Bathroom cabinet plate surface treatment equipment and processing technology
By introducing a transmission component and a turning table into the bathroom cabinet board surface treatment equipment, the inconvenience of manually flipping the boards for double-sided edge sealing in existing equipment has been solved, realizing automated edge sealing on both sides of the boards and improving the convenience and efficiency of the equipment.
Patent Information
- Application Number
- CN202311288453.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-28
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2043-09-28
AI Technical Summary
Existing bathroom cabinet edge banding equipment requires manual flipping of the boards for double-sided edge banding, which is labor-intensive and inconvenient to operate.
Design a surface treatment device for bathroom cabinet panels. The device uses a transmission component and a turning table to move the panels between the edge banding area and the turning area. The turning table adjusts the angle to achieve automatic edge banding on both sides of the panels. Combined with the position switching of the support plate and the adhesive applicator, the stability and convenience of the edge banding process are ensured.
It has achieved automated processing of the edge banding on both sides of the board, reduced manual flipping operations, improved user experience and equipment utilization, and increased processing efficiency.
Smart Images

Figure CN117283670B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of surface treatment technology for sheet materials, and in particular to a surface treatment device and processing technology for bathroom cabinet sheet materials. Background Technology
[0002] Bathroom vanities are an important piece of furniture in daily life. They are assembled from multiple boards. Due to the high humidity in bathrooms, the boards used to make bathroom vanities need to be edge-banded. Edge-banding also makes the boards more stable.
[0003] When edge banding boards, an edge banding machine is used. The edge banding machine mainly includes an operating platform, a conveyor table, and an auxiliary device for bonding the edge banding strip to the board. When edge banding, the relevant personnel place the board on the operating platform at the initial point. The chain drives the board to move along the length of the operating platform. During the movement, the auxiliary device applies glue to the side of the board. After being squeezed, the edge banding strip is fixed on the board.
[0004] This equipment only seals one side of the board. After one side is finished, the personnel at the end point move the board back to the starting point, then flip the board over so that the other side of the board that is not sealed is aligned with the auxiliary device for sealing again. This is labor-intensive and relatively troublesome to operate. Summary of the Invention
[0005] The purpose of this application is to provide a more convenient surface treatment device for bathroom cabinet panels.
[0006] Firstly, the surface treatment equipment for bathroom cabinet panels provided in this application adopts the following technical solution:
[0007] A bathroom cabinet board surface treatment device includes an operating platform and an edge banding component placed on the operating platform. The operating platform is also connected to a transmission component and a turning table for adjusting the angle of the board. The transmission component divides the operating platform into an edge banding area and a turning area.
[0008] When one board is sealed in the edge sealing area and begins to move towards the turning area, another board moves towards the edge sealing area after its angle is adjusted by the turning table in the turning area.
[0009] By adopting the above technical solution, after one side of the board is edge-sealed in the edge-sealing area, it enters the turning table. After the turning table adjusts the angle, it re-enters the edge-sealing area to perform edge-sealing on the other side of the board. At this time, both sides of the board are edge-sealed and it returns to the initial point. Relevant personnel can load and unload materials at the initial point. Compared with the method of transferring the board with one side edge-sealed to the initial point and then flipping the board transferred to the initial point and re-feeding it into the equipment for processing, the operation is more convenient and helps to improve the user experience.
[0010] Optionally, the transmission assembly includes a first transmission chain located in the edge sealing area, a second transmission chain located in the turning area, and a third transmission chain;
[0011] The first and third transmission chains maintain a horizontal distance and form a material drop port. The second transmission chain is located below the third transmission chain and is connected to the turntable. The turntable is capable of lifting the plate on the second transmission chain onto the third transmission chain.
[0012] By adopting the above technical solution, after the board is edge-sealed in the edge-sealing area, it can fall from the material outlet onto the second conveyor chain, be transferred to the turning table via the second conveyor chain, and then be lifted onto the third conveyor chain after the turning table adjusts the angle of the board. Driven by the third conveyor chain, it returns to the edge-sealing area to perform edge-sealing on the other side.
