Non-discarding disc buckle hot melting fixing device

The non-heritage button hot fusion fixing device addresses leakage and solidification issues by incorporating a hydraulic rod, fan blades, and a smoke filtration system, improving production efficiency and safety.

CN120307651APending Publication Date: 2025-07-15APPLIED TECH COLLEGE OF SOOCHOW UNIV
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510713728.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

The existing hot melt fixing device of the buckle is prone to overflow or leakage when the double-sided adhesive melts, causing the cloth strips or wire to adhere to the fixing device, affecting production efficiency; at the same time, the irritating flue gas generated when the double-sided adhesive melts is difficult to effectively remove, and the solidification time is long, resulting in lower production results.

Method used

The hot melt pressure plate driven by hydraulic rod is combined with fan blades and smoking mechanism. Through the extrusion rod and air-cooled solidification technology, combined with the discharge plate and the filtration purification system, the rapid solidification of double-sided adhesive and the effective removal of smoke are achieved.

Benefits of technology

The production efficiency of the buckle is improved, the adhesion of cloth strips and wires is avoided, the impact of flue gas on workers' health is reduced, and the flue gas treatment effect is ensured through the purification system.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120307651A_ABST
    Figure CN120307651A_ABST
Patent Text Reader

Abstract

The invention discloses a non-residual disc buckle hot melting fixing device which comprises a supporting seat, a hydraulic rod, fan blades and a collecting frame, transverse plates are evenly fixed to the lower portion of the inner side of the supporting seat, a transmission assembly is installed on the upper portion of the inner side of the supporting seat and comprises transmission roller bodies, and the transmission roller bodies are evenly and rotatably installed on the supporting seat; and a transmission belt is in transmission connection with the transmission roller body in the supporting seat, and a protection frame located outside the chain wheels and the chain is fixed to the side face of the supporting seat. According to the non-missing disc buckle hot melting fixing device, when a hot melting pressing disc is driven by a hydraulic rod to do extrusion reciprocating motion, a tooth block on the surface of a positioning rod can drive a first gear on a rotating worm to rotate in an engaged mode, so that the rotating worm can rotate a second gear above a rotating shaft; and the fan blades below the rotating shaft can conveniently and quickly solidify the double-faced adhesive tape liquid on the hot-melted cloth strips and iron wires, so that the production efficiency of the disc buckles is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field related to intangible cultural heritage button loops, and specifically to a hot melt fixing device for intangible cultural heritage button loops. Background Art

[0002] Intangible cultural heritage button loops are a type of button used in traditional Chinese clothing to fasten the front of the garment or for decoration; the coiled flower button loop is a type of ancient Chinese knot and is a microcosm of the evolution of the Chinese people's understanding of clothing; it truly took shape in the early Qing Dynasty. On traditional Chinese cheongsams and mandarin jackets, button loops were used to fasten the front of the garment; over the long years, button loops have been widely spread among the people as an important handicraft of needlework.

[0003] During the production process of button loops, industrial double-sided tape and thin iron wire need to be prepared. The two ends of the iron wire are fixed with bead pins and placed in the middle of the cloth strip. Soft cotton is placed on the cloth strip, and the double-sided tape is melted by heating, so as to fix the cloth strip and the iron wire together.

[0004] (1) When the existing hot melt fixing device for button loops melts the double-sided tape to fix the cloth strip and the iron wire, the double-sided tape liquid will overflow or leak out, resulting in the cloth strip or the iron wire sticking to the fixing device and being difficult to remove, affecting the production efficiency.

[0005] (2) When the double-sided tape is melted by hot melt bonding, the melting of the double-sided tape will produce irritating fumes. Since the button loops are small in size, if a machine is used to suck the fumes, not only the cost is high, but also the fumes cannot be accurately removed according to the position of the button loops, and the fume removal effect is poor.

[0006] (3) After the double-sided tape is melted, it takes time for the cloth strip and the iron wire to solidify. The traditional waiting time for solidification is relatively long, resulting in a low production effect of button loops.

[0007] Therefore, we propose a hot melt fixing device for intangible cultural heritage button loops to solve the problems raised above. Summary of the Invention

[0008] The purpose of the present invention is to provide a hot melt fixing device for intangible cultural heritage button loops to solve the problems raised in the above background art.

