Intelligent valve

By designing an intelligent valve with a stainless steel collection box and a porous flow plate, the problem of not being able to sample and inspect the flowing liquid at any time in the existing technology has been solved, achieving efficient flow and impurity filtration, and reducing production costs and operating difficulty.

CN121897747APending Publication Date: 2026-04-21邱蓉
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
邱蓉
Filing Date
2023-12-28
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing smart valves cannot perform real-time sampling inspections of the flowing liquid, and are time-consuming and labor-intensive.

Method used

An intelligent valve was designed, comprising a stainless steel collection box, a rotating rod, a sealing plate, and a flow plate. The rotation of the rotating rod controls the flow and sealing. Combined with the stainless steel collection box and the porous flow plate, it enables liquid sampling and impurity filtration, preventing blockage.

Benefits of technology

This enables random sampling inspection of valves, improving flow efficiency, preventing blockages, and reducing production costs and operational difficulty.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of valves, in particular to an intelligent valve. The invention aims to provide an intelligent valve which can be used for sampling and checking circulating liquid at any time. According to the technical scheme, the intelligent valve comprises a butt joint pipe and a communicating frame fixed to the bottom of the butt joint pipe and communicating with the bottom of the butt joint pipe, and a collecting box is installed in the communicating frame. The collecting box is made of stainless steel.
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Description

Technical Field

[0001] This invention relates to the field of valves, and more specifically to an intelligent valve. Background Technology

[0002] Valves are control components in fluid transport systems, possessing functions such as shut-off, regulation, flow guidance, backflow prevention, pressure stabilization, diversion, and overflow / pressure relief. Valves used in fluid control systems range from the simplest shut-off valves to various valves used in highly complex automated control systems, exhibiting a wide variety of types and specifications. In the existing valve technology field, for example, an intelligent valve with application number 202023064862.0 can solve the problem of regulating valves being mostly opened and closed manually, which is time-consuming and labor-intensive. However, it is not suitable for valves that allow for random sampling and inspection of the flowing liquid. Summary of the Invention

[0003] The purpose of this invention is to provide an intelligent valve that allows for random sampling and inspection of the liquid flowing through the valve.

[0004] The objective of this invention is achieved through the following technical solution: an intelligent valve, comprising a connecting pipe and a connecting frame fixed and connected to the bottom of the connecting pipe, wherein a collection box is installed inside the connecting frame.

[0005] The collection box is made of stainless steel.

[0006] The capacity of the collection box is not less than 220ml.

[0007] A docking seat is fixedly connected to the front and rear sides of the connecting pipe, respectively.

[0008] A rotating rod is rotatably connected to the middle of the connecting pipe. A sealing plate is fixedly connected to the front and rear sides of the rotating rod, and a flow plate is fixedly connected to the left and right sides of the rotating rod.

[0009] A handle ring is fixedly connected to the top of the rotating rod. Attached Figure Description

[0010] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.

[0011] Figure 1 This is a partial structural diagram of the pipe fitting of the present invention;

[0012] Figure 2 This is a half-sectional structural diagram of the connecting pipe of the present invention;

[0013] Figure 3 This is a partial structural schematic diagram of the rotating rod of the present invention;

[0014] Figure 4This is a partial structural schematic diagram of the sealing patch of the present invention;

[0015] Figure 5 This is a partial structural schematic diagram of the side frame of the present invention;

[0016] Figure 6 This is a partial structural diagram of the present invention for cutting fragments;

[0017] Figure 7 and Figure 8 These are all schematic diagrams of the overall structure of the present invention.

[0018] In the figure: connecting pipe 101; connecting frame 102; collection box 103; rotating rod 201; sealing plate 202; flow plate 203; side frame 301; sliding rod 302; cutting fragment 303. Detailed Implementation

[0019] This section is based on Figure 1-8 The working process described is as follows: To facilitate the valve's ability to sample and inspect the flowing liquid at any time, during use, the pipes for the flowing medium are connected to the front and rear sides of the connecting pipe 101. Furthermore, a connecting frame 102 is welded and fixed to the lower side of the connecting pipe 101, and a collection box 103, which can be pulled out or installed inside the connecting frame 102, is slidably connected. When the medium flows through the connecting pipe 101, a small amount of the flowing medium is stored in the collection box 103. When it is necessary to sample and inspect the flowing medium, the flow of fluid is stopped, and then the small amount of medium remaining in the collection box 103 is taken out and tested. This allows the valve to sample and inspect the flowing liquid at any time, and the structure is simple and the production cost is low.

[0020] This section is based on Figure 1-8 The working process described herein is: making the material of the collection box 103 stainless steel to improve the service life of the collection box 103.

[0021] This section is based on Figure 1-8 The working process described herein is to ensure that the capacity of the collection box 103 is not less than 220ml so as to store sufficient fluid medium for testing.

[0022] This section is based on Figure 1-8 The working process described is as follows: when connecting to other pipelines for the flow of media, docking seats located on the front and rear sides of the docking pipe 101 are fixedly connected by welding, and then other pipeline fluids are installed by bolts.

