High-speed full-automatic linear edge bonding machine

By using technologies such as magnetic levitation single-head tracking module and servo control system, the problems of low efficiency, board damage and time-consuming parameter adjustment of existing edge banding machines have been solved, realizing efficient and precise edge banding processing, and improving production efficiency and product quality.

CN224170040UActive Publication Date: 2026-04-28JIANGSU KANGXUN CNC EQUIP TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU KANGXUN CNC EQUIP TECH CO LTD
Filing Date
2025-04-21
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing fully automatic straight edge banding machines suffer from problems such as low work efficiency, risk of damaging the board material, frequent tool replacement, and time-consuming and labor-intensive parameter adjustments during edge banding operations, making it difficult to meet the needs of high-efficiency production.

Method used

It adopts a magnetic levitation single-head tracking module, servo control system, laser edge sealing technology and automatic adjustment function, combined with steel pressure beam and servo motor drive, to realize automatic measurement, switching and adjustment of edge sealing parameters, thereby improving processing accuracy and efficiency.

Benefits of technology

It improves the precision and efficiency of edge banding, reduces the risk of board damage, minimizes manual intervention, and enhances production stability and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a high-speed full-automatic linear edge bonding machine which comprises a rack assembly. A feeding guide module, a pre-milling module, a double-channel skip car, a gluing module, a laser module, a cutting and conveying belt module, a pressing and pasting module, a rough trimming module, a servo fine trimming module, a servo edge scraping module, a magnetic suspension flush module, a magnetic suspension single-head tracking module, a flat scraping module and a polishing module are sequentially installed on the inner side wall of the rack assembly from right to left. A steel pressing beam assembly is fixedly connected to the rack assembly, and a plurality of spraying modules are installed on the top of the rack assembly. The thickness of the plate is automatically measured, the height of the pressing beam is adjusted, the problem that the edge sealing quality is affected due to different heights of edge sealing belts machined by the trimming scraper unit when the plates with different thicknesses and errors work at the same pressing beam height is avoided, and the edge sealing machining precision is effectively improved; the thickness of the edge sealing belt is automatically detected, the unit machining amount of trimming, edge scraping, flat scraping and the like is automatically adjusted in real time, and it is guaranteed that plate machining is in the best effect.
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Description

Technical Field

[0001] This utility model relates to an edge banding machine, and more particularly to a high-speed fully automatic linear edge banding machine, belonging to the field of CNC edge banding machine technology. Background Technology

[0002] Fully automatic edge banding machines, widely used CNC woodworking machinery in panel furniture manufacturing, have achieved mechanization, automation, and intelligence in edge banding operations. Edge banding is a crucial step in the panel furniture production process, directly impacting product quality, lifespan, grade, price, and market popularity. Edge banding not only optimizes the visual appeal of panel furniture but also extends its lifespan, prevents the release of harmful gases from the furniture panels, and thus enhances the environmental friendliness of the furniture.

[0003] With rising labor costs and increasing difficulty in recruiting workers, the working efficiency of mainstream fully automatic straight-line edge banding machines on the market is gradually failing to meet customer needs. Research has found that the working efficiency of mainstream fully automatic edge banding machines is mainly affected by the following factors:

[0004] 1. In edge banding operations, a trimming module is needed to remove excess edge banding tape from the front and rear ends of the board. In most mainstream edge banding machines on the market, the trimming and end trimming components are arranged at a 45° angle, driven by a cylinder, with the trimming and end trimming components moving up and down in a coordinated and alternating manner to complete the operation. However, the time cycle of this alternating cycle limits the conveyor speed of the conveyor chain. Because the trimming and end trimming components are arranged at a 45° angle, the cutting device generates a vertical component that impacts the board when it approaches the board. If the continuous feeding interval is too small or the conveying speed is too high, the board may be damaged, or the trimming module may be displaced or even damaged.

