Filter paper conveying device of filter

By combining a U-shaped belt conveyor with a multi-segment linear belt conveyor and a guiding structure design, along with a centralized control panel, the problems of low conveying efficiency, inaccurate guidance, and inconvenient control of the filter paper conveying device are solved. This achieves efficient and flexible filter paper conveying and equipment adaptability, while reducing costs.

CN223920621UActive Publication Date: 2026-02-17HEFEI GELAN FILTER SYST CO LTD
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Patent Information

Application Number
CN202520644910.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-02-17
Estimated Expiration
2035-04-08

AI Technical Summary

Technical Problem

Existing filter paper conveying devices suffer from problems such as low conveying efficiency, insufficient guiding accuracy, inconvenient control, poor adaptability, and high cost.

Method used

It adopts a combination of U-shaped belt conveyor and multi-segment linear belt conveyor, combined with the design of guide seats and guide rods, and realizes unified control through a centralized control panel to adapt to the conveying needs of filter paper of different specifications.

Benefits of technology

It improves the efficiency of filter paper transfer between processes, prevents misalignment and folding, simplifies the operation process, reduces labor costs, and improves the versatility and production efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of machine manufacturing, in particular to a filter paper conveying device of a filter. The device mainly comprises a control panel, a bracket, a U-shaped belt conveyor, a multi-section linear belt conveyor, a working procedure table board, a triangular seat and the like. The conveyors are accurately connected to form a coherent conveying path, and the filter paper can sequentially pass through the conveyors to enter a subsequent process. Guiding seats are arranged on the two sides above the second linear belt conveyor, adjustable guiding rods are arranged on the two sides above the third linear belt conveyor, and stable conveying of the filter paper is guaranteed. The rear end of the working procedure table top is connected with a feeding port of the first linear belt conveyor, and the conveying process of the filter paper is further optimized through the special structural design of an inclined face baffle above the rear end and a triangular base. The device realizes unified control through a centralized control panel. The conveying device effectively solves the problems that in the prior art, conveying efficiency is low, guiding accuracy is insufficient, control is inconvenient, adaptability is poor, and cost is high.
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Description

Technical Field

[0001] This utility model relates to the field of mechanical manufacturing technology, and in particular to a filter paper conveying device for a filter. Background Technology

[0002] In the filter manufacturing industry, the filter paper conveying device is a key piece of equipment on the production line, and its performance directly affects the production efficiency and quality of the filter. However, traditional filter paper conveying devices have many drawbacks and are significantly outdated compared to new and innovative conveying devices. Existing conveying devices mostly adopt simple linear belt conveyor structures, lacking a coherent and scientifically designed conveying layout. When faced with complex production processes, it is difficult to achieve efficient flow of filter paper between different processes. For example, the connection between different belt conveyors is not precise enough, and the filter paper is prone to jamming and shifting during the transition. This not only reduces production efficiency but also increases labor costs due to frequent manual intervention.

[0003] Regarding the guiding structure, existing devices typically only have fixed guide plates, which cannot be flexibly adjusted according to different specifications of filter paper. This makes it easy for the filter paper to deviate when conveying filter paper of different widths and thicknesses, leading to problems such as folding and tearing during the conveying process, which greatly affects product quality and increases the defect rate. Furthermore, the control method of existing conveying devices is relatively simple, mostly decentralized control, with each conveying component operating independently and lacking a centralized control system. This requires operators to adjust each component separately from different locations, which is not only cumbersome but also makes it difficult to achieve coordination between components. It is impossible to adjust the conveying speed and parameters in a timely manner according to the production rhythm, which seriously restricts the improvement of production efficiency. Utility Model Content

[0004] To completely solve the problems of low conveying efficiency, insufficient guiding accuracy, inconvenient control, poor adaptability, and high cost in existing filter paper conveying technology, this utility model proposes the following technical solution:

[0005] A filter paper conveying device for an air filter includes a control panel and a support frame. The support frame is characterized by the fixed installation of a U-shaped belt conveyor, a first linear belt conveyor, a second linear belt conveyor, a third linear belt conveyor, a process table, a triangular seat, and a fourth linear belt conveyor. The inlet of the U-shaped belt conveyor is fixedly connected to the outlet of the first linear belt conveyor; the outlet of the U-shaped belt conveyor is fixedly connected to the inlet of the second linear belt conveyor; the outlet of the second linear belt conveyor is fixedly connected to the inlet of the third linear belt conveyor; and the outlet of the third linear belt conveyor is fixedly connected to a subsequent process. Guide seats are respectively provided on both sides above the second linear belt conveyor, and guide rods are respectively provided on both sides above the third linear belt conveyor. A gap exists between the guide rods and the upper surface of the third linear belt conveyor, and a gap exists between the guide seats and the upper surface of the second linear belt conveyor.

