A valve conveying device

By designing a reasonable valve delivery device and utilizing the combination of an air blowing system, a shut-off valve, and a clamping plate, the problems of limited on-site layout and low delivery efficiency of existing devices have been solved, enabling rapid and accurate valve delivery.

CN224278955UActive Publication Date: 2026-05-26SHENGDING PHARM MASCH (JIAXING) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENGDING PHARM MASCH (JIAXING) CO LTD
Filing Date
2025-05-30
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing valve conveying devices are limited in their on-site layout and have low conveying efficiency, making it difficult to meet the demand for high-efficiency conveying.

Method used

A valve conveying device was designed, comprising a main board, an inner valve track, an outlet valve pipe, an isolation intercept valve, an inlet valve intercept plate, and a clamping plate. The device achieves rapid valve conveying through an air blowing system and ensures accurate valve alignment and posture correction through the isolation intercept valve and the clamping plate.

Benefits of technology

It enables rapid and accurate valve delivery, improves the flexibility of on-site layout and delivery efficiency, ensures that valves arrive at their designated locations smoothly, and increases the delivery success rate.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224278955U_ABST
    Figure CN224278955U_ABST
Patent Text Reader

Abstract

This utility model discloses a valve conveying device, which includes a main board. The bottom of the main board has an internal valve track matching the valve. Above the main board are two valve outlet pipes, I and II, arranged sequentially along and connected to the internal valve track. An isolation valve, which blocks the internal valve track when activated, is located between the two outlet pipes. Two valve inlet interceptor plates and two clamping plates are mounted on both sides of the main board. The valve inlet interceptor plates are located on the side of valve inlet pipe I furthest from valve inlet pipe II and are driven by a valve inlet interceptor cylinder. The clamping plates are used to clamp the valve at the valve conveying position and are driven by a clamping plate control cylinder. The valve conveying position refers to the position where the internal valve track aligns with valve inlet pipes I and II. The main board contains an air blowing pipe corresponding to the valve conveying position. This utility model's device has a reasonable structural design, enabling rapid and efficient valve conveying. The valve conveying pipe can be laid using a flexible hose, making installation convenient.
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Description

Technical Field

[0001] This utility model relates to the field of packaging auxiliary equipment technology, and to a valve conveying device, particularly a valve conveying device that is convenient to set up on site and has high conveying efficiency. Background Technology

[0002] Aerosol cans are pressure-resistant containers, typically made of metal (such as tinplate or aluminum) or glass. Their core components include the container, valve system, and contents. The valve system controls the release of the contents; spraying is triggered by pressing. Before installation, the valves need to be individually separated and transported to the valve installation point using a conveyor system. Currently, valve conveyor belts are commonly used for transporting valves. However, valve conveyor belts are mostly rigid, which limits their placement on-site and often affects equipment layout. Furthermore, their conveying efficiency is generally low, leaving room for improvement.

[0003] Therefore, developing a valve conveying device that is easy to install on-site and has high conveying efficiency is of great practical significance. Utility Model Content

[0004] Due to the aforementioned deficiencies in the existing technology, this utility model provides a valve conveying device that is convenient for on-site layout and has high conveying efficiency, in order to solve the problems that the existing valve conveying devices are subject to greater on-site limitations and that there is room for further improvement in conveying efficiency.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A valve delivery device, including a main board;

[0007] The bottom of the main board of the device has an internal valve track that matches the valve. The top of the main board of the device has valve outlet pipe I and valve outlet pipe II arranged sequentially along the internal valve track. Valve outlet pipe I and valve outlet pipe II are connected to the internal valve track. An isolation interception valve is provided between valve outlet pipe I and valve outlet pipe II. The isolation interception valve is installed on the top of the main board of the device. The isolation interception valve moves vertically and isolates the internal valve track when it moves.

