Numerical control aluminum plate grinding machine device for foaming plate panel
By woven processing on the foamed plate panel CNC aluminum plate grinding machine device, the problem of insufficient adhesion between aluminum plate skin and foamed layer is solved, firm combination and strength improvement of foamed plates are achieved, and product marketing promotion is promoted.
Patent Information
- Application Number
- CN202420781264.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-16
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-04-16
AI Technical Summary
The foamed plate uses aluminum sheets or iron skins to make it weakly adhered to the foamed layer, which leads to easy separation during cutting and processing or use, affecting the sealing and strength, and limiting product marketing.
A foaming plate panel CNC aluminum plate grinding machine device is designed to make the foaming body contact surface of the skin, increase the adhesive force, and make the skin and foaming body firmly bond.
Ensure that the foamed plate is integrated in cutting and processing, avoid separation of the skin from the foam, improve the sealing and strength of the product, and enhance the marketing effect.
Smart Images

Figure CN223071034U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a grinding machine for the panel of a foaming board, in particular to a numerical control aluminum plate grinding machine device for the panel of a foaming board. Background Art
[0002] At present, aluminum plates or iron sheets are generally used as the skins on both sides of the foaming board for the production of foaming boards in China. Since the surfaces of aluminum plates or iron sheets are relatively smooth, during the use of foaming board products, the adhesiveness between the skin and the foaming layer is weak. When the foaming board is cut or stressed during use, the separation between the skin and the foaming layer and the phenomenon of two skins often occur, resulting in the weakening of the sealing performance and strength of the foaming board, which affects the market promotion of products. In view of the above reasons, a numerical control aluminum plate grinding machine device for the panel of a foaming board is now developed. Content of the Utility Model
[0003] The purpose of the utility model is to overcome the problem that aluminum plates or iron sheets are generally used as the skins on both sides of the foaming board for the use of foaming boards. Since the surfaces of aluminum plates or iron sheets are relatively smooth, during the use of foaming board products, the adhesiveness between the skin and the foaming layer is weak. When the foaming board is cut or stressed, the separation between the skin and the foaming layer and the phenomenon of two skins often occur, resulting in the weakening of the sealing performance and strength of the foaming board, which affects the market promotion of products. Now, through reasonable design, a numerical control aluminum plate grinding machine device for the panel of a foaming board is provided. The utility model performs hair-making processing on the contact surface of the skin and the foaming body. The adhesiveness is increased through hair-making processing in the skin, and then the skin and the foaming body are firmly combined, ensuring that the foaming board is cut into one body, avoiding the separation phenomenon between the foaming body and the skin. During the use of the product, the stress strength is increased, ensuring that the product does not have the phenomenon of two skins, increasing the sealing performance and strength of the foaming board, and being able to improve the market promotion effect of the product.
[0004] To achieve the above object, the present utility model adopts the following technical solutions: A numerical control aluminum plate grinding machine device for a foamed board panel, which is composed of: a plate platform, rack guides, a gantry, a transverse guide, gantry sliders, synchronous movement motors, gantry transverse movement racks, a transverse carriage, lifting slides, a transverse movement motor, a transverse movement gear, a lifting motor, a lifting seat, lifting arm sliders, a surface hair-making machine, grinding wheels, grinding wheel motors, a vacuum pump, a vacuum pumping table, vacuum pumping holes, vacuum pumping grooves, a control console, a control center, a vacuum control module, a synchronous motor control module, a transverse movement control module, a lifting control module, and a grinding control module; platform legs are respectively arranged between the four corners of the lower surface of the plate platform and the ground, a pair of rack guides are arranged on both sides of the plate platform, a vacuum pump is arranged below the middle of the plate platform, and a control console is arranged on one side of the vacuum pump; a vacuum pumping table is arranged on the upper surface of the plate platform, the four sides of the