A tobacco making driving mechanism of a tobacco making machine and a tobacco making machine
Patent Information
- Application Number
- CN202522355690.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-10-09
- Estimated Expiration
- 2035-11-06
AI Technical Summary
[0002]目前市面上在售的制香机一般包括压香机构和竹签送料机构,竹签送料机构将竹签送往压香机构,由压香机构将香料推压到竹签上并压制成型,得到成品,但是,压香机构和竹签送料机构两者是相互独立分开的,各机构由各自相应的动力装置驱动已执行对应的工序操作,由于竹签送料机构和压香机构分别由两个独立的动力装置驱动操作,若要顺畅地实施压香操作工序,操作人员需要提前对竹签送料机构和压香机构的动力装置进行设置,以协调两个机构之间的操作节奏使,使得两个机构之间能够顺畅配合,这样,操作繁琐增加工作负担,难以进一步提高制香效率
本实用新型提供的一种制香机的制香驱动机构,先驱动竹签定送部往前输送竹签,使得竹签的根部先穿过压香腔箱并抵接到挡板上,由所述挡板阻挡竹签前移,由此使得竹签的覆料部头端位于压香腔箱内,接着,动力输出部继续驱动挡板和活塞往前移动,使得挡板与竹签的根部分离,而活塞则将推香腔箱内部的香粉推入至压香腔箱,此时,没有了挡板的阻挡,在竹签定送部的驱动下,竹签的覆料部穿过压香腔箱,与此同时,压香腔箱内部的香粉在压力作用下压裹到竹签的覆料部,竹签边移动边完成香粉上料,当竹签与竹签定送部分离后,竹签在自身运动趋势的惯性作用影响下飞出压香腔箱,实现成品输出,最后,动力输出部控制活塞和挡板回移以完成复位,重复上述操作步骤,由此逐步完成若干竹签的香粉上料操作。
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Figure CN224827912U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of incense making machine manufacturing technology, and in particular to an incense making machine driving mechanism and an incense making machine. Background Technology
[0002] Currently, incense-making machines on the market generally include an incense-pressing mechanism and a bamboo skewer feeding mechanism. The bamboo skewer feeding mechanism sends bamboo skewers to the incense-pressing mechanism, which then pushes the incense onto the bamboo skewers and presses them into shape to obtain the finished product. However, the incense-pressing mechanism and the bamboo skewer feeding mechanism are independent of each other, each driven by its own corresponding power unit to perform its corresponding operation. Since the bamboo skewer feeding mechanism and the incense-pressing mechanism are driven by two independent power units, in order to smoothly implement the incense-pressing operation, the operator needs to set the power units of the bamboo skewer feeding mechanism and the incense-pressing mechanism in advance to coordinate the operating rhythm between the two mechanisms so that they can work together smoothly. This makes the operation cumbersome, increases the workload, and makes it difficult to further improve the efficiency of incense making. Summary of the Invention
[0003] In view of the shortcomings of the prior art, the purpose of this utility model is to provide an incense-making drive mechanism and incense-making machine that can reduce the difficulty of operation, simplify the equipment structure, and improve the efficiency of incense making.
[0004] This utility model achieves the above objectives as follows: This utility model discloses an incense-making machine's incense-making drive mechanism, including a machine base, a blocking part, an incense-pressing part, and a bamboo stick feeding part disposed on the machine base, and a power output part. The power output part includes a mounting frame, a displacement connecting block, and a power unit. The power unit is connected to the machine base through the mounting frame, and the displacement connecting block is movably connected to the mounting frame and connected to the output end of the power unit. The incense-pressing part includes an incense powder feeding hopper, an incense-pushing chamber, and an incense-pressing chamber. The inlet and outlet ends of the incense-pushing chamber are respectively connected to the incense powder feeding hopper and the incense-pressing chamber. A piston is movably connected to the incense-pushing chamber, and one end of the piston extends out of the incense-pushing chamber and is connected to the displacement connecting block. The blocking part includes a baffle and a connecting arm. The baffle is connected to the displacement connecting block through the connecting arm. An mounting plate is also provided on the front side of the machine base. The bamboo stick feeding part is mounted on the mounting plate. The baffle and the incense-pressing chamber are located above the mounting plate, and the incense-pressing chamber is located between the baffle and the bamboo stick feeding part.
