A manual cigarette making device
Through the linkage structure of the spindle and transmission, the problem of high accuracy requirements and easy damage in existing manual cigarette making equipment is solved, and the high precision and long life of the equipment are achieved, reducing costs.
Patent Information
- Application Number
- CN202110111347.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-01-27
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2041-01-27
AI Technical Summary
In the existing manual cigarette making equipment, the clutch device has high accuracy requirements, which is easy to damage and difficult to maintain, resulting in a tight pressing material and high cost.
The linkage structure of the spindle and the transmission is adopted. Through the cooperation of the first and second transmissions, clutch devices are avoided, ensuring that the spindle and the central shaft of the discharge pipe are on the same level, improving the precision of the equipment, and ensuring the consistency of the stroke of the pressing member.
No clutch device is required, which reduces manufacturing and maintenance costs, improves the service life of the equipment and the tightness of the pressing material, and ensures the stability of the pressing member and the long-term reliability of the equipment.
Smart Images

Figure CN115245206B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of cigarette manufacturing, and particularly to a manual cigarette making device. Background Art
[0002] Cigarettes are a type of tobacco product. The manufacturing method is to dry and cut the tobacco into filaments, and then roll it into a cylindrical strip with a length of about 100 mm and a diameter of 8 mm using paper. When smoking, one end is lit, and the smoke is inhaled from the other end. Making cigarettes requires machines. First, the mature tobacco leaves are steamed at high temperature; then the tobacco leaves are put into the machine for sorting to remove impurities and cutting. The large tobacco leaves gradually become small pieces of compressed tobacco leaves, and then cut into tobacco shreds. Finally, they enter the packaging process. The filter tips and tobacco shreds are packaged and cut into segments, and the finished cigarettes are ready. Finally, they are packaged into cigarette boxes.
[0003] The existing manual cigarette making devices use a single clutch method for movement. The accuracy requirements for the clutch are high. The existence of the clutch makes the central axes of the rotating main shaft and the discharge pipe at different heights. As long as there is a slight inaccuracy in the clutch, the front end pressing position will be insufficient, resulting in insufficiently tight pressing. Moreover, the manufacturing cost of this clutch is high, and it is prone to damage during repeated use and difficult to repair. To solve this problem, a manual cigarette making device is needed. Summary of the Invention
[0004] The present invention aims at the disadvantages in the prior art and provides a manual cigarette making device.
[0005] To solve the above technical problems, the present invention is solved by the following technical solutions:
[0006] A manual cigarette making device, comprising
[0007] A main frame body, on the upper surface of which there is an opening;
[0008] A pressing chamber, located within the main frame body and communicating with the opening, for storing the tobacco shreds to be pressed;
[0009] A pressing member, arranged such that it can reciprocate longitudinally in the pressing chamber, and its front end cooperates with the side wall of the pressing chamber to press the tobacco shreds in the pressing chamber tightly;
[0010] A discharge pipe, at least partially arranged within the pressing chamber, capable of being horizontally pushed out and retracted within the main frame body for pushing out the formed tobacco shreds, and the discharge pipe is connected with
[0011] A driving swing arm for driving the discharge pipe to move horizontally;
[0012] A main shaft, rotatably arranged, and the main shaft is provided with
[0013] The first transmission member, one end of the first transmission member rotates coaxially with the main shaft, and the rotation direction is the same as that of the main shaft. A first convex block is provided on the side surface of the first transmission member at the far end from the main shaft, and the pressure member is in transmission connection with the first convex block;
[0014] The device further includes a second transmission member, which is in transmission connection with the main shaft, and its rotation plane is perpendicular to the rotation plane of the main shaft. A second convex block is provided on the bottom surface of the second transmission member, and the second convex block can cooperate with the driving swing arm and push it to move;
[0015] When the main shaft rotates, there is a first trajectory in which the first convex block is linked with the pressure member and a second trajectory in which the second convex block is in contact connection with the driving surface of the driving swing arm. The first trajectory and the second trajectory are connected through a transition position. When the main shaft is in the first trajectory, the second convex block is separated from the driving swing arm. When the main shaft is in the second trajectory, the first convex block is separated from the pressure member.
