Firecracker tube making and basket filling machine
By driving the coordinated movement of the electric slider and the limit frame by the electric slide rail, the problem of inconvenient control of the circulation of the firecracker during the basket loading process is solved, and the automatic circulation and shaking of the firecracker is realized, and the efficiency and effect of the basket loading are improved.
Patent Information
- Application Number
- CN202422651887.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-31
AI Technical Summary
The existing basket loaders are not convenient to automatically control the circulation of firecrackers when loading baskets, resulting in low efficiency of loading baskets, and insufficient installation of firecrackers, gaps, and poor storage effect.
The electric slider is used to drive the electric slider. Through the coordinated movement of the limit frame and the extrusion plate, the firecracker barrel is automatically circulated and shaken, realizing the automatic blocking and passing of the firecracker barrel, ensuring that the firecracker barrel is fully arranged within the limit frame.
Improve the efficiency of basket loading, ensure that the firecracker barrels are fully arranged within the limit frame, reduce gaps, and improve the effect of basket loading.
Smart Images

Figure CN223239193U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of firecracker processing, in particular to a firecracker bobbin-making and basket-packing machine. Background Art
[0002] During the firecracker processing process, in order to facilitate the subsequent loading and insertion, the staff need to pack the firecracker tubes into baskets in batches. During the packing process, the staff will arrange a large number of firecracker tubes in the basket in sequence through funnel-like tools, and then bundle the basketed firecracker tubes. At the same time, before and after each packing, the staff needs to control the circulation of the firecracker tubes to facilitate each packing.
[0003] However, the current basket loading machine is not convenient for automatically controlling the circulation of firecracker tubes when loading, which makes it cumbersome for the staff to use, resulting in low basket loading efficiency, and more gaps are prone to appear in the firecracker tubes during the loading process. The existing basket loading machine is not convenient for repeatedly shaking the firecracker tubes in the limit frame while loading, which leads to insufficient loading of the firecracker tubes, resulting in poor basket loading effect. Utility Model Content
[0004] In order to overcome the above shortcomings, the utility model provides a firecracker tube basket loading machine, which can improve the basket loading efficiency and can repeatedly shake the firecracker tubes in the limit frame to make the basket loading more complete, thereby improving the basket loading effect.
[0005] The technical solution is as follows: A firecracker bobbin filling machine includes a support frame, an outer frame is fixedly connected to the support frame, the outer frame is obliquely arranged, a feed port is opened on the top of the outer frame, both sides of the inner wall of the outer frame are fixedly connected to limit plates, the bottoms of the two limit plates are fixedly connected to soft plates, both sides of the lower part of the outer frame are fixedly connected to electric slide rails, the two electric slide rails are slidably connected to electric sliders, the two electric sliders are fixedly connected to support blocks, the two support blocks are slidably connected to a limit frame, the outer frame is fixedly connected to the support plate, the A stopper is slidably connected to the support plate, and the stopper is located above the two soft plates. A compression spring is connected between the stopper and the support plate. An automatic component is provided on the support block, and the automatic component is connected to the stopper. A shaking component is provided on the limit frame, and the shaking component is connected to the outer frame. The electric slide rail drives the electric slider to move so that the automatic component automatically moves the stopper, thereby automatically blocking and passing the firecracker tube. The movement of the electric slider drives the limit frame to move at the same time, so that the shaking component drives the limit frame to shake the firecracker tube inside.
[0006] Optionally, a plurality of protrusions are provided on the bottom of the stopper.
[0007] Optionally, the automatic component includes a limit block, and the two limit blocks are fixedly connected to the two support blocks. The two limit blocks are slidably connected to an extrusion plate, and the two extrusion plates are symmetrically arranged. The sides of the two extrusion plates close to each other are both inclined structures, and both sides of the upper part of the outer frame are fixedly connected with oblique blocks, and the two oblique blocks are symmetrically arranged, and both sides of the block are fixedly connected with a compression rod.
[0008] Optionally, an oblique groove is formed on a side of the extrusion plate close to the compression rod.
[0009] Optionally, the shaking assembly includes a protrusion, and the two protrusions are respectively fixedly connected to the two sides of the limit frame, and the two sides of the lower part of the outer frame are fixedly connected with wavy strips, and the two wavy strips are respectively located on the side where the two protrusions are away from each other, and the two protrusions are respectively in contact with the side where the two wavy strips are close to each other.
[0010] The two extrusion plates are moved upward by the electric slide rail, and the two extrusion plates move in a direction away from each other by squeezing the pressure rods. Then the extrusion plate continues to move upward to squeeze the two oblique blocks in a direction close to each other, thereby making the inclined surface structure of the extrusion plate move the stop block by squeezing the two pressure rods, and then the firecracker tube falls into the limit frame. Then the electric slide rail drives the electric slide rail to make the limit frame, the extrusion plate and the protrusion move downward together, and the limit frame moves downward so that the space between the soft plate and the limit frame slowly becomes larger, thereby making the firecracker tube arranged in this way in the limit frame. After the limit frame has moved downward, the firecracker tube is just filled with the limit frame. At the same time, the extrusion plate will be out of contact with the pressure rod, and the compression spring will reset to drive the stop block to reset. The stop block will block the firecracker tube again when it resets. In this way, the stop block will automatically block and pass through the firecracker tube before and after loading, which is convenient for the staff to use, thereby improving the loading efficiency.
