Multi-inlet full-standard cigarette stacking device
The multi-inlet, full-size cigarette stacking device solves the problem of existing equipment's inability to handle irregularly shaped cigarettes, achieving efficient and orderly stacking and direct conveying of cigarette boxes, reducing box damage rate, improving packaging efficiency, and adapting to the packaging needs of various types of cigarette boxes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-04-03
AI Technical Summary
Existing cigarette packaging equipment is unable to efficiently handle irregularly shaped cigarettes, resulting in high box damage rates and low efficiency, and cannot meet the packaging needs of all types of cigarettes.
The system employs a multi-inlet, full-size cigarette stacking device, including a long cigarette inlet conveyor line, a full-size cigarette inlet conveyor line, a wrapping machine, and a heat shrink oven. Combined with visual recognition, separate cigarette pushing, and direct-draw cigarette stacking devices, the system achieves neat stacking and direct conveying of cigarette boxes through multiple production line designs and multiple cigarette receiving compartment structures.
It effectively reduces box damage rate, improves packaging efficiency, adapts to the packaging needs of irregularly shaped cigarette boxes, enhances the flexibility and versatility of the device, and is suitable for different types of cigarette box packaging.
Smart Images

Figure CN224075839U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cigarette packaging, and more specifically to a multi-inlet, full-size cigarette stacking device. Background Technology
[0002] In the current cigarette packaging industry, stacking machines are commonly used to stack cigarette boxes. These machines employ symmetrical chain drive, and because the receiving plate can only move along the entire chain structure, they suffer from a high damage rate when stacking irregularly shaped cigarettes. They are more suitable for stacking standard medium and slim cigarette boxes. Furthermore, due to their working principle, the stacked cigarette boxes fall into a receiving platform, and then a pushing device pushes them into a conveyor for the next packaging step. This method is not only inconvenient for packaging all specifications of cigarette boxes, but also inefficient and unfavorable for production implementation. Utility Model Content
[0003] This invention overcomes the shortcomings of the prior art and provides a multi-inlet, full-specification cigarette stacking device.
[0004] The objective of this utility model is achieved through the following technical solution.
[0005] A multi-inlet, full-size cigarette stacking device includes one or more long-strip cigarette inlet conveying lines, a full-size cigarette inlet conveying line, a wrapping machine, and a heat shrink oven.
[0006] A first smoke inlet belt is provided on the long smoke inlet conveyor line. A first lifting smoke inlet mechanism and a second lifting smoke inlet mechanism are provided on the first smoke inlet belt. The first smoke inlet belt corresponding to the first lifting smoke inlet mechanism and the second lifting smoke inlet mechanism is a conveyor belt structure with two belt bodies. A counting device is provided in the gap between the two conveyor belt bodies. A smoke stacking device is provided at the smoke outlet of the first smoke inlet belt. A smoke pushing device is provided on the smoke receiving structure of the smoke stacking device.
[0007] The full-size smoke inlet conveyor line is equipped with a second smoke inlet belt, which features a visual recognition device and a smoke-pushing device. A corresponding aligning belt is located at the smoke outlet of the second smoke inlet belt, with lifting smoke baffles at both ends. A direct-draw smoke stacking device is also located at the smoke outlet of the aligning belt.
[0008] The direct-extraction stacking device includes a stacking machine and a smoke-supporting conveyor. The stacking machine is positioned above the smoke-supporting conveyor. The smoke-supporting conveyor is configured in conjunction with the smoke-pushing device and the wrapping machine of each long strip of tobacco inlet conveyor line. The wrapping machine is configured in conjunction with the heat shrink oven.
[0009] The stacking machine has multiple smoke-supporting devices vertically arranged at equal intervals inside its casing. Each smoke-supporting device has two symmetrically opening and closing smoke-supporting plates, which are slidably connected to the device. The plates are also coordinated with the actuators on the device. The casing has a smoke inlet that is coordinated with the smoke-supporting device at the top and the smoke outlet of the conveyor belt. Baffles are located inside the casing on both sides of the smoke inlet.
