Adjustable packaging machine for activated carbon packs

By designing an adjustable packaging machine for activated carbon, a combination of a feeding frame, an adjustable feeding bin, and a uniform-speed motor is used to achieve quantitative conveying and adjustment. The amount of activated carbon discharged each time is within an acceptable range, solving the problem that existing equipment cannot be adjusted and improving packaging efficiency and accuracy.

CN224547487UActive Publication Date: 2026-07-24TIANJIN PURUITE PURIFICATION TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN PURUITE PURIFICATION TECH
Filing Date
2025-07-17
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing activated carbon packaging equipment cannot adjust the conveying volume each time according to demand, which limits its use.

Method used

An adjustable packaging machine for activated carbon was designed. Through the combination of a feeding frame, an adjustable feeding bin, and a constant-speed motor, quantitative feeding and adjustment are achieved. The amount of activated carbon discharged each time is within an acceptable deviation range. The capacity of the telescopic regulating tube is adjusted by an electric telescopic rod to ensure stable output.

Benefits of technology

It achieves quantitative delivery and stable output of activated carbon, and can adjust the amount of activated carbon discharged each time as needed to meet different requirements, thereby improving packaging efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to activated carbon packaging technical field, specifically is a kind of adjustable packaging machine of activated carbon packaging, including storage frame, the lower portion of storage frame is provided with feeding frame;Firstly, activated carbon is filled in the inside of storage frame by feeding pipeline, falls into the half slot separated by push material pillar and push plate in feeding frame from one side, feeding frame, adjusting bin and adjusting bin rotate relative to feeding bin along with the rotation of uniform motor, and feeding bin does not rotate along with the rotation of uniform motor by the fixed position of bottom support, and the fixed position of storage frame is fixed by the feeding pipeline of lateral wall through, so that activated carbon is discharged from single feeding pipe opened on the surface of feeding bin from second discharge hole, telescopic adjusting tube and third discharge hole in turn from first discharge hole, complete intermittent quantitative discharge operation, and the amount of activated carbon discharged each time can be ensured within the acceptable deviation range of determined quantity.
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Description

Technical Field

[0001] This utility model relates to the field of activated carbon packaging technology, specifically to an adjustable packaging machine for activated carbon. Background Technology

[0002] Activated carbon is a porous carbonaceous material with an extremely rich pore structure and excellent adsorption properties. Its adsorption is achieved through physical and chemical adsorption forces, and its appearance is black.

[0003] Publication number CN213168629U discloses a multi-type activated carbon packaging mechanism, which enables the packaging of multiple types of activated carbon within the same mechanism. It is simple to operate and highly efficient, but it cannot adjust the amount of activated carbon delivered each time according to different needs, thus having certain limitations in use. Therefore, we propose an adjustable packaging machine for activated carbon. Utility Model Content

[0004] To address the problems in the existing technology, this utility model provides an adjustable packaging machine for activated carbon packaging.

[0005] The technical solution adopted by this utility model to solve its technical problem is an adjustable packaging machine for activated carbon packaging; it includes a storage frame, a feeding frame is provided below the storage frame, an adjustable feeding bin is provided below the feeding frame, a feeding bin is provided below the adjustable feeding bin, a uniform speed motor is provided below the feeding bin, the uniform speed motor is installed inside the bottom bracket, and the power output end of the uniform speed motor is connected to the adjustable feeding bin and the feeding frame through an adapter.

[0006] The bottom end of the adjustable feeding bin has an integrated telescopic adjusting tube below the second discharge hole. An electric telescopic rod is provided between the two telescopic adjusting tubes at the bottom end of the adjustable feeding bin. The bottom extension of the electric telescopic rod is fitted into the interior of the mounting groove, and the mounting groove is located at the top of the connecting base. The connecting base is located in the groove of the telescopic bin. A second through hole for the uniform speed motor adapter to pass through is opened at the center of the surface of the telescopic bin. A third discharge hole that fits with the telescopic adjusting tube is opened on the surface of the adjustable bin, and the telescopic adjusting tube is connected to the third discharge hole.

