Feeding device for aluminum honeycomb panel production
By adopting a combined structure of a push rod and a rotating cylinder in the loading device for aluminum honeycomb plate production, the problems of unsmooth contact and high friction during high-level loading in the prior art are solved, and a more efficient, stable and durable loading process is achieved.
Patent Information
- Application Number
- CN202422341710.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-25
AI Technical Summary
When the existing aluminum honeycomb plate production loading device is loaded at a high position, the contact between the push rod and the honeycomb plate is not smooth, the push force of the push rod cannot be fully exerted, and the friction force is high, resulting in low loading efficiency and low structural stability, short service life and many maintenance times.
A feeding device for aluminum honeycomb plate production is designed, adopting a combined structure of a pushing base and a rotating cylinder. The pushing base is driven by a hydraulic cylinder, combined with the rotating cylinder to reduce friction, and reduce friction with the base through the support cylinder, thereby improving the recovery efficiency of the pushing base.
It improves the smoothness and efficiency of feeding, reduces friction, enhances the stability of the structure, extends the service life, reduces the number of repairs, and improves the overall feeding efficiency.
Smart Images

Figure CN223032260U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a high-position feeding device, and particularly to a feeding device for the production of aluminum honeycomb panels. Background Art
[0002] When processing and manufacturing honeycomb panels, it is necessary to convey and feed them. Most of the existing feeding equipment directly uses conveyor belts for conveying. However, this method is only suitable for feeding at the same height and cannot meet the requirement of high-position feeding. To solve this technical problem, the Chinese patent with the application number CN202323357950.3 provides a solution called the feeding machine for the production of aluminum honeycomb panels. In this solution, the feeding table moves up and down reciprocally. When the feeding table moves downward, it passes through the support table and presses down on the adjusting plate. The adjusting plate stretches and stores energy in the spring. At the same time, the adjusting plate controls the rotation of the adjusting rod hinged at the end. The adjusting rod controls the push rod hinged at the end to move to the right. The push rod pushes the aluminum honeycomb panel body at the lower position, and pushes the aluminum honeycomb panel body onto the support table. When the feeding table moves upward, it gradually contacts and presses the adjusting plate. The spring can control the adjusting plate to move upward and reset, thereby controlling the adjusting rod to drive the push rod to move leftward and reset. At this time, the aluminum honeycomb panel body at the upper position moves downward, which is convenient for subsequent pushing onto the support table. The feeding table continuously moves upward, lifting the aluminum honeycomb panel body on the support table to the position of the conveyor belt. The electric telescopic rod extends and pushes the fixed block to move, pushing the aluminum honeycomb panel body onto the conveyor belt to complete high-position feeding. Although this solution can perform high-position feeding on the workpiece to be fed, on the one hand, the push rod only contacts one side of the aluminum honeycomb panel body, so the smoothness of pushing the honeycomb panel body is not good. On the other hand, since the pushing method of the push rod is to press down on the adjusting plate through the feeding table, the downward movement of the adjusting plate drives the adjusting rod to make the push rod move to the right to push out the honeycomb panel body. There are multiple workpieces to be fed placed in the feeding seat, so the driving force of the push rod cannot be fully exerted. At the same time, the friction between the push rod and the honeycomb panel body and the feeding seat is relatively large, which also affects the effect of the push rod pushing the material outward. On the third hand, the reset of the push rod is after the feeding table no longer applies pressure to the adjusting plate, and the spring returns to pull the adjusting plate upward. The push rod is pulled out by the upward movement of the adjusting plate. However, there is a honeycomb panel body above the push rod. Just pulling up the adjusting plate and pulling out the push rod by the retraction of the spring has an unsatisfactory effect, and it is very easy for the push rod to be subjected to excessive extrusion pressure from multiple honeycomb panel bodies and cannot be pulled out by the return of the spring, resulting in jamming. The structural stability is not high, the service life of each component is short, and the number of repairs is large, which affects the feeding efficiency.
[0003] Therefore, those skilled in the art are committed to providing a feeding device for the production of aluminum honeycomb panels that can effectively solve the above technical problems. Summary of the Utility Model
[0004] In view of the above defects of the prior art, the technical problem to be solved by the present utility model is to provide a feeding device for the production of aluminum honeycomb panels that can effectively solve the above technical problems.
