A tobacco filler homogenizing and rod forming device for a tobacco filler loader
By designing a tobacco shred shaking and rod-forming device for the tobacco filler, the problems of uniformity and rod-forming quality during the tobacco shred filling process were solved, achieving uniform distribution and stable compaction of tobacco shreds, and improving the quality of cigarettes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHENGZHOU TOBACCO RES INST OF CNTC
- Filing Date
- 2024-05-31
- Publication Date
- 2026-04-17
AI Technical Summary
Existing tobacco fillers have difficulty ensuring the uniformity of tobacco shreds and the quality of the cigarette rolls during the filling process, resulting in unstable cigarette quality.
Design a tobacco filling device for shaking and forming tobacco into rods, including a shaking drive component and a rod forming action component. Through the cooperation of a tobacco guide groove, a fixed semi-circular groove, a movable semi-circular groove pusher plate and a tobacco pressing plate, the tobacco is evenly distributed and compacted into rods.
It improves the uniformity of tobacco distribution and the quality of tobacco sticks, ensuring the stability and quality of tobacco, and is suitable for the preparation of small batches of cigarettes in the laboratory.
Smart Images

Figure CN118285551B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to tobacco machinery, and more specifically, to a device for mixing and forming tobacco into rods in a tobacco filler. Background Technology
[0002] In the process of cigarette research and development, properties such as tobacco ratio, filling density, and filling uniformity all affect the quality of cigarettes.
[0003] In the laboratory stage, researchers need to produce a certain amount of experimental cigarettes by changing the composition ratio, filling amount, uniformity and other characteristics of tobacco products, and conduct relevant tests. Since the amount of tobacco required for this process is small and the types are many, it is difficult to produce sample cigarettes using the conventional production line mode. Therefore, it is necessary to change the cigarette preparation method.
[0004] The current method involves making tobacco into rods, compressing them, and then feeding them into empty tobacco pipes. This method of filling tobacco pipes with tobacco is used to make cigarettes.
[0005] Previous tobacco filling devices were mostly designed in a relatively crude way. They would put tobacco into a specific container and set a channel at the bottom. After the tobacco fell into the channel, it would be pushed out by the tobacco pushing mechanism, naturally forming a rod and entering the tobacco tube. This process could not determine the weight and uniformity of the filled tobacco and required high natural characteristics of the raw materials.
[0006] With the improvement of technical requirements, many automated devices have been developed, such as the automatic weighing and compaction mechanism for a tobacco filling machine (application number 202321318856.4) and the automatic filling equipment for multi-specification tobacco (application number 202410267298.6). These devices have high precision, especially with the addition of a weighing function to ensure the uniformity of the weight of tobacco filled in a single batch.
[0007] However, the processes of transferring, weighing, compacting, and filling tobacco shreds inside the equipment are constantly changing, making it difficult to control the uniformity of tobacco filling. The entire process of compacting tobacco shreds into sticks places high demands on the natural characteristics of the tobacco shreds and is highly random.
[0008] To obtain sample cigarettes with better uniformity and more stable compaction, the tobacco rod forming device needs to be improved to enhance its quality.
[0009] In order to solve the above problems, people have been seeking an ideal technological solution. Summary of the Invention
[0010] The purpose of this invention is to address the shortcomings of existing technologies by providing a tobacco mixing and forming device for a tobacco filler that produces more uniform tobacco distribution and superior quality tobacco rods.
[0011] To achieve the above objectives, the technical solution adopted by the present invention is: a tobacco filling device for shaking and forming tobacco into rods, comprising a base, a movable base plate, a shaking drive assembly, and a rod forming action assembly;
[0012] The movable base plate is mounted on the foundation base via a slide rail;
[0013] The shaking drive assembly is mounted on the base and is used to drive the movable base plate to perform periodic reciprocating linear motion along the slide rail.
[0014] The rod forming action assembly includes a tobacco shred guide groove, a fixed semi-circular arc groove, a movable semi-circular arc groove pusher plate, and a tobacco shred pressing plate. The fixed semi-circular arc groove is formed on the front bottom of the tobacco shred guide groove with the groove opening facing horizontally backward and the lower edge of the groove aligned with the bottom of the tobacco shred guide groove.