[0005] 2. During edge banding operations, for edge banding tapes with a thickness ≥1mm, the tracking function needs to be activated to ensure rounded and aesthetically pleasing edges of the panels and to avoid the risk of hand injuries. Currently, mainstream edge banding machines employ upper and lower contour tracking mechanisms. Each mechanism is driven by a cylinder to swing the milling cutter platform, which in turn causes the milling cutter's contour wheel to trace a 90° radius (R) along the right-angled edge of the panel, thus forming the R-angle. When repairing the lower corner of the panel, the tail of the panel must have passed the milling cutter's axis before the cylinder can drive the milling cutter platform to follow. Therefore, high requirements are placed on the speed of the milling cutter platform and the holding pressure of the contour wheel on the panel, which limits the panel conveying speed in tracking mode.

[0006] Third, in edge banding operations, some boards require both rounded and diamond-cut edges. Since these two processes require different cutting tools, tool changes are necessary before work can continue, leading to low efficiency. Furthermore, banding boards of different materials, thicknesses, and colors, as well as edge banding tapes of varying thicknesses, requires manual adjustment of various machine parameters, which is time-consuming and labor-intensive.

[0007] Therefore, a high-speed fully automatic straight edge banding machine is proposed. Utility Model Content

[0008] In view of this, the present invention provides a high-speed fully automatic straight edge banding machine to solve or alleviate one of the technical problems existing in the prior art, and at least provides a beneficial option.

[0009] The technical solution of this utility model embodiment is implemented as follows: A high-speed fully automatic straight edge banding machine includes a frame assembly. The inner sidewall of the frame assembly is sequentially equipped with a feeding guide module, a pre-milling module, a dual-channel material cart, an adhesive coating module, a laser module, a cutting and feeding belt module, a pressing module, a rough finishing module, a servo fine finishing module, a servo scraping module, a magnetic levitation head-aligning module, a magnetic levitation single-head tracking module, a flat scraping module, and a polishing module from right to left. A steel pressure beam assembly is fixedly connected to the frame assembly, and several spraying modules are installed on the top of the frame assembly.

[0010] The rack assembly includes a dust extraction port, a power distribution box, a heat sink, and a fixed platform; the front surface of the power distribution box is equipped with a heat sink, and the top of the power distribution box is fixedly connected to the fixed platform, which has a dust extraction port on its top.

[0011] A further preferred embodiment: the magnetic levitation single-head tracking module includes a second magnetic levitation mechanism, a chamfering mechanism, a rotary motor, a seventh servo motor, an eighth servo motor, and a ninth servo motor; the top of the second magnetic levitation mechanism is equipped with a chamfering mechanism, and the rotary motor, the seventh servo motor, the eighth servo motor, and the ninth servo motor are mounted on the chamfering mechanism.

[0012] A further preferred embodiment: the feeding guide module includes a first mounting base, a first servo motor, a straightedge, and a measuring lens group; the first mounting base is equipped with the first servo motor, the top of the first mounting base is rotatably connected to the straightedge, and the measuring lens group is mounted on the straightedge.

[0013] A further preferred embodiment: the laser module includes a second mounting base and a laser lens; the laser lens is mounted on the second mounting base.

[0014] A further preferred embodiment: the tape feeding module includes a third mounting base, a thickness measuring mechanism, a tape feeding mechanism, and a tape cutting mechanism; the thickness measuring mechanism, the tape feeding mechanism, and the tape cutting mechanism are mounted on the third mounting base.

[0015] A further preferred embodiment: the pressing module includes a fourth mounting base, a second servo motor, a large pressing roller, a tapered roller, and a rubber roller; the second servo motor is mounted on the fourth mounting base, and the large pressing roller, the tapered roller, and the rubber roller are rotatably connected to the top of the fourth mounting base.

[0016] A further preferred embodiment: the roughing module includes a roughing mechanism and a roughing motor; the roughing mechanism is equipped with a roughing motor.

[0017] A further preferred embodiment: the servo precision repair module includes a precision repair mechanism, a third servo motor, a spindle motor, and a fourth servo motor; the precision repair mechanism is equipped with the third servo motor, the spindle motor, and the fourth servo motor.

[0018] A further preferred embodiment: the servo scraping module includes a scraping mechanism, a fifth servo motor, and a sixth servo motor; the fifth servo motor and the sixth servo motor are mounted on the scraping mechanism.

[0019] A further preferred embodiment: the magnetic levitation head-aligning module includes a fifth mounting base, a first magnetic levitation mechanism, a head-aligning mechanism, and a tail-aligning mechanism; the first magnetic levitation mechanism, the head-aligning mechanism, and the tail-aligning mechanism are mounted on the fifth mounting base.

