Moxa stick rolling machine

By designing automated adhesive spraying, cutting, and conveying components, the problem of manual operation required in existing moxa stick rolling machines has been solved, achieving highly efficient automated production.

CN223731774UActive Publication Date: 2025-12-30ANYANG JIUTOUXIAN AIYE CO LTD
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Patent Information

Application Number
CN202422702025.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-12-30
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

Existing semi-automatic moxa stick rolling machines lack adhesive coating and cutting structures, requiring manual feeding, coating, and cutting. They cannot automatically adjust the size of the moxa sticks, making them inconvenient and inefficient to use.

Method used

A moxa stick rolling machine was designed, which includes a glue spraying component, a pressing component, an air blowing component, a feeding component, a conveying component, and a transmission component, to achieve automatic glue application, cutting, and conveying, reducing manual intervention.

Benefits of technology

It improves the efficiency of moxa stick rolling, reduces the workload of workers, realizes automated production, and enhances ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of moxa stick rolling, in particular to a moxa stick rolling machine which comprises a workbench, a pressing assembly, a glue spraying assembly, an air blowing assembly, a discharging assembly, a conveying assembly and a transmission assembly. A material groove is formed in the working table in the moving direction of the moving cover, an outlet is formed in the side, close to the pressing assembly, of the working table, and a plastic roller capable of achieving rolling is installed on the side, close to the outlet, of the bottom of the working table. The device has the advantages that the glue spraying assembly is matched with the pressing assembly, roll paper is pressed and glued, manual gluing is not needed, in the pressing and coating process, the roll paper filled with moxa is rolled and formed through the movable cover and the connecting shaft, automatic rolling is achieved through matching of the components, and the production efficiency is greatly improved. Manual assistance is not needed any more, the rolling efficiency is improved, and the working intensity of workers is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of moxa stick rolling technology, and in particular to a moxa stick rolling machine. Background Technology

[0002] Existing semi-automatic moxa stick rolling machines only have a rolling structure, lacking a gluing and cutting structure. During use, manual feeding, manual coating, and manual cutting are required. They cannot automatically adjust the size of the rolled moxa sticks and also require manual adjustment. The machines require manual operation, making them inconvenient to use. They require constant human intervention, and without human intervention, the machines cannot roll moxa wool into moxa sticks, and the rolling efficiency is also low.

[0003] To address this issue, this utility model proposes a moxa stick rolling machine. Utility Model Content

[0004] The purpose of this invention is to at least solve one of the aforementioned technical defects.

[0005] Therefore, one objective of this utility model is to provide a moxa stick rolling machine to solve the problems mentioned in the background art and overcome the shortcomings of the existing technology.

[0006] To achieve the above objectives, this utility model provides a moxa stick rolling machine, including a worktable, a pressing assembly, a glue spraying assembly, an air blowing assembly, a feeding assembly, a conveying assembly, and a transmission assembly;

[0007] A movable cover is connected to the workbench via a power component. A connecting shaft is installed inside the movable cover. A material trough is provided on the workbench along the direction of movement of the movable cover. An outlet is provided on the side of the workbench near the pressing component. A retractable plastic roller is installed on the bottom of the workbench and on the side near the outlet. A plastic roll is installed on the plastic roller. The plastic roll passes through the material trough and is fixed on the workbench.

[0008] The glue spraying assembly and the pressing assembly are both mounted in the middle of the workbench via a support frame. The air blowing assembly is mounted on one side of the glue spraying assembly. The material feeding assembly is mounted on the top of the moving cover. The conveying assembly is located below the workbench. The transmission assembly is located at the tail end of the workbench. A cutting blade is fixedly connected to the side of the workbench near the support frame and corresponding to the moving cover.

[0009] Two cylinder grippers are fixedly connected to the side of the movable cover near the support frame, and the two cylinder grippers are symmetrically distributed along the longitudinal axis of the movable cover.