[0007] By adopting the above technical solution, activated carbon is first filled into the storage frame through the feeding pipe and falls from one side into the half-groove separated by the pushing pillar and the pushing plate in the feeding frame. Then, the feeding frame scrapes off the activated carbon overflowing from the surface of the first discharge hole as the uniform speed motor rotates, thereby ensuring that the amount of activated carbon in each first discharge hole will not exceed the deviation threshold. The feeding frame, the adjusting chamber and the adjusting chamber rotate relative to the feeding chamber as the uniform speed motor rotates. The feeding chamber is fixed in position by the bottom support and will not rotate with the uniform speed motor. The storage frame is fixed in position by the feeding pipe that runs through the side wall, so that the activated carbon passes through the second discharge hole, the telescopic adjusting pipe and the third discharge hole in sequence from the first discharge hole and is discharged from the single feeding pipe opened on the surface of the feeding chamber, completing the intermittent quantitative discharge operation, which can ensure that the amount of activated carbon discharged each time is within the acceptable deviation range of a certain amount.

[0008] When it is necessary to adjust the amount of activated carbon discharged each time, the electric telescopic rod at the bottom of the regulating chamber extends and retracts, which in turn drives the connecting base connected through the mounting groove to extend and retract, causing the bottom wall of the telescopic chamber to extend and retract relative to the regulating chamber. The capacity of each telescopic regulating tube is adjusted by extending and retracting to the same extent as the bottom wall of the telescopic chamber, thereby adjusting the amount of activated carbon discharged each time. After the telescopic chamber retracts, the feeding pipe installed at the bottom of the feeding chamber slides against the bottom wall of the regulating chamber through a spring, thereby performing the feeding operation.

[0009] Specifically, a pusher support is installed at the center of the bottom of the storage frame, and pusher plates are fixedly connected to both sides of the bottom of the pusher support. The bottom of the pusher support is rotatably connected to the center of the top of the feeding frame.

[0010] By adopting the above technical solution, the pusher plates on both sides of the fixed-position pusher support are used to push and scrape the activated carbon on the surface of each discharge hole as the feeding frame rotates, so that the amount of activated carbon discharged from each discharge hole will not exceed a certain threshold, thereby intermittently conveying the adjusted quantitative activated carbon.

[0011] Specifically, the feeding bin is connected to the bottom support, and the constant speed motor passes through the third through hole on the surface of the feeding bin, the second through hole in the center of the adjusting bin, and the first through hole in the center of the telescopic bin in sequence to connect to the bottom end of the feeding frame.

[0012] By adopting the above technical solution, the feeding bin and the regulating bin are driven to rotate by a uniform speed motor. As they rotate, a fixed amount of activated carbon is discharged through the feeding pipe set below, stably providing the activated carbon with a fixed amount discharged each time.

[0013] Specifically, a through hole is provided on one side of the bottom end of the storage frame for transferring activated carbon into the feeding frame.

[0014] By adopting the above technical solution, activated carbon is transported to the storage frame through the through hole, thereby stably providing a quantitative supply of activated carbon.

[0015] Specifically, the four corners of the feeding frame groove are provided with first discharge holes, the surface of the adjusting chamber is provided with multiple second discharge holes that match the second discharge holes, and the second discharge holes match the telescopic adjusting pipe. The bottom end of the feeding chamber is slidably connected to a feeding pipe that matches the telescopic adjusting pipe via a spring.

