Metal can stacking interlayer felt paper propelling device

By designing the metal can stacking compartment felt paper propulsion device, using a moving frame and thruster combined with a code lifting mechanism, the problem of the felt paper displacement caused by drag during the metal can stacking process is solved, and the accurate positioning and efficient movement of felt paper is achieved, and the efficiency of metal can stacking is improved.

CN223187823UActive Publication Date: 2025-08-05SHANDONG SLACK INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422518921.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-08-05
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

In the prior art, felt paper is prone to displacement of felt paper below due to drag during metal can stacking, affecting the layout operation, and it is necessary to frequently adjust the height of the grab structure to adapt to the height changes of the felt paper.

Method used

A metal can stacked partition felt paper propulsion device is designed to push the felt paper to a designated position through a horizontally moving moving frame and thruster. Combined with the code lifting mechanism, it avoids the impact of felt paper on the lower position during movement, and limits the felt paper direction through adjustable support columns and side limit plates to ensure accurate positioning.

Benefits of technology

Accurate positioning and efficient movement of felt paper is achieved, avoiding the displacement of felt paper below due to drag during the stacking process, and improving the efficiency and accuracy of metal can stacking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a metal can stacking interlayer felt paper propelling device which is arranged on the two sides of a stacking and arranging lifting mechanism opposite to a metal can conveying mechanism. The stacking and arranging mechanism comprises a final assembly frame detachably connected with the stacking and arranging lifting mechanism, two supporting beams are arranged on the final assembly frame in a spaced mode, a supporting plate is arranged between the supporting beams, a moving frame capable of moving on the horizontal plane is arranged above the supporting plate, and the moving direction of the moving frame is the direction close to or away from the metal can conveying mechanism. A horizontal felt paper supporting plate is further arranged above the supporting beam, a long-strip-hole-shaped guide hole is formed in the felt paper supporting plate, the length direction of the guide hole is parallel to the moving direction of the moving frame, a propeller is arranged at the position, at the guide hole, of the moving frame, and the highest end of the propeller is higher than the felt paper supporting plate. Different from a conventional mode that felt paper is stacked and arranged at a fixed position, the device can move a single piece of felt paper to a designated position and is used for arrangement, and accidental dragging of the felt paper at the lower position when the felt paper is moved can be avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of metal can packaging lines, in particular to a metal can stacking interlayer felt paper propulsion device. Background Art

[0002] During the stacking and packaging of metal cans, in order to facilitate stratification, felt paper needs to be laid between each layer of metal cans. Moreover, during the laying of the felt paper, it is also necessary to avoid affecting the stacking of the metal cans and avoiding collisions with the metal cans and affecting the stacking operation. Under normal circumstances, the felt paper needs to be stacked in a fixed position, and then laid above the metal can layer through a grabbing action along a fixed path. However, as the felt paper is used, its grabbing height will gradually decrease, so it is necessary to adjust the height of the grabbing structure or the felt paper supporting structure to adapt. Moreover, the above stacking method can easily cause the felt paper below to be displaced when the felt paper is dragged, thereby affecting the laying operation. Utility Model Content

[0003] In order to solve the problem of shortcomings in the above-mentioned conventional method of laying out felt paper, the utility model provides a felt paper propulsion device for stacking interlayers of metal cans.

[0004] The technical solution of this utility model is as follows:

[0005] A metal can stacking interlayer felt paper pushing device is arranged on both sides of the stacking and lifting mechanism opposite to the metal can conveying mechanism;

[0006] The assembly frame includes an assembly frame detachably connected to the stacking and lifting mechanism, wherein two support beams are provided at intervals on the assembly frame, and a support plate is provided between the support beams. A movable frame capable of moving in a horizontal plane is provided above the support plate, and the movable frame moves in a direction toward or away from the metal can conveying mechanism.

[0007] A horizontal felt paper support plate is also provided above the support beam. The felt paper support plate is provided with a long strip-shaped guide hole, and the length direction of the guide hole is parallel to the moving direction of the movable frame. The movable frame is provided with a propeller at the position of the guide hole, and the highest end of the propeller is higher than the felt paper support plate.

