CN114932608A - Laser heating banding and rubber coating banding system - Google Patents

Laser heating banding and rubber coating banding system Download PDF

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Publication number
CN114932608A
CN114932608A CN202210687700.7A CN202210687700A CN114932608A CN 114932608 A CN114932608 A CN 114932608A CN 202210687700 A CN202210687700 A CN 202210687700A CN 114932608 A CN114932608 A CN 114932608A
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China
Prior art keywords
belt
edge sealing
laser
platform
tape
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CN202210687700.7A
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CN114932608B (en
Inventor
曾小华
周述君
叶莞强
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Nanxing Machinery Co Ltd
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Nanxing Machinery Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27NMANUFACTURE BY DRY PROCESSES OF ARTICLES, WITH OR WITHOUT ORGANIC BINDING AGENTS, MADE FROM PARTICLES OR FIBRES CONSISTING OF WOOD OR OTHER LIGNOCELLULOSIC OR LIKE ORGANIC MATERIAL
    • B27N7/00After-treatment, e.g. reducing swelling or shrinkage, surfacing; Protecting the edges of boards against access of humidity
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27GACCESSORY MACHINES OR APPARATUS FOR WORKING WOOD OR SIMILAR MATERIALS; TOOLS FOR WORKING WOOD OR SIMILAR MATERIALS; SAFETY DEVICES FOR WOOD WORKING MACHINES OR TOOLS
    • B27G11/00Applying adhesives or glue to surfaces of wood to be joined
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Wood Science & Technology (AREA)
  • Forests & Forestry (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Basic Packing Technique (AREA)

Abstract

The invention relates to the technical field of edge bonding machines, in particular to a laser heating edge bonding and gluing edge bonding system which comprises a gluing device and a laser heating device which are sequentially arranged along an edge bonding machine production line, wherein the gluing device comprises a gluing mechanism and a gluing mechanism, the laser heating device comprises a belt feeding device, a belt pressing device and a laser emitting device, the belt feeding device comprises a belt feeding platform, a belt feeding assembly and a belt cutting assembly, the belt feeding assembly and the belt cutting assembly are sequentially arranged along the belt feeding direction of a sealing belt, the belt feeding assembly and the belt cutting assembly are both arranged on the belt feeding platform, the belt pressing device is positioned at the discharge end of the belt feeding device, the belt cutting assembly is positioned at one side of the belt pressing device, and the laser emitting end of the laser emitting device is aligned with the discharge end of the belt feeding device. The invention has ingenious design, can carry out switching work according to actual requirements and improves the use flexibility; the two modes are combined with each other, the use flexibility of the edge bonding machine can be improved, the device is strong in universality, can adapt to various processing modes, and is favorable for improving the processing efficiency.

