Label ironing device for garment printing processing

By designing a heat-pressing device for garment printing and processing that includes a support frame, conveying components, lifting components, and control components, continuous heat pressing without stopping the machine and flexible adjustment of the heat pressing time are achieved. This solves the problems of low efficiency and unstable quality of existing devices, and improves work efficiency and heat pressing quality.

CN224060666UActive Publication Date: 2026-03-31武汉精工艺印花有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing heat-pressing devices for garment printing and processing require stopping garment transportation or increasing manpower during the heat-pressing operation, and it is difficult to effectively control the heat-pressing time, resulting in unclear labels or damage to garments.

Method used

A heat transfer labeling device was designed, comprising a bracket, a conveying component, a support component, a lifting component, and a control component. The device utilizes a motor-driven belt to convey garments, and combines an electromagnet and a connecting rod to move a sliding sleeve, enabling continuous heat transfer labeling without stopping the machine. The heat transfer time is adjusted by regulating the distance between the touch switch and the slider, and a spring is used to prevent slippage and smooth out wrinkles.

Benefits of technology

It improves the efficiency of heat transfer labeling, reduces manpower consumption, ensures label clarity and avoids damage to clothing, and enhances the quality of heat transfer labels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hot label device for clothing printing processing, which comprises a support and supporting legs, a conveying assembly is arranged on the inner side of the support, the conveying assembly comprises a motor and a belt, a supporting assembly is arranged on the top of the support, the supporting assembly comprises a supporting sleeve and a sliding sleeve, a hot label assembly is arranged at the bottom of the sliding sleeve, and the supporting sleeve is connected with the sliding sleeve. The label ironing assembly comprises a sliding plate and a label ironing plate, a lifting assembly is installed on the inner side of the supporting sleeve and comprises an electromagnet and a connecting rod, the label ironing device for garment printing processing can conduct label ironing operation in the garment conveying process, a motor does not need to be shut down, and then the working efficiency is improved; the label ironing device has the advantages of being simple in structure, convenient to use, capable of reducing labor consumption, capable of adjusting label ironing time, guaranteeing label ironing definition and avoiding damage to clothes due to long label ironing time, capable of preventing the label ironing plate and the clothes from sliding through the elastic pieces, stretching and flattening wrinkles on the clothes, capable of improving label ironing quality and suitable for label ironing processing of clothes printing.
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Description

Technical Field

[0001] This utility model relates to the technical field of hot stamping equipment for garment printing and processing, specifically a hot stamping device for garment printing and processing. Background Technology

[0002] When performing heat transfer labeling on garments, heat transfer labeling equipment for garment printing and processing is required. Utility model patent application number CN202020538206.0 discloses an easy-to-operate heat transfer labeling machine. By installing a garment fixing device on the lower base plate of the heat transfer labeling machine, the flatness of the garment during transfer is improved, thus enhancing the transfer quality. According to its disclosed technical solution, existing heat transfer labeling devices for garment printing and processing have several drawbacks. First, during heat transfer labeling operations, it is often necessary to stop the garment transport process or require personnel to feed the garment in or out, increasing manpower consumption and reducing work efficiency. Second, it is difficult to effectively control the heat transfer time, which can easily lead to unclear labels due to insufficient heat transfer time or damage to the garment due to excessive heat transfer time, thus reducing the quality of the heat transfer labeling.

[0003] Therefore, how to design a heat-sealing device for garment printing has become the problem we need to solve. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a hot stamping device for garment printing to solve the problems mentioned in the background. This utility model is reasonably designed, convenient to use, and suitable for hot stamping of garment printing.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a heat transfer labeling device for garment printing, comprising a support frame and legs. A conveying assembly is installed on the inner side of the support frame, the conveying assembly including a motor and a belt. A support assembly is installed on the top of the support frame, the support assembly including a sleeve and a sliding sleeve. A heat transfer labeling assembly is installed at the bottom of the sliding sleeve, the heat transfer labeling assembly including a sliding plate and a heat transfer labeling plate. A lifting assembly is installed on the inner side of the sleeve, the lifting assembly including an electromagnet and a connecting rod. A sliding assembly is installed on the sliding plate, the sliding assembly including a slider and a spring. An adjustment assembly is installed on the sliding sleeve, the adjustment assembly including a touch switch and a screw.