[0010] The smoke-collecting device includes a fixed plate, a slide rail, a smoke-collecting plate, and a driver. There are two fixed plates symmetrically arranged on the left and right sides of the smoke stacking machine housing, with a gap between the two fixed plates. The gaps form a smoke-collecting passage. Each fixed plate is provided with one or more slide rails. The two smoke-collecting plates are respectively set on the slide rails of the corresponding fixed plates. When the two smoke-collecting plates are in the closed state, they block the gap between the two fixed plates. The smoke-collecting plates are configured in conjunction with the driver.
[0011] The casing of the cigarette stacking machine is provided with multiple sliding grooves. The number and position of the sliding grooves are matched with the cigarette support plates of each cigarette support device. The casing of the cigarette stacking machine near the sliding grooves is provided with slider tracks. Each slider track is provided with a linkage slider. The linkage slider is fixedly connected to the corresponding cigarette support plate and is connected to the corresponding driver.
[0012] The driver uses a drive motor or cylinder.
[0013] The linkage slider is connected to the corresponding driver via a drive belt.
[0014] The cigarette stacking machine housing is equipped with multiple sets of drive wheels, with two drive wheels in each set, which are respectively located on the left and right sides of the cigarette stacking machine housing. The position of each set of drive wheels matches the corresponding cigarette holding device, and the drive belt is nested in a ring on the drive wheels.
[0015] The two drive wheels in the same group divide the drive belt into a first belt body closer to the cigarette stacker housing and a second belt body farther away from the cigarette stacker housing. The two linkage sliders corresponding to the same cigarette holding device are fixedly connected to the first belt body and the second belt body respectively.
[0016] The cigarette conveying device is equipped with a transport platform, a drive chain, a cigarette pusher, a cigarette receiving platform, and a lifting device. The transport platform is a strip-shaped platform, which is set up in conjunction with the cigarette pusher and wrapping machine of the long cigarette inlet conveyor line. The cigarette conveying devices on both sides of the transport platform are symmetrically equipped with drive chains, and multiple cigarette pushers are equidistantly arranged on the drive chains. The cigarette receiving platform is set up on the transport platform, and the position of the cigarette receiving platform matches that of the cigarette conveying device. The cigarette receiving platform is set on the lifting device.
[0017] Smoke deflectors are installed on both sides of the transport platform.
[0018] There are two long cigarette inlet conveyor lines, which are set on both sides of the full-size cigarette inlet conveyor line.
[0019] The beneficial effects of this utility model are as follows:
[0020] This solution overcomes the problem of existing cigarette stacking machines requiring additional equipment to place stacked cigarette boxes onto a conveyor belt for transport. In this solution, the direct-draw cigarette stacking device employs a multi-bin structure that directly connects to the conveyor belt to arrange cigarette boxes into neat layers. Therefore, it is suitable for irregularly shaped cigarette boxes without the problems of jamming or dropping boxes that occur with existing stacking machines. After arranging the cigarette boxes, the neat layers are dropped layer by layer until they fall onto the conveyor belt. Repeating this process effectively stacks multiple layers of cigarette boxes. It effectively adapts to irregularly shaped cigarette boxes and allows stacked boxes to be stacked directly within the conveyor, avoiding the need for additional equipment and significantly improving efficiency. Furthermore, this device incorporates a multi-production line design, making packaging more efficient and compatible with different types of cigarette stacking machines, making the device more flexible, versatile, and suitable for widespread use. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of this utility model;
[0022] Figure 2 This is a top view of the present invention;
[0023] Figure 3 This is a schematic diagram of another way to set up the smoke pushing device;
[0024] Figure 4 This is a schematic diagram of a direct-draw cigarette stacking device;
[0025] Figure 5 This is a structural diagram of a smoke stacking machine;
[0026] Figure 6 This is a front view of the smoke folding machine;
[0027] Figure 7 This is a schematic diagram of the cigarette holder installation;
[0028] In the diagram: 1. Smoke stacking machine housing; 101. Smoke inlet; 102. Sliding groove; 103. Baffle; 2. Smoke supporting device; 201. Smoke supporting plate; 202. Driver; 203. Fixing plate; 204. Slide rail; 3. Sliding slide rail; 4. Linked sliding plate; 5. Drive belt; 6. Drive wheel; 7. Transport platform; 8. Transmission chain; 9. Smoke pushing plate; 10. Smoke receiving platform; 11. Lifting device; 12. Smoke baffle; 13. First smoke inlet belt; 14. First lifting smoke inlet mechanism; 15. Second lifting smoke inlet mechanism; 16. Smoke stacking device; 17. Smoke pushing device; 18. Second smoke inlet belt; 19. Visual recognition device; 20. Divided smoke pushing device; 21. Arrangement belt; 22. Lifting smoke baffle; 23. Wrapping machine; 24. Heat shrink oven. Detailed Implementation
[0029] The technical solution of this utility model will be further described below through specific embodiments.