[0005] Furthermore, the top surface of the mounting bracket is provided with a slide rail, the power unit includes a motor, a reducer and an eccentric shaft, the reducer is connected to the output end of the motor, a positioning block is fixed to the lower end of the eccentric shaft, a connecting wheel is movably sleeved on the output end of the reducer, a trajectory adaptation guide block is fixedly connected to the top surface of the connecting wheel, the trajectory adaptation guide block is located below the displacement connecting block, the trajectory adaptation guide block also has a guide groove that is movably assembled with the positioning block of the eccentric shaft, the displacement connecting block has a limit groove, the shaft of the eccentric shaft passes through the guide groove and the limit groove, and a limit bearing is fitted on it, the limit bearing is located in the limit groove and cooperates with the limit groove, and a protective pad is detachably connected to the limit groove.
[0006] Furthermore, the connecting arm of the blocking part includes a connecting rod, an adjusting arm, an adjusting arm seat, and an adjusting baffle. The adjusting arm seat is installed on the side of the incense-pushing chamber. The adjusting arm seat has an installation groove that mates with the adjusting arm. The adjusting arm has several adjusting and positioning screw holes. One end of the adjusting arm is connected to the connecting rod, and the connecting rod is connected to the displacement connecting block. The long side of the adjusting baffle has a first adjusting groove, and the short side of the adjusting baffle has a connecting screw hole. The connecting edge of the baffle has a second adjusting groove that mates with the connecting screw hole.
[0007] Furthermore, the incense powder feeding hopper includes an incense powder storage box, an incense powder feeding funnel, and a mixing box. The incense powder storage box has a discharge port at its bottom, and the incense powder feeding funnel is located below the discharge port. The mixing box has an inlet that communicates with the inside of the incense pushing chamber. A stirrer is installed at the inlet. The bottom of the incense powder feeding funnel is fitted outside the mixing box, and the stirrer extends into the incense powder feeding funnel.
[0008] Furthermore, the incense-pressing chamber is provided with a filling trough and a buffer storage trough. The buffer storage trough is connected to the inlet. The wall of the buffer storage trough is provided with an inlet hole that connects to the filling trough. The other end of the piston is movably connected to the filling trough. The incense-pressing chamber is provided with a bamboo stick positioning trough, which is connected to the outlet of the filling trough.
[0009] Furthermore, the bamboo skewer feeding unit includes a mounting base connected to the mounting plate, a clamping wheel assembly mounted on the mounting base, and a feeding power unit. The clamping wheel assembly includes a driving wheel and a driven wheel, and the feeding power unit is drivenly connected to the driving wheel.
[0010] A fragrance-making machine including the aforementioned fragrance-making drive mechanism is also provided. The fragrance-making machine further includes a bamboo stick feeding mechanism. The bamboo stick feeding mechanism includes a transmission unit, a power supply unit, a feeding execution unit, and a sorting funnel connected to the base via a frame, all mounted on a base. The power supply unit is located at one end of the base, and the feeding execution unit is located at the other end of the base. The transmission unit and the sorting funnel are located between the feeding execution unit and the power supply unit, and the transmission unit and the sorting funnel cooperate with each other. The power supply unit is connected to the transmission unit.
[0011] Furthermore, the sorting funnel is a triangular prism-shaped funnel, and the bottom of the sorting funnel has several receiving gaps; the transmission unit includes a first slide rail and a second slide rail mounted on the base, an active plate connected to the first slide rail, a driven plate connected to the second slide rail, a traction swing arm hinged to the active plate and the driven plate, the active plate is equipped with a first bracket, the driven plate is equipped with at least two second brackets, and the second brackets are also inserted into the receiving gaps of the sorting funnel, cooperating with the sorting funnel.
[0012] Furthermore, the power supply unit includes a second motor and a second reducer. The output end of the second motor is connected to the reducer, and the output end of the reducer is connected to a wheel. The wheel is hinged to a transmission rod, and the distal end of the transmission rod is hinged to the drive plate.
[0013] Furthermore, the rear end of the sorting funnel is provided with a bamboo stick outlet hole, and the feeding execution unit includes a mounting vertical plate installed on the base. The mounting vertical plate is provided with a second clamping wheel set that cooperates with the bamboo stick outlet hole. A third motor is installed on the back of the mounting vertical plate, and the output end of the third motor is connected to the active clamping wheel drive of the second clamping wheel set.