[0016] By adopting the above technical solution, the activated carbon after quantitative adjustment is discharged through the first discharge hole of the feeding frame, the second discharge hole of the regulating chamber, and the telescopic regulating tank and feeding pipe set at the bottom, providing a quantitative and stable output of activated carbon conveying operation, and then packaging the container.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] 1. First, activated carbon is filled into the storage frame through the feeding pipe and falls from one side into the half-groove separated by the pushing pillar and the pushing plate in the feeding frame. Then, the feeding frame scrapes off the activated carbon overflowing from the surface of the first discharge hole as the uniform speed motor rotates, thus ensuring that the amount of activated carbon in each first discharge hole will not exceed the deviation threshold. The feeding frame, the adjusting chamber and the adjusting chamber rotate relative to the feeding chamber as the uniform speed motor rotates. The feeding chamber is fixed in position by the bottom support and will not rotate with the uniform speed motor. The storage frame is fixed in position by the feeding pipe that runs through the side wall, so that the activated carbon passes through the second discharge hole, the telescopic adjusting pipe and the third discharge hole in sequence from the first discharge hole and is discharged from the single feeding pipe opened on the surface of the feeding chamber, completing the intermittent quantitative discharge operation, which can ensure that the amount of activated carbon discharged each time is within the acceptable deviation range of a certain amount.

[0019] 2. When it is necessary to adjust the amount of activated carbon discharged each time, the electric telescopic rod at the bottom of the regulating chamber extends and retracts, which drives the connecting base connected through the mounting groove to extend and retract, so that the bottom wall of the regulating chamber extends and retracts relative to the regulating chamber. The capacity of each telescopic regulating tube is adjusted by extending and retracting to the same extent as the bottom wall of the regulating chamber, thereby adjusting the amount of activated carbon discharged each time. After the regulating chamber retracts, the feeding pipe installed at the bottom of the feeding chamber slides against the bottom wall of the regulating chamber through a spring to perform the feeding operation. Attached Figure Description

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0021] Figure 1 This is an isometric view of the present invention;

[0022] Figure 2 This is a schematic diagram showing the overall structure of the device according to this utility model.

[0023] Figure 3 This is a schematic diagram of the regulating chamber and the connection structure between the regulating chambers of this utility model;

[0024] In the diagram: 1. Storage frame; 2. Feeding frame; 3. Pushing support column; 4. Pushing plate; 5. First discharge hole; 6. Adjustment chamber; 7. First through hole; 8. Second discharge hole; 9. Feeding chamber; 10. Third through hole; 11. Feeding pipe; 12. Uniform speed motor; 13. Bottom support; 14. Telescopic adjustment pipe; 15. Electric telescopic rod; 16. Telescopic chamber; 17. Third discharge hole; 18. Second through hole; 19. Connecting base; 20. Mounting slot. Detailed Implementation

[0025] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0026] Please see Figure 1-3 This utility model provides a technical solution: an adjustable packaging machine for activated carbon packaging, including a storage frame, a feeding frame below the storage frame, an adjustable feeding bin below the feeding frame, a feeding bin below the adjustable feeding bin, a uniform speed motor below the feeding bin, the uniform speed motor being installed inside the bottom support, and the power output end of the uniform speed motor being connected to the adjustable feeding bin and the feeding frame via an adapter.

[0027] The bottom end of the adjustable feeding bin has an integrated telescopic adjusting tube below the second discharge hole. An electric telescopic rod is provided between the two telescopic adjusting tubes at the bottom end of the adjustable feeding bin. The bottom extension of the electric telescopic rod is fitted into the interior of the mounting groove, and the mounting groove is located at the top of the connecting base. The connecting base is located in the groove of the telescopic bin. A second through hole for the uniform speed motor adapter to pass through is opened at the center of the surface of the telescopic bin. A third discharge hole that fits with the telescopic adjusting tube is opened on the surface of the adjustable bin, and the telescopic adjusting tube is connected to the third discharge hole.