[0023] This section is based on Figure 1-8The working process described is as follows: When controlling the flow of fluid medium in the connecting pipe 101, a sealing plate 202 is fixedly connected to the front and rear sides of the rotating rod 201 by welding, and a flow plate 203 is fixedly connected to the left and right sides of the rotating rod 201 by welding. During flow, the rotating rod 201 is rotated so that the two flow plates 203 are placed perpendicular to the direction of fluid medium flow. When blocking the fluid medium, the two sealing plates 202 are similarly placed perpendicular to the direction of fluid medium flow. During a period of flow, the two flow plates 203 can effectively block larger impurities or hair and allow them to accumulate in the collection box 103. The collection box 103 is periodically removed for cleaning to prevent blockage and improve flow efficiency.

[0024] A handle ring is fixedly connected to the top of the rotating rod 201.

[0025] This section is based on Figure 1-8 The working process described is as follows: when the rotating rod 201 is rotated, a handle ring is fixedly connected to the top of the rotating rod 201 by welding. Rotating the handle ring synchronously causes the rotating rod 201 to rotate, which is used to adjust the sealing plate 202 and the flow plate 203 on both sides.

[0026] Each of the flow strips 203 is provided with a plurality of elongated holes evenly distributed on it.

[0027] This section is based on Figure 1-8 The working process described is as follows: when the fluid medium flows through the flow plates 203 on both sides, larger impurities or hair particles are blocked and accumulate in the collection box 103. The multiple elongated holes on the two flow plates 203 are used for filtration. The structure is simple, the processing and production are relatively convenient, and the production cost is reduced.

[0028] Each of the flow strips 203 has a rectangular groove extending inward on its outer side.

[0029] This section is based on Figure 1-8 The working process described is as follows: a rectangular groove extending inward is provided on the outer side of each flow strip 203 to improve the overall efficiency of blocking impurities.

[0030] The connecting pipe 101 has an inlet and outlet hole on each of its left and right sides.

[0031] Each of the inlet and outlet holes is fixedly connected to a side frame 301, and each side frame 301 is slidably connected to a sliding rod 302. A cutting shard 303 is fixedly connected to an adjacent side of each of the two sliding rods 302.

[0032] This section is based on Figure 1-8The working process described is as follows: To facilitate the manual and periodic breaking of larger particles or hair-like impurities that remain blocked on each flow plate 203, and to prevent long-term accumulation that affects the flow, an inlet and outlet hole is provided on the left and right sides of the connecting pipe 101 during use. Each inlet and outlet hole is fixed with bolts and connected to a side frame 301, so that each inlet and outlet hole can correspond to the rectangular slot on each flow plate 203. The operator grasps the handle located on the outside of each sliding rod 302 and repeatedly pushes the two sliding rods 302. Then, the cutting fragments 303 on the inside of each sliding rod 302 extend into the rectangular slot on each flow plate 203 and use their sharp surfaces on both sides to break up the aforementioned impurities, thereby improving the efficiency of smooth flow and preventing the accumulation of impurities. When the two sealing plates 202 are rotated to the sides to cut off the flow, the two sealing plates 202 can block the inlet and outlet holes on both sides of the connecting pipe 101.

Claims

1. A smart valve, comprising a connecting pipe (101) and a connecting frame (102) fixed and connected to the bottom of the connecting pipe (101), characterized in that: A collection box (103) is installed inside the connecting frame (102).

2. The intelligent valve according to claim 1, characterized in that: The collection box (103) is made of stainless steel.

3. The intelligent valve according to claim 1, characterized in that: The capacity of the collection box (103) is not less than 220ml.

4. The intelligent valve according to claim 1, characterized in that: A docking seat is fixedly connected to the front and rear sides of the connecting pipe (101).

5. The intelligent valve according to claim 1, characterized in that: A rotating rod (201) is rotatably connected to the middle of the connecting pipe (101). A sealing plate (202) is fixedly connected to the front and rear sides of the rotating rod (201), and a flow plate (203) is fixedly connected to the left and right sides of the rotating rod (201).

6. The intelligent valve according to claim 5, characterized in that: A handle ring is fixedly connected to the top of the rotating rod (201).

7. The intelligent valve according to claim 6, characterized in that: Each of the flow sheets (203) is uniformly provided with multiple elongated holes.

8. The intelligent valve according to claim 7, characterized in that: Each of the aforementioned flow strips (203) has an inwardly extending rectangular groove on its outer side.

9. The intelligent valve according to claim 8, characterized in that: The connecting pipe (101) is provided with an inlet and outlet hole on each of its left and right sides.

10. The intelligent valve according to claim 9, characterized in that: Each of the inlet and outlet holes is fixedly connected to a side frame (301), and each side frame (301) is slidably connected to a sliding rod (302). A cutting fragment (303) is fixedly connected to an adjacent side of each of the two sliding rods (302).

Citation Information

Patent Citations

  • Intelligent valve

    CN214146627U