Laser cutting device based on embroidery machine girder

By integrating a laser cutting device onto the main beam of an embroidery machine, and utilizing components such as transition parts and reflector frames to achieve efficient optical path transmission and synchronous control, the problems of large space occupation and low precision of laser cutting devices in embroidery machines are solved, thereby improving cutting efficiency and precision.

CN223921762UActive Publication Date: 2026-02-17HUAYUN GUANGYUAN SPECIAL OPTICAL FIBER TECHNOLOGY (GUANGZHOU) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520545771.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-02-17
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

Existing laser cutting devices for embroidery machines require separate space and brackets for installation, occupying a large amount of space resources. They also have low optical transmission efficiency, difficulty in guaranteeing cutting accuracy, and inconvenience in operation.

Method used

Design a laser cutting device based on the main beam of an embroidery machine. By setting up transition parts, clamping rings, reflector frames, positioning parts and fixed reflective components, the device achieves efficient optical path transmission and improves cutting accuracy. It is then combined with an integrated control system for synchronous control.

Benefits of technology

It requires no additional space, improves optical path transmission efficiency and cutting accuracy, and enables synchronous operation of laser cutting and embroidery machines, thereby improving the efficiency and accuracy of fabric cutting.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223921762U_ABST
    Figure CN223921762U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of laser cutting, in particular to a laser cutting device based on an embroidery machine girder, which comprises an embroidery machine girder, and a laser cutting component for cutting cloth is arranged outside the embroidery machine girder. The laser cutting assembly comprises a laser cutting machine body, a transition piece, a pressing ring, a light protection pipe A, a reflecting mirror frame A, a light protection pipe B, an L-shaped positioning piece A, a reflecting mirror frame B, an L-shaped positioning piece B, a fixed reflection assembly, a laser cutting head, a positioning clamp A, a light protection pipe C and a positioning clamp B. The laser cutting machine body is arranged outside the embroidery machine girder. According to the laser cutting device for the embroidery machine, through the arrangement of the transition piece, the pressing ring, the reflecting mirror frame A, the L-shaped positioning piece A, the reflecting mirror frame B, the L-shaped positioning piece B, the fixed reflecting assembly, the positioning clamp A and the positioning clamp B, the problems that when an existing laser cutting device for the embroidery machine is used, the light path transmission efficiency is low, the cutting precision is difficult to guarantee, installation is complex, and operation is inconvenient are solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of laser cutting technology, specifically to a laser cutting device based on the main beam of an embroidery machine. Background Technology

[0002] An embroidery machine is a mechanical device used for embroidery. The main functions and performance of an embroidery machine depend on factors such as the number of heads, head spacing, number of stitches, maximum stroke of the embroidery frame in the X and Y directions, electrical control system, and manufacturer brand. It is used in many fields such as clothing, home decoration, and handicrafts to meet different design and production needs.

[0003] However, existing laser cutting devices for embroidery machines typically require independent space and supports for installation, occupying a large amount of space. In the textile processing industry, the operating space of embroidery machines is limited, and the optical path transmission efficiency is low, making it difficult to guarantee cutting accuracy. The equipment integration is also low, and operation is inconvenient. Therefore, a laser cutting device based on the main beam of an embroidery machine is proposed. Utility Model Content

[0004] The main purpose of this utility model is to provide a laser cutting device based on the main beam of an embroidery machine. This utility model solves the problems of low optical path transmission efficiency, difficulty in ensuring cutting accuracy, complex installation, and inconvenient operation of existing laser cutting devices for embroidery machines by setting a transition piece, a clamping ring, a reflector frame A, an L-shaped positioning piece A, a reflector frame B, an L-shaped positioning piece B, a fixed reflective component, a positioning clamp A, and a positioning clamp B.

