Machining device convenient to clean and used for furniture production
By using components such as bending plates and support plates in the aluminum honeycomb plate processing device to adjust the bending angle and fit, and combining the suction cover to clean the debris, the aluminum honeycomb plate edge sealing efficiency and quality problems are solved, and efficient edge sealing and cleaning are achieved.
Patent Information
- Application Number
- CN202510622206.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2025-07-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the processing of aluminum honeycomb boards, the bent parts are prone to bending inadequately or the gap with the edge sealing strip is too large, resulting in low edge sealing efficiency and poor quality.
The processing device including a bent plate, a support plate, a driving member and a suction cover is adopted. The bending part is squeezed into the support plate to expand it, ensuring that the edge sealing strip can be snapped in smoothly, and the bending angle is adjusted by the driving member and the pressure plate is enhanced. The suction cover is combined to clean the debris, and the edge sealing efficiency and quality are improved.
It realizes rapid installation and high-quality fit of edge seal strips, reduces manual correction operations, enhances the connection strength between edge seal strips and bent parts, and improves debris cleaning efficiency and shortens processing time.
Smart Images

Figure CN120287061A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sheet processing, and particularly relates to a processing device for furniture production that is convenient for cleaning. Background Art
[0002] Aluminum honeycomb panels are usually used in the processing of door panels for various furniture. During the processing of existing aluminum honeycomb panels, it is necessary to slot the left and right edges of the aluminum honeycomb panel, and then bend the aluminum plates at the edge positions towards the middle by 90 degrees to form a sealed edge. Subsequently, a sealing strip is installed on the front side. However, in the existing processing process, the bending part of the aluminum honeycomb panel is prone to incomplete bending. When the bending angle is too large, it is difficult for the sealing strip to be inserted between the two aluminum plates, and manual correction of the bending part is required, thereby reducing the sealing efficiency of the aluminum honeycomb panel. When the bending angle is too small, there is a gap between the bending part and the sealing strip, resulting in the easy detachment of the sealing strip and reducing the sealing quality of the aluminum honeycomb panel. Summary of the Invention
[0003] In order to overcome the shortcomings that the bending part of the aluminum honeycomb panel is prone to incomplete bending, when the bending angle is too large, it is difficult for the sealing strip to be inserted between the two aluminum plates, and manual correction of the bending part is required, thereby reducing the sealing efficiency of the aluminum honeycomb panel. When the bending angle is too small, there is a gap between the bending part and the sealing strip, resulting in the easy detachment of the sealing strip and reducing the sealing quality of the aluminum honeycomb panel, the present invention provides a processing device for furniture production that is convenient for cleaning.
[0004] The technical solution of the present invention is: A processing device for furniture production that is convenient for cleaning, including a frame, a conveyor belt, rollers, grooving discs and motors; a conveyor belt is installed on the frame; several rollers are arranged on the upper side of the frame; several motors are fixedly connected to the upper side of the frame; a grooving disc is connected to the output end of each motor; a panel is conveyed between the conveyor belt and the rollers; the panel is composed of a honeycomb core and two aluminum plates, and the honeycomb core is located between the two aluminum plates; it further includes bending plates, fixing plates, support plates, a first driving member, a second driving member, a correction component and an auxiliary system; several first driving members are installed on the front side and the rear side of the frame; the telescopic ends of two adjacent first driving members are commonly connected to a bending plate, and all the bending plates are arranged in a rectangle; several fixing plates are installed on the frame; a support plate is slidably connected to each fixing plate; the shape of the support plate is T-shaped, and the vertical part of the support plate is the supporting part; several second driving members are installed on the frame; the support plate is connected to the telescopic ends of two adjacent second driving members; a correction component is connected to the frame; an auxiliary system for facilitating the edge sealing of the panel is installed on the frame.
[0005] More preferably, the correction assembly includes a third driving member, a connecting plate and a pressing plate; a plurality of third driving members are fixedly connected to the frame; a connecting plate is fixedly connected to the telescopic ends of every two adjacent third driving members; a plurality of pressing plates are fixedly connected to each connecting plate; each pressing plate is slidably connected to the adjacent fixing plate.
