A garment fabric bonding apparatus

By installing heating tubes, pressing components, and pressure rollers on the conveyor belt, combined with the structure of the receiving seat and connecting plate, the problem of misalignment during fabric bonding is solved, achieving stable bonding and rapid heat dissipation of the fabric, and improving the bonding quality.

CN116461188BActive Publication Date: 2026-04-21FUJIAN SHUNBANG PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
FUJIAN SHUNBANG PROTECTION TECH CO LTD
Filing Date
2023-03-11
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

During the bonding process of clothing fabrics, the two stacked fabrics are prone to misalignment, resulting in uneven bonding.

Method used

The structure adopts a design that installs heating pipes, pressing components and pressure rollers on the conveyor belt. The fabric is initially positioned by intermittent conveyor belt movement and pressing by the pressing components. Then, the pressure rollers are used to fully compact the fabric. Combined with the design of the support seat and connecting plate, the fabric is kept stably bonded during the conveying process. The guide rollers and air blowing pipes are used to assist in heat dissipation.

Benefits of technology

It effectively prevents fabric misalignment, improves bonding quality, and accelerates the cooling process of hot melt adhesive, ensuring stable bonding of the fabric during transport.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to the technical field of garment fabric bonding, and discloses a garment fabric bonding device, including a machine base with an inlet and an outlet. A conveyor belt, a heating element, and a pressure roller are mounted on the machine base. The heating element is located above the conveyor belt, and the pressure roller is rotatably mounted above the conveyor belt. A pressing assembly is also mounted above the conveyor belt, located between the heating element and the pressure roller. The pressing assembly includes a pressure plate and a first driving member that drives the pressure plate to move. A second driving member is mounted on the machine base for controlling the intermittent movement of the conveyor belt. This application can improve the situation where misalignment occurs between two fabrics.
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Description

Technical Field

[0001] This application relates to the technical field of garment fabric bonding, and in particular to a garment fabric bonding device. Background Technology

[0002] In garment manufacturing, it is sometimes necessary to attach other fabrics to garment materials, such as attaching fluorescent strips to sanitation worker uniforms. One fabric is coated with hot melt adhesive, another fabric is placed on top of it, and then the two fabrics are bonded together using fabric bonding equipment.

[0003] Fabric bonding equipment as attached Figure 1 As shown, the machine includes a bonding machine body, on which a conveyor belt 2 for conveying fabric and a drive unit for driving the conveyor belt 2 are installed. A heating tube 3 and two pressing rollers 50 are installed inside the bonding machine body. The fabric is conveyed by the conveyor belt and passes between the heating tube 3 and the two pressing rollers 50 in sequence. The two pressing rollers 50 are rotatably mounted on the bonding machine body, and a gap is left between the two pressing rollers 50 for the fabric to pass through. The conveyor belt is set on both sides of the pressing rollers 50. The two pressing rollers 50 press the fabric to make the two fabrics bond tightly together. After passing the pressing rollers 50, the fabric continues to be conveyed out by the conveyor belt 2.

[0004] Regarding the aforementioned technologies, when the stacked fabrics pass through the heating tube 3, the hot melt adhesive on the fabrics becomes sticky after being heated, but the two fabrics are not yet bonded together. When the two fabrics pass through the pressing rollers 50, and the two pressing rollers 50 press the fabrics, if the two pressing rollers 50 rotate simultaneously to apply force to the fabrics, the stacked fabrics may misalign with each other if the force on the two fabrics is uneven. Summary of the Invention

[0005] To improve the situation where two stacked fabrics become misaligned, this application provides a garment fabric bonding device.