Description

Laser heating banding and rubber coating banding system
Technical Field
The invention relates to the technical field of edge bonding machines, in particular to a laser heating edge bonding and gluing edge bonding system.
Background
The edge sealing operation is an important process in the manufacturing process of the panel furniture, and the quality of the edge sealing directly influences the quality, price and grade of the product. The edge sealing can well improve the appearance quality of the furniture, prevent the damage of the corner parts and the lifting or peeling of the veneering layer of the furniture in the transportation and use processes, simultaneously play the roles of preventing water, sealing the release of harmful gas, reducing the deformation and the like, and beautify the furniture and enjoy the mood. The edge sealing operation process of the wood comprises a series of processes of gluing, pressing, cutting, rough trimming, fine trimming, scraping, slotting, polishing and the like, wherein gluing is carried out on the edges of the wood by adopting a gluing device in the processes of the processes, and then the edge sealing belt is attached to the wood; at present, an edge sealing mechanism for heating edge sealing glue through hot air is arranged, but the mechanism has the defects of poor glue sticking effect, large environmental influence and unqualified edge sealing after edge sealing is carried out on a plate; in addition, the existing edge bonding machine only has a single glue coating mechanism, is poor in universality and inflexible to use, cannot switch edge bonding modes according to different processing requirements, can only switch by replacing the edge bonding machine, and is low in working efficiency.
Disclosure of Invention
The invention provides a laser heating edge sealing and gluing edge sealing system aiming at the problems in the prior art, which is ingenious in design, can perform switching work according to actual requirements, and improves the use flexibility; carry out the inter combination with two kinds of modes, can improve the use flexibility of bag sealer, the device commonality is strong, can adapt to multiple processing mode, is favorable to improving machining efficiency.
In order to solve the technical problem, the invention adopts the following technical scheme:
the invention provides a laser heating edge sealing and gluing edge sealing system which comprises a gluing device and a laser heating device which are sequentially arranged along an edge sealing machine production line, wherein the gluing device comprises a gluing mechanism and a sol mechanism, the laser heating device comprises a belt feeding device, a belt pressing device and a laser emitting device, the belt feeding device comprises a belt feeding platform, a belt feeding assembly and a belt cutting assembly, the belt feeding assembly and the belt cutting assembly are sequentially arranged along the belt feeding direction of a sealing edge belt, the belt feeding assembly and the belt cutting assembly are both arranged on the belt feeding platform, the belt pressing device is positioned at the discharge end of the belt feeding device, the belt cutting assembly is positioned on one side of the belt feeding device, the laser emitting device is positioned on one side of the belt feeding platform, and the laser emitting end of the laser emitting device is aligned with the discharge end of the belt feeding device.
The belt conveying device comprises a belt conveying platform, a belt conveying device and a belt conveying device, wherein a belt discharging guide assembly is further arranged on the belt conveying platform and located at the discharge end of the belt conveying device, the belt discharging guide assembly comprises two belt discharging guide plates which are arranged right opposite and in parallel, and a belt discharging guide groove is formed between the two belt discharging guide plates.
The belt cutting assembly comprises a belt cutting cylinder, a belt cutting connecting block connected with the output end of the belt cutting cylinder and a belt cutting knife arranged on the belt cutting connecting block, and the advancing direction of the belt cutting knife and the belt discharging direction of the discharge end of the belt conveying device are arranged at an included angle of 70 degrees.
The discharge end of the belt conveying device is further provided with a belt outlet height limiting assembly, the belt outlet height limiting assembly comprises a height limiting fixing plate, a height limiting adjusting plate and a height limiting adjusting screw, the height limiting fixing plate is fixed on the belt conveying platform, guide pillars are arranged on two sides of the height limiting fixing plate in a rotating mode, the guide pillars slide through the height limiting adjusting plate, the height limiting adjusting screw is installed on the height limiting adjusting plate, and the height limiting adjusting screw is in threaded connection with the height limiting fixing plate.
The belt pressing device comprises a belt pressing platform, a belt feeding device and a belt feeding device, wherein the belt feeding device is arranged on the belt pressing platform, the belt feeding device is arranged on the belt feeding device, and the belt feeding device is arranged on the belt feeding device.