[0009] To achieve the above object, the present invention provides the following technical solutions: A non-heritage button hot-melt fixing device, including a support base, a hydraulic rod, fan blades and a collection box. Below the inner side of the support base, horizontal plates are evenly fixed. Above the inner side of the support base, a transmission component is installed. The transmission component includes a transmission roller body. The transmission roller bodies are evenly rotatably installed on the support base, and a transmission belt is drivingly connected to the transmission roller bodies inside the support base. At the end of the transmission roller body located outside the support base, a sprocket is fixed, and a chain is connected to the sprocket. On the side of the support base, a protective frame is fixed outside the sprocket and the chain. At one end of the transmission roller body at one end of the support base, a reduction motor fixed on the surface of the support base is fixed. Above the middle of the support base, a concave top plate is fixed, and above one side of the concave top plate, a hydraulic rod is fixedly installed. The output end of the hydraulic rod is fixed with a hot-melt pressing plate. At both ends above the hot-melt pressing plate, positioning rods penetrating above the concave top plate are fixed, and tooth blocks are evenly fixed on the inner surface of the positioning rods. Below the inner part of the concave top plate, extrusion rods are evenly fixed. Above the concave top plate, a protective cover is fixed, and at both ends inside the protective cover, rotating worm gears are rotatably connected. On the right side surface of the concave top plate, rotating shafts are evenly rotatably connected, and fan blades are evenly fixed on the lower surface of the rotating shafts. A discharge plate is installed at the end of the support base, and a collection box is installed on the horizontal plate above the support base near the discharge plate. At both ends of the concave top plate, support blocks are fixed, and a smoking mechanism is installed on the support blocks.

[0010] Preferably, the hot-melt pressing plate includes a pressing frame, heating rods, a hot-pressing plate and through holes. Inside the pressing frame, heating rods are evenly installed, and the hot-pressing plate is fixed at the bottom of the pressing frame. Corresponding through holes for engaging and connecting with the extrusion rods are formed on the upper surface of the pressing frame and the surface of the hot-pressing plate.

[0011] By adopting the above technical solution, the heating rods inside the pressing frame can be used to heat, so that the hot-pressing plate can hot-press and melt the double-sided tape on the lower iron wire. At the same time, with the use of the extrusion rods, it is convenient for the extrusion rods to squeeze the iron wire adhered to the hot-pressing plate, avoiding its adhesion to the hot-pressing plate.

[0012] Preferably, a first gear is fixed at the end of the rotating worm gear, and the first gear is meshed and drivingly connected with the tooth blocks on the surface of the positioning rod.

[0013] By adopting the above technical solution, when the positioning rod moves up and down, it can drive the first gear on the rotating worm gear to engage and rotate through the tooth blocks on its surface, so that the rotating worm gear rotates inside the protective cover.

[0014] Preferably, there are four groups of rotating shafts, and a second gear is fixed at the upper end of the rotating shaft. The second gear and the rotating worm gear form a worm and gear meshing structure.

[0015] By adopting the above technical solution, the worm can be rotated to drive the second gear to mesh and rotate, so that the fan blades below the rotating shaft can rotate to wind and condense the cloth strips and iron wires transmitted below.

[0016] Preferably, the discharge plate is composed of an inclined plate and a scraper. The inclined plate is fixed inside the support seat, and a scraper is fixed above the inclined plate. The lower end surface of the scraper is attached to the right end surface of the conveyor belt, and the scraper is arranged obliquely.

[0017] By adopting the above technical solution, the cloth strips adhered to the conveyor belt can be scraped and separated by the scraper on the discharge plate, avoiding the problem that the cloth strips adhere to the conveyor belt and affect production.

[0018] Preferably, the smoking mechanism includes a plug cylinder. The plug cylinder is fixed above the support block, and a piston block is slidably arranged inside the plug cylinder. A plug rod is rotatably connected to the surface of the piston block, and a slider is fixed at the end of the plug rod. The slider is engaged and slidably connected to a block fixed on the side of the concave top plate, and the block is arranged in a "convex" shape. A first connecting shaft is fixed on the outer surface of the slider.