[0013] Optionally, a support plate that is rotatably connected to the operating platform is provided between the first transmission chain and the third transmission chain. When the material moves from the turning area to the edge sealing area, the support plate closes the material drop port.
[0014] By adopting the above technical solution, when the board enters the turning area from the edge banding area, the board has an initial angle, and the board smoothly enters the turning area from the material outlet. When the board enters the edge banding area from the turning area, the board presses the support plate, causing the support plate to rotate, the material outlet is blocked, and the board smoothly moves from the turning area to the edge banding area. By setting the support plate, the stability of the board when switching back and forth between the edge banding area and the turning area is ensured.
[0015] Optionally, the steering platform includes a base, a connecting shaft, and a steering plate. The base is slidably connected to one end of the connecting shaft, and the steering plate is rotatably connected to the other end of the connecting shaft.
[0016] By adopting the above technical solution, when the plate is transferred from the second conveyor chain to the turntable, the connecting shaft slides vertically upward. At the same time as the connecting shaft slides, the turntable drives the plate to rotate 180 degrees, so that the plate falls onto the third conveyor chain after the angle is adjusted.
[0017] Optionally, a material rack is connected to the side of the operating platform away from the turning area, and the material rack includes a first shelf, a second shelf, and a transition plate;
[0018] The second shelf is higher than the first shelf and connected to the first shelf. The transition plate is rotatably connected to the second shelf, and the second shelf is connected to a baffle that can support the transition plate.
[0019] By adopting the above technical solution, when the sheet material is conveyed from the first shelf to the first conveyor chain, the sheet material exerts force on the transition plate, causing the transition plate to rotate counterclockwise and form a passage. The sheet material then moves smoothly onto the first conveyor chain. During the movement, the transition plate can also exert force on the sheet material to pre-fix it. When the sheet material is conveyed from the first conveyor chain to the second shelf, the sheet material presses against the transition plate and moves smoothly from the transition plate to the second shelf. Relevant personnel can work at the material rack, placing the sheet material to be edge-sealed on the first shelf and removing the edge-sealed sheet material from the second shelf. The operation is convenient.
[0020] Optionally, the edge sealing assembly includes a guide, an adhesive applicator, and two cutting components, all of which are connected to the operating platform;
[0021] The two cutting components are symmetrically arranged relative to the guide component, and a conversion groove is provided between each of the two cutting components and the guide component. The conversion groove is opened on the operating platform, and the adhesive applicator is rotatably connected to the operating platform and can switch back and forth between the two conversion grooves.
[0022] By adopting the above technical solution, when the board is transported from the edge-sealing area to the turning area for edge-sealing on one side, the adhesive applicator is located in the conversion groove on the side closer to the material box. When the board is transported from the turning area to the edge-sealing area for edge-sealing on the other side, the adhesive applicator is located in the conversion groove on the side farther away from the material box. By changing the position, the arrangement of the guide and adhesive applicator can be smoothly changed, ensuring that the edge-sealing work is carried out smoothly when the board moves from the edge-sealing area to the material rack.
[0023] Optionally, the adhesive application component includes a storage bin, a scraper wheel, and a connecting seat. The storage bin and the scraper wheel are both connected to the connecting seat. A plurality of nozzles for spraying adhesive are connected to one side of the storage bin. The storage bin is rotatably disposed relative to the connecting seat. The scraper wheel is used to evenly apply adhesive to the board.
[0024] By adopting the above technical solution, when the storage box is switched from one conversion slot to another, the storage box is rotated 180 degrees so that the side of the storage box connected to the nozzle is always facing the first transmission chain, which facilitates glue application and ensures the stable progress of the edge sealing work.
[0025] Secondly, the surface treatment process for bathroom cabinet panels provided in this application adopts the following technical solution:
[0026] A surface treatment process for bathroom cabinet panels includes the following steps;
[0027] S1. Transfer the board from the material rack to the edge banding area, so that the first conveyor chain drives the board to move and move towards the turning area. During the movement, the edge banding component performs edge banding on one side of the board.
