Honeycomb aluminum plate side wall processing equipment

By introducing a sliding structure for the support plate and the grinding plate into the honeycomb aluminum panel sidewall processing equipment, the problem of insufficient contact surface of the grinding roller is solved, achieving efficient and uniform grinding effect, protecting the grinding plate, and extending the service life of the equipment.

CN120516533BActive Publication Date: 2025-11-18JIANGSU SHENGXINGHE METAL SHEET IND CO LTD
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Patent Information

Application Number
CN202511015212.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-23
Publication Date
2025-11-18
Estimated Expiration
2045-07-23

AI Technical Summary

Technical Problem

In existing honeycomb aluminum panel grinding equipment, the contact area between the grinding roller and the side wall of the honeycomb aluminum panel is limited, resulting in poor grinding effect and affecting processing efficiency and product quality.

Method used

A honeycomb aluminum panel sidewall processing equipment was designed, which adopts a sliding structure of support plate and grinding plate. Through the cooperation of support sliding parts and anti-collision plate, the grinding plate is ensured to have full contact with the honeycomb aluminum panel sidewall, and the anti-collision plate protects the grinding plate to avoid bumps and extend its service life.

Benefits of technology

It improves the efficiency and uniformity of grinding the sidewalls of honeycomb aluminum panels, extends the service life of the grinding plate, and enhances the reliability and safety of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a honeycomb aluminum plate side wall processing equipment and belongs to the technical field of honeycomb aluminum plate processing equipment. The equipment comprises a transfer table, a processing table and a polishing table arranged in sequence. The processing table is provided with clamping assemblies for clamping the honeycomb aluminum plate on both sides. A supporting plate is slidably arranged on the polishing table. A polishing plate for polishing the side wall of the honeycomb aluminum plate is slidably connected to one side of the supporting plate facing the processing table. A bumper plate for protecting the polishing plate is slidably connected to the polishing table. During the movement of the honeycomb aluminum plate from the transfer table to the processing table, the bumper plate is located on the side of the polishing plate away from the supporting plate. After the honeycomb aluminum plate slides to be attached to the bumper plate, the bumper plate slides to be separated from the honeycomb aluminum plate. The supporting plate slides to be attached to the side wall of the honeycomb aluminum plate. The polishing plate slides and polishes the side wall of the honeycomb aluminum plate. The application has the effect of improving the working efficiency of polishing the side wall of the honeycomb aluminum plate.
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Description

Technical Field

[0001] This application relates to the technical field of honeycomb aluminum panel processing equipment, and in particular to a honeycomb aluminum panel sidewall processing equipment. Background Technology

[0002] Honeycomb aluminum panels are a composite material developed based on aerospace industry technology. They employ a "honeycomb sandwich" structure, using high-strength alloy aluminum plates as the face and base layers, which are then bonded to an aluminum honeycomb core under high temperature and pressure. Their core advantages lie in their lightweight, high strength, and excellent physical properties, and they are primarily used in building curtain walls, vehicle and ship decoration, and aerospace applications.

[0003] During the processing of honeycomb aluminum panels, burrs or uneven parts may be generated on the sidewalls, which will affect the installation effect and aesthetics, and also affect the subsequent application of edge sealing paint on the sidewalls of the honeycomb aluminum panels. Therefore, it is usually necessary to grind the sidewalls of the honeycomb aluminum panels using grinding equipment. The grinding equipment in the prior art includes a transfer table, a processing table and a grinding table arranged in sequence. A grinding roller is rotatably connected to the grinding table. The honeycomb aluminum panel is moved to the processing table by the transfer table, and after being clamped and fixed by the clamping mechanism set on the processing table, it is ground by the rotation of the grinding roller.

[0004] In practical applications, it was found that the contact area between the grinding roller and the side wall of the honeycomb aluminum plate is limited, resulting in poor grinding effect. Summary of the Invention

[0005] To improve the efficiency of grinding the sidewalls of honeycomb aluminum panels, this application provides a honeycomb aluminum panel sidewall processing equipment.

[0006] The honeycomb aluminum panel sidewall processing equipment provided in this application adopts the following technical solution:

[0007] A honeycomb aluminum panel sidewall processing device includes a transfer table, a processing table, and a grinding table arranged in sequence. Clamping assemblies for holding the honeycomb aluminum panel are provided on both sides of the processing table. A support plate is slidably mounted on the grinding table, and a support sliding member is provided on the grinding table for controlling the sliding of the support plate. A grinding plate for grinding the sidewall of the honeycomb aluminum panel is slidably connected to the side of the support plate facing the processing table. A grinding sliding member is provided on the support plate for controlling the sliding of the grinding plate. An anti-collision plate for providing protection to the grinding plate is slidably connected to the grinding table, and an anti-collision sliding member is provided on the grinding table for controlling the sliding of the anti-collision plate.