[0008] Different from the conventional stacking method of arranging felt paper, this device can move a single piece of felt paper to a specified position and use it for layout. Therefore, it can be suitable for a drag-type moving structure and avoid moving the felt paper at the lower position when moving the upper felt paper, thereby causing misalignment.

[0009] The structure for installing the support pallet is that a plurality of support columns are arranged at intervals above the support beam for connecting the felt paper pallet, and the support columns are detachably connected to the support beam and the felt paper pallet.

[0010] The method for adjusting the height of the felt paper support plate is that the support columns have multiple length specifications, and the multiple support columns arranged on the same support beam have the same length.

[0011] In order to limit the moving direction of the felt paper, the assembly frame is symmetrically provided with side limit plates at a horizontal plane higher than the felt paper supporting plate, and the length direction of the side limit plates is parallel to the moving direction of the movable frame.

[0012] In order to limit the moving direction of felt paper of different specifications, the side limiting plates are movable, and the moving direction is perpendicular to the length direction.

[0013] In order to prevent the felt paper from deviating from the preset moving track, a detachable transition plate is provided between the stacking lifting mechanism and the felt paper supporting plate, and the upper surface of the transition plate is parallel to the upper surface of the felt paper supporting plate.

[0014] In order to prevent the felt paper from leaving the preset position, there is no gap between the felt paper supporting plate and the transition plate.

[0015] The driving method of the movable frame is that a reciprocating conveyor is provided above the supporting plate, and the reciprocating conveyor is detachably connected to the movable frame via a locking member.

[0016] In order to prevent the felt paper from leaving the preset position, there is no gap between the felt paper supporting plate and the side limiting plate.

[0017] As a preferred solution, the height of the propeller can be adjusted, and the highest end of the propeller can be lower than the felt paper support plate.

[0018] The beneficial effects of the present invention are as follows: the present invention is a metal can stacking interlayer felt paper propulsion device, which is different from the existing structure and has propulsion ability, and can propel the felt paper to a designated position. When in use, it is different from the conventional stacking of felt paper by dragging a single sheet, and can cooperate with the lifting and lifting conveying mechanism to move a single sheet of felt paper to the top of the felt paper support plate, and then move the felt paper to the designated position through the propeller, and drag and move it to the top of the metal can by the subsequent structure. During this process, the end position of the felt paper is fixed, so it can cooperate with the reciprocating moving dragging structure, and after the felt paper cup propeller moves to the designated position, the subsequent felt paper can also be moved to the top of the felt paper support plate by the lifting and lifting conveying mechanism, waiting to be pushed by the propeller to improve efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] By reading the detailed description of the preferred embodiment below, the solutions and advantages of the present application will become clear to those skilled in the art. The accompanying drawings are only used to illustrate the preferred embodiment and are not to be considered as limiting the present invention.

[0020] In the attached figure:

[0021] Figure 1 This is a schematic diagram of the structure of the utility model;

[0022] Figure 2 This is a schematic diagram of the top view of the structure of the utility model;

[0023] Figure 3 This is a schematic diagram of the top view of the structure of the utility model (placed behind the assembly line);

[0024] Figure 4 This is a schematic diagram of the front view structure of the utility model;

[0025] The components represented by the reference numerals in the figure are:

[0026] 1. Assembly frame; 2. Support beam; 3. Support pallet; 4. Support column; 5. Felt paper pallet; 51. Guide hole; 6. Reciprocating conveyor; 7. Moving frame; 8. Pusher; 81. Lifting mechanism; 82. L-shaped push plate; 9. Side limit plate; 10. Transition plate; 11. Stacking and lifting mechanism; 12. Felt paper transverse movement mechanism; 13. Metal can conveying mechanism. DETAILED DESCRIPTION

[0027] The exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. It should be noted that these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art. The present disclosure can be implemented in various forms and should not be limited by the embodiments described herein.

[0028] Example

[0029] like Figure 1-4 The metal can stacking interlayer felt paper propulsion device shown is arranged on both sides of the stacking lifting mechanism 11 opposite to the metal can conveying mechanism 13, wherein the metal can conveying mechanism 13 is capable of transporting metal cans, and the relevant structure is introduced in other patents of the company, so it will not be repeated here, and the stacking lifting mechanism 11 is capable of placing stacks and driving the stacks to be lifted and lowered. When in use, the metal can conveying mechanism 13 can move the neatly arranged metal cans to the top of the stack and place them. Afterwards, it can cooperate with the felt paper propulsion device to drag the felt paper placed at a fixed position of the felt paper propulsion device to the top of the metal can. Afterwards, the stacking height is lowered, and subsequent metal can stacking operations can be carried out. The dragging structure of the felt paper is introduced in other patents of the company, so it will not be repeated here. Only the specific design of the felt paper propulsion structure will be introduced.

