General aluminum louver sheet threading machine

By introducing a moving mechanism into the aluminum louver sheet threading machine, the machine achieves rapid switching and integrated design of aluminum sheets of different shapes, overcoming the limitations of traditional equipment, improving production efficiency and automation, and adapting to rapid order response and diversified production.

CN224295227UActive Publication Date: 2026-05-29DONGGUAN XINHONGQI AUTOMATION CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN XINHONGQI AUTOMATION CO LTD
Filing Date
2025-05-23
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Traditional aluminum louver inserting machines can only press aluminum sheets of a fixed shape. The equipment occupies a large space, has a low degree of automation, and cannot meet the needs of rapid order response and diversified production.

Method used

A universal aluminum louver sheeting machine was designed. The moving mechanism enables the pressing mechanism 1 and pressing mechanism 2 to move on the same horizontal line, realizing the pressing of aluminum sheets of different shapes. The machine integrates the flat and S-shaped pressing mechanisms into one device, reducing equipment replacement and floor space requirements.

Benefits of technology

It enables rapid switching between pressing different shapes of aluminum sheets in one machine, reducing equipment costs and space requirements, improving equipment utilization and automation, and adapting to customized production needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224295227U_ABST
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Patent Text Reader

Abstract

The utility model provides a kind of general aluminum louver threading machine, including rack, be equipped with feeding mechanism, tablet press mechanism one, tablet press mechanism two and threading mechanism on rack, be equipped with moving mechanism on tablet press mechanism one and / or tablet press mechanism two, moving mechanism drives tablet press mechanism one and / or tablet press mechanism two to move, so that tablet press mechanism one and / or tablet press mechanism two with threading mechanism are located same horizontal line;Moving mechanism includes driving part one and sliding plate, tablet press mechanism one or tablet press mechanism two is set on sliding plate, the output shaft of driving part one is connected with sliding plate to drive sliding plate to move, and then switch tablet press mechanism one or tablet press mechanism two with tablet press mechanism same horizontal line realizes the pressing of different shape, by setting moving mechanism, tablet press mechanism one and / or tablet press mechanism two can be moved, the tablet press mechanism of two different shapes aluminum sheet of factory shape and S shape can be pressed in an equipment, realize the pressing of different shape aluminum sheet of one key switching.
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Description

Technical Field

[0001] This utility model belongs to the field of louver processing technology, specifically relating to a general-purpose aluminum louver slat threading machine. Background Technology

[0002] In the production process of venetian blinds, the pressing, cutting and threading of aluminum sheets are key steps. Traditional aluminum venetian blind threading machines can usually only press aluminum sheets of a fixed shape. When it is necessary to produce aluminum sheets of different shapes, it is often necessary to stop the machine and perform a series of complex operations, such as disassembling old molds and installing new equipment. This is not only time-consuming and labor-intensive, but also reduces the utilization rate of the equipment.

[0003] Furthermore, traditional multi-unit single-function equipment occupies a large area, requires more space and maintenance costs, and necessitates frequent manual intervention during production, resulting in low automation and difficulty in improving production efficiency. In customized production scenarios, the limitations of such traditional equipment become increasingly apparent, making it difficult to meet the demands of rapid order response and diversified production. Utility Model Content

[0004] (1) Technical problems to be solved

[0005] This utility model provides a universal aluminum louver sheet threading machine, which aims to solve the problems of threading machines being able to press only one type of aluminum sheet and occupying a large space.

[0006] (2) Technical solution

[0007] This utility model provides a universal aluminum louver slat threading machine, including a frame, on which a feeding mechanism, a first pressing mechanism, a second pressing mechanism, and a threading mechanism are provided. The first pressing mechanism and / or the second pressing mechanism are provided with a moving mechanism, which drives the first pressing mechanism and / or the second pressing mechanism to move, so that the first pressing mechanism and / or the second pressing mechanism and the threading mechanism are located on the same horizontal line.