[0005] To achieve the above object, the present utility model provides a feeding device for the production of aluminum honeycomb panels, including a base. Above the base is provided an aggregate bin, and both ends of the aggregate bin are respectively connected to the upper end of the base through respective connecting frames. Between the aggregate bin and the base is provided a pusher seat, the pusher seat is located between the two connecting frames, and the pusher seat is slidably connected to the base. Rotatably arranged on the upper end of the base are a number of support cylinders, and the lower end of the pusher seat is supported by each of the support cylinders;
[0006] In the front half of the upper end of the pusher seat is opened a receiving cavity that cooperates with the aggregate bin, the receiving cavity penetrates the front end of the pusher seat, and a number of material pushing openings are opened in the receiving cavity. In the rear half of the upper end of the pusher seat is opened an installation cavity, and rotatably arranged in the installation cavity are a number of rotating cylinders. The rear end of the pusher seat is connected to the output end of a hydraulic cylinder, and the hydraulic cylinder is arranged on the base;
[0007] At the rear end of the material pushing frame are provided a number of material pushing plates that cooperate with each of the material pushing openings. The front end of the material pushing frame is slidably connected to a base, and a power unit is arranged on the base, and the power unit is used to drive the material pushing frame to move in the up and down direction along the base.
[0008] Preferably, the front end of the aggregate bin is provided with an opening, and chamfers are provided on both sides of the upper end of the aggregate bin.
[0009] Preferably, the connecting frame includes an extension plate connected to the aggregate bin. At the angle between the extension plate and the aggregate bin are provided a number of strengthening blocks. The lower end of the extension plate is connected to the upper end of a positioning plate through a number of support plates, and the positioning plate and the base are detachably connected by screws.
[0010] Preferably, the lower end of the pusher seat is provided with a sliding seat, and the upper end of the base is provided with a sliding rail. The pusher seat is slidably connected to the base through the cooperation of the sliding seat and the sliding rail.
[0011] Preferably, a number of support cylinders are provided on both sides of the sliding rail, and rubber sleeves are sleeved on each of the support cylinders. Both ends of each of the support cylinders are respectively rotatably connected to respective support seats, and each of the support seats is connected to the upper end of the base.
[0012] Preferably, an extension column is provided at the lower end of each of the material pushing plates, and the lower ends of the extension columns are simultaneously connected to the upper end of a reinforcement plate. Reinforcement blocks are provided at the angle between each of the material pushing plates and the material pushing frame.
[0013] Preferably, a screw rod is arranged inside the base. The upper end of the screw rod extends out of the base rotatably and is connected to the output end of a driving motor. The driving motor is arranged at the upper end of the base through a motor mounting seat. A connecting seat is sleeved on the screw rod. The connecting seat extends out of the base through a through hole formed in the base and is connected to the blanking rack.
[0014] Preferably, a pushing unit is arranged outside the base. The pushing unit includes a positioning frame connected to the base. A pushing cylinder is arranged on the positioning frame. The output end of the pushing cylinder passes through the positioning frame and is connected to a pushing plate. Two guide rods are arranged on the pushing plate. Each guide rod is slidably arranged on the positioning frame.
[0015] Preferably, a transmission rack is arranged inside the base. A transmission belt is arranged on the transmission rack. The transmission belt is driven by a transmission motor installed on the transmission rack.
[0016] The beneficial effects of the present utility model are as follows: On the one hand, the blanking is pushed by the blanking seat and used in cooperation with the rotating cylinder, which reduces the friction with the parts to be loaded in the aggregate bin. And it is used in cooperation with the support cylinder arranged on the base to reduce the friction with the base, making it more conducive to retracting the blanking seat, effectively improving the blanking effect. On the other hand, by moving the blanking seat, the parts to be loaded fall into the receiving cavity, effectively avoiding the situation in the prior art that when the push rod pushes the honeycomb panel, it only contacts one side of the aluminum honeycomb panel body, which affects the smoothness of pushing the honeycomb panel body. At the same time, it also has the beneficial effects of high stability, simple structure, easy operation, long service life and improved loading efficiency. Description of the Drawings
[0017] Figure 1 is a schematic structural diagram of a specific embodiment of the present utility model.
