Clothing gluing machine

By introducing dust removal, spraying, drying, and cooling mechanisms into the garment bonding machine, the problem of low adhesive cleaning efficiency on the conveyor belt has been solved, achieving automated cleaning and rapid setting, thus improving work efficiency and setting effect.

CN223886335UActive Publication Date: 2026-02-10SHENZHEN TRIWORKS TECH CO LTD
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Patent Information

Application Number
CN202520568538.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-02-10
Estimated Expiration
2035-03-28

AI Technical Summary

Technical Problem

Traditional garment bonding machines tend to accumulate adhesive on the conveyor belt during prolonged use, resulting in low cleaning efficiency and increased labor burden.

Method used

A garment bonding machine was designed, comprising a dust removal mechanism, a spraying mechanism, a drying mechanism, a heat dissipation mechanism, and a cooling mechanism. By spraying cleaning liquid and using cleaning rollers to clean the adhesive, combined with hot air drying and air cooling, automated cleaning and rapid shaping are achieved.

Benefits of technology

It enables convenient cleaning of adhesive on the conveyor belt without stopping the machine, improving cleaning efficiency, and accelerates adhesive solidification through rapid cooling, thus improving the shaping effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of garment processing, in particular to a garment gluing machine which comprises a machine frame, a conveying belt is connected in the machine frame, a protective shell is connected to the top of the machine frame, a gluing assembly is arranged in the protective shell, a collecting frame is connected to the bottom of the machine frame, and a dust removal mechanism is arranged in the collecting frame. A dust removal mechanism is arranged on the front face of the machine frame, the dust removal mechanism is attached to the bottom of the conveying belt, a spraying mechanism is arranged on the front face of the machine frame, the spraying mechanism extends into the collecting frame and is connected with the front face of the inner wall of the collecting frame, and a drying mechanism is arranged on the front face of the machine frame. According to the cleaning and drying integrated device for the conveyor belt, the adhesive adhered to the conveyor belt can be conveniently cleaned by a worker without stopping the conveyor belt, the cleaning labor burden of the worker is reduced, meanwhile, cleaning and drying integrated operation is achieved, and therefore the cleaning efficiency and the convenience of cleaning the conveyor belt are greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of garment processing technology, specifically to a garment bonding machine. Background Technology

[0002] Clothing refers to all items used to adorn the human body, while clothing manufacturing is the general term for the production and manufacture of clothing. In the process of clothing production, clothing and lining need to be layered and bonded together. A certain temperature and pressure are applied to the fabric to bond it together, which requires the use of a clothing bonding machine.

[0003] Traditional garment bonding machines still have some shortcomings. After the conveyor belt on the bonding machine transports the garment coated with adhesive to the bottom of the bonding component, the bonding component begins to heat-melt bond the garment. During long-term use, adhesive residue is easily left on the conveyor belt. Therefore, the staff needs to stop the machine regularly to clean the conveyor belt. This operation not only increases the labor burden of the staff and makes it inconvenient to clean the conveyor belt, but also reduces the efficiency of cleaning the conveyor belt. To address this, we propose a garment bonding machine. Utility Model Content

[0004] In view of the shortcomings of the prior art mentioned in the background section, this utility model provides a garment bonding machine.

[0005] This utility model overcomes the above technical problems by adopting the following technical solution:

[0006] A garment bonding machine includes: a frame, a conveyor belt connected inside the frame, a protective shell connected to the top of the frame, an bonding assembly disposed inside the protective shell, a collection frame connected to the bottom of the frame, a dust removal mechanism disposed inside the collection frame and fitting against the bottom of the conveyor belt, a spraying mechanism disposed on the front of the frame and extending into the collection frame and connected to the front of the inner wall of the collection frame, a drying mechanism disposed on the front of the frame and extending to the bottom of the frame, a mounting frame connected to the top of the frame, two heat dissipation mechanisms disposed on the top of the mounting frame and extending into the interior of the mounting frame, and a cooling mechanism disposed on the top of the mounting frame and extending into the interior of the mounting frame and connected to the front and back of the inner wall of the mounting frame.

[0007] As a further embodiment of this utility model: the dust removal mechanism includes a crossbar, a cleaning roller and a first motor. The crossbar is rotatably connected between the front and back sides of the inner wall of the collection frame. The cleaning roller is connected to the outer surface of the crossbar. The first motor is connected to the back side of the collection frame, and one end of the output shaft of the first motor extends into the interior of the collection frame and is connected to one end of the crossbar.