[0030] Example
[0031] A multi-inlet, full-size cigarette stacking device includes one or more long cigarette inlet conveying lines, a full-size cigarette inlet conveying line, a wrapping machine 23, and a heat shrink oven 24.
[0032] A first smoke inlet belt 13 is provided on the long smoke inlet conveyor line. A first lifting smoke inlet mechanism 14 and a second lifting smoke inlet mechanism 15 are correspondingly provided on the first smoke inlet belt 13. The first smoke inlet belt 13 corresponding to the first lifting smoke inlet mechanism 14 and the second lifting smoke inlet mechanism 15 is a conveyor belt structure with two belts. A counting device is provided in the gap between the two conveyor belts. A smoke stacking device 16 is correspondingly provided at the smoke outlet of the first smoke inlet belt 13. A smoke pushing device 17 is provided on the smoke receiving structure of the smoke stacking device 16.
[0033] The full-specification smoke inlet conveyor line is equipped with a second smoke inlet belt 18, which is equipped with a visual recognition device 19 and a smoke-pushing device 20. At the smoke outlet of the second smoke inlet belt 18, there is a corresponding arranging belt 21. At both ends of the arranging belt 21, there are lifting smoke baffles 22. At the smoke outlet of the arranging belt 21, there is a corresponding direct-draw smoke stacking device 16.
[0034] The direct-extraction stacking device 16 includes a stacking machine and a cigarette conveying device. The stacking machine is positioned above the cigarette conveying device. The cigarette conveying device is configured in conjunction with the pushing device 17 and the wrapping machine 23 of each long cigarette inlet conveying line. The wrapping machine 23 is configured in conjunction with the heat shrink oven 24.
[0035] The stacking machine housing 1 has multiple smoke-supporting devices 2 arranged vertically at equal intervals. Each smoke-supporting device 2 has two symmetrically opening and closing smoke-supporting plates 201. The two smoke-supporting plates 201 are slidably connected to the smoke-supporting device 2. The two smoke-supporting plates 201 are configured to cooperate with the driver 202 provided on the smoke-supporting device 2. The stacking machine housing 1 has a smoke inlet 101. The smoke inlet 101 is configured to cooperate with the smoke outlet positions of the uppermost smoke-supporting device 2 and the arranging belt 21. Baffles 103 are provided inside the stacking machine housing 1 on both sides of the smoke inlet 101.
[0036] The smoke-collecting device 2 includes a fixed plate 203, a slide rail 204, a smoke-collecting plate 201, and a driver 202. The number of fixed plates 203 is two, which are symmetrically arranged on the left and right sides of the smoke stacking machine housing 1. There is a gap between the two fixed plates 203, and the gaps form a smoke-falling passage. Each fixed plate 203 is provided with one or more slide rails 204. The two smoke-collecting plates 201 are respectively arranged on the slide rails 204 of the corresponding fixed plates 203. When the two smoke-collecting plates 201 are in the closed state, they block the gap between the two fixed plates 203. The smoke-collecting plates 201 are configured in conjunction with the driver 202.
[0037] The stacking cigarette machine housing 1 is provided with multiple sliding grooves 102. The number and position of the sliding grooves 102 are matched with the cigarette support plates 201 of each cigarette support device 2. The stacking cigarette machine housing 1 near the sliding grooves 102 is provided with slider tracks 3. Each slider track 3 is provided with a linkage slider 4. The linkage slider 4 is fixedly connected to the corresponding cigarette support plate 201. The linkage slider 4 is also connected to the corresponding driver 202.
[0038] The driver 202 is a drive motor or cylinder.
[0039] The linkage slider 4 is connected to the corresponding driver 202 via the drive belt 5.
[0040] The casing 1 of the cigarette stacking machine is equipped with multiple sets of drive wheels 6, with two drive wheels 6 in each set, which are respectively set on the left and right sides of the casing 1 of the cigarette stacking machine. The position of each set of drive wheels 6 matches the corresponding cigarette holding device 2, and the drive belt 5 is nested in a ring on the drive wheels 6.