[0008] The main board of the device has openings on both sides that match the valve inlet interceptor plate and the clamping plate, and these openings are connected to the valve track inside the device. The two openings that match the valve inlet interceptor plate are located on the side of valve inlet pipe I away from valve inlet pipe II, and two valve inlet interceptor plates are installed on them respectively. The valve inlet interceptor plate is connected to the movable end of the valve inlet interceptor cylinder fixedly installed on the side of the main board of the device. The two openings that match the clamping plate are located on both sides of the valve inlet pipe I and valve inlet pipe II, and two clamping plates are installed on them respectively. The clamping plate is connected to the movable end of the clamping plate control cylinder fixedly installed on the side of the main board of the device. The clamping plate is used to clamp the valve located at the valve delivery position, and the valve delivery position refers to the position in the valve track inside the device that is aligned with valve inlet pipe I and valve inlet pipe II. The main board of the device is provided with air blowing pipes that match the two valve delivery positions respectively, and the outlet of the air blowing pipe is aligned with the valve delivery position.

[0009] The operating logic of the above valve delivery device is as follows:

[0010] One end of the valve track inside the device (i.e., the valve track interface) is connected to the valve track for feeding. After valve I enters the valve delivery position corresponding to valve inlet pipe II through the valve track inside the device, the isolation intercept valve is activated. At this time, the isolation intercept valve isolates the valve track inside the device, which ensures that the valve and the outlet valve pipe correspond one-to-one. Valve II also enters the valve delivery position corresponding to valve inlet pipe I through the valve track inside the device. At this time, the valve inlet intercept cylinder is activated, and the two valve inlet intercept plates isolate the entrance of the valve track inside the device to prevent the subsequent valve from entering the valve delivery device. The clamping plate controls the cylinder to activate, and the two clamping plates clamp valve I and valve II located at the two valve delivery positions, and air is supplied to the air blowing pipe. The air blowing pipe blows the valve located at the valve delivery position out through the outlet valve pipe.

[0011] This utility model's valve conveying device has a reasonable structural design. It can quickly convey valves by blowing air, and the valve outlet pipe can be connected to a flexible hose to quickly convey the valve to the designated position. The flexible hose is convenient to deploy on site. At the same time, the design of two valve outlet pipes and two sets of air blowing systems can improve the valve conveying efficiency. The design of the isolation interceptor valve ensures that one valve outlet pipe corresponds to one valve. The presence of the clamping plate can correct the valve's posture before air blowing and conveying, ensuring that it smoothly enters the valve outlet pipe, improving the conveying success rate, and has good application prospects.

[0012] As a preferred technical solution:

[0013] As described above, in a valve delivery device, a stop block is provided at the bottom of the main board of the device. The stop block is located at the end of the valve track inside the device away from the valve inlet pipe I, and the stop block blocks the valve track inside the device. This prevents the valve from falling out from the other end of the valve track inside the device.

[0014] As described above, in a valve conveying device, there are two valve inlet interceptor plates, namely valve inlet interceptor plate I and valve inlet interceptor plate II;

[0015] The valve entry intercept plate I is connected to the movable end of the valve entry intercept cylinder I, and the valve entry intercept cylinder I moves horizontally.

[0016] The inlet valve intercepting plate II is connected to the movable end of the inlet valve intercepting cylinder II, and the inlet valve intercepting cylinder II moves horizontally.

[0017] The inlet valve intercepting cylinder I and the inlet valve intercepting cylinder II are respectively fixedly installed on both sides of the main board of the device.

[0018] As described above, in a valve delivery device, there are two clamping plates, namely clamping plate I and clamping plate II;

[0019] The clamping plate I is connected to the movable end of the clamping plate I control cylinder, and the clamping plate I control cylinder moves horizontally.

[0020] The clamping plate II is connected to the movable end of the clamping plate II control cylinder, and the clamping plate II control cylinder moves horizontally.

[0021] The clamping plate I control cylinder and the clamping plate II control cylinder are respectively fixedly installed on both sides of the main board of the device.

[0022] As described above, the valve conveying device is equipped with two air blowing pipes for each valve conveying position, with the two air blowing pipes located on both sides of the valve track within the device. This ensures the balance of the valve during air blowing and prevents the valve from tipping over or undergoing other posture changes during transportation.

[0023] As described above, in a valve delivery device, the two air-blowing pipes that are matched with the valve delivery position aligned with the valve inlet pipe I have air-blowing port I and air-blowing port III on the two sides of the main board of the device, respectively.

[0024] The two air-blowing pipes that are matched with the valve delivery position aligned with valve inlet pipe II have air-blowing port II and air-blowing port IV on the two sides of the main board of the device, respectively.

