A feeding device for a wood door edge banding machine

CN122606733APending Publication Date: 2026-08-21XUZHOU GONGZHIYOU CNC TECH CO LTD
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Patent Information

Application Number
CN202610824213.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-09
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

[0003]由于门板封边为多设备配合使用,因而装置对门板浸精密封边需要对多设备进行精确调控,而送料装置便可多设备精加工的主要承载平台,但现有送料装置对板材的输送还存在缺陷,当板材被履带以及压轮双重辊压助推后,外置封边装置对板材外侧边向内的挤压,最终会导致板材在输送期间发生偏滑,严重时便会造成封带与板材侧边受压面接触不充分,进而便会导致封带松弛或者褶皱

Benefits of technology

1.本发明通过现有送料机构上设置横置的封边防护机构,且在封边防护机构以及侧偏防护机构上设置两组较位机构,利用将一组较位机构设置在板材进料端面的一侧,且将另一组可活动的较位机构设置在送料机构的缝隙内,随着板材的输送,此时可活动的一组送料机构便可为板材提供有效的校准和支撑平台,从而可以避免板材在输送期间发生偏滑或者抖动的问题发生。

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Abstract

The present application relates to wood door edge banding machine feeding technology field, specifically for a kind of wood door edge banding machine feeding device, including feeding mechanism, setting on the feeding mechanism edge banding protection mechanism, setting on the edge banding protection mechanism side deviation protection mechanism and setting on the edge banding protection mechanism and the two groups of position mechanism of side deviation protection mechanism;The feeding mechanism is used to provide effective conveying platform for board.Through the edge banding protection mechanism of existing feeding mechanism setting horizontally, and setting two groups of position mechanism on the edge banding protection mechanism and side deviation protection mechanism, utilize the one side of a group of position mechanism setting in board feeding end face, and another set of movable position mechanism is set in the gap of feeding mechanism, along with the conveying of board, when movable a group of feeding mechanism can provide effective calibration and support platform for board, so that the problem of board deviation or shaking during conveying can be avoided.
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Description

Technical Field

[0001] This invention relates to the field of feeding technology for wooden door edge banding machines, specifically to a feeding device for wooden door edge banding machines. Background Technology

[0002] An edge banding machine is a special device that provides edge protection for home decoration boards. It needs to be used in conjunction with a variety of other equipment to effectively protect the sides of the boards.

[0003] Since door panel edge sealing involves the coordinated use of multiple devices, the device requires precise control of these devices to achieve the desired precision sealing. The feeding device serves as the main support platform for the precision processing of these multiple devices. However, existing feeding devices have shortcomings in conveying the sheet metal. When the sheet metal is pushed and pressed by both the track and the pressure rollers, the external edge sealing device squeezes the outer edge of the sheet metal inward, which can cause the sheet metal to slip during conveying. In severe cases, this can lead to insufficient contact between the sealing tape and the pressure surface on the side of the sheet metal, resulting in loosening or wrinkling of the sealing tape.

[0004] In view of this, a feeding device for a wooden door edge banding machine was designed to solve the above problems. Summary of the Invention

[0005] The present invention aims to solve one of the technical problems existing in the prior art or related technologies.

[0006] Therefore, the technical solution adopted in this invention is as follows: A feeding device for a wooden door edge banding machine includes a feeding mechanism, an edge banding protection mechanism mounted on the feeding mechanism, a side deviation protection mechanism mounted on the edge banding protection mechanism, and two sets of positioning mechanisms mounted on the edge banding protection mechanism and the side deviation protection mechanism. The feeding mechanism provides a platform for effectively conveying the board material. The edge banding protection mechanism provides a support platform for constant pressure calibration of one set of positioning mechanisms. The side deviation protection mechanism carries one set of positioning mechanisms and provides adaptive limiting constraints for boards of different widths. The positioning mechanism includes two sealing plates, a wind hood between the two sealing plates, and an end post on the outside of the wind hood. The wind hood has a dust discharge chamber inside and an air inlet on its inner side. Multiple pressure stabilizing rollers are movably installed inside the two sealing plates. An air pipe is provided on the end tube of the wind hood.