[0008] The moving mechanism includes a driving component and a sliding plate. The tablet pressing mechanism or the tablet pressing mechanism is disposed on the sliding plate. The output shaft of the driving component is connected to the sliding plate to drive the sliding plate to move, thereby switching the tablet pressing mechanism or the tablet pressing mechanism to be on the same horizontal line as the tablet pressing mechanism to achieve different shapes of pressing.

[0009] Furthermore, the frame is provided with a slide rail, and the moving mechanism also includes a slider adapted to the slide rail, the slider being fixedly connected to the sliding plate.

[0010] Furthermore, the tablet pressing mechanism one is disposed between the tablet pressing mechanism two and the feeding mechanism. The tablet pressing mechanism one includes a pressure roller one and a pressure roller two adapted to the pressure roller one. The pressure roller one is provided with a lifting component one, and the lifting component one drives the pressure roller one to move closer to or away from the pressure roller two.

[0011] Furthermore, the tablet pressing mechanism one also includes a driving component two, the output shaft of which is fixedly connected to the pressure roller two to drive the pressure roller two to rotate.

[0012] Furthermore, the tablet pressing mechanism is provided in two sets.

[0013] Furthermore, the tablet pressing mechanism two includes a pressure roller three and a pressure roller four. The pressure roller three is provided with a lifting component two, which drives the pressure roller three to move closer to or away from the pressure roller four.

[0014] Furthermore, the tablet pressing mechanism two also includes a driving component five, the output shaft of which is fixedly connected to the pressure roller four to drive the pressure roller four to rotate.

[0015] Furthermore, the frame is provided with several limiting modules, which are located on the side of the first pressing mechanism and the second pressing mechanism near the feeding mechanism. The limiting modules are used to limit and guide the aluminum sheets conveyed from the feeding mechanism.

[0016] Furthermore, the frame is also provided with a perforation mechanism, which is located on the side of the tablet pressing mechanism away from the feeding mechanism. The perforation mechanism includes a driving component six and a punching knife. The output shaft of the driving component six is ​​fixedly connected to the punching knife to drive the punching knife to move.

[0017] Furthermore, a cutting mechanism is provided between the second threading mechanism and the perforation mechanism. The cutting mechanism includes a fourth driving member and a cutting blade. The output shaft of the fourth driving member is fixedly connected to the cutting blade to drive the cutting blade to move.

[0018] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0019] By setting up a moving mechanism, the tablet pressing mechanism one and / or tablet pressing mechanism two can be moved, integrating the tablet pressing mechanisms that can press aluminum sheets of two different shapes, namely shaped and S-shaped, into one device. This enables one-click switching between pressing aluminum sheets of different shapes, avoiding the complicated process of stopping the machine, disassembling the old mold, and installing new equipment when switching aluminum sheet shapes in the traditional process. It also eliminates the need to purchase multiple single-function devices, greatly reducing costs. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0021] Figure 2 This is a schematic diagram of the movement of the tablet pressing mechanism 2 of this utility model.

[0022] Figure 3 This is a schematic diagram illustrating the use of the pressing mechanism of this utility model. Figure 1 .

[0023] Figure 4 This is a schematic diagram illustrating the use of the pressing mechanism of this utility model. Figure 2 .

[0024] Figure 5 This is a cross-sectional view of the tablet pressing mechanism of this utility model.

[0025] Figure 6 This is a cross-sectional view of the tablet pressing mechanism II of this utility model.

[0026] Figure 7 This is a schematic diagram of the shape of the aluminum sheet after pressing according to this utility model.

[0027] Figure 8 This is a schematic diagram of the tablet pressing mechanism and the moving mechanism of this utility model.

[0028] Figure 9 This is a schematic diagram of the tablet pressing mechanism of this utility model.

[0029] Figure 10 This is a schematic diagram of the feeding mechanism of this utility model.

[0030] Figure 11 This is a schematic diagram illustrating the use of the inserting mechanism of this utility model. Figure 1 .

[0031] Figure 12 This is a schematic diagram illustrating the use of the inserting mechanism of this utility model. Figure 2 .

[0032] Figure 13 This is a schematic diagram of the cutting mechanism of this utility model.

[0033] Figure 14 This is an exploded view of the cutting mechanism and the perforating mechanism of this utility model.