[0006] This application provides a garment fabric bonding device, which adopts the following technical solution:

[0007] A garment fabric bonding device includes a machine base, the machine base having an inlet end and an outlet end, a conveyor belt, a heating tube, and a pressure roller mounted on the machine base, the heating tube being located above the conveyor belt, and the pressure roller being rotatably mounted above the conveyor belt;

[0008] A pressing assembly is also installed above the conveyor belt. The pressing assembly is located between the heating tube and the pressure roller. The pressing assembly includes a pressure plate and a first driving member that drives the pressure plate to move. A second driving member for controlling the intermittent movement of the conveyor belt is installed on the machine base.

[0009] By adopting the above technical solution, the machine is installed above the conveyor belt with heating tubes, pressing components, and pressure rollers in sequence. After stacking the two fabrics to be bonded, when the conveyor belt stops intermittently, the stacked fabrics are placed on the conveyor belt. When the conveyor belt carries the fabrics under the heating tubes, the hot melt adhesive on the fabrics is melted. The fabrics continue to be transported under the pressing components. When the conveyor belt stops intermittently, the second drive unit drives the pressure plate to press the fabrics. The two fabrics are initially bonded while remaining stacked, completing the initial positioning. The conveyor belt continues to carry the fabrics past the pressure rollers, which can further and fully compact the fabrics, making the two fabrics stably bonded together and improving the situation of misalignment of the fabrics during the bonding process.

[0010] Optionally, the system also includes a receiving seat for receiving the fabric. The receiving seat comprises multiple connecting plates arranged side-by-side, with a rotating component rotatably mounted between adjacent connecting plates. Two connecting plates are mounted on the surface of each connecting plate away from the conveyor belt, and these two connecting plates are distributed on opposite sides near the adjacent connecting plates.

[0011] The receiving seat is equipped with a connecting assembly, which includes multiple connecting rods. The connecting rods are installed inside the connecting plate, and each connecting rod corresponds to a connecting plate. The connecting assembly also includes an elastic connector that connects two adjacent connecting rods.

[0012] By adopting the above technical solution, after stacking two pieces of fabric that need to be bonded together on the receiving seat, the receiving seat is placed on the conveyor belt when the conveyor belt stops intermittently. When the receiving plate is conveyed on the conveyor belt, multiple connecting plates are arranged side by side. When the receiving seat is conveyed to the discharge end, the connecting plates leave the conveyor belt one by one. The connecting plate that leaves the conveyor belt first rotates downward through the rotating component. During the rotation, the connecting plate arches the flatly stacked fabric. Before the receiving seat has completely left the conveyor belt, the bonded fabric leaves the receiving seat and the conveyor belt first. The fabric and the receiving seat can leave the conveyor belt separately, making it convenient for people to collect the fabric and the receiving seat separately.

[0013] Optionally, the rotating component includes a rotating shaft fixedly mounted on the connecting plate and a connecting rod, with both ends of the connecting rod rotatably mounted on the rotating shaft.

[0014] By adopting the above technical solution, when the connecting plate is close to the drive roller of the conveyor belt, the connecting plate can rotate downward around the rotating shaft as the rotation center, so that the receiving seat gradually leaves the conveyor belt. After part of the connecting plate rotates downward around the rotating shaft as the rotation center, the fabric on the connecting plate can automatically separate from the receiving seat.

[0015] Optionally, the connecting rod is slidably installed inside the connecting plate, and a push rod is movably installed on the receiving seat. One end of the push rod is installed on one end of the connecting rod, and the other end of the push rod extends out of the connecting plate.

[0016] By adopting the above technical solution, when the push rod moves on the receiving seat, it can push a connecting rod to slide in the connecting plate. Multiple connecting rods are connected by an elastic band to form a whole, so multiple connecting rods can move together. When the connecting rod slides in the connecting plate until the two ends of the connecting rod are respectively located in the two connecting plates, the two adjacent connecting plates cannot continue to rotate as rotating parts. Multiple connecting plates are on the same horizontal plane, so that the fabric can be stacked flat on the receiving seat.

[0017] Before the receiving seat is placed on the conveyor belt, the multiple connecting plates of the receiving seat are on the same horizontal plane, and the receiving plate serves as a temporary placement platform to place the stacked fabric.