vacuum pumping table are set as sealing frames, a panel groove is arranged in the sealing frame of the vacuum pumping table, and a panel for hair-making processing is arranged on the panel groove; no vacuum pumping holes and vacuum pumping grooves are reserved on the vacuum pumping table, and vacuum pipelines are arranged between the vacuum pumping holes and the vacuum pump respectively; a gantry is arranged above the plate platform, a cross beam is arranged above the gantry, a pair of legs are arranged at both ends of the gantry, gantry sliders are respectively arranged between the lower ends of the pair of legs and the pair of rack guides, a pair of synchronous movement motors are arranged outside the pair of gantry sliders, gears are arranged at the ends of the shafts of the synchronous movement motors, and the gears are engaged with the racks of the rack guides; a transverse carriage is arranged on the cross beam of the gantry, a lifting seat is arranged on one side of the transverse carriage, and a surface hair-making machine is arranged on one side of the lifting seat;
[0005] A transverse guide is arranged on the upper surface of the cross beam of the gantry, a gantry transverse movement rack is arranged on one side of the transverse guide, a transverse carriage is arranged on the upper surface of the transverse guide, and the transverse carriage is set as an inverted L-shaped plate body. A transverse movement motor is arranged at the upper end of the inverted L-shaped transverse carriage. A shaft hole is reserved for comparison on the upper end plate body of the inverted L-shaped transverse carriage, and the shaft of the transverse movement motor is arranged in the shaft hole. A transverse movement gear is arranged at the end of the shaft of the transverse movement motor; a balance pulley is arranged between the upper end plate body of the inverted L-shaped transverse carriage and the transverse guide, the transverse movement gear is engaged with the gantry transverse movement rack, and a pair of side transverse guides are arranged between the side frame body of the inverted L-shaped transverse carriage and the cross beam of the gantry. The pair of side transverse guides and the transverse guide are set as a group of guides for the transverse carriage; a pair of lifting slides are arranged outside the transverse carriage, a lifting motor seat is arranged between the pair of lifting slides, a lifting motor is arranged at the upper end of the lifting motor seat, and a lead screw is arranged at the end of the shaft of the lifting motor;
[0006] An L-shaped lifting seat is arranged outside the pair of lifting slides, a pair of lifting arm sliders are arranged on both sides of the lifting seat, a pair of sliding grooves are reserved relatively on the pair of lifting arm sliders, a pair of lifting slides are arranged in the pair of sliding grooves, a screw sleeve is arranged in the middle of the lifting arm slider, and the lead screw at the end of the shaft of the lifting motor is arranged in the screw sleeve;
[0007] The plate body at the lower corner of the L-shaped lifting seat is set as a grinding machine plate. A surface roughening machine is arranged on the grinding machine plate body. A grinding wheel motor is arranged above the grinding machine plate. A driving pulley is arranged at one end of the grinding wheel motor. A pair of grinding wheels are arranged below the grinding machine plate. Driven pulleys are respectively arranged at one ends of the pair of grinding wheels. A belt is arranged between the pair of driven pulleys and the driving pulley. The pair of grinding wheels are arranged corresponding to a vacuum table below. A panel for roughening processing is arranged between the pair of grinding wheels and the vacuum table;
[0008] A control center is arranged at the upper part of the console. A vacuum control module, a synchronous motor control module, a transverse movement control module, a lifting control module, and a grinding control module are successively arranged below the control center. Signal lines are arranged between the control center and the vacuum control module, the synchronous motor control module, the transverse movement control module, the lifting control module, and the grinding control module respectively; A control line is arranged between the vacuum control module and the vacuum pump. A control line is arranged between the synchronous motor control module and a pair of synchronous movement motors. A control line is arranged between the transverse movement control module and the transverse movement motor. A control line is arranged between the lifting control module and the lifting motor. A control line is arranged between the grinding control module and the grinding wheel motor; The control center of the console respectively controls the operations of the vacuum pump, a pair of synchronous movement motors, the transverse movement motor, the lifting motor, and the grinding wheel motor.