[0034] Figure reference numerals: 1-Feeding mechanism, 11-Aluminum sheet, 111-Shape 1, 112-Shape 2, 12-Disc, 13-Driver Component 3, 2-Pressure pressing mechanism 1, 21-Pressure roller 1, 22-Pressure roller 2, 23-Lifting component 1, 24-Driver Component 2, 3-Pressure pressing mechanism 2, 31-Pressure roller 3, 32-Pressure roller 4, 33-Driver Component 5, 34-Lifting component 2, 4-Moving mechanism, 41-Driver Component 1, 42-Sliding mechanism Plate, 421-Slider, 5-Penetrating Mechanism, 51-Driver Component VI, 52-Drilling Knife, 53-Limit Seat I, 6-Frame, 61-Limit Module, 62-Support Column, 63-Slide Rail, 7-Cutting Mechanism, 71-Driver Component IV, 72-Cutting Knife, 73-Limit Seat II, 8-Piece Threading Mechanism, 81-Bearing Seat, 82-Moving Block, 83-Support Plate, 831-Rotating Component, 84-Lifting Unit, 85-Rope Ladder. Detailed Implementation

[0035] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0036] like Figure 1 As shown, this utility model provides a universal aluminum louver slat threading machine, including a frame 6. The frame 6 is provided with a feeding mechanism 1, a pressing mechanism 2, a pressing mechanism 3, and a threading mechanism 8. The pressing mechanism 2 and / or the pressing mechanism 3 are provided with a moving mechanism 4. The moving mechanism 4 drives the pressing mechanism 2 and / or the pressing mechanism 3 to move, so that the pressing mechanism 2 and / or the pressing mechanism 3 and the threading mechanism 8 are located on the same horizontal line.

[0037] Among them, such as Figure 2As shown, the feeding mechanism 1 is equipped with a disc 12. Aluminum sheets 11 are rolled up and mounted on the disc 12. The aluminum sheets 11 are pulled out into long strips and pressed into shape 111 by the pressing mechanism 2. The aluminum sheets 11 are then pressed into shape 112 by the pressing mechanism 3. By using the moving mechanism 4, the pressing mechanisms 2 and 3, which can press aluminum sheets 11 into different shapes, are integrated into one device. Different shapes of aluminum sheets 11 can be pressed into one device according to actual needs. This design reduces the time required for repeated device replacements and integrates multiple pressable shapes into one unit, eliminating the need to purchase multiple multi-functional devices for different shapes, greatly reducing costs and creating an integrated device. With fewer devices, maintenance is more centralized and efficient, while changeover time is shortened, improving equipment utilization. Currently, the most widely used aluminum sheets 11 are in the P-shape and S-shape. In this embodiment, the pressing mechanism 1 2 can press the aluminum sheet 11 into the P-shape, and the pressing mechanism 2 3 can press the aluminum sheet 11 into the S-shape. This solves the complicated process of stopping the machine, disassembling the old mold, and installing the new equipment when changing the shape of the aluminum sheet 11 in the traditional process. This utility model adjusts the position of the pressing station through the moving mechanism 4 to achieve one-click switching, adapting to the needs of rapid order response. It is especially suitable for customized production scenarios. In addition, traditional multiple devices require more space, while integrated design saves factory space, simplifies production line layout, and reduces enterprise land costs.

[0038] Specifically, the moving mechanism 4 can be disposed on the first pressing mechanism 2 or the second pressing mechanism 3, or both the first pressing mechanism 2 and the second pressing mechanism 3 can be provided with the moving mechanism 4. The first pressing mechanism 2 or the second pressing mechanism 3 can be moved by the moving mechanism 4 to press the aluminum sheet 11. In this embodiment, the moving mechanism 4 is disposed on the second pressing mechanism 3 to drive the second pressing mechanism 3 to move.