[0028] S2. The board with one side sealed enters the turning area from the material inlet. The second transmission chain drives the board to move to the turning table. After the angle of the board is adjusted by the turning table, it is lifted to the third transmission chain.
[0029] S3. After the angle is adjusted, the board material returns from the turning area to the edge sealing area under the drive of the third transmission chain;
[0030] S4. The first conveyor chain drives the board to move towards the material rack. During the movement, the edge banding component performs edge banding on the other side of the board.
[0031] S5. The sheet material is returned to the material rack.
[0032] By adopting the above technical solution, relevant personnel load materials at the material rack. The boards enter the edge-sealing area from the material rack, and one side of the board is edge-sealed. Then, the board enters the turning area to adjust the angle and returns to the edge-sealing area, where the other side of the board is also edge-sealed. The board with both sides edge-sealed returns to the material rack, and relevant personnel then perform the unloading operation. The edge-sealing of both sides of the board can be performed without changing positions, which facilitates edge-sealing and unloading operations.
[0033] Optionally, after the first board is edge-sealed in the edge-sealing area and enters the turning area, the second board is sent into the edge-sealing area for edge-sealing. When the first board returns from the turning area to the edge-sealing area, the second board enters the turning area.
[0034] By adopting the above technical solution, when the first board enters the turning area for angle adjustment, the second board has already entered the edge banding area for one side processing, thereby improving equipment utilization and processing efficiency.
[0035] Optionally, two boards can be grouped together. After both boards have returned to the material rack, the next group of boards can be fed into the equipment and the above operation can be repeated.
[0036] By adopting the above technical solution, two boards are used as a group for loading and unloading, thereby reducing the possibility of conflict between the two boards during processing.
[0037] In summary, this application includes at least one of the following beneficial technical effects:
[0038] 1. After one side of the board is edge-sealed in the edge-sealing area, it enters the turning table. After the turning table adjusts the angle, it re-enters the edge-sealing area to perform edge-sealing on the other side of the board. At this point, both sides of the board are edge-sealed and it returns to the initial point. Relevant personnel can load and unload materials at the initial point. Compared with the method of transferring the board with edge-sealed on one side to the initial point, flipping the board at the initial point, and then feeding it back into the equipment for processing, this method is more convenient and improves the user experience.
[0039] 2. This application includes a support plate. When the board moves from the edge banding area to the turning area, it has an initial angle and smoothly enters the turning area from the discharge port. When the board moves from the turning area to the edge banding area, it presses against the support plate, causing the support plate to rotate and the discharge port to be blocked. The board then moves smoothly from the turning area to the edge banding area. By providing the support plate, the stability of the board when switching between the edge banding area and the turning area is ensured.
[0040] 3. The equipment in this application can process multiple boards. When the first board enters the turning area for angle adjustment, the second board has already entered the edge sealing area for processing on one side, thereby improving the utilization rate of the equipment and increasing processing efficiency. Attached Figure Description
[0041] Figure 1 This is a partial structural schematic diagram of a bathroom cabinet board surface treatment device according to this application;
[0042] Figure 2 This is a schematic diagram of the remaining part of a bathroom cabinet board surface treatment device in this application;
[0043] Figure 3 This is a cross-sectional structural schematic diagram of the elastic element in this application;
[0044] Figure 4 yes Figure 1 A magnified view of part A in the middle;
[0045] Figure 5 yes Figure 1 A magnified view of part B in the diagram.
[0046] In the picture,
[0047] 1. Operating platform; 11. Edge sealing area; 12. Turning area; 13. Material discharge port; 14. Conversion groove; 16. Clearance groove;
[0048] 2. Edge banding assembly; 21. Guide component; 22. Glue application component; 221. Material storage bin; 2211. Nozzle; 222. Scraper wheel; 223. Connecting seat; 224. Converter rod; 226. Sleeve rod; 23. Cutting component; 24. Crimping component; 241. Pressing rod; 242. Adjusting rod; 31. First transmission chain; 32. Second transmission chain; 33. Third transmission chain;
[0049] 4. Bogie; 41. Base; 42. Connecting shaft; 43. Bogie plate;
[0050] 6. Support plate;
[0051] 7. Material rack; 71. First shelf; 72. Second shelf; 73. Transition plate; 74. Baffle; 75. Fixing rod;
[0052] 8. Elastic element; 81. Telescopic rod; 811. Sliding hole; 82. Connecting rod; 83. Spring;
[0053] 9. Support platform; 91. Slide rod; 92. Pulley;
[0054] 20. Edge sealing strip. Detailed Implementation
[0055] The following is in conjunction with the appendix Figure 1 - Appendix Figure 5 This application will be described in further detail below.
