Automatic strip package adding device
By adding a strip pack feeding and pushing mechanism to the side of the transparent paper packaging mechanism, the problems of cumbersome automatic strip pack addition and easy pinching in the existing technology are solved, and efficient automatic addition and safe transportation of semi-finished strip packs are realized.
Patent Information
- Application Number
- CN202423092283.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-16
AI Technical Summary
In the current cigarette pack processing, the automatic addition of semi-finished cigarette packs is cumbersome and prone to causing pinching injuries. It requires manual operation and cannot be automated without opening the packaging unit's cover.
Design an automatic strip pack adding device, including a strip pack feeding mechanism and a pushing mechanism. By adding a feeding channel and a pushing platform to the side of the transparent paper packaging mechanism, the automatic conveying and pushing of semi-finished strip packs can be realized, avoiding manual operation, ensuring the smooth conveying and guidance of strip packs between various platforms, and preventing pinching.
It enables efficient and automatic addition of semi-finished strip packages, avoids hand injuries from mechanical pinching, simplifies the operation process, and improves production efficiency and safety.
Smart Images

Figure CN223508579U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cigarette pack processing technology, and in particular to an automatic packing device. Background Technology
[0002] In current cigarette pack processing and packaging units, due to the need for intermediate sample inspection or finished product scheduling during processing, a portion of semi-finished cigarette packs are generated. Most of these semi-finished packs pass manual inspection and only require repackaging with transparent paper to become finished products. However, these semi-finished cigarette packs have already left the packaging unit's channel. The current conventional method involves employing a designated operator to manually add these semi-finished cigarette packs into the machine channel. This requires not only opening the packaging unit's cover but also intermittently pushing the cigarette packs by hand to achieve continuous processing. This operation is extremely cumbersome, requires skilled workers, and is prone to injuries such as pinching. The operation is also quite troublesome and urgently needs improvement. Utility Model Content
[0003] The purpose of this invention is to provide an automatic bagging adding device that can achieve efficient automatic bagging adding and prevents bagging from being pinched during the adding process.
[0004] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an automatic strip pack adding device, comprising:
[0005] The strip bag feeding mechanism is equipped with a feeding channel for strip bags to be used;
[0006] The strip pack feeding mechanism is equipped with a feeding platform connected to the feeding channel, and the strip pack feeding mechanism is used to transport the strip packs in the feeding channel to the feeding platform;
[0007] The transparent paper packaging mechanism includes a transfer platform connected to the push platform and a processing channel connected to the transfer platform. The strip pack push mechanism is used to push strip packs on the push platform to the transfer platform, and the transparent paper packaging mechanism is used to transfer strip packs on the transfer platform to the processing channel for transparent paper packaging processing.
[0008] By adopting the above technical solution, this utility model adds a strip package feeding mechanism and a strip package pushing mechanism to the side of the transparent paper packaging mechanism. The semi-finished strip packages are placed into the feeding channel of the strip package feeding mechanism, which then drives the strip packages in the feeding channel to the pushing platform. Under the pushing action of the strip package pushing mechanism, the strip packages on the pushing platform are pushed to the transfer platform. Since the transfer platform connects to the processing channel, the strip packages are finally transferred from the transfer platform to the processing channel for transparent paper packaging processing. This utility model adds a semi-finished strip package conveying and feeding line composed of a strip package feeding mechanism and a strip package pushing mechanism to the side of the transparent paper packaging mechanism. This allows operators to automatically add the semi-finished strip packages to the processing channel without opening the packaging unit's cover, preventing hand injuries from mechanical pinching. It achieves efficient automatic strip package addition and minimizes the risk of pinching injuries during the strip package addition process.
[0009] A further feature of this invention is that the strip pack feeding mechanism and the transparent paper packaging mechanism are arranged side by side, and the strip pack conveying direction in the processing channel is opposite to the strip pack conveying direction in the feeding channel.