[0018] Figure 2 is Figure 1 a partial enlarged structural diagram at position A in
[0019] Figure 3 is a schematic structural diagram of the cooperation of the aggregate bin with components such as the base and the transmission belt.
[0020] Figure 4 is a schematic structural diagram of components such as the base in the present utility model.
[0021] Figure 5 is Figure 4 a partial enlarged structural diagram at position B in
[0022] Figure 6 is a schematic structural diagram of the arrangement of components such as the blanking seat and the aggregate bin on the base.
[0023] Figure 7 It is a first three-dimensional structural schematic diagram of the material pushing seat.
[0024] Figure 8 It is a second three-dimensional structural schematic diagram of the material pushing seat.
[0025] Figure 9 It is a structural schematic diagram of several support cylinders and other components arranged on the base. Specific embodiments
[0026] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments:
[0027] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.
[0028] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "setting", "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0029] As Figures 1 to 9 shown, a feeding device for the production of aluminum honeycomb panels includes a base 1. Above the base 1, there is an aggregate bin 2. Two ends of the aggregate bin 2 are respectively connected to the upper end of the base 1 through respective connecting frames 3. Between the aggregate bin 2 and the base 1, there is a material pushing seat 5. The material pushing seat 5 is located between the two connecting frames 3. The material pushing seat 5 is slidably connected to the base 1. Several support cylinders 6 are rotatably arranged at the upper end of the base 1. The lower end of the material pushing seat 5 is supported by each of the support cylinders 6;
[0030] The front half of the upper end of the material pushing seat 5 is provided with a material receiving cavity 7 for cooperating with the aggregate bin 2. The material receiving cavity 7 penetrates through the front end of the material pushing seat 5. A plurality of material ejecting openings 8 are arranged in the material receiving cavity 7. The rear half of the upper end of the material pushing seat 5 is provided with an installation cavity 9. A plurality of rotating cylinders 10 are rotatably arranged in the installation cavity 9. The rear end of the material pushing seat 5 is connected to the output end of a hydraulic cylinder 11, and the hydraulic cylinder 11 is arranged on the base 1.
[0031] The rear end of the material ejecting frame 12 is provided with a plurality of material ejecting plates 13 for cooperating with the respective material ejecting openings 8. The front end of the material ejecting frame 12 is slidably connected to a base 15. A power unit 16 is arranged on the base 15, and the power unit 16 is used to drive the material ejecting frame 12 to move in the up and down direction along the base 15.
[0032] An opening 17 is arranged at the front end of the aggregate bin 2, and chamfers 18 are arranged on both sides of the upper end of the aggregate bin 2.
[0033] The connecting frame 3 includes an extension plate 19 connected to the aggregate bin 2. A plurality of reinforcing blocks 20 are arranged at the angle between the extension plate 19 and the aggregate bin 2. The lower end of the extension plate 19 is connected to the upper end of a positioning plate 22 through a plurality of support plates 21, and the positioning plate 22 is detachably connected to the base 1 by screws.
[0034] A sliding seat 23 is arranged at the lower end of the material pushing seat 5, and a sliding rail 26 is arranged at the upper end of the base 1. The material pushing seat 5 is slidably connected to the base 1 through the cooperation of the sliding seat 23 and the sliding rail 26.
[0035] A plurality of support cylinders 6 are arranged on both sides of the sliding rail 26. Rubber sleeves are sleeved on the respective support cylinders 6. The two ends of each support cylinder 6 are respectively rotatably connected to respective support seats 27, and each support seat 27 is connected to the upper end of the base 1.
[0036] An extension column 28 is arranged at the lower end of each material ejecting plate 13. The lower ends of the respective extension columns 28 are simultaneously connected to the upper end of a reinforcement plate 29. Reinforcement blocks 30 are arranged at the angle between each material ejecting plate 13 and the material ejecting frame 12.