[0056] A surface treatment device for bathroom cabinet panels, as described in the reference. Figure 1 and Figure 2 The system includes an operating platform 1 and an edge banding assembly 2 placed on the operating platform 1. The operating platform 1 is also connected to a transmission assembly and a turntable 4 for adjusting the angle of the board. The transmission assembly divides the operating platform 1 into an edge banding area 11 and a turntable 12. The edge banding area 11 performs edge banding on the board, while the turntable 12 adjusts the angle of the board. A material rack 7 is connected to the side of the operating platform 1 away from the turntable 12. The material rack 7 is used to store the board.
[0057] Reference Figure 1 and Figure 2 The transmission assembly includes a first transmission chain 31 located in the edge sealing area 11, a second transmission chain 32 located in the turning area 12, and a third transmission chain 33. The first transmission chain 31, the second transmission chain 32, and the third transmission chain 33 are all used to drive the sheet material to move and are powered by a motor. The first transmission chain 31 and the third transmission chain 33 maintain a distance in the horizontal direction and form a material drop port 13. The second transmission chain 32 is located below the third transmission chain 33 and is connected to the turning table 4. The turning table 4 can lift the sheet material on the second transmission chain 32 onto the third transmission chain 33.
[0058] The entire movement process of the sheet material on the equipment is as follows: The sheet material is transported from the material rack 7 to the operating platform 1, and moves towards the turning area 12 under the drive of the first transmission chain 31. At this time, the sheet material is located in the edge sealing area 11. The edge sealing component 2 performs edge sealing treatment on one side of the sheet material. After one side is edge sealed, the sheet material falls from the drop port 13 to the second transmission chain 32. At this time, the sheet material enters the turning area 12. Under the drive of the second transmission chain 32, the sheet material is moved to the turning table 4. The turning table 4 rotates the sheet material 180 degrees and lifts it onto the third transmission chain 33. Under the drive of the third transmission chain 33, the sheet material moves towards the edge sealing area 11. When the sheet material is about to contact the first transmission chain 31, the first transmission chain 31 has already rotated in the opposite direction to drive the sheet material into the edge sealing area 11 to perform edge sealing treatment on the other side of the sheet material and transport the sheet material back to the material rack 7.
[0059] Reference Figure 2 and Figure 3 A support plate 6 is provided between the first transmission chain 31 and the third transmission chain 33 and is rotatably connected to the operating platform 1. When the plate moves from the turning area 12 to the sealing area 11, the support plate 6 closes the material drop port 13 and the support plate 6 has an initial angle. Taking the front view of the support plate 6 as an example, the support plate 6 and the third transmission chain 33 form an obtuse angle, and elastic elements 8 are connected to the bottom ends of both sides of the support plate 6.
[0060] In this embodiment, the elastic element 8 includes a telescopic rod 81, a connecting rod 82, and a spring 83. One end of the telescopic rod 81 is hinged to the operating platform 1, and the other end of the telescopic rod 81 has a sliding hole 811. One end of the connecting rod 82 extends into the sliding hole 811, and the other end of the connecting rod 82 is hinged to the support plate 6. One end of the spring 83 abuts against the bottom wall of the sliding hole 811, and the other end of the spring 83 abuts against the end of the connecting rod 82 that extends into the sliding hole 811. In other embodiments, the two ends of the spring 83 can also be directly connected to the support plate 6 and the operating platform 1, respectively.
