Novel laminating machine

By improving the design of the bonding machine, using a heating element for heating, a cooling element for cooling, and a peeling element for peeling, combined with an infrared bias adjustment device and a material distribution rack, the problems of insufficient heating temperature and poor cooling effect are solved, achieving low power consumption, no residual glue, and safe and efficient shoe upper processing.

CN223715129UActive Publication Date: 2025-12-26QUANZHOU MINGYUAN MASCH TECH CO LTD
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Patent Information

Application Number
CN202520156006.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-12-26
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Existing bonding machines have insufficient heating temperature or poor cooling effect, resulting in residual hot melt adhesive on the belt, high power consumption, and the traditional design makes it inconvenient to handle the shoe uppers and cause them to pile up and become crowded.

Method used

The upper and lower belts are used to clamp the shoe upper. The heating component heats the shoe, the cooling component cools it, and the peeling component peels it off. Multiple cooling methods and angle design are used, along with an infrared adjustment device and a material distribution rack to disperse the shoe upper processing, so as to achieve efficient fitting and safe handling.

Benefits of technology

It reduces power consumption, avoids hot melt adhesive residue, extends belt life, improves processing efficiency and safety, and reduces human error rate.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223715129U_ABST
    Figure CN223715129U_ABST
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Abstract

The utility model provides a novel laminating machine, which belongs to the technical field of vamp processing and comprises an upper belt, a lower belt, a heating component, a cooling component, a stripping component, a driving component and a rack, the upper belt and the lower belt are mounted on the upper portion of the rack and are oppositely distributed, the driving component is arranged on the upper portion of the rack, and the stripping component is arranged on the lower portion of the rack. And the driving device is used for driving the upper belt and the lower belt to move, and the upper belt and the lower belt clamp and convey the vamps attached with the hot melt adhesive sheets when the upper belt and the lower belt move. Compared with the prior art, the machine has the advantages of low power consumption, no residual glue and long service life of the belt, meanwhile, workers can be dispersed to process front and back vamps, the unprocessed vamps and the workers are located at the front end of the machine, the processed vamps come out of the two sides of the machine, and the workers take the vamps from the two sides respectively, so that the working efficiency is improved. Crowding is avoided, the accident rate is reduced, and disorder of the vamps before and after processing is prevented.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the vamp processing technical field, specifically a kind of novel laminating machine. BACKGROUND

[0002] Flyknit mesh vamp needs to be laminated with hot melt adhesive sheet at toe, heel and edge to reinforce, and the role of laminating machine is to make hot melt adhesive sheet laminated with vamp by heating, and the finished product is obtained by cooling and forming the adhesive sheet.

[0003] The heating temperature of the laminating machine on the market is not enough or the refrigeration cooling effect is poor, the hot melt adhesive is easily left on the belt, which causes the belt to break, the design of up-out and in makes it inconvenient to take the vamp, and there are problems such as high power consumption and residual glue, therefore, a vamp laminating machine is needed to solve the above problems, in addition, the vamp processing of traditional machine is in front end, which causes the front end to be crowded, and the vamp that has not been processed and has been processed is stacked together. INVENTION CONTENTS

[0004] In view of the above technical problems of the prior art, the technical problem to be solved by the utility model embodiment is to provide a novel laminating machine.

[0005] To solve the above technical problems, the utility model provides the following technical scheme:

[0006] A novel laminating machine comprises an upper belt, a lower belt, a heating assembly, a cooling assembly, a stripping assembly, a driving assembly and a rack,

[0007] The upper belt and the lower belt are installed on the upper part of the rack and are distributed oppositely,

[0008] The driving assembly is arranged on the upper part of the rack and is used to drive the upper belt and the lower belt to move, and the upper belt and the lower belt are used to clamp and convey the vamp with hot melt adhesive sheet,

[0009] The heating assembly is arranged on the side wall of the upper belt and the lower belt, and is used to heat the hot melt adhesive sheet, so that the hot melt adhesive sheet is laminated with the vamp,

[0010] The cooling assembly is installed on the upper part of the rack and is used to cool the vamp adhered to the upper belt, so as to strip the adhesion.