[0006] More preferably, a tension sensor is provided on the telescopic end of the second driving member.
[0007] More preferably, the auxiliary system includes a suction hood; a plurality of suction hoods for reducing the difficulty of debris cleaning are fixedly connected to the frame; each suction hood is located above the adjacent grooved disc; all the suction hoods are communicated with an external air pump through a pipeline.
[0008] More preferably, a suction channel is provided on the support plate, and the suction channel is communicated with an external air pump through a pipeline.
[0009] More preferably, the side of the suction channel close to the panel is provided with a flared structure.
[0010] More preferably, an exhaust groove is formed on the right side of each support plate.
[0011] More preferably, the auxiliary system further includes a limiting plate; a plurality of limiting plates are slidably connected to each bending plate through springs.
[0012] More preferably, the limiting plates are all provided with arc-shaped surfaces, and the arc-shaped surfaces of the upper and lower limiting plates are arranged in a V-shape.
[0013] More preferably, a plurality of inclined surfaces are provided on the left and right sides of each support plate.
[0014] Beneficial effects:
[0015] By the support plate extruding the bending part outwards, the bending part is expanded outwards, so that the distance between the bending parts on the left and right sides is greater than the length of the edge banding strip, and the folding angle of the bending part is greater than 90 degrees, thus facilitating manual insertion of the edge banding strip between the two aluminum plates. At the same time, when inserting the edge banding strip between the two aluminum plates, manual alignment operation is not required, which improves the installation efficiency of the edge banding strip;
[0016] After the edge banding strip is inserted between the two aluminum plates, at this time, control the second driving member to drive the support plate to fit against the inner side of the bending part, and at the same time control the third driving member to drive the pressing plate to squeeze the outer side of the bending part for a period of time, so as to increase the tightness of the bending part fitting with the edge banding strip and reduce the probability of the edge banding strip separating from the bending part;
[0017] The force exerted by the support plate on the bent portion is detected by a tension sensor on the telescopic end of the second driving member. When the detected tension reaches the set threshold, manual observation or an external detection camera is used to detect whether the connection between the edge banding and the bent portion is separated, thereby detecting the connection strength at the joint between the edge banding and the bent portion;
[0018] An external air pump is used to suck air into the suction hood, creating suction inside the suction hood, so that all the debris within the suction range of the suction hood is discharged outward through the suction hood into the collection box, thereby reducing the difficulty of subsequent manual cleaning of the debris;
[0019] The second driving member is controlled to drive the support plate to move towards the honeycomb core side until the support plate fits against the honeycomb core. At this time, the suction channel is blocked by the honeycomb core, so that most of the hot air flows from the exhaust groove towards the connection between the edge banding and the bent portion, thereby accelerating the solidification of the glue at the connection between the edge banding and the bent portion, improving the edge banding efficiency, and shortening the waiting time for subsequent panel processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a three-dimensional structural schematic diagram of the processing device for furniture production that is easy to clean according to the present invention;
[0021] Figure 2 is a three-dimensional structural schematic diagram of the combination of the conveyor belt, rollers and grooving disc according to the present invention;
[0022] Figure 3 is a three-dimensional structural schematic diagram of the combination of the bent plate, fixed plate and support plate according to the present invention;
[0023] Figure 4 is for the present invention Figure 3 enlarged view of part A;
[0024] Figure 5 is a three-dimensional structural schematic diagram of the combination of the fixed plate, support plate and pressing plate according to the present invention;
[0025] Figure 6 is for the present invention Figure 5 enlarged view of part B;
[0026] Figure 7 is the front view of the combination of the fixed plate, support plate and pressing plate according to the present invention;
[0027] Figure 8 is a schematic diagram of the installation position of the suction hood according to the present invention;
[0028] Figure 9 is a three-dimensional structural schematic diagram of the combination of the suction hood and the limiting plate according to the present invention.