The rear end of the second transition guide plate is detachably connected with a connecting shaft, and the connecting shaft is arranged on the belt conveying platform or the height limiting adjusting plate.
The belt conveying assembly comprises a belt feeding driving mechanism and a belt conveying auxiliary guiding mechanism;
the belt feeding driving mechanism comprises a belt feeding driving motor and a belt feeding wheel connected with the output end of the belt feeding driving motor, the belt feeding driving motor is arranged below the belt feeding platform, the belt feeding wheel is rotatably arranged on the belt feeding platform, the belt feeding platform is also rotatably provided with a belt pressing wheel, and the belt pressing wheel is positioned on one side of the belt feeding wheel;
the supplementary guiding mechanism that send area includes a plurality of leading wheels that set gradually along the direction of sending of banding area, a plurality of leading wheels rotate set up in send the platform.
The laser emitting device comprises a laser rack, a lifting driving piece arranged on the laser rack and a laser emitter connected with the output end of the lifting driving piece, wherein the laser emitting end of the laser emitter is aligned to the discharge end of the belt conveying device.
The device comprises a laser emitting device, a belt conveying platform, a sensor and a controller, wherein the sensor is arranged at the discharge end of the belt conveying platform and is in signal connection with the laser emitting device.
Wherein, press the belt installation including press the belt frame, slide set up in press the main slide of belt frame, rotate set up in main on the main slide press paste the wheel, install servo motor, the slip in main slide bottom press the vice slide of belt frame and rotate set up in vice pressing on the vice slide pastes the wheel, servo motor's output with main pressing pastes the wheel drive and connects, press one side of belt frame to be provided with main front and back cylinder, main front and back cylinder's output with main slide drive is connected, one side of belt frame still is provided with vice front and back cylinder, vice front and back cylinder's output with vice slide drive is connected.
The invention has the beneficial effects that:
the design of the invention is characterized in that the gluing device and the laser heating device are sequentially arranged along the edge bonding machine production line, so that the switching work can be carried out according to the actual requirement, and the use flexibility is improved; an operator controls the gluing device or the laser emitting device to work through a production line control system of the edge bonding machine according to actual requirements; when the gluing device works, the belt conveying device conveys the edge sealing belt forwards on the feeding platform by utilizing the belt conveying assemblies, the edge sealing belt is conveyed to the discharge end of the belt conveying device, the belt cutting assembly cuts the edge sealing belt, meanwhile, the colloidal particle melting mechanism melts the colloidal particles, the colloidal particle melting mechanism flows to the gluing mechanism, gluing is carried out on the side edge of the plate, the plate is conveyed to the belt pressing device, and the belt pressing device attaches the passing edge sealing belt to the side edge of the plate, which is a traditional edge sealing processing mode; when the laser heating device is needed to be used, the belt conveying device conveys the edge sealing belt forwards on the feeding platform by utilizing the belt conveying assembly, the edge sealing belt is conveyed to the discharge end of the belt conveying device, the edge sealing belt is cut off by the belt cutting assembly, meanwhile, the laser emitting device heats the edge sealing belt to melt glue on the edge sealing belt, the edge sealing belt is attached to the side edge of the wood board conveyed by the edge sealing machine by the belt pressing device, the glue on the edge sealing belt is melted by laser heating, the speed is high, the working efficiency is improved, the problem that the edge sealing belt is coated by a coating device in the prior art is solved, the processing difficulty and the external influence are reduced, the edge sealing quality is improved, and the edge sealing processing mode is a newly designed edge sealing processing mode; in this embodiment, mutually combine two kinds of modes, can improve the use flexibility of bag sealer for a bag sealer both can satisfy and process the banding area that has glue, also can satisfy earlier through to the panel rubber coating, and the processing method of laminating banding area and panel again, send the tape unit and press the belt unit and all can supply laser emission device and rubber coating device to use, and the device commonality is strong, can adapt to multiple processing method, is favorable to improving machining efficiency.
Drawings
Fig. 1 is a schematic structural view of a laser heating edge sealing and gluing edge sealing system according to the present invention.
Fig. 2 is a schematic structural diagram of a laser heating apparatus according to the present invention.
Fig. 3 is another view structure diagram of the laser heating apparatus of the present invention.
Fig. 4 is a schematic structural view of a tape feeding apparatus of the present invention.
