Embroidery device for beaded fabric and manufacturing process

By integrating a clamping mechanism, a three-axis moving platform, and a cutting mechanism into an embroidery machine, the pattern embroidery and cutting of sequined fabrics can be completed on the same equipment, solving the problem of low production efficiency in existing technologies and improving production efficiency and energy saving.

CN118480914BActive Publication Date: 2026-08-04WUJIANG RUILI LEISI EMBROIDERY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
WUJIANG RUILI LEISI EMBROIDERY CO LTD
Filing Date
2024-06-25
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In existing technologies, the embroidery process of sequined fabrics needs to be completed on an embroidery machine before being transferred to a cutting device for trimming, resulting in low production efficiency.

Method used

Design an integrated device comprising a worktable, a clamping mechanism, a three-axis moving platform, an embroidery head, a cutting mechanism, and a sequin feeder. The three-axis moving platform drives the embroidery head and the cutting mechanism to complete the embroidery and cutting of the fabric on the same device, enabling the fabric to be patterned and cut on the same device.

Benefits of technology

It improves production efficiency, reduces fabric handling, and enhances both production efficiency and energy saving.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of fabric embroidery cutting equipment, in particular to an embroidery device for pearl fabric and a preparation process, which comprises a workbench, a first placing groove is formed in the top side of the workbench, the first placing groove is used for placing fabric, the workbench is provided with a clamping mechanism, the clamping mechanism is used for clamping the fabric, the top surface of the workbench is fixedly provided with a three-axis moving platform, the three-axis moving platform is fixedly provided with a mounting seat, the three-axis moving platform is used for driving the mounting seat to move, the mounting seat is provided with an embroidery machine head, a supporting plate is fixedly arranged on one side of the embroidery machine head close to the mounting seat, a placing column is fixedly arranged on the top surface of the supporting plate, the placing column is used for placing a thread drum, one side of the embroidery machine head is fixedly provided with a pearl feeder, the pearl feeder is used for feeding pearls into the embroidery machine head and the fabric, the embroidery machine head is used for embroidering the pearls on the fabric, and the workbench is provided with a cutting mechanism, the cutting mechanism is used for cutting the fabric. The application has the effect of improving production efficiency.
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Description

Technical Field

[0001] This application relates to the field of fabric embroidery cutting equipment, and in particular to an embroidery device and preparation process for sequined fabrics. Background Technology

[0002] Currently, in the textile industry, in order to enhance the aesthetic appeal and commercial value of fabrics, it is often necessary to add various decorative elements to the fabrics, among which sequins are a commonly used decorative material.

[0003] However, embroidery machines typically only have a sequin feeder and an embroidery head. The embroidery head directly embroiders the pattern onto the fabric. If sequins need to be added, the sequin feeder places the sequins between the embroidery head and the fabric, and then the embroidery head embroiders the sequins onto the fabric.

[0004] Regarding the aforementioned techniques, some patterns are large, occupying the entire fabric; others are small, occupying only a portion of the fabric. Multiple patterns are embroidered on a single fabric before cutting. When cutting is necessary, the fabric must be removed from the embroidery machine. The finished embroidered fabric is then moved to a separate cutting machine for trimming, thus reducing production efficiency. Summary of the Invention

[0005] To improve production efficiency, this application provides an embroidery device and preparation process for sequined fabrics.

[0006] This application provides an embroidery device and manufacturing process for sequined fabrics, employing the following technical solution: An embroidery device for sequined fabric, characterized in that: it includes a worktable, a first placement groove on the top side of the worktable for placing fabric, a clamping mechanism for clamping the fabric, a three-axis moving platform fixedly mounted on the top surface of the worktable, a mounting base fixedly mounted on the three-axis moving platform for moving the mounting base, an embroidery head and a cutting mechanism mounted on the mounting base, a support plate fixedly mounted on the side of the embroidery head near the mounting base, a placement column fixedly mounted on the top surface of the support plate for placing thread spools, a sequin feeder fixedly mounted on one side of the embroidery head for feeding sequins between the embroidery head and the fabric, the embroidery head for embroidering sequins onto the fabric, and the cutting mechanism for cutting the fabric.