[0016] Preferably, a protruding driving block is provided on the driving swing arm, the driving surface is arranged on the driving block, and a retracting surface adjacent to the driving surface is further provided on the driving block. The retracting surface is recessed inward to form a space for the second convex block to pass through in reverse. A corner is provided between the retracting surface and the driving surface. When the main shaft rotates to the end of the second trajectory, the second convex block is stuck at the corner position. The corner position can make the second convex block stuck without external force applied, so that it can pause when the discharge pipe extends. The main shaft continues to rotate to drive the second convex block to rotate to a position opposite to the retracting surface. Under the action of external force, the driving swing arm rotates in one direction, so that the second transmission member is reset, and at the same time the main shaft is also reset, and the pressure member connected to the main shaft is also reset. Thus, the second convex block is pushed back by the driving block or the second convex block slides back along the retracting surface. During the retracting process, the second convex block may or may not be in contact with the driving block.
[0017] Preferably, the height of the lower surface of the driving swing arm from the lower surface of the main frame body is not less than the height of the upper surface of the convex block from the lower surface of the main frame body; the height of the lower surface of the driving block from the lower surface of the main frame body is greater than the height of the upper surface of the convex block from the lower surface of the main frame body. When the main shaft rotates to the transition position, the second convex block just contacts the driving surface.
[0018] Preferably, the second transmission member rotates around a driven shaft, and the driven shaft is in transmission connection with the main shaft through bevel gears. The rotation direction of the main shaft on the vertical plane can be changed to form a rotation on the horizontal plane by the cooperation of two bevel gears.
[0019] Preferably, the driving swing arm includes a first fixed end and a first movable end that swings around the first fixed end as the central axis. The first movable end is connected with a sliding swing arm. A track is correspondingly arranged on the main frame body. One end of the sliding swing arm is rotatably connected with the first movable end, and the other end of the swing arm is arranged on the track and is rotatably connected with the discharge pipe.
[0020] Preferably, a first torsion spring for rotating the driving swing arm is arranged on the driving swing arm, and the first torsion spring is clamped on the first fixed end.
[0021] Preferably, it further includes a handle. The handle is fixed at one end of the main shaft and is perpendicular to the main shaft. When the main shaft is located at the transition position, the included angle between the end of the handle connected to the main shaft and the horizontal plane is α.
[0022] Preferably, the pressure member is connected with the main shaft through a transmission plate. A clamping groove is arranged on the transmission plate. The clamping groove is provided with an opening for the first convex block to enter and exit, and the opening direction is upward. When the main shaft rotates to the transition position, the first convex block just engages with the clamping groove.
[0023] Preferably, the transmission plate and the main shaft are connected through a connecting rod. The transmission plate is pin-connected with the pressure member. A second torsion spring is arranged between the connecting rod and the transmission plate. When the swing arm rotates and the first convex block has not returned to the clamping groove, the second torsion spring can press the connecting rod so that the connecting rod will not be driven by the main shaft to rotate, and the pressure member is kept at the front end position. Only after the first convex block engages with the clamping groove, it will drive the connecting rod to rotate and then drive the pressure member to retract.
[0024] Preferably, sleeve joints are respectively arranged at both ends of the connecting rod. The sleeve joints at both ends are respectively rotatably connected with the transmission plate and the main shaft, and the axial center distance between the sleeve joints at both ends is equal to the distance between the first convex block and the main shaft.
[0025] The transmission plate can rotate relative to the main shaft and the pressure member, so that the pressure member can maintain a reciprocating motion in the same direction within the main frame body, realizing the conversion of the rotational motion of the main shaft into a linear motion of the pressure member in the horizontal direction within the main frame body.
[0026] Preferably, the central axis of the main shaft and the central axis of the discharge pipe are located on the same horizontal plane. It can improve the precision of the machine, and still ensure that the cut tobacco can be compacted in the pressure cavity during long-term use.
[0027] Preferably, a stop block for restricting the return stroke of the driving swing arm is arranged on the main frame body. The stop block is fixed on the main frame body and is used to block the movement of the driving swing arm when it rebounds, avoiding excessive rebound and disengaging from the track or causing harm to the user.
[0028] Due to the adoption of the above technical solutions, the present invention has remarkable technical effects: there is no need to set a clutch device, avoiding the manufacturing and maintenance costs increased by the clutch device;
[0029] Through the structural design, the overall precision of the equipment is improved. Since the connection structure is fixed, the insufficient rotation angle of the main shaft will not affect the insufficient pressing of the tobacco shreds during cigarette making, ensuring the consistency of the stroke of the pressing member and guaranteeing the equipment has an extremely long service life;
[0030] It is convenient to use. When forming, the position of the handle is fixed and will not affect the states of the discharge pipe and the pressing member, and the discharge pipe will not retract due to the swing of the handle. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 is a schematic structural diagram of the present invention.