[0014] The beneficial effects of this utility model are: This utility model provides an incense-making machine's incense-making drive mechanism. First, the bamboo skewer feeding unit moves the bamboo skewer forward, causing the base of the skewer to pass through the incense-pressing chamber and abut against a baffle. The baffle prevents the bamboo skewer from moving forward, thus ensuring the tip of the bamboo skewer's covering part is inside the incense-pressing chamber. Next, the power output unit continues to drive the baffle and piston forward, causing the baffle to separate from the base of the bamboo skewer. The piston then pushes the incense powder inside the incense-pressing chamber. At this point, without the baffle's obstruction, the incense powder... Driven by the bamboo skewer feeding unit, the covering part of the bamboo skewer passes through the incense pressing chamber. At the same time, the incense powder inside the incense pressing chamber is pressed onto the covering part of the bamboo skewer under pressure. The bamboo skewer is moved while the incense powder is being fed. When the bamboo skewer is separated from the bamboo skewer feeding unit, the bamboo skewer flies out of the incense pressing chamber under the influence of its own inertia, realizing the output of the finished product. Finally, the power output unit controls the piston and baffle to move back to complete the reset. The above operation steps are repeated to gradually complete the incense powder feeding operation of several bamboo skewer.
[0015] Compared to previous incense-making machines, the incense-making drive mechanism provided by this utility model connects the baffle of the blocking part and the piston of the incense-pressing part simultaneously, and controls the baffle of the blocking part and the piston of the incense-pressing part to perform their respective operations at the same time. This not only completes the corresponding incense-making process, but also does not affect the smoothness and rhythm of production operations, and further improves production efficiency. Moreover, it eliminates the need for the operator to make corresponding settings for the coordination between the blocking part and the incense-pressing part, reducing the operator's workload, simplifying the structural complexity of the equipment, and facilitating equipment maintenance. Attached Figure Description
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments: Figure 1 This is a schematic diagram of the incense-making drive mechanism and the overall structure of an incense-making machine according to an embodiment of the present invention. Figure 2 This is a schematic diagram of the overall incense-making driving mechanism in one embodiment of the present invention; Figure 3 for Figure 2 Enlarged diagram of A in the middle; Figure 4 This is a schematic diagram of the front part of the incense-making driving mechanism in one embodiment of the present invention. Figure 5 This is a partial structural schematic diagram of the incense-making driving mechanism in one embodiment of the present invention; Figure 6 for Figure 5 Enlarged diagram of B in the middle; Figure 7 This is a schematic diagram of the guide block structure of the incense-making driving mechanism in one embodiment of the present invention; Figure 8This is a schematic diagram of the eccentric shaft structure of the incense-making driving mechanism in one embodiment of the present invention; Figure 9 This is a schematic diagram of the bamboo stick feeding mechanism of the incense making machine in one embodiment of the present invention; Figure 10 This is a partial structural schematic diagram of the bamboo skewer feeding mechanism in one embodiment of the present invention; Figure 11 This is a schematic diagram of the connection structure between the transmission part and the feeding execution part of the bamboo skewer feeding mechanism in one embodiment of the present invention; Figure 12 This is a schematic diagram showing the positional relationship between the baffle, the incense-pressing chamber, and the mounting plate in one embodiment of the present invention; Figure 13 for Figure 12 An enlarged diagram of C in the diagram.