[0061] When the sheet moves from the first conveyor chain 31 to the second conveyor chain 32, the support plate 6 maintains its initial angle and the sheet passes smoothly through the discharge port 13. When the sheet moves from the third conveyor chain 33 to the first conveyor chain 31, the sheet will contact the support plate 6 and press the support plate 6. The elastic element 8 contracts, and the support plate 6 rotates, making the obtuse angle formed between the support plate 6 and the third conveyor chain 33 larger and larger. The support plate 6 acts as a transition, and the sheet passes smoothly over the discharge port 13.
[0062] Reference Figure 1 and Figure 2The widths of the second transmission chain 32 and the third transmission chain 33 are greater than the width of the first transmission chain 31. Specifically, in this embodiment, the widths of the second transmission chain 32 and the third transmission chain 33 are at least four times that of the first transmission chain 31. A support platform 9 is connected to one side of the first transmission chain 31. The support platform 9 maintains a distance from the first transmission chain 31, and the distance is adjustable. Specifically, the support platform 9 is connected to the operating platform 1 by a slide rod 91. Multiple pulleys are rotatably connected to the top of the support platform 9. Multiple pulleys are evenly distributed on the support platform 9 to reduce the friction between the support platform 9 and the plate, and to ensure that the plate slides smoothly on the support platform 9.
[0063] Reference Figure 2 The turning platform 4 includes a base 41, a connecting shaft 42, and a turning plate 43. The base 41 is slidably connected to one end of the connecting shaft 42, and the turning plate 43 is rotatably connected to the other end of the connecting shaft 42. When the plate is transported from the second transmission chain 32 to the turning plate 43, the turning plate 43 drives the plate to rotate 180 degrees and rises synchronously during the rotation. The plate is lifted onto the third transmission chain 33. It should be noted that the third transmission chain 33 and the second transmission chain 32 are offset by a certain distance in the horizontal direction. The third transmission chain 33 is closer to the turning platform 4 in the horizontal direction to ensure that the plate can smoothly contact the third transmission chain 33 after being lifted.
[0064] In this embodiment, grippers can also be provided on both sides of the steering plate 43. The two grippers are rotatably connected to the steering plate 43. When the plate is transported to the steering plate 43, the grippers rotate and their ends abut against the plate, so that the plate is clamped to ensure the stability of the plate when it is lifted.
[0065] Reference Figure 1 and Figure 4 The material rack 7 includes a first shelf 71, a second shelf 72, and a transition plate 73. The second shelf 72 is higher than the first shelf 71 and connected to the first shelf 71. The transition plate 73 is rotatably connected to the second shelf 72. A baffle 74 that can support the transition plate 73 is connected to the second shelf 72. The baffle 74 is inclined toward the first shelf 71, and its inclination angle is specifically set according to the actual working conditions.
[0066] The first shelf 71 and the second shelf 72 are horizontally offset. The first shelf 71 is farther from the first transmission chain 31 in the horizontal direction than the second shelf 72. The first shelf 71 and the second shelf 72 are connected by a fixing rod 75. Furthermore, an elastic element 8 is also connected between the transition plate 73 and the first shelf 71.
[0067] When the sheet material is conveyed from the first shelf 71 to the first conveyor chain 31, the sheet material exerts force on the transition plate 73, causing the transition plate 73 to rotate counterclockwise and form a passage. The sheet material then moves smoothly onto the first conveyor chain 31. During the movement, the transition plate 73 can also exert force on the sheet material to pre-fix it. When the sheet material is conveyed from the first conveyor chain 31 to the second shelf 72, the sheet material presses against the transition plate 73 and moves smoothly from the transition plate 73 to the second shelf 72. Relevant personnel can work at the material rack 7, placing the sheet material to be edge-sealed on the first shelf 71 and removing the edge-sealed sheet material from the second shelf 72. The operation is convenient.
[0068] Reference Figure 1 and Figure 2 The edge banding assembly 2 includes a guide 21, an adhesive applicator 22, and two cutting components 23. The guide 21, adhesive applicator 22, and cutting components 23 are all connected to the operating platform 1. The two cutting components 23 are symmetrically arranged relative to the guide 21 and can slide along the operating platform 1. When the board moves from the edge banding area 11 to the conversion area, the cutting component 23 on the side closer to the material rack 7 extends to cut and grind the side of the board for pre-treatment before edge banding. When the board moves from the conversion area to the edge banding area 11, the cutting component 23 on the side farther away from the material rack 7 extends to cut and grind the other side of the board.