[0007] In a preferred embodiment, the present invention may be further configured such that the edge sealing protection mechanism includes a horizontally positioned support component; The support assembly includes a top slide plate and a base plate disposed on the top slide plate; The bottom of the top plate is provided with a sliding groove, and the middle of the top surface of the bottom plate is provided with a sliding rail; The outer end of the top slide plate is provided with a guide component, a reset and rewinding component is provided on the top slide plate and the bottom plate, an end plate is provided on the inner end of the top slide plate, and an outer frame is installed in the end plate; One set of the aforementioned positioning mechanisms is located at the bottom end of the outer frame.

[0008] In a preferred embodiment, the present invention may be further configured such that: the lateral deflection protection mechanism includes a traction cable, a slide assembly movably installed in the top slide plate and the bottom plate, a drive assembly disposed on the feeding mechanism, and an outer frame disposed in the slide assembly; Another set of the aforementioned positioning mechanisms is mounted on the outer frame; The slide assembly includes a slide plate, and the bottom of the slide assembly has a horizontal groove adapted to the slide rail. A limit rod is provided inside the horizontal groove, and a spring is provided outside the limit rod. The skateboard has a slide rail inside, and the slide head on the top of the outer frame is movably installed in the slide rail; The inner end of the skateboard is equipped with a foot pad, two clamps are installed on the top of the skateboard, and hydraulic components are set in the two clamps; One end of the spring is pressed against the outer frame, and the other end of the spring is pressed against the inner wall of the transverse groove.

[0009] In a preferred embodiment, the present invention may be further configured such that: the guiding assembly includes two pads mounted on the top plate and the bottom plate, a first shaft mounted within the two pads, and a guide wheel provided on the first shaft; The first shaft is provided with an anti-slip cover on its exterior; The guide wheel has an annular groove on its side, and the guide wheel is used to bear pressure and guide the extension of the traction cable.

[0010] In a preferred embodiment, the present invention may be further configured such that: the reset and rewind assembly includes an anti-pressure member disposed on the top slide plate, a bottom support disposed on the bottom plate, and a second shaft disposed within the anti-pressure member and the bottom support; A first take-up roller is mounted on the outside of the second shaft, and a reinforcing torsion spring is connected between the first take-up roller and the anti-compression component; The first take-up roller has a reset cable wound around it, and a pad is provided on the exposed end of the reset cable.

[0011] In a preferred embodiment, the present invention may be further configured as follows: the feeding mechanism includes two outer bearing plates, a plurality of transmission rollers disposed on the inner side of the two outer bearing plates, a feeding track connected to the plurality of transmission rollers, two sets of brackets disposed on one of the outer bearing plates, a top pressure plate disposed on the top of the two sets of brackets, and a plurality of feeding pressure rollers disposed on the bottom of the brackets. An organic base is provided at the top of the bracket.

[0012] In a preferred embodiment, the present invention may be further configured such that: the drive assembly includes a clamp mounted on a top pressure plate, a drive rod movably mounted in the clamp, a chassis disposed on the top pressure plate, and a motor installed inside the chassis; The internal drive shaft of the motor is connected to the bottom end of the drive rod; A second take-up roller is mounted on the top of the drive rod; One end of the traction cable is wound around the second take-up roller, while the other end of the traction cable is connected to the pad.

[0013] In a preferred embodiment, the present invention may be further configured such that the base is composed of a rectangular sleeve and a stainless steel column, and the rectangular sleeve is installed on the outside of the top plate and the bottom plate.

[0014] In a preferred embodiment, the present invention can be further configured such that the pad at the exposed end of the reset cable is fixedly mounted on the slide plate; The reinforcing torsion spring is located in a cavity inside the pressure-resistant component.

[0015] In a preferred embodiment, the present invention may be further configured such that the pressure stabilizing roller is composed of a stainless steel vertical rod and a thickened rubber roller, and the rubber roller is provided with anti-slip protrusions.