[0019] By adopting the above technical solution, it is convenient for the slider to slide on the block, so that the slider drives the piston block at the end of the plug rod to move inside the plug cylinder.

[0020] Preferably, the end of the plug cylinder is connected to the pressing frame through a conduit passing through the concave top plate, and a first air plug is clamped at the end of the conduit inside the plug cylinder. Both ends of the first air plug are connected to the inside of the plug cylinder through a first spring.

[0021] By adopting the above technical solution, through the use of the first air plug, when the piston block moves to inhale, the first air plug can be separated from the conduit, facilitating the inhalation of smoke into the plug cylinder. At the same time, when the piston block exhales, the first air plug blocks the conduit to prevent the smoke from flowing back.

[0022] Preferably, the lower end of the plug cylinder is connected to a treatment box fixed above the support block through a connecting pipe, and a second air plug is clamped at the connecting pipe inside the treatment box. Both ends of the second air plug are connected to the inside of the treatment box through a second spring.

[0023] By adopting the above technical solution, it is convenient for the second air plug to block the connecting pipe under the action of suction when the piston block inhales, and when the piston block exhales, the second air plug will be separated from the connecting pipe to discharge the smoke into the treatment box for smoke treatment.

[0024] Preferably, a first connecting rod is rotatably connected to the surface of the slider through a first connecting shaft, and the end of the first connecting rod is rotatably connected to a second connecting rod through a second connecting shaft. The length of the first connecting rod is greater than that of the second connecting rod. The end of the second connecting rod is rotatably connected to the turntable through a fourth connecting shaft, and a third connecting shaft rotatably connected to the surface of the concave top plate is fixed in the middle of the turntable. The third connecting shaft is connected to the driving roller at the end of the support seat through a transmission belt.

[0025] With the above technical solution, when the turntable rotates, it can drive the first connecting rod to make a circular motion through the second connecting rod, so that the first connecting rod can push the slider to slide on the clamping block, thereby facilitating the reciprocating motion of the plug rod.

[0026] Preferably, a support frame is fixed in the middle of the inner side of the treatment box, and the four corners of the top of the treatment box are installed with a top cover through screws. Exhaust holes are evenly formed on the surface of the top cover. A filter screen and an activated carbon mesh are arranged between the top cover and the support frame, and the filter screen is symmetrically arranged about the central axis of the activated carbon mesh.

[0027] With the above technical solution, the flue gas entering can be purified through the filter screen and the activated carbon mesh above the support frame inside the treatment box, so that the purified flue gas will be discharged through the exhaust holes on the surface of the top cover.

[0028] Compared with the prior art, the beneficial effects of the present invention are: for this intangible cultural heritage button hot-melt fixing device,

[0029] (1) When the hydraulic rod drives the hot-melt pressing plate to make an extrusion reciprocating motion, the tooth blocks on the surface of the positioning rod can drive the first gear on the rotating worm to mesh and rotate, so that the second gear above the rotating shaft of the rotating worm can rotate, facilitating the rapid solidification of the double-sided adhesive liquid on the hot-melted cloth strip and iron wire by the fan blade below the rotating shaft, and improving the production efficiency of the button;

[0030] (2) By using the extrusion rod passing through the through holes on the pressing frame and the hot-pressing plate surface of the hot-melt pressing plate, it is convenient to squeeze off the button iron wire adhered to the hot-pressing plate, avoiding the iron wire from adhering to the hot-pressing plate. At the same time, with the use of the discharge plate, the inclined scraper can scrape off the cloth strip adhered to the surface of the conveyor belt, avoiding the cloth strip from adhering to the conveyor belt and improving the use effect of the device.