[0037] A screw rod 31 is arranged in the base 15. The upper end of the screw rod 31 rotatably extends out of the base 15 and is connected to the output end of a driving motor 32. The driving motor 32 is arranged at the upper end of the base 15 through a motor mounting seat 33. A connecting seat is sleeved on the screw rod 31. The connecting seat extends out of the base 15 through a through hole 35 opened on the base 15 and is connected to the material ejecting frame 12.
[0038] A pushing unit 36 is arranged on the outer side of the base 15. The pushing unit 36 includes a positioning frame 37 connected to the base 15. A pushing cylinder 38 is arranged on the positioning frame 37. The output end of the pushing cylinder 38 passes through the positioning frame 37 and is connected to a pushing plate 39. Two guide rods 50 are arranged on the pushing plate 39, and each guide rod 50 is slidably arranged on the positioning frame 37.
[0039] A transmission frame 51 is arranged on the inner side of the base 15. A transmission belt 52 is arranged on the transmission frame 51, and the transmission belt 52 is driven by a transmission motor 53 installed on the transmission frame 51.
[0040] The optimal working principle of the present utility model is as follows:
[0041] During use, the workpiece to be loaded is placed in the aggregate bin 2. At this time, the lowermost workpiece to be loaded falls into the material receiving cavity 7 after being guided by the aggregate bin 2. The hydraulic cylinder 11 is used to push the material pushing seat 5 towards the base 15. As the material pushing seat 5 moves, the workpiece to be loaded in the material receiving cavity 7 is moved towards each material ejecting plate 13 until the workpiece to be loaded moves directly above the material ejecting plate 13. At this time, the workpiece to be loaded is located above each material ejecting plate 13, and each material ejecting plate 13 is located at each material ejecting port 8. To improve stability, preferably, the present utility model is also provided with an extension column 28 and a reinforcement plate 29. When the extension column 28 and the reinforcement plate 29 are provided, the reinforcement plate 29 is located below each material pushing seat 5;
[0042] Subsequently, the driving motor 32 is used to drive the material ejecting frame 12 to move upward. The movement of the material ejecting frame 12 drives each material ejecting plate 13 to move upward until the upper end of the material ejecting plate 13 fits against the lower end of the workpiece to be loaded and the workpiece to be loaded is lifted by the material ejecting plate 13. At this time, the hydraulic cylinder 11 can be used to retract the material pushing seat 5. When the material pushing seat 5 is retracted, due to the setting of the rotating cylinder 10, the friction with the workpiece to be loaded in the aggregate bin 2 is reduced. At the same time, the support cylinder 6 arranged on the base is used to reduce the friction with the base 1, making it more conducive to retracting the material pushing seat 5. After the material pushing seat 5 is retracted, the driving motor 32 continues to drive the material ejecting frame 12 to move upward, thereby transporting the workpiece to be loaded to a high place, and then it can be taken off the material ejecting frame 12 manually or by mechanical equipment;
[0043] Preferably, the present utility model is also provided with a pushing unit 36 on the base 15. The pushing cylinder 38 is used to drive the pushing plate 39 to move. The pushing plate 39 is used to push out the loading workpiece on the material ejecting frame 12. Subsequently, the pushing plate 39 is retracted, and the material ejecting frame 12 descends to perform the next loading;
[0044] In addition, as a further preference, the utility model is also provided with a conveyor belt 52 used in cooperation with the pushing plate 39, and the feeding part is directly pushed onto the conveyor belt 52 by the pushing plate 39 for conveying.
[0045] The preferred specific embodiments of the present utility model have been described in detail above. It should be understood that those of ordinary skill in the art can make many modifications and variations based on the concept of the present utility model without creative work. Therefore, all technical solutions that can be obtained by those skilled in the art in the technical field based on the concept of the present utility model through logical analysis, reasoning or limited experiments on the basis of the prior art should fall within the protection scope determined by the claims.