[0025] As described above, a valve delivery device includes a cover, a valve body, and a fluid inlet channel, wherein the valve body is fixed to the cover and the fluid inlet channel is connected to the valve body;

[0026] The device is integrated with the valve track, cover, and valve body;

[0027] The bottom of the valve rail inside the device also has a through groove that matches the fluid inlet channel.

[0028] The above technical solution is only one feasible technical solution of this utility model. The protection scope of this utility model is not limited to this. Those skilled in the art can reasonably adjust the specific design according to actual needs.

[0029] Compared with the prior art, the above-mentioned utility model has the following advantages or beneficial effects:

[0030] (1) The valve conveying device of this utility model has a reasonable structural design. It can quickly convey the valve by blowing air. The valve outlet pipe can be connected to the hose to quickly convey the valve to the designated position. The hose is convenient to arrange on site.

[0031] (2) The valve conveying device of this utility model has two valve outlet pipes and two sets of air blowing systems, which can improve the valve conveying efficiency;

[0032] (3) The valve conveying device of this utility model has a design of isolation interception valve to ensure that one valve outlet pipe is connected to one valve;

[0033] (4) The valve conveying device of this utility model has a clamping plate that can correct the posture of the valve before air blowing and conveying, ensuring that it enters the valve tube smoothly, improving the conveying success rate and having good application prospects. Attached Figure Description

[0034] The present invention, its features, shape, and advantages will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings. Like reference numerals denote like parts throughout the drawings. The drawings are not drawn to scale; their purpose is to illustrate the gist of the invention.

[0035] Figure 1 and 2 These are three-dimensional structural schematic diagrams of the valve conveying device of this utility model from different perspectives;

[0036] Figure 3 This is a top view of the valve conveying device of this utility model;

[0037] Figure 4 for Figure 3 DD cross-section;

[0038] Among them, 1 is valve outlet pipe I, 2 is valve outlet pipe II, 3 is isolation interception valve, 4 is valve inlet interception cylinder I, 5 is valve inlet interception cylinder II, 6 is clamping plate I, 7 is clamping plate I control cylinder, 8 is clamping plate II, 9 is clamping plate II control cylinder, 10 is valve, 11 is valve track interface, 12 is air blowing port I, 13 is air blowing port II, 14 is air blowing port III, 15 is air blowing port IV, 16 is valve track inside the device, 17 is valve inlet interception plate I, 18 is valve inlet interception plate II, 19 is main board of the device, and 20 is stop block. Detailed Implementation

[0039] The structure of this utility model will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the utility model.

[0040] Example 1

[0041] A valve delivery device, such as Figures 1-4 As shown, it includes a device motherboard 19;

[0042] The bottom of the main board 19 has an internal valve track 16 that matches the valve 10 (the valve 10 includes a cover, a valve body, and a fluid inlet channel; the valve body is fixed to the cover and the fluid inlet channel is connected to the valve body; the internal valve track 16 matches the cover and the valve body as a whole, and the bottom of the internal valve track 16 also has a through groove that matches the fluid inlet channel). The top of the main board 19 has valve outlet pipes I1 and II2 arranged sequentially along the internal valve track 16. Valve outlet pipes I1 and II2 communicate with the internal valve track 16. The end of the internal valve track 16 furthest from valve outlet pipe II2 is a valve track interface 11. A stop block 20 (located at the bottom of the main board 19) is provided at the end of the internal valve track 16 furthest from valve track interface 11, and the stop block 20 prevents the internal valve track 16 from falling out. Valve outlet pipes I1 and II2... A shut-off valve 3 is provided between 2. The shut-off valve 3 is installed on the top of the main board 19 of the device. The shut-off valve 3 moves vertically and shuts off the valve track 16 inside the device when the shut-off valve 3 moves.

[0043] The main board 19 of the device has openings on both sides that match the valve interceptor plate and the clamping plate, and the openings are connected to the valve track 16 inside the device.