[0031] (3) Through the transmission of the transmission component, it is convenient for the transmission belt to drive the turntable to rotate, so that the turntable drives the second connecting rod to make a circular motion, so that the second connecting rod drives the slider at the end of the first connecting rod to slide on the clamping block, facilitating the slider to drive the plug rod to reciprocate inside the plug barrel, so as to inhale and exhaust inside the plug barrel, and further facilitating the air duct to cooperate with the through holes on the surface of the hot-pressing plate to absorb the flue gas generated by the hot-melting of the double-sided adhesive below;

[0032] (4) By using the internal filter screen and activated carbon mesh in the treatment tank, the flue gas discharged into the treatment tank can be purified, avoiding the impact of flue gas on the health of workers. At the same time, the top cover of the treatment tank is connected to the treatment tank by screws, which is convenient for the replacement and cleaning of the internal filter screen and activated carbon mesh in the treatment tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 is a front view structural schematic diagram of the present invention;

[0034] Figure 2 is a rear view structural schematic diagram of the present invention;

[0035] Figure 3 is a front cross-sectional structural schematic diagram of the transmission component of the present invention;

[0036] Figure 4 is a side cross-sectional structural schematic diagram of the positioning rod of the present invention;

[0037] Figure 5 is a side cross-sectional structural schematic diagram of the present invention;

[0038] Figure 6 is a top cross-sectional structural schematic diagram of the protective cover of the present invention;

[0039] Figure 7 is a structural schematic diagram of the hot melt pressing plate of the present invention;

[0040] Figure 8 is a structural schematic diagram of the exhaust of the piston block of the present invention;

[0041] Figure 9 is a structural schematic diagram of the connection between the turntable and the second connecting rod of the present invention;

[0042] Figure 10 is a structural schematic diagram of the air intake of the piston block of the present invention.

[0043] In the figure: 1, support base; 2, horizontal plate; 3, transmission assembly; 301, transmission roller body; 302, transmission belt; 303, sprocket; 304, chain; 305, protective frame; 306, reduction motor; 4, concave top plate; 5, hydraulic rod; 6, hot melt pressing plate; 601, pressing frame; 602, heating rod; 603, hot pressing plate; 604, through hole; 7, positioning rod; 8, tooth block; 9, extrusion rod; 10, protective cover; 11, rotating worm; 12, first gear; 13, rotating shaft; 14, second gear; 15, fan blade; 16, discharge plate; 1601, inclined plate; 1602, scraping plate; 17, collection box; 18, support block; 19, plug barrel; 20, piston block; 21, plug rod; 22, slider; 23, first connecting shaft; 24, first connecting rod; 25, second connecting shaft; 26, second connecting rod; 27, third connecting shaft; 28, turntable; 29, fourth connecting shaft; 30, transmission belt; 31, clamping block; 32, first air plug; 33, first spring; 34, treatment box; 35, connecting pipe; 36, second air plug; 37, second spring; 38, support frame; 39, top cover; 40, filter screen; 41, activated carbon net; 42, exhaust hole; 43, air guide pipe. Detailed implementation manners

