A debonding machine

By designing a glue remover, the door panel end surface colloid is automatically cleaned by using the drive device and the telescopic device, the problem of low door panel cleaning efficiency in the prior art is solved, and efficient and damage-free colloid removal effect is achieved.

CN112077037BActive Publication Date: 2025-07-04YUE GAO AUTOMATION EQUIP (SUZHOU) CO LTD
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Patent Information

Application Number
CN202010992618.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-09-21
Publication Date
2025-07-04
Estimated Expiration
2040-09-21

AI Technical Summary

Technical Problem

In the prior art, it is difficult to efficiently clean the colloid remaining on the rear end surface of the door panel processing, and the manual cleaning efficiency is low and it is easy to damage the appearance of the door panel.

Method used

A rubber removal machine is designed, including a shell, mounting frame, conveyor roller, rubber removal roller, vacuum cleaner, etc., and the automatic cleaning of the end surface of the door panel is achieved through the driving device and the telescopic device, and the colloid removal roller and elastic extrusion component are used to remove colloids and collect debris.

Benefits of technology

It realizes rapid and efficient cleaning of the colloid on the end face of the door panel, improves the removal efficiency, avoids appearance damage caused by manual operation, and improves the quality of the door panel.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN112077037B_ABST
    Figure CN112077037B_ABST
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Abstract

A degumming machine, comprising a housing, two groups of mounting frames, multiple groups of conveying rollers, a mounting plate and a dust suction assembly; the two groups of mounting frames are slidably connected to the inner wall of the housing and are respectively connected to a first telescopic device in the housing for driving the two groups of mounting frames to move; a degumming space for accommodating a door panel to be processed is left between the two groups of mounting frames; a driving assembly and a gas collecting hood for driving multiple groups of second telescopic devices to reciprocate are arranged inside the housing; the air outlet end of the gas collecting hood is connected to the dust suction assembly; multiple groups of degumming rollers are rotatably arranged on the mounting frames; cleaning members are arranged on the outer peripheral surfaces of the degumming rollers, and the multiple groups of degumming rollers are in transmission connection with each other and are in transmission connection with a first driving device on the mounting frames; the multiple groups of conveying rollers are rotatably mounted side by side in the housing and pass through the two groups of mounting frames; the mounting plate is connected to the multiple groups of second telescopic devices, and an elastic extrusion assembly is arranged at the other end of the mounting plate. The operation of the present invention is simple and convenient to use, and can replace manual labor to quickly and efficiently clean the residual colloid on the end face of the door panel.
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Description

Technical Field

[0001] The present invention relates to the technical field of door panel degumming, and particularly to a degumming machine. Background Art

[0002] A molded door panel refers to a door panel made of medium density fiberboard (MDF), high density fiberboard (HDF), or steel plate as the base material, with natural solid wood veneers such as ash, black walnut, rosewood, and sapelli veneered on the surface, or PVC or PP film, or without any veneer and epidermis, and produced by a high-tonnage vacuum molding machine under high temperature, high pressure, and high heat environments using "one-time molding" or "two-time molding" technology; after the above-mentioned door panel is processed, there is residual colloid at its end face. If the colloid is not removed, it will affect the appearance of the door body. Usually, the colloid on the end face of the door body is manually cleaned with grinding tools, with low cleaning efficiency and poor cleaning effect. In addition, it is easy to cause scratches on the end face of the door panel, seriously affecting the appearance quality of the door panel and easily damaging the film attached to the end face of the door body; for this reason, a degumming machine is proposed in this application. Summary of the Invention

[0003] (I) Object of the Invention

[0004] To solve the technical problems existing in the background art, the present invention proposes a degumming machine. The present invention is simple to operate and convenient to use, and can replace manual labor to quickly and efficiently clean the residual colloid on the end face of the door panel.