[0010] By adopting the above technical solution, the side-by-side arrangement of the strip feeding mechanism and the transparent paper packaging mechanism makes the space occupied by this device smaller, taking advantage of the overall compact structure of the device.
[0011] A further feature of this invention is that the packing channels, pushing platforms, transfer platforms, and processing channels have their packing conveying surfaces on the same horizontal plane.
[0012] By adopting the above technical solution, it is beneficial to connect and transport the strips between various device platforms.
[0013] A further feature of this invention is that the strip pack feeding mechanism includes a driving device, a conveying plate disposed in the feeding channel, and transmission belts disposed on both sides of the conveying plate. The driving device can drive the transmission belts on both sides to transport the strip packs along the length direction of the conveying plate.
[0014] By adopting the above technical solution, the strip package can slide on the surface of the conveyor plate, which can effectively reduce the up-and-down jumping of the strip package due to vibration in the feeding channel, and is conducive to the stability of the strip package transportation in the feeding channel.
[0015] A further feature of this invention is that side plates are symmetrically provided on both sides of the feeding channel, and the strips transported in the feeding channel are anti-detached from the side plates on both sides.
[0016] By adopting the above technical solution, the addition of side plates can effectively prevent the strips from falling off from both sides of the feeding channel during the feeding process.
[0017] A further feature of this invention is that the strip-pushing mechanism includes a linear motion module and a pusher assembly located at the output end of the linear motion module. The linear motion module can drive the pusher assembly to push the strip-pushing mechanism to slide on the pushing platform.
[0018] By adopting the above technical solution, the linear motion module can drive the pushing component to move the strip, so that the strip is moved from the pushing platform to the transfer platform.
[0019] A further feature of this invention is that the pusher assembly includes a rotary cylinder and a pusher member disposed at the output end of the rotary cylinder. The pusher member includes a rod portion coaxially fixed to the end of the piston rod of the rotary cylinder and a pusher portion extending radially along the rod portion. The rotary cylinder can drive the pusher member to rotate between a vertical state and a horizontal state.
[0020] When the pusher is in a vertical position, the plane formed by the pusher and the rod is perpendicular to the direction of movement of the strip, and the pusher cooperates with the strip in pushing.
[0021] When the pusher is in a horizontal state, the plane formed by the pusher and the rod is parallel to the direction of movement of the strip, and the pusher and the strip avoid each other.
[0022] A further feature of this invention is that a first gap space is provided between the pushing platform and the transfer platform, a first lifting cylinder is provided within the first gap space, and a lifting stop is provided at the output end of the first lifting cylinder. The first lifting cylinder can drive the lifting stop to extend out of the first gap space, thereby isolating the pushing platform and the transfer platform from each other.
[0023] The first lifting cylinder drives the lifting block to retract into the first gap space, so that the pushing platform and the transfer platform are connected to each other.
[0024] By adopting the above technical solution, when the strips in the feeding channel are conveyed to the pushing platform, the first lifting cylinder drives the lifting block to rise, so that the strips can be pushed from the feeding channel to the pushing platform better. At this time, the lifting block can effectively prevent the strips on the pushing platform from accidentally entering the transfer platform. Before the strip pushing mechanism pushes the strips into the transfer platform, the lifting cylinder drives the lifting block to sink first to prepare for the strips to enter the transfer platform. The addition of the lifting block makes the interference between the various processes of this device smaller and is conducive to the functional zoning between the various modules.
[0025] A further feature of this invention is that the lifting stop block is provided with an avoidance groove corresponding to the pushing part, and when the rotary cylinder drives the pushing part to rotate, the lifting stop block avoids and cooperates with the pushing part through the avoidance groove.
[0026] By adopting the above technical solution, the space occupied by the lifting block and the pushing component in the height direction is reduced, which is beneficial to the compactness of the structure of this utility model.