[0008] As a further embodiment of this utility model: the spraying mechanism includes a water tank, a water pump, a connecting pipe and multiple nozzles. The water tank is connected to the front of the frame, the water pump is connected to one side of the water tank, and the suction end of the water pump extends into the interior of the water tank. The connecting pipe is connected to the output end of the water pump, and one end of the connecting pipe extends into the interior of the collection frame and connects to the front of the inner wall of the collection frame. The multiple nozzles are equidistantly connected to the outer surface of the connecting pipe.

[0009] As a further embodiment of this utility model: the drying mechanism includes an insulation box, multiple heating wires, a fan, a connecting pipe, two air outlet pipes, and a connecting plate. The connecting plate is connected to the bottom of the frame, the insulation box is connected to the front of the frame, the multiple heating wires are all connected inside the insulation box, the fan is connected to one side of the insulation box, and the output end of the fan extends into the interior of the insulation box. The connecting pipe is connected to the bottom of the insulation box, and both ends of the connecting pipe extend to the bottom of the frame. The two air outlet pipes are both connected to the back of the connecting plate, and one end of each air outlet pipe is connected to both ends of the connecting pipe.

[0010] As a further embodiment of this utility model: the heat dissipation mechanism includes a second motor, a vertical rod, and fan blades. The second motor is connected to the top of the mounting frame, and one end of the output shaft of the second motor extends into the interior of the mounting frame. The vertical rod is connected to the output shaft of the second motor, and the fan blades are connected to the bottom end of the vertical rod.

[0011] As a further embodiment of this utility model: the cooling mechanism includes a cooling box, a circulating pump, and a curved tube. The cooling box is connected to the top of the mounting frame, and a cooling fin is provided inside the cooling box. The circulating pump is connected to the back of the cooling box, and the input end of the circulating pump extends into the interior of the cooling box. The curved tube is connected between the front and back of the inner wall of the mounting frame, and both ends of the curved tube extend to the back of the mounting frame. One end of the curved tube is connected to the output end of the circulating pump, and the other end of the curved tube is connected to the back of the cooling box. The fan blade is located at the upper part of the curved tube.

[0012] As a further improvement of this utility model, two supports are connected to both the back and front of the frame.

[0013] By adopting the above structure, this utility model has the following advantages compared with the prior art:

[0014] 1. In this utility model, the dust removal mechanism, spraying mechanism and drying mechanism enable workers to easily clean the adhesive adhering to the conveyor belt without stopping the machine, reducing the cleaning workload of workers and realizing integrated cleaning and drying operations, thereby greatly improving the cleaning efficiency and convenience of cleaning the conveyor belt.

[0015] 2. In this utility model, the heat dissipation mechanism and the cooling mechanism can quickly cool down the hot-melted garment, thereby accelerating the solidification of the adhesive and achieving the effect of quickly shaping the garment, thus improving the shaping effect of the garment. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the rear structure of the present invention;

[0018] Figure 3 This is a schematic diagram of the dust removal mechanism and spraying mechanism of this utility model;

[0019] Figure 4 This is a schematic diagram of the drying mechanism of this utility model;

[0020] Figure 5 This is a schematic diagram of the heat dissipation mechanism and cooling mechanism of this utility model.

[0021] In the diagram: 1. Frame; 2. Protective shell; 3. Collection frame; 4. Dust removal mechanism; 401. Crossbar; 402. Cleaning roller; 403. First motor; 5. Spraying mechanism; 501. Water tank; 502. Water pump; 503. Connecting pipe; 504. Nozzle; 6. Drying mechanism; 601. Insulation box; 602. Heating wire; 603. Fan; 604. Connecting pipe; 605. Air outlet pipe; 606. Connecting plate; 7. Mounting frame; 8. Heat dissipation mechanism; 801. Second motor; 802. Vertical bar; 803. Fan blade; 9. Cooling mechanism; 901. Cooling box; 902. Circulating pump; 903. Curved pipe; 10. Support. Detailed Implementation

[0022] 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.