[0016] By adopting the above technical solution, the beneficial effects achieved by the present invention are as follows: 1. The present invention provides a horizontally positioned edge sealing and protection mechanism on the existing feeding mechanism, and two sets of alignment mechanisms on the edge sealing and protection mechanism and the side deviation protection mechanism. By setting one set of alignment mechanisms on one side of the feeding end face of the board, and setting the other set of movable alignment mechanisms in the gap of the feeding mechanism, the movable set of feeding mechanisms can provide an effective calibration and support platform for the board as the board is conveyed, thereby avoiding the problem of the board slipping or shaking during the conveying process.

[0017] 2. The present invention installs a set of movable positioning mechanisms on the outer frame. When the hydraulic components control the outer frame to extend along the inside of the slide plate, the set of positioning mechanisms that extend freely along the gap inside the feeding mechanism can be adapted to use for plates of different widths. At this time, the outer edge of the plate can always be pressed and kept aligned with the outer gap port of the feeding mechanism, thereby effectively improving the adaptability of the device to plates of different widths.

[0018] 3. This invention opens a dust removal chamber inside the hood. As the two air pipes continuously exhaust air outward, high-pressure air is exhausted from both sides of the board through two air inlets. At this time, the wood and dust accumulated on the board due to transportation or processing can be effectively absorbed, ultimately ensuring that the side of the board with the adhesive tape can remain clean and tidy. Attached Figure Description

[0019] Figure 1 This is a three-dimensional schematic diagram of the present invention; Figure 2 This is a schematic diagram illustrating the use of the present invention; Figure 3 This is a schematic diagram of the feeding mechanism of the present invention; Figure 4 This is a schematic diagram of the side-deviation protection mechanism of the present invention; Figure 5 This is a schematic diagram of the driving component of the present invention; Figure 6 This is a schematic diagram of the slide assembly of the present invention; Figure 7 This is an exploded view of the positioning mechanism of the present invention; Figure 8 This is a schematic diagram of the edge sealing and protection mechanism of the present invention; Figure 9 This is an exploded view of the support component of the present invention; Figure 10 For the present invention Figure 9 Enlarged view of point A in the middle; Figure 11 For the present invention Figure 9 Enlarged diagram of point B in the middle.

[0020] Figure label: 100. Feeding mechanism; 110. Bearing outer plate; 120. Drive roller; 130. Feeding track; 140. Support; 150. Base; 160. Top pressure plate; 170. Feeding pressure roller; 200. Edge sealing and protection mechanism; 210. Support assembly; 211. Top slide plate; 212. Base plate; 220. Guide assembly; 221. Pad plate; 222. Anti-slip cover; 223. First shaft; 224. Guide wheel; 230. End plate; 240. Outer frame; 250. Reset and take-up assembly; 251. Pressure-resistant component; 252. Base support; 253. Second shaft; 254. First take-up roller; 255. Reset cable; 256. Reinforcing torsion spring; 300. Lateral deviation protection mechanism; 310. Drive assembly; 311. Clamp; 312. Drive rod; 313. Motor; 314. Housing; 315. Second take-up roller; 320. Slide assembly; 321. Slide plate; 322. Foot pad; 323. Clamping component; 324. Hydraulic component; 325. Limiting rod; 326. Spring; 330. Traction cable; 340. External frame; 400. Positioning mechanism; 410. End column; 420. Air hood; 430. Air pipe; 440. Dust discharge chamber; 450. Air inlet; 460. Sealing plate; 470. Pressure stabilizing roller. Detailed Implementation

[0021] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be noted that, unless otherwise specified, the embodiments and features described herein can be combined with each other.

[0022] It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the invention.

[0023] The following describes, with reference to the accompanying drawings, some embodiments of a feeding device for a wooden door edge banding machine.

[0024] Example 1: Combination Figures 1-11 As shown, the present invention provides a feeding device for a wooden door edge banding machine, including a feeding mechanism 100, an edge banding protection mechanism 200 disposed on the feeding mechanism 100, a side deviation protection mechanism 300 disposed on the edge banding protection mechanism 200, and two sets of positioning mechanisms 400 disposed on the edge banding protection mechanism 200 and the side deviation protection mechanism 300. The feeding mechanism 100 is used to provide a platform for effective conveying of the board. The edge banding protection mechanism 200 is used to provide a support platform for constant pressure calibration of one set of positioning mechanisms 400. The side deviation protection mechanism 300 is used to carry one set of positioning mechanisms 400 and provide adaptive limiting constraints for boards of different widths. One set of positioning mechanisms 400 is used to provide a calibration base surface for the board, and the other set of positioning mechanisms 400 is used to provide edge-fitting support force during board conveying.