[0028] By adopting the above technical solution, activated carbon is first filled into the storage frame through the feeding pipe and falls from one side into the half-groove separated by the pushing pillar and the pushing plate in the feeding frame. Then, the feeding frame scrapes off the activated carbon overflowing from the surface of the first discharge hole as the uniform speed motor rotates, thereby ensuring that the amount of activated carbon in each first discharge hole will not exceed the deviation threshold. The feeding frame, the adjusting chamber and the adjusting chamber rotate relative to the feeding chamber as the uniform speed motor rotates. The feeding chamber is fixed in position by the bottom support and will not rotate with the uniform speed motor. The storage frame is fixed in position by the feeding pipe that runs through the side wall, so that the activated carbon passes through the second discharge hole, the telescopic adjusting pipe and the third discharge hole in sequence from the first discharge hole and is discharged from the single feeding pipe opened on the surface of the feeding chamber, completing the intermittent quantitative discharge operation, which can ensure that the amount of activated carbon discharged each time is within the acceptable deviation range of a certain amount.

[0029] When it is necessary to adjust the amount of activated carbon discharged each time, the electric telescopic rod at the bottom of the regulating chamber extends and retracts, which in turn drives the connecting base connected through the mounting groove to extend and retract, causing the bottom wall of the telescopic chamber to extend and retract relative to the regulating chamber. The capacity of each telescopic regulating tube is adjusted by extending and retracting to the same extent as the bottom wall of the telescopic chamber, thereby adjusting the amount of activated carbon discharged each time. After the telescopic chamber retracts, the feeding pipe installed at the bottom of the feeding chamber slides against the bottom wall of the regulating chamber through a spring, thereby performing the feeding operation.

[0030] Specifically, a pusher support is installed at the center of the bottom of the storage frame, and pusher plates are fixedly connected to both sides of the bottom of the pusher support. The bottom of the pusher support is rotatably connected to the center of the top of the feeding frame.

[0031] By adopting the above technical solution, the pusher plates on both sides of the fixed-position pusher support are used to push and scrape the activated carbon on the surface of each discharge hole as the feeding frame rotates, so that the amount of activated carbon discharged from each discharge hole will not exceed a certain threshold, thereby intermittently conveying the adjusted quantitative activated carbon.

[0032] Specifically, the feeding bin is connected to the bottom support, and the constant speed motor passes through the third through hole on the surface of the feeding bin, the second through hole in the center of the adjusting bin, and the first through hole in the center of the telescopic bin in sequence to connect to the bottom end of the feeding frame.

[0033] By adopting the above technical solution, the feeding bin and the regulating bin are driven to rotate by a uniform speed motor. As they rotate, a fixed amount of activated carbon is discharged through the feeding pipe set below, stably providing the activated carbon with a fixed amount discharged each time.

[0034] Specifically, a through hole is provided on one side of the bottom end of the storage frame for transferring activated carbon into the feeding frame.

[0035] By adopting the above technical solution, activated carbon is transported to the storage frame through the through hole, thereby stably providing a quantitative supply of activated carbon.

[0036] Specifically, the four corners of the feeding frame groove are provided with first discharge holes, the surface of the adjusting chamber is provided with multiple second discharge holes that match the second discharge holes, and the second discharge holes match the telescopic adjusting pipe. The bottom end of the feeding chamber is slidably connected to a feeding pipe that matches the telescopic adjusting pipe via a spring.

[0037] By adopting the above technical solution, the activated carbon after quantitative adjustment is discharged through the first discharge hole of the feeding frame, the second discharge hole of the regulating chamber, and the telescopic regulating tank and feeding pipe set at the bottom, providing a quantitative and stable output of activated carbon conveying operation, and then packaging the container.