[0041] The two drive wheels 6 in the same group divide the drive belt 5 into a first belt body close to the cigarette stacking machine housing 1 and a second belt body away from the cigarette stacking machine housing 1. The two linkage sliders 4 corresponding to the same cigarette holding device 2 are fixedly connected to the first belt body and the second belt body respectively.
[0042] The cigarette conveying device is equipped with a transport platform 7, a transmission chain 8, a cigarette pusher 9, a cigarette receiving platform 10, and a lifting device 11. The transport platform 7 is a strip-shaped platform. The transport platform 7 is set up in conjunction with the cigarette pusher 17 and the wrapping machine 23 of the long cigarette inlet conveying line. The transmission chains 8 are symmetrically arranged on the cigarette conveying devices on both sides of the transport platform 7. Multiple cigarette pushers 9 are equidistantly arranged on the transmission chains 8. The cigarette receiving platform 10 is set on the transport platform 7. The position of the cigarette receiving platform 10 matches that of the cigarette holding device 2. The cigarette receiving platform 10 is set on the lifting device 11.
[0043] Smoke baffles 12 are installed on both sides of the transport platform 7.
[0044] There are two long cigarette inlet conveyor lines, which are set on both sides of the full-size cigarette inlet conveyor line.
[0045] The working principle of this utility model is as follows: Figure 1 and Figure 2 As shown, this solution utilizes multiple long cigarette pack conveyor lines and full-size cigarette pack conveyor lines to simultaneously transport cigarette boxes, effectively improving the efficiency of the packaging line.
[0046] The long cigarette feeding conveyor line feeds cigarettes via the first feeding belt 13, causing the cigarette boxes to pass sequentially through the first lifting feeding mechanism 14 and the second lifting feeding mechanism 15 until they reach the stacking device 16 for stacking. The stacking device 16 drops the stacked cigarette boxes onto the receiving structure, and the pushing device 17 pushes them into the transport platform 7 for further transport until they are finally wrapped and thermoplasticized by the wrapping machine 23 and the heat shrink oven 24.
[0047] Preferably, the first lifting and lowering smoke inlet mechanism 14 and the second lifting and lowering smoke inlet mechanism 15 have the same structure. The lifting and lowering smoke inlet mechanism uses a lifting motor or lifting cylinder to drive the conveyor belt of sponge cigarette pressing. The sponge cigarette pressing belt moves up and down controlled by the lifting device. When it is necessary to stop the forward movement of the cigarette box, the sponge cigarette pressing belt falls to press down the cigarette box, preventing it from moving. When it is necessary for the cigarette box to move forward, the sponge cigarette pressing belt rises. The sponge cigarette pressing belt is driven by a rotary motor, maintaining a relative speed with the cigarette box, making the overall cigarette pressing process more stable. Furthermore, to make this production line more suitable for transporting long cigarettes, the conveyor belts corresponding to the first lifting and lowering smoke inlet mechanism 14 and the second lifting and lowering smoke inlet mechanism 15 are set as a double-belt structure, utilizing the gap in the middle to install a counting device for counting, which can effectively utilize space and is suitable for packaging long cigarettes.
[0048] Furthermore, such as Figure 1 and Figure 2 As shown, the cigarette stacking device 16 has a conveying device on its cigarette receiving platform mechanism. After the stacked cigarette boxes pass through the conveying device, they are then pushed by the cigarette pushing device 17. Based on this, to further increase efficiency, such as... Figure 3As shown, the smoke pushing device 17 is directly installed at the bottom of the smoke stacking device 16, compared to... Figure 1 and Figure 2 The setting allows stacked cigarette boxes to be pushed into the corresponding conveyor line more quickly.
[0049] The full-size cigarette feeding conveyor uses a second cigarette feeding belt 18 for feeding, a visual recognition device 19 to identify and locate the cigarette boxes, and a lane-separating cigarette pushing device 20 to push the cigarette boxes into the correct feeding channel. An arranging belt 21 works in conjunction with the lane-separating cigarette pushing device 20, with each belt corresponding to a different feeding channel. A lifting baffle 22 controls whether the cigarette boxes enter or exit the arranging belt 21. Preferably, the second cigarette feeding belt 18 is equipped with a counting device.