[0008] During the process of moving the honeycomb aluminum panel from the transfer table to the processing table, the anti-collision plate is located on the side of the grinding plate away from the support plate. After the honeycomb aluminum panel slides to fit against the anti-collision plate, the anti-collision sliding component drives the anti-collision plate to slide to separate from the honeycomb aluminum panel. The support sliding component drives the support plate to slide until the grinding plate fits against the side wall of the honeycomb aluminum panel. The grinding plate slides under the action of the grinding sliding component and grinds the side wall of the honeycomb aluminum panel.

[0009] By adopting the above technical solution, the contact area between the grinding plate and the honeycomb aluminum plate is large, which can uniformly grind the side wall of the honeycomb aluminum plate, effectively improving the work efficiency of grinding the side wall of the honeycomb aluminum plate. Furthermore, the anti-collision plate makes it less likely for the grinding plate to be bumped during the transportation of the honeycomb aluminum plate, effectively extending the service life of the grinding plate.

[0010] Preferably, the supporting sliding component includes a supporting gear rotatably mounted on the grinding table, the grinding table having a receiving cavity for accommodating the supporting gear, the supporting plate having a supporting rack meshing with the supporting gear on the side opposite to the processing table, and the grinding table having a control component for driving the supporting gear to rotate.

[0011] By adopting the above technical solution, when the support gear rotates under the action of the control component, the support plate can slide along the arrangement direction of the transfer table, processing table and grinding table under the action of gear transmission, which makes it easy to control the sliding length of the support plate.

[0012] Preferably, the control component includes a control rack slidably disposed within the grinding table. The control rack slides along the height direction of the grinding table. The control rack is perpendicular to the support rack, and the control rack is located on the side of the support gear facing the processing table. The support rack is located on the side of the support gear away from the ground. When the control rack slides towards the ground, the support plate slides towards the processing table under the action of gear transmission.

[0013] A control block is provided on the side of the control rack facing the processing table. The end of the control block away from the control rack passes through the grinding table. A control groove for sliding the control block is provided through the grinding table. The end of the control block outside the control groove is located below the anti-collision plate in the vertical direction. When the anti-collision plate slides to completely separate from the honeycomb aluminum plate, the anti-collision plate contacts the side of the control block away from the ground. The grinding table is provided with a control elastic element for pushing the control rack to slide away from the ground.

[0014] By adopting the above technical solution, when the anti-collision plate slides to the point of complete separation from the honeycomb aluminum plate, the anti-collision plate and the control block contact the side away from the ground. On the one hand, when the anti-collision plate slides subsequently, the control block can slide along with the anti-collision plate, thereby driving the support gear to rotate. This allows the support plate to slide down to the grinding plate and contact the honeycomb aluminum plate under the action of gear transmission. On the other hand, it is easier to control the timing of the rotation of the support gear, and it is less likely that the support plate will slide down to the grinding plate and collide with the anti-collision plate, thus improving the reliability of the device.

[0015] Preferably, the grinding table has a through-hole that communicates with the receiving cavity, and the grinding table has a rotatable door for closing the access door from the outside. A locking block is slidably connected to the grinding table, and the grinding table has a locking groove for the locking block to slide. The locking groove communicates with the access door, and the door has a locking slot for the locking block to slide into after it is inserted. When the door is rotated to the closed access door state, the locking groove communicates with the locking slot. The grinding table has a locking component for controlling the sliding of the locking block.

[0016] By adopting the above technical solution, the installation of the inspection port facilitates the inspection and maintenance of the structure inside the grinding table, while the installation of the cabinet door effectively prevents external dust and impurities from entering the containment cavity.

[0017] Preferably, the locking assembly includes a limiting part slidably disposed on the grinding table. The limiting part includes a limiting block and limiting plates respectively disposed on both sides of the limiting block. The limiting block passes through the grinding table. The grinding table is provided with a limiting groove for the limiting block to slide. The limiting groove communicates with a locking groove. The side wall of the limiting block facing the locking block is provided with a limiting groove that cooperates with the locking block. The grinding table is provided with a locking elastic element for pushing the locking block to slide toward the limiting block. The end of the locking block near the limiting block is provided with a guide arc surface. The inner wall of the limiting groove is adapted to the guide arc surface on the locking block.