[0029] The labels in the figure are: 1-frame, 2-conveyor belt, 3-roller, 4-slotted disc, 5-panel, 5001-honeycomb core, 5002-aluminum plate, 5003-bent part, 6-bent plate, 7-fixed plate, 8-support plate, 8001-support part, 8002-air suction channel, 8003-exhaust groove, 8004-inclined surface, 201-motor, 202-first driving member, 203-second driving member, 204-third driving member, 205-connecting plate, 206-pressure plate, 301-air suction hood, 302-positioning plate, 30201-arc surface. Detailed implementation manners
[0030] The present invention will be further described below in conjunction with the embodiments shown in the accompanying drawings.
[0031] Embodiment 1
[0032] As Figures 1-7 shown, a processing device for furniture production that is convenient for cleaning includes a frame 1, a conveyor belt 2, rollers 3, a slotted disc 4, and a motor 201; a conveyor belt 2 is installed in the middle of the frame 1; a plurality of rollers 3 are arranged on the upper side of the frame 1; two motors 201 that are symmetrically arranged front and back are fixedly connected to the upper side of the frame 1; a slotted disc 4 is connected to the output end of each motor 201; a panel 5 is conveyed between the conveyor belt 2 and the rollers 3; the panel 5 is composed of a honeycomb core 5001 and two aluminum plates 5002, and the honeycomb core 5001 is located between the two aluminum plates 5002;
[0033] It further includes a bent plate 6, a fixed plate 7, a support plate 8, a first driving member 202, a second driving member 203, a correction component, and an auxiliary system; four first driving members 202 arranged in a rectangle are installed on the front side and the rear side of the frame 1, and the first driving member 202 is an electric push rod; adjacent two first driving members 202 are jointly connected to a bent plate 6 at the telescopic end, and all the bent plates 6 are arranged in a rectangle; two fixed plates 7 that are symmetrically arranged front and back are installed on the frame 1; a support plate 8 is slidably connected to each fixed plate 7; the support plate 8 is in a T shape, and the vertical part of the support plate 8 is a support part 8001; four second driving members 203 arranged in a rectangle are installed on the frame 1, and the second driving member 203 is an electric push rod; the support plate 8 is connected to the telescopic ends of adjacent two second driving members 203; a correction component is connected to the frame 1; an auxiliary system is installed on the frame 1.
[0034] The correction component includes a third driving member 204, a connecting plate 205, and a pressure plate 206; four third driving members 204 arranged in a rectangle are fixedly connected to the frame 1, and the third driving member 204 is an electric push rod; a connecting plate 205 is jointly fixedly connected to the telescopic ends of every two adjacent third driving members 204; two pressure plates 206 that are symmetrically arranged up and down are fixedly connected to each connecting plate 205; each pressure plate 206 is slidably connected to the adjacent fixed plate 7.
[0035] Furthermore, in order to detect whether the connection between the edge banding strip and the bending part 5003 is firm, a tensile sensor is provided on the telescopic end of the second driving member 203.