[0006] Preferably, the front end of the guide seat is an inclined surface, the front end of the guide seat faces the discharge port of the U-shaped belt conveyor, and the rear end of the guide seat faces the inlet of the second linear belt conveyor.

[0007] Preferably, the guide rod is fixedly connected to the fixed mounting rod, and the positioning seat is fixedly connected to the side end of the third linear belt conveyor. The positioning seat is slidably connected to the fixed mounting rod. The fixed mounting rod is provided with several threaded holes, and the positioning seat is provided with corresponding through holes. When it is necessary to fix the positioning seat and the fixed mounting rod, the screw is passed through the through hole of the positioning seat and screwed into any one of the threaded holes on the fixed mounting rod, thereby locking the relative positions of the two.

[0008] Preferably, the rear end of the process table is fixedly connected to the feed inlet of the first linear belt conveyor, and an inclined baffle is provided above the rear end of the process table.

[0009] Preferably, there is an angle between the inclined baffle and the process table surface, and the angle is between 60 degrees and 85 degrees.

[0010] Preferably, the triangular seat is a right-angled triangle structure, with several rollers rotatably connected to its hypotenuse and arranged facing the worktable surface, and its short right-angled side is fixedly connected to the discharge port of the fourth linear belt conveyor.

[0011] Preferably, the feed inlet of the fourth linear belt conveyor is fixedly connected to the preceding process.

[0012] Preferably, a control panel is fixedly installed on one side of the process table, and the U-shaped belt conveyor, the first linear belt conveyor, the second linear belt conveyor, the third linear belt conveyor, and the fourth linear belt conveyor are all connected to the control panel.

[0013] The beneficial effects of this utility model are as follows:

[0014] 1. This utility model features a unique combination of a U-shaped belt conveyor and multiple linear belt conveyors, forming a coherent and rational conveying layout. Precise connections between the conveyors allow filter paper to flow smoothly between different processes, greatly reducing jamming and clogging, and significantly improving production efficiency.

[0015] 2. The guide seat at the front end of the second linear belt conveyor of this utility model is designed with an inclined surface, which can effectively guide the filter paper to accurately enter the conveying track; the guide rod above the third linear belt conveyor, together with the adjustable positioning seat, can flexibly adjust the position according to different specifications of filter paper, ensuring that the filter paper always stays in the correct position during the conveying process, preventing problems such as deviation and folding, and ensuring the integrity of the filter paper and product quality.

[0016] 3. This utility model, through a centralized control panel, allows operators to easily and uniformly control the U-shaped belt conveyor and various linear belt conveyors, enabling operations such as starting, stopping, and speed adjustment. This not only simplifies the operation process but also allows for real-time adjustment of equipment operating parameters according to production rhythm, achieving coordinated and efficient work of various components, and reducing operational difficulty and the probability of errors.

[0017] 4. This utility model device can adapt to the conveying of filter paper of various specifications. Regardless of the width or thickness of the filter paper, the conveying requirements can be met by adjusting the guiding structure. This satisfies the diversified production needs of filter manufacturers, improves the versatility and utilization of the equipment, and reduces the cost of replacing equipment when changing product specifications. Attached Figure Description

[0018] Figure 1 This is a front view of a filter paper conveying device for a filter according to the present invention.

[0019] Figure 2 This is a side view of a filter paper conveying device for a filter according to the present invention.

[0020] Figure 3 This is a schematic diagram of a guide rod for a filter paper conveying device according to the present invention.

[0021] In the diagram: 1. Control panel; 2. Bracket; 3. U-shaped belt conveyor; 4. First linear belt conveyor; 5. Second linear belt conveyor; 6. Third linear belt conveyor; 7. Workbench; 8. Triangular seat; 9. Fourth linear belt conveyor; 10. Guide seat; 11. Guide rod; 12. Fixed mounting rod; 13. Threaded hole; 14. Positioning seat; 15. Through hole; 16. Inclined baffle. Detailed Implementation

[0022] A filter paper conveying device for a filter includes a control panel 1 and a bracket 2. The bracket 2 is characterized in that a U-shaped belt conveyor 3, a first linear belt conveyor 4, a second linear belt conveyor 5, a third linear belt conveyor 6, a process table 7, a triangular seat 8, and a fourth linear belt conveyor 9 are fixedly installed on the bracket 2.