[0007] By adopting the above technical solution, the fabric is placed on the worktable and clamped by a clamping mechanism. A spool of thread is placed on a placement column, supplying thread to the embroidery machine head. Then, a three-axis moving platform, via a mounting base, moves the embroidery machine head and the sequin feeder. The sequin feeder places sequins between the embroidery machine head and the fabric, facilitating the embroidery machine head to embroider the sequins onto the fabric. After the pattern is embroidered on the fabric, the three-axis moving platform moves the cutting mechanism to cut the fabric, thereby improving production efficiency.

[0008] Optionally, the cutting mechanism includes a laser cutting head, a suction pipe, a suction head, and a vacuum cleaner. The vacuum cleaner is fixedly installed on one side of the workbench. One end of the suction pipe is fixedly connected to the vacuum cleaner, and the other end of the suction pipe is fixedly connected to the suction head. Both the suction head and the laser cutting head are fixedly installed on the mounting base. The laser cutting head is positioned downwards, and the suction head is positioned between the laser cutting head and the fabric.

[0009] By adopting the above technical solution, the three-axis moving platform belt drives the laser cutting head and the vacuum head to move and cut the fabric via the mounting base. When the vacuum cleaner is started, the vacuum head absorbs the smoke generated by the laser cutting head cutting the fabric, and then the smoke enters the vacuum cleaner through the suction pipe and is discharged, thereby reducing the harm of the smoke generated by the fabric cutting to the human body.

[0010] Optionally, a power connector and a plug are fixedly installed on the side of the embroidery machine head near the mounting base. The mounting base has a power socket for inserting the power connector and a slot for damping the plug insertion.

[0011] By adopting the above technical solution, the power connector and plug can be unplugged when cutting fabric, making it easy to remove the embroidery machine head from the mounting base. Afterwards, when cutting fabric, the three-axis moving platform only moves the laser cutting head and the dust extraction head, thus reducing energy consumption.

[0012] Optionally, a support frame is fixedly installed on the top surface of the workbench. The support frame is located on the side of the embroidery machine head away from the mounting base. Two first horizontal plates are fixedly installed on the side of the support frame close to the embroidery machine head. A vertical plate is fixedly installed on the side of the first horizontal plate away from the support frame. Placement blocks are installed on both sides of the embroidery machine head. The first horizontal plate, the vertical plate, and the support frame form a support groove for the placement blocks to be placed.

[0013] By adopting the above technical solution, when it is necessary to remove the embroidery machine head from the three-axis moving platform, the three-axis moving platform drives the embroidery machine head to move, allowing the placement block to enter the support groove. Then, the three-axis moving platform drives the mounting base to move away from the support frame, and the vertical plate restricts the placement block from moving away from the support frame, thereby allowing the power connector and plug to be pulled out, thus facilitating the removal of the embroidery machine head from the mounting base.

[0014] When it is necessary to install the embroidery machine head on the mounting base, the three-axis moving platform moves the mounting base to align the power plug with the power socket and the plug with the slot. Then, the three-axis moving platform moves the mounting base towards the support frame, thereby inserting the power plug into the power socket and the plug into the slot, thus facilitating the installation of the embroidery machine head on the mounting base.