[0011] The stripping assembly is arranged on one side of the upper belt and is used to strip the cooled vamp from one side of the upper belt.

[0012] As a further improved scheme of the utility model, the heating assembly comprises a plurality of heating plates, and the plurality of heating plates are arranged on one side of the upper belt and the lower belt.

[0013] As a further improved scheme of the present utility model: the cooling assembly includes upper refrigeration fan, lower refrigeration fan, refrigeration roller and upper water tank which are installed on the rack,

[0014] The upper refrigeration fan and the lower refrigeration fan are spacedly arranged in an up-down mode, and the refrigeration roller and the upper water tank are attached to the inner side of the upper belt.

[0015] As a further improved scheme of the present utility model: the stripping assembly includes a stripping roller which is arranged on the inner side of the upper belt.

[0016] As a further improved scheme of the present utility model: the driving assembly includes lower front roller, main motor, first chain wheel, second chain wheel, third chain wheel, first chain, lower rubber roller, second chain, upper rubber roller and gear,

[0017] The upper front roller and the lower rubber roller are oppositely arranged, the lower belt is sleeved between the upper front roller and the lower rubber roller, the upper rubber roller is located above the lower rubber roller, and the gear is installed at the end of the upper rubber roller,

[0018] The main motor is fixedly installed on the rack, the first chain wheel is installed at the output end of the main motor, the second chain wheel is installed at the end of the lower rubber roller, the first chain wheel is connected with the gear through the first chain, and the gear is engaged with the second chain wheel,

[0019] The third chain wheel is arranged on one side of the refrigeration roller and is in contact with the refrigeration roller, the first chain wheel is connected with the third chain wheel through the second chain, a front roller is rotatably arranged on the rack, and the upper belt is sleeved between the front roller, the upper rubber roller, the refrigeration roller, the upper water tank and the stripping roller.

[0020] As a further improved scheme of the present utility model: two groups of material distributing racks are further arranged on the upper part of the rack, a left conveying belt is arranged on one group of the material distributing racks, a right conveying belt is arranged on the other group of the material distributing racks, and a discharging plate is arranged at the edge of the left conveying belt and the right conveying belt.

[0021] As a further improved scheme of the present utility model: the laminating machine further includes an infrared deviation adjusting device, the infrared deviation adjusting device includes an infrared switch, a deviation adjusting motor and a deviation adjusting screw rod,

[0022] The infrared switch is arranged on the side of the upper belt, the deviation adjusting motor is fixedly installed on the rack, and the deviation adjusting screw rod is installed at the output end of the deviation adjusting motor.

[0023] As a further improved scheme of the present utility model: the upper belt and the lower belt are Teflon belts.

[0024] As a further improvement of the present application, the upper part of the rack is further provided with an insulation board.

[0025] As a further improvement of the present application, the upper part of the rack is further provided with a cylinder, and the output end of the cylinder is connected with the rubber roller.

[0026] Compared with the prior art, the present application has the following advantages:

[0027] Compared with the prior art, the present application has the following advantages: BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 Structure diagram of a novel laminating machine Figure 1 ;

[0029] Figure 2 Structure diagram of a novel laminating machine Figure 2 ;

[0030] Figure 3 Structure diagram of a novel laminating machine Figure 3 . DETAILED DESCRIPTION

[0031] The technical scheme of the present application will be further described in detail in combination with specific embodiments.

[0032] The embodiments of the present application will be described in detail below, and the examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.

[0033] Please refer to Figures 1-3The embodiment provides a novel laminating machine, which comprises an upper belt 1, a lower belt 11, a heating assembly, a cooling assembly, a stripping assembly, a driving assembly and a rack 32, the upper belt 1 and the lower belt 11 are installed on the upper portion of the rack 32 and oppositely distributed, the driving assembly is arranged on the upper portion of the rack 32 and used for driving the upper belt 1 and the lower belt 11 to move, the upper belt 1 and the lower belt 11 are used for clamping and conveying the vamp to which a hot melt adhesive sheet is laminated when the upper belt 1 and the lower belt 11 move, the heating assembly is arranged on the side wall of the upper belt 1 and the lower belt 11 and used for heating the hot melt adhesive sheet, so that the hot melt adhesive sheet is laminated with the vamp, the cooling assembly is installed on the upper portion of the rack 32 and used for cooling the vamp adhered to the upper belt 1, so that the adhesion is stripped, and the stripping assembly is arranged on one side of the upper belt 1 and used for stripping the cooled vamp from one side of the upper belt 1.

