Valve control system

By introducing a manual three-way L-type ball valve and a third power medium flow pipeline into the valve control system, combined with a solenoid valve and a power medium control valve, the problem that the valve control system can only work in the energized state is solved. This enables the valve to be opened and closed in both energized and de-energized states, improving ease of use.

CN224283639UActive Publication Date: 2026-05-26SICHUAN KCON VALVE MFG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SICHUAN KCON VALVE MFG
Filing Date
2025-05-29
Publication Date
2026-05-26

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    Figure CN224283639U_ABST
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Abstract

The utility model relates to the technical field of valves, in particular to a valve control system which comprises a first power medium circulation pipeline, an electromagnetic valve and a second power medium circulation pipeline, a manual three-way L-shaped ball valve and a third power medium circulation pipeline are arranged, and the second power medium circulation pipeline comprises a first pipe body and a second pipe body. One end of the first pipe body is connected with a second connector of the electromagnetic valve, the other end of the first pipe body is connected with a first connector of the ball valve, one end of the second pipe body is connected with a third connector of the ball valve, and the other end of the second pipe body is a single-action execution element connecting end. One end of the third power medium circulation pipeline is connected with the first power medium circulation pipeline, and the other end of the third power medium circulation pipeline is connected with the second connector of the ball valve. The valve control system can be used in the power-on state and the power-off state, the single-action executing element can be controlled to open the valve, and use of the valve is facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of valve technology, and in particular to a valve control system. Background Technology

[0002] To facilitate opening and closing valves, a common method is to use an actuator. The actuator mainly consists of a single-acting element and a valve control system that controls its movement. Currently, the single-acting element is either a pneumatic cylinder or a hydraulic cylinder. The valve control system includes a first power medium flow pipe, a solenoid valve, and a second power medium flow pipe. One end of the first power medium flow pipe is a power medium supply connection, and the other end is connected to the first port of the solenoid valve. One end of the second power medium flow pipe is connected to the second port of the solenoid valve, and the other end is the single-acting actuator connection. The power medium supply connection is connected to a power medium supply device, and the single-acting actuator connection is connected to the single-acting actuator. The power medium can be gas or hydraulic oil. The power medium supply device includes the power medium and a corresponding delivery pump. The working principle of this valve control system is as follows: When the solenoid valve is energized, its first and second ports are connected. The power medium from the power medium supply device flows sequentially through the first power medium flow pipe, the solenoid valve, and the second power medium flow pipe into the single-acting actuator, causing the single-acting actuator to open or close the valve.

[0003] Because solenoid valves require power to operate, the entire valve control system must also be powered on to control the single-acting actuator to open the valve. They cannot be used when power is off, which affects the operation of the valve. Utility Model Content

[0004] The technical problem solved by this invention is to provide a valve control system that can be used in the event of power failure.

[0005] The technical solution adopted by this utility model to solve its technical problem is: a valve control system, including a first power medium flow pipeline, a solenoid valve and a second power medium flow pipeline. One end of the first power medium flow pipeline is a power medium supply connection end, and the other end of the first power medium flow pipeline is connected to the first interface of the solenoid valve. One end of the second power medium flow pipeline is connected to the second interface of the solenoid valve, and the other end of the second power medium flow pipeline is a single-acting actuator connection end. It also includes a manual three-way L-type ball valve and a third power medium flow pipeline. The manual three-way L-type ball valve includes a ball valve first interface, a ball valve second interface and a ball valve third interface. The center lines of the ball valve first interface and the ball valve second interface are on the same straight line, and the center line of the ball valve third interface is perpendicular to the center line of the ball valve first interface.

[0006] The second power medium flow pipeline includes a first pipe body and a second pipe body. One end of the first pipe body is connected to the second interface of the solenoid valve, and the other end of the first pipe body is connected to the first interface of the ball valve. One end of the second pipe body is connected to the third interface of the ball valve, and the other end of the second pipe body is the connection end of the single-acting actuator. One end of the third power medium flow pipeline is connected to the first power medium flow pipeline, and the other end of the third power medium flow pipeline is connected to the second interface of the ball valve.

[0007] Furthermore, the solenoid valve is a two-position three-way solenoid valve.