[0005] (II) Technical Solution

[0006] In order to solve the above problems, the present invention provides a glue removal machine, comprising a housing (1), a first driving device (4), two groups of mounting frames (5), a plurality of groups of conveying rollers (6), a glue removal roller (8), a second telescopic device (19), a mounting plate (20), a plurality of groups of first telescopic devices (27), a dust suction assembly (29), a debris removal pipe (3), a guide roller, a control box (30) and a plurality of groups of elastic extrusion assemblies (21); the two groups of mounting frames (5) are arranged side by side, the two groups of mounting frames (5) are both slidably connected to the inner wall of the housing (1), and the end surfaces of the two groups of mounting frames (5) that are far away from each other are respectively connected to a plurality of groups of elastic extrusion assemblies (21) for driving the two groups of mounting frames (5) ) are arranged to move the telescopic ends of the first telescopic devices (27) closer to or farther from each other; the fixed ends of the plurality of first telescopic devices (27) are all connected to the inner wall of the housing (1); a degumming space for accommodating the door panels to be processed is reserved between the two sets of mounting frames (5); the degumming space is provided with an opening (17) on the end surface of the housing (1) for allowing the door panels to be processed to pass through; wherein a driving assembly (28) and an air collecting hood (11) are provided inside the housing (1) for driving the plurality of second telescopic devices (19) to reciprocate along the length direction of the two sets of mounting frames (5); the air outlet end of the air collecting hood (11) is connected to a gas collecting hood (11) for collecting the debris raised in the housing (1) The plurality of groups of de-glue rollers (8) are connected to a dust collecting assembly (29) for collecting the dust particles; the outer peripheral surfaces of the plurality of groups of de-glue rollers (8) are provided with cleaning members (7) for performing friction with the end faces of the door panels to be processed; the plurality of groups of de-glue rollers (8) are respectively rotatably connected to the ends of the two groups of mounting frames (5) close to each other through the rotating shafts provided at the ends thereof; the plurality of groups of de-glue rollers (8) on each group of mounting frames (5) are all transmission-connected and distributed at equal intervals; one group of de-glue rollers (8) on each group of mounting frames (5) is transmission-connected to the first driving device (4); the two groups of first driving devices (4) are respectively connected to the two groups of mounting frames (5); the plurality of groups of conveying rollers (6) are arranged side by side, and each group of conveying rollers (6) are perpendicular to each group of de-glueing rollers (8), one end of the multiple groups of conveying rollers (6) are rotatably connected to the inner wall of one side of the shell (1), the other ends of the multiple groups of conveying rollers (6) respectively pass through the two groups of mounting frames (5) and are rotatably connected to the inner wall of the other side of the shell (1), and the multiple groups of conveying rollers (6) and the multiple groups of de-glueing rollers (8) are staggered; one end of the mounting plate (20) is connected to the telescopic ends of the multiple groups of second telescopic devices (19) used to drive the mounting plate (20) to extend into or out of the de-glueing space, and the other end of the mounting plate (20) is provided with multiple groups of elastic extrusion components (21) for pressing the end face of the door panel to be processed at equal intervals along its moving direction;

[0007] The end surface of the outer shell (1) is provided with a debris discharge hole; the bottom surface inside the outer shell (1) is arranged to be inclined downward toward the central axis direction of the debris discharge hole; one end of the debris discharge pipe (3) is connected to the debris discharge hole, and the other end of the debris discharge pipe (3) is provided with an end cover (24);

[0008] The inner wall of the rotation connection opening (17) is rotatably connected to the second guide roller (23). The second guide roller (23) is parallel to the conveying roller (6) and their upper end faces are on the same horizontal plane. The two groups of first guide rollers (18) are arranged side by side and are both rotatably connected to the inner wall of the opening (17). A gap for the door panel to be processed to pass through is left between the two groups of first guide rollers (18). The two groups of first guide rollers (18) are both perpendicular to the second guide roller (23).

[0009] Each elastic extrusion assembly (21) includes a pressure sensor (16), a mounting cylinder (211), a sliding plate (212), a spring (213), a pressing rod (214) and an extrusion head (22). One end of the mounting cylinder (211) is connected to the mounting plate (20), and the other end of the mounting cylinder (211) is provided with a through hole. One end of the pressing rod (214) is connected to the extrusion head (22), and the other end of the pressing rod (214) passes through the through hole and extends into the mounting cylinder (211) and is connected to the sliding plate (212). The sliding plate (212) is slidably connected to the inner wall of the mounting cylinder (211). Among them, the extrusion head (22) is made of an elastic material. The spring (213) is located inside the mounting cylinder (211) and sleeved outside the pressing rod (214). The two ends of the spring (213) are respectively connected to the inner wall of the mounting cylinder (211) and the sliding plate (212). The pressure sensor (16) is located on the end face inside the mounting cylinder (211) away from the connection of the sliding plate (212) to the pressing rod (214).