Fig. 5 is an enlarged view of a portion a in fig. 3.
Fig. 6 is an enlarged view at B in fig. 4.
FIG. 7 is a schematic view of the structure of the belt press apparatus of the present invention.
The reference numerals in fig. 1 to 7 include:
100. a gluing device; 200. a laser heating device; 101. a gluing mechanism; 102. a sol mechanism;
1. a tape feeding device; 2. a belt pressing device; 3. a laser emitting device; 4. a tape-feeding platform; 5. a tape feed assembly; 6. cutting the belt assembly; 7. a tape discharge guide assembly; 8. a belt discharging guide plate; 9. a belt cutting cylinder; 10. cutting a belt connecting block; 11. cutting a band cutter; 12. a strip outlet height limiting assembly; 13. a height limiting fixing plate; 14. a height-limiting adjusting plate; 15. a height limiting adjusting screw; 16. a guide post; 17. a first transition deflector; 18. a second transition deflector; 19. a connecting shaft; 20. a belt feeding driving motor; 21. a belt feeding wheel; 22. a pinch roller; 23. a guide wheel; 24. a laser frame; 25. a lifting drive member; 26. a laser transmitter; 27. a belt press frame; 28. a main slide; 29. a main pressing wheel; 30. a servo motor; 31. an auxiliary pressing wheel; 32. main front and rear cylinders; 33. a secondary front and rear cylinder; 34. and (4) a groove.
Detailed Description
In order to facilitate understanding of those skilled in the art, the present invention is further described below with reference to the following examples and the accompanying drawings, which are not intended to limit the present invention. The present invention is described in detail below with reference to the attached drawings.
A laser heating edge banding and gluing edge banding system, as shown in fig. 1 to 7, comprising a gluing device 100 and a laser heating device 200 which are arranged in sequence along the production line of an edge banding machine, the gluing device comprises a gluing mechanism 101 and a sol mechanism 102, the laser heating device 200 comprises a belt feeding device 1, a belt pressing device 2 and a laser emitting device 3, the belt feeding device 1 comprises a belt feeding platform 4, a belt feeding assembly 5 and a belt cutting assembly 6 which are sequentially arranged along the belt feeding direction of the edge sealing belt, the belt feeding assembly 5 and the belt cutting assembly 6 are both arranged on the belt feeding platform 4, the belt pressing device 2 is positioned at the discharge end of the belt feeding device 1, the belt cutting assembly 6 is located on one side of the belt pressing device 2, the laser emitting device 3 is located on one side of the belt feeding platform 4, and a laser emitting end of the laser emitting device 3 is aligned with a discharging end of the belt feeding device 1. Specifically, the design of the invention is characterized in that the gluing device 100 and the laser heating device 200 are sequentially arranged along the edge bonding machine production line, so that switching work can be carried out according to actual requirements, and the use flexibility is improved; an operator controls the gluing device 100 or the laser emitting device 3 to work through a production line control system of the edge bonding machine according to actual requirements; when the gluing device 100 works, the belt feeding device conveys the edge sealing belt forwards on the feeding platform by using the belt feeding assembly 5, the edge sealing belt is conveyed to the discharge end of the belt feeding device 1, the belt cutting assembly 6 cuts the edge sealing belt, meanwhile, the colloidal particles are melted by the colloidal sol mechanism 102 and flow to the gluing mechanism 101, the side edge of the plate is glued, the plate is conveyed to the belt pressing device 2, and the belt pressing device 2 attaches the passing edge sealing belt to the side edge of the plate, which is a traditional edge sealing processing mode; when the laser heating device 200 is needed, the belt feeding device 1 utilizes the belt feeding assembly 5 to convey the edge sealing belt forwards on the feeding platform, the edge sealing belt is conveyed to the discharge end of the belt feeding device 1, the belt cutting assembly 6 cuts the edge sealing belt, meanwhile, the laser emitting device 3 heats the edge sealing belt to melt the glue on the edge sealing belt, the edge sealing belt is attached to the side edge of the wood board conveyed by the edge sealing machine through the belt pressing device 2, the glue on the edge sealing belt is melted through laser heating, the speed is high, the working efficiency is improved, the problem that the edge sealing belt is coated by a coating device in the traditional technology is solved, the processing difficulty and the external influence are reduced, the edge sealing quality is improved, and the edge sealing processing mode is a newly designed edge sealing processing mode; in this embodiment, mutually combine two kinds of modes, can improve the use flexibility of bag sealer, make a bag sealer both can satisfy and process the banding area that has glue, also can satisfy earlier through to the panel rubber coating, the processing method of laminating banding area and panel again, it all can supply laser emission device 3 and rubber coating device 100 to use with pressing belt device 2 to send belt device 1, the device commonality is strong, can adapt to multiple processing method, be favorable to improving machining efficiency, every device of this embodiment can independent use or combine the use.