[0009] Advantageous effects: The utility model performs roughening processing on the contact surface of the foam body of the skin. The bonding force is increased through the roughening processing in the skin, so that the skin and the foam body are firmly combined, ensuring that the foam board is cut and processed into one body, and avoiding the phenomenon of separation between the foam body and the skin; The strength of the force is increased during the use of the product, ensuring that the product does not have the phenomenon of two layers of skin, increasing the sealing performance and strength of the foam board, and being able to improve the market promotion effect of the product. Description of the Drawings
[0010] The following further describes the present utility model in conjunction with the drawings:
[0011] Figure 1 is the schematic diagram of the overall assembly structure;
[0012] Figure 2 is Figure 1 the partial structure schematic diagram of;
[0013] Figure 3 is Figure 1 the three-dimensional structure schematic diagram of;
[0014] Figure 4 is Figure 3 the partial structure schematic diagram of;
[0015] Figure 5 is Figure 1 the control system structure schematic diagram of;
[0016] Figure 1 , 2 , 3, 4, 5: Plate platform 1, rack guide 1-1, gantry 2, transverse guide 2-1, gantry slider 2-2, synchronous movement motor 2-3, gantry transverse movement rack 2-4, transverse carriage 3, lifting slideway 3-1, transverse movement motor 3-2, transverse movement gear 3-3, lifting motor 3-4, lifting seat 4, lifting arm slider 4-1, plate surface hair-making machine 5, grinding wheel 5-1, grinding wheel motor 5-2, vacuum pump 6, vacuum pumping table 7, vacuum pumping holes 8, vacuum pumping grooves 9, control console 10, control center 10-1, vacuum control module 10-2, synchronous motor control module 10-3, transverse movement control module 10-4, lifting control module 10-5, grinding control module 10-6. Detailed implementation mode
[0017] The present utility model will be further described in detail below in conjunction with the accompanying drawings and the detailed implementation mode:
[0018] Platform legs are respectively arranged between the four corners of the plate platform 1 and the ground. A pair of rack guides 1-1 are arranged on both sides of the plate platform 1. A vacuum pump 6 is arranged below the middle part of the plate platform 1. A control console 10 is arranged on one side of the vacuum pump 6. A vacuum pumping table 7 is arranged on the plate platform 1. The four sides of the vacuum pumping table 7 are set as sealing frames. The sealing frames of the vacuum pumping table 7 are set as panel grooves. A panel for hair-making processing is arranged on the panel grooves. No vacuum pumping holes 8 and vacuum pumping grooves 9 are reserved on the vacuum pumping table 7. Vacuum pipelines are arranged between the vacuum pumping holes 8 and the vacuum pump 6 respectively. A gantry 2 is arranged above the plate platform 1. The upper part of the gantry 2 is set as a cross beam. A pair of legs are arranged at both ends of the gantry 2. Gantry sliders 2-2 are respectively arranged between the lower ends of the pair of legs and the pair of rack guides 1-1. A pair of synchronous movement motors 2-3 are arranged outside the pair of gantry sliders 2-2. Gears are arranged at the shaft ends of the synchronous movement motors 2-3. The gears are engaged with the racks of the rack guides 1-1. A transverse carriage 3 is arranged on the cross beam of the gantry 2. A lifting seat 4 is arranged on one side of the transverse carriage 3. A plate surface hair-making machine 5 is arranged on one side of the lifting seat 4.
[0019] On the crossbeam of the gantry 2, a transverse guide rail 2-1 is provided. On one side of the transverse guide rail 2-1, a gantry transverse movement rack 2-4 is provided. On the transverse guide rail 2-1, a transverse carriage 3 is provided, which is set as an inverted L-shaped plate body. At the upper end of the inverted L-shaped transverse carriage 3, a transverse movement motor 3-2 is provided. On the upper end plate body of the inverted L-shaped transverse carriage 3, shaft holes are reserved correspondingly. In the shaft holes, the shaft of the transverse movement motor 3-2 is arranged. At the end of the shaft of the transverse movement motor 3-2, a transverse movement gear 3-3 is provided; between the upper end plate body of the inverted L-shaped transverse carriage 3 and the transverse guide rail 2-1, a balance pulley is provided. The transverse movement gear 3-3 is engaged with the gantry transverse movement rack 2-4. Between the side frame body of the inverted L-shaped side of the transverse carriage 3 and the crossbeam of the gantry 2, a pair of side transverse guide rails are provided. The pair of side transverse guide rails and the transverse guide rail 2-1 are set as a group of guide rails for the transverse carriage 3; on the outside of the transverse carriage 3, a pair of lifting slideways 3-1 are provided. Between the pair of lifting slideways 3-1, a lifting motor seat is provided. At the upper end of the lifting motor seat, a lifting motor 3-4 is provided. At the end of the shaft of the lifting motor 3-4, it is set as a lead screw;
[0020] On the outside of the pair of lifting slideways 3-1, an L-shaped lifting seat 4 is provided. On both sides of the lifting seat 4, a pair of lifting arm sliders 4-1 are provided. A pair of chutes are reserved correspondingly between the pair of lifting arm sliders 4-1. In the pair of chutes, the pair of lifting slideways 3-1 are arranged. In the middle of the lifting arm slider 4-1, it is set as a screw sleeve. In the screw sleeve, the lead screw at the end of the shaft of the lifting motor 3-4 is arranged; at the lower end corner plate body of the L-shaped lifting seat 4, it is set as a grinding machine plate. On the grinding machine plate body, a plate surface roughening machine 5 is provided. On the grinding machine plate, a grinding wheel motor 5-2 is provided. At one end of the grinding wheel motor 5-2, a driving pulley is provided. Below the grinding machine plate, a pair of grinding wheels 5-1 are provided. At one end of each of the pair of grinding wheels 5-1, a driven pulley is respectively provided. A belt is provided between the pair of driven pulleys and the driving pulley. The pair of grinding wheels 5-1 are arranged corresponding to a vacuum table 7 below. Between the pair of grinding wheels 5-1 and the vacuum table 7, a panel for roughening processing is provided.