[0010] The control box (30) is connected to the housing (1). The control box (30) is provided with a display and a key module. A central processor (25) is provided inside the control box (30). The central processor (25), the display, the key module, the first driving device (4), the driving assembly (28), the dust suction assembly (29), multiple groups of first telescopic devices (27) and multiple groups of second telescopic devices (19) are electrically connected.

[0011] Preferably, the cleaning member (7) is a nylon strip made of nylon material.

[0012] Preferably, the dust suction assembly (29) includes an air extraction device (12) and a dust collection box (13). The air inlet end of the air extraction device (12) is connected to the air outlet port of the air collection hood (11), and the air outlet end of the air extraction device (12) is connected to the air inlet port of the dust collection box (13). A filter cloth (14) is provided in the dust collection box (13) along the gas flow direction.

[0013] Preferably, the driving assembly (28) includes a second driving device (9), a threaded rod (10), multiple groups of first sliding members (15), multiple groups of second sliding members, and a guide rod; the threaded rod (10) and the guide rod are arranged side by side; both ends of the threaded rod (10) are rotatably connected to the inner wall of the housing (1), and the threaded rod (10) is drivingly connected to the second driving device (9); the second driving device (9) is connected to the housing (1); both ends of the guide rod are connected to the inner wall of the housing (1); multiple groups of first sliding members (15) are respectively connected to multiple groups of second telescopic devices (19), and multiple groups of first sliding members (15) are all threadedly engaged with the threaded rod (10); multiple groups of second sliding members are all slidably connected to the guide rod.

[0014] Preferably, distance measuring modules (26) for detecting the distance between the mounting brackets (5) and the door panels to be processed located in the debonding space are provided on the end faces of the two mounting brackets (5) that are close to each other.

[0015] Preferably, the usage method of the debonder includes the following specific steps:

[0016] S1. Place the door panel to be processed on the second guide roller in the opening, and after being clamped and guided by the two groups of first guide rollers, extend it into the debonding space in the housing.

[0017] S2. One end of the door panel to be processed contacts multiple groups of conveying rollers, and multiple groups of second telescopic devices drive the mounting plate to move towards the door panel to be processed so as to squeeze the door panel through multiple groups of elastic pressing components.

[0018] S3. Multiple groups of first telescopic devices drive the two mounting brackets to approach each other so that multiple groups of debonding rollers are pressed tightly against the end face of the door panel to be processed.

[0019] S4. The two groups of first driving devices respectively drive multiple groups of debonding rollers to rotate, and at the same time, the driving assembly drives the pressed door panel to reciprocate directly between multiple groups of debonding rollers.

[0020] S5. After the debonding of the end face of the door panel is completed, take out the debonded door panel from the opening.

[0021] The above technical solutions of the present invention have the following beneficial technical effects:

[0022] In the present invention, the door panel to be processed is placed in the degumming space inside the housing through the opening; one end of the door panel to be processed contacts with multiple groups of conveying rollers, and multiple groups of second telescopic devices drive the mounting plate to move towards the door panel to be processed so as to extrude the door panel through multiple groups of elastic extrusion components; multiple groups of first telescopic devices drive two mounting frames to approach each other so that multiple groups of degumming rollers are pressed against the end face of the door panel to be processed; two first driving devices respectively drive multiple groups of degumming rollers to rotate, and at the same time, the driving component drives the pressed door panel to reciprocate directly between multiple groups of degumming rollers; the cleaning parts arranged on the outer peripheral surface of the rotating multiple groups of degumming rollers act on the end face of the door panel to remove the residual colloid on the door panel; after the degumming of the end face of the door panel is completed, the degummed door panel can be taken out from the opening, and the debris raised during degumming is collected into the dust suction component. Through the above process, manual removal of the residual colloid on the end face of the door panel is replaced, greatly improving the degumming efficiency of the colloid and the degumming quality of the door panel. Description of the Drawings

[0023] Figure 1 Fig. is a schematic structural diagram of a degumming machine proposed by the present invention.

[0024] Figure 2 Fig. is a schematic structural diagram of a partial enlargement at A in a degumming machine proposed by the present invention.

[0025] Figure 3 Fig. is a left view of a degumming machine proposed by the present invention.