[0006] Furthermore, the support leg is welded to the bottom of the bracket, a rotating roller is installed on the inner side of the bracket, the rotating roller is installed at both ends of the bracket by bearings, the motor is installed on the outer side of one end of the bracket by bolts, and one end of the rotating roller is keyed to the output shaft of the motor.

[0007] Furthermore, the belt is sleeved on the outer side of the rotating roller, the top end of the support sleeve is bolted to the inner side of the top end of the bracket, and the top end of the sliding sleeve is locked to the bottom end of the support sleeve.

[0008] Furthermore, the electromagnet is locked inside the top of the support sleeve, the electromagnet is connected to the inner wall of the bottom of the support sleeve via a spring, the bottom of the connecting rod is welded to the top of the sliding sleeve, and the top of the connecting rod passes through the bottom of the support sleeve and is welded to the bottom of the electromagnet.

[0009] Furthermore, the hot stamping plate is bolted to the bottom of the slide plate, the inner side of the slide sleeve has a groove, the slider is locked inside the groove, and the bottom of the slider is welded to the top of the slide plate.

[0010] Furthermore, one side of the slider is connected to the inner wall of the sliding sleeve via a second spring, and a spring sheet is welded to the bottom of the sliding plate, with the spring sheets distributed on the outer periphery of the hot stamping plate.

[0011] Furthermore, one end of the screw is mounted on the outside of the sliding sleeve, and the other end of the screw passes through one side of the sliding sleeve by a thread and extends to the inside of the sliding sleeve. The touch switch is mounted on the other end of the screw via a rotating shaft.

[0012] Furthermore, a switch assembly is bolted onto the bracket, and the switch assembly is connected to the motor, the hot stamping plate, and the pressure switch via wires. The pressure switch is connected to the electromagnet via wires.

[0013] Beneficial effects: 1. When using this heat-sealing device for garment printing, the motor is turned on, and the garments are fed one by one onto the belt. The motor drives the belt to rotate through the rotating rollers, conveying the garments to the bottom of the heat-sealing plate. The electromagnet is turned on, and the compression spring of the electromagnet pulls the bottom of the support sleeve downward, which in turn drives the sliding sleeve to move downward through the connecting rod. The heat-sealing plate at the bottom of the sliding sleeve is locked onto the garment and moves synchronously under the drive of the belt until the sliding plate drives the slider to press the touch switch. Thus, the heat-sealing operation is performed during the conveying of the garment without stopping the motor, thereby effectively improving work efficiency and reducing labor consumption.

[0014] 2. When using this heat transfer labeling device for garment printing, the screw is rotated according to the different materials of the garment and the heat transfer label pattern to adjust the distance between the touch switch and the slider, thereby adjusting the heat transfer time, ensuring the clarity of the heat transfer label, and avoiding damage to the garment due to excessive heat transfer time. During the heat transfer operation, the slide plate drives the spring to first clamp onto the top of the garment, and then the slide plate presses the spring down until the heat transfer plate is clamped onto the top of the garment. At this point, the spring is squeezed outward and deformed, clamping and pulling the garment. On the one hand, the spring prevents the heat transfer plate from slipping on the garment, and on the other hand, it can smooth out wrinkles on the garment, improving the quality of the heat transfer labeling.

[0015] 3. This heat-sealing device for garment printing is reasonably designed, highly efficient and convenient to use, and suitable for heat-sealing processing of garment printing. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of a heat-sealing label device for garment printing processing according to the present invention;

[0017] Figure 2 This is a cross-sectional view of a heat-sealing label device for garment printing according to this utility model;

[0018] Figure 3 This is a cross-sectional view of the sliding sleeve of a heat-sealing label device for garment printing according to this utility model;