[0020] A further preferred embodiment: the steel pressure beam assembly includes a steel pressure beam and pressure rollers; pressure rollers are uniformly installed on the bottom of the steel pressure beam.

[0021] The present invention has the following advantages due to the adoption of the above technical solution:

[0022] 1. This utility model automatically measures the thickness of the plate and adjusts the height of the pressure beam, avoiding the use of the same pressure beam height for plates with different thicknesses and errors, which would result in inconsistent edge banding heights after processing by the trimming and scraping unit, affecting the edge banding quality and effectively improving the edge banding processing accuracy.

[0023] 2. This utility model automatically detects the thickness of the edge banding tape and automatically adjusts the processing amount of trimming, scraping, and flat scraping units in real time to ensure that the processing of the board is consistent and achieves the best effect under different edge banding tape thickness errors.

[0024] 3. This utility model automatically adjusts the amount of glue mixed by the glue machine and automatically switches the edge sealing tape;

[0025] 4. This utility model automatically identifies the substrate of the board, so as to achieve the purpose of servo real-time adjustment of the amount of glue applied;

[0026] 5. The edge banding machine with servo control installed in the bed of this utility model adopts a feeding guide module with 30° servo adjustment of the extension and retraction of the feeding guide ruler. Compared with the vertical adjustment feeding module, it effectively reduces the rebound of the guide ruler when the board hits the feeding guide ruler during the feeding process, making the feeding guide function more stable and reliable.

[0027] 6. This utility model uses an externally sourced linear pre-milling module (upgraded to hydraulic installation, standard configuration includes a 65mm pre-milling cutter, motor power increased to 3.7kw, and speed increased to approximately 9000 rpm), resulting in smoother milling of sheet metal.

[0028] 7. This utility model uses servo control to control the glue dispensing amount. According to the preset glue dispensing amount value of the board, the glue dispensing amount can be switched with one click when switching boards.

[0029] 8. This utility model uses laser edge sealing, which eliminates glue lines and has better performance than EVA and PUR. It is also more environmentally friendly. Laser edge sealing does not require preheating or maintaining glue temperature, and can be used immediately after opening.

[0030] 9. The pressing device of this utility model is driven by a servo motor, which can achieve zero glue lines, making the sealing board more beautiful and preventing the edge tape from falling off.

[0031] 10. This utility model adopts servo-controlled tool adjustment for fine finishing and edge scraping, and has the function of servo-controlled tool switching. No manual adjustment is required when switching between R-angle and diamond angle.

[0032] 11. This utility model features magnetic levitation horizontal alignment (30m / min) without damaging the board, improving product quality and production efficiency; magnetic levitation tracking (tracking speed 30m / min) with rounded chamfers further enhances product quality and production efficiency.

[0033] 12. This utility model adopts a steel rail and steel beam and a 38-wheel narrow plate edge banding machine, which has strong versatility and meets the requirements of the extended machine body for frame rigidity and stability.

[0034] The above overview is for illustrative purposes only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments, and features described above, further aspects, embodiments, and features of the present invention will become readily apparent from the accompanying drawings and the following detailed description. Attached Figure Description

[0035] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0036] Figure 1 This is a structural diagram of the present invention;

[0037] Figure 2 This is a front view of the present invention.

[0038] Figure 3 This is a structural diagram of the frame assembly of this utility model;

[0039] Figure 4 This is a structural diagram of the feeding guide module of this utility model;

[0040] Figure 5 This is a structural diagram of the pre-milling module of this utility model;

[0041] Figure 6 This is a structural diagram of the glue coating module and the cutting conveyor module of this utility model;

[0042] Figure 7 This is a structural diagram of the laser module of this utility model;

[0043] Figure 8 This is a structural diagram of the pressing module of this utility model;

[0044] Figure 9 This is a structural diagram of the roughing module of this utility model;

[0045] Figure 10 This is a structural diagram of the servo precision repair module of this utility model;

[0046] Figure 11 This is a structural diagram of the servo scraping module of this utility model;

[0047] Figure 12 This is a structural diagram of the magnetic levitation head-aligning module of this utility model;

[0048] Figure 13 This is a structural diagram of the magnetic levitation single-head tracking module of this utility model;

[0049] Figure 14 This is a structural diagram of the polishing module of this utility model;

[0050] Figure 15 This is a structural diagram of the steel pressure beam assembly of this utility model.