[0039] In this embodiment, as Figure 3-6As shown, the first pressing mechanism 2 is located between the second pressing mechanism 3 and the feeding mechanism 1. In use, since only one shape of aluminum sheet 11 needs to be pressed at a time, in order to prevent the simultaneous operation of pressing mechanisms that can press two different shapes from affecting the aluminum sheet 11, when the aluminum sheet 11 of shape 111 is needed, the moving mechanism 4 moves the second pressing mechanism 3 so that the first pressing mechanism 2 and the second pressing mechanism 3 are not on the same horizontal line. When the aluminum sheet 11 of shape 112 needs to be pressed, the second pressing mechanism 3, which is not on the same horizontal line as the first pressing mechanism 2, is moved to the same horizontal line as the threading mechanism 8. The aluminum sheet 11 is released from the feeding mechanism 1, bent obliquely upward from the bottom of the pressing mechanism 1, and pressed onto the second pressing mechanism 3, thereby obtaining aluminum sheets 11 of different shapes. This design is simple and convenient. It is possible to press aluminum sheets 11 of different shapes in one device simply by moving the first pressing mechanism 2 or the second pressing mechanism 3 through the moving mechanism 4.

[0040] It is important to note that, such as Figure 4 As shown, when the aluminum sheet 11 needs to be pressed into shape 2 by pressing mechanism 3, the gap between the pressing mechanisms 2 needs to be adjusted when the aluminum sheet 11 passes through the middle of the pressing mechanism 2. Adjusting the gap between the pressing mechanisms 2 will increase the time for alignment when pressing out shape 111, and may lead to misalignment and a large waste of raw materials. In this embodiment, when the aluminum sheet 11 needs to be pressed into shape 112, the aluminum sheet 11 is bent from the bottom of the pressing mechanism 2 to the pressing mechanism 3. This method facilitates subsequent pressing, saves the operator's time, and reduces material consumption.

[0041] like Figure 7 As shown, the aluminum sheet 11 obtained by pressing through pressing mechanism 12 is S-shaped, i.e., shape 111, and the aluminum sheet 11 obtained by pressing through pressing mechanism 23 is S-shaped, i.e., shape 212. Two different shapes can be pressed by one device without changing the machine.

[0042] Specifically, such as Figure 8 As shown, the moving mechanism 4 includes a driving member 41 and a sliding plate 42. The pressing mechanism 3 is disposed on the sliding plate 42, and the driving member 41 drives the sliding plate 42 to move.

[0043] Furthermore, the frame 6 is provided with a slide rail 63, and the sliding plate 42 is provided with a slider 421 adapted to the slide rail 63. By setting the slider 421 and the slide rail 63, the smoothness of the movement of the moving mechanism 4 is improved, making the movement of the moving mechanism 4 more stable, eliminating the need to adjust the tablet pressing mechanism 3 multiple times, saving time and adjustment accuracy.

[0044] The pressing mechanism 2 3 includes a driving component 5 33, a pressing roller 3 31 and a pressing roller 4 32 aligned vertically. The pressing roller 3 31 is provided with a lifting component 2 34. The lifting component 2 34 drives the pressing roller 3 31 to move closer to or away from the pressing roller 4 32 to press and deform the aluminum sheet 11 located between them. The output shaft of the driving component 5 33 is fixedly connected to the pressing roller 4 32 to drive the pressing roller 4 32 to rotate and transmit the deformed aluminum sheet 11 to the next mechanism for processing.

[0045] Specifically, such as Figure 9 As shown, the pressing mechanism 2 includes a driving component 24, a pressing roller 21, and a pressing roller 22 adapted to the pressing roller 21. The pressing roller 21 is provided with a lifting component 23. The lifting component 23 drives the pressing roller 21 to move closer to or away from the pressing roller 22. The output shaft of the driving component 24 is fixedly connected to the pressing roller 22 to drive the pressing roller 22 to rotate. In use, the flat aluminum sheet 11 is pulled out and passes through the gap between the pressing roller 21 and the pressing roller 22. Under the drive of the lifting component 23, the pressing roller 21 moves closer to the pressing roller 22 and presses the aluminum sheet 11. Then, the driving component 24 drives the pressing roller 22 to rotate. After being pressed, the aluminum sheet 11 is transmitted through the gap between the pressing roller 22 and the pressing roller 21.

