An apparatus for processing an ai-branch
By using mold compaction, air extraction channels, and rubber roller control, the problems of moxa wool scattering and uneven glue application were solved, resulting in compact moxa sticks and high-quality packaging.
Patent Information
- Application Number
- CN202311030267.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-16
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2043-08-16
AI Technical Summary
Existing moxa stick processing equipment suffers from problems such as moxa wool easily scattering and causing waste, loose compaction, and difficulty in controlling the thickness of glue on the packaging paper, leading to a decline in packaging quality.
The method of combining mold compaction and air extraction channel ensures that the moxa wool is compacted tightly. The exhaust fan is used to prevent the moxa wool from sticking. The glue coating is controlled by the glue roller, and the sharp points are used to increase the friction between the packaging paper and the moxa stick.
Reduce waste of moxa wool, improve the compaction and packaging quality of moxa sticks, avoid damage to the packaging paper, and ensure that the moxa sticks are compact and not loose.
Smart Images

Figure CN117141868B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of wormwood processing, and particularly relates to an equipment for processing moxa sticks. BACKGROUND
[0002] A Chinese patent with the application number 201720326254.1 discloses an automatic moxa stick machine. The device can control the reciprocating movement of the supporting plate through the forward and reverse rotation of the motor, so as to facilitate the rolling of the moxa stick on the workbench. The device saves manpower, has high efficiency, small noise and small vibration, and does not produce a large amount of moxa dust. However, the device still needs manual filling and compaction of moxa during the rolling process of the moxa stick. Since the moxa is light and easy to scatter, a part of the moxa is inevitably wasted. In addition, the air in the gap between the moxa cannot be timely discharged during the compaction process of the moxa, so that the moxa is not tightly compacted, and the tightness of the moxa stick is reduced.
[0003] Further, the moxa stick usually needs to be coated with glue on the packaging paper, so that it can tightly wrap the moxa stick and ensure that the moxa stick is not loose. However, the device needs to be manually glued, so that the thickness of the glue on the packaging paper cannot be controlled, and the packaging paper is damaged due to excessive glue in the local part, and the packaging quality of the moxa stick is reduced. SUMMARY
[0004] In order to overcome the defects that the moxa is light and easy to scatter, a part of the moxa is wasted, the air in the gap between the moxa cannot be timely discharged during the compaction process of the moxa, the moxa is not tightly compacted, the tightness of the moxa stick is reduced, the thickness of the glue on the packaging paper cannot be controlled, the packaging paper is damaged due to excessive glue in the local part, and the packaging quality of the moxa stick is reduced, the present application provides an equipment for processing moxa sticks.
[0005] Technical scheme: An equipment for processing moxa sticks comprises a supporting frame, a rolling roller and a fixing frame. The rolling roller is movably connected to the supporting frame. The fixing frame is fixed to the upper side of the supporting frame. The moxa is placed on the supporting frame, and the moxa forms a moxa stick after being compacted. The equipment further comprises a rolling film, a supporting table, an upper die, a lower die, a feeding hopper and a gluing system. The rolling film is arranged on the upper side of the supporting frame to roll and package the moxa stick. The rolling film is fixed to the left and right sides of the supporting frame. The rolling roller is located below the rolling film. The supporting table is installed on the supporting frame and located below the rolling film. The packaging paper for packaging the moxa stick is placed on the upper side of the supporting table and located above the rolling film. The upper die is movably connected to the left side of the fixing frame to compact the moxa. The upper die is provided with an exhaust passage. The lower die is movably connected to the supporting frame to compact the moxa in cooperation with the upper die. The lower die is located below the upper die. The rolling film is located between the upper die and the lower die. The feeding hopper is connected to the upper die to prevent the moxa from scattering. The feeding hopper and the lower die form a compacting cavity. The gluing system is arranged on the fixing frame to spray glue on the packaging paper.