The sol mechanism 102 comprises a PUR sol mechanism and an EVA sol mechanism, different sol mechanisms can be used according to actual needs, so that the use flexibility is further improved, the processing flexibility of the edge bonding machine is improved, and the sol mechanism 102 and the glue coating mechanism 101 are both in the prior art and are not described again; i si patent CN215202507U, an applicator of an edge bonding machine, may be applied to the applicator 100 of the present embodiment.
In this embodiment, still be provided with out on the platform 4 of sending the area direction subassembly 7, it is located to go out area direction subassembly 7 send the discharge end of belting 1, it includes that two are just to and parallel arrangement's play area deflector 8 to go out area direction subassembly 7, forms out the area guide way between two play area deflectors 8. Particularly, a tape discharging guide groove is formed between the two tape discharging guide plates 8, so that the edge sealing tape can be accurately discharged conveniently, and the structure is reliable.
In this embodiment, the tape cutting assembly 6 includes a tape cutting cylinder 9, a tape cutting connecting block 10 connected to an output end of the tape cutting cylinder 9, and a tape cutting knife 11 mounted on the tape cutting connecting block 10, and an included angle of 70 ° is formed between a traveling direction of the tape cutting knife 11 and a tape discharging direction of a discharge end of the tape feeding device 1. Specifically, the cutter of the conventional tape cutting assembly 6 cuts the tape in a direction perpendicular to the tape discharging direction of the edge sealing tape, so that the tape cutting assembly 6 of the tape feeding device 1 occupies a large space, the size of the tape feeding device 1 is increased, and the processing speed is affected by the extension of the processing line of the edge sealing machine; in the present embodiment, an included angle of 70 ° is formed between the advancing direction of the tape cutter 11 and the tape discharging direction of the discharge end of the tape conveying device 1, and the tape cutting cylinder 9 drives the tape cutting connecting block 10 to drive the tape cutter 11 to move, so as to cut the tape sealing edge.
In this embodiment, the discharge end of the belt conveying device 1 is further provided with a belt outlet height limiting assembly 12, the belt outlet height limiting assembly 12 includes a height limiting fixing plate 13, a height limiting adjusting plate 14 and a height limiting adjusting screw 15, the height limiting fixing plate 13 is fixed on the belt conveying platform 4, guide pillars 16 are rotatably arranged on two sides of the height limiting fixing plate 13, the guide pillars 16 are slidably arranged on the height limiting adjusting plate 14, the height limiting adjusting screw 15 is arranged on the height limiting adjusting plate 14, and the height limiting adjusting screw 15 is in threaded connection with the height limiting fixing plate 13. Specifically, the height of the height-limiting adjusting plate 14 can be adjusted by rotating the height-limiting adjusting screw 15, the transmission height of the edge-sealing belt can be limited, and the stability and reliability of the transmission of the edge-sealing belt can be improved.
In this embodiment, the tape feeding assembly 5 includes a tape feeding driving mechanism and a tape feeding auxiliary guiding mechanism;
the belt feeding driving mechanism comprises a belt feeding driving motor 20 and a belt feeding wheel 21 connected with the output end of the belt feeding driving motor 20, the belt feeding driving motor 20 is arranged below the belt feeding platform 4, the belt feeding wheel 21 is rotatably arranged on the belt feeding platform 4, a belt pressing wheel 22 is also rotatably arranged on the belt feeding platform 4, and the belt pressing wheel 22 is positioned on one side of the belt feeding wheel 21;
the belt feeding platform 4 is provided with a groove 34, and the groove 34 is positioned between the belt pressing wheel 22 and the belt feeding wheel 21, so that the guided conveying of the edge sealing belt is facilitated;
the auxiliary tape feeding guide mechanism comprises a plurality of guide wheels 23 which are sequentially arranged along the tape feeding direction of the edge sealing tape, the guide wheels 23 are rotatably arranged on the tape feeding platform 4, and the guide wheels 23 are positioned on one side or two sides of the groove 34.
Specifically, under the above arrangement, the belt feeding driving motor 20 drives the belt feeding wheel 21 to rotate, the belt pressing wheel 22 is matched to clamp the edge sealing belt, the edge sealing belt is driven to move along the groove 34 to be conveyed forwards, and under the action of the guide wheel 23, the stability and the accuracy of the edge sealing belt transmission are improved, and the operation is reliable.
In this embodiment, the laser emitting device 3 includes a laser frame 24, a lifting driving member 25 mounted on the laser frame 24, and a laser emitter 26 connected to an output end of the lifting driving member 25, and a laser emitting end of the laser emitter 26 is aligned with a discharging end of the tape feeding device 1. Specifically, the lifting driving member 25 may be an air cylinder or a motor transmission structure, so as to drive the laser emitter 26 to move up and down, adjust the height of the laser emitter 26, and improve the flexibility of use.