[0005] The technical solution adopted by this utility model to solve its technical problem is a laser cutting device based on the main beam of an embroidery machine, including an embroidery machine main beam. A laser cutting assembly for cutting fabric is installed outside the main beam. The laser cutting assembly includes a laser cutting machine body, a transition piece, a clamping ring, a light-protecting tube A, a reflector frame A, a light-protecting tube B, an L-shaped positioning piece A, a reflector frame B, an L-shaped positioning piece B, a fixed reflector assembly, a laser cutting head, a positioning clamp A, a light-protecting tube C, and a positioning clamp B. The laser cutting machine is installed outside the main beam of the embroidery machine. The main body of the laser cutting machine has a clamping ring screwed to one side. A light-protecting tube A is engaged with the inner side of the clamping ring. A reflector frame A is screwed to the end of the light-protecting tube A away from the clamping ring. A light-protecting tube B is inserted into the bottom of the reflector frame A. A reflector frame B is screwed to the end of the light-protecting tube B away from the reflector frame A. A light-protecting tube C is inserted into the outer side of the reflector frame B, and a fixed reflective assembly is screwed to one end of the light-protecting tube C. A laser cutting head for cutting fabric is screwed to the bottom of the fixed reflective assembly. Through the design of the transition piece, clamping ring, light-protecting tube A, reflector frame A, light-protecting tube B, L-shaped positioning piece A, reflector frame B, L-shaped positioning piece B, fixed reflective assembly, laser cutting head, positioning clamp A, light-protecting tube C, and positioning clamp B, the problems of low optical path transmission efficiency, difficulty in guaranteeing cutting accuracy, complex installation, and inconvenient operation of existing laser cutting devices in embroidery machines are solved.

[0006] By adopting the above technical solution, when cutting the fabric on the embroidery machine, the reflector frame A, reflector frame B and fixed reflective components on the main body of the laser cutting machine are installed at 90 degrees to realize the transmission of light path and ensure that the light is lossless. Moreover, the laser cutting head is located directly in front of the main beam of the embroidery machine. Through the integrated control system, the laser cutting and the operation of the embroidery machine are synchronously controlled, thereby improving the cutting accuracy and efficiency of the fabric.

[0007] Specifically, the light-protecting tube C is externally fitted with positioning clips A and B. Positioning clip A is externally provided with an L-shaped positioning element A for clamping the main beam of the embroidery machine, and positioning clip B is externally provided with an L-shaped positioning element B for clamping the main beam of the embroidery machine.

[0008] By adopting the above technical solution, after the light-protecting tube C is placed under the main beam of the embroidery machine, the positioning clamps A and B outside the light-protecting tube C move. Positioning clamp A drives L-shaped positioning component A to move, and positioning clamp B drives L-shaped positioning component B to move, so that L-shaped positioning component A and L-shaped positioning component B are tightly connected to the outside of the main beam of the embroidery machine, thereby improving the stability of the laser cutting machine body.

[0009] Specifically, the main body of the laser cutting machine is bolted to a transition piece that connects to the main beam of the embroidery machine.

[0010] By adopting the above technical solution, the main body of the laser cutting machine is connected to the operating table behind the beam of the embroidery machine through a transition piece connected by external bolts. The transition piece buffers the vibration generated by the beam of the embroidery machine, preventing the main body of the laser cutting machine from shaking and improving the cutting accuracy of the fabric.

[0011] Specifically, an embroidery head for embroidery operations is provided on one side of the main beam of the embroidery machine.

[0012] By adopting the above technical solution, the embroidery head of the embroidery machine, which is connected to the outer bolt of the main beam of the embroidery machine, performs embroidery operations on the fabric.

[0013] Specifically, the input end of the laser cutting machine body is electrically connected to the power supply end of an external power source.

[0014] By adopting the above technical solution and connecting to an external power source, the electrical equipment can operate normally.

[0015] The beneficial effects of this utility model are:

[0016] (1) The laser cutting device based on the main beam of the embroidery machine described in this utility model is connected to the operating table behind the main beam of the embroidery machine by a transition piece connected by external bolts. Then, after the laser cutting machine body's light-protecting tube C is placed under the main beam of the embroidery machine, the positioning clamps A and B outside the light-protecting tube C move. Positioning clamp A drives L-shaped positioning piece A to move, and positioning clamp B drives L-shaped positioning piece B to move, so that L-shaped positioning piece A and L-shaped positioning piece B are tightly connected to the outside of the main beam of the embroidery machine, thereby facilitating the installation of the laser cutting machine body behind the main beam of the embroidery machine without occupying additional space, and the space utilization rate is high.

[0017] (2) The laser cutting device based on the main beam of the embroidery machine described in this utility model has the following characteristics: when cutting the fabric on the embroidery machine, the reflector frame A, reflector frame B and fixed reflector assembly on the main body of the laser cutting machine are installed at 90 degrees to realize the transmission of the light path and ensure that the light is lossless. The laser cutting head is located in front of the main beam of the embroidery machine. The main body of the laser cutting machine is seamlessly connected with the control system of the embroidery machine. Through integrated operation, the synchronous control of laser cutting and embroidery machine operation is realized, thereby improving the cutting accuracy and efficiency of the fabric. Attached Figure Description

[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0019] Figure 1 This is a schematic diagram of the overall structure of a laser cutting device based on the main beam of an embroidery machine according to the present invention.

