiment is used, but the flow direction of cooling water (an example of refrigerant) is reversed, and the first seal part 15 and the second seal part 19 is structured differently. In addition, in this 2nd Embodiment, the structure different from 1st Embodiment is extracted and demonstrated, and the code|symbol common to 1st Embodiment is attached|subjected to the structure common to the said embodiment.

no. 2 approach

[0124] [Second Embodiment: Basic Configuration]

[0125] Such as Figure 12 As shown, the refrigerant control valve device V is installed in a vehicle and includes: a discharge port US (an example of a discharge part) that returns cooling water (an example of refrigerant) from an engine E that is an internal combustion engine to the engine E; An introduction port U1 (an example of an introduction port), which is supplied with cooling water for the radiator R via the radiator hose 1 ; and a second introduction port U2 (an example of an introduction port), which is supplied via the heater hose 2 Cooling water for warm air water tank H. The engine E has a cylinder head Ea and a cylinder block Eb, and cooling water is supplied from the cylinder head Ea to the outlet valve 5 . The outlet valve 5 is configured to divert the cooling water to the radiator R and the heater tank H. As shown in FIG. In addition, the cooling water from the discharge port US is sent to the water pump 4 ...

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PUM

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Abstract

The present invention provides a refrigerant control valve device that suppresses enlargement and maintains good sealing performance. This refrigerant control valve device is configured such that a rotor is rotatably housed in a housing formed with a first discharge port and a second discharge port having a smaller diameter than the first discharge port, and an outer wall portion of the rotor is formed with a counter to the refrigerant for the first discharge port. The hole portion that controls the flow between the discharge port and the second discharge port, when the rotor is set to a certain rotation posture that sends the refrigerant to the second discharge port, the second seal portion of the second discharge port also contact with the edge of the hole.

Description

technical field [0001] The present invention relates to a refrigerant control valve device in which a rotor for controlling the flow of refrigerant is rotatably housed in a housing having a discharge port. Background technique [0002] As a refrigerant control valve device, Patent Document 1 discloses a technique in which a rotor (a cross-section adjusting member in the document) is rotatably arranged inside a casing. In this patent document 1, the opening formed on the outer periphery of the rotor and the opening formed on the housing (in this document, the opening of the connecting pipe) overlap each other so that the refrigerant can flow between the inside of the rotor and the opening. flow. [0003] In this patent document 1, the rotor is formed in a spherical shape, and an opening opened in a direction along the rotation axis and a plurality of openings corresponding to the mouth are formed on the spherical outer wall surface. [0004] Patent Document 2 discloses a te...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16K11/076F01P7/16F16K3/22F16K3/26
CPCF01P7/167F01P2007/146F16K5/0605F16K5/0678F16K5/201F16K11/085F16K11/0876F16K27/067F01P7/14F16K5/0663F16K31/043F16K31/54
Inventor 弓指直人丸山浩一古贺阳二郎铃木秀幸松坂正宣
Owner AISIN SEIKI KK