[0027] A further feature of this invention is that a second gap space is provided between the transfer platform and the processing channel, and a second lifting cylinder is provided within the second gap space. The output end of the second lifting cylinder is provided with a lifting baffle. The second lifting cylinder can drive the lifting baffle to retract into the second gap space, thereby connecting the transfer platform and the processing channel.
[0028] The second lifting cylinder drives the lifting baffle to extend out of the second gap space, thereby isolating the transfer platform from the processing channel. When the lifting baffle extends out of the second gap space, the strip pack pushing mechanism pushes the strip pack to the transfer platform, and the side wall of the strip pack slides in a guide-sliding cooperation with the lifting baffle.
[0029] By adopting the above technical solution, when the strip package is pushed to the transfer platform by the strip package pushing mechanism, the rising lifting baffle can guide the side wall of the strip package, which is conducive to the consistency of the pushing direction of the strip package to the transfer platform. At the same time, it can also greatly reduce the situation where the strip package in the processing channel and the strip package on the transfer platform interfere with each other and get stuck when the strip package is pushed to the transfer platform.
[0030] In summary, this utility model has the following beneficial effects:
[0031] This invention employs a strip package feeding mechanism and a strip package pushing mechanism added to the side of the transparent paper packaging mechanism. By placing semi-finished strip packages into the feeding channel of the strip package feeding mechanism, the mechanism transports the packages to a pushing platform. Then, under the pushing action of the pushing mechanism, the packages on the pushing platform are pushed to a transfer platform. Since the transfer platform connects to the processing channel, the packages are finally transferred from the transfer platform to the processing channel for transparent paper packaging. This invention, by adding a semi-finished strip package conveying and feeding line consisting of a strip package feeding mechanism and a strip package pushing mechanism to the side of the transparent paper packaging mechanism, allows operators to automatically add semi-finished strip packages to the processing channel without opening the packaging unit's cover. This prevents hand injuries from mechanical pinching and achieves efficient automatic strip package addition with minimal risk of pinching during the addition process. Attached Figure Description
[0032] Figure 1 This is a structural diagram of the strip package of this utility model in the conveying state.
[0033] Figure 2 This is a bottom view of the present invention.
[0034] Figure 3 This is a utility model Figure 2 Another perspective.
[0035] Figure 4 This is a structural diagram of the present invention where the push rod is in a vertical position relative to the lifting stop.
[0036] Figure 5 This is a structural diagram of the present invention where the push rod is in a horizontal position relative to the lifting stop.
[0037] In the diagram: 1. Strip pack feeding mechanism; 11. Feeding channel; 12. Drive device; 13. Conveyor plate; 14. Transmission belt; 15. Side plate; 2. Strip pack pushing mechanism; 21. Pushing platform; 22. Linear motion module; 23. Push head assembly; 231. Rotary cylinder; 232. Pushing component; 2321. Rod; 2322. Pushing part; 3. Transparent paper packaging mechanism; 31. Transfer platform; 32. Processing channel; 4. First gap space; 41. First lifting cylinder; 42. Lifting stop; 421. Clearance groove; 5. Second gap space; 51. Second lifting cylinder; 52. Lifting baffle; 6. Strip pack. Detailed Implementation
[0038] The present invention will be further described below with reference to the accompanying drawings.
[0039] An automatic strip pack adding device, such as Figure 1-2 As shown, the device includes a strip pack feeding mechanism 1, a strip pack pushing mechanism 2, and a transparent paper packaging mechanism 3. The strip pack feeding mechanism 1 is provided with a feeding channel 11 for feeding strip packs 6. The strip pack pushing mechanism 2 is provided with a pushing platform 21 connected to the feeding channel 11. The strip pack feeding mechanism 1 is used to transport the strip packs 6 in the feeding channel 11 to the pushing platform 21. The transparent paper packaging mechanism 3 includes a transfer platform 31 connected to the pushing platform 21 and a processing channel 32 connected to the transfer platform 31. The strip pack pushing mechanism 2 is used to push the strip packs 6 on the pushing platform 21 to the transfer platform 31. The transparent paper packaging mechanism 3 is used to transfer the strip packs 6 on the transfer platform 31 to the processing channel 32 for transparent paper packaging processing.
