A plate cutting and edge banding machine

By designing a plate cutting and edge banding machine, automatic positioning, clamping and edge banding of plate specimens are achieved, solving the problems of complicated edge banding process and formaldehyde volatilization affecting detection accuracy in the existing technology, and improving detection efficiency and accuracy.

CN118288360BActive Publication Date: 2025-09-12SCIENCE & TECHNOLOGY RESEARCH CENTER OF CHINA CUSTOMS
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Patent Information

Application Number
CN202410545074.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-06
Publication Date
2025-09-12
Estimated Expiration
2044-05-06

AI Technical Summary

Technical Problem

In the existing technology for formaldehyde detection of board materials, the long-term exposure of the specimen surface during the sawing process causes formaldehyde volatilization, affecting the detection accuracy, and the edge sealing process is cumbersome.

Method used

A plate cutting and edge banding machine is designed, which includes a cutting component, a positioning frame, a pressing plate assembly and a supporting plate assembly, so as to realize automatic positioning and clamping of plate specimens and automatic bonding of edge banding, eliminating manual operation.

Benefits of technology

It achieves precise positioning and automatic edge sealing of the board specimens, ensuring that the specimen cross-section is immediately sealed, thereby improving the accuracy and efficiency of formaldehyde detection.

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Abstract

The present invention discloses a plate cutting and edge banding machine, which belongs to the technical field of plate processing equipment. It includes a cutting component, a base plate assembly and a positioning frame. Four positioning frames are movably assembled on the surface of the base plate. The four positioning frames are respectively arranged on the four sides of the base plate discharge groove. The positioning bracket inside the positioning frame is slidably assembled on the base plate. A bonding groove is provided in the middle of the positioning bracket. The movable block for pulling the edge banding strip is slidably assembled on the positioning bracket. The pressing shell for pressing the edge banding strip is movably assembled on one side of the positioning bracket. By arranging four positioning frames on the base plate, the present invention can independently drive and accurately position and clamp the cut plate specimen, and automatically bond the edge banding strip to the cut edge, eliminating the tedious steps of manual pasting and ensuring that the edge banding is completed immediately after the specimen is cut.
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Description

Technical Field

[0001] The invention belongs to the technical field of plate processing equipment, and particularly relates to a plate cutting and edge banding machine. Background Art

[0002] According to GB18584-2001 Interior Decoration and Renovation Materials - Limits of Hazardous Substances in Wood Furniture, the formaldehyde emission limits for various types of indoor wood-based panels and their products, such as fiberboard, particleboard, plywood, blockboard, reconstituted decorative materials, single-layer boards, integrated boards, veneered wood-based panels, wood floors, wood wall panels, and wood doors and windows, are set. When determining the formaldehyde content of the panels, it is necessary to sample test specimens from qualified products that meet the experimental specifications. The test specimens are (150±1) mm in length and (50±1) mm in width. After sawing, the ends of the test specimens should be immediately sealed with paraffin wax with a melting point of 65°C or formaldehyde-free adhesive tape, and the experiment should be started within 2 hours of test specimen preparation. The existing technical means is to manually apply edge banding tape to the sawed test specimens. Not only is the work process cumbersome, but the cut surface of the test specimen is exposed for a long time during the sawing process, so formaldehyde will continue to volatilize, affecting the accuracy of subsequent formaldehyde testing. Summary of the Invention

[0003] In view of the deficiencies in the prior art, an embodiment of the present invention aims to provide a plate cutting and edge banding machine to solve the problems in the above-mentioned background technology.