[0021] Above the console 10, a control center 10-1 is provided. Below the control center 10-1, a vacuum control module 10-2, a synchronous motor control module 10-3, a crosswise movement control module 10-4, a lifting control module 10-5, and a grinding control module 10-6 are sequentially provided. Signal lines are provided between the control center 10-1 and the vacuum control module 10-2, the synchronous motor control module 10-3, the crosswise movement control module 10-4, the lifting control module 10-5, and the grinding control module 10-6 respectively. A control line is provided between the vacuum control module 10-2 and the vacuum pump 6. A control line is provided between the synchronous motor control module 10-3 and a pair of synchronous movement motors 2-3. A control line is provided between the crosswise movement control module 10-4 and the crosswise movement motor 3-2. A control line is provided between the lifting control module 10-5 and the lifting motor 3-4. A control line is provided between the grinding control module 10-6 and the grinding wheel motor 5-2. The control center 10-1 of the console 10 controls the operations of the vacuum pump 6, a pair of synchronous movement motors 2-3, the crosswise movement motor 3-2, the lifting motor 3-4, and the grinding wheel motor 5-2 respectively.
Claims
1. A numerical control aluminum plate grinding machine device for a foamed board panel, which consists of: a plate platform (1), a rack guide rail (1-1), a gantry (2), a transverse guide rail (2-1), a gantry slider (2-2), a synchronous movement motor (2-3), a gantry transverse movement rack (2-4), a transverse carriage (3), a lifting slideway (3-1), a transverse movement motor (3-2), a transverse movement gear (3-3), a lifting motor (3-4), a lifting seat (4), a lifting arm slider (4-1), a panel surface roughening machine (5), a grinding wheel (5-1), a grinding wheel motor (5-2), a vacuum pump (6), a vacuum pumping table (7), vacuum pumping holes (8), a vacuum pumping groove (9), a control console (10), a control center (10-1), a vacuum control module (10-2), a synchronous motor control module (10-3), a transverse movement control module (10-4), a lifting control module (10-5), and a grinding control module (10-6); and it is characterized in that: Platform legs are respectively arranged between the four corners at the bottom of the sheet metal platform (1) and the ground. A pair of rack guides (1-1) are arranged on both sides of the sheet metal platform (1). A vacuum pump (6) is arranged below the middle of the sheet metal platform (1). A control console (10) is arranged on one side of the vacuum pump (6); A vacuum pumping tabletop (7) is arranged on the sheet metal platform (1). The four sides of the vacuum pumping tabletop (7) are set as sealing frames. The sealing frame of the vacuum pumping tabletop (7) is set as a panel groove. A panel for wool processing is arranged on the panel groove; No vacuum pumping holes (8) and vacuum pumping grooves (9) are reserved on the vacuum pumping tabletop (7). Vacuum pipelines are arranged between the vacuum pumping holes (8) and the vacuum pump (6) respectively; A gantry (2) is arranged above the sheet metal platform (1). A cross beam is arranged above the gantry (2). A pair of legs are arranged at both ends of the gantry (2). Door frame sliders (2-2) are respectively arranged between the lower ends of the pair of legs and the pair of rack guides (1-1). A pair of synchronous moving motors (2-3) are arranged outside the pair of door frame sliders (2-2). Gears are arranged at the shaft ends of the synchronous moving motors (2-3). The gears are engaged with the racks of the rack guides (1-1); A transverse sliding frame (3) is arranged on the cross beam of the gantry (2). A lifting seat (4) is arranged on one side of the transverse sliding frame (3). A sheet surface wool making machine (5) is arranged on one side of the lifting seat (4).