[0044] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0045] Please refer to Figures 1-10, the present invention provides a technical solution: a non-heritage button hot-melt fixing device, including a support base 1, a hydraulic rod 5, fan blades 15 and a collection box 17. Horizontally arranged plates 2 are uniformly fixed below the inner side of the support base 1. A transmission assembly 3 is installed above the inner side of the support base 1. The transmission assembly 3 includes a transmission roller body 301. The transmission roller bodies 301 are uniformly rotatably installed on the support base 1, and a transmission belt 302 is drivingly connected to the transmission roller bodies 301 inside the support base 1. A sprocket 303 is fixed to the end of the transmission roller body 301 located outside the support base 1, and a chain 304 is connected to the sprocket 303. A protective frame 305 is fixed to the side of the support base 1 and located outside the sprocket 303 and the chain 304. A reduction motor 306 fixed to the surface of the support base 1 is fixed to the end of the transmission roller body 301 on one side of the end of the support base 1. An inverted U-shaped top plate 4 is fixed above the middle of the support base 1, and a hydraulic rod 5 is fixedly installed above one side of the inverted U-shaped top plate 4. A hot-melt pressing plate 6 is fixed to the output end of the hydraulic rod 5. The hot-melt pressing plate 6 includes a pressing frame 601, heating rods 602, a hot-pressing plate 603 and through holes 604. The heating rods 602 are uniformly installed inside the pressing frame 601, and the hot-pressing plate 603 is fixed to the bottom of the pressing frame 601. Through holes 604 for snap-fitting connection with the extrusion rod 9 are correspondingly formed on the upper surface of the pressing frame 601 and the surface of the hot-pressing plate 603. It can be heated by the heating rods 602 inside the pressing frame 601, so that the hot-pressing plate 603 hot-presses and melts the double-sided tape on the lower iron wire. At the same time, in cooperation with the use of the extrusion rod 9, it is convenient for the extrusion rod 9 to squeeze down the iron wire adhered to the hot-pressing plate 603 to prevent it from adhering to the hot-pressing plate 603. Positioning rods 7 penetrating above the inverted U-shaped top plate 4 are fixed to both ends above the hot-melt pressing plate 6, and tooth blocks 8 are uniformly fixed to the inner surface of the positioning rods 7. Extrusion rods 9 are uniformly fixed below the inside of the inverted U-shaped top plate 4. A protective cover 10 is fixed above the inverted U-shaped top plate 4, and rotating worm gears 11 are rotatably connected to both ends inside the protective cover 10. A first gear 12 is fixed to the end of the rotating worm gear 11, and the first gear 12 is in meshing transmission connection with the tooth blocks 8 on the surface of the positioning rod 7. When the positioning rod 7 moves up and down, it can drive the first gear 12 on the rotating worm gear 11 to mesh and rotate through the tooth blocks 8 on its surface, so that the rotating worm gear 11 rotates inside the protective cover 10. Rotating shafts 13 are uniformly rotatably connected to the right side surface of the inverted U-shaped top plate 4, and fan blades 15 are uniformly fixed to the lower surface of the rotating shafts 13. There are four groups of rotating shafts 13, and a second gear 14 is fixed to the upper end of the rotating shaft 13. The second gear 14 and the rotating worm gear 11 form a worm and worm gear meshing structure. It can drive the second gear 14 to mesh and rotate through the rotating worm gear 11, so that the fan blades 15 below the rotating shafts 13 rotate to air-cool and solidify the cloth strips and iron wires transmitted below;

[0046] Please refer to Figures 1-10, a discharge plate 16 is installed at the end of the support base 1, and a collection frame 17 is installed on the cross plate 2 above the support base 1 on the side close to the discharge plate 16. The discharge plate 16 is composed of an inclined plate 1601 and a scraping plate 1602. The inclined plate 1601 is fixed to the inner side of the support base 1, and the scraping plate 1602 is fixed above the inclined plate 1601. The lower end surface of the scraping plate 1602 is attached to the right end surface of the conveyor belt 302, and the scraping plate 1602 is arranged obliquely. It can scrape and separate the cloth strips adhered to the conveyor belt 302 through the scraping plate 1602 on the discharge plate 16, avoiding the problem that the cloth strips adhere to the conveyor belt 302 and affect the production;