[0004] To achieve the above object, the present invention provides the following technical solutions:

[0005] A plate cutting and edge banding machine includes a cutting component, the cutting component including a support plate, a cutting pallet, a cutting saw and a feed chute, the feed chute being provided in the middle of the support plate, the cutting pallet being fixedly mounted on the support plate, and the feed chute being provided at one end of the cutting pallet;

[0006] A bottom plate assembly, the bottom plate assembly comprising a bottom plate and a discharge trough, the bottom plate being fixedly assembled at the bottom of the support plate, and a discharge trough being opened in the middle of the bottom plate, the discharge trough being aligned with the feed trough;

[0007] Positioning frame, the four positioning frames are movably assembled on the surface of the bottom plate, and the four positioning frames are respectively arranged on the four sides of the discharge trough, the positioning frame includes a positioning bracket, an adhesive groove, a beam frame, a screw rod, a movable block and a solid block, the positioning bracket is slidably assembled on the bottom plate, the positioning bracket is provided with an adhesive groove on the side facing the discharge trough, the positioning bracket is fixedly assembled with a beam frame, the screw rod is arranged parallel to the adhesive groove, the movable block is engaged and assembled on the screw rod and slidably arranged at one end of the adhesive groove, the solid block is fixedly arranged at the other end of the adhesive groove, and the movable block and the solid block are both equipped with a traction assembly;

[0008] The pulling belt assembly is assembled on the movable block and the fixed block, and is used to position and clamp the edge banding required for the edge banding of the plate;

[0009] The plate cutting and edge banding machine also includes a pressing plate assembly, which is movably arranged at one end of the positioning bracket and is used to movably contact the plate specimen to be edge banded.

[0010] As a further solution of the present invention, the positioning frame also includes a take-up wheel, a pulley drive, a feed wheel and a center wheel. The two groups of the take-up wheel fixed axes are assembled on one side of the solid block, and the take-up wheel is equipped with a pulley drive. The two groups of the take-up wheels are used to clamp and convey the edge banding. The feed wheel and the center wheel fixed axes are assembled on one end of the positioning bracket for inputting the edge banding to be cut into the take-up wheel.

[0011] As a further solution of the present invention, the positioning structure also includes a tool holder, a blade, a supporting cylinder and a crimping shell. The tool holder is positioned between the solid block and the winding wheel. A blade is slidably provided on the tool holder. The blade is used to cut the edge banding output from one side of the winding wheel. The supporting cylinder is fixedly assembled on the positioning bracket. A crimping shell is movably assembled at one end of the supporting cylinder. The crimping shell is arranged toward the side of the bonding groove and is used to press the edge banding toward one side of the plate.

[0012] As a further solution of the present invention, the positioning structure also includes a main driver and a main screw. The main driver is fixedly mounted on the base plate, and one end of the main driver is equipped with a main screw. The main screw is engaged with the positioning bracket and is used to drive the positioning bracket to slide in a directional manner on the base plate.

[0013] As a further solution of the present invention, the pulling belt assembly includes a guide rail, a slide, a through-hole, a clamp cylinder and a clip. The guide rail is fixedly assembled at the bottom of the movable block and the fixed block. The slide is slidably assembled at the bottom of the guide rail and is linked to the crimping shell. The slide is provided with a through-hole facing the bonding groove side, and the through-hole is used to pass through the edge banding. A clamp cylinder is also provided at the other end of the slide, and a clip is assembled on the clamp cylinder. The clip is slidably assembled in the through-hole for clamping the edge banding.

[0014] As a further solution of the present invention, the pressure plate assembly includes a pressure plate cylinder, a flip angle frame, a pressure plate and a connecting arm. The pressure plate cylinder is fixedly arranged on the beam frame, the flip angle frame is rotatably assembled on the positioning bracket, and one end of the flip angle frame is fixedly assembled with a pressure plate, and the other end of the flip angle frame is movably connected to the pressure plate cylinder through a connecting arm.

[0015] As a further solution of the present invention, the plate cutting and edge banding machine also includes a support assembly, which includes a support cylinder, a support frame, a support tray and a support motor. The support cylinder is fixedly arranged at the bottom of the base plate, and one end of the support cylinder is equipped with a support frame. The support frame is matched with the discharge chute, and the support tray is rotatably installed on the support frame. The support motor is assembled and connected to the support tray for controlling the rotation direction of the support tray.