[0018] When the receiving seat is placed on the conveyor belt, the push rod takes one end of the connecting rod away from one of the connecting plates. The elastic band is located between the two connecting plates. The adjacent two connecting plates can rotate due to the rotation of the rotating parts, so that when the receiving seat leaves the conveyor belt, multiple connecting plates leave in sequence, allowing the receiving seat and the fabric to leave the conveyor belt separately.

[0019] Optionally, the discharge end of the machine is provided with a receiving plate, which is lower than the upper surface of the conveyor belt. An inclined guide plate is connected to one end of the receiving plate near the conveyor belt, and a gap is left between the guide plate and the conveyor belt for the connecting plate to pass through.

[0020] By adopting the above technical solution, the receiving plate is used to receive the fabric. The guide plate on the receiving plate can prevent the connecting plate from entering the receiving plate. When the receiving seat carries the fabric away from the conveyor belt, the fabric enters the receiving plate through the guide plate, and the connecting plate enters between the guide plate and the conveyor belt. Therefore, the receiving plate and the fabric can be automatically separated.

[0021] Optionally, an air blowing pipe is installed on the machine base, and the air blowing pipe is located near the discharge end.

[0022] By adopting the above technical solution, when the connecting plate passes the transmission roller of the conveyor belt, the connecting plate rotates with the connecting plate, causing the connecting plate to arch the fabric, and the air pipe blows the fabric, so that the fabric can smoothly leave the conveyor belt and enter the receiving plate.

[0023] Optionally, a guide roller is installed on the machine base, the guide roller is located between the pressure roller and the discharge end, the radial top of the guide roller is higher than the upper surface of the conveyor belt, and the conveyor belt is arranged on opposite sides of the guide roller.

[0024] By adopting the above technical solution, when the receiving seat is placed on the conveyor belt, the two adjacent connecting plates can rotate relative to each other through the rotating parts. After the two stacked fabrics are bonded together by the pressure roller, the receiving seat needs to pass through the guide roller before leaving the conveyor belt. When the connecting plate passes through the guide roller, it rotates around the rotating shaft as the rotation center. The rotating connecting plate can arch the fabric, so that the fabric is not completely attached to the receiving seat during the entire conveyor belt process. The fabric is bonded to the receiving plate and a gap can still be formed, which can further improve the heat dissipation effect of the fabric and make the hot melt adhesive on the fabric cool down faster.

[0025] Optionally, the conveyor belt is provided with interlocking blocks at intervals, and the connecting plate on which the push rod is installed is connected to an auxiliary plate. The auxiliary plate has a slot, and the interlocking blocks are inserted into the slot.

[0026] By adopting the above technical solution, the receiving seat is installed on the conveyor belt, and the insert is inserted into the slot. When the conveyor belt stops intermittently, the insert can make the receiving seat stably installed on the conveyor belt. When the conveyor belt carries the receiving seat to the lower surface of the conveyor belt, the receiving seat completely leaves the conveyor belt.

[0027] Optionally, one end of the push rod extends into the slot, and a guide surface is provided at one end of the push rod. When one end of the push rod is located in the slot, the two ends of the connecting rod are respectively located between the two connecting plates.

[0028] By adopting the above technical solution, when the insert block is inserted into the slot, the push rod leaves the slot, and the push rod pushes the connecting rod away from one of the connecting plates, so that the elastic band is located between the two connecting plates, and the two adjacent connecting plates can rotate as rotating parts.

[0029] In summary, this application includes at least one of the following beneficial effects:

[0030] 1. During the bonding process, the conveyor belt transports the fabric through the receiving seat. The two fabrics are initially fixed together by the pressure plate, and then fully pressed by the pressure roller. The two fabrics can be bonded together while maintaining a stacked state.