[0050] Preferably, in this embodiment, the visual recognition device 19 is implemented using existing technology. The separate smoke pushing device 20 uses two oppositely arranged electric or pneumatic cylinders to push the cigarette boxes into different left and right smoke inlet channels for transport.
[0051] Furthermore, in this embodiment, two long-strip cigarette inlet conveyor lines correspond to one full-size cigarette inlet conveyor line as an example. The two long-strip cigarette inlet conveyor lines are arranged in a counter-pushing manner in conjunction with the full-size cigarette inlet conveyor line, which can effectively improve the transmission efficiency.
[0052] like Figure 4-7 As shown, this embodiment uses three sets of cigarette-supporting devices 2 as an example. The direct-draw cigarette stacking device receives cigarettes from the cooperating conveyor through the cigarette inlet 101. The cigarette boxes are confined into neat layers by the cooperation of the cigarette inlet 101 and the baffle 103. The baffle 103 also helps to limit the cigarette boxes, preventing them from being in the same position as the cigarette-supporting plate 201. The neatly arranged cigarette boxes are lifted by the cigarette-supporting plate 201. The cigarette-supporting device 2 opens the cigarette-supporting plate 201 sequentially from top to bottom, allowing the stacked cigarette boxes to gradually fall through the cigarette drop path until they land on the cigarette-receiving platform 10. The cigarette-receiving platform 10 moves up and down via a lifting device 11. In this embodiment, a servo lifting motor is used, but a cylinder can also be used. The cigarette stacking machine repeats the above steps to stack the cigarette boxes layer by layer, ultimately forming a standard rectangular cigarette box stack structure for the next packaging step. The lifting device 11 controls the horizontal height of the cigarette receiving platform 10 according to the number of stacked cigarette boxes. After all the cigarette boxes are stacked, the lifting device 11 controls the cigarette receiving platform 10 to reach the same horizontal plane as the transport platform 7. The transmission chain 8 drives the cigarette pusher 9 to move the stacked cigarette boxes on the transport platform 7 for subsequent packaging. The smoke baffle 12 is used to prevent the cigarette boxes from moving left and right during movement and causing the stacks to break apart.
[0053] Furthermore, to ensure stable operation of the cigarette holder 201, the fixing plate 203 is provided with one or more slide rails 204. Simultaneously, the linkage slider 4 for driving is also mounted on the slider slide rail 3. The linkage of multiple slide rails effectively improves the stability of the cigarette holder 201. A sliding groove 102 is also provided to facilitate the fixing of the cigarette holder 201 and the linkage slider 4. The driver 202 is a drive motor, which drives the drive belt 5 to control the linkage slider 4.
[0054] Furthermore, to simplify the mechanical structure, a single driver 202 is used to drive two linked sliders 4 in different directions simultaneously. A drive wheel 6 is provided, and the two drive wheels 6 cooperate with a drive belt 5. The two linked sliders 4 in the same group are respectively set on the first and second belt bodies of the drive belt 5. When the drive belt 5 rotates, the first and second belt bodies located at both ends of the drive wheel 6 will move in different directions, thereby driving the two linked sliders 4 to different positions, realizing the opening and closing function of the cigarette holder 201.
[0055] Preferably, the driver 202 can use a servo motor and a cylinder to drive the drive belt.
[0056] The embodiments of this utility model have been described in detail above, but the content described is only a preferred embodiment of this utility model and should not be considered as limiting the scope of implementation of this utility model. All equivalent changes and improvements made in accordance with the claims of this utility model should still fall within the patent coverage of this utility model.