[0010] The clamping assembly includes a pressure plate, on the top of which are two symmetrical columns that penetrate the top of the support frame. The outer surfaces of the two columns are threaded with sleeves, and the outer surfaces of the sleeves are fitted with protective covers. Gears are fixedly connected to the outer surfaces of the two sleeves, and the two gears rotate via a chain. Both the gears and the chain are installed inside the protective covers.

[0011] The glue spraying assembly includes a frame, inside which a movable block is threadedly connected by a first screw. A glue sprayer for spraying glue is installed on the movable block. A sliding groove is provided on the side of the protective cover near the glue spraying assembly. The movable block and the side symmetrical to the glue sprayer pass through the sliding groove and are fixedly connected to a chain.

[0012] The interior of the frame is divided into upper and lower cavities by a partition. The glue spraying assembly is located in the lower cavity, and the air blowing assembly is located in the upper cavity. The top of the moving block passes through the partition and slides on the partition.

[0013] The air blowing assembly includes an airbag, one end of which is fixedly connected to an air outlet pipe, the other end of which is fixedly connected to an air blowing pipe, the other end of which is fixedly connected to a moving block via a push plate, and one side of which is fixedly connected to an air inlet pipe.

[0014] The feeding assembly includes a feeding hopper, a distributing box is fixedly connected to the bottom of the feeding hopper, a stacking plate is fixedly connected inside the distributing box, a pusher plate is installed at the bottom of the stacking plate, the pusher plate is pushed by a cylinder, and the pusher plate passes through the distributing box.

[0015] The conveying assembly includes a conveyor belt and a support platform. The conveyor belt is located on the support platform and conveys the packaged moxa rolls via a motor.

[0016] The power assembly includes a second screw, a slide rod, and a motor. The second screw is threadedly connected to one side of the movable cover, and the slide rod is slidably connected to the other side of the movable cover. The second screw and the slide rod are symmetrically distributed along the longitudinal axis of the worktable.

[0017] The transmission assembly includes a first rotating shaft, a second rotating shaft, and two third rotating shafts, which are rotatably connected to the worktable in sequence. A paper roll is mounted on the first rotating shaft.

[0018] The paper roll passes sequentially around a second pivot and two third pivots, wherein the second pivot tensions the paper roll.

[0019] Compared with the prior art, the advantages and beneficial effects of this utility model are as follows:

[0020] This new invention uses a combination of a spraying and pressing assembly to press and apply glue to the paper roll, eliminating the need for manual glue application. An external feeder feeds the paper roll with material, and a second screw drives a moving cover forward. As the moving cover moves forward, it causes a plastic roll to roll forward, wrapping the moxa wool around it. The plastic roll, driven by the movement of the moving cover, also rolls the paper roll and moxa wool on it, finally forming a roll that adheres to the glued part to form a moxa stick. This eliminates the need for manual assistance, improving rolling efficiency and reducing the workload of workers.

[0021] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0022] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0023] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0024] Figure 2 According to this utility model Figure 1 Enlarged structural diagram at point A;

[0025] Figure 3 This is a cross-sectional view of the internal structure of the present invention;

[0026] Figure 4 According to this utility model Figure 3 Enlarged structural diagram at point A;

[0027] Figure 5 This is a schematic diagram of the internal cross-sectional structure of the feeding assembly according to this utility model;

[0028] Figure 6 This is a schematic diagram of the structure according to the explosion of this utility model;

[0029] Figure 7 According to this utility model Figure 6 Enlarged structural diagram at point A;

[0030] Figure 8 According to this utility model Figure 6 Enlarged structural diagram at point B;

[0031] Figure 9 This is a front view structural diagram according to the present invention.