[0036] The panel 5 is composed of a honeycomb core 5001 and two aluminum plates 5002, and the honeycomb core 5001 is located between the two aluminum plates 5002. The processing of the above panel 5 is described in detail as follows:
[0037] First, place the panel 5 on the left side of the conveyor belt 2, apply a downward pressure to the panel 5 through the rollers 3, so that the panel 5 is closely attached to the surface of the conveyor belt 2. At the same time, drive the panel 5 to move from left to right through the conveyor belt 2. Subsequently, the honeycomb cores 5001 at the front and rear edges of the panel 5 are respectively in contact with the adjacent grooving disks 4. At the same time, with the view from top to bottom as the reference, drive the front grooving disk 4 to rotate clockwise through the front motor 201, and drive the rear grooving disk 4 to rotate counterclockwise through the rear motor 201. Thus, the honeycomb cores 5001 at the front and rear edges of the panel 5 are respectively grooved by the front and rear grooving disks 4. At this time, only two aluminum plates 5002 remain at the front and rear edges of the panel 5. Then, the conveyor belt 2 drives the panel 5 to continue to move to the right, so that the grooved part of the panel 5 passes through the support plate 8 until the grooving of the front and rear edges of the panel 5 is completed. At this time, the two support plates 8 are respectively stuck between the two aluminum plates 5002 at the front and rear edges of the panel 5. At this time, the conveyor belt 2 stops working and the panel 5 stops moving. Then, control the upper first driving member 202 to drive the upper bending plate 6 to move downward, control the lower first driving member 202 to drive the lower bending plate 6 to move upward, and support the two aluminum plates 5002 through the support plate 8, so that the aluminum plates 5002 at the front and rear edges of the panel 5 are respectively bent ninety degrees towards the middle, thereby forming the bending part 5003. Then, apply glue to the front side of the panel 5 and clamp the edge banding strip between the two aluminum plates 5002. When the angle formed by the bending of the bending part 5003 is less than ninety degrees, the distance between the left and right bending parts 5003 is less than the length of the edge banding strip, so that it is difficult for the edge banding strip to be clamped between the two aluminum plates 5002. Therefore, after the aluminum plates 5002 form the bending part 5003, control the third driving member 204 to drive the two connecting plates 205 to move towards each other, so that the pressing plate 206 contacts the adjacent aluminum plate 5002. At this time, the included angle between the aluminum plate 5002 and the adjacent pressing plate 206 is ninety degrees. Subsequently, control the second driving member 203 to drive the two support plates 8 to move away from each other, so that the two support plates 8 respectively squeeze the bending part 5003 outward, so that the bending part 5003 deforms outward. At the same time, support the bending part 5003 through the pressing plate 206 to realize the correction of the bending part 5003, and avoid the situation that the edge banding strip is difficult to be clamped between the two aluminum plates 5002, which affects the edge banding operation of the panel 5 by installing the edge banding strip.
[0038] Moreover, after the support plate 8 presses against the bent portion 5003 and corrects the bent portion 5003, the second driving member 203 drives the two support plates 8 to continue moving away from each other by 0.5 m, so that the bent portion 5003 expands outward, thereby making the distance between the left and right bent portions 5003 greater than the length of the edge sealing strip, and the fold angle of the bent portion 5003 greater than ninety degrees. Thus, it is convenient for workers to snap the edge sealing strip between the two aluminum plates 5002. At the same time, when snapping the edge sealing strip between the two aluminum plates 5002, workers do not need to perform alignment operations, which speeds up the installation efficiency of the edge sealing strip. And at this time, there is a gap between the bent portion 5003 and the edge sealing strip, which is convenient for applying filling glue again, ensuring the tightness between the edge sealing strip and the panel 5 and the quality of the panel 5 after processing. Subsequently, the two support plates 8 are controlled to move back to their original positions. Since the aluminum plate 5002 has a certain ductility, the bent portion 5003 rebounds and fits with the edge sealing strip after losing the extrusion of the support plate 8, and the edge sealing strip and the bent portion 5003 are connected together by glue to achieve edge sealing of the panel 5.
[0039] When the bending plate 6 presses against the aluminum plate 5002 to form the bent portion 5003, when the angle formed by the bending of the bent portion 5003 is greater than ninety degrees, after the edge sealing strip is snapped between the two aluminum plates 5002 at this time, there is a gap between the bent portion 5003 and the two aluminum plates 5002, so that the edge sealing strip is likely to fall off. For this reason, the second driving member 203 is controlled to drive the two support plates 8 to move away from each other, so that the support plate 8 contacts the fold angle of the adjacent bent portion 5003. At this time, the included angle between the aluminum plate 5002 and the bent portion 5003 is ninety degrees. Subsequently, the third driving member 204 drives the two connecting plates 205 to move towards each other, thereby driving the front and rear pressing plates 206 to move towards each other, so that the pressing plates 206 respectively press against the adjacent bent portion 5003 inward, so that the bent portion 5003 bends inward. At the same time, the bent portion 5003 is supported by the support plate 8 to achieve correction of the bent portion 5003. On this basis, after the edge sealing strip is snapped between the two aluminum plates 5002, the second driving member 203 is controlled to drive the support plate 8 to fit against the inner side of the bent portion 5003, and at the same time, the third driving member 204 is controlled to drive the pressing plate 206 to press against the outer side of the bent portion 5003 for a certain period of time, thereby increasing the tightness of the fit between the bent portion 5003 and the edge sealing strip and reducing the probability of the edge sealing strip separating from the bent portion 5003.