[0026] Figure 4 Fig. is a schematic structural diagram of an elastic extrusion component in a degumming machine proposed by the present invention.

[0027] Figure 5 Fig. is a principle block diagram of a degumming machine proposed by the present invention.

[0028] Reference Numerals: 1, housing; 2, support column; 3, impurity discharge pipe; 4, first driving device; 5, mounting frame; 6, conveying roller; 7, cleaning part; 8, degumming roller; 9, second driving device; 10, threaded rod; 11, air collecting hood; 12, air extraction device; 13, dust collecting box; 14, filter cloth; 15, first sliding part; 16, pressure sensor; 17, opening; 18, first guiding roller; 19, second telescopic device; 20, mounting plate; 21, elastic extrusion component; 211, mounting cylinder; 212, sliding plate; 213, spring; 214, pressing rod; 22, extrusion head; 23, second guiding roller; 24, end cover; 25, central processing unit; 26, ranging module; 27, first telescopic device; 28, driving component; 29, dust suction component; 30, control box. Detailed Embodiments

[0029] In order to make the purpose, technical scheme and advantages of the present invention clearer, the present invention is further described in detail below in conjunction with specific embodiments and with reference to the accompanying drawings. It should be understood that these descriptions are only exemplary and are not intended to limit the scope of the present invention. In addition, in the following description, the description of well-known structures and technologies is omitted to avoid unnecessary confusion of the concept of the present invention.

[0030] like Figures 1-5 As shown, a glue removal machine proposed by the present invention includes a housing 1, a first driving device 4, two sets of mounting frames 5, multiple sets of conveying rollers 6, glue removal rollers 8, a second telescopic device 19, a mounting plate 20, multiple sets of first telescopic devices 27, a dust suction assembly 29, a debris discharge pipe 3, a guide roller, a control box 30 and multiple sets of elastic extrusion assemblies 21;

[0031] The two groups of mounting frames 5 are arranged side by side, and the two groups of mounting frames 5 are both slidably connected to the inner wall of the shell 1. The end surfaces of the two groups of mounting frames 5 that are far away from each other are respectively connected to the telescopic ends of multiple groups of first telescopic devices 27 for driving the two groups of mounting frames 5 to move closer to or away from each other; the fixed ends of the multiple groups of first telescopic devices 27 are all connected to the inner wall of the shell 1; a degumming space for accommodating the door panels to be processed is reserved between the two groups of mounting frames 5; the degumming space is provided with an opening 17 for the door panels to be processed to pass through on the end surface of the shell 1; wherein, a driving assembly 28 and an air collecting hood 11 for driving multiple groups of second telescopic devices 19 to reciprocate along the length direction of the two groups of mounting frames 5 are provided inside the shell 1; the air outlet end of the air collecting hood 11 is connected to a dust collecting assembly 29 for collecting debris particles raised in the shell 1;

[0032] The outer circumferential surfaces of the multiple groups of de-glue rollers 8 are provided with cleaning members 7 for friction with the end faces of the door panels to be processed. The multiple groups of de-glue rollers 8 are rotatably connected to the ends of the two groups of mounting frames 5 close to each other through the rotating shafts provided at the ends thereof. The multiple groups of de-glue rollers 8 on each group of mounting frames 5 are transmission-connected and distributed at equal intervals. One group of de-glue rollers 8 on each group of mounting frames 5 is transmission-connected to the first driving device 4; the two groups of first driving devices 4 are respectively connected to the two groups of mounting frames 5;

[0033] Multiple groups of conveying rollers 6 are arranged side by side, each group of conveying rollers 6 is perpendicular to each group of de-glue rollers 8, one end of the multiple groups of conveying rollers 6 is rotatably connected to the inner wall of one side of the shell 1, and the other ends of the multiple groups of conveying rollers 6 pass through the two groups of mounting frames 5 respectively and are rotatably connected to the inner wall of the other side of the shell 1, and the multiple groups of conveying rollers 6 and the multiple groups of de-glue rollers 8 are staggered.