[0011] 2. When the limit frame moves downward, it will drive the two protrusions to move downward together. The two protrusions moving downward together will drive the limit frame to repeatedly shake the internal firecracker tubes through the two wave bars, so that each firecracker tube fits fully, thereby making the firecracker tubes more fully loaded into the basket, thereby improving the loading effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model.
[0013] Figure 2 It is a schematic diagram of the cross-sectional three-dimensional structure of the utility model.
[0014] Figure 3 For this utility model Figure 2Schematic diagram of the enlarged three-dimensional structure of A in the middle.
[0015] Figure 4 It is a partial three-dimensional structural diagram of the utility model.
[0016] Figure 5 It is a schematic diagram of a partially disassembled three-dimensional structure of the utility model.
[0017] The meaning of the reference numbers in the figure: 1: support frame, 2: outer frame, 3: limit plate, 4: soft board, 5: electric slide rail, 6: electric slider, 7: support block, 8: limit frame, 9: support plate, 10: stop block, 11: compression spring, 12: limit block, 13: extrusion plate, 14: oblique block, 15: compression rod, 16: protrusion, 17: wave bar. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0019] Embodiment 1: A firecracker bobbin packing machine, such as Figure 1-Figure 5 As shown, it includes a support frame 1, an outer frame 2 is welded on the support frame 1, the outer frame 2 is arranged obliquely, and the outer frame 2 is arranged obliquely to facilitate the loading of firecracker tubes into the basket. A feed port is opened on the top of the outer frame 2, and limiting plates 3 are welded on both sides of the inner wall of the outer frame 2. The bottoms of the two limiting plates 3 are connected to soft plates 4 by bolts, and the soft plates 4 are used to load the firecracker tubes into the basket. Electric slide rails 5 are connected to the two electric slide rails 5 by bolts, and electric sliders 6 are slidably connected to the two electric sliders 6. Support blocks 7 are connected to the two support blocks 7 by bolts. A limiting frame 8 is slidably connected between the two support blocks 7, and the limiting frame 8 is used to receive the firecracker tubes. A support plate 9 is provided with a stopper 10 which is slidably connected to the support plate 9. The stopper 10 is located above the two soft plates 4. The stopper 10 is used to block the firecracker tube. A compression spring 11 is connected between the stopper 10 and the support plate 9. An automatic component is provided on the support block 7, and the automatic component is connected to the stopper 10. A shaking component is provided on the limit frame 8, and the shaking component is connected to the outer frame 2. The electric slide rail 5 drives the electric slider 6 to move so that the automatic component automatically moves the stopper 10, thereby automatically blocking and passing the firecracker tube. The electric slider 6 moves and drives the limit frame 8 to move at the same time, so that the shaking component drives the limit frame 8 to shake the firecracker tube inside.
[0020] The bottom of the stopper 10 is provided with a plurality of protrusions, and the protrusions of the stopper 10 facilitate better blocking of the firecracker tube.
[0021] The automatic component includes a limit block 12, and the two limit blocks 12 are welded to the two support blocks 7. The two limit blocks 12 are slidably connected to the extrusion plates 13, and the two extrusion plates 13 are symmetrically arranged. The sides of the two extrusion plates 13 close to each other are both inclined structures. Oblique blocks 14 are welded on both sides of the upper part of the outer frame 2, and the two oblique blocks 14 are symmetrically arranged. The oblique blocks 14 are used to extrude the extrusion plates 13. The two sides of the stop block 10 are fixedly connected to the compression rod 15, and the extrusion plate 13 is used to extrude the compression rod 15.
[0022] An oblique groove is formed on one side of the extrusion plate 13 close to the pressure rod 15 , and the oblique groove of the extrusion plate 13 is used to squeeze the pressure rod 15 to move.
[0023] The shaking assembly includes a protrusion 16, and the two protrusions 16 are respectively welded on both sides of the limit frame 8. Wave strips 17 are welded on both sides of the lower part of the outer frame 2. The two wave strips 17 are respectively located on the side where the two protrusions 16 are away from each other, and the two protrusions 16 are respectively in contact with the side where the two wave strips 17 are close to each other. The protrusions 16 are used to squeeze the wave strips 17 to drive the limit frame 8 to move back and forth.