[0015] The movable semi-circular arc groove pusher plate slides in conjunction with the bottom of the tobacco shred guide groove. The front end of the movable semi-circular arc groove pusher plate is provided with a semi-circular arc groove structure that can form a circle with the fixed semi-circular arc groove. The top surface of the movable semi-circular arc groove pusher plate is a plane.
[0016] The tobacco pressing plate is a lifting and lowering plate that can move in the front and back direction. The bottom surface of the pressing plate is a plane, and the outer contour of the pressing plate matches the inner contour of the guide groove.
[0017] The pressure plate, the fixed semi-circular groove, the movable semi-circular groove pusher plate, and the bottom of the tobacco shred guide groove together form the space for compressing tobacco shreds into rods.
[0018] Based on the above, the guiding direction of the slide rail is the same as or perpendicular to the moving direction of the movable semi-circular arc groove push plate.
[0019] Based on the above, the shaking drive assembly includes a shaking motor, a drive disk, a rocker arm, and a connecting seat. The shaking motor is mounted on the base, the drive disk is mounted on the output shaft of the shaking motor, one end of the rocker arm is hinged to the eccentric part of the drive disk, and the other end of the rocker arm is hinged to the connecting seat. The connecting seat is fixed to the movable base plate. The shaking motor drives the movable base plate to perform periodic reciprocating linear motion along the slide rail through the drive disk, the rocker arm, and the connecting seat.
[0020] Based on the above, the other end of the shaking motor is equipped with a disc-type photoelectric switch cam that rotates coaxially with the output shaft, and a corresponding groove-shaped photoelectric switch trigger is provided on the base. The outer edge of the disc-type photoelectric switch cam is provided with a notch for triggering the photoelectric switch trigger.
[0021] Based on the above, the movable semi-circular arc groove pusher includes a first linear slide, a pusher plate, and a slider. The first linear slide is mounted on a movable base plate. The pusher plate is L-shaped and fixed to the moving end of the first linear slide. The front end of the pusher plate is connected to the slider. The slider slides in cooperation with the bottom of the tobacco guide groove. The width of the slider is the same as the width of the tobacco guide groove. The front end of the slider is provided with the semi-circular arc groove structure.
[0022] Based on the above, the tobacco guide channel includes a lower pressing plate, an upper pressing plate, a guide guard plate, and an upper enclosing plate. The lower pressing plate is a flat plate with notches on both horizontal sides. The upper pressing plate is a U-shaped plate arranged along the outer contour of the lower pressing plate and has matching notches. The guide guard plate is U-shaped and sandwiched between the upper and lower pressing plates. The guide guard plate has positioning protrusions for the notches. The inner side of the guide guard plate has a fixing semi-circular arc groove. The width of the guide guard plate is smaller than the width of the upper pressing plate so that a guide groove is formed at the junction of the upper pressing plate, the lower pressing plate, and the guide guard plate. The thickness of the guide groove is the same as the thickness of the slider. The upper enclosing plate is U-shaped and fixed to the upper end of the upper pressing plate. The inner boundary of the upper enclosing plate is aligned with the inner boundary of the upper pressing plate.
[0023] Based on the above, the tobacco pressing plate includes a second linear slide, a third linear slide, and a pressing plate. The second linear slide is vertically mounted on the movable base plate. The third linear slide is mounted on the moving end of the second linear slide and is horizontally positioned. The pressing plate is mounted on the moving end of the third linear slide. The moving direction of the third linear slide is the same as that of the first linear slide. The width of the pressing plate is consistent with the inner width of the upper pressing plate and the upper enclosing upright plate. The front end face of the pressing plate is a pushing vertical plane, and the bottom surface of the pressing plate is a plane.
[0024] Based on the above, a pushing mechanism is installed on the movable base plate. The pushing mechanism includes a linear motor assembly, a linear slider, and a push rod. The guide guard plate of the tobacco shred guide channel is provided with through holes on both sides, which are coaxial with the fixed semi-circular arc groove. The push rod is coaxial with the through holes.
[0025] Based on the above, a receiving interface is provided on one side of the guide enclosure corresponding to the perforated outlet, and the opening of the receiving interface is set in a pointed shape.
