A filter element bearing mechanism, conveying equipment and a hemming machine

CN224811679UActive Publication Date: 2026-09-29GUANGZHOU TONGYUE AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202521719523.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-12
Publication Date
2026-09-29
Estimated Expiration
2035-08-12

AI Technical Summary

Technical Problem

[0002]滤芯在贴边机之中进行贴合边条操作,其中滤芯由于其质量轻、容易形变,而需要放置滤芯在模具上对应进行贴边操作,贴边完毕后夹持贴边完毕的滤芯至其他工位中,从而模具上需要重新放置滤芯,现有技术中,通过传输机构进行传输模具,并铺设滤芯于模具上,由于仅有传输机构正对模具的一侧可进行操作,其操作空间较小,仅可单人进行操作;而传输机构在移动的过程中需要停顿一定的时间进行铺设滤芯,当操作不当或其他因素影响铺设时,容易使传输机构停顿较长时间,其容错性较差,较为影响生产效率;为解决以上至少一种技术问题,有必要开发一种滤芯承载机构、传输设备即贴边机

Benefits of technology

[0015]本实用新型设置第一传输装置,使设置于传输设备上的模具可进行伸出,从而便于滤芯铺设于模具上,配合传输设备的转动过程,对应的模具进行伸出,所具备的操作空间较大从而便于铺设滤芯,铺设滤芯完毕后驱动模具回复至传输设备上,实现伸出的模具可在两人的交替操作下直接更换铺设滤芯的模具,更换完毕后模具被第一传输装置带动回复初始位置,其容错性较高,可有效提高滤芯铺设过程的效率,保证滤芯在传输设备上的作业效率。

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Abstract

The utility model discloses a filter core bearing mechanism, conveying equipment and welt machine, including the die of filter core can be laid, still including the first transmission device that can drive die to move to be convenient for filter core to be laid on the die. Set first transmission device, make the die that set up on conveying equipment can carry out the extension, to be convenient for filter core to be laid on the die, cooperate the rotation process of conveying equipment, the die of corresponding extension, the operation space that has is bigger to be convenient for filter core to be laid, drive die to reply to conveying equipment after filter core laying is finished, realize the die that extends can be directly replaced filter core's die under the alternate operation of two people, after replacement is finished, the die is driven to reply to the initial position by first transmission device, and its fault tolerance is higher, can effectively improve the efficiency of filter core laying process, guarantees the operation efficiency of filter core on conveying equipment.
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Description

Technical Field

[0001] This utility model belongs to the field of edge-sealing machine technology, specifically relating to a filter element carrying mechanism, a transmission device and an edge-sealing machine. Background Technology

[0002] In the edge-bonding machine, filter elements undergo edge-bonding operations. Due to their light weight and susceptibility to deformation, filter elements need to be placed on a mold for edge-bonding. After edge-bonding, the edge-bonded filter elements are clamped and transferred to other workstations, requiring the filter elements to be repositioned on the mold. In existing technology, the mold is transported by a conveying mechanism, and the filter elements are laid on the mold. However, since only the side of the conveying mechanism facing the mold can be operated, the operating space is small, and only a single person can operate it. Furthermore, the conveying mechanism needs to pause for a certain period of time during its movement to lay the filter elements. When improper operation or other factors affect the laying, the conveying mechanism can easily pause for a long time, resulting in poor fault tolerance and significantly impacting production efficiency. To solve at least one of the above technical problems, it is necessary to develop a filter element carrying mechanism and conveying equipment, namely an edge-bonding machine. Utility Model Content

[0003] The purpose of this utility model is to provide a filter element carrying mechanism, a conveying device, and an edge-applying machine to solve the above-mentioned technical problems. A first conveying device is provided, allowing the mold mounted on the conveying device to extend, thus facilitating the laying of the filter element onto the mold. In conjunction with the rotation of the conveying device, the corresponding mold extends, providing a large operating space for easy filter element laying. After the filter element is laid, the mold is driven back to the conveying device. The extended mold can be directly replaced by two people working alternately. After replacement, the mold is driven back to its initial position by the first conveying device. This design offers high fault tolerance and effectively improves the efficiency of the filter element laying process, ensuring the efficient operation of the filter element on the conveying device.