[0047] Please refer to Figures 1-10, support blocks 18 are fixed at both ends of the concave top plate 4, and a smoking mechanism is installed on the support blocks 18. The smoking mechanism includes a plug cylinder 19, the plug cylinder 19 is fixed above the support block 18, and a piston block 20 is slidably arranged inside the plug cylinder 19. A plug rod 21 is rotatably connected to the surface of the piston block 20, and a slider 22 is fixed at the end of the plug rod 21. The slider 22 is engaged and slidably connected to a clamping block 31 fixed on the side surface of the concave top plate 4, and the clamping block 31 is arranged in a "convex" shape. A first connecting shaft 23 is fixed on the outer surface of the slider 22, which can facilitate the sliding of the slider 22 on the clamping block 31, so that the slider 22 drives the piston block 20 at the end of the plug rod 21 to move inside the plug cylinder 19. The end of the plug cylinder 19 penetrates through the concave top plate 4 through an air guide pipe 43 and is connected to a pressing frame 601. A first air blocking plug 32 is clamped at the end of the air guide pipe 43 inside the plug cylinder 19. Both ends of the first air blocking plug 32 are connected to the inside of the plug cylinder 19 through a first spring 33. By using the first air blocking plug 32, when the piston block 20 moves to inhale, the first air blocking plug 32 can be separated from the air guide pipe 43, facilitating the inhalation of smoke into the plug cylinder 19. At the same time, when the piston block 20 exhausts, the first air blocking plug 32 blocks the air guide pipe 43 to prevent the backflow of smoke. The lower end of the plug cylinder 19 is connected to a treatment box 34 fixed above the support block 18 through a communication pipe 35. A second air blocking plug 36 is clamped at the communication pipe 35 inside the treatment box 34. Both ends of the second air blocking plug 36 are connected to the inside of the treatment box 34 through a second spring 37. It is convenient that when the piston block 20 inhales, the second air blocking plug 36 blocks the communication pipe 35 under the action of suction force, and when the piston block 20 exhausts, the second air blocking plug 36 will separate from the communication pipe 35 to discharge the smoke into the treatment box 34 for the treatment of smoke. A first connecting rod 24 is rotatably connected to the surface of the slider 22 through the first connecting shaft 23, and a second connecting rod 26 is rotatably connected to the end of the first connecting rod 24 through a second connecting shaft 25. The length of the first connecting rod 24 is greater than the length of the second connecting rod 26. The end of the second connecting rod 26 is rotatably connected to a turntable 28 through a fourth connecting shaft 29, and a third connecting shaft 27 rotatably connected to the surface of the concave top plate 4 is fixed in the middle of the turntable 28. The third connecting shaft 27 is connected to a transmission roller 301 at the end of the support seat 1 through a transmission belt 30. When the turntable 28 rotates, it will drive the first connecting rod 24 to do a circular motion through the second connecting rod 26, so as to facilitate the first connecting rod 24 to push the slider 22 to slide on the clamping block 31, and further facilitate the reciprocating motion of the plug rod 21. A support frame 38 is fixed in the middle of the inner side of the treatment box 34, and a top cover 39 is installed at the four corners of the top of the treatment box 34 through screws. Exhaust holes 42 are evenly opened on the surface of the top cover 39. A filter screen 40 and an activated carbon mesh 41 are arranged between the top cover 39 and the support frame 38, and the filter screen 40 is symmetrically arranged about the central axis of the activated carbon mesh 41.The flue gas entering can be purified through the filter screen 40 and the activated carbon mesh 41 above the internal support frame 38 of the treatment box 34, so that the purified flue gas will be discharged through the exhaust holes 42 on the surface of the top cover 39.

[0048] Working principle: First, when in use, connect the device to an external power supply, and turn on the reduction motor 306 on the transmission assembly 3, so that the reduction motor 306 drives the transmission roller body 301 at the end of the support seat 1 to rotate. With the use of the sprocket 303 at the end of the transmission roller body 301 and the chain 304 on its surface, it is convenient for the multiple groups of transmission roller bodies 301 on the surface of the support seat 1 to be synchronously driven, so as to drive the transmission belt 302 on its surface to rotate. Then, place the cloth strips and iron wires that need to be heat-fixed on the transmission belt 302, and let them be transmitted to the lower part of the hot melt pressing plate 6. Then, turn on the hydraulic rod 5, so that the heat generated by the heating rod 602 in the pressing frame 601 inside the hot melt pressing plate 6 is transferred to the hot pressing plate 603, so that the hot pressing plate 603 squeezes the cloth strips and iron wires below, and the double-sided adhesive inside the iron wire is heated and melted through the hot pressing plate 603. After melting, the hot pressing plate 603 will be reset under the drive of the hydraulic rod 5. When resetting, the extrusion rod 9 corresponding to the through holes 604 on the surfaces of the pressing frame 601 and the hot pressing plate 603 will push down the iron wire adhering to the surface of the hot pressing plate 603;

[0049] When the hydraulic rod 5 drives the hot melt pressing plate 6 to move back and forth, the positioning rods 7 at both ends of the pressing frame 601 will also slide up and down accordingly. When the positioning rods 7 slide, the tooth blocks 8 on their surfaces will drive the first gear 12 at the end of the rotating worm 11 rotatably connected inside the shield 10 to mesh and rotate, and then the rotating worm 11 drives the second gear 14 rotatably connected above the rotating shaft 13 on the concave top plate 4 to rotate, so that the fan blades 15 below the rotating shaft 13 can rotate to generate wind to air-dry the melted double-sided adhesive liquid of the cloth strips and iron wires below, accelerating the solidification of the double-sided adhesive liquid;