[0046] Preferably, the tablet pressing mechanism 2 is provided in two sets. Since it is difficult to press the product into shape, it cannot be formed directly in one step. Therefore, two sets of tablet pressing mechanisms 2 are required to work together to adjust the product into the required shape.

[0047] Preferably, such as Figure 2 As shown, the bottom of the tablet pressing mechanism 2 is provided with a support column 62, which is fixedly connected to the frame 6. In use, the aluminum sheet 11 reduces friction with the frame 6 through the support column 62, so that the aluminum sheet 11 is suspended in the air and does not rub against the frame 6.

[0048] Preferably, a plurality of limiting modules 61 are provided on the frame 6. The limiting modules 61 are located on the side of the first pressing mechanism 2 and the second pressing mechanism 3 near the feeding mechanism 1. The limiting modules 61 are used to limit and guide the aluminum sheet 11 conveyed from the feeding mechanism 1. Since there is a certain distance between the first pressing mechanism 2 or the second pressing mechanism 3 and the feeding mechanism 1 on the X-axis, the aluminum sheet 11 may bend or deviate during the conveying process. Therefore, the limiting modules 61 are set to limit and guide the aluminum sheet 11 conveyed to the pressing mechanism.

[0049] like Figure 10As shown, the aluminum sheet 11 is wound on the disc 12 in the form of a continuous roll. The feeding mechanism 1 also includes a driving component 3 13. The output shaft of the driving component 3 13 is fixedly connected to the disc 12. In use, the driving component 3 13 drives the disc 12 to rotate and release the aluminum sheet 11 roll. The released aluminum sheet 11 is then conveyed to the pressing mechanism 1 2 or the pressing mechanism 2 3 for pressing and then output.

[0050] Furthermore, such as Figure 11-12 As shown, the sheet-threading mechanism 8 is located on the side of the pressing mechanism 3 away from the feeding mechanism 1. The sheet-threading mechanism 8 can be designed separately from the frame 6, or it can be installed on the frame 6. The sheet-threading mechanism 8 includes a support seat 81, a moving block 82, a support plate 83, a lifting unit 84, and a rope ladder 85 hooked onto the support plate 83. The support seat 81 is fixedly connected to the support plate 83. The lifting unit 84 drives the moving block 82 to move and lift. In use, the cut aluminum sheet 11 is pushed onto the moving block 82 by the uncut aluminum sheet 11 and threaded into one of the grids of the rope ladder 85. The lifting unit 84 drives the moving block 82 to move so that the threaded aluminum sheet 11 hooks onto the rotatable rotating part 831 installed on the support plate 83. Then, the lifting unit 84 drives the moving block 82 to descend, repeating the cycle. Several threaded aluminum sheets 11 hook onto the rotating part 831 of the support plate 83.

[0051] Furthermore, such as Figure 13-14 As shown, the venetian blinds require multiple aluminum sheets 11 to be connected in series by a pull strap. For aesthetic and practical purposes, the aluminum sheets 11 need to be cut to a consistent length. The frame 6 is also equipped with a cutting mechanism 7, including a drive unit 71, a cutting blade 72, and a limiting seat 73. The limiting seat 73 is used to limit the position of the formed aluminum sheets 11, ensuring that the aluminum sheets 11 are in the same position during cutting. The output shaft of the drive unit 71 is fixedly connected to the cutting blade 72 to drive the cutting blade 72 closer to... The aluminum sheet 11, which is either far from being conveyed, is deformed under the action of the pressing mechanism and then continuously conveyed. In order to pass the aluminum sheet 11 through the sheet, the aluminum sheet 11 needs to be set to the appropriate length according to the requirements. The cutting mechanism 7 cuts the conveyed aluminum sheet 11 into several aluminum sheets 11 of equal length. The aluminum sheet 11 is cut during continuous conveying, which does not require stopping the machine, thus increasing the production speed, shortening the production time, and reducing manual intervention. At the same time, the use of mechanical automation equipment to realize feeding, forming, and cutting ensures that the cut is flat and improves the degree of automation.