[0004] To achieve the above-mentioned objectives, the technical solution adopted by this utility model is as follows: A filter cartridge support mechanism includes a mold for laying filter cartridges and a first conveying device that drives the mold to move, facilitating the laying of filter cartridges onto the mold. The first conveying device allows the mold mounted on the conveying equipment to extend, facilitating the laying of filter cartridges onto the mold. The extension of the mold, coordinated with the rotation of the conveying equipment, provides ample operating space for filter cartridge laying. After laying, the mold is driven back to the conveying equipment. The extended mold allows for direct replacement of the filter cartridge laying mold by two alternating operators. After replacement, the mold is driven back to its initial position by the first conveying device. This mechanism offers high fault tolerance and effectively improves the efficiency of the filter cartridge laying process, ensuring efficient operation of the filter cartridges on the conveying equipment.

[0005] Preferably, the first transmission device includes a support platform movably connected to the mold and a first driving device for moving the mold relative to the support platform. The first driving device drives the mold to move relative to the support platform. In a specific embodiment, the support platform is connected to the top of the disc, allowing the mold to extend beyond the disc's range under the drive of the first driving device, thus completing the filter element laying. This provides a large operating space, facilitating filter element laying. After filter element laying is complete, the mold is driven back to the disc. The extended mold can be directly replaced by two people working alternately. After replacement, the mold is driven back to its initial position by the first transmission device. This design offers high fault tolerance and effectively improves the efficiency of the filter element laying process, ensuring the efficient operation of the filter element on the transmission equipment.

[0006] Preferably, the mold is provided with a first block connected to the movable end of the first driving device, and the first block is movably connected to the support platform. The first block is connected to the mold, so that the first block is driven by the first driving device to drive the mold to move. The first block and the mold are detachably connected, so that after the mold is driven by the first block to outside the disc area, it is convenient to replace the mold with the already laid filter element on the first block. After the replacement is completed, the first block is retracted under the drive of the first driving device, thereby completing the laying of the filter element and its transfer on the disc.

[0007] Preferably, the mold is movably mounted above the support platform, and the first driving device is mounted on one side of the support platform. The first driving device mounted on one side facilitates the extension or retraction of the mold on the support platform relative to the disc body.

[0008] Preferably, the support platform is equipped with a slider and a guide rail movably connected to the slider, and the guide rail is connected to the first block. The slider is positioned above the support platform, and the guide rail is positioned at the lower end of the first block. The slider and guide rail achieve a movable connection between the mold and the support platform, allowing the mold to extend or retract relative to the disc body under the drive of the first driving device and guided by the slider and guide rail. This improves the stability of the mold movement process and increases the efficiency of the filter element laying process.

[0009] Preferably, the first driving device is a pneumatic cylinder, hydraulic cylinder, electric cylinder, or electric drive device.

[0010] Preferably, the first block is provided with locating pins for easy positioning or connection to the mold. The bottom of the mold has a connecting portion that connects to the locating pin, and this connecting portion includes a locating hole that mates with the locating pin. One or more locating pins are provided on the first block, and the number of connecting portions is equal to the number of locating pins; in this technical solution, the number of locating pins is two. The locating pins facilitate the installation and disassembly of the first block and the mold. In other alternative technical solutions, they can be replaced with snap-fit ​​connections or other detachable technical solutions.

[0011] A transmission device includes the aforementioned filter element carrying mechanism and a rotatable rotating disk. One or more filter element carrying mechanisms are disposed on the rotating disk, and a first transmission device is connected to the rotating disk. Specifically, the first driving device and the support platform are both connected to the upper plane of the disk. The first transmission device drives a mold to move outside the disk to lay the filter element, and a laying station for laying the filter element onto the mold is provided on one side of the rotating disk. During the laying process, the first driving device drives the mold outside the rotating disk area, removes the mold from the first block at the laying station, and replaces it with a mold already laid with the filter element on the first block. This operation method is simple and can improve the efficiency of laying the filter element on the mold and placing it on the rotating disk for transmission.