[0020] Figure 2 This is a top view schematic diagram of a laser cutting device based on the main beam of an embroidery machine according to the present invention;

[0021] Figure 3 This is a schematic diagram of the laser cutting component structure of a laser cutting device based on the main beam of an embroidery machine according to the present invention;

[0022] In the diagram: 1. Embroidery machine main beam; 2. Laser cutting assembly; 3. Embroidery machine embroidery head; 4. Laser cutting machine body; 5. Transition piece; 6. Pressure ring; 7. Light guard tube A; 8. Reflector frame A; 9. Light guard tube B; 10. L-shaped positioning piece A; 11. Reflector frame B; 12. L-shaped positioning piece B; 13. Fixed reflector assembly; 14. Laser cutting head; 15. Positioning clamp A; 16. Light guard tube C; 17. Positioning clamp B. Detailed Implementation

[0023] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0024] To improve the cutting accuracy and efficiency of fabric, as one embodiment of this utility model, such as Figure 1 , Figure 2 and Figure 3 As shown, the present invention discloses a laser cutting device based on an embroidery machine beam, comprising an embroidery machine beam 1, and a laser cutting assembly 2 for cutting fabric is externally disposed on the embroidery machine beam 1. The laser cutting assembly 2 includes a laser cutting machine body 4, a transition piece 5, a clamping ring 6, a light shield tube A7, a reflector frame A8, a light shield tube B9, an L-shaped positioning piece A10, a reflector frame B11, an L-shaped positioning piece B12, a fixed reflector assembly 13, a laser cutting head 14, a positioning clamp A15, a light shield tube C16, and a positioning clamp B17. The laser cutting machine body 4 is externally disposed on the embroidery machine beam 1. A clamping ring 6 is screwed on one side of the main body 4 of the laser cutting machine. A light shield tube A7 is snapped into the inner side of the clamping ring 6. A reflector frame A8 is screwed to the end of the light shield tube A7 away from the clamping ring 6. A light shield tube B9 is inserted into the bottom of the reflector frame A8. A reflector frame B11 is screwed to the end of the light shield tube B9 away from the reflector frame A8. A light shield tube C16 is inserted into the outer side of the reflector frame B11. A fixed reflector assembly 13 was originally screwed to one end of the reflector frame B11. A laser cutting head 14 for cutting fabric is screwed to the bottom of the fixed reflector assembly 13.

[0025] When cutting the fabric on the embroidery machine, the reflector frame A8, reflector frame B11 and fixed reflector assembly 13 on the main body 4 of the laser cutting machine are installed at 90 degrees to realize the transmission of light path and ensure that the light is lossless. The laser cutting head 14 is located directly in front of the main beam 1 of the embroidery machine. Through the integrated control system, the laser cutting and the operation of the embroidery machine are synchronized, thereby improving the cutting accuracy and efficiency of the fabric.

[0026] To improve the stability of the laser cutting machine body 4, for example, such as Figure 3 As shown, the present invention also includes a positioning clip A15 and a positioning clip B17 sleeved on the outside of the light-protecting tube C16. The positioning clip A15 is provided with an L-shaped positioning element A10 for clamping the main beam 1 of the embroidery machine, and the positioning clip B17 is provided with an L-shaped positioning element B12 for clamping the main beam 1 of the embroidery machine.

[0027] When in use, after the light shield C16 is placed under the main beam 1 of the embroidery machine, the positioning clamps A15 and B17 outside the light shield C16 move. Positioning clamp A15 drives the L-shaped positioning component A10 to move, and positioning clamp B17 drives the L-shaped positioning component B12 to move, so that the L-shaped positioning component A10 and L-shaped positioning component B12 are tightly connected to the outside of the main beam 1 of the embroidery machine, thereby improving the stability of the laser cutting machine body 4.

[0028] To connect the laser cutting machine body 4 to the embroidery machine beam 1, for example, such as... Figure 3 As shown, the present invention also includes a transition piece 5 that is bolted to the outside of the laser cutting machine body 4 and connected to the embroidery machine beam 1.