[0018] When the limiting part slides to the limiting plate located outside the receiving cavity and fits against the grinding table, one end of the locking block fits against the side wall of the limiting block, and the other end of the locking block is located in the locking groove. When the limiting part slides to the limiting plate located inside the receiving cavity and fits against the inner wall of the receiving cavity, the limiting slide groove and the locking slide groove are connected. The locking block can slide into the limiting groove under the action of the locking elastic element, and the end of the locking block away from the limiting block is completely housed in the locking slide groove.

[0019] By adopting the above technical solution, and by setting the guide arc surface, when the limiting block slides along the limiting groove, the locking block can slide to disengage from the limiting groove. The sliding of the limiting part can control the sliding of the internal locking block, and the state of the locking block can be judged from the state of the limiting plate outside the receiving cavity. This makes operation convenient and prevents damage to parts such as the box door.

[0020] Preferably, the limiting part is located on the side of the supporting rack away from the processing table in the horizontal direction. When the supporting plate is located on the side of the anti-collision plate away from the processing table, the end of the supporting rack away from the supporting plate is in contact with the limiting plate located in the receiving cavity, and the limiting plate located in the receiving cavity is in contact with the inner wall of the receiving cavity.

[0021] When the grinding plate is attached to the side wall of the honeycomb aluminum plate, the supporting rack separates from the limiting plate. The grinding table is provided with a limiting elastic element for pushing the limiting part to slide to the limiting plate located outside the receiving cavity and attaching it to the grinding table.

[0022] By adopting the above technical solution, in the initial state and during the process of the honeycomb aluminum panel moving from the transfer table to the processing table, the support rack and the limiting part release the locking block from the rotation of the box door, so that the operator can easily open the box door to inspect and maintain the inner wall of the grinding table. During this process, the support gear does not rotate, so there is no danger and it is convenient for daily inspection and maintenance. In the actual operation, the box door is locked by the cooperation of the limiting part and the limiting elastic element to ensure the safety of the operation process.

[0023] Preferably, the grinding table is provided with a guide block, and the anti-collision plate is provided with a guide groove that cooperates with the guide block.

[0024] By adopting the above technical solution, the guide block and guide groove cooperate to provide guidance for the sliding of the anti-collision plate, thereby improving the stability of the anti-collision plate sliding.

[0025] Preferably, the anti-collision plate has an anti-collision pad on the side facing the processing table, and the anti-collision pad is elastic.

[0026] By adopting the above technical solution, the anti-collision pad effectively improves the anti-collision performance of the anti-collision plate, thereby improving the reliability of the anti-collision plate in protecting the grinding plate.

[0027] Preferably, a reinforcing plate is provided between the support plate and the support rack, one end of the reinforcing plate is connected to the end face of the support plate away from the grinding plate, and the other end of the reinforcing plate is connected to the end face of the support rack away from the support gear.

[0028] By adopting the above technical solution and setting the reinforcing plate, the support plate and the support rack can be kept perpendicular. During the process of the support plate being subjected to force, it is not easy for it to tilt relative to the support rack, thereby improving the strength of the support plate and extending the service life of the device.

[0029] Preferably, a control ring hook is provided on the limiting plate located outside the receiving cavity.

[0030] By adopting the above technical solution, if the parts inside the grinding table are damaged or stuck during the sliding of the support plate, the lock on the cabinet door can be released in this way, thus improving the reliability during use.

[0031] In summary, this application includes at least one of the following beneficial technical effects:

[0032] 1. The grinding plate has a large contact area with the honeycomb aluminum panel, which can evenly grind the side wall of the honeycomb aluminum panel, effectively improving the work efficiency of grinding the side wall of the honeycomb aluminum panel.

[0033] 2. When the anti-collision plate slides to the point of complete separation from the honeycomb aluminum plate, the anti-collision plate and the control block contact the side away from the ground. On the one hand, when the anti-collision plate slides later, the control block can slide along with the anti-collision plate, thereby driving the support gear to rotate. This allows the support plate to slide down to the grinding plate and contact the honeycomb aluminum plate under the action of gear transmission. On the other hand, it is easier to control the timing of the rotation of the support gear, and it is less likely that the support plate will slide down to the grinding plate and collide with the anti-collision plate, thus improving the reliability of the device. Attached Figure Description

[0034] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application.

[0035] Figure 2 This is a top view of the processing table in an embodiment of this application.

[0036] Figure 3 This is a side cross-sectional view of the grinding table in an embodiment of this application.

[0037] Figure 4 This is a top sectional view of the grinding table in an embodiment of this application.

[0038] Figure 5 This is a schematic diagram of the device in its initial state in the embodiments of this application.