[0026] This invention has outstanding substantive features and significant progress compared to the prior art. Specifically, this invention has the following advantages:
[0027] The design incorporates a tobacco shred guide channel to receive a fixed quantity of tobacco shreds from upstream. A shaking drive component evenly shakes the entire movable base plate, gently agitating the received tobacco shreds to ensure uniform distribution within the guide channel and prevent clumping. After dispersion, a tobacco pressing plate moves forward, pushing the dispersed tobacco shreds into the space formed between the movable semi-circular arc groove, the fixed semi-circular arc groove, and the base plate of the tobacco shred guide channel. The pressing plate then moves upward a certain distance, covering the space containing the tobacco shreds before moving downward, confining the tobacco shreds within the space where they are compressed into rods. Finally, the interactive semi-circular arc groove pusher moves forward, working in conjunction with the fixed semi-circular arc groove pusher to press the tobacco shreds into rod shapes.
[0028] The rod-shaped tobacco shreds designed in this way have a higher uniformity of tobacco shred distribution, a more balanced and stable quality distribution, and higher quality, which is conducive to the correct judgment of tobacco shreds in subsequent testing work. Attached Figure Description
[0029] Figure 1 This is one of the overall structural schematic diagrams of the tobacco-shaking and rod-forming device in the tobacco filling device of the present invention.
[0030] Figure 2 This is a top view of the overall structure of the tobacco-shaking and rod-forming device in the tobacco filling device of the present invention.
[0031] Figure 3 This is the second schematic diagram of the overall structure of the tobacco-shaking and rod-forming device in the tobacco filling device of the present invention.
[0032] Figure 4 This is a schematic diagram of the structure of the shaking drive component in this invention.
[0033] Figure 5 This is a schematic diagram of the tobacco shred guide groove in this invention.
[0034] Figure 6 This is a schematic diagram of the structure of the movable semi-circular groove pusher plate in this invention.
[0035] Figure 7 This is a schematic diagram of the structure of the tobacco pressing plate in this invention.
[0036] Figure 8 This is a schematic diagram of the rod-forming process in this invention.
[0037] In the diagram: 1. Base; 2. Movable base plate; 3. Shaking drive assembly; 4. Rod forming assembly; 5. Pushing mechanism; 11. Slide rail; 31. Shaking motor; 32. Drive disc; 33. Rocker arm; 34. Connecting seat; 35. Disc-type photoelectric switch cam; 36. Photoelectric switch trigger; 41. Tobacco guide channel; 42. Fixed semi-circular arc channel; 43. Movable semi-circular arc channel push plate; 44. Tobacco pressing plate; 51. Linear motor assembly Components; 52. Linear slider; 53. Push rod; 411. Lower pressure plate; 412. Upper pressure plate; 413. Guide guard plate; 414. Upper enclosure plate; 415. Notch; 416. Positioning protrusion; 417. Guide groove; 418. Through hole; 419. Receiver; 431. First linear slide; 432. Push plate; 433. Slider; 441. Second linear slide; 442. Third linear slide; 443. Pressure plate. Detailed Implementation
[0038] The technical solution of the present invention will be further described in detail below through specific embodiments.
[0039] like Figures 1-8 As shown, a tobacco filling device for shaking and forming tobacco into rods includes a base base 1, a movable base plate 2, a shaking drive assembly 3, and a rod forming action assembly 4.
[0040] The movable base plate 2 is mounted on the base 1 via a slide rail 11. The shaking drive assembly 3 is mounted on the base 1 and is used to drive the movable base plate 2 to perform a periodic reciprocating linear motion along the slide rail 11 to realize the shaking action.
[0041] Specifically, in this embodiment, as Figure 4 As shown, the shaking drive assembly 3 includes a shaking motor 31, a drive disk 32, a rocker arm 33, and a connecting seat 34. The shaking motor 31 is mounted on the base 1, the drive disk 32 is mounted on the output shaft of the shaking motor 31, one end of the rocker arm 33 is hinged to the eccentric part of the drive disk 32, and the other end of the rocker arm 33 is hinged to the connecting seat 34. The connecting seat 34 is fixed to the movable base plate 2. The shaking motor 31 drives the movable base plate 2 to perform periodic reciprocating linear motion along the slide rail 11 through the drive disk 32, the rocker arm 33, and the connecting seat 34. The guiding direction of the slide rail 11 is the same as the moving direction of the movable semi-circular arc groove push plate 43.
[0042] In other embodiments, the guiding direction of the slide rail 11 is perpendicular to the moving direction of the movable semi-circular groove push plate 43.
[0043] The length of the reciprocating linear motion path can be designed according to the state of the tobacco. When the tobacco is short, the reciprocating path can be slightly shorter and the frequency increased. When the tobacco is long or wet, the stroke needs to be increased and the appropriate frequency controlled.