[0040] After the glue at the connection between the edge banding strip and the bending part 5003 solidifies, to detect the connection strength at the connection, the second driving member 203 drives the two support plates 8 to pull outwards, thereby causing the support plates 8 to extrude the bending part 5003 outwards. Then, the force exerted by the support plates 8 on the bending part 5003 is detected by the tension sensor on the telescopic end of the second driving member 203. When the detected tension reaches the set threshold, whether the connection between the edge banding strip and the bending part 5003 is separated is detected by manual observation or using an external detection camera, so as to detect the connection strength at the connection between the edge banding strip and the bending part 5003. If the connection strength at the connection between the edge banding strip and the bending part 5003 meets the standard, then the panel 5 is subsequently taken out from the right side of the frame 1 to complete the edge banding of the panel 5. If the connection strength at the connection between the edge banding strip and the bending part 5003 does not meet the standard, then the two support plates 8 are controlled to move away from each other, causing the bending part 5003 to bend outwards, so that the edge banding strip is separated from the bending part 5003. After manually cleaning the residual glue, filling glue is applied again, and then the pressing plate 206 is controlled to extrude the bending part 5003 inwards for a period of time to achieve the re-edge banding of the panel 5.
[0041] After the front side edge banding is completed, the conveyor belt 2 is controlled to drive the panel 5 to continue moving to the right. Subsequently, the panel 5 is manually held, and then the panel 5 is transported to a specific grooving machine to groove the rear side of the panel 5. Then, the connector with the card strip is inserted into the groove on the rear side of the panel 5 to facilitate the subsequent installation of the panel 5.
[0042] Embodiment 2
[0043] Based on Embodiment 1, as Figure 1 and Figures 6-9 shown, the auxiliary system includes an air suction hood 301; two front and rear symmetric air suction hoods 301 are fixedly connected to the frame 1; each air suction hood 301 is located above the adjacent grooving disc 4; all the air suction hoods 301 are communicated with an external air pump through pipelines.
[0044] Furthermore, to improve the cleaning effect of the debris at the concave part of the honeycomb core 5001, an air suction channel 8002 is arranged on the support plate 8, and the air suction channel 8002 is communicated with an external air pump through a pipeline.
[0045] Furthermore, to improve the efficiency of sucking debris, the side of the air suction channel 8002 close to the panel 5 is arranged in a flared structure.
[0046] Furthermore, to improve the edge banding efficiency of the panel 5, an exhaust groove 8003 is opened on the right side of each support plate 8.
[0047] The auxiliary system further includes a limiting plate 302; two left and right symmetric limiting plates 302 are slidably connected to each bending plate 6 through springs.
[0048] Further, to prevent the outward-expanded aluminum plate 5002 from colliding with the limit plate 302, arc surfaces 30201 are provided on the limit plates 302, and the arc surfaces 30201 of the upper and lower limit plates 302 are arranged in a V-shaped pattern.
[0049] Furthermore, to prevent the aluminum plate 5002 from rubbing against the edge of the support portion 8001, two upper and lower symmetric inclined surfaces 8004 are provided on the left and right sides of each support plate 8.