[0031] 2. After the fabric is crushed, the connecting plate on the receiving seat rotates, leaving a gap between part of the fabric and the receiving seat, which improves the heat dissipation effect of the fabric. Attached Figure Description

[0032] Figure 1 This is a schematic diagram of the overall structure of the related technology;

[0033] Figure 2 This is a schematic diagram of the overall structure of Embodiment 1 of this application;

[0034] Figure 3 This is a cross-sectional view of the overall structure of Embodiment 1 of this application;

[0035] Figure 4 This is a schematic diagram of the receiving seat structure according to Embodiment 1 of this application;

[0036] Figure 5 yes Figure 3 Enlarged view of point A;

[0037] Figure 6 This is a schematic cross-sectional view of the receiving seat according to Embodiment 1 of this application;

[0038] Figure 7 This is a schematic diagram of the receiving seat passing through the guide roller in Embodiment 1 of this application;

[0039] Figure 8 This is a partial structural schematic diagram of Embodiment 2 of this application;

[0040] Figure 9 yes Figure 8 Enlarged diagram of point B.

[0041] Explanation of reference numerals in the attached drawings: 1. Machine base; 101. Feeding end; 102. Discharge end; 2. Conveyor belt; 21. Drive roller; 22. First through hole; 23. Second through hole; 24. Insert block; 3. Heating tube; 4. Pressing assembly; 41. Pressure plate; 42. First driving component; 5. Pressure roller; 6. Receiving seat; 61. Connecting plate; 611. Connecting plate; 612. Receiving groove; 62. Additional plate; 63. Slot; 7. Rotating component; 71. Rotating shaft; 72. Connecting rod; 8. Connecting assembly; 81. Connecting rod; 82. Elastic belt; 9. Push rod; 91. Guide surface; 10. Guide roller; 11. Support plate; 12. Receiving plate; 13. Guide plate; 14. Air blowing pipe; 15. Branch pipe; 50. Rolling roller. Detailed Implementation

[0042] The following is in conjunction with the appendix Figure 2-9 This application will be described in further detail.

[0043] Example 1:

[0044] Embodiment 1 of this application discloses a garment fabric bonding device. (Refer to...) Figure 2 and Figure 3A garment fabric bonding device includes a machine base 1, which includes an inlet end 101 and an outlet end 102. A conveyor belt 2, a heating tube 3, a pressing assembly 4, and a pressure roller 5 are mounted on the machine base 1. The two ends of the conveyor belt 2 are located near the inlet end 101 and the outlet end 102, respectively. The heating tube 3, the pressing assembly 4, and the pressure roller 5 are located above the conveyor belt 2, with the pressure roller 5 rotatably mounted above the conveyor belt 2. The pressing assembly 4 includes a pressure plate 41 and a first driving component 42 that drives the pressure plate 41 to move up and down. The first driving component 42 can be a cylinder or a hydraulic rod, etc. In this embodiment, the first driving component 42 is a cylinder, and the piston rod of the cylinder is fixedly connected to the pressure plate 41. The fabric passes through the heating tube 3, the pressing assembly 4, and the pressure roller 5 in sequence. After the fabric passes through the heating tube 3, the hot melt adhesive on the fabric melts, and the cylinder drives the pressure plate 41 to press the fabric downwards, so that the two fabrics are initially bonded together. The two stacked fabrics then pass through the pressure roller 5, allowing the fabric to be fully compressed.

[0045] To keep the fabric stationary when the pressure plate 41 presses down, a second drive unit, a servo motor, is installed on the machine base 1 to control the movement of the conveyor belt 2. The intermittent rotation of the servo motor drives the conveyor belt 2 to move intermittently.

[0046] Reference Figure 4 A garment fabric bonding device further includes a receiving seat 6 for receiving the fabric. The receiving seat 6 includes multiple connecting plates 61 arranged side by side. A rotating component 7 is rotatably installed between adjacent connecting plates 61, and the two connecting plates 61 are connected together by the rotating component 7. The rotating component 7 includes a rotating shaft 71 fixedly installed on the connecting plate 61 and a connecting rod 72. The two ends of the connecting rod 72 are respectively rotatably installed on the rotating shaft 71 of the two adjacent connecting plates 61.