[0023] The feed inlet of the fourth linear belt conveyor 9 is fixedly connected to the preceding process. The triangular base 8 is a right-angled triangle structure, with several rollers rotatably connected to its hypotenuse, arranged facing the process table 7. Its shorter right-angled side is fixedly connected to the discharge outlet of the fourth linear belt conveyor 9. The rear end of the process table 7 is fixedly connected to the feed inlet of the first linear belt conveyor 4, and an inclined baffle 16 is installed above the rear end of the process table 7. An angle exists between the inclined baffle 16 and the process table 7, ranging from 60 degrees to 85 degrees. The inlet of the U-shaped belt conveyor 3 is fixedly connected to the outlet of the first linear belt conveyor 4. The outlet of the U-shaped belt conveyor 3 is fixedly connected to the inlet of the second linear belt conveyor. The outlet of the second linear belt conveyor is fixedly connected to the inlet of the third linear belt conveyor. The outlet of the third linear belt conveyor is fixedly connected to the downstream process. Guide seats 10 are respectively provided on both sides of the top of the second linear belt conveyor, and guide rods 11 are respectively provided on both sides of the top of the third linear belt conveyor. There is a gap between the guide rods 11 and the upper end face of the third linear belt conveyor, and there is a gap between the guide seats 10 and the upper end face of the second linear belt conveyor. The front end of the guide seat 10 is inclined, and the front end of the guide seat 10 faces the outlet of the U-shaped belt conveyor 3, while the rear end of the guide seat 10 faces the inlet of the second linear belt conveyor.

[0024] The guide rod 11 is fixedly connected to the fixed mounting rod 12, and the positioning seat 14 is fixedly connected to the side end of the third linear belt conveyor. The positioning seat 14 is slidably connected to the fixed mounting rod 12. The fixed mounting rod 12 is provided with a plurality of threaded holes 13, and the positioning seat 14 is provided with corresponding through holes 15. When it is necessary to fix the positioning seat 14 and the fixed mounting rod 12, the screw is passed through the through hole 15 of the positioning seat 14 and screwed into any one of the threaded holes 13 on the fixed mounting rod 12, thereby locking the relative position of the two.

[0025] A control panel 1 is fixedly installed on one side of the worktable 7. The U-shaped belt conveyor 3, the first linear belt conveyor 4, the second linear belt conveyor 5, the third linear belt conveyor 6, and the fourth linear belt conveyor 9 are all connected to the control panel 1.

Claims

1. A filter paper conveying device comprising a control panel (1), a support (2), characterized in that, The support (2) is fixedly provided with a U-shaped belt conveyor (3), a first linear belt conveyor (4), a second linear belt conveyor (5), a third linear belt conveyor (6), a process table (7), a triangular seat (8) and a fourth linear belt conveyor (9). The feeding port of the U-shaped belt conveyor (3) is fixedly connected with the discharging port of the first linear belt conveyor (4), the discharging port of the U-shaped belt conveyor (3) is fixedly connected with the feeding port of the second linear belt conveyor, the discharging port of the second linear belt conveyor is fixedly connected with the feeding port of the third linear belt conveyor, and the discharging port of the third linear belt conveyor is fixedly connected with a subsequent process. The second linear belt conveyor is provided with guide seats (10) on the two sides above the second linear belt conveyor, and the third linear belt conveyor is provided with guide rods (11) on the two sides above the third linear belt conveyor.

2. The filter paper conveying apparatus according to claim 1, wherein The front end of the guide seat (10) is a slope, the front end of the guide seat (10) faces the discharging port of the U-shaped belt conveyor (3), and the rear end of the guide seat (10) faces the feeding port of the second linear belt conveyor.

3. The filter paper conveying apparatus according to claim 1, wherein The guide rod (11) is fixedly connected with a fixed mounting rod (12), a positioning seat (14) is fixedly connected with the side end of the third linear belt conveyor, and the positioning seat (14) is slidably connected to the fixed mounting rod (12). The fixed mounting rod (12) is provided with a plurality of threaded holes (13), and the positioning seat (14) is provided with a through hole (15) corresponding to the threaded holes (13).

4. The filter paper conveying apparatus according to claim 1, wherein The rear end of the process table (7) is fixedly connected with the feeding port of the first linear belt conveyor (4), and the rear end of the process table (7) is provided with a slope baffle (16) above the rear end.

5. The filter paper conveying apparatus according to claim 4, wherein An included angle exists between the slope baffle (16) and the process table (7), and the included angle is 60-85 degrees.

6. The filter paper conveying apparatus according to claim 1, wherein The triangular seat (8) is a right triangle structure, a plurality of rollers are rotatably connected to the hypotenuse of the triangular seat (8) and arranged towards the process table (7), and the short straight edge of the triangular seat (8) is fixedly connected with the discharging port of the fourth linear belt conveyor (9).

7. The filter paper conveying apparatus according to claim 1, wherein The feeding port of the fourth linear belt conveyor (9) is fixedly connected with a previous process.

8. The filter paper conveying apparatus according to claim 1, wherein The process table (7) is fixedly provided with a control panel (1) on one side, and the U-shaped belt conveyor (3), the first linear belt conveyor (4), the second linear belt conveyor (5), the third linear belt conveyor (6) and the fourth linear belt conveyor (9) are connected to the control panel (1).