[0017] In the diagram, 1 is the base, 2 is the blocking part, 3 is the incense pressing part, 4 is the bamboo stick feeding part, 5 is the power output part, 51 is the mounting bracket, 52 is the displacement connecting block, 53 is the power unit, 31 is the incense powder feeding hopper, 32 is the incense pushing chamber box, 33 is the incense pressing chamber box, 321 is the piston, 21 is the baffle, 22 is the connecting arm, 6 is the mounting plate, 511 is the slide rail, 531 is the motor, 532 is the reducer, 533 is the eccentric shaft, 5331 is the positioning block, 5332 is the shaft, 54 is the connecting wheel, 55 is the trajectory adaptation guide block, 551 is the guide groove, 521 is the limit groove, 7 is the limit bearing, 5211 is the protective pad, 221 is the connecting rod, 222 is the adjusting arm, 223 is the adjusting arm seat, 224 is the adjusting folding plate, 2231 is the mounting groove, 2221 is the positioning screw hole, 2241 is the first adjusting groove, 2242 is the connecting screw hole, 21 is the... 1. Second adjusting groove, 311. Fragrance powder storage box, 312. Fragrance powder feeding funnel, 313. Mixing box, 3111. Discharge port, 314. Agitator, 41. Mounting base, 42. Grip wheel assembly, 43. Fixed feeding power unit, 421. Driving wheel, 422. Driven wheel, 8. Bamboo stick feeding mechanism, 81. Base, 82. Transmission unit, 83. Power supply unit, 84. Feeding execution unit, 85. Sorting funnel, 851. Containing gap, 821. First slide rail, 822. Second slide rail, 823. Driving plate, 824. Driven plate, 825. Traction swing arm, 826. First bracket, 827. Second bracket, 831. Wheel disc, 832. Transmission rod, 852. Bamboo stick outlet hole, 841. Mounting vertical plate, 842. Second grip wheel assembly, 843. Third motor, 211. Connecting part, 212. Blocking part. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings. The illustrative embodiments and descriptions of this utility model are only used to explain this utility model and are not intended to limit this utility model.
[0019] Figures 1-10This invention illustrates the specific structure of an incense-making machine's incense-making drive mechanism according to an embodiment of the present invention. The incense-making drive mechanism specifically includes a base 1, and a blocking part 2, an incense-pressing part 3, and a bamboo stick feeding part 4 disposed on the base 1. Its distinguishing feature is that it further includes a power output part 5, which includes a mounting frame 51, a displacement connecting block 52, and a power unit 53. The power unit 53 is connected to the base 1 via the mounting frame 51, and the displacement connecting block 52 is movably connected to the mounting frame 51 and connected to the output end of the power unit 53. The incense-pressing part 3 includes an incense powder feeding hopper 31, an incense-pushing chamber 32, and an incense-pressing chamber 33. The incense-pushing chamber... The inlet and outlet ends of 32 are respectively connected to the incense powder feeding hopper 31 and the incense pressing chamber 33. The incense pressing chamber 32 is movably connected to a piston 321. One end of the piston 321 extends out of the incense pressing chamber 32 and is connected to the displacement connecting block 52. The blocking part 2 includes a baffle 21 and a connecting arm 22. The baffle 21 is connected to the displacement connecting block 52 through the connecting arm 22. The front side of the machine base 1 is also provided with an mounting plate 6. The bamboo stick feeding part 4 is installed on the mounting plate 6. The baffle 21 and the incense pressing chamber 33 are located above the mounting plate 6. The incense pressing chamber 33 is located between the baffle 21 and the bamboo stick feeding part 4.
[0020] This invention discloses an incense-making machine with an incense-making drive mechanism. The mechanism drives the bamboo skewer feeding unit 4 to forward-feed bamboo skewers, causing the base of the skewer to first pass through the incense-pressing chamber 33 and abut against the baffle 21. The baffle 21 prevents the bamboo skewer from moving forward, thus ensuring that the tip of the bamboo skewer with the covering material is inside the incense-pressing chamber 33. Next, the power output unit 5 drives the baffle 21 and the piston 321 to move forward, causing the baffle 21 to separate from the base of the bamboo skewer. The piston 321 then pushes the incense powder inside the incense-pushing chamber 32 into the incense-pressing chamber 33. At this point, the baffle is no longer in use. The blocking of plate 21, driven by the bamboo stick feeding unit 4, causes the covering part of the bamboo stick to pass through the incense pressing chamber 33. At the same time, the incense powder inside the incense pressing chamber 33 is pressed onto the covering part of the bamboo stick under pressure. The bamboo stick moves while the incense powder is being fed. When the bamboo stick separates from the bamboo stick feeding unit 4, the bamboo stick flies out of the incense pressing chamber 33 under the influence of its own inertia, realizing the output of the finished product. Finally, the power output unit 5 controls the piston 321 and the baffle 21 to move back to complete the reset. The above operation steps are repeated to gradually complete the incense powder feeding operation of several bamboo sticks.