[0008] Furthermore, the second pipe body includes a first pipe section and a second pipe section, and also includes a first power medium control valve and a fourth power medium flow pipe.

[0009] One end of the first pipe is connected to the third interface of the ball valve, and the other end of the first pipe is connected to the first interface of the first power medium control valve. One end of the fourth power medium flow pipe is connected to the first power medium flow pipe, and the other end of the fourth power medium flow pipe is connected to the second interface of the first power medium control valve. One end of the second pipe is connected to the third interface of the first power medium control valve, and the other end of the second pipe is the connection end of the single-acting actuator.

[0010] Furthermore, the first power medium control valve is either a pneumatic control valve or a hydraulic control valve.

[0011] Furthermore, the first pipe body includes a third pipe section and a fourth pipe section, as well as a second power medium control valve and a fifth power medium flow pipe;

[0012] One end of the third pipe is connected to the second interface of the solenoid valve, and the other end of the third pipe is connected to the first interface of the second power medium control valve. One end of the fifth power medium flow pipe is connected to the first power medium flow pipe, and the other end of the fifth power medium flow pipe is connected to the second interface of the second power medium control valve. One end of the fourth pipe is connected to the third interface of the second power medium control valve, and the other end of the fourth pipe is connected to the first interface of the ball valve.

[0013] Furthermore, the second power medium control valve is either a pneumatic control valve or a hydraulic control valve.

[0014] Furthermore, a filter pressure reducing valve is installed on the first power medium flow pipeline.

[0015] Furthermore, a safety valve is installed on the first power medium flow pipeline, and the safety valve is located behind the filter pressure reducing valve along the power medium flow direction.

[0016] The beneficial effects of this utility model are as follows: by setting a manual three-way L-type ball valve and a third power medium flow pipeline, the second power medium flow pipeline includes a first pipe body and a second pipe body. One end of the first pipe body is connected to the second interface of the solenoid valve, and the other end of the first pipe body is connected to the first interface of the ball valve. One end of the second pipe body is connected to the third interface of the ball valve, and the other end of the second pipe body is the connection end of a single-acting actuator. One end of the third power medium flow pipeline is connected to the first power medium flow pipeline, and the other end of the third power medium flow pipeline is connected to the second interface of the ball valve. The working principle of this valve control system is as follows: When the solenoid valve is energized, its first and second ports are connected. Manually turning the handle connects the first and third ports of the ball valve. The power medium flows sequentially through the first power medium flow pipe, the solenoid valve, the first pipe body, the manual three-way L-type ball valve (ball valve first and third ports), and the second pipe body into the single-acting actuator, causing the single-acting actuator to open the valve. When the solenoid valve is de-energized, it cannot operate. Manually turning the handle connects the second and third ports of the ball valve. The power medium flows sequentially through the first power medium flow pipe 1, the third power medium flow pipe, the manual three-way L-type ball valve (ball valve second and third ports), and the second pipe body 7 into the single-acting actuator, causing the single-acting actuator to open or close the valve. Therefore, this valve control system can be used in both energized and de-energized states, controlling the single-acting actuator to open the valve, thus facilitating valve operation. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the first embodiment of the valve control system of this utility model;

[0018] Figure 2 This is a schematic diagram of the second embodiment of the valve control system of this utility model;

[0019] Figure 3 This is a schematic diagram of the third embodiment of the valve control system of this utility model;

[0020] The following are labeled as follows: First power medium flow pipeline 1, solenoid valve 2, fifth power medium flow pipeline 3, manual three-way L-type ball valve 4, third power medium flow pipeline 5, first pipe body 6, second pipe body 7, first pipe section 8, second pipe section 9, first power medium control valve 10, fourth power medium flow pipeline 11, filter pressure reducing valve 12, safety valve 13, single-acting actuator 14, third pipe section 15, fourth pipe section 16, second power medium control valve 17. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0022] like Figure 1 As shown, the valve control system of this utility model includes a first power medium flow pipeline 1, a solenoid valve 2, and a second power medium flow pipeline 3. The solenoid valve 2 is a two-position three-way solenoid valve. One end of the first power medium flow pipeline 1 is a power medium supply connection end, and the other end of the first power medium flow pipeline 1 is connected to the first interface of the solenoid valve 2, which is a power medium inflow interface. One end of the second power medium flow pipeline is connected to the second interface of the solenoid valve 2, which is a power medium outflow interface. The other end of the second power medium flow pipeline is a single-acting actuator connection end. It also includes a manual three-way L-type ball valve 4 and a third power medium flow pipeline 5. The manual three-way L-type ball valve 4 includes a ball valve first interface, a ball valve second interface, and a ball valve third interface. The center lines of the ball valve first interface and the ball valve second interface are on the same straight line, and the center line of the ball valve third interface is perpendicular to the center line of the ball valve first interface.