[0032] Figure 2 is a schematic diagram of the internal structure of the front side of the present invention.
[0033] Figure 3 is a schematic diagram of the internal structure of the front side of the present invention.
[0034] Figure 4 is a schematic diagram of the internal structure of the back side of the present invention.
[0035] Figure 5 is a schematic diagram of the connection structure of the driving swing arm, the sliding swing arm and the track of the present invention.
[0036] Figure 6 is a schematic diagram of the connection structure of the pressing member and the transmission plate of the present invention.
[0037] Figure 7 is a schematic diagram of the structure of the driving block of the present invention.
[0038] Figure 8 is a schematic diagram of the connection structure between the main shaft and the driven shaft of the present invention.
[0039] Figure 9 is a schematic diagram of the internal structure of the back side of the present invention.
[0040] Figure 10 is a schematic diagram of the internal structure of the back side of the present invention.
[0041] Figure 11 is a schematic diagram of the internal structure of the back side of the present invention.
[0042] Figure 12 is a schematic diagram of the internal structure of the back side of the present invention.
[0043] The names of the parts referred to by each numerical label in the above drawings are as follows: Among them, 1 - main frame body, 11 - opening, 12 - material pressing chamber, 13 - track, 14 - stop block, 2 - material pressing member, 21 - transmission plate, 211 - card slot, 3 - discharge pipe, 4 - driving swing arm, 41 - driving block, 411 - driving surface, 412 - retracting surface, 42 - first fixed end, 43 - first movable end, 44 - sliding swing arm, 45 - first torsion spring, 5 - main shaft, 6 - first transmission member, 61 - first convex block, 62 - connecting rod, 7 - second transmission member, 71 - second convex block, 72 - driven shaft, 73 - helical gear, 8 - handle. Detailed implementation mode
[0044] The present invention will be further described in detail below with reference to the drawings and embodiments.
[0045] Embodiment 1
[0046] A manual cigarette making device, as Figures 1 - 8 shown, includes
[0047] A main frame body 1, on the upper surface of the main frame body 1 there is an opening 11; a material pressing chamber 12, located inside the main frame body 1, communicating with the opening 11, for storing tobacco to be pressed; a material pressing member 2, arranged such that the material pressing member 2 can reciprocate longitudinally in the material pressing chamber 12, and its front end cooperates with the side wall of the material pressing chamber 12 for pressing the tobacco in the material pressing chamber 12; a discharge pipe 3, at least partially arranged inside the material pressing chamber 12, capable of being pushed out and retracted horizontally inside the main frame body 1, for pushing out the formed tobacco, and the discharge pipe 3 is connected with
[0048] A driving swing arm 4, connected to the discharge pipe 3, for driving the discharge pipe 3 to move horizontally;
[0049] A main shaft 5, rotatably arranged, and the main shaft 5 is provided with
[0050] A first transmission member 6, one end of the first transmission member 6 rotates coaxially with the main shaft 5, and the rotation direction is the same as that of the main shaft 5. On the side surface of the first transmission member 6 at the distal end away from the main shaft 5, there is a first convex block 61, and the material pressing member 2 is in transmission connection with the first convex block 61; the first transmission member 6 can be a swing arm, a transmission bar, an eccentric wheel, etc., as long as it satisfies that the first convex block 61 can rotate with the main shaft 5;
[0051] The device further includes a second transmission member 7, which is in transmission connection with the main shaft 5, and its rotation surface is perpendicular to the rotation surface of the main shaft 5. A second convex block 71 is provided on the bottom surface of the second transmission member 7, and the second convex block 71 can cooperate with the driving swing arm 4 and push it to move; the second transmission member 7 can be a swing arm, a transmission bar, an eccentric wheel, etc., as long as it satisfies that the second convex block 71 rotates around the driven shaft 72 under the drive of the main shaft 5. Figure 4 In Figure 4 , the second transmission member 7 is a sector-shaped rotating disk;
[0052] When the main shaft 5 rotates, it has a first trajectory in which the first convex block 61 is linked with the pressing member 2 and a second trajectory in which the second convex block 71 is in contact connection with the driving surface 411 of the driving swing arm 4. The first trajectory and the second trajectory are connected through a transition position. When the main shaft 5 is in the first trajectory, the second convex block 71 is separated from the driving swing arm 4. When the main shaft 5 is in the second trajectory, the first convex block 61 is separated from the pressing member 2.