Claims
1. A multi-inlet, full-specification cigarette stacking device, characterized in that: Includes one or more long-strip cigarette inlet conveyor lines, full-size cigarette inlet conveyor lines, wrapping machines, and heat shrink ovens. A first smoke inlet belt is provided on the long smoke inlet conveyor line. A first lifting smoke inlet mechanism and a second lifting smoke inlet mechanism are provided on the first smoke inlet belt. The first smoke inlet belt corresponding to the first lifting smoke inlet mechanism and the second lifting smoke inlet mechanism is a conveyor belt structure with two belt bodies. A counting device is provided in the gap between the two conveyor belt bodies. A smoke stacking device is provided at the smoke outlet of the first smoke inlet belt. A smoke pushing device is provided on the smoke receiving structure of the smoke stacking device. The full-size smoke inlet conveyor line is equipped with a second smoke inlet belt, which features a visual recognition device and a smoke-pushing device. A corresponding aligning belt is located at the smoke outlet of the second smoke inlet belt, with lifting smoke baffles at both ends. A direct-draw smoke stacking device is also located at the smoke outlet of the aligning belt. The direct-extraction stacking device includes a stacking machine and a smoke-supporting conveyor. The stacking machine is positioned above the smoke-supporting conveyor. The smoke-supporting conveyor is configured in conjunction with the smoke-pushing device and the wrapping machine of each long strip of tobacco inlet conveyor line. The wrapping machine is configured in conjunction with the heat shrink oven. The stacking machine has multiple smoke-supporting devices vertically arranged at equal intervals inside its casing. Each smoke-supporting device has two symmetrically opening and closing smoke-supporting plates, which are slidably connected to the device. The plates are also coordinated with the actuators on the device. The casing has a smoke inlet that is coordinated with the smoke-supporting device at the top and the smoke outlet of the conveyor belt. Baffles are located inside the casing on both sides of the smoke inlet.
2. The multi-inlet full-specification stacking cigarette device according to claim 1, characterized in that: The smoke-collecting device includes a fixed plate, a slide rail, a smoke-collecting plate, and a driver. There are two fixed plates symmetrically arranged on the left and right sides of the smoke stacking machine housing, with a gap between the two fixed plates. The gaps form a smoke-collecting passage. Each fixed plate is provided with one or more slide rails. The two smoke-collecting plates are respectively set on the slide rails of the corresponding fixed plates. When the two smoke-collecting plates are in the closed state, they block the gap between the two fixed plates. The smoke-collecting plates are configured in conjunction with the driver.
3. The multi-inlet full-specification stacking cigarette device according to claim 2, characterized in that: The casing of the cigarette stacking machine is provided with multiple sliding grooves. The number and position of the sliding grooves are matched with the cigarette support plates of each cigarette support device. The casing of the cigarette stacking machine near the sliding grooves is provided with slider tracks. Each slider track is provided with a linkage slider. The linkage slider is fixedly connected to the corresponding cigarette support plate and is connected to the corresponding driver.
4. A multi-inlet full-specification stacking cigarette device according to claim 3, characterized in that: The driver uses a drive motor or cylinder.
5. A multi-inlet full-specification stacking cigarette device according to claim 3, characterized in that: The linkage slider is connected to the corresponding driver via a drive belt.
6. A multi-inlet full-size stacking cigarette device according to claim 5, characterized in that: The cigarette stacking machine housing is equipped with multiple sets of drive wheels, with two drive wheels in each set, which are respectively located on the left and right sides of the cigarette stacking machine housing. The position of each set of drive wheels matches the corresponding cigarette holding device, and the drive belt is nested in a ring on the drive wheels.
7. A multi-inlet full-size stacking cigarette device according to claim 6, characterized in that: The two drive wheels in the same group divide the drive belt into a first belt body closer to the cigarette stacker housing and a second belt body farther away from the cigarette stacker housing. The two linkage sliders corresponding to the same cigarette holding device are fixedly connected to the first belt body and the second belt body respectively.
8. A multi-inlet full-size stacking cigarette device according to any one of claims 1-7, characterized in that: The cigarette conveying device is equipped with a transport platform, a drive chain, a cigarette pusher, a cigarette receiving platform, and a lifting device. The transport platform is a strip-shaped platform, which is set up in conjunction with the cigarette pusher and wrapping machine of the long cigarette inlet conveyor line. The cigarette conveying devices on both sides of the transport platform are symmetrically equipped with drive chains, and multiple cigarette pushers are equidistantly arranged on the drive chains. The cigarette receiving platform is set up on the transport platform, and the position of the cigarette receiving platform matches that of the cigarette conveying device. The cigarette receiving platform is set on the lifting device.
9. A multi-inlet full-specification stacking cigarette device according to claim 8, characterized in that: Smoke deflectors are installed on both sides of the transport platform.
10. A multi-inlet full-specification stacking cigarette device according to claim 1, characterized in that: There are two long cigarette inlet conveyor lines, which are set on both sides of the full-size cigarette inlet conveyor line.