[0016] In summary, the embodiments of the present invention have the following beneficial effects compared with the prior art:

[0017] The present invention provides four positioning frames on the bottom plate, which can independently drive and accurately position and clamp the cut plate specimens, and automatically bond the edge banding to the cut edges, eliminating the tedious steps of manual pasting and ensuring that the edge banding is completed immediately after the specimen is cut. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 The figure is a schematic structural diagram of a plate cutting and edge banding machine provided in one embodiment of the present invention.

[0019] Figure 2 The present invention is a schematic structural diagram of a bottom plate assembly in a plate cutting and edge banding machine provided in one embodiment of the present invention.

[0020] Figure 3 It is a front structural schematic diagram of a positioning frame in a plate cutting and edge banding machine provided in an embodiment of the present invention.

[0021] Figure 4 The figure is a schematic diagram of the back structure of a positioning frame in a plate cutting and edge banding machine provided in one embodiment of the present invention.

[0022] Figure 5 This is a schematic structural diagram of the plate cutting and edge banding machine shown in FIG. 1 , which is provided in one embodiment of the present invention.

[0023] Figure 6 This is a schematic structural diagram of the plate cutting and edge banding machine shown in FIG. 1 , which is provided in one embodiment of the present invention.

[0024] Figure 7 The present invention is a schematic structural diagram of a pressure plate assembly in a plate cutting and edge banding machine provided in one embodiment of the present invention.

[0025] Figure 8 The figure is a schematic side structural diagram of a plate cutting and edge banding machine provided in one embodiment of the present invention.

[0026] Reference numerals: 1-cutting component, 101-support plate, 102-cutting support plate, 103-cutting saw, 104-feeding trough, 2-bottom plate assembly, 201-bottom plate, 202-discharging trough, 3-positioning frame, 301-positioning bracket, 302-adhesive groove, 303-beam frame, 304-screw, 305-moving block, 306-fixed block, 307-winding wheel, 308-pulley drive, 309-feeding wheel, 310-intermediate wheel, 311-knife holder, 312- Blade, 313-support cylinder, 314-crimping shell, 315-main drive, 316-main screw, 4-pull belt assembly, 401-guide rail, 402-slide, 403-through-hole, 404-clamp cylinder, 405-clamp, 5-pressing plate assembly, 501-pressing plate cylinder, 502-flip angle bracket, 503-pressing plate, 504-connecting arm, 6-supporting plate assembly, 601-supporting plate cylinder, 602-supporting plate bracket, 603-supporting tray, 604-supporting motor. DETAILED DESCRIPTION

[0027] In order to more clearly illustrate the structural features and effects of the present invention, the present invention is described in detail below with reference to the accompanying drawings and specific embodiments.

[0028] See also Figures 1-8, a plate cutting edge banding machine in an embodiment of the present invention includes a cutting component 1, the cutting component 1 includes a support plate 101, a cutting pallet 102, a cutting saw 103 and a feeding trough 104, a feeding trough 104 is provided in the middle of the support plate 101, and a cutting pallet 102 is fixedly mounted on the support plate 101, and a feeding trough 104 is provided at one end of the cutting pallet 102; a bottom plate assembly 2, the bottom plate assembly 2 includes a bottom plate 201 and a discharge trough 202, the bottom plate 201 is fixedly mounted on the bottom of the support plate 101, and a discharge trough 202 is opened in the middle of the bottom plate 201, and the discharge trough 202 is aligned with the feed trough 104; a positioning frame 3, four of the positioning frames 3 are movably mounted on the surface of the bottom plate 201, and the four positioning frames 3 are respectively arranged on the four sides of the discharge trough 202, the positioning frame 3 includes a positioning bracket 301, an adhesive groove 302, a beam The bracket 303, the screw rod 304, the movable block 305 and the fixed block 306, the positioning bracket 301 is slidably assembled on the bottom plate 201, the positioning bracket 301 is provided with a bonding groove 302 on the side facing the discharge trough 202, the positioning bracket 301 is fixedly equipped with a beam frame 303, the screw rod 304 is arranged parallel to the bonding groove 302, the movable block 305 is engaged and assembled on the screw rod 304 and is slidably arranged at one end of the bonding groove 302, and the fixed block 306 is fixedly arranged at the other end of the bonding groove 302, and the movable block 305 and the fixed block 306 are both equipped with a pull belt assembly 4; the pull belt assembly 4 is assembled on the movable block 305 and the fixed block 306, and is used to position and clamp the edge banding required for the edge banding of the plate; the pressing plate assembly 5, the plate cutting and edge banding machine also includes a pressing plate assembly 5, the pressing plate assembly 5 is movably arranged at one end of the positioning bracket 301, and is used to movably abut the plate specimen to be edge banded.