[0015] Optionally, both sides of the embroidery machine head are provided with sliding grooves for the placement block to slide up and down. The insertion block is provided with a mounting hole communicating with the sliding groove. The side of the insertion block facing the mounting base is fixedly embedded with a mounting block. A rotating rod is provided inside the mounting hole. One end of the rotating rod is rotatably inserted into the mounting block, and the other end of the rotating rod is rotatably inserted into the inner wall of the sliding groove. The rod body of the rotating rod inside the sliding groove and the side of the placement block facing the inside of the sliding groove have mutually meshing teeth. A locking block is fixedly installed on the rod body of the rotating rod inside the mounting hole. A clearance opening is provided on the periphery of the insertion block for the locking block to pass through. A slot is provided on the inner wall of the slot for the locking block to enter. A second horizontal plate is arranged parallel above the first horizontal plate, and one side of the second horizontal plate is fixedly connected to the support frame.

[0016] By adopting the above technical solution, when the embroidery machine head is removed from the mounting base, the placement blocks on both sides of the embroidery machine head are placed into the support groove. The placement blocks press against the first horizontal plate and move upward along the slide groove. The placement blocks engage with the rotating rod, and the rotation of the rotating rod causes the locking block to be pulled out of the slot. Then, the three-axis moving platform moves the embroidery machine head away from the support frame, thus facilitating the removal of the insertion block from the slot and the power connector from the power socket.

[0017] When mounting the embroidery machine head onto the mounting base, insert the power connector into the power socket and the insert block into the slot. Then, the three-axis moving platform moves the embroidery machine head upwards via the mounting base, causing the placement block to press against the first horizontal plate. The placement block then slides downwards along the slide groove. The placement block engages with the rotating rod, and the rotation of the rotating rod causes the locking block to enter the locking slot. The locking block engages with the inner wall of the locking slot, thus improving the stability of the embroidery machine head mounted on the mounting base.

[0018] Optionally, the clamping mechanism includes a pressure frame and a piercing nail. The top side of the worktable has a second placement groove along the edge of the first placement groove for placing the pressure frame. The second placement groove is connected to the first placement groove. The depth of the second placement groove is less than the depth of the first placement groove. The piercing nail is fixedly installed on the bottom side of the pressure frame. The inner bottom wall of the second placement groove has an insertion hole for inserting the piercing nail. The piercing nail is used to pass through the fabric.

[0019] By adopting the above technical solution, the fabric is placed on the workbench, and then the piercing nail passes through the edge of the fabric and is inserted into the insertion hole. The pressing frame presses the edge of the fabric into the inner bottom wall of the second placement groove, thereby facilitating the fixing of the fabric.

[0020] Optionally, an embroidery preparation process for sequined fabric includes the following steps: Place the fabric to be processed into the first placement slot and clamp the fabric using the clamping mechanism. According to the pattern to be sewn, the sequin feeder puts the sequins between the embroidery head and the fabric. The three-axis moving platform drives the embroidery head to move, allowing the embroidery head to sew the sequins onto the fabric. The three-axis moving platform drives the cutting mechanism to move, and the cutting mechanism cuts off the sewn parts of the fabric. By adopting the above technical solution, the fabric can be cut by a cutting mechanism after the embroidery is completed, thus eliminating the need to transport the fabric to other cutting equipment and improving production efficiency.

[0021] In summary, this application has the following beneficial technical effects: When the pattern on the fabric is finished and needs to be cut, the three-axis moving platform drives the laser cutting head to move along the edge of each pattern, thereby cutting out the pattern on the fabric and improving production efficiency. Attached Figure Description

[0022] Figure 1 This is a first-view structural schematic diagram of an embodiment of this application; Figure 2 This is an exploded view of the workbench and pressure frame in an embodiment of this application; Figure 3 This is a schematic diagram of the overall structure from a second perspective of an embodiment of this application; Figure 4 This is an exploded view of the embroidery machine head and the mounting base according to an embodiment of this application; Figure 5 This is an exploded view of the embroidery machine head according to an embodiment of this application; Figure 6 This is a schematic diagram of the structure of the embroidery machine head according to an embodiment of this application; Figure 7 yes Figure 6 Sectional view at AA; Figure 8 yes Figure 7 Enlarged view at point A.