[0051] Reference numerals: 1. Frame assembly; 101. Dust suction port; 102. Power distribution box; 103. Heat sink; 104. Fixed platform; 2. Feeding guide module; 201. First mounting base; 202. First servo motor; 203. Straightedge; 204. Measuring lens group; 3. Pre-milling module; 4. Dual-channel material cart; 5. Glue application module; 6. Laser module; 601. Second mounting base; 602. Laser lens; 7. Belt cutting and feeding module; 701. Third mounting base; 702. Thickness measuring mechanism; 703. Belt feeding mechanism; 704. Belt cutting mechanism; 8. Pressing module; 801. Fourth mounting base; 802. Second servo motor; 803. Large pressing roller; 804. Tapered roller; 805. Rubber roller; 9. Rough finishing module; 901. Rough finishing mechanism; 902. Rough finishing motor; 10. Servo fine finishing module; 10 01. Finishing Mechanism; 1002. Third Servo Motor; 1003. Spindle Motor; 1004. Fourth Servo Motor; 11. Servo Scraping Module; 1101. Scraping Mechanism; 1102. Fifth Servo Motor; 1103. Sixth Servo Motor; 12. Magnetic Levitation Head-Clearing Module; 1201. Fifth Mounting Base; 1202. First Magnetic Levitation Mechanism; 1203. Head-Clearing Mechanism; 1204. Tail-Clearing Mechanism; 13. Magnetic Levitation Single-Head Tracking Module; 1301. Second Magnetic Levitation Mechanism; 1302. Chamfering Mechanism; 1303. Rotary Motor; 1304. Seventh Servo Motor; 1305. Eighth Servo Motor; 1306. Ninth Servo Motor; 14. Flat Scraping Module; 15. Polishing Module; 16. Steel Pressure Beam Assembly; 1601. Steel Pressure Beam; 1602. Pressure Roller; 17. Spray Module. Detailed Implementation

[0052] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of this invention. Therefore, the drawings and description are considered exemplary in nature and not restrictive.

[0053] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0054] like Figures 1-15 As shown, this utility model embodiment provides a high-speed fully automatic straight edge banding machine, including a frame assembly 1. The inner sidewall of the frame assembly 1 is sequentially equipped with a feeding guide module 2, a pre-milling module 3, a dual-channel material cart 4, an adhesive application module 5, a laser module 6, a cutting and feeding belt module 7, a pressing module 8, a rough trimming module 9, a servo fine trimming module 10, a servo scraping module 11, a magnetic levitation head-aligning module 12, a magnetic levitation single-head tracking module 13, a flat scraping module 14, and a polishing module 15. A steel pressure beam assembly 16 is fixedly connected to the frame assembly 1, and several spraying modules 17 are installed on the top of the frame assembly 1.

[0055] The magnetic levitation end-cutting module 12 includes a fifth mounting base 1201, a first magnetic levitation mechanism 1202, an end-cutting mechanism 1203, and an end-cutting mechanism 1204. The first magnetic levitation mechanism 1202, the end-cutting mechanism 1203, and the end-cutting mechanism 1204 are mounted on the fifth mounting base 1201. The main structure of the magnetic levitation end-cutting module 12 includes a horizontal end-cutting hanger, an end-cutting assembly (right), an end-cutting assembly (left), a cylinder, and a solenoid valve control system. The horizontal end-cutting hanger is connected to the structural steel track beam via left and right fixed feet. The left and right end-cutting components, mounted on the magnetic levitation device, allow for precise start-stop movement to accurately position the track cutting action, preventing damage to the sheet metal.