[0019] In the diagram: 1. Support; 2. Support leg; 3. Motor; 4. Rotating roller; 5. Belt; 6. Support sleeve; 7. Sliding sleeve; 8. Slide plate; 9. Connecting rod; 10. Electromagnet; 11. Spring 1; 12. Slider; 13. Spring 2; 14. Hot stamping plate; 15. Spring; 16. Touch switch; 17. Screw; 18. Switch assembly. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Please see Figures 1 to 3This utility model provides a technical solution: a heat transfer labeling device for garment printing, including a support 1 and a support leg 2. A conveying assembly is installed on the inner side of the support 1, the conveying assembly including a motor 3 and a belt 5. A support assembly is installed on the top of the support 1, the support assembly including a support sleeve 6 and a sliding sleeve 7. A heat transfer labeling assembly is installed at the bottom of the sliding sleeve 7, the heat transfer labeling assembly including a slide plate 8 and a heat transfer labeling plate 14. A lifting assembly is installed on the inner side of the support sleeve 6, the lifting assembly including an electromagnet 10 and a connecting rod 9. A sliding assembly is installed on the slide plate 8, the sliding assembly including a slider 12 and a spring 13. An adjustment assembly is installed on the sliding sleeve 7, the adjustment assembly including a touch switch 16 and a screw 17. One end of the screw 17 is installed on the outer side of the sliding sleeve 7, and the other end of the screw 17 passes through one side of the sliding sleeve 7 by a thread and extends to the inner side of the sliding sleeve 7. The touch switch 16... 6 is mounted on the other end of the screw 17 via a rotating shaft. A switch assembly 18 is bolted onto the bracket 1. The switch assembly 18 is connected to the motor 3, the heat transfer plate 14, and the touch switch 16 via wires. The touch switch 16 is connected to the electromagnet 10 via wires. During use, the screw 17 is rotated according to the material of the garment, the heat transfer pattern, etc., thereby adjusting the distance between the touch switch 16 and the slider 12, and thus adjusting the heat transfer time to ensure the clarity of the heat transfer and avoid damage to the garment due to a long heat transfer time. During the heat transfer operation, the slide plate 8 drives the spring piece 15 to first clamp onto the top of the garment. When the slide plate 8 presses the spring piece 15 downward until the heat transfer plate 14 is clamped onto the top of the garment, the spring piece 15 is squeezed outward and deformed, clamping and pulling the garment. On the one hand, the spring piece 15 prevents the heat transfer plate 14 from sliding with the garment. On the other hand, it can smooth out the wrinkles on the garment and improve the quality of the heat transfer.

[0022] In this embodiment, the support leg 2 is welded to the bottom of the bracket 1. A rotating roller 4 is installed on the inner side of the bracket 1. The rotating roller 4 is mounted on both ends of the bracket 1 via bearings. The motor 3 is bolted to the outer side of one end of the bracket 1. One end of the rotating roller 4 is keyed to the output shaft of the motor 3. The belt 5 is sleeved on the outer side of the rotating roller 4. The top of the support sleeve 6 is bolted to the inner side of the top of the bracket 1. The top of the sliding sleeve 7 is locked to the bottom of the support sleeve 6. The electromagnet 10 is locked to the inner side of the top of the support sleeve 6. The electromagnet 10 is connected to the inner wall of the bottom of the support sleeve 6 via a spring 11. The bottom of the connecting rod 9 is welded to the top of the sliding sleeve 7. The top of the connecting rod 9 passes through the bottom of the support sleeve 6 and is welded to the bottom of the electromagnet 10. The hot stamping plate 14 is bolted to the bottom of the sliding plate 8. A sliding groove is provided on the inner side of the sliding sleeve 7. The slider 12 is locked in the inner side of the sliding groove. On one side, the bottom of the slider 12 is welded to the top of the slide plate 8. One side of the slider 12 is connected to the inner wall of the slide sleeve 7 through the second spring 13. The bottom of the slide plate 8 is welded with a spring piece 15, which is distributed on the outer side of the heat transfer plate 14. In use, the motor 3 is turned on, and the garments are fed one by one onto the belt 5. The motor 3 drives the belt 5 to rotate through the rotating roller 4, and the garments are fed to the bottom of the heat transfer plate 14. The electromagnet 10 is turned on, and the electromagnet 10 compresses the first spring 11 and pulls the bottom of the support sleeve 6 downward, which in turn drives the slide sleeve 7 to move downward through the connecting rod 9. The heat transfer plate 14 at the bottom of the slide sleeve 7 is clamped onto the garment and moves synchronously under the drive of the belt 5 until the slide plate 8 drives the slider 12 to press the touch switch 16. Thus, the heat transfer operation is performed during the conveying of the garment without stopping the motor 3, thereby effectively improving work efficiency and reducing manpower consumption.