[0044] Two openings matching the inlet valve interceptor plate are located on the side of inlet valve pipe I 1 away from inlet valve pipe II 2, and two inlet valve interceptor plates (i.e., inlet valve interceptor plate I 17 and inlet valve interceptor plate II 18) are respectively installed on them. Inlet valve interceptor plate I 17 is connected to the movable end of inlet valve interceptor cylinder I 4 and inlet valve interceptor cylinder I 4 moves horizontally. Inlet valve interceptor plate II 18 is connected to the movable end of inlet valve interceptor cylinder II 5 and inlet valve interceptor cylinder II 5 moves horizontally. Inlet valve interceptor cylinder I 4 and inlet valve interceptor cylinder II 5 are respectively fixedly installed on both sides of the main board 19 of the device.

[0045] Two openings matching the clamping plates are located on both sides of the valve inlet pipe I 1 and valve inlet pipe II 2, and two clamping plates (i.e. clamping plate I 6 and clamping plate II 8) are respectively installed on them. The clamping plates are used to clamp the valve located in the valve delivery position, and the valve delivery position refers to the position in the valve track 16 inside the device that is aligned with the valve inlet pipe I 1 and valve inlet pipe II 2. Clamping plate I 6 is connected to the movable end of clamping plate I control cylinder 7 and clamping plate I control cylinder 7 moves horizontally. Clamping plate II 8 is connected to the movable end of clamping plate II control cylinder 9 and clamping plate II control cylinder 9 moves horizontally. Clamping plate I control cylinder 7 and clamping plate II control cylinder 9 are respectively fixedly installed on both sides of the main board 19 of the device.

[0046] The main board 19 of the device is equipped with air blowing pipes that are matched with two valve delivery positions. The outlet of the air blowing pipe is aligned with the valve delivery position. Each valve delivery position is equipped with two air blowing pipes, and the two air blowing pipes are located on both sides of the valve track inside the device (to ensure the balance of the valve during air blowing and to prevent the valve from flipping or other posture changes during transportation). The two air blowing pipes that are matched with the valve delivery position that are aligned with the inlet valve pipe I 1 have air blowing port I12 and air blowing port III 14 on both sides of the main board of the device, respectively. The two air blowing pipes that are matched with the valve delivery position that are aligned with the inlet valve pipe II 2 have air blowing port II 13 and air blowing port IV 15 on both sides of the main board of the device, respectively.

[0047] The operating logic of the above valve delivery device is as follows:

[0048] One end of the valve track inside the device (i.e., valve track interface 11) connects with the valve track for feeding. After valve I enters the valve delivery position corresponding to valve inlet pipe II 2 through valve track 16 inside the device, the isolation interceptor valve 3 is activated. At this time, the isolation interceptor valve 3 isolates valve track 16 inside the device, thus ensuring that the valve and the outlet valve pipe correspond one-to-one. Valve II also enters the valve delivery position corresponding to valve inlet pipe I 1 through valve track 16 inside the device. At this time, the valve inlet interceptor cylinders (valve inlet interceptor cylinder I 4 and valve inlet interceptor cylinder II 5) are activated, and the two valve inlet interceptor plates (valve inlet interceptor plate I 17 and valve inlet interceptor plate II 18) isolate the entrance of valve track 16 inside the device, preventing the subsequent valve from entering the valve delivery device. The clamping plate control cylinders (clamping plate I control cylinder 7 and clamping plate II control cylinder 9) are activated, and the two clamping plates (clamping plate I 6 and clamping plate II 18) are activated. 8) Clamp valves I and II located in the two valve delivery positions, and supply air to the air blowing pipe. The air from the air blowing pipe will blow the valves located in the valve delivery positions out through the valve outlet pipe.

[0049] In summary, this application provides a valve conveying device with a reasonable structural design. It enables rapid valve conveying via air blowing, and the valve can be quickly conveyed to a designated location by connecting the outlet pipe to the flexible hose, which is convenient for on-site installation. Furthermore, the design of two outlet pipes and two air blowing systems improves valve conveying efficiency. The isolation valve design ensures one outlet pipe corresponds to one valve. The clamping plate corrects the valve's posture before air blowing, ensuring its smooth entry into the outlet pipe, thus improving the conveying success rate and demonstrating promising application prospects.

[0050] Those skilled in the art should understand that variations can be implemented by combining existing technology with the above embodiments, which will not be elaborated here. Such variations do not affect the substantive content of this utility model, and will not be elaborated here.