[0039] Figure 6 This is a schematic diagram of the structure after the anti-collision plate drives the control block to slide in the embodiment of this application.

[0040] Figure 7 yes Figure 1 Enlarged view of part A in the image.

[0041] Figure 8 yes Figure 3 Enlarged view of part B in the image.

[0042] Figure 9 This is a schematic diagram of the side of the grinding table away from the processing table in an embodiment of this application.

[0043] Explanation of reference numerals in the attached drawings: 1. Transfer table; 2. Processing table; 21. Clamping roller; 22. Placement section; 221. Placement screw; 222. Placement motor; 23. Clamping seat; 231. Clamping groove; 3. Grinding table; 31. Support gear; 32. Receiving cavity; 33. Guide block; 34. Control rack; 341. Control block; 342. Control groove; 343. Control spring; 344. Support section; 35. Inspection port; 36. Box door; 361. Locking groove; 37. Locking mechanism 371. Locking groove; 372. Locking spring; 373. Guide arc surface; 4. Support plate; 41. Support groove; 42. Support rack; 43. Reinforcing plate; 44. Grinding plate; 441. Straight motor; 5. Anti-collision plate; 51. Guide groove; 52. Anti-collision cylinder; 53. Connecting part; 54. Anti-collision pad; 6. Limiting part; 61. Limiting block; 611. Limiting groove; 612. Limiting spring; 62. Limiting plate; 621. Control ring hook; 63. Limiting groove. Detailed Implementation

[0044] The following is in conjunction with the appendix Figure 1-9 This application will be described in further detail.

[0045] This application discloses a honeycomb aluminum panel sidewall processing equipment, referring to... Figure 1 and Figure 2 The system includes a transfer table 1, a processing table 2, and a grinding table 3 arranged in sequence. Both sides of the processing table 2 are provided with clamping components for clamping the honeycomb aluminum panels. The clamping components include placement parts 22 symmetrically arranged on both sides of the processing table 2. A clamping seat 23 is slidably connected to the placement part 22. The placement part 22 is provided with a corresponding clamping groove 231 for the clamping seat 23 to slide. The end of the clamping seat 23 away from the ground is rotatably connected to a clamping roller 21. The clamping seat 23 can slide towards the processing table 2 until the clamping roller 21 is in contact with the side wall of the honeycomb aluminum panel on the processing table 2. By rotating the clamping roller 21, the friction between the clamping roller 21 and the side wall of the honeycomb aluminum panel is reduced to a certain extent. A placement screw 221 is rotatably connected to the placement part 22. A placement threaded hole that is threadedly engaged with the placement screw 221 is provided through the clamping seat 23. A placement motor 222 for driving the placement screw 221 to rotate is fixed on the placement part 22. The output shaft of the placement motor 222 is coaxially fixed with the placement screw 221. After the placement motor 222 is started, it can drive the clamping seat 23 to slide along the clamping slide groove 231.

[0046] Reference Figure 1 and Figure 3 A support plate 4 is slidably mounted on the grinding table 3. A support groove 41 for sliding the support plate 4 is provided through the grinding table 3. The support plate 4 slides along the arrangement direction of the transfer table 1, the processing table 2, and the grinding table 3. The grinding table 3 is provided with a support sliding component for controlling the sliding of the support plate 4. The support sliding component includes a support gear 31 rotatably mounted on the grinding table 3. The grinding table 3 is provided with a receiving cavity 32 for accommodating the support gear 31. The support groove 41 is connected to the receiving cavity 32. The support gear 31 is arranged perpendicular to the arrangement direction of the transfer table 1, the processing table 2, and the grinding table 3. The support gear 31 rotates around its own axis. A support rack 42 that meshes with the support gear 31 is provided on the side of the support plate 4 away from the processing table 2. When the support gear 31 rotates, the support plate 4 can slide along the arrangement direction of the transfer table 1, the processing table 2, and the grinding table 3 under the action of gear transmission, which ensures the stability of the sliding of the support plate 4 to a certain extent.

[0047] In practical applications, in order to further improve the stability of the sliding of the support plate 4, an directional block can be set on the side of the support rack 42 away from the support gear 31, so that the inner wall of the receiving cavity 32 is provided with a directional groove that cooperates with the directional block.

[0048] Reference Figure 3 and Figure 4 A reinforcing plate 43 is provided between the support plate 4 and the support rack 42. There are multiple reinforcing plates 43, which are arranged sequentially along the length of the support rack 42. One end of the reinforcing plate 43 is welded and fixed to the end face of the support plate 4 away from the grinding plate 44, and the other end of the reinforcing plate 43 is welded and fixed to the end face of the support rack 42 away from the support gear 31. By setting the reinforcing plate 43, the support plate 4 and the support rack 42 can maintain a perpendicular state. During the process of the support plate 4 being subjected to force, it is not easy for it to tilt relative to the support rack 42, which improves the strength of the support plate 4 and extends the service life of the device.