[0053] The driving swing arm 4 is provided with a protruding driving block 41, the driving surface 411 is arranged on the driving block 41, and the driving block 41 is further provided with a retreat surface 412 adjacent to the driving surface 411. The retreat surface 412 is recessed inward to provide a space for the second convex block 71 to reverse and pass through. There is a corner between the retreat surface 412 and the driving surface 411. When the main shaft 5 rotates to the end of the second trajectory, the second convex block 71 is stuck at the corner position. The driving block 41 can be integrated with the driving swing arm 4 or can be arranged on the upper surface of the driving swing arm 4 through a fixed shaft.
[0054] The height of the lower surface of the driving swing arm 4 from the lower surface of the main frame 1 is not less than the height of the upper surface of the convex block from the lower surface of the main frame 1; the height of the lower surface of the driving block 41 from the lower surface of the main frame 1 is greater than the height of the upper surface of the convex block from the lower surface of the main frame 1. When the main shaft 5 rotates to the transition position, the second convex block 71 just contacts the driving surface 411.
[0055] The second transmission member 7 rotates around the driven shaft 72, and the driven shaft 72 is in transmission connection with the main shaft 5 through a helical gear 73. The helical gear 73 can be a single-threaded helical gear or a herringbone gear. The combination of two helical teeth eliminates the axial force; when operating the main shaft 5 to rotate, through the cooperation between the helical gears 73, the transmission direction is changed, and the driven shaft 72 also rotates in the horizontal direction.
[0056] The driving swing arm 4 includes a first fixed end 42 and a first movable end 43 that swings around the first fixed end 42 as the central axis. A sliding swing arm 44 is connected to the first movable end 43. A track 13 is correspondingly arranged on the main frame body 1. One end of the sliding swing arm 44 is rotatably connected to the first movable end 43, and the other end of the swing arm is arranged on the track 13 and is rotatably connected to the discharge pipe 3.
[0057] A first torsion spring 45 for rotating the driving swing arm 4 is arranged on the driving swing arm 4, and the first torsion spring 45 is clamped on the first fixed end 42. During the rotation of the main shaft 5, the first torsion spring 45 stores energy. When the second convex block 71 is located on the retraction surface 412, the second convex block does not apply an external force to the driving member, and the first torsion spring 45 releases the stored elastic potential energy, thereby driving the swing arm 4 to perform a rebound reverse rotation, and the discharge pipe 3 also retracts with the flipping of the driving swing arm 4.
[0058] It further includes a handle 8. The handle 8 is fixed to one end of the main shaft 5 and is perpendicular to the main shaft 5. When the main shaft 5 is in the transition position, the included angle between the end of the handle 8 connected to the main shaft 5 and the horizontal plane is α. α can be 90°. The purpose is to set a turning point. Before the main shaft 5 rotates until the second convex block 71 touches the driving member, the main shaft 5 is on the first trajectory. The main shaft 5 drives the first transmission member 6 that cooperates with the pressing member 2 to rotate, and the pressing member 2 performs the action of pressing the cut tobacco. Before the main shaft 5 rotates to α, the main shaft 5 moves on the second trajectory. The main shaft 5 pushes the driving swing arm 4 to move through the second transmission member 7, thereby driving the discharge pipe 3 to push out. When the main shaft 5 rotates to α, the handle 8, the main shaft 5, the driving swing arm 4, and the discharge pipe 3 are all locked due to the locking between the second convex block 71 and the driving block 41, which is convenient for the operator to perform subsequent operations on the cut tobacco pushed out and formed. Under the action of an external force, the main shaft 5 continues to move. Under the action of the first torsion spring 45, the driving swing arm 4 rotates reversely to the starting position, and the discharge pipe 3 also retracts accordingly. At this time, the handle 8 can be operated to rotate the main shaft 5 to the starting position.
[0059] It can also be other angles. The pressing member 2 is connected to the main shaft 5 through a transmission plate 21. A card slot 211 is arranged on the transmission plate 21. The card slot 211 is provided with an opening for the first convex block 61 to enter and exit. The opening direction is upward and is in a C shape. When the main shaft 5 rotates to the transition position, the first convex block 61 just engages with the card slot 211. The width of the transmission plate 21 can be greater than the front end face of the pressing member 2, so that the pressure of the pressing member 2 on the cut tobacco in the pressing chamber 12 is more uniform during processing, and the force on the pressing member 2 is also more balanced, and there will be no distortion causing uneven local pressing.