[0023] The second power medium flow pipeline includes a first pipe body 6 and a second pipe body 7. One end of the first pipe body 6 is connected to the second interface of the solenoid valve 2, and the other end of the first pipe body 6 is connected to the first interface of the ball valve. One end of the second pipe body 7 is connected to the third interface of the ball valve, and the other end of the second pipe body 7 is the connection end of the single-acting actuator. One end of the third power medium flow pipeline 5 is connected to the first power medium flow pipeline 1, and the other end of the third power medium flow pipeline 5 is connected to the second interface of the ball valve.

[0024] The manual three-way L-type ball valve 4 can only connect two orthogonal ports. It cannot simultaneously maintain the connection of a third port. That is, the first and third ports of the ball valve can be connected, as can the second and third ports. However, the first and second ports cannot be connected to each other, nor can the first, second, and third ports be connected simultaneously. The manual three-way L-type ball valve 4 has two operating states: one where the first and third ports are connected, and another where manually turning the handle connects the second and third ports.

[0025] The power medium supply connection end is connected to the power medium supply device, and the single-acting actuator connection end is connected to the single-acting actuator 14. The single-acting actuator is a pneumatic cylinder or a hydraulic cylinder, and the power medium is the corresponding gas or hydraulic oil. The working principle of this valve control system is as follows: When the solenoid valve 2 is energized, the first port and the second port of the solenoid valve 2 are connected. The handle is manually turned to connect the first port and the third port of the ball valve. The power medium passes sequentially through the first power medium flow pipe 1, the solenoid valve 2, the first pipe body 6, and the manual three-way L-type ball valve. 4 (ball valve first port and ball valve third port) and the second pipe body 7 enter the single-acting actuator 14, causing the single-acting actuator 14 to open or close the valve; when the solenoid valve 2 is de-energized, the solenoid valve 2 cannot work. Manually turn the handle to connect the ball valve second port and the ball valve third port. The power medium enters the single-acting actuator 14 through the first power medium flow pipe 1, the third power medium flow pipe 5, the manual three-way L-type ball valve 4 (ball valve second port and ball valve third port), and the second pipe body 7, causing the single-acting actuator 14 to open or close the valve.