[0049] Reference Figure 3 and Figure 6 A grinding plate 44 for grinding the side wall of a honeycomb aluminum panel is slidably connected to the side of the support plate 4 facing the processing table 2. The support plate 4 is provided with a grinding sliding component for controlling the sliding of the grinding plate 44. In this embodiment, the grinding sliding component includes a linear motor 441 fixed on the support plate 4. The slider on the linear motor 441 is fixed to the grinding plate 44 by bolts. Since the grinding plate 44 is a wear part, the setting of fixing the grinding plate 44 to the slider on the linear motor 441 by bolts makes the grinding plate 44 detachable and replaceable, thus extending its service life.

[0050] Reference Figure 3 , Figure 5 and Figure 6A collision protection plate 5 for protecting the grinding plate 44 is slidably connected on the grinding table 3. The collision protection plate 5 slides along the height direction of the grinding table 3. A guide block 33 is provided on the grinding table 3. In this embodiment, the guide block 33 has two sections. The collision protection plate 5 is provided with a guide groove 51 that cooperates with the guide block 33. The guide block 33 and the guide groove 51 cooperate to provide guidance for the sliding of the collision protection plate 5, thereby improving the stability of the sliding of the collision protection plate 5.

[0051] Reference Figure 4 and Figure 5 The grinding table 3 is equipped with an anti-collision sliding component for controlling the sliding of the anti-collision plate 5. In this embodiment, the anti-collision sliding component is an anti-collision cylinder 52 fixed on the grinding table 3. The support plate 4 is equipped with a connecting part 53 that cooperates with the anti-collision cylinder 52. The piston rod of the anti-collision cylinder 52 is fixed to the connecting part 53 by bolts. The sliding of the anti-collision plate 5 is controlled by the anti-collision cylinder 52.

[0052] Reference Figure 3 and Figure 4 The grinding table 3 is equipped with a control component for driving the support gear 31 to rotate. The control component includes a control rack 34 slidably disposed within the grinding table 3. The position of the control rack 34 needs to be misaligned with the support rack 42. Therefore, in this embodiment, there are two control racks 34, which are symmetrically disposed on both sides of the support rack 42. The control rack 34 slides along the height direction of the grinding table 3. The control rack 34 is perpendicular to the support rack 42, and the control rack 34 is located on the side of the support gear 31 facing the processing table 2, while the support rack 42 is located on the side of the support gear 31 away from the ground. When the control rack 34 slides towards the ground, the support plate 4 can slide towards the processing table 2 under the action of gear transmission.

[0053] Reference Figure 3 , Figure 5 and Figure 6 A control block 341 is provided on the side of the control rack 34 facing the processing table 2. The end of the control block 341 away from the control rack 34 passes through the grinding table 3. A control groove 342 for sliding the control block 341 is provided on the grinding table 3. The end of the control block 341 outside the control groove 342 is located below the anti-collision plate 5 in the vertical direction. When the anti-collision plate 5 slides to completely separate from the honeycomb aluminum plate, the anti-collision plate 5 contacts the side of the control block 341 away from the ground. On the one hand, this allows the subsequent control block 341 to slide along with the anti-collision plate 5, thereby driving the support gear 31 to rotate, so that the support plate 4 can slide to the grinding plate 44 and contact the honeycomb aluminum plate. On the other hand, it is convenient to control the timing of the rotation of the support gear 31, and it is less likely that the support plate 4 will slide to the grinding plate 44 and collide with the anti-collision plate 5, thus improving the reliability of the device.

[0054] Reference Figure 3The grinding table 3 is equipped with a control elastic element for pushing the control rack 34 to slide away from the ground. In this embodiment, the control elastic element is a control spring 343. A support part 344 is correspondingly provided below the control rack 34. One end of the control spring 343 is fixed to the control rack 34, and the other end of the control rack 34 is fixed to the support part 344. When the anti-collision plate 5 slides away from the ground, the control block 341 and the control rack 34 can be reset under the action of the control spring 343. In practical applications, in order to ensure the stability of the sliding, a fixed column can be provided at the bottom of the control rack 34. A fixed groove for the fixed column to slide through the support part 344, and the control spring 343 is sleeved on the fixed column.