[0050] A discharge plate 16 is arranged at the end of the transmission belt 302 and fits on its surface. The inclined scraper 1602 can scrape the surface of the transmission belt 302 to prevent cloth strips from adhering to the transmission belt 302. At the same time, the fixed cloth strips and iron wires can slide down the inclined surface of the inclined plate 1601 into the collection box 17 for the collection of the fixed cloth strips and iron wires;

[0051] When the transmission roller body 301 at the upper end of the transmission assembly 3 rotates, it will drive the rotation of the third connecting shaft 27 on the surface of the concave top plate 4 through the transmission belt 30, so that the third connecting shaft 27 drives the rotation of the turntable 28. When the turntable 28 rotates, it will drive the second connecting rod 26 to perform a circular motion through the fourth connecting shaft 29 on its surface, and then cooperate with the second connecting rod 26 to drive the first connecting rod 24 to perform a reciprocating motion. Therefore, the first connecting rod 24 drives the slider 22 to engage and slide on the fixture block 31 on the surface of the concave top plate 4. When the slider 22 slides, it will drive the plug rod 21 to slide inside the plug cylinder 19. When the plug rod 21 drives the piston block 20 to move to the right for air intake, under the action of suction, the first air blocking plug 32 will disengage from the air guide pipe 43, and the second air blocking plug 36 will block the communication pipe 35, so that the air guide pipe 43 will absorb the smoke generated by the melting of the double-sided adhesive during the hot pressing process through the through hole 604 on the lower surface of the hot pressing platen 603 below the pressing frame 601. Since the through holes 604 are evenly distributed on the hot pressing platen 603, the smoke generated at the wire in contact with the hot pressing platen 603 will be accurately absorbed through the through holes 604, so that the smoke enters the plug cylinder 19. When the plug rod 21 drives the piston block 20 to move to the left for exhaust, the first air blocking plug 32 will block the air guide pipe 43, and the second air blocking plug 36 will disengage from the communication pipe 35. As a result, the smoke inside the plug cylinder 19 will be discharged into the treatment box 34 through the communication pipe 35, which is convenient for filtering and adsorbing the incoming smoke through the filter screen 40 and the activated carbon mesh 41 above the treatment box 34, and enabling the treated smoke to be discharged through the exhaust hole 42 on the surface of the top cover 39. This is the working principle of the intangible cultural heritage button hot melting and fixing device.

[0052] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A fixed device for intangible cultural heritage button by hot melting, comprising a support base (1), a hydraulic rod (5), a fan blade (15) and a collection frame (17), characterized in that: Below the inner side of the support base (1), cross plates (2) are evenly fixed. Above the inner side of the support base (1), a transmission assembly (3) is installed. The transmission assembly (3) includes a transmission roller body (301). The transmission roller bodies (301) are evenly rotatably installed on the support base (1), and a transmission belt (302) is drivingly connected to the transmission roller bodies (301) inside the support base (1). At the end of the transmission roller body (301) located outside the support base (1), a sprocket (303) is fixed, and a chain (304) is connected to the sprocket (303). A protective frame (305) is fixed on the side surface of the support base (1) and located outside the sprocket (303) and the chain (304). At one end of the support base (1), a speed reduction motor (306) fixed on the surface of the support base (1) is fixed to the end of the transmission roller body (301). Above the middle of the support base (1), a concave top plate (4) is fixed. Above one side of the concave top plate (4), a hydraulic rod (5) is fixedly installed. The output end of the hydraulic rod (5) is fixed with a hot melt pressing plate (6). At both ends above the hot melt pressing plate (6), positioning rods (7) penetrating above the concave top plate (4) are fixed, and tooth blocks (8) are evenly fixed on the inner surface of the positioning rods (7). Below the inner part of the concave top plate (4), extrusion rods (9) are evenly fixed. Above the concave top plate (4), a protective cover (10) is fixed. At both ends inside the protective cover (10), a rotating worm (11) is rotatably connected. On the right side surface of the concave top plate (4), rotating shafts (13) are evenly rotatably connected, and fan blades (15) are evenly fixed on the lower surface of the rotating shafts (13). A discharge plate (16) is installed at the end of the support base (1). Above the support base (1), a collection box (17) is installed on one side of the cross plate (2) close to the discharge plate (16). At both ends of the concave top plate (4), support blocks (18) are fixed, and a smoking mechanism is installed on the support blocks (18).