[0034] Further, multiple groups of conveying rollers 6 are directly connected in transmission, wherein one group of conveying rollers 6 is connected in transmission to the third driving device, and the rotation speed of the multiple groups of conveying rollers 6 is the same as the moving speed of the mounting plate 20 driven by the driving assembly, so as to realize the synchronous conveyance of the clamped rear door panel, or the multiple groups of conveying rollers 6 are connected in transmission to the second driving device 9 included in the driving assembly;

[0035] One end of the mounting plate 20 is connected to the telescopic ends of a plurality of second telescopic devices 19 for driving the mounting plate 20 to extend into or out of the debonding space, and the other end of the mounting plate 20 is provided with a plurality of elastic extrusion assemblies 21 for pressing against the end face of the door panel to be processed at equal intervals along its moving direction.

[0036] In the present invention, the door panel to be processed is placed in the debonding space in the housing 1 through the opening 17; one end of the door panel to be processed contacts a plurality of conveying rollers 6, and a plurality of second telescopic devices 19 drive the mounting plate 20 to move towards the door panel to be processed so as to extrude the door panel through a plurality of elastic extrusion assemblies 21; a plurality of first telescopic devices 27 drive the two mounting frames 5 to approach each other so that a plurality of debonding rollers 8 are pressed against the end face of the door panel to be processed; two first driving devices 4 respectively drive a plurality of debonding rollers 8 to rotate, and at the same time the driving assembly 28 drives the pressed door panel to reciprocate directly between a plurality of debonding rollers 8; the cleaning members 7 provided on the outer circumferential surfaces of the rotating plurality of debonding rollers 8 act on the end face of the door panel to remove the residual colloid on the door panel; after the debonding of the end face of the door panel is completed, the debonded door panel can be taken out from the opening 17, and the debris raised during debonding is collected into the dust suction assembly 29. By the above process, manually removing the residual colloid on the end face of the door panel is replaced, greatly improving the efficiency of removing the colloid and the quality of door panel debonding.

[0037] In an optional embodiment, it further includes a waste discharge pipe 3; wherein, a waste discharge hole is provided on the end face of the housing 1; the bottom surface inside the housing 1 is inclined downward towards the central axis direction of the waste discharge hole to facilitate the impurities falling from the bottom surface of the housing 1 to fall from the waste discharge hole;

[0038] One end of the waste discharge pipe 3 is connected to the waste discharge hole, and the other end of the waste discharge pipe 3 is provided with an end cap 24; the end cap 24 is threadedly engaged with the waste discharge pipe 3, and the end cap 24 is opened to discharge the impurities in the housing 1.

[0039] In an optional embodiment, it further includes two first guide rollers 18 and a second guide roller 23;

[0040] The second guide roller 23 is rotatably connected to the inner wall of the opening 17, the second guide roller 23 is parallel to the conveying roller 6 and the upper end faces are on the same horizontal plane;

[0041] The two first guide rollers 18 are arranged side by side and are both rotatably connected to the inner wall of the opening 17, a gap for the door panel to be processed to pass through is left between the two first guide rollers 18, and the two first guide rollers 18 are both perpendicular to the second guide roller 23;

[0042] Another thing to note is that the distance between the two groups of first guide rollers 18 can be adjusted to meet the needs of transporting door panels of different thicknesses. For example, the two groups of first guide rollers 18 are respectively rotatably connected to two groups of sliders; the two groups of sliders are slidably connected to the inner wall of the opening 17, and the sliders are fastened to the inner wall of the opening 17 by bolts.

[0043] In an alternative embodiment, the cleaning member 7 is a nylon strip made of nylon. The cleaning member 7 is made of nylon to avoid damaging the film attached to the end face of the door panel and ensure the degumming effect.

[0044] In an alternative embodiment, the dust suction assembly 29 includes an air extraction device 12 and a dust collection box 13;

[0045] The air inlet end of the air extraction device 12 is connected to the air outlet port of the air collection hood 11. The air extraction device 12 is controlled and connected to the central processing unit 25. The air outlet end of the air extraction device 12 is connected to the air inlet port of the dust collection box 13; a filter cloth 14 is provided in the dust collection box 13 along the gas flow direction.