[0055] In the initial state and during the process of the honeycomb aluminum panel moving from the transfer table 1 to the processing table 2, the anti-collision plate 5 is located on the side of the grinding plate 44 away from the support plate 4. The anti-collision plate 5 prevents the honeycomb aluminum panel from bumping into the grinding plate 44 during transfer, effectively extending the service life of the grinding plate 44. After the honeycomb aluminum panel slides to be in contact with the anti-collision plate 5, it is first clamped by the clamping assembly. Then, the anti-collision cylinder 52 drives the anti-collision plate 5 to slide towards the ground until it separates from the honeycomb aluminum panel. At this point, the anti-collision plate 5 contacts the side of the control block 341 away from the ground.

[0056] Then, as the anti-collision plate 5 slides, it can drive the control block 341 to slide towards the ground, so that the support plate 4 can slide down to the side wall of the honeycomb aluminum plate under the action of gear transmission. The grinding plate 44 is driven to slide by the linear motor 441, thereby grinding the side wall of the honeycomb aluminum plate. The contact area between the grinding plate 44 and the honeycomb aluminum plate is large, which can evenly grind the side wall of the honeycomb aluminum plate, effectively improving the work efficiency of grinding the side wall of the honeycomb aluminum plate.

[0057] Reference Figure 3 The anti-collision plate 5 has an anti-collision pad 54 on the side facing the processing table 2. The anti-collision pad 54 is elastic and can be made of hard sponge, which effectively improves the anti-collision performance of the anti-collision plate 5, thereby improving the reliability of the protection provided by the anti-collision plate 5 to the grinding plate 44. In fact, in actual application, after the side wall of the honeycomb aluminum plate is ground by the grinding table 3, the anti-collision plate 5 can be controlled to slide until the anti-collision pad 54 is in contact with the side wall of the honeycomb aluminum plate. During this process, the dust after grinding the side wall of the honeycomb aluminum plate can be cleaned.

[0058] Reference Figure 3 and Figure 7The grinding table 3 has a through-hole 35 communicating with the receiving cavity 32. A door 36 is rotatably mounted on the grinding table 3 to close the access port 35 from the outside. A locking block 37 is slidably connected to the grinding table 3, and a locking groove 371 is provided on the grinding table 3 for the locking block 37 to slide. The locking groove 371 communicates with the access port 35. The door 36 has a locking groove 361 for the locking block 37 to slide into after sliding. When the door 36 rotates to the closed position of the access port 35, the locking groove 371 communicates with the locking groove 361, and the locking block 37 can slide into the locking groove 361, thus restricting the rotation of the door 36. The access port 35 facilitates the inspection and maintenance of the structure inside the grinding table 3, while the door 36 effectively prevents external dust and impurities from entering the receiving cavity 32.

[0059] Reference Figure 7 and Figure 8 The grinding table 3 is equipped with a locking assembly for controlling the sliding of the locking block 37. The locking assembly includes a limiting part 6 slidably disposed on the grinding table 3. The limiting part 6 includes a limiting block 61 and limiting plates 62 respectively disposed on both sides of the limiting block 61. The limiting block 61 has a square cross-section, and the size of the limiting plate 62 is larger than the size of the limiting block 61. The setting of the limiting plate 62 makes it difficult for the limiting block 61 to slide off the grinding table 3. The limiting block 61 penetrates through the grinding table 3. The grinding table 3 is provided with a limiting groove 63 for the limiting block 61 to slide. The limiting groove 63 communicates with the locking groove 371. The side wall of the limiting block 61 facing the locking block 37 is provided with a limiting groove 611 that cooperates with the locking block 37. The grinding table 3 is provided with a locking elastic element for pushing the locking block 37 toward the limiting block 61. In this embodiment, the locking elastic element is a locking spring 372. One end of the locking spring 372 is fixed to the inner wall of the locking groove 371, and the other end of the locking spring 372 is fixed to the locking block 37.

[0060] Reference Figure 7 and Figure 8 The locking block 37 has a guide arc surface 373 at one end near the limiting block 61. The inner wall of the limiting groove 611 is adapted to the guide arc surface 373 on the locking block 37. With the setting of the guide arc surface 373, when the limiting block 61 slides along the limiting groove 63, the locking block 37 can slide to disengage from the limiting groove 611. The sliding of the limiting part 6 can control the sliding of the internal locking block 37, and the state of the locking block 37 can be judged from the state of the limiting plate 62 outside the receiving cavity 32. While facilitating operation, it is not easy to damage parts such as the box door 36.