[0047] Reference Figure 5 When the receiving seat 6 is placed on the conveyor belt 2, the receiving seat 6 moves along with the conveyor belt 2. When the receiving seat 6 is conveyed to the drive roller 21 near the discharge end 102 of the conveyor belt 2, the connecting plate 61 rotates around the rotating shaft 71 as the rotation center. Multiple connecting plates 61 gradually rotate downwards, and the receiving seat 6 gradually leaves the conveyor belt 2.

[0048] Reference Figure 5 Connecting plates 611 are installed on both sides of one side of the connecting plate 61, with the connecting plates 611 close to each other between adjacent connecting plates 61. When the receiving seat 6 is placed on the conveyor belt 2 and the connecting plates 611 are away from the conveyor belt 2, the connecting plates 611 can fill the gap between adjacent connecting plates 61. The fabric is laid flat on the receiving seat 6, and when the receiving seat 6 carries the fabric past the pressure roller 5, the pressure roller 5 can fully crush the fabric.

[0049] Reference Figure 5A connecting assembly 8 is installed on the receiving seat 6. The connecting assembly 8 includes multiple connecting rods 81, with each connecting rod 81 corresponding to a connecting plate 61. Each connecting plate 61 has a receiving groove 612 for accommodating the connecting rods 81. The receiving groove 612 extends along the length of the connecting rod 81, and the connecting rod 81 is slidably installed within the receiving groove 612. The connecting assembly 8 also includes an elastic connector installed between two adjacent connecting rods 81. The elastic connector is an elastic band 82 made of rubber. One end of the elastic band 82 is fixedly connected to one end of a connecting rod 81, and the other end of the elastic band 82 is fixedly connected to one end of another connecting rod 81.

[0050] When both ends of a connecting rod 81 are mounted on the same connecting plate 61, and the elastic band 82 is located between the two connecting plates, the elastic band 82 is in a stretched state when the connecting plate 61 rotates around the rotating shaft 71.

[0051] Reference Figure 6 When the connecting rod 81 slides along the receiving groove 612, with one end of the connecting rod 81 on one connecting plate and the other end on another connecting rod 81, adjacent connecting plates 61 are on the same horizontal plane, and the connecting plates 61 cannot rotate about the pivot 71. Therefore, the cooperation between the connecting rod 81 and the elastic band 82 can allow multiple connecting plates 61 of the receiving seat 6 to be on the same horizontal plane, and also allow the connecting plates 61 on the receiving seat 6 to rotate relative to each other.

[0052] A push rod 9 is slidably mounted on one of the side connecting plates 61, and an auxiliary plate 62 is connected to the connecting plate 61 with the push rod 9. One end of the push rod 9 is fixedly mounted on one end of the connecting rod 81, and the other end of the push rod 9 extends out of the connecting plate 61. The push rod 9 slides on the auxiliary plate 62. Manually pulling the push rod 9 can control the connecting rod 81 to slide within the connecting plate 61, thereby placing the multiple connecting plates 61 on the same horizontal plane, or allowing adjacent connecting plates 61 to rotate relative to each other.

[0053] Reference Figure 3 A support plate 11 is fixedly installed on the machine base 1. The support plate 11 is located between the two drive rollers 21 of the conveyor belt 2, and the upper surface of the support plate 11 is in contact with the conveyor belt 2. When the conveyor belt 2 conveys the receiving seat 6, the support rod supports the conveyor belt 2. The pressure of the pressure plate 41 pressing on the receiving seat 6 and the pressure roller 5 rolling on the receiving seat 6 can be transmitted to the support rod, so that the conveyor belt 2 is kept taut when conveying the receiving seat 6.