[0023] Example 1:

[0024] Please see Figures 1-5In this embodiment of the present invention, a garment bonding machine includes: a frame 1, a conveyor belt connected inside the frame 1, a protective shell 2 connected to the top of the frame 1, an bonding component disposed inside the protective shell 2, a collection frame 3 connected to the bottom of the frame 1, a dust removal mechanism 4 disposed inside the collection frame 3 and attached to the bottom of the conveyor belt, a spraying mechanism 5 disposed on the front of the frame 1 and extending into the collection frame 3 and connected to the front of the inner wall of the collection frame 3, a drying mechanism 6 disposed on the front of the frame 1 and extending into the bottom of the frame 1, a mounting frame 7 connected to the top of the frame 1, two heat dissipation mechanisms 8 disposed on the top of the mounting frame 7 and extending into the interior of the mounting frame 7, a cooling mechanism 9 disposed on the top of the mounting frame 7 and extending into the interior of the mounting frame 7 and connected to the front and back of the inner wall of the mounting frame 7.

[0025] Specifically, the garment to be heat-melted is placed on top of the conveyor belt, which transports it to the interior of the protective shell 2. The garment is then heat-melted using the adhesive assembly. The melted adhesive adheres to the top of the conveyor belt. When cleaning is required, water is added to the spraying mechanism 5 and activated, spraying water onto the bottom of the conveyor belt. The dust removal mechanism 4 is then activated to clean the adhesive on the conveyor belt, thus completing the cleaning process. Finally, the drying mechanism 6 is activated to continuously blow hot air onto the bottom of the conveyor belt, drying it for subsequent use. When the heat-melted garment moves to the interior of the mounting frame 7 via the conveyor belt, two heat dissipation mechanisms 8 and a cooling mechanism 9 are activated. The air blown out by the heat dissipation mechanisms 8 is cooled by the cooling mechanism 9 and then blown onto the surface of the garment, thus cooling it and facilitating rapid shaping.

[0026] Example 2:

[0027] Please see Figures 3-4In this embodiment of the present invention, a garment bonding machine includes a dust removal mechanism 4 comprising a crossbar 401, a cleaning roller 402, and a first motor 403. The crossbar 401 is rotatably connected between the front and back sides of the inner wall of the collection frame 3. The cleaning roller 402 is connected to the outer surface of the crossbar 401. The first motor 403 is connected to the back side of the collection frame 3, and one end of the output shaft of the first motor 403 extends into the interior of the collection frame 3 and is connected to one end of the crossbar 401. The spraying mechanism 5 includes a water tank 501, a water pump 502, a connecting pipe 503, and multiple nozzles 504. The water tank 501 is connected to the front side of the frame 1. The water pump 502 is connected to one side of the water tank 501, and the suction end of the water pump 502 extends into the interior of the water tank 501. The connecting pipe 503 is connected to the output end of the water pump 502, and one end of the connecting pipe 503 extends into the interior of the collection frame 3. The drying mechanism 6 is connected to the front of the inner wall of the collection frame 3. Multiple nozzles 504 are equidistantly connected to the outer surface of the connecting pipe 503. The drying mechanism 6 includes a heat preservation box 601, multiple heating wires 602, a fan 603, a connecting pipe 604, two air outlet pipes 605, and a connecting plate 606. The connecting plate 606 is connected to the bottom of the frame 1. The heat preservation box 601 is connected to the front of the frame 1. Multiple heating wires 602 are all connected to the inside of the heat preservation box 601. The fan 603 is connected to one side of the heat preservation box 601, and the output end of the fan 603 extends into the inside of the heat preservation box 601. The connecting pipe 604 is connected to the bottom of the heat preservation box 601, and both ends of the connecting pipe 604 extend to the bottom of the frame 1. Both air outlet pipes 605 are connected to the back of the connecting plate 606, and one end of each air outlet pipe 605 is connected to both ends of the connecting pipe 604.

[0028] Specifically, the water pump 502 is started to transport water from the water tank 501 to the inside of the connecting pipe 503, and finally sprayed out to the bottom of the conveyor belt through multiple nozzles 504. The output shaft of the first motor 403 is started to drive the cleaning roller 402 to rotate through the crossbar 401. When the cleaning roller 402 rotates, it cleans the adhesive on the conveyor belt. The output end of the blower 603 is started to blow air into the heat preservation box 601. The air is heated by multiple heating wires 602. The hot air enters the inside of the two air outlet pipes 605 through the connecting pipe 604, and finally is discharged through the two air outlet pipes 605. This process dries the cleaned conveyor belt, making it ready for subsequent use.