2. The numerical control aluminum plate grinding machine device for the foamed board panel according to claim 1, characterized in that: A transverse guide rail (2-1) is arranged on the cross beam of the gantry (2). A gantry transverse movement rack (2-4) is arranged on one side of the transverse guide rail (2-1). A transverse sliding frame (3) is arranged on the transverse guide rail (2-1). It is set as an inverted L-shaped plate body. A transverse movement motor (3-2) is arranged at the upper end of the inverted L-shaped transverse sliding frame (3). A shaft hole is reserved for comparison on the upper end plate body of the inverted L-shaped transverse sliding frame (3). The shaft of the transverse movement motor (3-2) is arranged in the shaft hole. A transverse movement gear (3-3) is arranged at the shaft end of the transverse movement motor (3-2); A balance pulley is arranged between the upper end plate body of the inverted L-shaped transverse sliding frame (3) and the transverse guide rail (2-1). The transverse movement gear (3-3) is engaged with the gantry transverse movement rack (2-4). A pair of side transverse guide rails are arranged between the inverted L-shaped side frame body of the transverse sliding frame (3) and the cross beam of the gantry (2). The pair of side transverse guide rails and the transverse guide rail (2-1) are set as a group of guide rails of the transverse sliding frame (3); A pair of lifting slideways (3-1) are arranged outside the transverse sliding frame (3). A lifting motor seat is arranged between the pair of lifting slideways (3-1). A lifting motor (3-4) is arranged at the upper end of the lifting motor seat. A lead screw is arranged at the shaft end of the lifting motor (3-4).
3. The CNC aluminum plate grinding machine device for a foamed board panel according to claim 1, wherein: On the outside of a pair of lifting slides (3-1), an L-shaped lifting seat (4) is provided. On both sides of the lifting seat (4), a pair of lifting arm sliders (4-1) are provided. A pair of chutes are reserved opposite to the pair of lifting arm sliders (4-1). A pair of lifting slides (3-1) are arranged in the pair of chutes. The middle part of the lifting arm slider (4-1) is set as a screw sleeve, and a lead screw at the shaft end of the lifting motor (3-4) is arranged in the screw sleeve; the plate body at the lower corner of the L-shaped lifting seat (4) is set as a grinding machine plate, a plate surface roughening machine (5) is arranged on the grinding machine plate body, a grinding wheel motor (5-2) is arranged above the grinding machine plate, a driving pulley is arranged at one end of the grinding wheel motor (5-2), a pair of grinding wheels (5-1) are arranged below the grinding machine plate, driven pulleys are respectively arranged at one ends of the pair of grinding wheels (5-1), a belt is arranged between the pair of driven pulleys and the driving pulley, the pair of grinding wheels (5-1) are arranged corresponding to a vacuum table surface (7) below, and a panel for roughening processing is arranged between the pair of grinding wheels (5-1) and the vacuum table surface (7); A control center (10-1) is arranged on the upper part of a control console (10). Below the control center (10-1), a vacuum control module (10-2), a synchronous motor control module (10-3), a transverse movement control module (10-4), a lifting control module (10-5), and a grinding control module (10-6) are respectively arranged in sequence. Signal lines are arranged between the control center (10-1) and the vacuum control module (10-2), the synchronous motor control module (10-3), the transverse movement control module (10-4), the lifting control module (10-5), and the grinding control module (10-6); a control line is arranged between the vacuum control module (10-2) and a vacuum pump (6), a control line is arranged between the synchronous motor control module (10-3) and a pair of synchronous movement motors (2-3), a control line is arranged between the transverse movement control module (10-4) and a transverse movement motor (3-2), a control line is arranged between the lifting control module (10-5) and a lifting motor (3-4), and a control line is arranged between the grinding control module (10-6) and a grinding wheel motor (5-2); the control center (10-1) of the control console (10) respectively controls the operations of the vacuum pump (6), the pair of synchronous movement motors (2-3), the transverse movement motor (3-2), the lifting motor (3-4), and the grinding wheel motor (5-2).