[0054] Reference Figure 3 and Figure 4The machine base 1 is rotatably mounted with a guide roller 10 and a motor (not shown in the figure) that drives the guide roller 10 to rotate. The guide roller 10 is located between the pressure roller 5 and the discharge roller. There are two conveyor belts 2, which are respectively arranged on opposite sides of the guide roller 10. The guide roller 10 serves as a transition between the two conveyor belts 2. After the two fabrics are bonded together, the receiving seat 6 enters the other conveyor belt 2 through the guide roller 10.

[0055] Reference Figure 7 The radial top of the guide roller 10 is higher than the upper surface of the conveyor belt 2. When the receiving seat 6 passes the guide roller 10, the connecting plate 61 rotates around the rotating shaft 71. The connecting plate 61 is tangent to the outer periphery of the guide roller 10. The connecting plate 61 on the conveyor belt 2 and the connecting plate 61 on the guide roller 10 are not on the same horizontal plane. The rotation of the connecting plate 61 can arch the fabric on the receiving seat 6, and air can enter between the connecting plate 61 and the fabric, accelerating the heat dissipation of the fabric and allowing the hot melt adhesive to dry faster.

[0056] Reference Figure 3 and Figure 5 The discharge end 102 of the machine 1 is equipped with a receiving plate 12, which is lower than the upper surface of the conveyor belt 2. An inclined guide plate 13 is connected to the end of the receiving plate 12 closest to the conveyor belt 2. A gap exists between the guide plate 13 and the conveyor belt 2, allowing only the connecting plate 61 to pass through. As the receiving seat 6 carries the fabric away from the conveyor belt 2, the connecting plate 61 rotates downwards around the rotating shaft 71 as it passes the drive roller 21 of the conveyor belt 2. The connecting plate 61, along with the connecting plate, arches the fabric upwards, allowing it to detach more easily from the receiving seat 6. Before the receiving seat 6 has completely left the conveyor belt 2, the fabric leaves the receiving seat 6 first, sliding along the guide plate 13 onto the receiving plate 12. The receiving seat 6 gradually enters the gap between the guide plate 13 and the conveyor belt 2. A receiving basket for receiving the receiving seat 6 is placed on the ground.

[0057] Reference Figure 5An air-blowing pipe 14 is installed on the machine base 1, located near the discharge end 102. The drive roller 21 near the discharge end 102 has a hollow structure, and the air-blowing pipe 14 is located inside the drive roller 21. The air-blowing pipe 14 and the drive roller 21 are coaxial, and the air-blowing pipe 14 can remain stationary when the drive roller 21 rotates. The length of the air-blowing pipe 14 extends along the axial direction of the drive roller 21. The air-blowing pipe 14 is connected to branch pipes 15, and multiple branch pipes 15 are spaced apart along the length of the air-blowing pipe 14, with the air outlets of the branch pipes 15 facing upwards. A first through hole 22 is opened on the surface of the drive roller 21 on which the air-blowing pipe 14 is installed, and the first through hole 22 is arranged circumferentially along the drive roller 21. Second through holes 23 are distributed on the conveyor belt 2 near the discharge end 102, and the second through holes 23 are arrayed on the conveyor belt 2. When the air-blowing pipe 14 is ventilated, the gas blown out by the branch pipe 15 passes through the first through hole 22 and the second through hole 23. When the connecting plate 61 in the receiving seat 6 is fastened to the transmission roller 21 at the discharge end 102, the connecting plate 61 can rotate around the rotating shaft 71 as the rotation center, so that the two adjacent connecting plates 611 are no longer in the same plane. Gas can be blown onto the fabric through the gap between the two adjacent connecting plates 61, and the air blowing pipe 14 can help the fabric leave the receiving seat 6 faster.