[0044] To make the shaking data controllable, the other end of the shaking motor 31 is equipped with a disc-type photoelectric switch cam 35 that rotates coaxially with the output shaft. A corresponding groove-shaped photoelectric switch trigger 36 is set on the base 1. The outer edge of the disc-type photoelectric switch cam 35 is provided with a notch for triggering the photoelectric switch trigger 36, which is used to count the number of rotations of the drive disk 32 and facilitate the recording of parameters.
[0045] like Figures 1-3 As shown, the forming assembly 4 includes a tobacco shred guide groove 41, a fixed semi-circular arc groove 42, a movable semi-circular arc groove pusher plate 43, and a tobacco shred pressing plate 44. The fixed semi-circular arc groove 42 is formed on the front bottom of the tobacco shred guide groove 41 with the groove opening facing horizontally backward and the lower edge of the groove aligned with the bottom of the tobacco shred guide groove 41.
[0046] Specifically, in this embodiment, such as Figure 5 As shown, the tobacco guide channel 41 includes a lower pressing plate 411, an upper pressing plate 412, a guide guard plate 413, and an upper enclosing plate 414. The lower pressing plate 411 is a flat plate with notches 415 on both horizontal sides. The upper pressing plate 412 is a U-shaped plate arranged along the outer contour of the lower pressing plate and has matching notches. The guide guard plate 413 is generally U-shaped and is sandwiched between the upper pressing plate 411 and the lower pressing plate 412. The guide guard plate 413 has positioning protrusions 416 for the notches 415. The fixed semi-circular arc groove 42 is provided on the inner side of 413. The width of the guide guard plate 413 is smaller than the width of the upper pressure plate 412 so that a guide groove 417 is formed at the junction of the upper pressure plate 412, the lower pressure plate 411 and the guide guard plate 413. The thickness of the guide groove 417 is the same as the thickness of the slider 433 of the movable semi-circular arc groove push plate 43. The upper enclosure plate 414 is U-shaped and fixed to the upper end of the upper pressure plate 412. The inner boundary of the upper enclosure plate 414 is aligned with the inner boundary of the upper pressure plate 412.
[0047] The guide groove 417 formed by the lower pressure plate 411, the upper pressure plate 412 and the guide guard plate 413 can ensure the accuracy and stability of the slider 433 movement. This structural design allows the fixed semi-circular arc groove 42 to be processed based on the guide guard plate 413, which improves the convenience of processing. Then, by clamping multiple plates together, it can be assembled into a semi-circular arc groove with higher precision.
[0048] The movable semi-circular arc groove pusher plate 43 slides with the bottom of the tobacco shred guide groove 41. The front end of the movable semi-circular arc groove pusher plate 43 is provided with a semi-circular arc groove structure that can form a circle with the fixed semi-circular arc groove 42. The top surface of the movable semi-circular arc groove pusher plate 43 is a plane.
[0049] Specifically, in this embodiment, as follows: Figure 6 As shown, the movable semi-circular arc groove push plate 43 includes a first linear slide 431, a push plate 432, and a slider 433. The first linear slide 431 is mounted on the movable base plate 2. The push plate 432 is L-shaped and fixed to the moving end of the first linear slide 431. The front end of the push plate 432 is connected to the slider 433. The slider 433 slides in cooperation with the bottom of the tobacco guide groove 41. The width of the slider 433 is the same as the width of the tobacco guide groove 41. The semi-circular arc groove structure is provided at the front end of the slider 433.
[0050] The semi-circular groove structure is based on the slider 433 for machining. The advantage of independent machining is that it has higher precision. Then, it cooperates with the push plate 432 and the first linear slide 431, as well as the fixed semi-circular groove 42, to form a cylindrical space with higher precision.
[0051] like Figure 7 As shown, the tobacco pressing plate 44 is a pressing plate that can be raised and lowered and can move in the front and back direction. The bottom surface of the pressing plate is a plane, and the outer contour of the pressing plate matches the inner contour of the guide groove.