[0050] When the grooving disk 4 grooves the panel 5, a large amount of debris will fly everywhere, and it is difficult to collect the debris, thus increasing the difficulty of cleaning the debris. For this reason, the suction hood 301 covers the outside of the grooving disk 4 to intercept the debris generated by grinding and prevent the debris from flying everywhere. On this basis, an external air pump sucks air into the suction hood 301 to generate suction in the suction hood 301, so that the debris within the suction range of the suction hood 301 is discharged outward through the suction hood 301 into the collection box, thereby reducing the subsequent manual cleaning difficulty of the debris.
[0051] On this basis, when the grooving disk 4 grooves the front edge and the rear edge of the panel 5, since the honeycomb core 5001 is uneven, more debris is likely to accumulate in the recesses on the end face of the honeycomb core 5001, and it is difficult to clean it only by the suction of the suction hood 301. For this reason, when the two support plates 8 are respectively clamped between the two aluminum plates 5002 on the front edge and the rear edge of the panel 5, an external air pump starts to suck air into the suction channel 8002, so that the debris in the concave surface of the end face of the honeycomb core 5001 is discharged outward through the suction channel 8002, improving the cleaning effect of the debris. On this basis, the side of the suction channel 8002 close to the panel 5 is provided with a flared structure, so as to increase the range of the suction channel 8002 for sucking debris and improve the efficiency of sucking debris. Further, after the sealing strip is attached to the bending portion 5003, by controlling the external air pump to send hot air into the suction channel 8002, and at the same time controlling the second driving member 203 to drive the support plate 8 to move towards the side close to the honeycomb core 5001 until the support plate 8 is attached to the honeycomb core 5001. At this time, the suction channel 8002 is blocked by the honeycomb core 5001, so that most of the hot air is blown from the exhaust groove 8003 to the connection between the sealing strip and the bending portion 5003, thereby accelerating the solidification of the glue at the connection between the sealing strip and the bending portion 5003, improving the sealing efficiency, and shortening the subsequent processing waiting time of the panel 5.
[0052] When the grooving disc 4 grooves the panel 5, the grooving disc 4 continuously vibrates, thereby driving the aluminum plate 5002 to vibrate. Since there is no restriction of the honeycomb core 5001 inside the front and rear edges of the panel 5 at this time, the two aluminum plates 5002 are prone to deformation after being vibrated and expand outward in opposite directions, which is not conducive to the aluminum plate 5002 being attached to the support portion 8001, and thus not conducive to subsequent bending. Therefore, since the suction hood 301 is in contact with the upper aluminum plate 5002, the upper aluminum plate 5002 is limited by the suction hood 301, and at the same time, the lower aluminum plate 5002 is supported by the upper surface of the frame 1, so as to avoid the deformation of the aluminum plate 5002 due to vibration. On this basis, when the aluminum plate 5002 of the grooved part of the panel 5 is separated from the suction hood 301, the vibration generated by the grooving disc 4 is transmitted to the grooved part of the aluminum plate 5002, which is likely to cause the grooved part of the aluminum plate 5002 to deform again. Therefore, the upper and lower limiting plates 302 are used to attach to the aluminum plate 5002, so that the upper and lower limiting plates 302 limit the adjacent aluminum plates 5002 and prevent the aluminum plate 5002 from expanding outward, thereby avoiding the deformation of the aluminum plate 5002 and facilitating the subsequent bending of the bending plate 6 on the aluminum plate 5002. Further, since the limiting plates 302 are each provided with an arc surface 30201, and the arc surfaces 30201 of the upper and lower limiting plates 302 are arranged in a V shape, it is convenient for the aluminum plate 5002 to move between the upper and lower limiting plates 302 through the arc surface 30201, avoiding the collision between the expanded aluminum plate 5002 and the limiting plate 302.
[0053] On this basis, when the aluminum plate 5002 of the grooved part of the panel 5 passes through the support plate 8, the inclined surface 8004 guides the aluminum plate 5002 to contact the upper and lower surfaces of the support portion 8001 respectively, so as to avoid the abrasion of the aluminum plate 5002 and the corners of the support portion 8001.