Claims
1. A feeding device for the production of aluminum honeycomb panels, characterized by: It comprises a base (1), a material collecting bin (2) is arranged above the base (1), the two ends of the material collecting bin (2) are respectively connected to the upper end of the base (1) through respective connecting frames (3), a material pushing seat (5) is arranged between the material collecting bin (2) and the base (1), the material pushing seat (5) is located between the two connecting frames (3), the material pushing seat (5) is slidably connected to the base (1), a plurality of supporting cylinders (6) are rotatably arranged at the upper end of the base (1), and the lower end of the material pushing seat (5) is supported by the respective supporting cylinders (6); The front half of the upper end of the pushing seat (5) is provided with a material receiving chamber (7) for use with the material collecting bin (2), the material receiving chamber (7) runs through the front end of the pushing seat (5), a plurality of material ejecting ports (8) are provided in the material receiving chamber (7), the rear half of the upper end of the pushing seat (5) is provided with an installation chamber (9), a plurality of rotating cylinders (10) are rotatably provided in the installation chamber (9), the rear end of the pushing seat (5) is connected to the output end of a hydraulic cylinder (11), and the hydraulic cylinder (11) is provided on the base (1); The rear end of the ejection rack (12) is provided with a plurality of ejection plates (13) used in conjunction with the ejection ports (8); the front end of the ejection rack (12) is slidably connected to a base (15); a power unit (16) is provided on the base (15); and the power unit (16) is used to drive the ejection rack (12) to move in an up and down direction along the base (15).
2. The feeding device for producing aluminum honeycomb panels according to claim 1, characterized in that: The front end of the material collecting bin (2) is provided with an opening (17), and both sides of the upper end of the material collecting bin (2) are provided with chamfers (18).
3. The feeding device for producing aluminum honeycomb panels according to claim 2, characterized in that: The connecting frame (3) comprises an extension plate (19) connected to the material collecting bin (2), a plurality of reinforcing blocks (20) are arranged at the angle between the extension plate (19) and the material collecting bin (2), the lower end of the extension plate (19) is connected to the upper end of a positioning plate (22) via a plurality of support plates (21), and the positioning plate (22) is detachably connected to the base (1) via screws.
4. The feeding device for producing aluminum honeycomb panels according to claim 3, characterized in that: The lower end of the pusher seat (5) is provided with a slide seat (23), and the upper end of the base (1) is provided with a slide rail (26). The pusher seat (5) is slidably connected to the base (1) through the cooperation of the slide seat (23) and the slide rail (26).
5. The feeding device for producing aluminum honeycomb panels according to claim 4, characterized in that: A plurality of support tubes (6) are provided on both sides of the slide rail (26), each of the support tubes (6) is sleeved with a rubber sleeve, and both ends of each support tube (6) are rotatably connected to a support seat (27), and each support seat (27) is connected to the upper end of the base (1).
6. The feeding device for producing aluminum honeycomb panels according to claim 5, characterized in that: An extension column (28) is provided at the lower end of each of the ejection plates (13), and the lower end of each of the extension columns (28) is simultaneously connected to the upper end of the reinforcement plate (29), and a reinforcement block (30) is provided at the angle between each of the ejection plates (13) and the ejection frame (12).
7. The feeding device for producing aluminum honeycomb panels according to claim 6, characterized in that: A screw rod (31) is arranged in the base (15), and the upper end of the screw rod (31) is rotatably extended out of the base (15) and is connected to the output end of the driving motor (32). The driving motor (32) is arranged on the upper end of the base (15) through a motor mounting seat (33). A connecting seat is sleeved on the screw rod (31), and the connecting seat extends out of the base (15) through a through opening (35) opened on the base (15) and is connected to the ejecting frame (12).
8. The feeding device for producing aluminum honeycomb panels according to claim 7, characterized in that: A pushing unit (36) is arranged on the outer side of the base (15), and the pushing unit (36) comprises a positioning frame (37) connected to the base (15), and a pushing cylinder (38) is arranged on the positioning frame (37), and an output end of the pushing cylinder (38) passes through the positioning frame (37) and is connected to a pushing plate (39), and two guide rods (50) are arranged on the pushing plate (39), and each of the guide rods (50) is slidably inserted into the positioning frame (37).
9. The feeding device for producing aluminum honeycomb panels according to claim 8, characterized in that: A transmission frame (51) is arranged on the inner side of the base (15), a transmission belt (52) is arranged on the transmission frame (51), and the transmission belt (52) is driven by a transmission motor (53) installed on the transmission frame (51).
Citation Information
Patent Citations
Feeding machine for aluminum cellular board production
CN221603070U