[0012] Preferably, the rotating disk includes a horizontally arranged disk body and a second driving device for driving the disk body to rotate. The second driving device includes a motor. The filter element is transferred while the disk body is rotatable.

[0013] Preferably, the rotating disk is provided with an edge-fitting component for edge-fitting the filter element laid on the mold and / or a clamping mechanism for clamping the edge-fitted filter element on the mold to the outside. This corresponds to the operations of edge-fitting the filter element on the mold and clamping the edge-fitted filter element to other workstations.

[0014] An edge-applying machine includes the aforementioned transmission device.

[0015] This utility model is equipped with a first transmission device, which allows the mold mounted on the transmission equipment to extend, thereby facilitating the laying of the filter element onto the mold. In conjunction with the rotation of the transmission equipment, the corresponding mold extends, providing a large operating space for easy filter element laying. After the filter element is laid, the mold is driven back to the transmission equipment. This allows the extended mold to be directly replaced by two people working alternately. After replacement, the mold is driven back to its initial position by the first transmission device. This design offers high fault tolerance and effectively improves the efficiency of the filter element laying process, ensuring the efficient operation of the filter element on the transmission equipment. Attached Figure Description

[0016] Figure 1The image shown is one of the structural schematic diagrams of the filter element support mechanism; Figure 2 The second schematic diagram shows the structure of the filter element support mechanism; Figure 3 The third schematic diagram of the filter element support mechanism is shown. Figure 4 The fourth schematic diagram of the filter element support mechanism is shown. Figure 5 The diagram shows a schematic of the first block with a positioning pin. Figure 6 The diagram shows the extended state of the filter element support mechanism. Figure 7 The diagram shows the structure of the loading mold for the filter element carrying mechanism; Figure 8 The diagram shows the state of the filter element carrier mechanism after the filter element has been laid, with the drive mold returning to the disc. Figure 9 The diagram shows the operation process of the filter element carrying mechanism on the rotating disk. Detailed Implementation

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.

[0018] The technical solution of this utility model will be described in detail below with specific embodiments.

[0019] Reference Figures 1 to 9 As shown, a filter cartridge carrying mechanism includes a mold 1 for laying filter cartridges and a first conveying device 2 for driving the mold 1 to move, thereby facilitating the laying of filter cartridges onto the mold 1. The first conveying device 2 allows the mold 1, mounted on the conveying equipment, to extend, facilitating the laying of filter cartridges onto the mold 1. The extension of the mold 1, coordinated with the rotation of the conveying equipment, provides ample operating space for filter cartridge laying. After the filter cartridge is laid, the mold 1 is driven back to the conveying equipment. This allows for direct replacement of the filter cartridge laying mold by two people working alternately. After replacement, the mold 1 is driven back to its initial position by the first conveying device. This mechanism offers high fault tolerance and effectively improves the efficiency of the filter cartridge laying process, ensuring efficient operation of the filter cartridges on the conveying equipment.

[0020] The first transmission device 2 includes a support platform 21 movably connected to the mold 1 and a first driving device 22 for moving the mold 1 relative to the support platform 21. The first driving device 22 drives the mold 1 to move relative to the support platform 21. In a specific embodiment, the support platform 21 is connected to the top of the disc body, so that under the drive of the first driving device 22, the mold can extend beyond the range of the disc body, thereby completing the filter element laying. The large operating space facilitates filter element laying. After the filter element laying is completed, the mold 1 is driven back to the disc body. The extended mold 1 can be directly replaced by two people working alternately. After replacement, the mold is driven back to its initial position by the first transmission device 2. This device has high fault tolerance and can effectively improve the efficiency of the filter element laying process, ensuring the working efficiency of the filter element on the transmission equipment.