[0029] In actual application of this embodiment, when the edge banding machine is used to edge band the sample cut from the plate, the cutting support plate 102 and the cutting saw 103 on the support plate 101 are used to cut the plate to be tested, and the sample formed after cutting passes through the feed trough 104 and falls onto the bottom plate 201. The discharge trough 202 in the middle of the bottom plate 201 is used to temporarily place the plate sample. When the plate sample is located on the support plate assembly 6 in the discharge trough 202, the four positioning frames 3 on the surface of the bottom plate 201 can position the sample plate. For positioning and clamping, the four positioning frames 3 are divided into two groups and arranged in the first direction x and the second direction y, and the first group of positioning frames 3 slides along the first direction x, and the second group of positioning frames 3 slides along the second direction y. When the plate is placed on the support plate assembly 6, the two groups of positioning frames 3 located in the first direction x move toward the plate at the same time, so that the two groups of positioning brackets 301 clamp toward the plate at the same time. Since the two groups of positioning brackets 301 are arranged in parallel in the first direction x, when the two groups of positioning brackets 301 When pressed onto the side edge of the plate, the crooked plate can be rotated and fitted onto the two sets of positioning brackets 301. Since the size of the specimen is fixed, the distance between the two sets of positioning brackets 301 in the first direction x is measured by the sensor to determine whether the placement position of the plate is correct. If the position of the plate is correct, the two sets of positioning brackets 301 located in the second direction y will move synchronously toward the plate direction so that all four sides of the plate are pushed so that it is accurately positioned on the support plate assembly 6. If the position of the plate is misaligned, the supported plate can be rotated by the support plate assembly 6 to rotate the plate to the correct position. When the positioning brackets 301 in the first direction x and the second direction y are both pressed onto the plate, the edge banding is pulled to one end of the plate by the movable block 305 and the fixed block 306 set on one side of the positioning bracket 301, and the edge banding is pressed toward one side of the plate, so that the edge banding can be fitted onto the side edge of the plate, thereby realizing automatic gluing and sealing of the cut surface without manual operation, saving a lot of manpower.

[0030] See also Figure 4 and Figure 6 In a preferred embodiment of the present invention, the positioning frame 3 also includes a take-up wheel 307, a pulley driver 308, a feed wheel 309 and a center wheel 310. The two groups of the take-up wheels 307 are fixedly mounted on one side of the solid block 306, and the take-up wheels 307 are equipped with a pulley driver 308. The two groups of the take-up wheels 307 are used to clamp and convey the edge banding. The feed wheel 309 and the center wheel 310 are fixedly mounted on one end of the positioning bracket 301 for inputting the edge banding to be cut into the take-up wheels 307.

[0031] In actual application of this embodiment, the edge banding tape to be bonded is wound around the feeding wheel 309, and the edge banding tape passes through the central wheel 310 and is clamped between the two sets of take-up wheels 307, and the pulley driver 308 on the take-up wheels 307 controls the two sets of take-up wheels 307 to rotate in opposite directions, so that the edge banding tape is transported from the take-up wheels 307 toward the side of the solid block 306, thereby ensuring the continuous feeding of the edge banding tape.