[0030] That is, the focus of this device is, first of all, Figure 1-4As shown, it includes an assembly frame 1 that is detachably connected to a stacking and lifting mechanism 11, and the assembly frame 1 is provided with two support beams 2 at intervals, the arrangement direction of the support beams 2 is the moving direction of the metal can, and a support tray 3 is provided between the support beams 2, and a movable frame 7 that can move in a horizontal plane is provided above the support tray 3. The movement of the movable frame 7 can drive the felt paper to move, and the moving direction is parallel to the moving direction of the metal can, that is, the moving direction of the movable frame 7 is the direction of approaching or moving away from the metal can conveying mechanism 13. When in use, the movement of the movable frame 7 close to the metal can can drive the felt paper to move to a fixed position to be grabbed and dragged by the structure. Otherwise, it will be reset and the next piece of felt paper will be moved.

[0031] In order to support the felt paper, a horizontal felt paper support plate 5 is provided above the support beam 2, and the felt paper support plate 5 is arranged horizontally. After the felt paper is placed, the displacement of the felt paper can be avoided without external force. Since the felt paper needs to be pushed, the felt paper support plate 5 is provided with a long hole-shaped guide hole 51, and the length direction of the guide hole 51 is parallel to the moving direction of the movable frame 7. Since the movable frame 7 is higher than the felt paper support plate 5, it will affect the normal arrangement of the felt paper. Therefore, the movable frame 7 is provided with a propeller 8 at the position of the guide hole 51, and the highest end of the propeller 8 is higher than the felt paper support plate 5. Under normal circumstances, the propeller 8 can move with the movable frame 7, and during the movement, the highest end of the propeller 8 can resist and drive the felt paper to move. In order to avoid pushing the felt paper during the resetting process of the pusher 8, as a preferred solution, the height of the pusher 8 can be adjusted, and the highest end of the pusher 8 can be lower than the felt paper support plate 5. The method of moving the height of the movable frame 7 is too complicated. An electric telescopic mechanism can be directly provided on the pusher 8 and the movable frame 7. By controlling the telescopic length, the position of the highest point of the pusher 8 can be controlled, and it can be ensured that it can be lower than the upper surface of the felt paper support plate 5 where the felt paper is located when it is retracted to the extreme position. In the above structure, the method of driving the movable frame 7 is that a reciprocating conveyor 6 is provided above the support plate 3, and the reciprocating conveyor 6 is detachably connected to the movable frame 7 by a locking member.

[0032] As an embodiment, the structure for installing the support pallet 3 is that a plurality of support columns 4 are provided at intervals above the support beam 2 for connecting the felt paper pallet 5, and the support columns 4 are detachably connected to the support beam 2 and the felt paper pallet 5. By providing the support columns 4, sufficient space can be left between the support beam 2 and the felt paper pallet 5, thereby facilitating the arrangement of other structures, similar to the structure of the driving movable frame 7, and in the above structure, the height adjustment of the felt paper pallet 5 is achieved in that the support columns 4 have multiple length specifications, and the multiple support columns 4 provided on the same support beam 2 have the same length. According to specific needs, the corresponding support columns 4 can be selected to ensure that the above-mentioned felt paper pallet 5 can cooperate with the structure that drags it to move, and the connection between the support columns 4 and other structures can be carried out by bolts, which is convenient for disassembly and assembly.