[0021] The mold 1 is provided with a first block 11 connected to the movable end of the first driving device 22. The first block 11 is movably connected to the support platform 21. The first block 11 is connected to the mold 1, so that the first block 11 is driven by the first driving device 21, thereby driving the mold 1 to move. The first block 11 and the mold 1 are detachably connected, so that after the mold 1 is driven by the first block 11 to outside the disc area, it is convenient to replace the mold with the already laid filter element on the first block 11. After the replacement is completed, the first block 11 is retracted under the drive of the first driving device 21, thereby completing the laying of the filter element and its transfer on the disc.

[0022] The mold 1 is movably mounted above the support platform 21, and the first driving device 22 is mounted on one side of the support platform 21. The first driving device 22 mounted on one side facilitates the extension or retraction of the mold 1 on the support platform 21 relative to the disc body.

[0023] The support platform 21 is equipped with a slider 23 and a guide rail 24 movably connected to the slider 23. The guide rail 24 is connected to the first block 11. The slider 23 is located above the support platform 21, and the guide rail 24 is located at the lower end of the first block 11. The sliding rail 24 and the slider 23 achieve a movable connection between the mold 1 and the support platform 21, allowing the mold 1 to extend or retract relative to the disc body under the drive of the first driving device 22 and the guidance of the slider 23 and the guide rail 24. This improves the stability of the mold 1 during movement and increases the efficiency of the filter element laying process.

[0024] The guide rail 24 is connected below the first block 11, and the mold 1 is positioned above the first block 11. The first block 11 provides ample space for connecting the guide rail 24, thus avoiding direct connection between the guide rail 24 and the mold 1, thereby simplifying the structure required for the mold to extend or retract. The first block 11 is connected to the mold 1, allowing the first drive device 22 to move the mold 1. The first block 11 and the mold 1 are detachably connected, allowing the mold 1 to be moved outside the disc area by the first block 11, facilitating the replacement of the mold with the pre-laid filter element onto the first block 11. After replacement, the first block 11 retracts under the drive of the first drive device 22, thus completing the laying of the filter element and its transfer on the disc.

[0025] The first driving device 22 is a cylinder, a hydraulic cylinder, an electric cylinder, or an electric drive device, wherein this technical solution specifically adopts a cylinder.

[0026] The first block 11 is provided with positioning pins 111 for easy positioning or connection to the mold 1. The bottom of the mold 1 has a connecting portion that connects to the positioning pins 111, and this connecting portion includes a positioning hole that mates with the positioning pin. One or more positioning pins 111 are provided on the first block 11, and the number of connecting portions is equal to the number of positioning pins 111; in this technical solution, the number of positioning pins 111 is two. The positioning pins 111 facilitate the installation and disassembly of the first block 11 and the mold 1. In other alternative technical solutions, they can be replaced with snap-fit ​​connections or other detachable technical solutions.

[0027] A transmission device includes the aforementioned filter element carrying mechanism 3 and a rotatable rotating disk 4. One or more filter element carrying mechanisms 3 are disposed on the rotating disk 4, and a first transmission device 2 is connected to the rotating disk 4. Specifically, the first driving device 22 and the support platform 21 are both connected to the upper plane of the disk body. The first transmission device 2 drives the mold 1 to move outside the disk body to lay the filter element, and a laying station 5 for laying the filter element on the mold 1 is provided on one side of the rotating disk. In the specific laying process, the first driving device 22 drives the mold 1 outside the range of the rotating disk 4, removes the mold 1 from the first block 11 at the laying station 5, and replaces the mold 1 with the already laid filter element on the first block 11. This operation method is simple and can improve the efficiency of laying the filter element on the mold 1 and placing it on the rotating disk 4 for transmission.