[0029] Example 3:

[0030] Please see Figures 1-5In this embodiment of the utility model, a garment bonding machine includes a heat dissipation mechanism 8 comprising a second motor 801, a vertical rod 802, and a fan blade 803. The second motor 801 is connected to the top of the mounting frame 7, and one end of the output shaft of the second motor 801 extends into the interior of the mounting frame 7. The vertical rod 802 is connected to the output shaft of the second motor 801, and the fan blade 803 is connected to the bottom end of the vertical rod 802. The cooling mechanism 9 includes a cooling box 901, a circulating pump 902, and a curved tube 903. The cooling box 901 is connected to the top of the mounting frame 7, and the interior of the cooling box 901 is equipped with... It has a cooling plate, a circulating pump 902 connected to the back of the cooling box 901, and the input end of the circulating pump 902 extends into the interior of the cooling box 901. A curved tube 903 is connected between the front and back of the inner wall of the mounting bracket 7, and both ends of the curved tube 903 extend to the back of the mounting bracket 7. One end of the curved tube 903 is connected to the output end of the circulating pump 902, and the other end of the curved tube 903 is connected to the back of the cooling box 901. The fan blade 803 is located on the upper part of the curved tube 903. Two brackets 10 are connected to both the back and front of the frame 1.

[0031] Specifically, cooling is achieved through the liquid cooling plate inside the cooling box 901. The circulating pump 902 is started to transport the liquid in the cooling box 901 to the inside of the curved tube 903. The output shaft of the second motor 801 is started to drive the fan blade 803 to rotate through the vertical rod 802. The air blown out by the fan blade 803 comes into contact with the coolant in the curved tube 903 and is cooled. Finally, it is blown onto the surface of the garment to cool it. The frame 1 can be stably supported by the four supports 10.

[0032] The working principle of this utility model is as follows: The garment to be bonded is placed on top of the conveyor belt. The garment is then conveyed and moved by the conveyor belt to the bottom of the bonding assembly inside the protective shell 2. The garment is bonded by heat fusion through the bonding assembly. When it is necessary to clean the adhesive on the conveyor belt, water is added to the water tank 501 by the operator, and the water pump 502 is started. The suction end of the water pump 502 draws water from the water tank 501, and the output end of the water pump 502 delivers water to the inside of the connecting pipe 503. Finally, the water is sprayed out through multiple nozzles 504. 504 will be sprayed onto the bottom of the conveyor belt. Then, the first motor 403 is started. The output shaft of the first motor 403 drives the cleaning roller 402 to rotate via the crossbar 401. The cleaning roller 402 rotates in the opposite direction to the conveyor belt, thus cleaning the adhesive on the conveyor belt. This completes the cleaning of the adhesive on the conveyor belt. Next, the blower 603 is started. The output end of the blower 603 blows air into the insulation box 601. After entering the insulation box 601, the air passes through multiple heating wires 602 to heat it. Then, the hot air passes through the connecting pipe 60... 4. Hot air enters the two exhaust pipes 605 and is finally discharged through the two exhaust pipes 605, thus drying the cleaned conveyor belt for subsequent use. The cleaned water falls into the collection box 3, where workers can collect it using an external container. When the garment is heat-fused and moved to the mounting frame 7 via the conveyor belt, the cooling plates inside the cooling box 901 continuously cool the liquid. By activating the circulation pump 902, the input end of the circulation pump 902 draws water from inside the cooling box 901. Liquid is introduced and transported to the inside of the curved tube 903 through the output end of the circulating pump 902. Finally, the liquid flows back to the inside of the cooling box 901 for recycling. Then, the second motor 801 is started. The output shaft of the second motor 801 drives the fan blade 803 to rotate through the vertical rod 802. When the fan blade 803 rotates, it blows air onto the outer surface of the curved tube 903. The air comes into contact with the cooled liquid through the curved tube 903, thereby cooling the air. The cooled air is then blown onto the surface of the clothing, thus completing the cooling of the hot-melted clothing.

[0033] 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.