[0032] In the diagram: 1. Workbench; 101. Moving cover; 102. Connecting shaft; 103. Material trough; 104. Outlet; 105. Plastic roller; 106. Cylinder gripper; 107. Support frame; 108. Paper roll; 109. Cutting blade; 110. Plastic roll; 2. Pressing assembly; 201. Pressure plate; 202. Column; 203. Sleeve; 204. Protective cover; 205. Gear; 206. Chain; 3. Glue spraying assembly; 301. Partition plate; 302. First screw; 303. Moving block; 304. Glue sprayer; 3 5. Frame; 4. Air blowing assembly; 401. Airbag; 402. Air inlet pipe; 403. Air outlet pipe; 404. Push plate; 405. Air blowing pipe; 5. Feeding assembly; 501. Feeding hopper; 502. Distributor box; 503. Stacking plate; 504. Pushing plate; 505. Cylinder; 6. Conveying assembly; 601. Conveyor belt; 602. Support platform; 7. Power assembly; 701. Second screw; 702. Slide rod; 8. Transmission assembly; 801. First rotating shaft; 802. Second rotating shaft; 803. Third rotating shaft. Detailed Implementation

[0033] like Figures 1 to 9 As shown, a moxa stick rolling machine includes a worktable 1, a pressing assembly 2, a glue spraying assembly 3, an air blowing assembly 4, a feeding assembly 5, a conveying assembly 6, and a transmission assembly 8.

[0034] A movable cover 101 is connected to the workbench 1 via a power assembly 7. A connecting shaft 102 is installed inside the movable cover 101. A material trough 103 is provided on the workbench 1 along the movement direction of the movable cover 101. An outlet 104 is provided on the side of the workbench 1 near the pressing assembly 2. A retractable plastic roller 105 is installed on the bottom of the workbench 1 and near the outlet 104. A plastic roll 110 is installed on the plastic roller 105. The plastic roll 110 passes through the material trough 103 and is fixed on the workbench 1. The plastic roll 110 is rotated by a motor. The plastic roller 105 retracts the plastic roll 110 by the motor to reduce the thickness of the moxa roll, and releases the plastic roll 110 to increase the thickness of the moxa roll.

[0035] The glue spraying assembly 3 and the pressing assembly 2 are both installed in the middle of the workbench 1 via the support frame 107. The air blowing assembly 4 is installed on one side of the glue spraying assembly 3. The material feeding assembly 5 is installed on the top of the moving cover 101. The conveying assembly 6 is located below the workbench 1. The transmission assembly 8 is located at the tail end of the workbench 1. A cutting blade 109 is fixedly connected to the side of the workbench 1 near the support frame 107 and corresponding to the moving cover 101.

[0036] Two cylinder grippers 106 are fixedly connected to the side of the movable cover 101 near the support frame 107. The two cylinder grippers 106 are symmetrically distributed along the longitudinal axis of the movable cover 101. The cylinder grippers 106 in this invention are existing technology and adopt the MHC2 series finger cylinder grippers. Since this application does not make any changes to the function or appearance of the cylinder grippers, no further description of the cylinder grippers is provided.

[0037] The clamping assembly 2 includes a pressure plate 201. Two symmetrical columns 202 are mounted on the top of the pressure plate 201. The columns 202 penetrate the top of the support frame 107. Sleeves 203 are threaded onto the outer surfaces of both columns 202. Protective covers 204 are mounted on the outer surfaces of the sleeves 203. Gears 205 are fixedly connected to the outer surfaces of both sleeves 203. The two gears 205 rotate via a chain 206. Both the gears 205 and the chain 206 are installed inside the protective covers 204. The pressure plate 201 presses the paper roll 108 to prevent it from shifting. The gear 205 on the sleeve 203 drives the sleeve 203 to rotate under the drive of the chain 206. The sleeve 203 drives the column 202 to move downward. The column 202 drives the pressure plate 201 to move downward to press the paper roll 108. The pressure plate 201 in this application only serves to make the paper roll 108 roll tighter and tighter during the rolling process, so as to facilitate the cutting blade 109 to cut the paper roll 108.