[0023] This garment printing and labeling device is powered by an external power supply. In operation, motor 3 is turned on, and garments are fed one by one onto belt 5. Motor 3 drives belt 5 to rotate via roller 4, transporting the garments to the bottom of labeling plate 14. Electromagnet 10 is then activated, compressing spring 11 and pulling the bottom of support sleeve 6 downwards. This, in turn, drives sliding sleeve 7 downwards via connecting rod 9. The labeling plate 14 at the bottom of sliding sleeve 7 is secured to the garment and moves synchronously under the drive of belt 5 until slide plate 8 drives slider 12 to press touch switch 16. Labeling is then performed during garment transport without stopping motor 3. To effectively improve work efficiency and reduce manpower consumption, the screw 17 is rotated according to the different materials of the garment and the heat transfer pattern, thereby adjusting the distance between the touch switch 16 and the slider 12, and thus adjusting the heat transfer time. This ensures the clarity of the heat transfer and avoids damage to the garment due to prolonged heat transfer time. During the heat transfer operation, the slide plate 8 drives the spring piece 15 to first clamp onto the top of the garment. When the slide plate 8 presses the spring piece 15 downward until the heat transfer plate 14 is clamped onto the top of the garment, the spring piece 15 is deformed outward and clamps and pulls the garment. On the one hand, the spring piece 15 prevents the heat transfer plate 14 from sliding with the garment. On the other hand, it can smooth out the wrinkles on the garment and improve the quality of the heat transfer.

[0024] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style 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 embodiments that can be understood by those skilled in the art.

Claims

1. A heat transfer labeling device for garment printing, comprising a support (1) and a support leg (2), wherein a conveying assembly is installed on the inner side of the support (1), the conveying assembly includes a motor (3) and a belt (5), a support assembly is installed on the top of the support (1), the support assembly includes a support sleeve (6) and a sliding sleeve (7), a heat transfer labeling assembly is installed on the bottom of the sliding sleeve (7), the heat transfer labeling assembly includes a sliding plate (8) and a heat transfer labeling plate (14), characterized in that: The inner side of the sleeve (6) is provided with a lifting assembly, the lifting assembly comprises an electromagnet (10) and a connecting rod (9), the sliding plate (8) is provided with a sliding assembly, the sliding assembly comprises a sliding block (12) and a spring two (13), the sliding sleeve (7) is provided with a regulating assembly, the regulating assembly comprises a touch switch (16) and a screw rod (17).

2. The device according to claim 1, wherein: The support leg (2) is welded at the bottom of the support (1), the inner side of the support (1) is provided with a rotating roller (4), the rotating roller (4) is installed at both ends of the support (1) through bearings, the motor (3) is installed at the outer side of one end of the support (1) through bolts, one end of the rotating roller (4) is connected with the output shaft of the motor (3) through keys.

3. The apparatus according to claim 2, wherein: The belt (5) is sleeved on the outer side of the rotating roller (4), the top end of the sleeve (6) is installed on the inner side of the top end of the support (1) through bolts, the top of the sliding sleeve (7) is clamped at the bottom end of the sleeve (6).

4. The apparatus according to claim 3, wherein: The electromagnet (10) is clamped at the inner side of the top end of the sleeve (6), the electromagnet (10) is connected with the inner wall of the bottom end of the sleeve (6) through the spring one (11), the bottom end of the connecting rod (9) is welded at the top of the sliding sleeve (7), the top end of the connecting rod (9) passes through the bottom end of the sleeve (6) and is welded at the bottom of the electromagnet (10).

5. The apparatus for printing a label on a garment according to claim 1, wherein: The hot stamping plate (14) is installed at the bottom of the sliding plate (8) through bolts, the inner side of the sliding sleeve (7) is provided with a sliding groove, the sliding block (12) is clamped at the inner side of the sliding groove, the bottom of the sliding block (12) is welded at the top of the sliding plate (8).

6. The apparatus according to claim 5, wherein: One side of the sliding block (12) is connected with the inner wall of the sliding sleeve (7) through the spring two (13), the bottom of the sliding plate (8) is welded with the spring sheet (15), the spring sheet (15) is distributed on the outer side of the four around the hot stamping plate (14).

7. The apparatus according to claim 6, wherein: One end of the screw rod (17) is installed on the outer side of the sliding sleeve (7), the other end of the screw rod (17) passes through one side of the sliding sleeve (7) through threads and extends to the inner side of the sliding sleeve (7), the touch switch (16) is installed on the other end of the screw rod (17) through a rotating shaft.

8. The device according to claim 7, characterized in that: The support (1) is provided with a switch group (18) through bolts, the switch group (18) is connected with the motor (3), the hot stamping plate (14) and the touch switch (16) through wires, the touch switch (16) is connected with the electromagnet (10) through wires.

Citation Information

Patent Citations

  • Heat transfer printing hot stamping machine convenient to operate

    CN212400597U