[0023] Explanation of reference numerals in the attached drawings: 1. Workbench; 2. First placement slot; 3. Second placement slot; 4. Three-axis moving platform; 5. Mounting base; 6. Embroidery machine head; 7. Support plate; 8. Clamping mechanism; 81. Pressing frame; 82. Piercing nail; 9. Placement column; 10. Power connector; 11. Insert block; 12. Power socket; 13. Slot; 14. Sequin feeder; 15. Placement block; 16. Slide groove; 17. Support frame; 18. First horizontal plate; 19. Second horizontal plate; 20. Vertical plate; 21. Support slot; 22. Mounting hole; 23. Rotating rod; 24. Mounting block; 25. Locking block; 26. Clearance opening; 27. Locking slot; 28. Cutting mechanism; 281. Laser cutting head; 282. Dust suction pipe; 283. Dust suction head; 284. Vacuum cleaner. Detailed Implementation

[0024] The following is in conjunction with the appendix Figure 1-1 2. This application will be described in further detail.

[0025] This application discloses an embroidery device and preparation process for sequined fabrics.

[0026] Reference Figure 1 , Figure 2 An embroidery device for sequined fabric includes a worktable 1. A first placement groove 2 is formed on the top surface of the worktable 1, and a second placement groove 3 is formed along the edge of the first placement groove 2 on the top side of the worktable 1. The first placement groove 2 and the second placement groove 3 are interconnected, and the depth of the second placement groove 3 is less than the depth of the first placement groove 2. The worktable 1 is provided with a clamping mechanism 8 for holding the fabric. The clamping mechanism 8 includes a pressure frame 81 and a piercing pin 82. The piercing pin 82 is fixedly installed on the bottom surface of the pressure frame 81, and the bottom of the second placement groove 3 has an insertion hole for the piercing pin 82 to pass through.

[0027] The fabric is placed inside the first placement slot 2, with the edge of the fabric placed inside the second placement slot 3. Then, the piercing nail 82 is inserted into the insertion hole after passing through the fabric. Afterward, the pressing frame 81 presses the edge of the fabric tightly against the inner bottom wall of the second placement slot 3, thereby fixing the fabric to the worktable 1, which facilitates the cutting and embroidery of the fabric.

[0028] In another embodiment, the pressure frame 81 is magnetically attached to the inner bottom wall of the second placement groove 3, thereby facilitating the pressing of the fabric.

[0029] Reference Figure 1 A three-axis moving platform 4 is fixedly installed on the top surface of the workbench 1, and a mounting base 5 is installed on the three-axis moving platform 4. The three-axis moving platform 4 is used to move the mounting base 5.

[0030] Reference Figure 1 , Figure 3An embroidery machine head 6 is provided on one side of the mounting base 5. A support plate 7 is fixedly installed on the side of the embroidery machine head 6 near the mounting base 5. A placement column 9 is fixedly installed on the top surface of the support plate 7. The thread spool is inserted into the placement column 9, and then the thread spool feeds the thread to the embroidery machine head 6, thus facilitating the embroidery machine head 6 to pick up the thread for embroidery.

[0031] Reference Figure 4 , Figure 5 A power connector 10 and a plug 11 are fixedly installed on the side of the embroidery machine head 6 near the mounting base 5. The mounting base 5 has a power socket 12 for inserting the power connector 10, and a slot 13 for damping insertion of the plug 11.

[0032] The power connector 10 is inserted into the power socket 12, thereby energizing the embroidery head 6. The insert block 11 is inserted into the slot 13, thereby mounting the embroidery head 6 onto the mounting base 5. Then, the three-axis moving platform 4 moves the embroidery head 6 via the mounting base 5, thus facilitating the embroidery head 6 to embroider the fabric.

[0033] Reference Figure 1 A sequin feeder 14 is fixedly installed on one side of the embroidery machine head 6. When sequins need to be embroidered on the fabric, the sequin feeder 14 feeds the sequins into the embroidery machine head 6 between the fabric, so that the embroidery machine head 6 can embroider the sequins on the fabric.