[0038] The glue spraying assembly 3 includes a frame 305. Inside the frame 305 is a movable block 303 threadedly connected to a first screw 302. A glue sprayer 304 for spraying glue is mounted on the movable block 303. A groove is formed on the side of the protective cover 204 near the glue spraying assembly 3. The movable block 303 and the glue sprayer 304 are symmetrically connected through the groove and fixedly connected to a chain 206. A motor drives the first screw 302 to rotate, causing the movable block 303 to move within the support frame 107. As the movable block 303 moves, it drives the glue sprayer... The glue dispenser 304 moves and sprays glue onto the paper roll 108 below along the support frame 107. When the moving block 303 moves, it drives the chain 206 to move. The chain 206 is a closed loop shape. When the chain 206 rotates, it drives the gear 205 to rotate. The gear 205 will drive the pressing component 2 to press the paper roll 108. During the glue spraying process, there is no need for the pressure plate 201 to press the paper roll 108. Because there is no external force interference, the paper roll 108 will not shift. The travel path of the paper roll 108 is arranged in advance by the workers.

[0039] The interior of the frame 305 is divided into upper and lower cavities by a partition 301. The glue spraying assembly 3 is located in the lower cavity, and the air blowing assembly 4 is located in the upper cavity. The top of the moving block 303 passes through the partition 301 and slides on the partition 301.

[0040] The blowing assembly 4 includes an airbag 401. One end of the airbag 401 is fixedly connected to an air outlet pipe 403, and the other end of the air outlet pipe 403 is fixedly connected to an air blowing pipe 405. The other end of the airbag 401 is fixedly connected to a moving block 303 via a push plate 404. An air inlet pipe 402 is fixedly connected to one side of the airbag 401. The moving block 303 drives the push plate 404 to move. When the push plate 404 moves, it squeezes the airbag 401. When the airbag 401 is squeezed, the gas inside is discharged into the air blowing pipe 405 through the air outlet pipe 403. The air blowing pipe 405 cleans up the scattered moxa wool on the workbench 1 to prevent the scattered moxa wool on the workbench 1 from affecting the formation of the moxa roll.

[0041] The feeding assembly 5 includes a feeding hopper 501, a distribution box 502 fixedly connected to the bottom of the feeding hopper 501, a stacking plate 503 fixedly connected inside the distribution box 502, and a pusher plate 504 installed at the bottom of the stacking plate 503. The pusher plate 504 is pushed by a cylinder 505 and passes through the distribution box 502. When not feeding, the cylinder 505 pushes the pusher plate 504 to block the outlet of the distribution box 504. When feeding, the moxa wool in the feeding hopper 501 falls onto the pusher plate 504 in the distribution box 502. At this time, the cylinder 505 drives the pusher plate 504 to retract. When the pusher plate 504 is retracted, the moxa wool on the pusher plate 504 will be discharged from the outlet of the distribution box 504 under the reverse push of the stacking plate 503. The moxa wool then falls onto the paper roll located above the material trough 103.

[0042] The conveying assembly 6 includes a conveyor belt 601 and a support platform 602. The conveyor belt 601 is located on the support platform 602. The conveyor belt 601 conveys the packaged moxa rolls through a motor. The packaged moxa rolls fall onto the conveyor belt through an outlet. The conveyor belt transports the packaged moxa rolls into a packaging box.

[0043] The power assembly 7 includes a second screw 701, a slide rod 702, and a motor. The second screw 701 is threadedly connected to one side of the movable cover 101, and the slide rod 702 is slidably connected to the other side of the movable cover 101. The second screw 701 and the slide rod 702 are symmetrically distributed along the longitudinal axis of the worktable 1. The motor drives the second screw 701 to rotate clockwise, which moves the movable cover 101 toward the support frame 107. The motor also drives the second screw 701 to rotate counterclockwise, which moves the movable cover 101 back. The other side of the movable cover 101 moves on the slide rod 702, which prevents the movable cover 101 from shifting during movement.

[0044] The transmission assembly 8 includes a first rotating shaft 801, a second rotating shaft 802 and two third rotating shafts 803, which are rotatably connected to the workbench 1 in sequence. A paper roll 108 is mounted on the first rotating shaft 801.

[0045] The paper roll 108 passes sequentially around the second rotating shaft 802 and two third rotating shafts 803, wherein the second rotating shaft 802 tensions the paper roll 108.