[0056] The magnetic levitation single-head tracking module 13 includes a second magnetic levitation mechanism 1301, a chamfering mechanism 1302, a rotary motor 1303, a seventh servo motor 1304, an eighth servo motor 1305, and a ninth servo motor 1306. The chamfering mechanism 1302 is mounted on the top of the second magnetic levitation mechanism 1301, and the rotary motor 1303, the seventh servo motor 1304, the eighth servo motor 1305, and the ninth servo motor 1306 are mounted on the chamfering mechanism 1302. The magnetic levitation single-head tracking module 13 includes an X-axis linear module, a Z-axis linear module, a head rotation axis, an axis for adjusting the arc size, and an axis for shifting and adjusting the trimming amount. The X-axis drive relies on magnetic levitation to drive the machine head to move left and right, while the Z-axis drive relies on a lead screw to drive the machine head to move up and down. The machine head is mounted on a rotary motor 1303 and can rotate 360 ​​degrees, realizing the function of chamfering four corners with one machine head. The size of the chamfer radius can be adjusted by the horizontal servo mechanism to achieve the desired result. The tracking spindle is equipped with a special tracking tool, which can chamfer arcs and arc angles. The shifting servo mechanism can be adjusted when switching.

[0057] In this embodiment, specifically: the feeding guide module 2 includes a first mounting base 201, a first servo motor 202, a ruler 203, and a measuring lens group 204; the first servo motor 202 is mounted on the first mounting base 201, the ruler 203 is rotatably connected to the top of the first mounting base 201, and the measuring lens group 204 is mounted on the ruler 203.

[0058] In this embodiment, specifically: the laser module 6 includes a second mounting base 601 and a laser lens 602; the laser lens 602 is mounted on the second mounting base 601, the edge sealing tape and coating of the laser edge sealing are the same color, and the edge sealing can achieve no glue line, the effect is better than EVA and PUR, and it is more environmentally friendly. Laser edge sealing does not require preheating, it can be used as soon as it is turned on, and it does not require energy to maintain the glue temperature, which is more energy-efficient.

[0059] In this embodiment, specifically: the tape cutting and feeding module 7 includes a third mounting base 701, a thickness measuring mechanism 702, a tape feeding mechanism 703, and a tape cutting mechanism 704; the third mounting base 701 is equipped with the thickness measuring mechanism 702, the tape feeding mechanism 703, and the tape cutting mechanism 704, and the tape cutting and feeding module is equipped with a servo PUR glue pot, which can automatically adjust the amount of glue according to the information transmitted from the lens of the material of the board. The thickness measuring mechanism 702 is equipped with a sensor switch for measuring the thickness of the tape. The thickness of the tape is sensed and transmitted to the system, and the servo module automatically adjusts the position of the blade to achieve intelligent edge sealing and chamfering.

[0060] In this embodiment, specifically: the pressing module 8 includes a fourth mounting base 801, a second servo motor 802, a large pressing roller 803, a tapered roller 804, and a rubber roller 805; the second servo motor 802 is mounted on the fourth mounting base 801, and the large pressing roller 803, the tapered roller 804, and the rubber roller 805 are rotatably connected to the top of the fourth mounting base 801. After pressing is started, the large pressing roller 803 rotates under the drive of the motor. Due to the gear meshing speed reduction and distance increase device, the large pressing roller rotates more smoothly; at the same time, the cylinder of the large pressing roller is pushed out first, and the large roller is tilted into place; at the same time, the air inlet block vents air to push the copper drum out and the small pressing roller is tilted into place under force. The board first passes through the large pressing roller 803, and then passes through the straight pressing roller, the tapered roller 804, and the rubber roller 805 in sequence. After the board passes through each pressing roller, the pressing roller will automatically reset.

[0061] In this embodiment, specifically: the rough repair module 9 includes a rough repair mechanism 901 and a rough repair motor 902; the rough repair mechanism 901 is equipped with a rough repair motor 902, and the rough repair is divided into an upper rough repair part and a lower rough repair part, which mainly repairs the excess edge strips on the upper and lower edges of the plate, so as to remove the excess edge strips in the subsequent fine repair process.