[0034] Reference Figure 3 , Figure 5 Both sides of the embroidery machine head 6 are provided with placement blocks 15, and both sides of the embroidery machine head 6 are provided with sliding grooves 16 for the placement blocks 15 to slide up and down. A support frame 17 is fixedly installed on the top surface of the workbench 1, and the support frame 17 is located on the side of the embroidery machine head 6 away from the mounting base 5. Two first horizontal plates 18 are fixedly installed on the side of the support frame 17 closest to the embroidery machine head 6, and a vertical plate 20 is fixedly installed on the side of the first horizontal plate 18 away from the support frame 17. The first horizontal plate 18, the vertical plate 20 and the support frame 17 successfully enclose the support groove 21 in which the placement block 15 is placed.

[0035] When it is necessary to remove the embroidery head 6 from the mounting base 5, the three-axis moving platform 4 moves the embroidery head 6 via the mounting base 5, allowing the placement block 15 to enter the support groove 21. Then, the three-axis moving platform 4 moves the mounting base 5 away from the support frame 17, thereby allowing the power connector 10 to be unplugged from the power socket 12 and the insertion block 11 to be pulled out of the slot 13, thus facilitating the removal of the embroidery head 6 from the mounting base 5.

[0036] When it is necessary to install the embroidery head 6 onto the mounting base 5, the three-axis moving platform 4 moves the mounting base 5, aligning the power connector 10 with the power socket 12 and the insertion block 11 with the slot 13. Then, the three-axis moving platform 4 moves the mounting base 5 towards the support frame 17, allowing the power connector 10 to insert into the power socket 12 and the insertion block 11 to insert into the slot 13, thus facilitating the installation of the embroidery head 6 onto the mounting base 5. Then, the three-axis moving platform 4 moves the embroidery head 6 upward via the mounting base 5, thus facilitating the removal of the placement block 15 from the support groove 21.

[0037] Reference Figure 5 , Figure 6 The insert 11 has a mounting hole 22 that communicates with the slide groove 16, and a rotating rod 23 is provided inside the mounting hole 22. A mounting block 24 is fixedly embedded on the side of the insert 11 facing the mounting base 5. One end of the rotating rod 23 is rotatably inserted into the mounting block 24, and the other end of the rotating rod 23 is rotatably inserted into the inner wall of the slide groove 16.

[0038] Reference Figure 5 , Figure 7 , Figure 8 The rotating rod 23, located inside the slide groove 16, has meshing teeth on the side of the placement block 15 facing the inside of the slide groove 16. A locking block 25 is fixedly installed on the rotating rod 23 inside the mounting hole 22. A clearance opening 26 for the locking block 25 to pass through is provided on the periphery of the insertion block 11, and a slot 27 for the locking block 25 to enter is provided on the inner wall of the slot 13. A second horizontal plate 19 is arranged parallel to the first horizontal plate 18, and one side of the second horizontal plate 19 is fixedly connected to the support frame 17.

[0039] When the placement block 15 is inserted into the support groove 21, it moves upward under the pressure of the first horizontal plate 18. As the placement block 15 moves upward, it engages with the rotating rod 23, causing the rotating rod 23 to rotate. The rotating rod 23 then drives the locking block 25 to be pulled out of the locking groove 27, thereby facilitating the removal of the insertion block 11 from the slot 13.

[0040] When the placement block 15 is removed from the placement slot, it moves downward under the pressure of the second horizontal plate 19. As the placement block 15 moves downward, it engages with the rotating rod 23, causing the rotating rod 23 to rotate. The rotating rod 23 then drives the locking block 25 to insert into the locking slot 27. The insertion of the locking block 25 into the locking slot 27 reduces the likelihood of the insertion block 11 being pulled out of the slot 13 by external force, thereby improving the stability of the embroidery machine head 6 mounted on the mounting base 5.