2. The non-genetic button hot melt fixing device according to claim 1, wherein: The hot melt pressing plate (6) includes a pressing frame (601), heating rods (602), a hot pressing plate (603), and through holes (604). Inside the pressing frame (601), heating rods (602) are evenly installed, and a hot pressing plate (603) is fixed to the bottom of the pressing frame (601). Through holes (604) for snap-fitting connection with the extrusion rods (9) are correspondingly formed on the upper surface of the pressing frame (601) and the surface of the hot pressing plate (603).

3. The non-genetic button melting and fixing device according to claim 1, characterized in that: At the end of the rotating worm (11), a first gear (12) is fixed, and the first gear (12) is in meshing transmission connection with the tooth blocks (8) on the surface of the positioning rod (7).

4. The non-genetic button heat fusion fixing device according to claim 1, wherein: There are four groups of the rotating shafts (13), and a second gear (14) is fixed to the upper end of the rotating shaft (13). The second gear (14) and the rotating worm (11) form a worm and worm gear meshing structure.

5. The non-genetic button melting and fixing device according to claim 1, characterized in that: The discharging plate (16) is composed of an inclined plate (1601) and a scraping plate (1602). The inclined plate (1601) is fixed to the inner side of the support base (1), and the scraping plate (1602) is fixed above the inclined plate (1601). The lower end surface of the scraping plate (1602) is attached to the right end surface of the conveyor belt (302), and the scraping plate (1602) is inclined.

6. An intangible cultural heritage button heat fusion fixing device according to any one of claims 1-5, characterized in that: The smoking mechanism includes a plug cylinder (19). The plug cylinder (19) is fixed above the support block (18), and a piston block (20) is slidably arranged inside the plug cylinder (19). A plug rod (21) is rotatably connected to the surface of the piston block (20), and a slider (22) is fixed to the end of the plug rod (21). The slider (22) is engaged and slidably connected to a block (31) fixed to the side surface of the concave top plate (4), and the block (31) is in a "convex" shape. A first connecting shaft (23) is fixed to the outer surface of the slider (22).

7. The non-genetic button knot heat fusion fixing device according to claim 6, characterized in that: The end of the plug cylinder (19) is connected to the pressing frame (601) through a gas guide pipe (43) penetrating through the concave top plate (4), and a first air plug (32) is engaged and arranged at the end of the gas guide pipe (43) inside the plug cylinder (19). Both ends of the first air plug (32) are connected to the inside of the plug cylinder (19) through a first spring (33).

8. The non-genetic button heat fusion fixing device according to claim 6, characterized in that: The lower end of the plug cylinder (19) is connected to a treatment box (34) fixed above the support block (18) through a communication pipe (35), and a second air plug (36) is engaged and arranged at the communication pipe (35) inside the treatment box (34). Both ends of the second air plug (36) are connected to the inside of the treatment box (34) through a second spring (37).

9. The non-genetic button hot melt fixing device according to claim 6, characterized in that: A first connecting rod (24) is rotatably connected to the surface of the slider (22) through the first connecting shaft (23), and a second connecting rod (26) is rotatably connected to the end of the first connecting rod (24) through a second connecting shaft (25). The length of the first connecting rod (24) is greater than the length of the second connecting rod (26). The end of the second connecting rod (26) is rotatably connected to a turntable (28) through a fourth connecting shaft (29), and a third connecting shaft (27) rotatably connected to the surface of the concave top plate (4) is fixed in the middle of the turntable (28). The third connecting shaft (27) is connected to the driving roller (301) at the end of the support base (1) through a transmission belt (30).

10. A non-genetic button fusion fixing device according to claim 8, characterized in that: A support frame (38) is fixed to the middle part of the inner side of the treatment box (34), and a top cover (39) is installed at the four corners of the top of the treatment box (34) through screws. Exhaust holes (42) are evenly formed on the surface of the top cover (39). A filter screen (40) and an activated carbon mesh (41) are arranged between the top cover (39) and the support frame (38), and the filter screen (40) is symmetrically arranged about the central axis of the activated carbon mesh (41).