[0061] Refer to 7 and Figure 8The limiting part 6 is located on the side of the support rack 42 away from the processing table 2 in the horizontal direction. In the initial state and during the process of the honeycomb aluminum plate moving from the transfer table 1 to the processing table 2, the end of the support rack 42 away from the support plate 4 is in contact with the limiting plate 62 located in the receiving cavity 32, and the limiting plate 62 located in the receiving cavity 32 is in contact with the inner wall of the receiving cavity 32. At this time, one end of the locking block 37 is in contact with the side wall of the limiting block 61, and the other end of the locking block 37 is located in the locking groove 361, locking the rotation of the box door 36.

[0062] Reference Figure 7 and Figure 8 The grinding table 3 is equipped with a limiting elastic element for pushing the limiting part 6 to slide to the limiting plate 62 located outside the receiving cavity 32 and to fit against the grinding table 3. In this embodiment, the limiting elastic element is a limiting spring 612. One end of the limiting spring 612 is fixed to the inner wall of the limiting groove 63, and the other end of the limiting spring 612 is fixed to the limiting block 61. When the grinding plate 44 is in contact with the side wall of the honeycomb aluminum plate, the supporting rack 42 separates from the limiting plate 62, and the limiting part 6 can slide under the action of the limiting spring 612 to fit against the inner wall of the receiving cavity 32. At this time, the limiting groove 63 is connected to the locking groove 371, and the locking block 37 can slide under the action of the locking spring 372 to be embedded in the limiting groove 611. At this time, the end of the locking block 37 away from the limiting block 61 is completely housed in the locking groove 371, releasing the lock on the rotation of the box door 36.

[0063] In the initial state and during the process of the honeycomb aluminum panel moving from the transfer table 1 to the processing table 2, the locking block 37 releases the lock on the rotation of the box door 36, so that the operator can easily open the box door 36 to inspect and maintain the inner wall of the grinding table 3. During this process, the support gear 31 does not rotate, so there is no danger. In actual application, the end wall where the box door 36 contacts the grinding table 3 can be equipped with mutually cooperating magnetic parts, so that the box door 36 is not easy to open at will.

[0064] Reference Figure 4 and Figure 9 A control hook 621 is provided on the limiting plate 62 located outside the receiving cavity 32. By setting the control hook 621, it is easy to control the limiting part 6 to move to the locking slide 371 and the limiting groove 611 to communicate. If the parts in the grinding table 3 are damaged or stuck during the sliding of the support plate 4, the locking of the box door 36 can be released in this way, which improves the reliability during use.

[0065] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A honeycomb aluminum panel sidewall processing device, comprising a transfer table (1), a processing table (2), and a grinding table (3) arranged sequentially, wherein both sides of the processing table (2) are provided with clamping components for clamping the honeycomb aluminum panel, characterized in that, A support plate (4) is slidably provided on the grinding table (3). A support sliding member for controlling the sliding of the support plate (4) is provided on the grinding table (3). A grinding plate (44) for grinding the side wall of the honeycomb aluminum plate is slidably connected to the side of the support plate (4) facing the processing table (2). A grinding sliding member for controlling the sliding of the grinding plate (44) is provided on the support plate (4). An anti-collision plate (5) for providing protection to the grinding plate (44) is slidably connected to the grinding table (3). An anti-collision sliding member for controlling the sliding of the anti-collision plate (5) is provided on the grinding table (3). During the process of moving the honeycomb aluminum panel from the transfer table (1) to the processing table (2), the anti-collision plate (5) is located on the side of the grinding plate (44) away from the support plate (4). After the honeycomb aluminum panel slides to fit with the anti-collision plate (5), the anti-collision sliding component drives the anti-collision plate (5) to slide to separate from the honeycomb aluminum panel. The support sliding component drives the support plate (4) to slide to fit the grinding plate (44) with the side wall of the honeycomb aluminum panel. The grinding plate (44) slides under the action of the grinding sliding component and grinds the side wall of the honeycomb aluminum panel. The supporting sliding component includes a supporting gear (31) rotatably mounted on the grinding table (3). The grinding table (3) has a receiving cavity (32) for accommodating the supporting gear (31). The supporting plate (4) has a supporting rack (42) meshing with the supporting gear (31) on the side opposite to the processing table (2). The grinding table (3) has a control component for driving the supporting gear (31) to rotate. The control component includes a control rack (34) slidably disposed within the grinding table (3). The control rack (34) slides along the height direction of the grinding table (3). The control rack (34) is perpendicular to the support rack (42), and the control rack (34) is located on the side of the support gear (31) facing the processing table (2). The support rack (42) is located on the side of the support gear (31) away from the ground. When the control rack (34) slides towards the ground, the support plate (4) slides towards the processing table (2) under the action of gear transmission. The control rack (34) has a control block (341) on the side facing the processing table (2). The end of the control block (341) away from the control rack (34) passes through the grinding table (3). The grinding table (3) has a control groove (342) for sliding the control block (341). The end of the control block (341) outside the control groove (342) is located below the anti-collision plate (5) in the vertical direction. When the anti-collision plate (5) slides to completely separate from the honeycomb aluminum plate, the anti-collision plate (5) contacts the side of the control block (341) away from the ground. The grinding table (3) has a control elastic element for pushing the control rack (34) to slide away from the ground.