[0069] In this embodiment, the cutting component 23 is preferably a rotary cutter. During cutting and grinding, debris will be generated. In order to reduce the interference of debris on the subsequent formal edge sealing work, a brush can be added near the rotary cutter to clean up the debris.
[0070] Reference Figure 1 A conversion groove 14 is provided between each of the two cutting parts 23 and the guide part 21. The conversion groove 14 is opened on the operating platform 1. The gluing part 22 is rotatably connected to the operating platform 1 and can switch back and forth between the two conversion grooves 14. Further, the guide part 21 includes a first guide wheel and a second guide wheel that are both connected to the operating platform 1. The first guide wheel and the second guide wheel are both used to guide the edge banding strip 20. When the board enters the edge banding area 11 from the material rack 7, the first guide wheel near the material rack 7 guides the edge banding strip 20. When the board enters the edge banding area 11 from the turning area 12, the second guide wheel near the conversion table guides the edge banding strip 20.
[0071] Reference Figure 1 and Figure 5 The adhesive application component 22 includes a storage tank 221, a scraper wheel 222, and a connecting seat 223. The connecting seat 223 is placed in the conversion groove 14. The storage tank 221 and the scraper wheel 222 are both connected to the connecting seat 223. A number of adhesive spraying nozzles 2211 are connected to one side of the storage tank 221. The scraper wheel 222 is used to evenly apply the adhesive to the board.
[0072] When the board is transported from the edge sealing area 11 to the turning area 12 for edge sealing on one side, the adhesive applicator 22 is located in the conversion groove 14 on the side closer to the material box. When the board is transported from the turning area 12 to the edge sealing area 11 for edge sealing on the other side, the adhesive applicator 22 is located in the conversion groove 14 on the side farther away from the material box.
[0073] The top of the connecting seat 223 is connected to a conversion rod 224, and the other end of the conversion rod 224 is hinged to the operating platform 1. The vertical distance between the conversion rod 224 and the operating platform 1 is adjustable. Specifically, the conversion rod 224 and the operating platform 1 are connected by a sleeve rod 226, which is telescopic.
[0074] When the conversion rod 224 rotates at a certain angle, the sleeve rod 226 extends and lifts the conversion rod 224, causing the connecting seat 223 to pass over the sealing strip 20. Then the sleeve rod 226 descends. Correspondingly, the area of the operating platform 1 where the conversion groove 14 is provided is also provided with a clearance groove 16, so that the conversion rod 224 can drive the storage box 221 to move.
[0075] Both the storage bin 221 and the scraper wheel 222 can slide along the opening depth direction of the conversion groove 14 to move closer to the board. When the storage bin 221 switches from one conversion groove 14 to another, the storage bin 221 and the scraper wheel 222 slide, so that the storage bin 221 and the scraper wheel 222 move closer to the first transmission chain 31. Furthermore, the storage bin 221 is rotatably set relative to the connecting seat 223. After sliding is completed, the storage bin 221 rotates 180 degrees, and the side of the storage bin 221 connected to the nozzle 2211 faces the first transmission chain 31, which is convenient for applying glue.
[0076] Reference Figure 1 and Figure 2 The edge banding assembly 2 also includes a pressing component 24 for pressing the sheet material. The pressing component 24 includes a pressing rod 241 and an adjusting rod 242. The adjusting rod 242 passes through the operating platform 1 and can move vertically. The pressing rod 241 is connected to the adjusting rod 242. A limiting ball is fixed at the bottom end of the pressing rod 241. When the sheet material enters the edge banding area 11, the limiting ball moves closer to the second transmission chain 32 under the action of the adjusting rod 242 and abuts against the top surface of the sheet material.