[0052] Specifically, the tobacco pressing plate 44 includes a second linear slide 441, a third linear slide 442, and a pressing plate 443. The second linear slide 441 is vertically mounted on the movable base plate 2. The third linear slide 442 is mounted on the moving end of the second linear slide 441 and is set horizontally. The pressing plate 443 is mounted on the moving end of the third linear slide 442. The moving direction of the third linear slide 441 is the same as the moving direction of the first linear slide 431. The width of the pressing plate 443 is consistent with the inner width of the upper pressing plate 412 and the upper enclosing upright plate 414. The front end face of the pressing plate 443 is a pushing vertical plane, and the bottom surface of the pressing plate is a plane.
[0053] The pressure plate 443, the fixed semi-circular groove 42, the movable semi-circular groove push plate 43, and the bottom of the tobacco shred guide groove 41 together form the space for compressing tobacco shreds into rods.
[0054] To ensure the stability of the feeding mechanism, a feeding mechanism 5 is installed on the movable base plate 2. The feeding mechanism 5 includes a linear motor assembly 51, a linear slider 52, and a push rod 53. The guide guard plate 413 of the tobacco guide channel 41 has through holes 418 on both sides that are coaxial with the fixed semi-circular arc groove 42. The push rod 53 is coaxial with the through holes 418. A receiving interface 419 is provided on one side of the guide guard plate 413 corresponding to the outlet of the through hole. The opening of the receiving interface 419 is set into a pointed shape.
[0055] Work process description:
[0056] The upstream of the tobacco shred shaking and rod forming device is the feeding unit. After the feeding unit collects the tobacco shreds of a set weight, it transfers them into the tobacco shred guide trough 41.
[0057] In the initial state, a certain gap is left between the movable semi-circular arc groove pusher plate 43 and the fixed semi-circular arc groove 42, the lower end face of the pressure plate 443 is aligned with the upper end face of the slider 433, and the fed tobacco falls into the space left between the movable semi-circular arc groove pusher plate 43 and the fixed semi-circular arc groove 42.
[0058] First, start the shaking motor 31 to shake the entire movable base plate 2 evenly, so that the tobacco in the tobacco guide channel 41 shakes evenly, loosens some temporarily piled tobacco, and stops the shaking once the tobacco is evenly distributed in the entire tobacco guide channel 41.
[0059] Then, the tobacco pressing plate 44 is raised to a certain height and moved forward so that it covers the space between the movable semi-circular groove pusher plate 43 and the fixed semi-circular groove 42. Then, the pressing plate 443 is lowered to the point of contacting the upper surface of the slider 433, pressing the fluffy tobacco firmly into the enclosed space. Figure 8 As shown.
[0060] Then, the movable semi-circular groove pusher plate 43 is moved forward until it forms a circle with the fixed semi-circular groove 42, which can then compress the fluffy tobacco into a rod.
[0061] Finally, the feeding mechanism 5 is activated, and the tobacco shreds in rods are pushed out through the push rod 53. The empty tobacco tube downstream is then fitted onto the receiving interface 419 to wait for the tobacco shreds to be filled, thus completing the filling of the empty tobacco tube.
[0062] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them; although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications can still be made to the specific implementation of the present invention or equivalent substitutions can be made to some technical features without departing from the spirit of the technical solutions of the present invention, and all such modifications and substitutions should be covered within the scope of the technical solutions claimed in the present invention.
Claims
1. A tobacco filler shaker-to-bonder device, characterized by: Includes a base, movable base plate, shaking drive assembly, and rod forming action assembly; The movable base plate is mounted on the foundation base via a slide rail; The shaking drive assembly is mounted on the base and is used to drive the movable base plate to perform periodic reciprocating linear motion along the slide rail; The rod forming action assembly includes a tobacco shred guide groove, a fixed semi-circular arc groove, a movable semi-circular arc groove pusher plate, and a tobacco shred pressing plate. The fixed semi-circular arc groove is formed on the front bottom of the tobacco shred guide groove with the groove opening facing horizontally backward and the lower edge of the groove aligned with the bottom of the tobacco shred guide groove. The movable semi-circular arc groove pusher plate slides in conjunction with the bottom of the tobacco shred guide groove. The front end of the movable semi-circular arc groove pusher plate is provided with a semi-circular arc groove structure that can form a circle with the fixed semi-circular arc groove. The top surface of the movable semi-circular arc groove pusher plate is a plane. The tobacco pressing plate is a lifting and lowering plate that can move in the front and back direction. The bottom surface of the pressing plate is a plane, and the outer contour of the pressing plate matches the inner contour of the guide groove. The pressure plate, the fixed semi-circular groove, the movable semi-circular groove pusher plate, and the bottom of the tobacco shred guide groove together form the space for compressing the tobacco shreds into rods.