[0028] The four filter element carrying mechanisms 3 are arranged around the rotating disk 4 at equal intervals; Projecting vertically, four operating stations are correspondingly arranged on the projection surface of the rotating disk 4 where the filter element carrying mechanism 3 is located. These operating stations include a first operating station 41, a second operating station 42, a third operating station 43, and a fourth operating station 44, each corresponding to one filter element carrying mechanism 3. Initially, these correspond to the first filter element carrying mechanism 31, the second filter element carrying mechanism 32, the third filter element carrying mechanism 33, and the fourth filter element carrying mechanism 34, respectively.

[0029] Two operators are arranged on each side of laying station 5, designated as Operator No. 1 and Operator No. 2. One laying operation method is provided here, such as... Figure 9As shown, when the first filter element carrying mechanism 31 is in the first operating position 41, the first transmission device 2 drives the mold 1 of the first filter element carrying mechanism 31 to move to the laying position 5. There is no filter element on the mold 1 of the first filter element carrying mechanism 31. Operator 1 removes the mold 1 from the first block 11, and operator 2 installs the mold 1 with the filter element laid on it onto the first block 11. The first transmission device 2 drives the mold 1 of the first filter element carrying mechanism 31 to the rotating disk 4. At this time, operator 1 can lay the filter element on the removed empty mold. The rotating disk rotates 90 degrees, causing the first filter element carrying mechanism 31 to rotate to the second operating position 42 for edge-fitting operation, while the fourth filter element carrying mechanism 34 rotates... Upon reaching the first operating station 41, the first transmission device 2 drives the mold 1 of the fourth filter element carrying mechanism 34 to move to the laying station 5. Since the mold 1 of the fourth filter element carrying mechanism 34 has no filter element on it, operator 2 removes the mold 1 from the first block 11. Operator 1 then installs the mold 1 with the filter element laid on the first block 11. The first transmission device 2 drives the mold 1 of the fourth filter element carrying mechanism 34 to the rotating disk 4. At this time, operator 2 can lay the filter element on the removed empty mold. The rotating disk 4 rotates 90 degrees, causing the fourth filter element carrying mechanism 34 to rotate to the second operating station 42 for edge-fitting operations. The first filter element carrying mechanism 31 correspondingly rotates to the third operating station 43, while the fourth filter element... The core carrier mechanism 34 rotates to the second operating station 42 to perform the edge-fitting operation, while the third filter element carrier mechanism 33 rotates to the first operating station 41. The first transmission device 2 drives the mold 1 of the third filter element carrier mechanism 33 to move to the laying station 5. Since there is no filter element on the mold 1 of the third filter element carrier mechanism 33, operator 1 removes the mold 1 from the first block 11. Operator 2 installs the mold 1 with the filter element laid on the first block 11. The first transmission device 2 drives the mold 1 of the third filter element carrier mechanism 33 to the rotating disk 4. At this time, operator 1 can lay the filter element on the removed empty mold. The rotating disk rotates 90 degrees, causing the third filter element carrier mechanism 33 to rotate to the second operating station 41. At work station 42, the edge-fitting operation is performed. The first filter element carrying mechanism 31 rotates to the fourth work station 44 to clamp the edge-fitted filter element to the outside. Meanwhile, the second filter element carrying mechanism 32 rotates to the first work station 41. The first transmission device 2 drives the mold 1 of the second filter element carrying mechanism 32 to move to the laying station 5. There is no filter element on the mold 1 of the second filter element carrying mechanism 32. Operator No. 2 takes the mold from the first block 11. Operator No. 1 installs the mold 1 with the filter element laid on the first block 11. The first transmission device 2 drives the mold of the second filter element carrying mechanism 32 to the rotating disk 4. At this time, operator No. 2 can lay the filter element on the empty mold.The rotating disk rotates 90 degrees, causing the second filter element carrying mechanism 32 to rotate to the second operating station 42 for edge bonding. The fourth filter element carrying mechanism 34 rotates to the fourth operating station 44 to clamp the edge-bonded filter element to the outside. Meanwhile, the first filter element carrying mechanism 31 rotates to the first operating station 41. In the initial state, the first transmission device 2 drives the mold 1 of the first filter element carrying mechanism 31 to move to the corresponding laying station 5 for the laying operation. This cycle repeats, corresponding to edge bonding at the second operating station 42 and clamping the filter element to the outside at the fourth operating station 44. At the same time, there is a third operating station 43 during the process from the second operating station 42 to the fourth operating station 44, which allows for a certain rotation time to facilitate cooling of the edge-bonded filter element. This description only covers one implementation method. The number of operating stations and the number of filter element carrying mechanisms 3 can be adjusted as needed. The rotating disk 4 includes a horizontally arranged disk body 41 and a second driving device 42 for driving the disk body 41 to rotate. The second driving device 42 includes a motor. The filter element is transferred while the disk body 41 is rotating.