[0033] As an embodiment, in order to prevent the felt paper from deviating from the preset position during movement, and in order to limit the movement direction of the felt paper, the assembly frame 1 is symmetrically provided with side limit plates 9 on a horizontal plane higher than the felt paper support plate 5, and the length direction of the side limit plates 9 is parallel to the movement direction of the moving frame 7. Felt paper is generally a rectangular structure, so the spacing of the side limit plates 9 can be set to correspond to the width of the felt paper. During its movement, it can ensure that its movement path is straight and will not deviate from the preset position. It can be prepared to be arranged above the metal can layer to avoid contact between the two layers of metal cans. In the above structure, in order to limit the movement direction of felt paper of different specifications, the side limit plates 9 can be moved, and the movement direction is perpendicular to the length direction. When in use, the side limit plates 9 can be connected to the assembly frame 1 through a telescopic mechanism. By controlling the extension length of the telescopic mechanism, the position of the side limit plates 9 can be controlled. To this end, the extension direction of the telescopic mechanism needs to be perpendicular to the side limit plates 9. Finally, it should be noted that, in order to prevent the felt paper from being out of the preset position, there is no gap between the felt paper supporting plate 5 and the side limiting plate 9. This ensures that during the movement, the felt paper will not get stuck in the gap and cause problems in the operation of the equipment.

[0034] Finally, due to the gaps between the various components, and to prevent the felt paper from deviating from the preset movement trajectory, a detachable transition plate 10 is provided between the stacking and lifting mechanism 11 and the felt paper support plate 5, and the upper surface of the transition plate 10 is parallel to the upper surface of the felt paper support plate 5. To prevent the felt paper from deviating from the preset position, there is no gap between the felt paper support plate 5 and the transition plate 10.

Claims

1. A metal can stacking interlayer felt paper propulsion device, characterized in that: The metal can conveying mechanism (13) is arranged on both sides of the stacking and lifting mechanism (11); The invention also comprises an assembly frame (1) detachably connected to a stacking and lifting mechanism (11), wherein the assembly frame (1) is provided with two support beams (2) at intervals, and a support plate (3) is provided between the support beams (2), and a movable frame (7) capable of moving in a horizontal plane is provided above the support plate (3), and the moving direction of the movable frame (7) is a direction of approaching or moving away from a metal can conveying mechanism (13); A horizontal felt paper support plate (5) is also provided above the support beam (2). The felt paper support plate (5) is provided with a long strip-shaped guide hole (51), and the length direction of the guide hole (51) is parallel to the moving direction of the movable frame (7). The movable frame (7) is provided with a propeller (8) at the position of the guide hole (51), and the highest end of the propeller (8) is higher than the felt paper support plate (5).

2. The metal can stacking interlayer felt paper propulsion device according to claim 1, characterized in that: A plurality of support columns (4) are arranged at intervals above the support beam (2) for connecting the felt paper support plate (5), and the support columns (4) are detachably connected to the support beam (2) and the felt paper support plate (5).

3. The metal can stacking interlayer felt paper propulsion device according to claim 2, characterized in that: The support columns (4) have multiple length specifications, and multiple support columns (4) arranged on the same support beam (2) have the same length.

4. The metal can stacking interlayer felt paper propulsion device according to claim 1, characterized in that: The assembly frame (1) is symmetrically provided with side limit plates (9) on a horizontal plane higher than the felt paper support plate (5), and the length direction of the side limit plates (9) is parallel to the moving direction of the moving frame (7).

5. The metal can stacking interlayer felt paper propulsion device according to claim 4, characterized in that: The side limiting plate (9) is movable, and the moving direction is perpendicular to the length direction.

6. The metal can stacking interlayer felt paper propulsion device according to claim 1, characterized in that: A detachable transition plate (10) is provided between the coding and lifting mechanism (11) and the felt paper support plate (5), and the upper surface of the transition plate (10) is parallel to the upper surface of the felt paper support plate (5).

7. The metal can stacking interlayer felt paper propulsion device according to claim 6, characterized in that: There is no gap between the felt paper support plate (5) and the transition plate (10).

8. The metal can stacking interlayer felt paper propulsion device according to claim 1, characterized in that: A reciprocating conveyor (6) is provided above the supporting plate (3), and the reciprocating conveyor (6) is detachably connected to the movable frame (7) via a locking member.

9. The metal can stacking interlayer felt paper propulsion device according to claim 4, characterized in that: There is no gap between the felt paper supporting plate (5) and the side limiting plate (9).

10. The metal can stacking interlayer felt paper propulsion device according to claim 1, characterized in that: The height of the propeller (8) can be adjusted, and the highest end of the propeller (8) can be lower than the felt paper support plate (5).