[0046] The paper roll 108 does not need to be driven by a motor to rotate in order to control the movement of the paper roll 108. The paper roll 108 is gripped by the cylinder gripper 106, and then the moving cover 101 begins to move backward. The paper roll 108 begins to rotate under the pull of the cylinder gripper 106 and the moving cover 101.

[0047] This new type of machine operates in two phases: initial operation and continuous production. In the initial phase, the operator passes the paper roll 108 sequentially through the first rotating shaft 803 and the second rotating shaft 802. The second rotating shaft 802 acts as a tensioning element. The operator then moves the paper roll 108 along the workbench 1 to below the support frame 107 and moves the initial end of the paper roll 108 to the far right of the support frame 107. At this point, the motor drives the first screw 302 to rotate, which in turn drives the moving block 303 to move. As the moving block 303 moves, it drives the chain 206 to rotate, and simultaneously, the moving block 303 also drives the glue sprayer 304 to move. The glue sprayer 304 applies glue to the paper roll 108 along a straight line. This is a single glue application, and the application area is a long straight line, which is just enough to stick the two ends of the paper roll 108 together without needing to apply glue over a large area.

[0048] After the glue is sprayed, the moving block 303 drives the glue sprayer 304 back, the pressure plate 201 rises, and then the motor drives the second screw 701 to rotate. The second screw 701 drives the moving cover 101 to move towards the pressure plate 201. The moving cover 101 moves to the side of the pressing assembly 2. At this time, the cylinder gripper 106 can grip one end of the paper roll 108 on the support frame 107 under the drive of the cylinder. When the cylinder gripper 106 has finished gripping one side of the paper roll 108, the motor reverses and drives the moving cover 101 to move back. When the moving cover 101 moves to the right side of the material trough 103, the cylinder gripper 106 releases. At this time, the first glue spraying point of the paper roll 108 moves to the top of the cutting blade 109, which is convenient for cutting the paper roll 108. Then, the first screw 302 drives the glue sprayer 304 to spray the paper roll 108 a second time. During the glue application process, the chain 206 drives the sleeve 203 to rotate, and the sleeve 203 then drives the column 202 to move downward. The column 202 drives the pressure plate 201 to press the paper roll 108 tightly. Then, the worker cuts off the part of the paper roll 108 that was first pulled by the moving cover 101 along the glue spraying point of the paper roll 108 using the cutting blade. Because the paper roll 108 is wet with glue, it is easier to cut. After the glue spraying point of the paper roll 108 is cut off, it is divided into two parts. One part is cut off and the other part remains on the cutting blade 109. The cut-off paper roll 108 is removed from the equipment by the worker. The moving block 303 drives the chain 206 to reverse, and the gear 205 and the sleeve 203 also reverse. The reverse rotation of the sleeve 203 drives the column 202 and the pressure plate 201 to rise. The pressure plate 201 no longer presses the paper roll 108 tightly, and then the paper roll 108 is cut again.

[0049] In the second continuous production process, the second screw 701 drives the moving cover 101 to move towards the pressure plate 201. The cylinder gripper 106 clamps one end of the paper roll 108. The motor reverses, driving the moving cover 101 to move back. When the moving cover 101 moves to the right side of the material trough 103, the cylinder gripper 106 releases. At this time, part of the paper roll 108 falls onto the plastic roll 110 at the entrance of the material trough 103, and part falls onto the right side of the material trough 103. At this time, the moving cover 101 is located on the right side of the material trough 103. Then, the feeding component 5 outside the equipment begins to feed material into the material trough 103. The moxa wool falls onto the paper roll 108. At this time, the paper roll 108 and the plastic roll 110 are in a falling position in the material trough 103 due to the gravity of the moxa wool. After feeding is completed, the motor is started to drive the second screw 701 to rotate. The second screw 701 drives the moving cover 101 to rotate. 01. Moving forward, the moving cover 101 moves and drives the plastic roll 110 to move and fold towards the support frame 107. The connecting shaft 102 moves synchronously with the moving cover 101. Under the action of the two ends of the opening of the material trough 103 on the worktable 1, the flexible plastic roll 110 moves to the left and drives the paper roll 108 on itself to wrap the moxa wool. When the connecting shaft 102 is completely moved to the other side of the material trough 103, the paper roll 108 completely wraps the moxa wool. At this time, the glued end of the paper roll 108 will stick to the paper roll 108 itself. After sticking, a preliminary cylindrical outline will be formed. At this time, the moving cover 101 continues to move forward. Under the push of the connecting shaft 102, through the cooperation of the connecting shaft 102 and the upper surface of the worktable 1, the circular outline of the paper roll 108 will continue to roll forward, finally forming a complete moxa stick.