[0062] In this embodiment, specifically: the servo finishing module 10 includes a finishing mechanism 1001, a third servo motor 1002, a spindle motor 1003, and a fourth servo motor 1004; the finishing mechanism 1001 is equipped with the third servo motor 1002, the spindle motor 1003, and the fourth servo motor 1004. The finishing is divided into an upper finishing part and a lower finishing part, which mainly finishes the arc corners or diamond corners of the upper and lower edges of the material. The amount of edge finishing is adjusted by adjusting the horizontal and diagonal servo movements simultaneously, without manual adjustment. The size of the arc is adjusted by adjusting the horizontal servo to cause the finishing tool to move back and forth to achieve the arc size, without manual adjustment. The device has three gear positions, allowing for the repair of rounded corners and diamond corners. The slanted servo motion allows for gear adjustment. The wheel support is made of thick material and has a stable structure, preventing wavy patterns caused by polarization. The upper and lower precision repair sections of the plate impact wheel have springback to ensure sealing quality. The frame is made of steel and assembled to ensure no deformation. The device also features a tool retraction function, allowing the tool to retract when precision repair is not needed. When precision repair is required, the tool retraction cylinder closes and is reset by a spring.

[0063] In this embodiment, specifically: the servo scraping module 11 includes a scraping mechanism 1101, a fifth servo motor 1102 and a sixth servo motor 1103; the scraping mechanism 1101 is equipped with the fifth servo motor 1102 and the sixth servo motor 1103, and the scraping is divided into an upper scraping part and a lower scraping part, which mainly repairs the leftover material of the upper and lower arc corners or diamond corners left after the fine finishing of the board.

[0064] In this embodiment, specifically: the steel pressure beam assembly 16 includes a steel pressure beam 1601 and pressure rollers 1602; pressure rollers 1602 are evenly installed on the bottom of the steel pressure beam 1601.

[0065] In this embodiment, specifically: the rack assembly 1 includes a dust suction port 101, a power distribution box 102, a heat sink 103, and a fixed platform 104; the front surface of the power distribution box 102 is equipped with a heat sink 103, and the top of the power distribution box 102 is fixedly connected to the fixed platform 104, and the top of the fixed platform 104 is provided with a dust suction port 101.

[0066] In operation, the workpiece is pressed against the feeding guide module 2. Simultaneously, vision and sensing devices measure the thickness, color, and material of the sheet material. Feedback is sent to the system, and the steel pressure beam 1601 rises to the height of the sheet material. The PUR glue pot door adjusts the glue amount according to the sheet material. The sheet material then enters between the steel pressure beam 1601 and the steel guide beam conveyor assembly, driven by the chain block. Upon reaching the spray device (separator spray), the upper and lower nozzles open, spraying a separator onto the edge-sealing area of ​​the sheet material to prevent glue from sticking to the surface and making cleaning difficult. The edge-sealed sheet material enters the pre-milling module 3, where a milling cutter mills the material to the required dimensions. After pre-milling, a heating lamp is turned on to heat the edge-sealed substrate. The gluing module 5 applies the glue, and the laser module 6 melts the back coating functional layer. When the glued sheet material passes through the cutting and feeding module 7, the edge-sealing tape is fed in by the dual-channel material cart 4. The cutting and feeding module 7 feeds the material according to the required dimensions. The edge banding tape is cut with a conveyor belt. The pressing module 8 operates, and the pressing rollers press the two together under the action of the cylinder. The rough trimming module 9 and the servo fine trimming module 10 respectively complete the rough trimming and fine trimming of the upper and lower edges of the edge banding board. The board is transported to the servo scraping module 11 to complete the further trimming of the upper and lower edges of the transported board and scrape off the edge banding tape that is higher than the upper and lower planes of the board. The head and tail trimming mechanisms of the magnetic levitation head trimming module 12 cut off the excess edge banding tape that is longer than the board at the front and rear ends of the board when the board reaches the module position. The magnetic levitation single-head tracking module 13 moves up and down to complete the milling operation of the front and rear edges of the edge banding board. The flat scraping module 14 scrapes off the excess glue on the upper and lower planes of the transported edge banding board. The spraying device works again to clean the edge banding position of the board. The polishing module 15 polishes and cleans the upper and lower long edges of the edge banding board to enhance the edge banding effect.

[0067] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any person skilled in the art can easily conceive of various variations or substitutions within the technical scope disclosed in this utility model, and these should all be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.