[0025] The feeding mechanism 100 includes two bearing outer plates 110, multiple transmission rollers 120 disposed inside the two bearing outer plates 110, a feeding track 130 connected to the multiple transmission rollers 120, two sets of brackets 140 disposed on one of the bearing outer plates 110, a top pressure plate 160 disposed on the top of the two sets of brackets 140, and multiple feeding pressure rollers 170 disposed at the bottom of the brackets 140. The top of the bracket 140 is equipped with a base 150; The edge sealing and protection mechanism 200 includes a horizontally placed support component 210; The support assembly 210 includes a top slide plate 211 and a base plate 212 disposed on the top slide plate 211; The bottom of the top slide plate 211 is provided with a sliding groove, and the middle of the top surface of the bottom plate 212 is provided with a sliding rail; The top slide plate 211 is provided with a guide assembly 220 at its outer end, a reset and rewind assembly 250 provided on the top slide plate 211 and the bottom plate 212, an end plate 230 provided at the inner end of the top slide plate 211, and an outer frame 240 installed in the end plate 230. One set of positioning mechanisms 400 is located at the bottom of the outer frame 240; The guide assembly 220 includes two pads 221 mounted on the top slide plate 211 and the bottom plate 212, a first shaft 223 mounted in the two pads 221, and a guide wheel 224 provided on the first shaft 223; The first shaft 223 is provided with an anti-slip cover 222 on its exterior; The guide wheel 224 has an annular groove on its side, and the guide wheel 224 is used to bear pressure and guide the extension of the traction cable 330; The base 150 is composed of a rectangular sleeve and a stainless steel column, and the rectangular sleeve is installed on the outside of the top slide plate 211 and the bottom plate 212. The positioning mechanism 400 includes two sealing plates 460, a wind hood 420 disposed between the two sealing plates 460, an end post 410 disposed on the outside of the wind hood 420, a dust discharge chamber 440 opened inside the wind hood 420, and an air inlet slot 450 opened on the inner side of the wind hood 420. Multiple pressure-stabilizing rollers 470 are movably installed within the two sealing plates 460; An air pipe 430 is installed on the end pipe of the fan shroud 420; The pressure stabilizing roller 470 is composed of a stainless steel vertical rod and a thickened rubber roller, and the rubber roller has anti-slip protrusions.

[0026] When one of the drive rollers 120 is powered by an external drive device, the driven drive roller 120 can cooperate with the other multiple drive rollers 120 to drive the feeding track 130. When the plate is fed along a set of fixed-state positioning mechanisms 400, the plate under the pressure of the fixed-state positioning mechanisms 400 can be stably pushed laterally by the feeding track 130 and multiple feeding pressure rollers 170. As the plate continues to move laterally, according to the width of different plates, the hydraulic components 324 in operation will pull the outer frame 340 to effectively extend along the inside of the slide plate 321. At this time, another set of positioning mechanisms 400 installed at the bottom of the outer frame 340 can quickly constrain and clamp plates of different widths. As the motor 313 starts, the drive rod 312 and the second winding roller 315, which are driven by the transmission, will wind up the traction cable 330. The slide assembly 320, which is constrained by the top slide plate 211 and the bottom plate 212, can be effectively tractioned. Finally, another movable calibration mechanism 400 can provide a co-moving calibration platform for the inner side of the plate during the conveying process. Finally, by applying pressure with an external sealing tape device, the movable, calibrated, and pressure-bearing board can be bonded to the sealing tape under constant pressure, thus avoiding the problem of low adhesion caused by excessive gaps between the sealing tape and the board during the bonding process.