[0021] Compared to previous incense-making machines, the incense-making drive mechanism provided by this utility model connects the baffle 21 of the blocking part 2 and the piston 321 of the incense-pressing part 3 simultaneously, and controls the baffle 21 of the blocking part 2 and the piston 321 of the incense-pressing part 3 to perform their respective operations at the same time. This not only completes the corresponding incense-making process, but also does not affect the smoothness and rhythm of production operations, and further improves production efficiency. Moreover, it eliminates the need for the operator to make corresponding settings for the coordination between the blocking part and the incense-pressing part, reducing the operator's workload, simplifying the structural complexity of the equipment, and facilitating equipment maintenance.
[0022] Furthermore, in this embodiment, as Figures 3-8 As shown, the top surface of the mounting bracket 51 is provided with a slide rail 511. The power unit 53 includes a motor 531, a reducer 532, and an eccentric shaft 533. The reducer 532 is connected to the output end of the motor 531. A positioning block 5331 is fixed at the lower end of the eccentric shaft 533. A connecting wheel 54 is movably sleeved at the output end of the reducer 532. A trajectory adaptation guide block 55 is fixedly connected to the top surface of the connecting wheel 54. The trajectory adaptation guide block 55 is located below the displacement connecting block 52. The trajectory adaptation guide block 55 also has a guide groove 551 that is movably assembled with the positioning block 5331 of the eccentric shaft 533. The displacement connecting block 52 has a limit groove 521. The shaft 5332 of the eccentric shaft 533 passes through the guide groove 551 and the limit groove 521 and is fitted with a limit bearing 7. The limit bearing 7 is located in the limit groove 521 and cooperates with the limit groove 521.
[0023] The motor 531 outputs power through the reducer 532, driving the eccentric shaft 533 to perform cam motion around the axis of the motor 531. The trajectory adaptation guide block 55 has a guide groove 511 that movably engages with the positioning block 5331 of the eccentric shaft 533. The eccentric shaft 533 pushes the trajectory adaptation guide block 55 and the connecting wheel connected to the trajectory adaptation guide block 55 to rotate around the motor 531 through the positioning block 5331, causing the guide groove 511 on the trajectory adaptation guide block 55 to rotate around the axis of the motor 531. This adjusts the position of the guide groove 511 relative to the axis of the motor 531 to match the movement trajectory of the eccentric shaft 533. At the same time, the guide groove 511 can apply a reverse force to the eccentric shaft 533, forcing the eccentric shaft 533 to move back and forth along the groove wall of the guide groove 511. The eccentric shaft 533 then applies a force to the limiting groove 521 of the displacement connecting block 52 through the limiting bearing 7, pushing the displacement connecting block 52 to move back and forth along the slide rail 511, thereby simultaneously controlling the forward or backward movement of the baffle 21 and the piston 321.
[0024] Furthermore, in this embodiment, as Figure 5 As shown, the limiting groove 521 can also be detachably connected to a protective pad 5211. The protective pad 5211 can be installed and connected to the limiting groove 521 by screws or clips, which is convenient for installation and replacement. The protective pad 5211 contacts the limiting bearing 7 and is used to provide cushioning and absorb the heat of the limiting bearing 7 to prevent the eccentric shaft 533 from overheating and deforming, and also to reduce the wear between the limiting bearing 7 and the limiting groove 521.
[0025] Furthermore, in this embodiment, as Figure 3 and Figure 4 As shown, the connecting arm 22 of the blocking part 2 includes a connecting rod 221, an adjusting arm 222, an adjusting arm seat 223, and an adjusting baffle 224. The adjusting arm seat 223 is installed on the side of the incense-pushing chamber 32. The adjusting arm seat 223 has an installation groove 2231 that mates with the adjusting arm 222. The adjusting arm 222 has several adjusting and positioning screw holes 2221. One end of the adjusting arm 222 is connected to the connecting rod 221. The connecting rod 221 is connected to the displacement connecting block 52. The long side of the adjusting baffle 224 has a first adjusting groove 2241, and the short side of the adjusting baffle 224 has a connecting screw hole 2242. The connecting edge of the baffle 21 has a second adjusting groove 211 that mates with the connecting screw hole 2242.