[0052] Since the venetian blinds require coordinated adjustment of light and airflow, holes need to be drilled in the aluminum sheet 11. These holes must be drilled before cutting, as drilling after cutting necessitates aligning each sheet individually, which is inefficient. A perforation mechanism 5 is also provided between the cutting mechanism 7 and the pressing mechanism 3. The perforation mechanism 5 is fixedly mounted on the frame 6 and includes a drive component 51, a punching tool 52, and a limiting seat 53. The limiting seat 53 is used to limit the shape of the aluminum sheet 11 after pressing, preventing it from shaking during transport and causing inconsistent punching positions. The output shaft of the drive unit 51 is fixedly connected to the punching knife 52 to drive the punching knife 52 to move and punch holes in the conveyed aluminum sheet 11. After the aluminum sheet 11 is formed, it is punched first and then cut by the cutting mechanism 7 to ensure that the distance between the hole position and the end of the aluminum sheet 11 is consistent. The cutting mechanism 7, the sheet threading mechanism 8 and the punching mechanism 5 are located on the same horizontal line as the feeding mechanism 1, and in this embodiment, they are located on the same horizontal line as the pressing mechanism 2. The aluminum sheet 11 is formed in one step in the continuous process of unwinding, forming, punching and cutting, which greatly reduces the production time and improves the production efficiency.

[0053] The reason why the tablet pressing mechanism 2 and the tablet pressing mechanism 3 are located on the same horizontal line instead of a vertical plane is that when the tablet pressing mechanism 2 and the tablet pressing mechanism 3 are located on the same vertical plane, the tablet pressing mechanism 2 and / or the tablet pressing mechanism 3 cannot be located on the same straight line as the feeding mechanism 1 and the perforating mechanism 5. As a result, the aluminum sheet 11 cannot be bent after being shaped. If it is bent, the shape of the aluminum sheet 11 will be deformed. Therefore, the aluminum sheet 11 can only be bent before it is pressed by the tablet pressing mechanism. It cannot be bent after it is pressed. Therefore, the tablet pressing mechanism 2 and the tablet pressing mechanism 3 are located on the same horizontal line.

[0054] The following is a detailed explanation of the working principle of this utility model;

[0055] In use, aluminum sheet 11 is loaded onto rotating disk 12 in roll form. Driven by drive unit 3 13, disk 12 releases aluminum sheet 11 at a uniform speed. After being guided by limit module 61, aluminum sheet 11 is conveyed horizontally and linearly. When aluminum sheet 11 needs to be pressed into shape 111, pressing mechanism 2 3 moves under the action of moving mechanism 4, so that pressing mechanism 2 3 is not on the same horizontal line as pressing mechanism 1 2. At this time, pressing mechanism 2 3, cutting mechanism 7, feeding mechanism 1, perforating mechanism 5, and threading mechanism 8 are all on the same horizontal line. It is then conveyed to pressing mechanism 1 2 for pressing and shaping. When the aluminum sheet 11 is in shape 112, the moving mechanism 4 drives the pressing mechanism 2 to be on the same horizontal line as the feeding mechanism and the cutting mechanism 7. The aluminum sheet 11 is conveyed from the feeding mechanism 1 to the pressing mechanism 3 for pressing, so that the flat aluminum sheet 11 is pressed into shape 112. The aluminum sheet 11 pressed into shape 111 or shape 112 is conveyed to the perforating mechanism 5 for perforation. Then the pressed and perforated aluminum sheet 11 is conveyed to the cutting mechanism 7 for cutting, into several aluminum sheets 11 of the same length. Finally, it reaches the threading mechanism 8 to thread the pressed aluminum sheet 11 into the rope ladder 85.

[0056] The innovation of this utility model lies in the fact that by setting a moving mechanism, the tablet pressing mechanism one and / or the tablet pressing mechanism two can be moved, integrating the tablet pressing mechanisms that can press aluminum sheets of two different shapes, namely shaped and S-shaped, into one device. This enables one-click switching to press aluminum sheets of different shapes, avoiding the complicated process of stopping the machine, disassembling the old mold, and installing new equipment when switching aluminum sheet shapes in the traditional process. It also eliminates the need to purchase multiple single-function devices, greatly reducing costs.