[0032] See also Figure 6 and Figure 7 In a preferred embodiment of the present invention, the positioning structure 3 also includes a knife holder 311, a blade 312, a supporting cylinder 313 and a crimping shell 314. The knife holder 311 is positioned between the solid block 306 and the tape reel 307. The knife holder 311 is slidably provided with a blade 312, and the blade 312 is used to cut the edge banding output from one side of the tape reel 307. The supporting cylinder 313 is fixedly assembled on the positioning bracket 301, and a crimping shell 314 is movably assembled at one end of the supporting cylinder 313. The crimping shell 314 is arranged toward the side of the bonding groove 302, and is used to press the edge banding toward one side of the plate.

[0033] In actual application of this embodiment, the knife holder 311 is set between the solid block 306 and the belt wheel 307, so that the edge banding tape transported to one end of the solid block 306 by the belt wheel 307 can be cut by the blade 312 to cut out the edge banding tape that matches the edge length of the plate, and the edge banding tape is clamped in the pulley assembly 4 on the movable block 305 and the solid block 306, and the supporting cylinder 313 set at one end of the positioning bracket 301 can control the reciprocating sliding of the crimping shell 314. When the crimping shell 314 slides toward one end of the bonding groove 302, the pull belt assembly 4 at one end of the movable block 305 and the fixed block 306 can be pushed toward one end of the plate at the same time, and the edge band located between the two sets of pull belt assemblies 4 moves toward the plate at the same time during the pushing process. When the edge band is attached to the plate, the two sets of pull belt assemblies 4 loosen the edge band and crimp the edge band to the side edge of the plate through the crimping shell 314, so that the edge band is bonded to the cut surface end of the plate.

[0034] In one case in this embodiment, the length and height dimensions of the crimping shell 314 match the size of the plate specimen to be edge-sealed, and the crimping shell 314 adopts a single-mouth box-type structure, which can press the edge banding that exceeds the edge of the plate onto the top and bottom surfaces of the plate during movement, thereby ensuring the sealing effect of the edge banding.

[0035] See also Figure 6In a preferred embodiment of this embodiment, the positioning frame 3 also includes a main driver 315 and a main screw rod 316. The main driver 315 is fixedly mounted on the base plate 201, and one end thereof is equipped with a main screw rod 316. The main screw rod 316 is engaged with the positioning bracket 301 and is used to drive the positioning bracket 301 to slide in a directional manner on the base plate 201.

[0036] In actual application of this embodiment, the main driver 315 is fixedly arranged on the base plate 201, and can drive the main screw rod 316 to rotate in the driving state, so that the positioning bracket 301 engaged with the main screw rod 316 can be directional moved on the base plate 201 along the first direction x or the second direction y.

[0037] See also Figure 5 In a preferred embodiment of the present invention, the pulling belt assembly 4 includes a guide rail 401, a slide 402, a through hole 403, a clamp cylinder 404 and a clip 405. The guide rail 401 is fixedly assembled at the bottom of the movable block 305 and the fixed block 306, the slide 402 is slidably assembled at the bottom of the guide rail 401 and is linked to the crimping shell 314. The slide 402 is provided with a through hole 403 on the side facing the bonding groove 302, and the through hole 403 is used to pass through the edge banding. The other end of the slide 402 is also provided with a clamp cylinder 404, and the clamp cylinder 404 is equipped with a clip 405, which is slidably assembled in the through hole 403 for clamping the edge banding.