[0027] Example 2: Combination Figure 3 , Figure 5 and Figure 10 As shown, based on Embodiment 1, the resetting and winding assembly 250 includes an anti-compression member 251 disposed on the top slide plate 211, a bottom support 252 disposed on the bottom plate 212, and a second shaft 253 disposed within the anti-compression member 251 and the bottom support 252. The second shaft 253 is externally mounted with a first take-up roller 254, and a reinforcing torsion spring 256 is connected between the first take-up roller 254 and the anti-compression member 251. The first take-up roller 254 has a reset cable 255 wound around it, and a pad is provided on the exposed end of the reset cable 255. The reinforcing torsion spring 256 is located in the cavity inside the pressure-resistant component 251.

[0028] Preferably, the reset and rewind assembly 250 is located on the outside of one of the brackets 140. After the stop lever slide 321 is pulled and extends along the top slide 211 and the bottom plate 212 to its maximum distance, the reverse rotating motor 313 can drive the drive rod 312 and the second rewind roller 315 to rotate. Finally, the traction cable 330 will be relaxed and rewound. At the same time, the reinforcing torsion spring 256 will provide an effective reset traction force for the slide 321. The length and torque of the reinforcing torsion spring 256 need to be set according to the lengths of the top plate 211 and the bottom plate 212.

[0029] Example 3: Combination Figures 4-11 As shown, based on Embodiment 1, the lateral deflection protection mechanism 300 includes a traction cable 330, a slide assembly 320 movably installed in the top slide plate 211 and the bottom plate 212, a drive assembly 310 disposed on the feeding mechanism 100, and an outer frame 340 disposed in the slide assembly 320. Another set of positioning mechanisms 400 is installed on the outer frame 340.

[0030] In use, as the traction cable 330 is stretched and relaxed, the slide assembly 320, which is constrained by the support component 210, can move laterally in a stable manner. At this time, the outer frame 340, which is set in the slide assembly 320 and slides freely, and a set of movable positioning mechanisms 400 can move laterally in conjunction with the plate, and finally provide a sufficiently stable pressure-bearing platform for the moving plate.

[0031] The slide assembly 320 includes a slide plate 321, and the bottom of the slide assembly 320 is provided with a horizontal groove adapted to the slide rail. A limit rod 325 is provided inside the horizontal groove, and a spring 326 is provided outside the limit rod 325. The skateboard 321 has a slide rail inside, and the slide head on the top of the outer frame 340 is movably installed in the slide rail; The inner end of the skateboard 321 is equipped with a foot pad 322, two clamps 323 are installed on the top of the skateboard 321, and a hydraulic component 324 is set in the two clamps 323; The pad on the exposed end of the reset cable 255 is fixedly installed on the slide plate 321; One end of the spring 326 is pressed against the outer frame 340, and the other end of the spring 326 is pressed against the inner wall of the transverse groove.

[0032] When different boards need to be edge-sealed, the hydraulic component 324 in operation will pull the outer frame 340 and a set of movable positioning mechanisms 400 to quickly adapt the inner side of the boards of different widths. At this time, the vibration generated during the conveying of the boards can be reduced by the outer frame 340 along the slide plate 321 during the pressure lateral movement, thereby ensuring the stability of the boards during the conveying.

[0033] The drive assembly 310 includes a clamp 311 mounted on the top pressure plate 160, a drive rod 312 movably mounted in the clamp 311, a housing 314 mounted on the top pressure plate 160, and a motor 313 installed inside the housing 314. The internal drive shaft of motor 313 is connected to the bottom end of drive rod 312; A second take-up roller 315 is mounted on the top of the drive rod 312; One end of the traction cable 330 is wound around the second take-up roller 315, while the other end of the traction cable 330 is connected to the pad 322.

[0034] Preferably, the two clamps 311 are fixed to the top pressure plate 160 by welding, and the two clamps 311 are provided with bearings inside, while the drive rod 312 is installed in the two bearings; The chassis 314 is fixedly mounted on the top pressure plate 160 by bolts, and the chassis 314 has a heat dissipation window.