[0051] The preferred embodiments of this utility model have been described above. It should be understood that this utility model is not limited to the specific embodiments described above. Devices and structures not described in detail herein should be understood as being implemented in a conventional manner within the art. Any person skilled in the art can make many possible variations and modifications to the technical solutions of this utility model using the disclosed methods and techniques, or modify them into equivalent embodiments with equivalent changes, without departing from the scope of the technical solution of this utility model. This does not affect the essential content of this utility model. Therefore, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of this utility model, without departing from the content of the technical solution of this utility model, still fall within the protection scope of the technical solution of this utility model.

Claims

1. A valve conveying device, characterized in that: Including the device motherboard; The bottom of the main board of the device has an internal valve track that matches the valve. The top of the main board of the device has valve outlet pipe I and valve outlet pipe II arranged sequentially along the internal valve track. Valve outlet pipe I and valve outlet pipe II are connected to the internal valve track. An isolation interception valve is provided between valve outlet pipe I and valve outlet pipe II. The isolation interception valve is installed on the top of the main board of the device. The isolation interception valve moves vertically and isolates the internal valve track when it moves. The main board of the device has openings on both sides that match the valve inlet interceptor plate and the clamping plate, and these openings are connected to the valve track inside the device. The two openings that match the valve inlet interceptor plate are located on the side of valve inlet pipe I away from valve inlet pipe II, and two valve inlet interceptor plates are installed on them respectively. The valve inlet interceptor plate is connected to the movable end of the valve inlet interceptor cylinder fixedly installed on the side of the main board of the device. The two openings that match the clamping plate are located on both sides of the valve inlet pipe I and valve inlet pipe II, and two clamping plates are installed on them respectively. The clamping plate is connected to the movable end of the clamping plate control cylinder fixedly installed on the side of the main board of the device. The clamping plate is used to clamp the valve located at the valve delivery position, and the valve delivery position refers to the position in the valve track inside the device that is aligned with valve inlet pipe I and valve inlet pipe II. The main board of the device is provided with air blowing pipes that match the two valve delivery positions respectively, and the outlet of the air blowing pipe is aligned with the valve delivery position.

2. The valve conveying device according to claim 1, characterized in that, The bottom of the main board of the device is provided with a stop block, which is located in the valve track inside the device away from the valve inlet pipe I and blocks the valve track inside the device.

3. The valve conveying device according to claim 1, characterized in that, There are two valve inlet interceptor plates, namely valve inlet interceptor plate I and valve inlet interceptor plate II; The valve entry intercept plate I is connected to the movable end of the valve entry intercept cylinder I, and the valve entry intercept cylinder I moves horizontally. The inlet valve intercepting plate II is connected to the movable end of the inlet valve intercepting cylinder II, and the inlet valve intercepting cylinder II moves horizontally. The inlet valve intercepting cylinder I and the inlet valve intercepting cylinder II are respectively fixedly installed on both sides of the main board of the device.

4. The valve conveying device according to claim 1, characterized in that, There are two clamping plates, namely clamping plate I and clamping plate II; The clamping plate I is connected to the movable end of the clamping plate I control cylinder, and the clamping plate I control cylinder moves horizontally. The clamping plate II is connected to the movable end of the clamping plate II control cylinder, and the clamping plate II control cylinder moves horizontally. The clamping plate I control cylinder and the clamping plate II control cylinder are respectively fixedly installed on both sides of the main board of the device.

5. A valve conveying device according to claim 1, characterized in that, Each valve delivery position is equipped with two air blowing pipes, and the two air blowing pipes are located on both sides of the valve track inside the device.

6. A valve conveying device according to claim 5, characterized in that, The two air blowing pipes that are matched with the valve delivery position aligned with valve inlet pipe I have air blowing port I and air blowing port III on the two sides of the main board of the device, respectively. The two air-blowing pipes that are matched with the valve delivery position aligned with valve inlet pipe II have air-blowing port II and air-blowing port IV on the two sides of the main board of the device, respectively.

7. A valve conveying device according to claim 1, characterized in that, The valve includes a cover, a valve body, and a fluid inlet channel. The valve body is fixed to the cover and the fluid inlet channel is connected to the valve body. The device is integrated with the valve track, cover, and valve body; The bottom of the valve rail inside the device also has a through groove that matches the fluid inlet channel.