[0077] This embodiment also discloses a processing technology based on a bathroom cabinet board surface treatment equipment, including the following steps;
[0078] S1. Transfer the board from the material rack 7 to the edge banding area 11, so that the first transmission chain 31 drives the board to move and approach the turning area 12. During the movement, the edge banding component 2 performs edge banding on one side of the board.
[0079] S2. The board with one side sealed enters the turning area 12 from the material outlet 13. The second transmission chain 32 drives the board to move onto the turning table 4. After the turning table 4 adjusts the angle, the board is lifted onto the third transmission chain 33.
[0080] S3. After the angle is adjusted, the board material returns from the turning area 12 to the edge sealing area 11 under the drive of the third transmission chain 33;
[0081] S4. The first transmission chain 31 drives the board to move towards the material rack 7. During the movement, the edge sealing component 2 seals the other side of the board.
[0082] S5. The sheet material is returned to the material rack 7.
[0083] It should be noted that when the board enters the edge banding area 11 from the material rack 7, the glue applicator 22 is located in the conversion groove 14 on the side closer to the material rack 7. When the board returns to the edge banding area 11 from the turning area 12, the glue applicator 22 is located in the conversion groove 14 on the side closer to the turning table 4.
[0084] To facilitate differentiation, two boards are grouped together. The first board to enter the equipment is the first board, and the second board is the second board. After the first board is edge-sealed in the edge-sealing area 11 and enters the turning area 12, the second board is sent into the edge-sealing area 11 for edge-sealing. When the first board returns from the turning area 12 to the edge-sealing area 11, the second board enters the turning area 12. After both boards return to the material rack 7, the next group of boards is sent into the equipment and the above operation is repeated.
[0085] The implementation principle of this application embodiment is as follows: The board to be processed is placed on the first placement plate 71. When edge sealing is required, the board is moved to the edge sealing area 11. After one side of the edge sealing component 2 is cut, polished, glued, and the edge sealing strip 20 is attached, the edge sealing on that side is completed. After moving a certain distance, the board enters the turning area 12 from the material drop port 13. Driven by the second transmission chain 32, the board is transferred to the turning table 4. The turning table 4 rotates the board 180 degrees and lifts it onto the third transmission chain 33. The third transmission chain 33 transports the board back to the edge sealing area 11.
[0086] Before the board enters the edge banding area 11, the conversion rod 224 drives the glue applicator 22 to rotate. The glue applicator 22 is transferred from the conversion slot 14 near the material rack 7 to another conversion slot 14 near the turntable 4. Then the edge banding gradually applies edge banding to the other side of the board. At this time, both sides of the board are edge banded.
[0087] After the edges on both sides are sealed, the board continues to move a distance. At this point, the board is finally transferred to the second shelf 72 under the action of the transition plate 73. Relevant personnel can add boards to be processed on the first shelf 71 and remove the processed boards from the second shelf 72. The edges on both sides of the board can be sealed with one machine. After the edges are sealed, the board returns to the material rack 7, making the operation more convenient and the processing efficiency higher.
[0088] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be covered within the scope of protection of this application.
Claims
1. A surface treatment device for bathroom cabinet panels, comprising an operating platform (1) and an edge-sealing assembly (2) placed on the operating platform (1), characterized in that, The operating platform (1) is also connected to a transmission assembly and a steering table (4) for adjusting the angle of the sheet metal. The transmission assembly divides the operating platform (1) into an edge sealing area (11) and a steering area (12). The edge sealing assembly (2) includes a guide (21), an adhesive applicator (22), two cutting parts (23), and two pressing parts (24). The guide (21), the adhesive applicator (22), the cutting parts (23), and the pressing parts (24) are all connected to the operating platform. On the platform (1); two cutting parts (23) are symmetrically arranged relative to the guide (21), and a conversion groove (14) is provided between each of the two cutting parts (23) and the guide (21). The conversion groove (14) is opened on the operating platform (1). The glue applicator (22) is rotatably connected to the operating platform (1) and can switch back and forth between the two conversion grooves (14). The glue applicator (22) includes a storage box (221), a scraper wheel (222), and A connecting seat (223) is provided, on which the storage tank (221) and the scraper wheel (222) are both connected. A plurality of nozzles (2211) for spraying adhesive are connected to one side of the storage tank (221). The storage tank (221) is rotatably mounted relative to the connecting seat (223). The scraper wheel (222) is used to evenly apply adhesive to the board. A conversion rod (224) is connected to the top of the connecting seat (223). The other end of the connecting rod (224) is hinged to the operating platform (1). The vertical distance between the connecting rod (224) and the operating platform (1) is adjustable. The connecting rod (224) and the operating platform (1) are connected by a sleeve rod (226), which is telescopic. When the connecting rod (224) rotates at a certain angle, the sleeve rod (226) extends and lifts the connecting rod (224) so that the connecting seat (223) passes over the sealing strip (20). When one board is sealed in the edge sealing area (11) and begins to move toward the turning area (12), another board moves toward the edge sealing area (11) after the angle is adjusted by the turning table (4) in the turning area (12).