[0058] The implementation principle of the garment fabric bonding device in Embodiment 1 of this application is as follows:

[0059] Two fabrics are stacked on the receiving seat 6. Before the receiving seat 6 is placed on the conveyor belt 2, the two ends of the connecting rod 81 are respectively located on the two connecting plates 61. Multiple connecting plates 61 are in the same horizontal state. The receiving seat 6 is placed horizontally on the conveyor belt 2. At this time, the conveyor belt 2 is in an intermittently stopped conveying state. After the receiving seat 6 is placed, the push rod 9 is manually controlled to slide so that the connecting rod 81 is located in the corresponding connecting plate 61. Adjacent connecting plates 61 are connected by an elastic band 82.

[0060] When the conveyor belt 2 starts intermittent conveying, the receiving seat 6 carries the fabric under the heating pipe 3, and the hot melt adhesive on the fabric melts.

[0061] When the receiving seat 6 is completely below the pressure plate 41, the conveyor belt 2 continues to intermittently stop conveying, the first driving member 42 drives the pressure plate 41 to move downward, the pressure plate 41 presses down on the fabric and leaves the receiving seat 6, and the two fabrics are initially bonded together.

[0062] The conveyor belt 2 begins to convey intermittently. When the receiving seat 6 passes under the pressure roller 5, the pressure roller 5 crushes the fabric on the receiving seat 6, and the two fabrics are completely bonded together.

[0063] When the conveyor belt 2 drives the receiving seat 6 to gradually pass the guide roller 10, the connecting plate 61 on the conveyor belt 2 and the connecting plate 61 on the guide roller 10 are not on the same horizontal plane. When the connecting plate 61 rotates around the rotating shaft 71, the connecting plate 61 carries the connecting plate upward, causing the fabric to be arched. A gap is left between part of the fabric and the connecting plate 61, which increases the heat dissipation area of ​​the fabric and improves the heat dissipation effect of the fabric.

[0064] When the receiving seat 6 is conveyed to the discharge end 102, the transmission roller 21 guides the connecting plate 61 to rotate in sequence. The rotation of the connecting plate 61 can push the fabric away from the receiving seat 6. The gas from the air blowing pipe 14 can also be blown towards the fabric through the space between the two connecting plates 61, helping the fabric to leave the receiving seat 6 faster. The fabric leaves the conveyor belt 2 first and enters the receiving plate 12. The receiving seat 6 leaves the conveyor belt 2 through the gap between the guide plate 13 and the conveyor belt 2.

[0065] Example 2:

[0066] Reference Figure 8 and Figure 9 The difference between Embodiment 2 and Embodiment 1 is that Embodiment 2 has only one conveyor belt 2, and the conveyor belt 2 is provided with intermittently arranged inserts 24, with the distance between two adjacent inserts 24 being greater than the length of the receiving seat 6. The auxiliary plate 62 has a slot 63, and the inserts 24 are inserted into the slot 63. The rest of Embodiment 2 is the same as Embodiment 1. One end of the push rod 9 has an inclined guide surface 91, and one end of the push rod 9 extends into the slot 63, with part of the guide surface 91 located within the slot 63. When one end of the push rod 9 is located within the slot 63, the two ends of the connecting rod 81 are respectively located between two adjacent connecting plates 61, and the multiple connecting plates 61 remain on the same horizontal plane.

[0067] When the conveyor belt 2 stops intermittently, the slot 63 of the receiving seat 6 is aligned with the insert 24 and slid into the conveyor belt 2. The insert 24 pushes the push rod 9 away from the slot 63 through the guide surface 91. The push rod 9 pushes the connecting rod 81 away from a connecting plate 61. The connecting rod 81 is located only in one connecting plate 61. The elastic band 82 is located between two connecting plates 61. The adjacent connecting plates 61 can rotate relative to each other.