[0026] Specifically, for valves with large diameters and pressure ratings, it is sometimes necessary to install a power-controlled valve (i.e., a pneumatic or hydraulic valve) in the pipeline to increase the flow area. This power-controlled valve can be installed on the first pipe body 6 or the second pipe body 7. To ensure that the power-controlled valve can be used under both energized and de-energized conditions, when installed on the second pipe body 7, such as... Figure 2As shown, the second pipe body 7 includes a first pipe section 8 and a second pipe section 9, and also includes a first power medium control valve 10 and a fourth power medium flow pipe 11; one end of the first pipe section 8 is connected to the third interface of the ball valve, and the other end of the first pipe section 8 is connected to the first interface of the first power medium control valve 10; one end of the fourth power medium flow pipe 11 is connected to the first power medium flow pipe 1, and the other end of the fourth power medium flow pipe 11 is connected to the second interface of the first power medium control valve 10; one end of the second pipe section 9 is connected to the third interface of the first power medium control valve 10, and the other end of the second pipe section 9 is a single-acting actuator connection end. At this time, the first power medium control valve 10 is either a pneumatic or hydraulic control valve, selected according to the power medium. The function of the solenoid valve 2 is to control whether the first power medium control valve 10 is connected. The first power medium control valve 10 is a normally closed valve. When no power medium is introduced into the first port of the first power medium control valve 10, the first power medium control valve 10 is in a normally closed state, and the second port and the third port of the first power medium control valve 10 are not connected. When power medium is introduced into the first port of the first power medium control valve 10, the power medium causes the valve core of the first power medium control valve 10 to move, so that the first power medium control valve 10 is in an open state, and the second port and the third port of the first power medium control valve 10 are connected.The valve control system operates as follows: When solenoid valve 2 is energized, its first and second ports are connected. Manually turning the handle connects the first and third ports of the ball valve. The power medium then sequentially flows through the first power medium flow pipe 1, solenoid valve 2, first pipe body 6, manual three-way L-type ball valve 4 (ball valve first and third ports), and first pipe section 8 into the first power medium control valve 10. This power medium causes the valve core of the first power medium control valve 10 to move, connecting the second and third ports of the first power medium control valve 10, thus opening the valve. The power medium then sequentially flows through the first power medium flow pipe 1, fourth power medium flow pipe 11, first power medium control valve 10, and second pipe section 9 into the single-acting actuator. In component 14, the single-acting actuator 14 is activated to open or close the valve. When the solenoid valve 2 is de-energized, it cannot operate. The handle is manually turned to connect the second and third ports of the ball valve. First, the power medium flows sequentially through the first power medium flow pipe 1, the third power medium flow pipe 5, the manual three-way L-type ball valve 4 (the second and third ports of the ball valve), and the first pipe section 8 into the first power medium control valve 10. The second and third ports of the first power medium control valve 10 are connected, putting the first power medium control valve 10 in the open state. Then, the power medium flows sequentially through the first power medium flow pipe 1, the fourth power medium flow pipe 11, the first power medium control valve 10, and the second pipe section 9 into the single-acting actuator 14, activating the single-acting actuator 14 to open or close the valve.

[0027] When the power medium control valve is installed on the first pipe body 6, such as Figure 3As shown, the first pipe body 6 includes a third pipe section 15 and a fourth pipe section 16, and also includes a second power medium control valve 17 and a fifth power medium flow pipe 3; one end of the third pipe section 15 is connected to the second interface of the solenoid valve 2, and the other end of the third pipe section 15 is connected to the first interface of the second power medium control valve 17; one end of the fifth power medium flow pipe 3 is connected to the first power medium flow pipe 1, and the other end of the fifth power medium flow pipe 3 is connected to the second interface of the second power medium control valve 17; one end of the fourth pipe section 16 is connected to the third interface of the second power medium control valve 17, and the other end of the fourth pipe section 16 is connected to the first interface of the ball valve. At this time, the second power medium control valve 17 is either a pneumatic or hydraulic control valve, selected according to the power medium. The function of the solenoid valve 2 is to control whether the second power medium control valve 17 is connected. The second power medium control valve 17 is a normally closed valve. When no power medium is introduced into the first port of the second power medium control valve 17, the second power medium control valve 17 is in a normally closed state, and the second port and the third port of the second power medium control valve 17 are not connected. When power medium is introduced into the first port of the second power medium control valve 17, the power medium causes the valve core of the first power medium control valve 10 to move, causing the second power medium control valve 17 to be in an open state, and the second port and the third port of the second power medium control valve 17 are connected. The valve control system operates as follows: When solenoid valve 2 is energized, its first and second ports are connected. Manually rotating the handle connects the first and third ports of the ball valve. The power medium flows sequentially through the first power medium flow pipe 1, solenoid valve 2, and the third pipe section 15 into the second power medium control valve 17. This power medium causes the valve core of the first power medium control valve 10 to move, connecting the second and third ports of the second power medium control valve 17, thus opening the second power medium control valve 17. Then, the power medium flows sequentially through the first power medium flow pipe 1, the fifth power medium flow pipe... The power medium flows through pipe 3, the second power medium control valve 17, the fourth pipe section 16, the manual three-way L-type ball valve 4 (ball valve first port and ball valve third port), and the second pipe body 7 into the single-acting actuator 14, causing the single-acting actuator 14 to open or close the valve. When the solenoid valve 2 is de-energized, the solenoid valve 2 cannot work. The handle is manually turned to connect the second port and the third port of the ball valve. The power medium flows through the first power medium flow pipe 1, the third power medium flow pipe 5, the manual three-way L-type ball valve 4 (ball valve second port and ball valve third port), and the second pipe body 7 into the single-acting actuator 14, causing the single-acting actuator 14 to open or close the valve.