[0038] The working principle and usage process of this utility model are as follows: First, activated carbon is filled into the storage frame through the feeding pipe and falls from one side into the half-groove separated by the pushing pillar and pushing plate in the feeding frame. Then, the feeding frame scrapes off the activated carbon overflowing from the surface of the first discharge hole as the uniform speed motor rotates, thus ensuring that the amount of activated carbon in each first discharge hole will not exceed the deviation threshold. The feeding frame, the adjusting chamber, and the adjusting chamber rotate relative to the feeding chamber as the uniform speed motor rotates. The feeding chamber is fixed in position by the bottom bracket and will not rotate with the uniform speed motor. The storage frame is fixed in position by the feeding pipe that runs through the side wall, so that the activated carbon passes sequentially from the first discharge hole through the second discharge hole, the telescopic adjusting pipe, and the third discharge hole. The activated carbon is discharged from a single feeding pipe on the surface of the feeding bin, completing intermittent and quantitative discharge operations. This ensures that the amount of activated carbon discharged each time is within an acceptable deviation range. When it is necessary to adjust the amount of activated carbon discharged each time, the electric telescopic rod at the bottom of the regulating bin extends and retracts, which drives the connecting base connected through the mounting groove to extend and retract. This causes the bottom wall of the telescopic bin to extend and retract relative to the regulating bin. The capacity of each telescopic regulating pipe is adjusted by extending and retracting to the same extent as the bottom wall of the telescopic bin, thereby adjusting the amount of activated carbon discharged each time. After the telescopic bin retracts, the feeding pipe installed at the bottom of the feeding bin slides against the bottom wall of the regulating bin through a spring, thus performing the feeding operation.

[0039] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. An adjustable packaging machine for activated carbon packaging, characterized in that, The system includes a storage frame (1), a feeding frame (2) is provided below the storage frame (1), an adjustment chamber (6) is provided below the feeding frame (2), a feeding chamber (9) is provided below the adjustment chamber (6), a constant speed motor (12) is provided below the feeding chamber (9), the constant speed motor (12) is installed inside the bottom bracket (13), and the power output end of the constant speed motor (12) is connected to the adjustment chamber (6) and the feeding frame (2) through an adapter. The bottom end of the regulating chamber (6) is integrally constructed with a telescopic regulating tube (14) below the second discharge hole (8). An electric telescopic rod (15) is provided between the two telescopic regulating tubes (14) at the bottom end of the regulating chamber (6). The bottom extension end of the electric telescopic rod (15) is fitted inside the mounting groove (20). The mounting groove (20) is located at the top of the connecting base (19). The connecting base (19) is located in the groove of the telescopic chamber (16). A second through hole (18) for passing through the adapter of the uniform speed motor (12) is opened at the center of the surface of the telescopic chamber (16). A third discharge hole (17) that fits with the telescopic regulating tube (14) is opened on the surface of the telescopic chamber (16). The telescopic regulating tube (14) and the third discharge hole (17) are connected in a through manner.

2. The adjustable packaging machine for activated carbon packaging according to claim 1, characterized in that, The storage frame (1) is equipped with a pusher support (3) at the center of the bottom end. Pusher plates (4) are fixedly connected to both sides of the bottom end of the pusher support (3). The bottom end of the pusher support (3) is rotatably connected to the center of the top end of the feeding frame (2).

3. The adjustable packaging machine for activated carbon packaging according to claim 1, characterized in that, The feeding bin (9) is connected to the bottom support (13), and the uniform speed motor (12) passes through the third through hole (10) opened on the surface of the feeding bin (9), the second through hole (18) opened in the center of the telescopic bin (16), and the first through hole (7) opened in the center of the adjusting bin (6) and is connected to the bottom end of the feeding frame (2).

4. The adjustable packaging machine for activated carbon packaging according to claim 1, characterized in that, The storage frame (1) has a through hole on one side of its bottom end for transferring activated carbon into the feeding frame (2).

5. The adjustable packaging machine for activated carbon packaging according to claim 1, characterized in that, The feeding frame (2) has a first discharge hole (5) at each of the four corners of the groove. The surface of the adjustment chamber (6) has a plurality of second discharge holes (8) that match the second discharge holes (8). The second discharge holes (8) match the telescopic adjustment tube (14). The bottom end of the feeding chamber (9) is slidably connected to a feeding tube (11) that matches the telescopic adjustment tube (14) by a spring.