[0050] When the moving cover 101 moves toward the pressing assembly 2, the paper roll 108 begins to roll up under the drive of the plastic roll 110. The pressure plate 201 presses down on the paper roll 108, and the other end of the paper roll 108 cannot move. The rolled-up part of the paper roll 108 becomes tighter and tighter. Because the cutting blade 109 is on the support frame 107, and there is a height difference between the support frame 107 and the worktable 1 (the support frame 107 is higher than the worktable 1), as the paper roll 108 becomes tighter and tighter, the paper roll 108 on the cutting blade 109 is subjected to pressure and is cut by the cutting blade 109. The cut paper roll 108 is then cut by the moving cover 101 and the plastic roll 110. The machine is rolled into a roll. The above steps complete the preparation for the next rolling. After the above steps are completed, the new model completes the automatic moxa roll forming. When the first screw 302 drives the moving block 303 to move, the moving block 303 will also drive the push plate 404 to move. The push plate 404 squeezes the air bag 401. The air bag 401 is squeezed and begins to expel air. The expelled air is discharged into the blowing pipe 405 through the air outlet pipe 403. The blowing pipe 405 is directly facing the surface of the workbench 1. The air blown out by the blowing pipe 405 can clean the moxa wool on the surface of the workbench 1, keeping the workbench 1 a clean working environment.

[0051] In the second type of continuous production, the glue sprayer 304 first sprays glue onto the paper roll 108. At this time, the pressure plate 201 presses the cut end of the paper roll 108, the moving cover 101 moves forward, the paper roll 108 is cut by pressure, the glue sprayer 304 moves back, the pressure plate 201 rises, and the cylinder gripper 106 clamps the paper roll 108. This step is continued until the work stops.

[0052] The paper roll 108 is cut at the middle of the part that is sprayed with glue. During the first run, part of the glued part of the cut paper roll 108 remains on the workbench 1. With the second spraying of glue and cutting, a paper roll 108 is formed with glue on both ends. The glue on one end is used for the first preliminary forming and bonding, and the second bonding is done after the roll is completely rolled.

Claims

1. A moxa stick rolling machine, characterized in that: It include workbench (1), compression assembly (2), glue spraying assembly (3), blowing assembly (4), blanking assembly (5), conveying assembly (6) and transmission assembly (8); The moving cover (101) is connected with the connecting shaft (102) in the inside, the workbench (1) is provided with the trough (103) along the moving direction of the moving cover (101), the outlet (104) is arranged on the side of the workbench (1) close to the compression assembly (2), the plastic roller (105) is arranged on the bottom of the workbench (1) and close to the outlet (104), the plastic roll (110) is arranged on the plastic roller (105), and the plastic roll (110) passes through the trough (103) and is fixed on the workbench (1); The glue spraying assembly (3) and the compression assembly (2) are arranged on the middle part of the workbench (1) through the support frame (107), the blowing assembly (4) is arranged on the side of the glue spraying assembly (3), the blanking assembly (5) is arranged on the top of the moving cover (101), the conveying assembly (6) is arranged below the workbench (1), the transmission assembly (8) is arranged at the tail end of the workbench (1), and the cutting blade (109) is fixedly connected to the side of the workbench (1) close to the support frame (107) and corresponding to the moving cover (101). The moving cover (101) is fixedly connected with two cylinder clamping jaws (106) on the side close to the support frame (107), and the two cylinder clamping jaws (106) are symmetrically distributed along the longitudinal axis of the moving cover (101).