Claims

1. A garment bonding machine, characterized in that, include: A frame (1) is provided, with a conveyor belt connected inside the frame (1). A protective shell (2) is connected to the top of the frame (1), and an adhesive assembly is provided inside the protective shell (2). A collection frame (3) is connected to the bottom of the frame (1), and a dust removal mechanism (4) is provided inside the collection frame (3), which is in contact with the bottom of the conveyor belt. A spraying mechanism (5) is provided on the front of the frame (1), and the spraying mechanism (5) extends into the inside of the collection frame (3) and is flush with the inner wall of the collection frame (3). The frame (1) is connected to the front side and a drying mechanism (6) is provided on the front side. The drying mechanism (6) extends to the bottom of the frame (1). The top of the frame (1) is connected to a mounting bracket (7). The top of the mounting bracket (7) is provided with two heat dissipation mechanisms (8). Both heat dissipation mechanisms (8) extend into the interior of the mounting bracket (7). The top of the mounting bracket (7) is provided with a cooling mechanism (9). The cooling mechanism (9) extends into the interior of the mounting bracket (7) and connects to the front and back sides of the inner wall of the mounting bracket (7).

2. The garment bonding machine according to claim 1, characterized in that, The dust removal mechanism (4) includes a crossbar (401), a cleaning roller (402), and a first motor (403). The crossbar (401) is rotatably connected between the front and back sides of the inner wall of the collection frame (3). The cleaning roller (402) is connected to the outer surface of the crossbar (401). The first motor (403) is connected to the back side of the collection frame (3), and one end of the output shaft of the first motor (403) extends into the interior of the collection frame (3) and is connected to one end of the crossbar (401).

3. A garment bonding machine according to claim 2, characterized in that, The spraying mechanism (5) includes a water tank (501), a water pump (502), a connecting pipe (503), and multiple nozzles (504). The water tank (501) is connected to the front of the frame (1). The water pump (502) is connected to one side of the water tank (501), and the suction end of the water pump (502) extends into the interior of the water tank (501). The connecting pipe (503) is connected to the output end of the water pump (502), and one end of the connecting pipe (503) extends into the interior of the collection frame (3) and is connected to the front of the inner wall of the collection frame (3). Multiple nozzles (504) are equidistantly connected to the outer surface of the connecting pipe (503).

4. A garment bonding machine according to claim 3, characterized in that, The drying mechanism (6) includes an insulation box (601), multiple heating wires (602), a fan (603), a connecting pipe (604), two air outlet pipes (605), and a connecting plate (606). The connecting plate (606) is connected to the bottom of the frame (1), the insulation box (601) is connected to the front of the frame (1), and the multiple heating wires (602) are all connected inside the insulation box (601). The fan (603) is connected to the bottom of the frame (1). The fan (603) is connected to one side of the insulation box (601), and the output end of the fan (603) extends into the interior of the insulation box (601). The connecting pipe (604) is connected to the bottom of the insulation box (601), and both ends of the connecting pipe (604) extend to the bottom of the frame (1). The two air outlet pipes (605) are connected to the back of the connecting plate (606), and one end of the two air outlet pipes (605) is connected to both ends of the connecting pipe (604).

5. A garment bonding machine according to claim 4, characterized in that, The heat dissipation mechanism (8) includes a second motor (801), a vertical rod (802), and a fan blade (803). The second motor (801) is connected to the top of the mounting bracket (7), and one end of the output shaft of the second motor (801) extends into the interior of the mounting bracket (7). The vertical rod (802) is connected to the output shaft of the second motor (801), and the fan blade (803) is connected to the bottom end of the vertical rod (802).

6. A garment bonding machine according to claim 5, characterized in that, The cooling mechanism (9) includes a cooling box (901), a circulating pump (902), and a curved tube (903). The cooling box (901) is connected to the top of the mounting bracket (7), and a cooling plate is provided inside the cooling box (901). The circulating pump (902) is connected to the back of the cooling box (901), and the input end of the circulating pump (902) extends into the interior of the cooling box (901). The curved tube (903) is connected between the front and back of the inner wall of the mounting bracket (7), and both ends of the curved tube (903) extend to the back of the mounting bracket (7). One end of the curved tube (903) is connected to the output end of the circulating pump (902), and the other end of the curved tube (903) is connected to the back of the cooling box (901). The fan blade (803) is located on the upper part of the curved tube (903).

7. A garment bonding machine according to claim 6, characterized in that, Two brackets (10) are connected to both the back and front of the frame (1).