[0006] Further, the air suction machine is fixedly connected to the support frame, air blowing holes are formed in the inner wall of the feeding hopper to prevent the incense sticks from adhering to the inner wall of the feeding hopper, a cavity for air flow to enter the air blowing holes is arranged in the feeding hopper, the cavity is communicated with the air blowing holes, and an air supply pipe is arranged between the air outlet of the air suction machine and the feeding hopper.
[0007] Further, the upper die is divided into an upper part and a lower part, the upper part and the lower part are connected through a sliding interface for convenient disassembly, the upper part of the upper die is movably connected to the feeding hopper, the lower die is movably connected to the support frame for convenient replacement of the lower die, and the upper part of the upper die and the lower die are modular parts and are provided with different inner diameters.
[0008] Further, the support table is internally hollow, an air suction groove is formed in the upper side of the support table to facilitate air entering the inside of the support table, and air suction holes are formed in the roll film.
[0009] Further, the glue applying system comprises a glue storage bin, glue spraying heads and a glue roller, the glue storage bin is installed on the fixed frame and is capable of being lifted and horizontally moved, glue is stored in the glue storage bin, a plurality of glue spraying heads for spraying glue on the packaging paper are fixedly connected to the lower side of the glue storage bin, the glue spraying heads are communicated with the inside of the glue storage bin, and a glue roller for uniform glue coating is rotatably connected to the lower side of the glue storage bin.
[0010] Further, the glue applying system further comprises a first scraper, the first scraper is rotatably connected to the lower side of the glue storage bin and is used for scraping impurities on the surface of the glue roller, and the first scraper is located above the glue roller.
[0011] Further, the glue applying system further comprises a collection bin and a second scraper, the collection bin for collecting impurities is fixedly connected to the lower side of the glue storage bin, the collection bin is located to the left of the glue roller, the second scraper for scraping impurities to the left of the first scraper is connected to the upper side of the collection bin through a torsion spring, and the second scraper is located to the left of the first scraper.
[0012] Further, the glue applying system further comprises a baffle, the baffle for scraping impurities to the right of the first scraper is connected to the right of the collection bin through a torsion spring, and bristles are arranged on the left side of the baffle.
[0013] Further, the glue applying system further comprises a pressure roller, a flattening plate and a second elastic member, the pressure roller for rolling the packaging paper is rotatably connected to the lower side of the glue storage bin, the flattening plate for turning over the corners of the packaging paper is slidably connected to the upper side of the support table, the flattening plate is located between the roll film and the packaging paper, the flattening plate is arranged at an angle of 30 degrees with the horizontal plane, and the second elastic member is fixedly connected between the flattening plate and the support table.
[0014] Further, a plurality of spikes are arranged on the upper surface of the roll film, and the angles of the spikes are all different.
[0015] The beneficial effects of the present application are as follows compared with the prior art:
[0016] By moving the upper mold downward, the compaction cavity is closed, avoiding the scattering of moxa during the compaction process and reducing the waste of moxa. At the same time, the upper mold gradually applies pressure to the moxa, and the moxa is compacted tightly under the cooperation of the lower mold. The gas in the compaction cavity is discharged through the exhaust channel on the lower side of the upper mold, ensuring that the moxa is compacted tightly.
[0017] By generating airflow through the air extractor, the airflow is transmitted to the cavity through the air supply pipe, and then the airflow is blown out through the air blowing hole, blowing away the moxa adhering to the inner wall of the feeding hopper, preventing the moxa from adhering to the inner wall of the feeding hopper.
[0018] By rotating the rubber roller on the upper side of the packaging paper, the rubber roller extrudes the glue on the surface of the packaging paper, thereby avoiding the damage of the packaging paper caused by excessive glue in the local area, and further improving the packaging quality of the moxa stick.
[0019] By turning the folded corner out through the flattening plate, and simultaneously pressing the packaging paper with the pressing roller to make the folded corner flat, and making the packaging paper between the pressing roller and the rubber roller flat and not raised, the glue nozzle can spray glue to the folded corner, thereby avoiding the delamination of the edge of the packaging paper, and ensuring the packaging quality of the moxa stick.