[0068] When the conveyor belt 2 conveys the receiving seat 6, and the receiving seat 6 carries the fabric to the discharge end 102, the connecting plate 61 connected to the insert block 24 moves away from the receiving plate 12. When the parallel connecting plates 61 rotate downwards in sequence through the outer periphery of the transmission roller 21, the receiving plate can be stably installed on the conveyor belt 2 because the insert block 24 can be stably installed. When the receiving seat 6 moves to the lower surface of the conveyor belt 2 along with the conveyor belt 2, the receiving seat 6 falls downwards due to gravity.

[0069] 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. A garment fabric bonding device, comprising a machine base (1), the machine base (1) including an inlet end (101) and an outlet end (102), wherein a conveyor belt (2), a heating tube (3) and a pressure roller (5) are installed on the machine base (1), the heating tube (3) being located above the conveyor belt (2), characterized in that: The pressure roller (5) is rotatably mounted above the conveyor belt (2); A pressing assembly (4) is also installed above the conveyor belt (2). The pressing assembly (4) is located between the heating tube (3) and the pressure roller (5). The pressing assembly (4) includes a pressure plate (41) and a first driving member (42) that drives the pressure plate (41) to move. A second driving member for controlling the intermittent movement of the conveyor belt (2) is installed on the machine base (1). It also includes a receiving seat (6) for receiving the fabric, the receiving seat (6) including a plurality of connecting plates (61) arranged side by side, with a rotating member (7) rotatably installed between adjacent connecting plates (61), and two connecting plates (611) installed on the surface of the connecting plates (61) away from the conveyor belt (2), the two connecting plates (611) being distributed on both sides close to the adjacent connecting plates (61). A connecting component (8) is installed on the receiving seat (6). The connecting component (8) includes multiple connecting rods (81). The connecting rods (81) are installed in the connecting plate (61). The connecting rods (81) correspond one-to-one with the connecting plate (61). The connecting component (8) also includes an elastic connector that connects two adjacent connecting rods (81). A guide roller (10) is installed on the machine base (1). The guide roller (10) is located between the pressure roller (5) and the discharge end (102). The radial top of the guide roller (10) is higher than the upper surface of the conveyor belt (2). The conveyor belt (2) is arranged on opposite sides of the guide roller (10).

2. The garment fabric bonding equipment according to claim 1, characterized in that: The rotating component (7) includes a rotating shaft (71) fixedly installed on the connecting plate (61) and a connecting rod (72), with both ends of the connecting rod (72) rotatably installed on the rotating shaft (71).

3. The garment fabric bonding equipment according to claim 1, characterized in that: The connecting rod (81) is slidably installed inside the connecting plate (61), and a push rod (9) is movably installed on the receiving seat (6). One end of the push rod (9) is installed on one end of the connecting rod (81), and the other end of the push rod (9) extends out of the connecting plate (61).

4. The garment fabric bonding equipment according to claim 1, characterized in that: The machine (1) has a receiving plate (12) at the discharge end (102). The receiving plate (12) is lower than the upper surface of the conveyor belt (2). An inclined guide plate (13) is connected to one end of the receiving plate (12) near the conveyor belt (2). A gap is left between the guide plate (13) and the conveyor belt (2) for the connecting plate (61) to pass through.

5. The garment fabric bonding equipment according to claim 4, characterized in that: An air blowing pipe (14) is installed on the machine base (1), and the air blowing pipe (14) is located near the discharge end (102).

6. The garment fabric bonding equipment according to claim 3, characterized in that: The conveyor belt (2) is provided with interlocking blocks (24) at intervals. The connecting plate (61) on which the push rod (9) is installed is connected to an auxiliary plate (62). The auxiliary plate (62) has a slot (63) and the interlocking blocks (24) are inserted into the slot (63).

7. The garment fabric bonding equipment according to claim 6, characterized in that: One end of the push rod (9) extends into the slot (63). When one end of the push rod (9) is in the slot (63), the two ends of the connecting rod (81) are respectively located between the two connecting plates (61).

Citation Information

Patent Citations

  • Bonding machine for spinning

    CN213973036U