[0034] When the hot melt adhesive sheet needs to be laminated on the vamp, the hot melt adhesive sheet is placed on the vamp at the corresponding position, then the vamp is placed between the upper belt 1 and the lower belt 11, and then the driving assembly is used for driving the upper belt 1 and the lower belt 11 to move, the upper belt 1 and the lower belt 11 clamp and convey the vamp when the upper belt 1 and the lower belt 11 move, at the moment, pressure is applied to the vamp and the hot melt adhesive sheet between the upper belt 1 and the lower belt 11, and the heating assembly is used for heating the hot melt adhesive sheet, so that the hot melt adhesive sheet is adhered to the vamp, after heating, the vamp is adhered to one side of the upper belt 1 due to the adhesion of the hot melt adhesive sheet, then the cooling assembly is used for cooling and stripping the adhesion of the vamp, and finally the stripping assembly is used for stripping the cooled and stripped vamp from one side of the upper belt 1.

[0035] Please refer to Figure 2 In one embodiment, the heating assembly comprises a plurality of heating plates 15, and the plurality of heating plates 15 are arranged on one side of the upper belt 1 and the lower belt 11 respectively.

[0036] Please refer to Figure 2 In one embodiment, the cooling assembly comprises an upper refrigeration fan 24, a lower refrigeration fan 23, a refrigeration roller 25 and an upper water tank 6 which are installed on the rack 32, the upper refrigeration fan 24 and the lower refrigeration fan 23 are distributed in an upper-lower interval, and the refrigeration roller 25 and the upper water tank 6 are laminated to the inner side of the upper belt 1.

[0037] When the vamp after heating is adhered to the side wall of the upper belt 1 due to the adhesion of the hot melt adhesive sheet, the upper refrigeration fan 24 and the lower refrigeration fan 23 blow and cool, then the vamp is cooled and the adhesion is stripped by the refrigeration roller 25, and finally the adhesion between the vamp and the upper belt 1 is stripped by the cooling effect of the upper water tank 6.

[0038] Please refer to Figure 1In one embodiment, the stripping assembly comprises a stripping roller 2 arranged inside the upper belt 1, the stripping roller 2 has a diameter of 20 mm, and the other roller shaft has a diameter of 57 mm, so that a large included angle is formed between the stripping roller and the other roller shaft.

[0039] After the vamp passes through the cooling of the upper water tank 6, the vamp is stripped through the large included angle formed between the stripping roller 2 and the other roller shaft.

[0040] Please refer to Figure 2 In one embodiment, the driving assembly comprises a lower front roller 13, a main motor 19, a first sprocket 18, a second sprocket 16, a third sprocket 26, a first chain 20, a lower rubber roller 21, a second chain 22, an upper rubber roller 27, and a gear 28. The upper front roller 13 is arranged opposite to the lower rubber roller 21, the lower belt 11 is sleeved between the upper front roller 13 and the lower rubber roller 21, the upper rubber roller 27 is located above the lower rubber roller 21, the gear 28 is installed at the end of the upper rubber roller 27, the main motor 19 is fixedly installed on the rack 32, the first sprocket 18 is installed at the output end of the main motor 19, the second sprocket 16 is installed at the end of the lower rubber roller 21, the first sprocket 18 is connected with the gear 28 through the first chain 20, the gear 28 is engaged with the second sprocket 16, the third sprocket 26 is arranged on one side of the refrigeration roller 25 and in contact with the refrigeration roller 25, the first sprocket 16 is connected with the third sprocket 26 through the second chain 20, and the rack 32 is rotatably provided with a front roller 10. The upper belt 1 is sleeved between the front roller 10, the upper rubber roller 27, the refrigeration roller 25, the upper water tank 6, and the stripping roller 2.