[0046] In an alternative embodiment, the driving assembly 28 includes a second driving device 9, a threaded rod 10, multiple groups of first sliding members 15, multiple groups of second sliding members, and a guide rod;

[0047] The threaded rod 10 and the guide rod are arranged side by side; both ends of the threaded rod 10 are respectively rotatably connected to the inner wall of the housing 1. The threaded rod 10 is drivingly connected to the second driving device 9; the second driving device 9 is controlled and connected to the central processing unit 25, and the second driving device 9 is connected to the housing 1; both ends of the guide rod are respectively connected to the inner wall of the housing 1;

[0048] Multiple groups of first sliding members 15 are respectively connected to multiple groups of second telescopic devices 19, and multiple groups of first sliding members 15 are all in threaded fit with the threaded rod 10; multiple groups of second sliding members are all slidably connected to the guide rod.

[0049] In an alternative embodiment, distance measuring modules 26 for detecting the distance between the mounting brackets 5 and the door panel to be processed located in the degumming space are provided on the end faces of the two mounting brackets 5 close to each other. The distance between the mounting brackets 5 and the door panel to be processed is intelligently adjusted through the distance measuring modules 26 to ensure that multiple groups of degumming rollers 8 can press the door panel to be processed.

[0050] In an alternative embodiment, each group of elastic extrusion assemblies 21 includes a pressure sensor 16, a mounting cylinder 211, a sliding plate 212, a spring 213, a pressing rod 214, and an extrusion head 22;

[0051] One end of the mounting cylinder 211 is connected to the mounting plate 20, and the other end of the mounting cylinder 211 is provided with a through hole; among them, it should be noted that the width value of the mounting plate 20 is greater than the width value of the door panel to be processed;

[0052] One end of the pressing rod 214 is connected to the extrusion head 22. The other end of the pressing rod 214 passes through the through hole and extends into the mounting cylinder 211 and is connected to the sliding plate 212. The sliding plate 212 is slidably connected to the inner wall of the mounting cylinder 211. Among them, the extrusion head 22 is made of an elastic material to prevent the extrusion head 22 from damaging the door panel when pressing the door panel.

[0053] The spring 213 is located inside the mounting cylinder 211 and sleeved outside the pressing rod 214. The two ends of the spring 213 are respectively connected to the inner wall of the mounting cylinder 211 and the sliding plate 212.

[0054] The pressure sensor 16 is located inside the mounting cylinder 211, away from the sliding plate 212, and connected to the end face of the pressing rod 214.

[0055] During use, the extrusion head 22 presses tightly against the end face of the door panel to be processed, and the mounting plate 20 continues to move towards the door panel. The sliding plate 212 slides inside the mounting cylinder 211, and the spring 213 deforms to have elastic force until the sliding plate 212 presses tightly against the pressure sensor 16. When the pressure signal detected by the pressure sensor 16 reaches the set value, the mounting plate 20 stops moving, thereby firmly clamping the door panel. The pressure sensor 16 is communicatively connected to the central processing unit 25.

[0056] In an optional embodiment, a control box 30 is further included. The control box 30 is connected to the housing 1. A display and a button module are provided on the control box 30. A central processing unit 25 is provided inside the control box 30. The central processing unit 25, the display, the button module, the first driving device 4, the driving assembly 28, the dust suction assembly 29, multiple groups of first telescopic devices 27 and multiple groups of second telescopic devices 19 are electrically connected, and intelligent control through the central processing unit 25 is more intelligent.

[0057] The present invention also proposes a method for using a deburring machine, including the following specific steps:

[0058] S1. Place the door panel to be processed on the second guide roller 23 inside the opening 17, and after being clamped and guided by two groups of first guide rollers 18, extend it into the deburring space inside the housing 1.

[0059] S2. One end of the door panel to be processed contacts multiple groups of conveying rollers 6, and multiple groups of second telescopic devices 19 drive the mounting plate 20 to move towards the door panel to be processed so as to press the door panel through multiple groups of elastic pressing components 21.

[0060] S3. Multiple groups of first telescopic devices 27 drive the two mounting frames 5 to approach each other so that multiple groups of deburring rollers 8 are pressed tightly against the end face of the door panel to be processed.

[0061] S4. Two groups of first driving devices 4 respectively drive multiple groups of deburring rollers 8 to rotate, and at the same time the driving assembly 28 drives the pressed door panel to reciprocate directly between multiple groups of deburring rollers 8.

[0062] After the glue removal from the end face of the door panel at S5, take out the door panel after glue removal from the opening 17.