[0057] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other implementations that can be understood by those skilled in the art.

[0058] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A universal aluminum louver slat threading machine, characterized in that, Includes a frame (6), on which a feeding mechanism (1), a tablet pressing mechanism one (2), a tablet pressing mechanism two (3) and a tablet threading mechanism (8) are provided. The tablet pressing mechanism one (2) and / or the tablet pressing mechanism two (3) are provided with a moving mechanism (4). The moving mechanism (4) drives the tablet pressing mechanism one (2) and / or the tablet pressing mechanism two (3) to move, so that the tablet pressing mechanism one (2) and / or the tablet pressing mechanism two (3) and the tablet threading mechanism (8) are located on the same horizontal line. The moving mechanism (4) includes a driving component (41) and a sliding plate (42). The tablet pressing mechanism (2) or the tablet pressing mechanism (3) is disposed on the sliding plate (42). The output shaft of the driving component (41) is connected to the sliding plate (42) to drive the sliding plate (42) to move, thereby switching the tablet pressing mechanism (2) or the tablet pressing mechanism (3) to the same horizontal line as the tablet threading mechanism (8) to achieve different shapes of pressing.

2. The universal aluminum louver inserter according to claim 1, characterized in that, The frame (6) is provided with a slide rail (63), and the moving mechanism (4) further includes a slider (421) adapted to the slide rail (63), and the slider (421) is fixedly connected to the sliding plate (42).

3. The universal aluminum louver inserter according to claim 2, characterized in that, The tablet pressing mechanism 1 (2) is located between the tablet pressing mechanism 2 (3) and the feeding mechanism (1). The tablet pressing mechanism 1 (2) includes a pressure roller 1 (21) and a pressure roller 2 (22) adapted to the pressure roller 1 (21). The pressure roller 1 (21) is provided with a lifting component 1 (23). The lifting component 1 (23) drives the pressure roller 1 (21) to move closer to or away from the pressure roller 2 (22).

4. The universal aluminum louver slat threading machine according to claim 3, characterized in that, The tablet pressing mechanism (2) further includes a driving component (24), the output shaft of which is fixedly connected to the pressure roller (22) to drive the pressure roller (22) to rotate.

5. The universal aluminum louver inserter according to claim 4, characterized in that, The tablet pressing mechanism (2) has two sets.

6. The universal aluminum louver slat threading machine according to claim 3, characterized in that, The tablet pressing mechanism 2 (3) includes a pressure roller 3 (31) and a pressure roller 4 (32). The pressure roller 3 (31) is provided with a lifting component 2 (34). The lifting component 2 (34) drives the pressure roller 3 (31) to move closer to or away from the pressure roller 4 (32).

7. The universal aluminum louver inserter according to claim 6, characterized in that, The tablet pressing mechanism 2 (3) also includes a driving component 5 (33), the output shaft of which is fixedly connected to the pressing roller 4 (32) to drive the pressing roller 4 (32) to rotate.

8. The universal aluminum louver inserter according to claim 7, characterized in that, The frame (6) is provided with several limiting modules (61). The limiting modules (61) are located on the side of the first pressing mechanism (2) and the second pressing mechanism (3) near the feeding mechanism (1). The limiting modules (61) are used to limit and guide the aluminum sheet (11) conveyed from the feeding mechanism (1).

9. A universal aluminum louver inserter according to claim 8, characterized in that, The frame (6) is also provided with a perforation mechanism (5). The perforation mechanism (5) is located on the side of the tablet pressing mechanism (3) away from the feeding mechanism (1). The perforation mechanism (5) includes a driving component (51) and a punch (52). The output shaft of the driving component (51) is fixedly connected to the punch (52) to drive the punch (52) to move.

10. A universal aluminum louver inserter according to claim 9, characterized in that, A cutting mechanism (7) is provided between the threading mechanism (8) and the perforation mechanism (5). The cutting mechanism (7) includes a drive member (71) and a cutting blade (72). The output shaft of the drive member (71) is fixedly connected to the cutting blade (72) to drive the cutting blade (72) to move.