[0035] The working principle and usage process of this invention: The edge banding machine is a device that replaces manual labor to fix the sealing tape on the side of the board. Its working procedure includes board conveying, gluing and edge application, cutting, front and back trimming, top and bottom trimming, fine trimming, top and bottom scraping and polishing, etc. The above series of processing steps require the cooperation of multiple devices. Currently, there are many drawbacks during the edge banding process of wooden door panels. When the board is fed, the board is slipped due to the interference of the roller transmission force under the double pressure of the feeding conveyor and the feeding pressure roller. Under the interference of the double pressure of the sealing tape, the gap between the door panel and the sealing tape will increase, which will lead to the problem of reduced firmness of the sealing tape on the side of the door panel. In severe cases, it will lead to wrinkles or unevenness of the sealing tape on the side of the door panel. The device adds a fixed positioning mechanism 400 and a movable positioning mechanism 400 to the traditional sheet metal feeding assembly. Once the door panel is placed on top of the feeding track 130, the driven feeding track 130 can drive the placed door panel to move laterally along the underside of the evenly distributed feeding rollers 170. As the door panel moves laterally at a constant speed, a set of positioning mechanisms 400 located outside the feeding mechanism 100 and facing the edge sealing assembly can provide effective guidance for the door panel, and at the same time provide a reference platform for rapid calibration of the door panel. When the end of the door panel placed on the feeding conveyor belt 130 begins to be pushed, the hydraulic component 324 in operation can pull the outer frame 340 through its internal hydraulic rod. At this time, another set of movable positioning mechanisms 400 located at the bottom of the outer frame 340 can be pulled to fit and conform to the other side of the inner end of the door panel. At this time, the two sets of positioning mechanisms 400 can fit and constrain the two sides of the door panel. As the motor 313 operates, its internal transmission shaft drives the drive rod 312. At this time, the second take-up roller 315 installed at the top of the drive rod 312 can take up the traction cable 330. The other end of the traction cable 330 will pull the slide assembly 320 to move steadily along the sliding groove inside the top slide plate 211 and the bottom plate 212. At this time, the slide assembly 320, the outer frame 340 and a movable set of alignment mechanisms 400 can provide a sufficiently stable calibration thrust to the inner side of the door panel. At this time, the outer side of the door panel can always be flush with the gap between the feeding track 130 and the multiple feeding pressure rollers 170. Finally, the external sealing tape pasting equipment can always maintain a constant pressure to assemble the outer side of the door panel, thereby avoiding the door panel from slipping and shaking due to multiple interferences of transmission pressure and sealing tape pasting thrust during feeding.

[0036] Although embodiments of the invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims

1. A feeding device for a wooden door edge banding machine, comprising a feeding mechanism (100), characterized in that, It also includes an edge sealing and protection mechanism (200) installed on the feeding mechanism (100), a side deviation protection mechanism (300) installed on the edge sealing and protection mechanism (200), and two sets of positioning mechanisms (400) installed on the edge sealing and protection mechanism (200) and the side deviation protection mechanism (300). The feeding mechanism (100) is a platform for providing efficient conveying of the sheet metal; The edge sealing and protection mechanism (200) is used to provide a support platform for constant pressure calibration of one of the sets of positioning mechanisms (400); The side deflection protection mechanism (300) is used to carry one of the positioning mechanisms (400) and provide adaptive limiting constraints for plates of different widths; The positioning mechanism (400) includes two sealing plates (460), a wind hood (420) disposed between the two sealing plates (460), and an end post (410) disposed on the outside of the wind hood (420). The wind hood (420) has a dust discharge chamber (440) inside and an air inlet slot (450) on the inner side of the wind hood (420). Multiple pressure stabilizing rollers (470) are movably installed inside the two sealing plates (460). An air pipe (430) is provided on the end pipe of the hood (420).

2. The feeding device for a wooden door edge banding machine according to claim 1, characterized in that, The edge sealing and protection mechanism (200) includes a horizontally placed support component (210). The support assembly (210) includes a top plate (211) and a bottom plate (212) disposed on the top plate (211). The bottom of the top plate (211) is provided with a sliding groove, and the middle of the top surface of the bottom plate (212) is provided with a sliding rail; The top slide plate (211) is provided with a guide assembly (220) at its outer end, a reset and rewind assembly (250) provided on the top slide plate (211) and the bottom plate (212), an end plate (230) provided at the inner end of the top slide plate (211), and an outer frame (240) installed in the end plate (230). One of the aforementioned positioning mechanisms (400) is located at the bottom of the outer frame (240).