[0041] Reference Figure 3 , Figure 6The mounting base 5 is equipped with a cutting mechanism 28 for cutting fabric. The cutting mechanism 28 includes a laser cutting head 281, a suction pipe 282, a suction head 283, and a vacuum cleaner 284. The vacuum cleaner 284 is fixedly mounted on one side of the workbench 1, and one end of the suction pipe 282 is fixedly connected to the vacuum cleaner 284. The other end of the suction pipe 282 is fixedly connected to the suction head 283. Both the suction head 283 and the laser cutting head 281 are fixedly mounted on the mounting base 5. The laser cutting head 281 is positioned downwards, and the suction head 283 is positioned between the laser cutting head 281 and the fabric.

[0042] The three-axis moving platform 4, via the mounting base 5, moves the laser cutting head 281 and the vacuum head 283. The laser cutting head 281 cuts the fabric, eliminating the need to remove the fabric and transport it to another device for cutting, thus improving production efficiency. The vacuum cleaner 284 is activated, and the vacuum head 283 absorbs the fumes generated by the laser cutting head 281 cutting the fabric. The fumes then enter the vacuum cleaner 284 through the suction pipe 282 and are discharged, thereby reducing the harm to human health caused by the fumes generated during fabric cutting.

[0043] An embroidery preparation process for sequined fabrics includes the following steps: S1. Place the fabric to be processed into the first placement slot 2 and clamp the fabric using the clamping mechanism 8. According to the pattern to be sewn, the sequin feeder 14 puts the sequins between the embroidery head 6 and the fabric. S2 and the three-axis moving platform 4 drive the embroidery head 6 to move, so that the embroidery head 6 sews the sequins onto the fabric. S3, the three-axis moving platform 4 drives the cutting mechanism 28 to move, and the cutting mechanism 28 cuts off the sewn part of the fabric.

[0044] The implementation principle of the embroidery device and preparation process for sequined fabric in this application embodiment is as follows: The fabric is placed in the first placement groove 2, and then the fabric is clamped using the clamping mechanism 8. A thread spool is inserted into the placement column 9, and the thread spool supplies thread to the embroidery machine head 6. Then, according to the pattern to be embroidered, the three-axis moving platform 4 drives the embroidery machine head 6 to move on the fabric to embroider. If sequins need to be embroidered on the fabric, the sequin feeder 14 feeds the sequins between the embroidery machine head 6 and the fabric, and the embroidery machine head 6 embroiders the sequins on the fabric.

[0045] After the fabric is embroidered, the embroidery head 6 is removed from the mounting base 5, thereby reducing the power required for the movement of the three-axis moving base and thus achieving energy saving. After the embroidery head 6 is removed from the mounting base 5, the three-axis moving platform 4 drives the laser cutting head 281 to cut the fabric according to the embroidery pattern, thus eliminating the need to remove the fabric from the worktable 1 and transport it to another cutting device for cutting, thereby improving production efficiency.