[0024] First, the staff puts a number of firecracker tubes into the feed port of the outer frame 2. The put-in firecracker tubes will gather between the two limit plates 3 and the two soft plates 4. At the same time, the firecracker tubes will be stuck above the block 10. Then the staff will energize the electric slide 5. The electric slide 5 drives the electric slider 6 to move upward first. The electric slider 6 moves upward through the support block 7 and the limit block 12 to drive the limit frame 8 and the extrusion plate 13 to move upward together. The limit frame 8 moves upward so that the two soft plates 4 are in the limit frame 8. The extrusion plate 13 moves upward to squeeze the pressure rod 15 through the oblique groove of the extrusion plate 13, and then the two extrusion plates 13 The two compression rods 15 are squeezed and the two compression rods 15 are squeezed, which drives the stopper 10 to move in the direction close to the support plate 9. The compression spring 11 is compressed, and the stopper 10 moves and no longer blocks the firecracker tube. The firecracker tube will fall into the limit frame 8 through the soft plate 4. Then the electric slide rail 5 drives the electric slider 6 to move downward so that the limit frame 8, the extrusion plate 13 and the protrusion 16 move downward together. The limit frame 8 moves downward so that the soft plate 4 The space in the limit frame 8 slowly becomes larger, so that the firecracker tubes are arranged in this way in the limit frame 8. After the limit frame 8 moves downward, the firecracker tubes are just filled with the limit frame 8. At the same time, the extrusion plate 13 will be out of contact with the pressure rod 15, and the compression spring 11 will reset to drive the stopper 10 to reset. The stopper 10 will block the firecracker tube again. In this way, the stopper 10 will automatically block and pass through the firecracker tube before and after loading, which is convenient for the staff to use, thereby improving the efficiency of loading the basket. When the limit frame 8 moves downward, it will drive the two protrusions 16 to move downward together. One of the protrusions 16 will move downward and will first contact And squeeze the adjacent wavy bars 17 to drive the limit frame 8 to move in the direction of the other protrusion 16. Then, when the protrusion 16 disengages from the wavy bar 17, the other protrusion 16 will squeeze the other wavy bar 17 to drive the limit frame 8 to move in the opposite direction. Repeat this. The two protrusions 16 move downward together and drive the limit frame 8 through the two wavy bars 17 to repeatedly shake the internal firecracker tubes, so that each firecracker tube fits fully, thereby making the firecracker tubes more fully loaded into the basket, thereby improving the basket loading effect. After the basket loading is completed, the staff will cut off the power to the electric slide rail 5, and at the same time, tie up the firecracker tubes after basketing and take them out.
[0025] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A firecracker bobbin packing machine, characterized in that: The invention comprises a support frame (1), an outer frame (2) is fixedly connected to the support frame (1), the outer frame (2) is arranged obliquely, a feed port is opened on the top of the outer frame (2), both sides of the inner wall of the outer frame (2) are fixedly connected to limit plates (3), the bottoms of the two limit plates (3) are fixedly connected to soft boards (4), both sides of the lower part of the outer frame (2) are fixedly connected to electric slide rails (5), the two electric slide rails (5) are slidably connected to electric sliders (6), the two electric sliders (6) are fixedly connected to support blocks (7), the two support blocks (7) are slidably connected to a limit frame (8), the outer frame (2) is fixedly connected to a support plate (9), the support plate (9) is slidably connected to the ... The support plate (9) is connected with a stopper (10), the stopper (10) is located above the two soft plates (4), a compression spring (11) is connected between the stopper (10) and the support plate (9), an automatic component is provided on the support block (7), the automatic component is connected to the stopper (10), a shaking component is provided on the limit frame (8), the shaking component is connected to the outer frame (2), the electric slide rail (5) drives the electric slider (6) to move so that the automatic component automatically moves the stopper (10), thereby automatically blocking and passing the firecracker tube, and the electric slider (6) moves while driving the limit frame (8) to move, thereby causing the shaking component to drive the limit frame (8) to shake the firecracker tube inside.
2. A firecracker bobbin packing machine according to claim 1, characterized in that: The bottom of the stopper (10) is provided with a plurality of protrusions.
3. A firecracker bobbin packing machine according to claim 1, characterized in that: The automatic component includes a limit block (12), two limit blocks (12) are fixedly connected to the two support blocks (7), and the two limit blocks (12) are slidably connected to an extrusion plate (13), the two extrusion plates (13) are symmetrically arranged, and the sides of the two extrusion plates (13) close to each other are both inclined structures, and both sides of the upper part of the outer frame (2) are fixedly connected to oblique blocks (14), the two oblique blocks (14) are symmetrically arranged, and both sides of the stop block (10) are fixedly connected to a pressure rod (15).
4. A firecracker bobbin-packing machine according to claim 3, characterized in that: An oblique groove is formed on one side of the extrusion plate (13) close to the pressure rod (15).
5. A firecracker bobbin-packing machine according to claim 3, characterized in that: The shaking component includes a protrusion (16), and the two protrusions (16) are fixedly connected to the two sides of the limit frame (8), and the two sides of the lower part of the outer frame (2) are fixedly connected with a wave strip (17), and the two wave strips (17) are respectively located on the side where the two protrusions (16) are far away from each other, and the two protrusions (16) are respectively in contact with the side where the two wave strips (17) are close to each other.