[0038] In actual application of this embodiment, the movable block 305 can slide along the bonding groove 302 under the drive of the screw rod 304, and when it slides to one end of the solid block 306, the end of the edge banding can be clamped by the clip 405 on the movable block 305. At this time, the clip 405 on one side of the solid block 306 is in a loose state, and the rotation of the belt reel 307 makes the edge banding slide through the through hole 403 on one side of the solid block 306 and follow the movable block 305 to move to the extreme position. When the movable block 305 stops moving, the clip 405 on one side of the solid block 306 will seal the edge. The band is clamped, and at this time the blade 312 at one end of the tool holder 311 can cut the edge band, only clamping a section of edge band that matches the length of the plate at the current position, and when the crimping shell 314 is pushed toward one side of the plate, the slide 402 moves synchronously with the crimping shell 314, so that the two groups of through-holes 403 holding the edge band pass through the bonding groove 302 at the same time and move toward one side of the plate. When the edge band is crimped onto the plate, the two groups of clips 405 loosen the edge band and the slide 402 automatically returns to its initial position, so that the crimping shell 314 crimps the edge band onto the plate.

[0039] See also Figure 7In a preferred embodiment of the present invention, the pressure plate assembly 5 includes a pressure plate cylinder 501, a flip angle frame 502, a pressure plate 503 and a connecting arm 504. The pressure plate cylinder 501 is fixedly arranged on the beam frame 303, and the flip angle frame 502 is rotatably assembled on the positioning bracket 301. One end of the flip angle frame 502 is fixedly assembled with the pressure plate 503, and the other end of the flip angle frame 502 is movably connected to the pressure plate cylinder 501 through the connecting arm 504.

[0040] When the pressing plate 503 is rotated to the front end position of the positioning bracket 301, the components on one side of the positioning bracket 301 can be blocked from passing through the bonding groove 302 and abutting the plate. Since the bonding groove 302 is at the same height as the plate and the slot size is larger than the thickness of the plate, the pressing plate 503 can clamp the plate during the positioning process. When the edge banding needs to be pasted, the positioning bracket 301 is driven to move in the reverse direction for a distance, and then the pressing plate 503 is flipped upward, and the positioning bracket 301 is then attached to one side of the plate. Since the other two sides of the plate are clamped by the other two sets of pressing plates 503, the position of the plate remains unchanged when the edge banding is pasted, so as to achieve accurate positioning and pasting of the edge banding.

[0041] See also Figure 8 In a preferred embodiment of the present invention, the plate cutting and edge banding machine also includes a support assembly 6, which includes a support cylinder 601, a support frame 602, a support tray 603 and a support motor 604. The support cylinder 601 is fixedly arranged at the bottom of the base plate 201, and one end of the support cylinder 601 is equipped with a support frame 602. The support frame 602 is matched with the discharge trough 202, and the support tray 603 is rotatably installed on the support frame 602. The support motor 604 is assembled and connected to the support tray 603 for controlling the rotation direction of the support tray 603.

[0042] In actual application of this embodiment, when the plate falls onto the supporting tray 603, the distance between the two sets of positioning brackets 301 located in the first direction x is detected by the sensor. When the position of the plate is misplaced, the supporting tray 603 is driven to rotate by the supporting motor 604, which can drive the plate to rotate 90° so that it rotates to the correct position. When the edge sealing of the plate is completed, the support cylinder 601 can be driven to rotate to rotate the support frame 602, so that the plate supported on the supporting tray 603 can fall through the discharge chute 202, which is convenient for recycling the plate.

[0043] The above embodiment of the present invention provides a plate cutting and edge banding machine. By arranging four positioning frames 3 on the base plate 201, the cut plate specimens can be accurately positioned and clamped, and the cut edges can be bonded with edge banding tapes, eliminating the tedious steps of manual pasting and ensuring that the edge banding is completed immediately after the specimens are cut.