[0040] like Figure 1-3As shown, the strip package feeding mechanism 1 and the transparent paper packaging mechanism 3 are arranged side by side, and the conveying direction of the strip package 6 in the processing channel 32 is opposite to the conveying direction of the strip package 6 in the feeding channel 11. The side-by-side arrangement of the strip package feeding mechanism 1 and the transparent paper packaging mechanism 3 makes the space occupied by this device smaller, utilizing the overall compact structure of the device; the conveying surfaces of the strip package 6 in the feeding channel 11, the pushing platform 21, the transfer platform 31 and the processing channel 32 are located on the same horizontal plane, which is conducive to the connection and conveying of the strip package 6 between the various device platforms; the strip package feeding mechanism 1 includes a drive device 12 and a conveying plate 13 located in the feeding channel 11. The conveyor belts 14 located on both sides of the conveyor plate 13 are driven by the drive device 12 to transport the strip package 6 along the length of the conveyor plate 13, allowing the strip package 6 to slide on the upper surface of the conveyor plate 13. This effectively reduces the up-and-down jumping of the strip package 6 due to vibration in the feeding channel 11, which is beneficial to the stability of the strip package 6 in the feeding channel 11. Side plates 15 are symmetrically provided on both sides of the feeding channel 11. The strip package 6 transported in the feeding channel 11 is anti-detached from the side plates 15. The addition of the side plates 15 can effectively prevent the strip package 6 from falling off from both sides of the feeding channel 11 during the feeding process.
[0041] like Figure 1-5As shown, the strip package pushing mechanism 2 includes a linear motion module 22 and a pusher assembly 23 located at the output end of the linear motion module 22. The linear motion module 22 can drive the pusher assembly 23 to push the strip package 6 to slide on the pushing platform 21. The linear motion module 22 can also drive the pushing assembly to push the strip package 6 to move, so that the strip package 6 is pushed from the pushing platform 21 to the transfer platform 31. The pusher assembly 23 includes a rotary cylinder 231 and a pusher 232 located at the output end of the rotary cylinder 231. The pusher 232 includes a rod portion 2321 coaxially fixed to the end of the piston rod of the rotary cylinder 231, and a pushing part 2322 extending radially along the rod portion 2321. The rotary cylinder 231 can drive the pusher 232 to rotate between a vertical and a horizontal state. When the pusher 232 is in a vertical state, the plane formed by the pusher 2322 and the rod 2321 is perpendicular to the direction of movement of the strip package 6, and the pusher 2322 pushes and cooperates with the strip package 6. When the pusher 232 is in a horizontal state, the plane formed by the pusher 2322 and the rod 2321 is parallel to the direction of movement of the strip package 6, and the pusher 232 avoids and cooperates with the strip package 6. A first gap space 4 is left between the pushing platform 21 and the transfer platform 31. A first lifting cylinder 41 is provided in the first gap space 4, and a lifting stop is provided at the output end of the first lifting cylinder 41. Block 42, the first lifting cylinder 41 can drive the lifting block 42 to extend out of the first gap space 4, so that the pushing platform 21 and the transfer platform 31 are isolated from each other, or the first lifting cylinder 41 can drive the lifting block 42 to retract into the first gap space 4, so that the pushing platform 21 and the transfer platform 31 are connected to each other. When the strip package 6 in the feeding channel 11 is conveyed to the pushing platform 21, the first lifting cylinder 41 drives the lifting block 42 to rise, so that the strip package 6 can be better pushed from the feeding channel 11 to the pushing platform 21. At this time, the lifting block 42 can effectively prevent the strip package 6 on the pushing platform 21 from accidentally entering the transfer platform 31. Before the package pushing mechanism 2 pushes the package 6 into the transfer platform 31, the lifting cylinder drives the lifting stop 42 to sink first, preparing the package 6 to enter the transfer platform 31. The addition of the lifting stop 42 