In this embodiment, an inductor is disposed at a discharge end of the belt conveying platform 4, and the inductor is in signal connection with the laser emitting device 3. Specifically, when the sensor senses that the sealing band is sent out from the discharging end of the point sending platform, the laser emitter 26 starts to work again, so that the belt feeding device 1 and the belt pressing device 2 can be prevented from being damaged by long-term opening of the laser emitter 26, resource consumption can be reduced, and the resource utilization rate can be improved.
In this embodiment, the discharge end of the tape feeding device 1 is further provided with a transition guide assembly, the transition guide assembly is located between the discharge end of the tape feeding device 1 and the tape pressing device 2, the transition guide assembly includes a first transition guide plate 17 and a second transition guide plate 18, the first transition guide plate 17 and the second transition guide plate 18 are both installed at the discharge end of the tape feeding platform 4, the second transition guide plate 18 is located above the first transition guide plate 17, and the front end of the second transition guide plate 18 extends into one side of the feed end of the tape pressing device 2.
Wherein, press belt assembly 2 including press belt frame 27, slide set up in press belt frame 27's main slide 28, rotate set up in main press on the main slide 28 paste wheel 29, install servo motor 30 in main slide 28 bottom, slide set up in press belt frame 27's vice slide and rotate set up in vice press on the vice slide paste wheel 31, servo motor 30's output with main press paste wheel 29 drive is connected, one side of press belt frame 27 is provided with main front and back cylinder 32, main front and back cylinder 32's output with main slide 28 drive is connected, one side of press belt frame 27 still is provided with vice front and back cylinder 33, vice front and back cylinder 33's output with vice slide drive is connected.
Specifically, the upper end surface of the first transition guide plate 17 and the lower end surface of the main pressing wheel 29 are located on the same horizontal plane, the first transition guide plate 17 is located on one side below the main pressing wheel 29, the second transition guide plate 18 is located on one side of the main pressing wheel 29, the first transition guide plate 17 and the second transition guide plate 18 form a step, the edge sealing belt is conveyed from the upper end surface of the first transition guide plate 17 and forms guide transmission under the action of the second transition guide plate 18, further, the front end of the second transition guide plate 18 protrudes to one side of the main pressing wheel 29 and forms a guide gap with the main pressing wheel 29, the guide transmission of the edge sealing belt is facilitated, and the reliability and accuracy of transmission are improved; the main front-back air cylinder 32 and the auxiliary front-back air cylinder 33 can respectively drive the main pressing wheel 29 and the auxiliary pressing wheel 31 to move back and forth, so that the tape pressing device 2 can better adhere the edge sealing tape to the wood board.
In this embodiment, the diameter of the main pressing wheel 29 is greater than that of the auxiliary pressing wheel 31, the diameter of the main pressing wheel 29 is 1.5 to 3 times that of the auxiliary pressing wheel 31, preferably, the diameter of the main pressing wheel 29 is 2 times that of the auxiliary pressing wheel 31, and under the arrangement, the arc-shaped second transition guide plate 18 is matched, so that stable guiding and inputting of the edge sealing band into the edge sealing machine by the band pressing device 2 are facilitated, and the processing accuracy is improved.
The second transition guide plate 18 is arranged in an arc shape, and the radius of the arc second transition guide plate 18 is slightly larger than that of the main pressing wheel 29; the front end of the second transition guide plate 18 extends to one side of the main pressing wheel 29 and forms a guide gap with the main pressing wheel 29, so that the guide transmission of the edge sealing belt is facilitated.
In this embodiment, a connecting shaft 19 is detachably connected to the rear end of the second transition guide plate 18, and the connecting shaft 19 is installed on the belt conveying platform 4 or the height-limiting adjustment plate 14. Specifically, when the connecting shaft 19 is installed on the belt conveying platform 4, the height of the second transition guide plate 18 is fixed, and the stability is good; when the connecting shaft 19 is installed on the height-limiting adjusting plate 14, the height of the second transition guide plate 18 is correspondingly adjusted along with the height adjustment of the height-limiting adjusting plate 14, so that the height-limiting adjusting device can adapt to transmission belts with different widths, and is flexible to use.
Although the present invention has been described with reference to the preferred embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the present invention.