[0060] The drive plate is connected to the main shaft by a connecting rod 62. The drive plate is pin-connected to the pressure-feeding member. A second torsion spring is provided between the connecting rod 62 and the drive plate 21. The second torsion spring is not shown in the figure. The connection between the drive plate 21 and the main shaft 5 is a loose connection. Unless the first convex block 61 on the first transmission member 6 is separated from the drive plate 21, the rotation of the main shaft 5 cannot drive the drive plate 21 to move. The connecting rod 62 between the drive plate 21 and the main shaft 5 can be fixed to the main shaft 5, can be movably connected to the main shaft 5, or can be integrally formed with the main shaft 5. The connection on one side of the drive plate 21 is a rotatable connection.
[0061] Shaft sleeves are respectively provided at both ends of the connecting rod 62. The shaft sleeves at both ends are respectively rotatably connected to the drive plate and the main shaft. The axial distance between the shaft sleeves at both ends is equal to the distance between the first convex block 61 and the main shaft 5. The first convex block 61 can be provided on both sides of the main shaft 5 or above the drive plate 5.
[0062] A stop block 14 for restricting the return stroke of the driving swing arm 4 is provided on the main frame body 1.
[0063] During operation, the cut tobacco is put in from the opening 11 above the main frame body 1. As Figure 9 shown, the operating handle 8 drives the main shaft 5 to rotate counterclockwise from the initial position. The second transmission member 7 rotates clockwise on the horizontal plane. The main shaft 5 is on the first track. The first transmission member 6 provided on the main shaft 5 drives the drive plate 21 to move through engagement with the card slot 211. There is no transmission connection between the second transmission member 7 and the driving swing arm 4. By the way that both sides of the drive plate 21 are movably connected, the eccentric movement of the side of the drive plate 21 that cooperates with the first convex block 61 is converted into the horizontal movement of the connection end with the pressure-feeding member 2. The pressure-feeding member 2 extrudes toward the side of the discharge pipe 3, and the cut tobacco in the pressure-feeding chamber 12 is pressed into strips.
[0064] Continue to rotate the operating handle 8 counterclockwise. As Figure 10As shown, the main shaft 5 enters the second trajectory at the transition position. When the main shaft 5 is at the transition position, the first bump 61 on the first transmission member 6 on the main shaft 5 just engages with the card slot 211 of the transmission plate 21 and separates when in the second trajectory. The second bump 71 on the second transmission member 7 just contacts the driving surface 411 of the driving block 41 provided on the driving swing arm 4 until the main shaft 5 rotates to the second trajectory to push the driving block 41; when the main shaft 5 is at the second trajectory, the pressure feeding member 2 still stays at one end of the discharge pipe 3. The second bump 71 pushes the driving swing arm 4 to swing clockwise, converting the arc swing of the movable end of the driving swing arm 4 into a linear motion of the sliding swing arm 44 sliding on one end of the track 13, and this end is connected to the discharge pipe 3, thus driving the discharge pipe 3 to be pushed out. When it is pushed to the end, the second bump 71 is stuck at the corner of the driving member. At this time, the pushing position of the discharge pipe 3 is the largest and can stay. Continuing to apply a counterclockwise force to the handle 8, the second bump 71 enters the position relative to the return surface 412, as Figure 11 shown. At this time, under the action of the first torsion spring 45, the driving swing arm 4 rotates clockwise, thereby driving the discharge pipe 3 to retract through the sliding swing arm 44. The stop block 14 prevents the driving swing arm 4 from only retracting to the initial position. The outer circle of the discharge pipe 3 retracts into the main frame 1. At this time, the swing arm main shaft 5 is still at the end of the second trajectory.
[0065] When operating for reset, as Figure 12 shown, the handle 8 moves clockwise, driving the main shaft 5 to rotate clockwise. The main shaft 5 drives the driven shaft 72 to rotate clockwise, and the second transmission member 7 also rotates counterclockwise accordingly. The second bump 71 passes counterclockwise along the return surface 412. If the driving block 41 is fixed to the driving swing arm through a fixed shaft, a torsion spring can be set. Under the action of the torsion spring, the driving block 41 continues to rebound clockwise. When the main shaft 5 reversely enters the first trajectory, the first engagement is connected to the transmission member again, driving the transmission member to move back. The pressure feeding member 2 moves back with the transmission and completes the reset after reaching the initial position as Figure 4 shown.