2. A filler tobacco shake down and rodding device according to claim 1 characterised in that: The guiding direction of the slide rail is the same as or perpendicular to the moving direction of the movable semi-circular arc groove push plate.
3. A filler tobacco shake down rod device according to claim 1 or 2, characterised in that: The shaking drive assembly includes a shaking motor, a drive disk, a rocker arm, and a connecting seat. The shaking motor is mounted on the base, the drive disk is mounted on the output shaft of the shaking motor, one end of the rocker arm is hinged to the eccentric part of the drive disk, and the other end of the rocker arm is hinged to the connecting seat. The connecting seat is fixed to the movable base plate. The shaking motor drives the movable base plate to perform periodic reciprocating linear motion along the slide rail through the drive disk, rocker arm, and connecting seat.
4. A tobacco filler shaker-in-rodder device according to claim 3, characterised in that: The other end of the shaking motor is equipped with a disc-shaped photoelectric switch cam that rotates coaxially with the output shaft. A corresponding groove-shaped photoelectric switch trigger is provided on the base. The outer edge of the disc-shaped photoelectric switch cam is provided with a notch for triggering the photoelectric switch trigger.
5. A tobacco filler shaker-in-rodder device according to claim 1 or 2 or 4, characterised in that: The movable semi-circular arc groove pusher includes a first linear slide, a pusher plate, and a slider. The first linear slide is mounted on a movable base plate. The pusher plate is L-shaped and fixed to the moving end of the first linear slide. The front end of the pusher plate is connected to the slider. The slider slides in cooperation with the bottom of the tobacco guide groove. The width of the slider is the same as the width of the tobacco guide groove. The front end of the slider is provided with the semi-circular arc groove structure.
6. A tobacco filler shaker-in-rodder device according to claim 5, characterised in that: The tobacco shred guide channel includes a lower pressing plate, an upper pressing plate, a guide guard plate, and an upper enclosing plate. The lower pressing plate is a flat plate with notches on both horizontal sides. The upper pressing plate is a U-shaped plate along the outer contour of the lower pressing plate and has matching notches. The guide guard plate is U-shaped and sandwiched between the upper and lower pressing plates. The guide guard plate has positioning protrusions for the notches. The inner side of the guide guard plate has a fixing semi-circular arc groove. The width of the guide guard plate is smaller than the width of the upper pressing plate so that a guide groove is formed at the junction of the upper pressing plate, the lower pressing plate, and the guide guard plate. The thickness of the guide groove is the same as the thickness of the slider. The upper enclosing plate is U-shaped and fixed to the upper end of the upper pressing plate. The inner boundary of the upper enclosing plate is aligned with the inner boundary of the upper pressing plate.
7. The tobacco-shaking and rod-forming device for a tobacco filler according to claim 6, characterized in that: The tobacco pressing plate includes a second linear slide, a third linear slide, and a pressing plate. The second linear slide is vertically mounted on the movable base plate. The third linear slide is mounted on the moving end of the second linear slide and is horizontally positioned. The pressing plate is mounted on the moving end of the third linear slide. The moving direction of the third linear slide is the same as that of the first linear slide. The width of the pressing plate is consistent with the inner width of the upper pressing plate and the upper enclosing upright plate. The front end face of the pressing plate is a pushing vertical plane, and the bottom surface of the pressing plate is a plane.
8. The tobacco-shaking and rod-forming device for a tobacco filler according to claim 7, characterized in that: A feeding mechanism is installed on the movable base plate. The feeding mechanism includes a linear motor assembly, a linear slider, and a push rod. The guide guard plate of the tobacco shred guide channel is provided with through holes on both sides, which are coaxial with the fixed semi-circular arc groove. The push rod is coaxial with the through holes.
9. The tobacco-shaking and rod-forming device for a tobacco filler according to claim 8, characterized in that: A receiving interface is provided on one side of the guide enclosure corresponding to the perforated outlet, and the opening of the receiving interface is set in a pointed shape.
Citation Information
Patent Citations
Multi-specification tobacco shred automatic filling equipment
CN117958483A
Household hand-operated cigarette making device
CN219500411U
Automatic weighing and compacting mechanism of tobacco shred filling machine
CN219845015U