reduces the interference between the various processes of this device and facilitates the functional zoning between the modules. The lifting stop 42 is provided with a clearance groove 421 corresponding to the pushing part 2322. When the rotary cylinder 231 drives the pushing part 232 to rotate, the lifting stop 42 avoids and cooperates with the pushing part 2322 through the clearance groove 421, making the space occupied by the lifting stop 42 and the pushing part 232 in the height direction smaller, which is beneficial to the compactness of the structure of this utility model.A second gap space 5 is provided between the transfer platform 31 and the processing channel 32. A second lifting cylinder 51 is installed in the second gap space 5. A lifting baffle 52 is provided at the output end of the second lifting cylinder 51. The second lifting cylinder 51 can drive the lifting baffle 52 to retract into the second gap space 5, so that the transfer platform 31 and the processing channel 32 are connected. Alternatively, the second lifting cylinder 51 can drive the lifting baffle 52 to extend out of the second gap space 5, so that the transfer platform 31 and the processing channel 32 are separated. During the process of the strip pack pushing mechanism 2 moving strip pack 6 to the transfer platform 31, the side wall of strip pack 6 is guided and slidably engaged with the lifting baffle 52. When strip pack 6 is pushed onto the transfer platform 31 by the strip pack pushing mechanism 2, the rising lifting baffle 52 can guide the side wall of strip pack 6, which is beneficial to the consistency of the pushing direction of strip pack 6 onto the transfer platform 31. At the same time, it can also greatly reduce the possibility of interference and jamming between strip pack 6 in the processing channel 32 and strip pack 6 on the transfer platform 31 when strip pack 6 is pushed onto the transfer platform 31.
[0042] The basic working principle of this utility model is as follows: A strip package feeding mechanism 1 and a strip package pushing mechanism 2 are added to the side of the transparent paper packaging mechanism 3. By placing the semi-finished strip package 6 into the feeding channel 11 of the strip package feeding mechanism 1, the strip package feeding mechanism 1 drives the strip package 6 in the feeding channel 11 to be transported to the pushing platform 21. Then, under the pushing action of the strip package pushing mechanism 2, the strip package 6 on the pushing platform 21 is pushed to the transfer platform 31. Since the transfer platform 31 is connected to the processing channel 32, the strip package 6 is finally transferred from the transfer platform 31 to the processing channel 32 for further processing. This utility model, which processes transparent paper packaging, adds a semi-finished strip package 6 conveying and feeding line consisting of a strip package feeding mechanism 1 and a strip package pushing mechanism 2 to the side of the transparent paper packaging mechanism 3. This allows operators to place the strip package 6 into the feeding channel 11 without opening the cover of the packaging unit. The automatic strip package 6 adding device can then automatically add the semi-finished strip package 6 to the processing channel 32, preventing hand injuries from mechanical pinching. It achieves efficient automatic addition of the strip package 6 and minimizes the risk of pinching injuries during the addition process.
[0043] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. An automatic strip-packing device, characterized in that, include: The strip pack feeding mechanism (1) is provided with a feeding channel (11) for feeding strip packs (6); The strip pack pushing mechanism (2) is provided with a pushing platform (21) connected to the feeding channel (11). The strip pack feeding mechanism (1) is used to transport the strip packs (6) in the feeding channel (11) to the pushing platform (21). The transparent paper packaging mechanism (3) includes a transfer platform (31) connected to the push platform (21) and a processing channel (32) connected to the transfer platform (31). The strip pack push mechanism (2) is used to push the strip packs (6) on the push platform (21) to the transfer platform (31), and the transparent paper packaging mechanism (3) is used to transfer the strip packs (6) on the transfer platform (31) to the processing channel (32) for transparent paper packaging processing.