[0028] To improve the safety of the entire valve control system, for example... Figure 1 , Figure 2 and Figure 3As shown, a filter pressure reducing valve 12 and a safety valve 13 are installed on the first power medium flow pipeline 1. Along the power medium flow direction, the safety valve 13 is located behind the filter pressure reducing valve 12.

[0029] In summary, the valve control system of this utility model can be used in both energized and de-energized states, and can control the single-acting actuator 14 to open the valve, thus facilitating the use of the valve.

Claims

1. A valve control system, comprising a first power medium flow pipe (1), a solenoid valve (2), and a second power medium flow pipe, wherein one end of the first power medium flow pipe (1) is a power medium supply connection end, the other end of the first power medium flow pipe (1) is connected to the first interface of the solenoid valve (2), one end of the second power medium flow pipe is connected to the second interface of the solenoid valve (2), and the other end of the second power medium flow pipe is a single-acting actuator connection end, characterized in that: It also includes a manual three-way L-type ball valve (4) and a third power medium flow pipeline (5). The manual three-way L-type ball valve (4) includes a ball valve first interface, a ball valve second interface, and a ball valve third interface. The center lines of the ball valve first interface and the ball valve second interface are on the same straight line, and the center line of the ball valve third interface is perpendicular to the center line of the ball valve first interface. The second power medium flow pipeline includes a first pipe body (6) and a second pipe body (7). One end of the first pipe body (6) is connected to the second interface of the solenoid valve (2), and the other end of the first pipe body (6) is connected to the first interface of the ball valve. One end of the second pipe body (7) is connected to the third interface of the ball valve, and the other end of the second pipe body (7) is the connection end of the single-acting actuator. One end of the third power medium flow pipeline (5) is connected to the first power medium flow pipeline (1), and the other end of the third power medium flow pipeline (5) is connected to the second interface of the ball valve.

2. The valve control system as described in claim 1, characterized in that: Solenoid valve (2) is a two-position three-way solenoid valve.

3. The valve control system as described in claim 1, characterized in that: The second pipe body (7) includes a first pipe section (8) and a second pipe section (9), and also includes a first power medium control valve (10) and a fourth power medium flow pipe (11). One end of the first pipe section (8) is connected to the third interface of the ball valve, and the other end of the first pipe section (8) is connected to the first interface of the first power medium control valve (10). One end of the fourth power medium flow pipe (11) is connected to the first power medium flow pipe (1), and the other end of the fourth power medium flow pipe (11) is connected to the second interface of the first power medium control valve (10). One end of the second pipe section (9) is connected to the third interface of the first power medium control valve (10), and the other end of the second pipe section (9) is the connection end of the single-acting actuator.

4. The valve control system as described in claim 3, characterized in that: The first power medium control valve (10) is a pneumatic control valve or a hydraulic control valve.

5. The valve control system as described in claim 1, characterized in that: The first pipe body (6) includes a third pipe section (15) and a fourth pipe section (16), and also includes a second power medium control valve (17) and a fifth power medium flow pipe (3). One end of the third pipe section (15) is connected to the second interface of the solenoid valve (2), and the other end of the third pipe section (15) is connected to the first interface of the second power medium control valve (17). One end of the fifth power medium flow pipe (3) is connected to the first power medium flow pipe (1), and the other end of the fifth power medium flow pipe (3) is connected to the second interface of the second power medium control valve (17). One end of the fourth pipe section (16) is connected to the third interface of the second power medium control valve (17), and the other end of the fourth pipe section (16) is connected to the first interface of the ball valve.

6. The valve control system as described in claim 5, characterized in that: The second power medium control valve (17) is a pneumatic control valve or a hydraulic control valve.

7. The valve control system according to any one of claims 1 to 6, characterized in that: A filter pressure reducing valve (12) is installed on the first power medium flow pipeline (1).

8. The valve control system as described in claim 7, characterized in that: A safety valve (13) is installed on the first power medium flow pipeline (1). Along the power medium flow direction, the safety valve (13) is located behind the filter pressure reducing valve (12).