[0026] Furthermore, in this embodiment, as Figure 12 , Figure 13 As shown, the baffle 21 is formed by connecting part 211 connected to the connecting arm 22 and abutting part 212 protruding from the connecting arm 22. When in the reset state, the abutting part 212 is located in the outlet output direction of the incense pressing chamber 33, while the connecting part 211 is located above the outlet output direction and above the mounting plate 6. Thus, when the baffle 21 continues to move forward, the abutting part 212 gradually moves away from the outlet output direction of the incense pressing chamber 33, and the connecting part 211, being above the outlet output direction, does not obstruct the forward movement of the bamboo stick.
[0027] Furthermore, in this embodiment, as Figures 2-5 As shown, the incense powder feeding hopper 31 includes an incense powder storage box 311, an incense powder feeding funnel 312, and a stirring box 313. The incense powder storage box 311 has a discharge port 3111 at its bottom. The incense powder feeding funnel 312 is located below the discharge port 3111. The stirring box 313 has a feeding port that communicates with the inside of the incense pushing chamber 32. A stirrer 314 is provided at the feeding port. The bottom of the incense powder feeding funnel 312 is fitted over the stirring box 313, and the stirrer 314 also extends into the incense powder feeding funnel 312.
[0028] Furthermore, in this embodiment, the incense-pressing chamber 32 is provided with a filling trough and a buffer storage trough. The buffer storage trough is connected to the inlet, and the wall of the buffer storage trough has an inlet hole that connects to the filling trough. The other end of the piston 321 is movably connected to the filling trough. The incense-pressing chamber 33 has a bamboo stick positioning trough, which is connected to the outlet of the filling trough. Furthermore, in this embodiment, as Figure 4 As shown, the bamboo skewer feeding unit 4 includes a mounting base 41 connected to the mounting plate 6, a clamping wheel set 42 mounted on the mounting base 41, and a feeding power unit 43. The clamping wheel set 42 includes a driving wheel 421 and a driven wheel 422, and the feeding power unit 43 is drivenly connected to the driving wheel 421.
[0029] Furthermore, this utility model also provides an incense-making machine including the incense-making driving mechanism described above, and the incense-making machine further includes a bamboo stick feeding mechanism 8, such as... Figures 9-11 As shown, the bamboo skewer feeding mechanism 8 includes a transmission unit 82, a power supply unit 83, a feeding execution unit 84, and a sorting funnel 85 connected to the base 81 via a frame, all mounted on a base 81. The power supply unit 83 is located at one end of the base 81, and the feeding execution unit 84 is located at the other end of the base 81. The transmission unit 82 and the sorting funnel 85 are located between the feeding execution unit 84 and the power supply unit 83, and the transmission unit 82 and the sorting funnel 85 cooperate with each other. The power supply unit 83 is connected to the transmission unit 84.
[0030] More specifically, in this embodiment, as Figures 9-11 As shown, the sorting funnel 85 is a triangular prism-shaped funnel, and the bottom of the sorting funnel 85 has a plurality of receiving gaps 851; the transmission part 82 includes a first slide rail 821 and a second slide rail 822 mounted on the base 81, an active plate 823 connected to the first slide rail 821, a driven plate 824 connected to the second slide rail 822, and a traction swing arm 825 hinged to the active plate 823 and the driven plate 824. The active plate 823 is equipped with a first bracket 826, and the driven plate 824 is equipped with at least two second brackets 827. The second brackets 827 are also inserted into the receiving gaps 851 of the sorting funnel 85 and cooperate with the sorting funnel 85.
[0031] Furthermore, in this embodiment, the power supply unit 83 includes a second motor and a second reducer. The output end of the second motor is connected to the reducer, and the output end of the reducer is connected to a wheel 831. The wheel 833 is hinged to a transmission rod 832, and the distal end of the transmission rod 832 is hinged to the drive plate 823.
[0032] Furthermore, in this embodiment, as Figure 9 As shown, the rear end of the sorting funnel 85 is provided with a bamboo skewer outlet hole 852. The feeding execution unit 84 includes a mounting vertical plate 841 mounted on the base 81. The mounting vertical plate 841 is provided with a second clamping wheel set 842 that cooperates with the bamboo skewer outlet hole 852. A third motor 843 is mounted on the back of the mounting vertical plate 841. The output end of the third motor 843 is driven and connected to the active clamping wheel (not shown in the figure) of the second clamping wheel set 842.