2. The rolling machine for incense sticks as claimed in claim 1 wherein: The compression assembly (2) comprises a pressing plate (201), two mutually symmetrical vertical columns (202) are arranged on the top of the pressing plate (201), the vertical columns (202) penetrate through the top of the support frame (107), the outer surfaces of the two vertical columns (202) are threadedly connected with sleeves (203), the outer surfaces of the sleeves (203) are provided with protective covers (204), the outer surfaces of the two sleeves (203) are fixedly connected with gears (205), the two gears (205) are rotatable through a chain (206), and the gears (205) and the chain (206) are arranged in the inside of the protective cover (204).

3. The rolling machine for incense sticks as claimed in claim 2 wherein: The glue spraying assembly (3) comprises a frame body (305), a moving block (303) is arranged in the inside of the frame body (305) and threadedly connected with a first screw rod (302), a glue sprayer (304) for spraying glue is arranged on the moving block (303), a sliding groove is arranged on the side of the protective cover (204) close to the glue spraying assembly (3), and the symmetrical side of the moving block (303) and the glue sprayer (304) penetrates through the sliding groove and is fixedly connected with the chain (206).

4. The rolling machine for incense sticks as claimed in claim 3 wherein: The inside of the frame body (305) is divided into two cavities in upper and lower parts through a partition plate (301), the glue spraying assembly (3) is arranged in the lower cavity, the blowing assembly (4) is arranged in the upper cavity, and the top of the moving block (303) penetrates through the partition plate (301) and slides on the partition plate (301).

5. The rolling machine for incense sticks as claimed in claim 4 wherein: The blowing assembly (4) comprises an air bag (401), one end of the air bag (401) is fixedly connected with an air outlet pipe (403), the other end of the air outlet pipe (403) is fixedly connected with a blowing pipe (405), the other end of the air bag (401) is fixedly connected with a moving block (303) through a push plate (404), one side of the air bag (401) is fixedly connected with an air inlet pipe (402).

6. The rolling machine for incense sticks as claimed in claim 5 wherein: The blanking assembly (5) comprises a feeding barrel (501), a distribution box (502) is fixedly connected below the feeding barrel (501), a stacking plate (503) is fixedly connected in the distribution box (502), a pushing plate (504) is installed at the bottom of the stacking plate (503), the pushing plate (504) is pushed by a pneumatic cylinder (505), and the pushing plate (504) penetrates the distribution box (502).

7. The rolling machine for incense sticks as claimed in claim 6 wherein: The conveying assembly (6) comprises a conveying belt (601) and a supporting table (602), the conveying belt (601) is located on the supporting table (602), and the conveying belt (601) conveys the packaged tobacco rolls by a motor.

8. The rolling machine for incense sticks as claimed in claim 7 wherein: The power assembly (7) comprises a second screw rod (701), a sliding rod (702) and a motor, the second screw rod (701) is threadedly connected with one side of a moving cover (101), the sliding rod (702) is slidably connected with the other side of the moving cover (101), and the second screw rod (701) and the sliding rod (702) are symmetrically distributed along the longitudinal axis of the workbench (1).

9. The rolling machine for incense sticks as claimed in claim 8 wherein: The transmission assembly (8) comprises a first rotating shaft (801), a second rotating shaft (802) and two third rotating shafts (803), the first rotating shaft (801), the second rotating shaft (802) and the two third rotating shafts (803) are sequentially and rotatably connected on the workbench (1), and the first rotating shaft (801) is provided with a paper roll (108).

10. The rolling machine for incense sticks as claimed in claim 9 wherein: The paper roll (108) sequentially passes through the second rotating shaft (802) and the two third rotating shafts (803), and the second rotating shaft (802) tensions the paper roll (108).