2. The honeycomb aluminum panel sidewall processing equipment according to claim 1, characterized in that, The grinding table (3) has a through-hole (35) that communicates with the receiving cavity (32). The grinding table (3) has a rotating door (36) for closing the access port (35) and communicating with the outside. The grinding table (3) has a sliding locking block (37). The grinding table (3) has a locking groove (371) for the locking block (37) to slide. The locking groove (371) communicates with the access port (35). The door (36) has a locking groove (361) for the locking block (37) to slide into after sliding. When the door (36) is rotated to the closed state of the access port (35), the locking groove (371) communicates with the locking groove (361). The grinding table (3) has a locking component for controlling the sliding of the locking block (37).

3. The honeycomb aluminum panel sidewall processing equipment according to claim 2, characterized in that, The locking assembly includes a limiting part (6) slidably disposed on the grinding table (3). The limiting part (6) includes a limiting block (61) and limiting plates (62) respectively disposed on both sides of the limiting block (61). The limiting block (61) penetrates the grinding table (3). The grinding table (3) is provided with a limiting groove (63) for the limiting block (61) to slide. The limiting groove (63) communicates with the locking groove (371). The side wall of the block (61) facing the locking block (37) is provided with a limiting groove (611) that cooperates with the locking block (37). The grinding table (3) is provided with a locking elastic element for pushing the locking block (37) to slide towards the limiting block (61). The end of the locking block (37) near the limiting block (61) is provided with a guide arc surface (373). The inner wall of the limiting groove (611) is adapted to the guide arc surface (373) on the locking block (37). When the limiting part (6) slides to the limiting plate (62) located outside the receiving cavity (32) and fits with the grinding table (3), one end of the locking block (37) fits with the side wall of the limiting block (61), and the other end of the locking block (37) is located in the locking groove (361). When the limiting part (6) slides to the limiting plate (62) located inside the receiving cavity (32) and fits with the inner wall of the receiving cavity (32), the limiting slide groove (63) communicates with the locking slide groove (371). The locking block (37) can slide into the embedded limiting groove (611) under the action of locking the elastic element, and the end of the locking block (37) away from the limiting block (61) is completely housed in the locking slide groove (371).

4. The honeycomb aluminum panel sidewall processing equipment according to claim 3, characterized in that, The limiting part (6) is located on the side of the support rack (42) away from the processing table (2) in the horizontal direction. When the support plate (4) is located on the side of the anti-collision plate (5) away from the processing table (2), the end of the support rack (42) away from the support plate (4) is in contact with the limiting plate (62) located in the receiving cavity (32), and the limiting plate (62) located in the receiving cavity (32) is in contact with the inner wall of the receiving cavity (32). When the grinding plate (44) is attached to the side wall of the honeycomb aluminum plate, the support rack (42) is separated from the limiting plate (62), and the grinding table (3) is provided with a limiting elastic element for pushing the limiting part (6) to slide to the limiting plate (62) located outside the receiving cavity (32) and attaching it to the grinding table (3).

5. The honeycomb aluminum panel sidewall processing equipment according to claim 1, characterized in that, The grinding table (3) is provided with a guide block (33), and the anti-collision plate (5) is provided with a guide groove (51) that cooperates with the guide block (33).

6. The honeycomb aluminum panel sidewall processing equipment according to claim 1, characterized in that, The anti-collision plate (5) has an anti-collision pad (54) on the side facing the processing table (2), and the anti-collision pad (54) is elastic.

7. The honeycomb aluminum panel sidewall processing equipment according to claim 1, characterized in that, A reinforcing plate (43) is provided between the support plate (4) and the support rack (42). One end of the reinforcing plate (43) is connected to the end face of the support plate (4) away from the grinding plate (44), and the other end of the reinforcing plate (43) is connected to the end face of the support rack (42) away from the support gear (31).

8. The honeycomb aluminum panel sidewall processing equipment according to claim 4, characterized in that, A control hook (621) is provided on the limiting plate (62) located outside the receiving cavity (32).

Citation Information

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