[0030] The rotating disk 4 is provided with an edge-fitting component 6 for edge-fitting the filter element laid on the mold 1 and / or a clamping mechanism 7 for clamping the edge-fitted filter element on the mold 1 to the outside. This enables the edge-fitting operation of the filter element on the mold and the clamping of the edge-fitted filter element to other workstations.

[0031] An edge-applying machine, including a transmission device.

[0032] The mechanism that works together with the rotating disc and the filter element carrying mechanism has increased the number of molds corresponding to the operating positions on the rotating disc by one, and has also increased the number of operators who place the filter element, thus increasing the time for a single person to lay the filter element and making the equipment more efficient. This technical solution has the following advantages: In the existing technology, only one operator can place the filter element. If the working efficiency of the equipment is one filter element every 6 seconds, the operator must place the filter element within 6 seconds. If the filter element is not placed properly, it will affect the efficiency. The rotating plate works together with the filter element carrying mechanism to reduce the time for a single operator to place the filter element to within 12 seconds. This does not affect the efficiency of the equipment and ensures the stable operation of the equipment.

[0033] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0034] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

[0035] The embodiments of the filter element carrying mechanism, transmission equipment, and edge-sealing machine provided by this utility model have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the core ideas of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principles of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. A filter element carrying mechanism, comprising a mold (1) for laying filter elements, characterized in that, It also includes a first conveying device (2) that can drive the mold (1) to move so as to facilitate the laying of the filter element on the mold (1); The first transmission device (2) includes a support platform (21) movably connected to the mold (1) and a first drive device (22) for driving the mold (1) to move relative to the support platform (21).

2. The filter element carrying mechanism according to claim 1, characterized in that, The mold (1) is provided with a first block (11) connected to the movable end of the first driving device (22), and the first block (11) is movably connected to the support platform (21).

3. The filter element carrying mechanism according to claim 1, characterized in that, The mold (1) is movably mounted above the support platform (21), and the first driving device (22) is mounted on one side of the support platform (21).

4. The filter element carrying mechanism according to claim 2, characterized in that, The support platform (21) is provided with a slider (23) and a guide rail (24) movably connected to the slider (23). The guide rail (24) is connected to the first block (11).

5. The filter element carrying mechanism according to any one of claims 1 to 4, characterized in that, The first drive device (22) is a cylinder, a hydraulic cylinder, an electric cylinder, or an electric drive device.

6. The filter element carrying mechanism according to claim 2, characterized in that, The first block (11) is provided with a positioning pin (111) for easy positioning or connection to the mold (1).

7. A transmission device, characterized in that, Includes a filter element carrying mechanism (3) as described in any one of claims 1 to 6, and a rotatable rotating disk (4), wherein one or more filter element carrying mechanisms (3) are provided on the rotating disk (4), and the first transmission device (2) is connected to the rotating disk (4).

8. The transmission device according to claim 7, characterized in that, The rotating disk (4) is provided with an edge-fitting component (6) for edge-fitting the filter element laid on the mold (1) and / or a clamping mechanism (7) for clamping the filter element that has been edge-fitted on the mold (1) to the outside.

9. An edge-applying machine, characterized in that, Includes the transmission device as described in any one of claims 7 to 8.