[0044] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A plate cutting and edge banding machine, characterized in that: The plate cutting and edge banding machine comprises: The cutting component includes a support plate, a cutting pallet, a cutting saw and a feed chute. The feed chute is opened in the middle of the support plate, and the cutting pallet is fixedly mounted on the support plate. The feed chute is set at one end of the cutting pallet; A bottom plate assembly, the bottom plate assembly comprising a bottom plate and a discharge trough, the bottom plate being fixedly assembled at the bottom of the support plate, and a discharge trough being opened in the middle of the bottom plate, the discharge trough being aligned with the feed trough; Positioning frame, the four positioning frames are movably assembled on the surface of the bottom plate, and the four positioning frames are respectively arranged on the four sides of the discharge trough, the positioning frame includes a positioning bracket, an adhesive groove, a beam frame, a screw rod, a movable block and a solid block, the positioning bracket is slidably assembled on the bottom plate, the positioning bracket is provided with an adhesive groove on the side facing the discharge trough, the positioning bracket is fixedly assembled with a beam frame, the screw rod is arranged parallel to the adhesive groove, the movable block is engaged and assembled on the screw rod and slidably arranged at one end of the adhesive groove, the solid block is fixedly arranged at the other end of the adhesive groove, and the movable block and the solid block are both equipped with a traction assembly; The pulling belt assembly is assembled on the movable block and the fixed block, and is used to position and clamp the edge banding required for the edge banding of the plate; The plate cutting and edge banding machine further comprises a pressing plate assembly, which is movably arranged at one end of the positioning bracket and is used for movably contacting the plate specimen to be edge banded; The positioning structure also includes a knife holder, a blade, a supporting cylinder and a pressing shell. The knife holder is positioned between the solid block and the tape reel. A blade is slidably provided on the knife holder. The blade is used to cut the edge band outputted from one side of the tape reel. The supporting cylinder is fixedly assembled on the positioning bracket. A pressing shell is movably assembled at one end of the supporting cylinder. The pressing shell is arranged toward one side of the bonding groove and is used to press the edge band toward one side of the plate. The pulling belt assembly includes a guide rail, a slide, a through-hole, a clamp cylinder and a clip. The guide rail is fixedly assembled at the bottom of the movable block and the fixed block. The slide is slidably assembled at the bottom of the guide rail and is linked to the crimping shell. The slide is provided with a through-hole on the side facing the bonding groove. The through-hole is used to pass through the edge banding. A clamp cylinder is also provided at the other end of the slide. A clip is assembled on the clamp cylinder, and the clip is slidably assembled in the through-hole for clamping the edge banding.

2. The plate cutting and edge banding machine according to claim 1, characterized in that: The positioning structure also includes a take-up wheel, a pulley driver, a feed wheel and a center wheel. The two groups of take-up wheel fixed axes are assembled on one side of the solid block, and the take-up wheel is equipped with a pulley driver. The two groups of take-up wheels are used to clamp and convey the edge banding. The feed wheel and the center wheel fixed axes are assembled on one end of the positioning bracket for inputting the edge banding to be cut into the take-up wheel.

3. The plate cutting and edge banding machine according to claim 1, characterized in that: The positioning structure also includes a main driver and a main screw. The main driver is fixedly mounted on the base plate, and one end of the main driver is equipped with a main screw. The main screw is engaged with the positioning bracket to drive the positioning bracket to slide in a directional manner on the base plate.

4. The plate cutting and edge banding machine according to claim 1, characterized in that: The pressure plate assembly includes a pressure plate cylinder, a flip angle frame, a pressure plate and a connecting arm. The pressure plate cylinder is fixedly arranged on the beam frame, and the flip angle frame is rotatably assembled on the positioning bracket. One end of the flip angle frame is fixedly assembled with a pressure plate, and the other end of the flip angle frame is movably connected to the pressure plate cylinder through a connecting arm.

5. The plate cutting and edge banding machine according to claim 1, characterized in that: The plate cutting and edge banding machine also includes a support plate assembly, which includes a support plate cylinder, a support plate frame, a support tray and a support motor. The support plate cylinder is fixedly arranged at the bottom of the base plate, and one end of the support plate cylinder is equipped with a support plate frame. The support plate frame is matched with the discharge chute, and the support tray is rotatably assembled on the support plate frame. The support motor is assembled and connected to the support tray for controlling the rotation direction of the support tray.

Citation Information

Patent Citations

  • Woodworking edge sealing equipment

    CN110539384A

  • Shaving board cutting and welting device

    CN117754682A