[0029] During use, the main body 4 of the laser cutting machine is connected to the rear operating table of the embroidery machine beam 1 via an external bolt-connected transition piece 5. The transition piece 5 buffers the vibration generated by the embroidery machine beam 1, preventing the main body 4 of the laser cutting machine from shaking and improving the cutting accuracy of the fabric.

[0030] For example, to perform embroidery on fabric, such as... Figure 2 As shown, the present invention also includes an embroidery head 3 for performing embroidery operations, which is provided on one side of the embroidery machine beam 1.

[0031] During use, the embroidery head 3, which is connected to the outer bolt of the embroidery machine beam 1, performs embroidery operations on the fabric.

[0032] For electrical equipment to function properly, for example, such as Figure 2 As shown, this utility model also includes an input terminal of the laser cutting machine body 4 that is electrically connected to the power supply terminal of an external power source.

[0033] When in use, the equipment will work normally by connecting to an external power source.

[0034] In use, the main body 4 of the laser cutting machine is connected to the operating table behind the main beam 1 of the embroidery machine via an external bolt-connected transition piece 5. Then, after the laser cutting machine main body 4's protective tube C16 is placed under the main beam 1 of the embroidery machine, the positioning clamps A15 and B17 outside the protective tube C16 move. Positioning clamp A15 drives L-shaped positioning piece A10 to move, and positioning clamp B17 drives L-shaped positioning piece B12 to move, so that L-shaped positioning pieces A10 and B12 are tightly connected to the outside of the main beam 1 of the embroidery machine, thereby facilitating the installation of the main body 4 of the laser cutting machine behind the main beam 1 of the embroidery machine without occupying additional space, resulting in high space utilization.

[0035] When cutting the fabric on the embroidery machine, the reflector frame A8, reflector frame B11 and fixed reflector assembly 13 on the main body 4 of the laser cutting machine are installed at 90 degrees to realize the transmission of light path and ensure that the light is lossless. The laser cutting head 14 is located directly in front of the main beam 1 of the embroidery machine. Through the integrated control system, the laser cutting and the operation of the embroidery machine are synchronized, thereby improving the cutting accuracy and efficiency of the fabric.

[0036] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A laser cutting device based on the beam of an embroidery machine, characterized in that, Including embroidery machine beam (1), the embroidery machine beam (1) outside is provided with the laser cutting assembly (2) of cloth cutting, the laser cutting assembly (2) includes laser cutting machine body (4), transition piece (5), compression ring (6), light pipe A (7), mirror frame A (8), light pipe B (9), L type positioning piece A (10), mirror frame B (11), L type positioning piece B (12), fixed reflection component (13), laser cutting head (14), positioning clamp A (15), light pipe C (16) and positioning clamp B (17), the embroidery machine beam (1) outside is provided with laser cutting machine body (4), one side of the laser cutting machine body (4) is fixed with compression ring (6) by screw, the compression ring (6) inner side is clamped with light pipe A (7), the end of light pipe A (7) away from compression ring (6) is fixed with mirror frame A (8) by screw, the bottom of mirror frame A (8) is inserted with light pipe B (9), the end of light pipe B (9) away from mirror frame A (8) is fixed with mirror frame B (11) by screw, the outer side of mirror frame B (11) is inserted with light pipe C (16), and the end of light pipe C (16) originally mirror frame B (11) is fixed with fixed reflection component (13) by screw, the bottom of fixed reflection component (13) is fixed with the laser cutting head (14) of cloth cutting by screw.

2. A laser cutting device based on the beam of an embroidery machine according to claim 1, characterized in that, The outer side of light pipe C (16) is sleeved with positioning clamp A (15) and positioning clamp B (17), the outer side of positioning clamp A (15) is provided with L type positioning piece A (10) for clamping embroidery machine beam (1), the outer side of positioning clamp B (17) is provided with L type positioning piece B (12) for clamping embroidery machine beam (1).

3. The laser cutting device based on the beam of an embroidery machine according to claim 1, characterized in that, The outer side of laser cutting machine body (4) is bolted with transition piece (5) connected with embroidery machine beam (1).

4. The laser cutting device based on the beam of an embroidery machine according to claim 1, characterized in that, One side of the embroidery machine beam (1) is provided with embroidery machine embroidery head (3) for embroidery operation.

5. The laser cutting device based on the beam of an embroidery machine according to claim 1, characterized in that, The input end of the laser cutting machine body (4) is electrically connected with the power supply end of the external power supply.