3. The feeding device for a wooden door edge banding machine according to claim 1, characterized in that, The side deflection protection mechanism (300) includes a traction cable (330), a slide assembly (320) movably installed in the top slide plate (211) and the bottom plate (212), a drive assembly (310) set on the feeding mechanism (100), and an outer frame (340) set in the slide assembly (320). Another set of the aforementioned positioning mechanisms (400) is mounted on the outer frame (340); The slide assembly (320) includes a slide plate (321), and the bottom of the slide assembly (320) is provided with a horizontal groove adapted to the slide rail, and a limit rod (325) is provided inside the horizontal groove, and a spring (326) is provided outside the limit rod (325). The slide (321) has a slide rail inside, and the slide head on the top of the outer frame (340) is movably installed in the slide rail; The inner end of the slide plate (321) is equipped with a foot pad (322), two clamps (323) are installed on the top of the slide plate (321), and a hydraulic component (324) is set in the two clamps (323). One end of the spring (326) is pressed against the outer frame (340), and the other end of the spring (326) is pressed against the inner wall of the transverse groove.

4. The feeding device for a wooden door edge banding machine according to claim 2, characterized in that, The guide assembly (220) includes two pads (221) mounted on the top plate (211) and the bottom plate (212), a first shaft (223) mounted in the two pads (221), and a guide wheel (224) provided on the first shaft (223). The first shaft (223) is provided with an anti-slip cover (222) on its outside; The guide wheel (224) has an annular groove on its side, and the guide wheel (224) is used to bear pressure and guide the extension of the traction cable (330).

5. A feeding device for a wooden door edge banding machine according to claim 2, characterized in that, The reset and rewind assembly (250) includes a pressure-resistant member (251) disposed on the top slide plate (211), a bottom support (252) disposed on the bottom plate (212), and a second shaft (253) disposed within the pressure-resistant member (251) and the bottom support (252). The second shaft (253) is externally mounted with a first take-up roller (254), and a reinforcing torsion spring (256) is connected between the first take-up roller (254) and the anti-compression member (251). The first take-up roller (254) has a reset cable (255) wound around it, and a pad is provided on the exposed end of the reset cable (255).

6. The feeding device for a wooden door edge banding machine according to claim 1, characterized in that, The feeding mechanism (100) includes two bearing outer plates (110), multiple transmission rollers (120) disposed inside the two bearing outer plates (110), a feeding track (130) connected to the multiple transmission rollers (120), two sets of brackets (140) disposed on one of the bearing outer plates (110), a top pressure plate (160) disposed on the top of the two sets of brackets (140), and multiple feeding pressure rollers (170) disposed at the bottom of the brackets (140). The top of the bracket (140) is provided with a base (150).

7. The feeding device for a wooden door edge banding machine according to claim 3, characterized in that, The drive assembly (310) includes a clamp (311) mounted on a top pressure plate (160), a drive rod (312) movably mounted in the clamp (311), and a housing (314) mounted on the top pressure plate (160), wherein a motor (313) is installed inside the housing (314). The internal transmission shaft of the motor (313) is connected to the bottom end of the drive rod (312); The top end of the drive rod (312) is equipped with a second take-up roller (315). One end of the traction cable (330) is wound around the second take-up roller (315), while the other end of the traction cable (330) is connected to the pad (322).

8. The feeding device for a wooden door edge banding machine according to claim 6, characterized in that, The base (150) is composed of a rectangular sleeve and a stainless steel column, and the rectangular sleeve is installed on the outside of the top slide plate (211) and the bottom plate (212).

9. A feeding device for a wooden door edge banding machine according to claim 5, characterized in that, The pad at the exposed end of the reset cable (255) is fixedly installed on the slide plate (321); The reinforcing torsion spring (256) is located in the cavity inside the pressure-resistant member (251).

10. A feeding device for a wooden door edge banding machine according to claim 1, characterized in that, The pressure stabilizing roller (470) is composed of a stainless steel vertical rod and a thickened rubber roller, and the rubber roller is provided with anti-slip protrusions.