[0041] The main motor 19 drives the first sprocket 18 to rotate, the first chain 20 drives the gear 28 to rotate, and then the upper rubber roller 27 is driven to rotate. At the same time, the gear 28 drives the second sprocket 16 to rotate, and then the third sprocket 26 is driven to rotate through the second chain 22. When the third sprocket 26 rotates, the refrigeration roller 25 is driven to rotate through the frictional action with the refrigeration roller 25, and then the upper belt 1 is driven to rotate and run. When the second sprocket 16 rotates, the lower rubber roller 21 is also driven to rotate. Since the lower belt is sleeved between the upper front roller 13 and the lower rubber roller 21, the lower rubber roller 21 is also driven to rotate and run when the lower rubber roller 21 rotates.

[0042] Please refer to Figure 1 , Figure 2 and Figure 3 In one embodiment, the rack 32 further comprises two groups of material distribution racks 9, one group of the material distribution racks 9 is provided with a left conveying belt 3, and the other group of the material distribution racks 9 is provided with a right conveying belt 4. The left conveying belt 3 and the right conveying belt 4 are provided with discharge plates 31 at the edges.

[0043] When the upper is peeled from the upper belt 1, the upper can fall onto the upper part of the left and right conveying belts 3 and 4, and the upper can be conveyed to the discharge plate 31 by the left and right conveying belts, and then be discharged by the discharge plate 31.

[0044] In an embodiment, the refrigeration roller 25 and the upper water tank 6 are connected with a water inlet of a water cooler to refrigerate the upper, so that the upper is rapidly cooled.

[0045] In an embodiment, the upper refrigeration fan 24 blows air to the inner side of the upper belt 1, and the lower refrigeration fan 23 blows air to the outer side of the upper belt 1, so as to reduce the temperature of the upper and the temperature of the refrigeration roller 25, thereby reducing the energy consumption of the water cooler.

[0046] In an embodiment, the upper water tank 6 has an arc structure, so as to form two cold water refrigeration, achieve the purpose of large area cooling and 100% coverage, so that the hot melt adhesive film loses the adhesion of the Teflon belt, and the material is separated from the Teflon belt.

[0047] Please refer to Figure 1 and Figure 2 In an embodiment, the laminating machine further comprises an infrared deviation adjusting device, which comprises an infrared switch 5, a deviation adjusting motor 7 and a deviation adjusting screw rod 8. The infrared switch 5 is arranged on the side of the upper belt 1. The deviation adjusting motor 7 is fixedly installed on the rack 32. The deviation adjusting screw rod 8 is installed on the output end of the deviation adjusting motor 7.

[0048] When the infrared switch 5 automatically detects that the upper belt 1 deviates, the deviation adjusting motor 7 is started, and then drives the deviation adjusting screw rod 8 to move, so as to adjust the left and right of the upper belt 1, prevent the upper belt 1 from deviating and abrading the rack 32, and prolong the service life of the upper belt 1. The lower belt 11 is flat and does not need to be adjusted.

[0049] In an embodiment, the heating temperature of the heating plate 15 can reach 200°C, so that the hot melt adhesive film and the upper are smoothly laminated.

[0050] In an embodiment, the upper belt 1 and the lower belt 11 are Teflon belts, so as to be able to withstand high temperature.

[0051] In an embodiment, the upper part of the rack 32 is further provided with a heat preservation plate 14 for heat preservation of the upper, and the cooling area and the heating area are isolated to save electricity.

[0052] In one embodiment, the upper part of the rack 32 is further provided with a cylinder 17, the output end of the cylinder 17 is connected with the lower rubber roller 21, the lower rubber roller 21 is driven to move by the cylinder 17, so as to adjust the tension of the lower belt 11, and then adjust the fitting degree of the vamp and the hot melt adhesive sheet.

[0053] In the embodiment of the utility model, the temperature is not lowered by a single air conditioner type cooling, but by multiple cooling means and multiple angle designs to form a peeling force, which reduces the temperature and the usefulness of peeling the vamp, and achieves low power consumption, no residual glue, quality improvement of the fitting process. Moreover, the cooling area and the heating area are isolated by the insulation board to achieve the purpose of saving electricity while ensuring better heating fitting and better refrigeration to make it easy to peel the vamp and not leave glue. The infrared deviation adjusting device adjusts the deviation of the belt to improve the service life of the belt. At the same time, the staff is dispersed to the front end and both sides of the machine, and is not crowded in front of the machine, which can improve the safety and reduce the failure rate of the staff and improve the yield of the finished product.