[0066] In summary, the above are only the preferred embodiments of the present invention. All equivalent changes and modifications made according to the scope of the patent application of the present invention shall fall within the scope covered by the patent of the present invention.
Claims
1. A manual cigarette making device, characterized in that, including a main frame body, on the upper surface of which there is an opening; a material pressing chamber, located within the main frame body and communicating with the opening, for storing the tobacco to be pressed; a material pressing member, capable of reciprocating longitudinally in the material pressing chamber, the front end of which cooperates with the side wall of the material pressing chamber for pressing the tobacco in the material pressing chamber; a discharge pipe, at least partially arranged in the material pressing chamber, capable of being horizontally pushed out and retracted within the main frame body for pushing out the formed tobacco, and the discharge pipe is connected with a driving swing arm for driving the discharge pipe to move horizontally; a main shaft, rotatably arranged, and the main shaft is provided with a first transmission member, one end of which rotates coaxially with the main shaft, and the rotation direction is the same as that of the main shaft. A first convex block is arranged on the side surface of the first transmission member at the distal end away from the main shaft. The material pressing member is in transmission connection with the first convex block; The device further includes a second transmission member, which is in transmission connection with the main shaft, and the rotation plane of which is perpendicular to the rotation plane of the main shaft. A second convex block is arranged on the bottom surface of the second transmission member, and the second convex block cooperates with the driving swing arm and pushes the driving swing arm to move; When the main shaft rotates, there is a first trajectory in which the first convex block is linked with the material pressing member and a second trajectory in which the second convex block is in contact connection with the driving surface of the driving swing arm. The first trajectory and the second trajectory are connected through a transition position. When the main shaft is in the first trajectory, the second convex block is separated from the driving swing arm. When the main shaft is in the second trajectory, the first convex block is separated from the material pressing member; There is a protruding driving block on the driving swing arm, the driving surface is arranged on the driving block, and a retracting surface adjacent to the driving surface is also arranged on the driving block. The retracting surface is recessed inward, and there is a corner between the retracting surface and the driving surface. When the main shaft rotates to the end of the second trajectory, the second convex block is stuck at the corner position; When the main shaft rotates to the transition position, the second convex block just contacts the driving surface; It further includes a handle, which is fixed at one end of the main shaft and perpendicular to the main shaft. When the main shaft is in the transition position, the included angle between the end of the handle connected to the main shaft and the horizontal plane is α; The material pressing member is connected to the main shaft through a transmission plate. A card slot is arranged on the transmission plate, and the card slot is provided with an opening for the first convex block to enter and exit, and the opening direction is upward. When the main shaft rotates to the transition position, the first convex block just engages with the card slot; 2. The manual cigarette manufacturing device according to claim 1, characterized in that: The second transmission member rotates around a driven shaft, and the driven shaft is in transmission connection with the main shaft through a helical gear; 3. The manual cigarette manufacturing device according to claim 2, wherein: The driving swing arm includes a first fixed end and a first movable end that swings around the first fixed end as the central axis. The first movable end is connected with a sliding swing arm. A track is correspondingly arranged on the main frame body. One end of the sliding swing arm is rotatably connected with the first movable end, and the other end of the sliding swing arm is arranged on the track and is rotatably connected with the discharge pipe; 4. The manual cigarette manufacturing device according to claim 3, wherein: A first torsion spring for rotating the driving swing arm is arranged on the driving swing arm, and the first torsion spring is clamped on the first fixed end; 5. A manual cigarette manufacturing device according to claim 1, characterized in that: The drive plate is connected to the main shaft through a connecting rod. The drive plate is pin-connected to the pressure member, and a second torsion spring is provided between the connecting rod and the drive plate.
6. The manual cigarette manufacturing device according to claim 5, wherein: Sleeve joints are respectively arranged at both ends of the connecting rod. The sleeve joints at both ends are respectively rotatably connected to the drive plate and the main shaft, and the axial center distance between the sleeve joints at both ends is equal to the distance between the first convex block and the main shaft.
7. A manual cigarette making device according to claim 1, wherein: A stop block for restricting the return stroke of the driving swing arm is arranged on the main frame body.
8. A manual cigarette making device according to claim 1, characterized in that: The central axis of the main shaft and the central axis of the discharge pipe are located on the same horizontal plane.
Citation Information
Patent Citations
Cigarette maker
CN104738813A
Manual cigarette making equipment
CN214854277U