Claims (10)

1. The utility model provides a laser heating banding and rubber coating banding system which characterized in that: include rubber coating device and the laser heating device that sets gradually along the bag sealer production line, the rubber coating device includes rubber coating mechanism and sol mechanism, the laser heating device is including sending the tape unit, pressing belt assembly and laser emission device, send the tape unit including sending the tape platform and sending the tape subassembly and cutting the tape subassembly that the tape direction of edge banding set gradually, send the tape unit and cut the tape subassembly and all install on sending the tape platform, press the tape unit to be located send the discharge end of tape unit, it is located to cut the tape unit press one side of tape unit, the laser emission device is located send one side of tape platform, the laser emission end of laser emission device is aimed at send the discharge end of tape unit.
2. The laser heating edge sealing and gluing edge sealing system according to claim 1, wherein: the belt conveying device is characterized in that a belt discharging guide assembly is further arranged on the belt conveying platform and located at the discharge end of the belt conveying device, the belt discharging guide assembly comprises two belt discharging guide plates which are arranged right opposite and in parallel, and a belt discharging guide groove is formed between the two belt discharging guide plates.
3. The laser heating edge sealing and gluing edge sealing system according to claim 1, wherein: the belt cutting assembly comprises a belt cutting cylinder, a belt cutting connecting block connected with the output end of the belt cutting cylinder and a belt cutting knife arranged on the belt cutting connecting block, and the advancing direction of the belt cutting knife and the belt discharging direction of the discharge end of the belt conveying device are arranged at an included angle of 70 degrees.
4. The laser heating edge sealing and gluing edge sealing system according to claim 1, wherein: the discharge end of the belt conveying device is further provided with a belt outlet height limiting assembly, the belt outlet height limiting assembly comprises a height limiting fixing plate, a height limiting adjusting plate and a height limiting adjusting screw, the height limiting fixing plate is fixed on the belt conveying platform, guide pillars are arranged on two sides of the height limiting fixing plate in a rotating mode, the guide pillars penetrate through the height limiting adjusting plate in a sliding mode, the height limiting adjusting screw is installed on the height limiting adjusting plate, and the height limiting adjusting screw is in threaded connection with the height limiting fixing plate.
5. The laser heating edge sealing and gluing edge sealing system according to claim 4, wherein: the belt pressing device comprises a belt pressing platform, a belt feeding device and a belt feeding device, wherein the belt feeding device is arranged on the conveying platform, and the belt feeding device is arranged on the conveying platform.
6. The laser heating edge sealing and gluing edge sealing system of claim 5, wherein: the rear end of the second transition guide plate is detachably connected with a connecting shaft, and the connecting shaft is arranged on the belt conveying platform or the height limiting adjusting plate.
7. The laser heating edge sealing and gluing edge sealing system according to claim 1, wherein: the belt conveying assembly comprises a belt feeding driving mechanism and a belt conveying auxiliary guide mechanism;
the belt feeding driving mechanism comprises a belt feeding driving motor and a belt feeding wheel connected with the output end of the belt feeding driving motor, the belt feeding driving motor is arranged below the belt feeding platform, the belt feeding wheel is rotationally arranged on the belt feeding platform, the belt feeding platform is also rotationally provided with a belt pressing wheel, and the belt pressing wheel is positioned on one side of the belt feeding wheel;
the supplementary guiding mechanism that send area includes a plurality of leading wheels that set gradually along the direction of sending of banding area, a plurality of leading wheels rotate set up in send the platform.
8. The laser heating edge sealing and gluing edge sealing system according to claim 1, wherein: the laser emitting device comprises a laser frame, a lifting driving piece arranged on the laser frame and a laser emitter connected with the output end of the lifting driving piece, and the laser emitting end of the laser emitter is aligned to the discharge end of the belt conveying device.
9. The laser heating edge sealing and gluing edge sealing system according to claim 1, wherein: and an inductor is arranged at the discharge end of the belt conveying platform and is in signal connection with the laser emitting device.
10. The laser heating edge sealing and gluing edge sealing system according to claim 1, wherein: the press belt device comprises a press belt frame, a slide, a main slide seat, a rotation, a main press wheel, a servo motor, a slide, an auxiliary slide seat, an auxiliary press wheel, a servo motor output end, a main press wheel, a main front cylinder, a main rear cylinder, a main slide seat drive, a main front cylinder, a main rear cylinder, a main slide seat drive, a main front cylinder, a main rear cylinder, a main slide seat drive and a main slide seat drive.
CN202210687700.7A 2022-06-17 2022-06-17 Laser heating banding and rubber coating banding system Active CN114932608B (en)