[0054] It should be understood that this embodiment is only used to illustrate the present invention and not to limit the scope of the present invention. In addition, it should be understood that after reading the content taught by the present invention, those skilled in the art can make various changes or modifications to the present invention, and these equivalent forms also fall within the scope defined by the appended claims of this application.
Claims
1. A processing device for furniture production that is convenient for cleaning, comprising a frame (1), a conveyor belt (2), rollers (3), grooving discs (4) and motors (201); the frame (1) is provided with the conveyor belt (2); several rollers (3) are arranged on the upper side of the frame (1); several motors (201) are fixedly connected to the upper side of the frame (1); a grooving disc (4) is connected to the output end of each motor (201); a panel (5) is conveyed between the conveyor belt (2) and the rollers (3); the panel (5) is composed of a honeycomb core (5001) and two aluminum plates (5002), and the honeycomb core (5001) is located between the two aluminum plates (5002); it is characterized in that: It further includes a bending plate (6), a fixing plate (7), a supporting plate (8), a first driving member (202), a second driving member (203), a correction assembly and an auxiliary system; A number of first driving members (202) are installed on the front side and the rear side of the frame (1); The telescopic ends of two adjacent first driving members (202) are jointly connected to a bending plate (6), and all the bending plates (6) are arranged in a rectangle; A number of fixing plates (7) are installed on the frame (1); A supporting plate (8) is slidably connected to each fixing plate (7); The shape of the supporting plate (8) is T-shaped, and the vertical part of the supporting plate (8) is the supporting part (8001); A number of second driving members (203) are installed on the frame (1); The supporting plate (8) is connected to the telescopic ends of two adjacent second driving members (203); A correction assembly is connected to the frame (1). An auxiliary system for facilitating edge sealing of the panel (5) is installed on the frame (1).
2. The processing device for furniture production which is convenient for cleaning according to claim 1, characterized in that: The correction assembly includes a third driving member (204), a connecting plate (205) and a pressing plate (206); A number of third driving members (204) are fixedly connected to the frame (1); The telescopic ends of every two adjacent third driving members (204) are jointly fixedly connected to a connecting plate (205); A number of pressing plates (206) are fixedly connected to each connecting plate (205); Each pressing plate (206) is slidably connected to the adjacent fixing plate (7).
3. A processing device for furniture production that is convenient for cleaning according to claim 1, characterized in that: A tension sensor is arranged on the telescopic end of the second driving member (203).
4. A processing device for furniture production that is convenient for cleaning according to claim 1, characterized in that: The auxiliary system includes a suction hood (301); A number of suction hoods (301) for reducing the difficulty of debris cleaning are fixedly connected to the frame (1); Each suction hood (301) is located above the adjacent grooving disc (4). All the suction hoods (301) are communicated with an external air pump through pipelines.
5. A processing device for furniture production that is easy to clean, according to any one of claims 1-4, characterized in that: An air suction channel (8002) is arranged on the supporting plate (8), and the air suction channel (8002) is communicated with an external air pump through a pipeline.
6. A processing device for furniture production that is easy to clean, as described in claim 5, characterized in that: The side of the air suction channel (8002) close to the panel (5) is arranged in a flared structure.
7. A processing device for furniture production that is convenient for cleaning according to claim 5, characterized in that: An exhaust groove (8003) is formed on the right side of each supporting plate (8).
8. A processing device for furniture production that is easy to clean according to claim 1, characterized in that: The auxiliary system further includes a limiting plate (302); A number of limiting plates (302) are slidably connected to each bending plate (6) through springs.
9. The processing device for furniture production that is convenient for cleaning according to claim 8, wherein: Arc surfaces (30201) are arranged on the limiting plates (302), and the arc surfaces (30201) of the upper and lower limiting plates (302) are arranged in a shape of an eight.
10. A processing device for furniture production that is convenient for cleaning according to claim 7, characterized in that: A number of inclined surfaces (8004) are arranged on the left side and the right side of each supporting plate (8).