[0063] In the present invention, the process of removing glue from the end face of the door panel to be processed is easy to operate, and the degree of equipment intelligence is high, so as to replace manual glue removal, greatly improve the glue removal efficiency, and will not damage the film attached to the end face of the door panel, and can ensure the quality of the door panel after glue removal.

[0064] It should be understood that the above specific embodiments of the present invention are only used for exemplary illustration or explanation of the principle of the present invention, and do not constitute a limitation to the present invention. Therefore, any modifications, equivalent replacements, improvements, etc. made without departing from the spirit and scope of the present invention shall be included within the protection scope of the present invention. In addition, the appended claims of the present invention are intended to cover all changes and modification examples falling within the scope and boundary of the appended claims, or equivalent forms of such scope and boundary.

Claims

1. A debonding machine, characterized in that, The invention comprises a housing (1), a first driving device (4), two groups of mounting frames (5), a plurality of groups of conveying rollers (6), a rubber removal roller (8), a second telescopic device (19), a mounting plate (20), a plurality of groups of first telescopic devices (27), a dust collecting assembly (29), a debris removal pipe (3), a guide roller, a control box (30) and a plurality of groups of elastic extrusion assemblies (21); the two groups of mounting frames (5) are arranged side by side, the two groups of mounting frames (5) are slidably connected to the inner wall of the housing (1), and the end surfaces of the two groups of mounting frames (5) that are far away from each other are respectively connected to a plurality of groups of first telescopic devices for driving the two groups of mounting frames (5) to move closer to or away from each other. (27); the fixed ends of the plurality of first telescopic devices (27) are all connected to the inner wall of the housing (1); a degumming space for accommodating the door panels to be processed is reserved between the two groups of mounting frames (5); the degumming space is provided with an opening (17) on the end surface of the housing (1) for allowing the door panels to be processed to pass through; wherein, a driving assembly (28) and an air collecting hood (11) for driving the plurality of second telescopic devices (19) to reciprocate along the length direction of the two groups of mounting frames (5) are provided inside the housing (1); the air outlet end of the air collecting hood (11) and a dust collecting assembly for collecting debris particles raised in the housing (1) are connected to the dust collecting assembly (28) and the dust collecting hood (11) are connected to the dust collecting hood (11) and the dust collecting hood (11) are connected to the dust collecting hood (11) and the dust collecting hood (11) are connected to the dust collecting hood (1) and the dust collecting hood ( ... The plurality of groups of de-glue rollers (8) are connected to the components (29); the outer peripheral surfaces of the plurality of groups of de-glue rollers (8) are provided with cleaning members (7) for performing friction with the end faces of the door panels to be processed; the plurality of groups of de-glue rollers (8) are respectively rotatably connected to the ends of the two groups of mounting frames (5) close to each other through the rotating shafts provided at the ends thereof; the plurality of groups of de-glue rollers (8) on each group of mounting frames (5) are all transmission-connected and distributed at equal intervals; one group of de-glue rollers (8) on each group of mounting frames (5) is transmission-connected to the first driving device (4); the two groups of first driving devices (4) are respectively connected to the two groups of mounting frames (5); the plurality of groups of conveying rollers (6) are arranged side by side, and each group of conveying rollers (6) is connected to the first driving device (4); Each group of glue removal rollers (8) is vertical, one end of the multiple groups of conveying rollers (6) is rotatably connected to the inner wall of one side of the shell (1), the other ends of the multiple groups of conveying rollers (6) respectively pass through the two groups of mounting frames (5) and are rotatably connected to the inner wall of the other side of the shell (1), and the multiple groups of conveying rollers (6) and the multiple groups of glue removal rollers (8) are staggered. One end of the mounting plate (20) is connected to the telescopic ends of multiple groups of second telescopic devices (19) for driving the mounting plate (20) to extend into or out of the glue removal space, and the other end of the mounting plate (20) is provided with multiple groups of elastic extrusion components (21) for pressing the end face of the door panel to be processed at equal intervals along its moving direction. The end surface of the outer shell (1) is provided with a debris discharge hole; the bottom surface inside the outer shell (1) is arranged to be inclined downward toward the central axis direction of the debris discharge hole; one end of the debris discharge pipe (3) is connected to the debris discharge hole, and the other end of the debris discharge pipe (3) is provided with an end cover (24); The inner wall of the rotation connection opening (17) is rotatably connected to the second guide roller (23). The second guide roller (23) is parallel to the conveying roller (6) and their upper end faces are on the same horizontal plane. The two groups of first guide rollers (18) are arranged side by side and are both rotatably connected to the inner wall of the opening (17). A gap for the door panel to be processed to pass through is left between the two groups of first guide rollers (18). The two groups of first guide rollers (18) are both perpendicular to the second guide roller (23). Each group of elastic extrusion components (21) includes a pressure sensor (16), a mounting cylinder (211), a sliding plate (212), a spring (213), a pressing rod (214) and an extrusion head (22). One end of the mounting cylinder (211) is connected to the mounting plate (20), and the other end of the mounting cylinder (211) is provided with a through hole. One end of the pressing rod (214) is connected to the extrusion head (22), and the other end of the pressing rod (214) passes through the through hole and extends into the mounting cylinder (211) and is connected to the sliding plate (212). The sliding plate (212) is slidably connected to the inner wall of the mounting cylinder (211). Among them, the extrusion head (22) is made of an elastic material. The spring (213) is located inside the mounting cylinder (211) and is sleeved outside the pressing rod (214). The two ends of the spring (213) are respectively connected to the inner wall of the mounting cylinder (211) and the sliding plate (212). The pressure sensor (16) is located on the end face inside the mounting cylinder (211) away from the connection of the sliding plate (212) to the pressing rod (214). The control box (30) is connected to the housing (1). The control box (30) is provided with a display and a key module. A central processing unit (25) is provided inside the control box (30). The central processing unit (25), the display, the key module, the first driving device (4), the driving component (28), the dust suction component (29), multiple groups of first telescopic devices (27) and multiple groups of second telescopic devices (19) are electrically connected.