2. The automatic strip-adding device according to claim 1, characterized in that: The strip pack feeding mechanism (1) and the transparent paper packaging mechanism (3) are arranged side by side, and the conveying direction of the strip packs (6) in the processing channel (32) is opposite to the conveying direction of the strip packs (6) in the feeding channel (11).
3. The automatic strip-adding device according to claim 2, characterized in that: The conveying surfaces of the strips (6) of the feeding channel (11), pushing platform (21), transfer platform (31) and processing channel (32) are located on the same horizontal plane.
4. The automatic strip-adding device according to claim 1, characterized in that: The strip pack feeding mechanism (1) includes a drive device (12), a conveyor plate (13) located in the feeding channel (11), and a transmission belt (14) located on both sides of the conveyor plate (13). The drive device (12) can drive the transmission belts (14) on both sides to transport the strip pack (6) along the length direction of the conveyor plate (13).
5. The automatic strip-adding device according to claim 1, characterized in that: The feeding channel (11) is symmetrically provided with side plates (15) on both sides, and the strip package (6) transported in the feeding channel (11) is anti-detached from the side plates (15) on both sides.
6. The automatic strip-adding device according to claim 1, characterized in that: The strip pusher (2) includes a linear motion module (22) and a pusher assembly (23) located at the output end of the linear motion module (22). The linear motion module (22) can drive the pusher assembly (23) to push the strip (6) to slide on the pusher platform (21).
7. The automatic strip-adding device according to claim 6, characterized in that: The pusher assembly (23) includes a rotary cylinder (231) and a pusher (232) disposed at the output end of the rotary cylinder (231). The pusher (232) includes a rod portion (2321) coaxially fixed to the end of the piston rod of the rotary cylinder (231) and a pusher portion (2322) extending radially along the rod portion (2321). The rotary cylinder (231) can drive the pusher (232) to rotate between a vertical state and a horizontal state. When the pusher (232) is in a vertical state, the plane formed by the pusher (2322) and the rod (2321) is perpendicular to the direction of movement of the strip (6), and the pusher (2322) and the strip (6) push and cooperate. When the pusher (232) is in a horizontal state, the plane formed by the pusher (2322) and the rod (2321) is parallel to the direction of movement of the strip (6), and the pusher (232) and the strip (6) cooperate with each other.
8. The automatic strip-adding device according to claim 7, characterized in that: A first gap space (4) is left between the pushing platform (21) and the transfer platform (31). A first lifting cylinder (41) is provided in the first gap space (4). A lifting stop block (42) is provided at the output end of the first lifting cylinder (41). The first lifting cylinder (41) can drive the lifting stop block (42) to extend out of the first gap space (4), so that the pushing platform (21) and the transfer platform (31) are isolated from each other, or... The first lifting cylinder (41) drives the lifting block (42) to retract into the first gap space (4), so that the pushing platform (21) and the transfer platform (31) are connected to each other.
9. The automatic strip-adding device according to claim 8, characterized in that: The lifting stop (42) is provided with a clearance groove (421) corresponding to the pushing part (2322). When the rotary cylinder (231) drives the pushing part (232) to rotate, the lifting stop (42) avoids and cooperates with the pushing part (2322) through the clearance groove (421).
10. The automatic strip-adding device according to claim 8, characterized in that: A second gap space (5) is left between the transfer platform (31) and the processing channel (32). A second lifting cylinder (51) is provided in the second gap space (5). A lifting baffle (52) is provided at the output end of the second lifting cylinder (51). The second lifting cylinder (51) can drive the lifting baffle (52) to retract into the second gap space (5), so that the transfer platform (31) and the processing channel (32) are interconnected, or... The second lifting cylinder (51) drives the lifting baffle (52) to extend out of the second gap space (5), so that the transfer platform (31) and the processing channel (32) are separated from each other. When the lifting baffle (52) extends out of the second gap space (5), the strip pusher (2) pushes the strip (6) to the transfer platform (31), and the side wall of the strip (6) slides and cooperates with the lifting baffle (52).