[0033] Bamboo skewers are placed into the sorting funnel 85. Under the action of gravity, the bamboo skewers fall to the bottom of the sorting funnel 85. The power supply unit 83 controls the active plate 823 and the driven plate 824 of the transmission unit 82 to move in the direction of the feeding execution unit 4. The first bracket 826 on the active plate 823 and the second bracket 827 on the driven plate 824 cooperate to send the bamboo skewers to the bamboo skewer outlet 852. After the bamboo skewers pass through the bamboo skewer outlet 852, the feeding execution unit 84 sends the bamboo skewers to the bamboo skewer fixed delivery unit 4. The power supply unit 83 drives the active plate 823 to move through the transmission rod 832, and the active plate 823 drives the driven plate 824 to move through the traction swing arm 825.
[0034] It is understood that the above embodiments only illustrate preferred embodiments of the present utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present utility model patent. It should be noted that for those skilled in the art, the above technical features can be freely combined, and several modifications and improvements can be made without departing from the concept of the present utility model, all of which fall within the protection scope of the present utility model. Therefore, all equivalent transformations and modifications made with respect to the claims and scope of the present utility model should fall within the scope of the claims of the present utility model.
Claims
1. An incense-making driving mechanism for an incense-making machine, comprising a base (1), and a blocking part (2), an incense-pressing part (3), and a bamboo stick feeding part (4) disposed on the base (1), characterized in that: It also includes a power output unit (5), which includes a mounting frame (51), a displacement connecting block (52), and a power unit (53). The power unit (53) is connected to the base (1) through the mounting frame (51). The displacement connecting block (52) is movably connected to the mounting frame (51) and connected to the output end of the power unit (53). The incense pressing unit (3) includes an incense powder feeding tank (31), an incense pushing chamber (32), and an incense pressing chamber (33). The inlet and outlet ends of the incense pushing chamber (32) are respectively connected to the incense powder feeding tank (31) and the incense pressing chamber (33). The incense pushing chamber (32) is movably connected to the base (1). A piston (321) is connected to the incense-pressing chamber (32), one end of which passes through the incense-pressing chamber (32) and is connected to the displacement connecting block (52); the blocking part (2) includes a baffle (21) and a connecting arm (22), the baffle (21) being connected to the displacement connecting block (52) via the connecting arm (22); the front side of the base (1) is also provided with an mounting plate (6), the bamboo stick feeding part (4) is mounted on the mounting plate (6), the baffle (21) and the incense-pressing chamber (33) are located above the mounting plate (6), and the incense-pressing chamber (33) is located between the baffle (21) and the bamboo stick feeding part (4).
2. The incense-making drive mechanism of an incense-making machine according to claim 1, characterized in that: The top surface of the mounting bracket (51) is provided with a slide rail (511). The power unit (53) includes a motor (531), a reducer (532), and an eccentric shaft (533). The reducer (532) is connected to the output end of the motor (531). A positioning block (5331) is fixed at the lower end of the eccentric shaft (533). A connecting wheel (54) is movably sleeved at the output end of the reducer (532). A trajectory adaptation guide block (55) is fixedly connected to the top surface of the connecting wheel (54). The trajectory adaptation guide block (55) is located below the displacement connecting block (52). The track adapter guide block (55) is also provided with a guide groove (551) that is movably assembled with the positioning block (5331) of the eccentric shaft (533). The displacement connecting block (52) is provided with a limiting groove (521). The shaft (5332) of the eccentric shaft (533) passes through the guide groove (551) and the limiting groove (521) and is fitted with a limiting bearing (7). The limiting bearing (7) is located in the limiting groove (521) and cooperates with the limiting groove (521). The limiting groove (521) is also detachably connected with a protective pad (5211).