[0046] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An embroidery device for sequined fabric, characterized in that: The device includes a workbench (1), on the top side of which a first placement slot (2) is provided for placing fabric. The workbench (1) is equipped with a clamping mechanism (8) for clamping the fabric. A three-axis moving platform (4) is fixedly mounted on the top surface of the workbench (1). A mounting base (5) is fixedly mounted on the three-axis moving platform (4) for moving the mounting base (5). An embroidery machine head (6) is mounted on the mounting base (5). A support plate (7) is fixedly installed on the side of the head (6) near the mounting base (5). A placement column (9) is fixedly installed on the top surface of the support plate (7). The placement column (9) is used to place the thread spool. A sequin feeder (14) is fixedly installed on one side of the embroidery head (6). The sequin feeder (14) is used to feed the sequins between the embroidery head (6) and the fabric. The embroidery head (6) is used to embroider the sequins onto the fabric. A cutting mechanism (28) is installed on the worktable (1). The cutting mechanism (28) is used to cut the fabric. The embroidery machine head (6) is fixedly equipped with a power connector (10) and a plug (11) on the side near the mounting base (5). The mounting base (5) has a power socket (12) for inserting the power connector (10) and a slot (13) for damping insertion of the plug (11). A support frame (17) is fixedly installed on the top surface of the workbench (1). The support frame (17) is located on the side of the embroidery machine head (6) away from the mounting base (5). Two first horizontal plates (18) are fixedly installed on the side of the support frame (17) close to the embroidery machine head (6). A vertical plate (20) is fixedly installed on the side of the first horizontal plate (18) away from the support frame (17). Placement blocks (15) are installed on both sides of the embroidery machine head (6). The first horizontal plate (18), the vertical plate (20) and the support frame (17) form a support groove (21) for the placement block (15) to be placed. Both sides of the embroidery machine head (6) are provided with slide grooves (16) for the placement of blocks (15) to slide up and down. The insert block (11) is provided with a mounting hole (22) communicating with the slide groove (16). The side of the insert block (11) facing the mounting base (5) is fixedly fitted with a mounting block (24). A rotating rod (23) is provided inside the mounting hole (22). One end of the rotating rod (23) is rotatably inserted into the mounting block (24), and the other end of the rotating rod (23) is rotatably inserted into the inner wall of the slide groove (16). The rotating rod (23) is located in the slide groove (16). The inner rod body and the placement block (15) have interlocking teeth on the side facing the inside of the slide groove (16). The rotating rod (23) is fixedly installed with a locking block (25) inside the mounting hole (22). The side of the insertion block (11) is provided with a clearance opening (26) for the locking block (25) to pass through. The inner wall of the slot (13) is provided with a slot (27) for the locking block (25) to enter. A second horizontal plate (19) is arranged parallel above the first horizontal plate (18). One side of the second horizontal plate (19) is fixedly connected to the support frame (17).

2. The embroidery device for sequined fabric according to claim 1, characterized in that: The cutting mechanism (28) includes a laser cutting head (281), a suction pipe (282), a suction head (283), and a vacuum cleaner (284). The vacuum cleaner (284) is fixedly installed on one side of the workbench (1). One end of the suction pipe (282) is fixedly connected to the vacuum cleaner (284), and the other end of the suction pipe (282) is fixedly connected to the suction head (283). The suction head (283) and the laser cutting head (281) are both fixedly installed on the mounting base (5). The laser cutting head (281) is set downwards, and the suction head (283) is set between the laser cutting head (281) and the fabric.

3. An embroidery device for sequined fabric according to claim 1, characterized in that: The clamping mechanism (8) includes a pressure frame (81) and a piercing nail (82). The top side of the workbench (1) is provided with a second placement groove (3) for placing the pressure frame (81) along the edge of the first placement groove (2). The second placement groove (3) is connected to the first placement groove (2). The depth of the second placement groove (3) is less than the depth of the first placement groove (2). The piercing nail (82) is fixedly installed on the bottom side of the pressure frame (81). The inner bottom wall of the second placement groove (3) is provided with an insertion hole for inserting the piercing nail (82). The piercing nail (82) is used to pass through the fabric.

4. An embroidery preparation process for sequined fabrics, applied to an embroidery device for sequined fabrics as described in any one of claims 1-3, characterized in that: Includes the following steps: Place the fabric to be processed into the first placement slot (2) and clamp the fabric using the clamping mechanism (8); according to the pattern to be sewn, the sequin feeder (14) places the sequins between the embroidery head (6) and the fabric, and the three-axis moving platform (4) drives the embroidery head (6) to move, so that the embroidery head (6) sews the sequins onto the fabric; the three-axis moving platform (4) drives the cutting mechanism (28) to move, and the cutting mechanism (28) cuts off the sewn part of the fabric.