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Application Number Priority Date Filing Date Title
CN202210687700.7A CN114932608B (en) 2022-06-17 2022-06-17 Laser heating banding and rubber coating banding system

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Application Number Priority Date Filing Date Title
CN202210687700.7A CN114932608B (en) 2022-06-17 2022-06-17 Laser heating banding and rubber coating banding system

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CN114932608A true CN114932608A (en) 2022-08-23
CN114932608B CN114932608B (en) 2023-07-25

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115534049A (en) * 2022-09-21 2022-12-30 江苏华工激光科技有限公司 Method applied to change of edge sealing power of wood board
CN116619516A (en) * 2023-05-30 2023-08-22 广州极东机械有限公司 Multi-station edge bonding machine with laser edge bonding and gluing functions

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CN110466036A (en) * 2019-08-15 2019-11-19 南兴装备股份有限公司 A kind of double-station automatic switchover edge banding machine
CN211941333U (en) * 2020-03-18 2020-11-17 南兴装备股份有限公司 Gluing mechanism of special-shaped edge bonding machine
CN212530999U (en) * 2020-05-20 2021-02-12 江苏无锡欧派集成家居有限公司 Multichannel banding automatic switch-over antiskid feed arrangement
CN216543818U (en) * 2021-10-09 2022-05-17 无锡汉神电气股份有限公司 Laser edge bonding machine

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CN105563608A (en) * 2016-02-25 2016-05-11 东莞市南兴家具装备制造股份有限公司 Grooving, gluing and band pressing mechanism of edge sealing band
CN110466036A (en) * 2019-08-15 2019-11-19 南兴装备股份有限公司 A kind of double-station automatic switchover edge banding machine
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CN115534049A (en) * 2022-09-21 2022-12-30 江苏华工激光科技有限公司 Method applied to change of edge sealing power of wood board
CN116619516A (en) * 2023-05-30 2023-08-22 广州极东机械有限公司 Multi-station edge bonding machine with laser edge bonding and gluing functions
CN116619516B (en) * 2023-05-30 2024-01-02 广州极东机械有限公司 Multi-station edge bonding machine with laser edge bonding and gluing functions

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