[0054] The preferred embodiments of the utility model are described in detail above, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range of ordinary skilled persons in the art without departing from the purpose of the utility model.

Claims

1. A novel taping machine characterized in that, The machine comprises an upper belt, a lower belt, a heating assembly, a cooling assembly, a stripping assembly, a driving assembly and a frame, The upper belt and the lower belt are installed on the upper part of the frame and are oppositely distributed, The driving assembly is arranged on the upper part of the frame and is used to drive the upper belt and the lower belt to move, so as to clamp and convey the vamp with hot melt adhesive film, The heating assembly is arranged on the side wall of the upper belt and the lower belt and is used to heat the hot melt adhesive film, so that the hot melt adhesive film is attached to the vamp, The cooling assembly is installed on the upper part of the frame and is used to cool the vamp attached to the upper belt, so as to strip the adhesion, The stripping assembly is arranged on one side of the upper belt and is used to strip the cooled vamp from one side of the upper belt.

2. A novel laminator as claimed in claim 1, wherein, The heating assembly comprises a plurality of heating plates, and the heating plates are arranged on one side of the upper belt and the lower belt, respectively.

3. A novel laminator as claimed in claim 1, wherein, The cooling assembly comprises an upper refrigeration fan, a lower refrigeration fan, a refrigeration roller and an upper water tank installed on the frame, The upper refrigeration fan and the lower refrigeration fan are distributed in an upper and lower interval, and the refrigeration roller and the upper water tank are attached to the inner side of the upper belt.

4. A novel laminator as claimed in claim 3, wherein, The stripping assembly comprises a stripping roller arranged on the inner side of the upper belt.

5. A novel laminator as claimed in claim 4, wherein, The driving assembly comprises a lower front roller, a main motor, a first sprocket, a second sprocket, a third sprocket, a first chain, a lower rubber roller, a second chain, an upper rubber roller and a gear, The lower front roller and the lower rubber roller are oppositely distributed, the lower belt is sleeved between the lower front roller and the lower rubber roller, the upper rubber roller is located above the lower rubber roller, and the gear is installed at the end of the upper rubber roller, The main motor is fixedly installed on the frame, the first sprocket is installed at the output end of the main motor, the second sprocket is installed at the end of the lower rubber roller, the first sprocket is connected with the gear through the first chain, and the gear is engaged with the second sprocket, The third sprocket is arranged on one side of the refrigeration roller and is in contact with the refrigeration roller, the first sprocket and the third sprocket are connected through the second chain, a front roller is rotatably arranged on the frame, and the upper belt is sleeved between the front roller, the upper rubber roller, the refrigeration roller, the upper water tank and the stripping roller.

6. A novel taping machine according to claim 1, characterized in that, Two groups of material distribution racks are further arranged on the upper part of the frame, one group of the material distribution racks is provided with a left conveying belt, and the other group of the material distribution racks is provided with a right conveying belt, and the edges of the left conveying belt and the right conveying belt are provided with discharge plates.

7. A novel laminator as claimed in claim 1, wherein, The machine further comprises an infrared deviation adjusting device, the infrared deviation adjusting device comprises an infrared switch, a deviation adjusting motor and a deviation adjusting screw rod, The infrared switch is arranged on the side of the upper belt, the deviation adjusting motor is fixedly installed on the frame, and the deviation adjusting screw rod is installed at the output end of the deviation adjusting motor.

8. A novel laminator as claimed in claim 1, wherein, The upper belt and the lower belt are Teflon belts.

9. A novel laminator as claimed in claim 1, wherein, The upper part of the frame is further provided with a heat preservation plate.

10. A novel laminator as claimed in claim 5, wherein, A gas cylinder is further arranged on the upper part of the frame, and the output end of the gas cylinder is connected with the lower rubber roller.