Claims

1. A high-speed fully automatic straight edge banding machine, comprising a frame assembly (1), characterized in that: The inner wall of the frame assembly (1) is sequentially equipped with a feeding guide module (2), a pre-milling module (3), a dual-channel material cart (4), an adhesive coating module (5), a laser module (6), a cutting and feeding belt module (7), a pressing module (8), a roughing module (9), a servo fine-tuning module (10), a servo scraping module (11), a magnetic levitation head-aligning module (12), a magnetic levitation single-head tracking module (13), a flat scraping module (14), and a polishing module (15) from right to left. A steel pressure beam assembly (16) is fixedly connected to the frame assembly (1), and several spraying modules (17) are installed on the top of the frame assembly (1). The magnetic levitation end-aligning module (12) includes a fifth mounting base (1201), a first magnetic levitation mechanism (1202), an end-aligning mechanism (1203), and an end-aligning mechanism (1204); the first magnetic levitation mechanism (1202), the end-aligning mechanism (1203), and the end-aligning mechanism (1204) are mounted on the fifth mounting base (1201); The magnetic levitation single-head tracking module (13) includes a second magnetic levitation mechanism (1301), a chamfering mechanism (1302), a rotary motor (1303), a seventh servo motor (1304), an eighth servo motor (1305), and a ninth servo motor (1306); the chamfering mechanism (1302) is mounted on the top of the second magnetic levitation mechanism (1301), and the rotary motor (1303), the seventh servo motor (1304), the eighth servo motor (1305), and the ninth servo motor (1306) are mounted on the chamfering mechanism (1302).

2. The high-speed fully automatic straight edge banding machine according to claim 1, characterized in that: The feeding guide module (2) includes a first mounting base (201), a first servo motor (202), a ruler (203), and a measuring lens group (204); the first mounting base (201) is equipped with the first servo motor (202), the ruler (203) is rotatably connected to the top of the first mounting base (201), and the measuring lens group (204) is installed on the ruler (203).

3. The high-speed fully automatic straight edge banding machine according to claim 1, characterized in that: The laser module (6) includes a second mounting base (601) and a laser lens (602); the laser lens (602) is mounted on the second mounting base (601).

4. The high-speed fully automatic straight edge banding machine according to claim 1, characterized in that: The tape cutting and feeding module (7) includes a third mounting base (701), a thickness measuring mechanism (702), a tape feeding mechanism (703), and a tape cutting mechanism (704); the thickness measuring mechanism (702), the tape feeding mechanism (703), and the tape cutting mechanism (704) are mounted on the third mounting base (701).

5. A high-speed fully automatic straight edge banding machine according to claim 1, characterized in that: The pressing module (8) includes a fourth mounting base (801), a second servo motor (802), a large pressing roller (803), a tapered roller (804), and a rubber roller (805); the second servo motor (802) is mounted on the fourth mounting base (801), and the large pressing roller (803), the tapered roller (804), and the rubber roller (805) are rotatably connected to the top of the fourth mounting base (801).

6. A high-speed fully automatic straight-line edge banding machine according to claim 1, characterized in that: The roughing module (9) includes a roughing mechanism (901) and a roughing motor (902); the roughing mechanism (901) is equipped with the roughing motor (902).

7. A high-speed fully automatic straight edge banding machine according to claim 1, characterized in that: The servo precision repair module (10) includes a precision repair mechanism (1001), a third servo motor (1002), a spindle motor (1003), and a fourth servo motor (1004); the precision repair mechanism (1001) is equipped with the third servo motor (1002), the spindle motor (1003), and the fourth servo motor (1004).

8. A high-speed fully automatic straight-line edge banding machine according to claim 1, characterized in that: The servo scraping module (11) includes a scraping mechanism (1101), a fifth servo motor (1102) and a sixth servo motor (1103); the fifth servo motor (1102) and the sixth servo motor (1103) are mounted on the scraping mechanism (1101).

9. A high-speed fully automatic straight edge banding machine according to claim 1, characterized in that: The steel pressure beam assembly (16) includes a steel pressure beam (1601) and pressure rollers (1602); pressure rollers (1602) are evenly installed on the bottom of the steel pressure beam (1601).

10. A high-speed fully automatic straight edge banding machine according to claim 1, characterized in that: The rack assembly (1) includes a dust suction port (101), a power distribution box (102), a heat sink (103), and a fixed platform (104); the front surface of the power distribution box (102) is equipped with a heat sink (103), and the top of the power distribution box (102) is fixedly connected to the fixed platform (104), and the top of the fixed platform (104) is provided with a dust suction port (101).