3. The incense-making drive mechanism of an incense-making machine according to claim 1, characterized in that: The connecting arm (22) of the blocking part (2) includes a connecting rod (221), an adjusting arm (222), an adjusting arm seat (223), and an adjusting baffle (224). The adjusting arm seat (223) is installed on the side of the incense-pushing chamber (32). The adjusting arm seat (223) has an installation groove (2231) that is fitted to the adjusting arm (222). The adjusting arm (222) has several adjusting positioning screw holes (2221). One end of the adjusting arm (222) is connected to the connecting rod (221). The connecting rod (221) is connected to the displacement connecting block (52). The long side of the adjusting baffle (224) has a first adjusting groove (2241). The short side of the adjusting baffle (224) has a connecting screw hole (2242). The connecting edge of the baffle (21) has a second adjusting groove (211) that cooperates with the connecting screw hole (2242).
4. The incense-making drive mechanism of an incense-making machine according to claim 1, characterized in that: The incense powder feeding hopper (31) includes an incense powder storage box (311), an incense powder feeding funnel (312), and a stirring box (313). The incense powder storage box (311) has a discharge port (3111) at the bottom. The incense powder feeding funnel (312) is located below the discharge port (3111). The stirring box (313) has an inlet that connects to the inside of the incense pushing chamber (32). A stirrer (314) is provided at the inlet. The bottom of the incense powder feeding funnel (312) is covered by the stirring box (313). The stirrer (314) also extends into the incense powder feeding funnel (312).
5. The incense-making drive mechanism of an incense-making machine according to claim 4, characterized in that: The incense-pushing chamber (32) is provided with a filling trough and a buffer storage trough. The buffer storage trough is connected to the inlet. The wall of the buffer storage trough is provided with an inlet hole that connects to the filling trough. The other end of the piston (321) is movably connected to the filling trough. The incense-pressing chamber (33) is provided with a bamboo stick positioning trough. The bamboo stick positioning trough is connected to the outlet of the filling trough.
6. The incense-making drive mechanism of an incense-making machine according to claim 1, characterized in that: The bamboo skewer delivery unit (4) includes a mounting base (41) connected to the mounting plate (6), a clamping wheel assembly (42) mounted on the mounting base (41), and a delivery power unit (43). The clamping wheel assembly (42) includes a driving wheel (421) and a driven wheel (422). The delivery power unit (43) is drivenly connected to the driving wheel (421).
7. An incense-making machine, comprising an incense-making drive mechanism as described in any one of claims 1-6, characterized in that: It also includes a bamboo skewer feeding mechanism (8), which includes a transmission unit (82), a power supply unit (83), a feeding execution unit (84) and a sorting funnel (85) connected to the base (81) via a frame. The power supply unit (83) is located at one end of the base (81), and the feeding execution unit (84) is located at the other end of the base (81). The transmission unit (82) and the sorting funnel (85) are located between the feeding execution unit (84) and the power supply unit (83), and the transmission unit (82) and the sorting funnel (85) cooperate with each other. The power supply unit (83) is connected to the transmission unit (82).
8. The incense-making machine according to claim 7, characterized in that: The sorting funnel (85) is a triangular prism-shaped funnel, and the bottom of the sorting funnel (85) is provided with a plurality of receiving gaps (851); the transmission part (82) includes a first slide rail (821) and a second slide rail (822) provided on the base (81), an active plate (823) connected to the first slide rail (821), a driven plate (824) connected to the second slide rail (822), a traction swing arm (825) hinged to the active plate (823) and the driven plate (824), the active plate (823) is equipped with a first bracket (826), the driven plate (824) is equipped with at least two second brackets (827), and the second brackets (827) are also inserted into the receiving gaps (851) of the sorting funnel (85) and cooperate with the sorting funnel (85).
9. The incense-making machine according to claim 8, characterized in that: The power supply unit (83) includes a second motor and a second reducer. The output end of the second motor is connected to the reducer. The output end of the reducer is connected to a wheel (831). The wheel (831) is hinged to a transmission rod (832). The far end of the transmission rod (832) is hinged to the drive plate (823).
10. The incense-making machine according to claim 9, characterized in that: The rear end of the sorting funnel (85) is provided with a bamboo stick outlet hole (852). The feeding execution unit (84) includes a mounting vertical plate (841) installed on the base (81). The mounting vertical plate (841) is provided with a second clamping wheel set (842) that cooperates with the bamboo stick outlet hole (852). A third motor (843) is installed on the back of the mounting vertical plate (841). The output end of the third motor (843) is connected to the active clamping wheel drive of the second clamping wheel set (842).