2. The debonding machine according to claim 1, wherein The cleaning member (7) is a nylon strip made of nylon material.

3. The debonding machine according to claim 1, characterized in that, The dust suction component (29) includes an air extraction device (12) and a dust collection box (13). The air inlet end of the air extraction device (12) is connected to the air outlet port of the air collection hood (11), and the air outlet end of the air extraction device (12) is connected to the air inlet port of the dust collection box (13). A filter cloth (14) is provided in the dust collection box (13) along the gas flow direction.

4. The debonding machine according to claim 1, characterized in that, The driving component (28) includes a second driving device (9), a threaded rod (10), multiple groups of first sliding members (15), multiple groups of second sliding members and a guide rod. The threaded rod (10) and the guide rod are arranged side by side. The two ends of the threaded rod (10) are respectively rotatably connected to the inner wall of the housing (1). The threaded rod (10) is drivingly connected to the second driving device (9). The second driving device (9) is connected to the housing (1). The two ends of the guide rod are respectively connected to the inner wall of the housing (1). Multiple groups of first sliding members (15) are respectively connected to multiple groups of second telescopic devices (19). Multiple groups of first sliding members (15) are all threadedly engaged and connected to the threaded rod (10). Multiple groups of second sliding members are all slidably connected to the guide rod.

5. A debonding machine according to claim 1, wherein Distance measuring modules (26) for detecting the distance between the mounting frame (5) and the door panel to be processed located in the debonding space are provided on the end faces of the two mounting frames (5) close to each other.

6. A debonding machine according to any one of claims 1-5, characterized in that, The using method of the degumming machine includes the following specific steps: S1. Place the door panel to be processed on the second guiding roller (23) within the opening (17), and after being clamped and guided by two groups of first guiding rollers (18), extend it into the degumming space inside the housing (1); S2. One end of the door panel to be processed contacts multiple groups of conveying rollers (6), and multiple groups of second telescopic devices (19) drive the mounting plate (20) to move towards the door panel to be processed so as to extrude the door panel through multiple groups of elastic extrusion components (21); S3. Multiple groups of first telescopic devices (27) drive two groups of mounting frames (5) to approach each other so that multiple groups of degumming rollers (8) are pressed against the end face of the door panel to be processed; S4. Two groups of first driving devices (4) respectively drive multiple groups of degumming rollers (8) to rotate, and at the same time, the driving component (28) drives the pressed door panel to reciprocate directly between multiple groups of degumming rollers (8); S5. After the degumming of the door panel end face is completed, take out the degummed door panel from the opening (17).

Citation Information

Patent Citations

  • Glue removing machine

    CN212821313U