2. The bathroom cabinet board surface treatment equipment according to claim 1, characterized in that, The transmission assembly includes a first transmission chain (31) located in the sealing area (11), a second transmission chain (32) located in the turning area (12), and a third transmission chain (33); The first transmission chain (31) and the third transmission chain (33) maintain a horizontal distance and form a material drop port (13). The second transmission chain (32) is located below the third transmission chain (33) and is connected to the turntable (4). The turntable (4) can lift the plate on the second transmission chain (32) onto the third transmission chain (33).
3. The bathroom cabinet board surface treatment equipment according to claim 2, characterized in that, A support plate (6) is provided between the first transmission chain (31) and the third transmission chain (33) and is rotatably connected to the operating platform (1). When the plate moves from the turning area (12) to the sealing area (11), the support plate (6) closes the material drop port (13).
4. The bathroom cabinet board surface treatment equipment according to claim 2, characterized in that, The steering platform (4) includes a base (41), a connecting shaft (42) and a steering plate (43). The base (41) is slidably connected to one end of the connecting shaft (42), and the steering plate (43) is rotatably connected to the other end of the connecting shaft (42).
5. The bathroom cabinet board surface treatment equipment according to claim 1, characterized in that, The operating platform (1) is connected to a material rack (7) on the side away from the turning area (12). The material rack (7) includes a first shelf (71), a second shelf (72), and a transition plate (73). The second shelf (72) is higher than the first shelf (71) and connected to the first shelf (71). The transition plate (73) is rotatably connected to the second shelf (72). The second shelf (72) is connected to a baffle (74) that can support the transition plate (73).
6. A processing technology for a bathroom cabinet board surface treatment equipment according to any one of claims 1-5, characterized in that, Includes the following steps; S1. Transfer the board from the material rack (7) to the edge sealing area (11), so that the first transmission chain (31) drives the board to move and move towards the turning area (12). During the movement, the edge sealing component (2) seals one side of the board. S2. The board with one side sealed enters the turning area (12) from the material drop port (13). The second transmission chain (32) drives the board to move onto the turning table (4). After the angle of the board is adjusted by the turning table (4), it is lifted onto the third transmission chain (33). S3. After the angle is adjusted, the plate material returns from the turning area (12) to the sealing area (11) under the drive of the third transmission chain (33); S4. The first transmission chain (31) drives the plate to move towards the material rack (7). During the movement, the edge sealing component (2) seals the other side of the plate. S5. The sheet material is returned to the material rack (7).
7. The processing technology of the bathroom cabinet board surface treatment equipment according to claim 6, characterized in that, After the first board is edge-sealed in the edge-sealing area (11) and enters the turning area (12), the second board is sent into the edge-sealing area (11) for edge-sealing. When the first board returns to the edge-sealing area (11) from the turning area (12), the second board enters the turning area (12).
8. According to the processing technology of the bathroom cabinet board surface treatment equipment as described in claim 7, two boards are used as a group. After both boards are returned to the material rack (7), the next group of boards is sent into the equipment and the above operation is repeated.
Citation Information
Patent Citations
Full-automatic edge bonding machine
CN214110781U
Edge banding machine capable of automatically rotating workpieces
CN217020814U