[0020] By rolling the moxa stick on the surface of the rolling film, the sharp spike pierces the packaging paper into the surface of the moxa stick, and forms a recess on the surface of the packaging paper, increasing the contact area between the packaging paper and the moxa stick, thereby increasing the friction between the packaging paper and the moxa stick, ensuring that the packaging paper tightly wraps the moxa stick and is not easy to loosen. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the first kind of three-dimensional structure schematic diagram of the present application;
[0022] Figure 2 It is the second kind of three-dimensional structure schematic diagram of the present application;
[0023] Figure 3 It is the first kind of partial three-dimensional structure schematic diagram of the present application;
[0024] Figure 4 It is the second kind of partial three-dimensional structure schematic diagram of the present application;
[0025] Figure 5 It is a partial sectional view of the present application;
[0026] Figure 6 It is the Figure 5 enlarged view of the area A in the present application;
[0027] Figure 7 It is the Figure 5 enlarged view of the area B in the present application;
[0028] Figure 8 A third partial perspective view of the present application;
[0029] Figure 9 A support table and an air extractor combination perspective view of the present application; Figure 8 An enlarged view of the area at C in the middle;
[0030] Figure 10 A first partial perspective view of the present application;
[0031] Figure 11 A perspective view of the present application;
[0032] Figure 12 A first partial perspective view of the present application;
[0033] Figure 13 A partial sectional view of the present application;
[0034] Figure 14 A second partial perspective view of the present application;
[0035] Figure 15 A perspective view of the present application;
[0036] In the above drawings: 1 - support frame, 2 - rolled film, 2001 - air extraction hole, 2002 - sharp, 3 - rolled film roller, 4 - fixed frame, 5 - support table, 5001 - air extraction groove, 6 - upper mold, 6001 - air exhaust passage, 6002 - sliding interface, 7 - lower mold, 8 - feeding hopper, 8001 - compaction cavity, 8002 - air blowing hole, 8003 - hollow cavity, 9 - moxa stick, 201 - first sliding rail, 202 - first electric sliding block, 203 - first elastic member, 204 - air extractor, 205 - air supply pipe, 301 - glue storage bin, 302 - glue outlet nozzle, 303 - glue roller, 304 - second sliding rail, 305 - second electric sliding block, 306 - first driving member, 401 - first scraper, 402 - collection bin, 403 - second scraper, 404 - baffle, 405 - second driving member, 501 - compression roller, 502 - flattening plate, 503 - second elastic member. DETAILED DESCRIPTION
[0037] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0038] Example 1
[0039] As shown in Figures 3-10 An apparatus for processing moxa sticks 9, comprising a support frame 1, a roll stick roller 3 and a fixed frame 4; the roll stick roller 3 is connected to the support frame 1; the fixed frame 4 is fixed to the upper side of the support frame 1; the support frame 1 is placed with moxa, and the moxa forms moxa sticks 9 after compaction;
[0040] It also comprises a roll stick film 2, a support table 5, an upper die 6, a lower die 7, a feeding hopper 8 and a gluing system; the roll stick film 2 is arranged on the upper side of the support frame 1; the roll stick film 2 is fixed on the left and right sides of the support frame 1 respectively; the roll stick roller 3 is located on the lower side of the roll stick film 2; the support table 5 is installed on the support frame 1; the support table 5 is located on the lower side of the roll stick film 2; the packaging paper is placed on the upper side of the roll stick film 2; the upper die 6 is connected to the left side of the fixed frame 4; the upper die 6 is provided with an exhaust passage 6001 on the lower side; the lower die 7 is connected to the support frame 1; the lower die 7 is located below the upper die 6; the roll stick film 2 is located between the upper die 6 and the lower die 7; the feeding hopper 8 is connected to the upper die 6; a compaction cavity 8001 is formed between the feeding hopper 8 and the lower die 7, the compaction cavity 8001 is closed by moving the upper die 6 downward, which avoids the moxa from flying around during the compaction process, reduces the waste of moxa, at the same time, the upper die 6 gradually applies pressure to the moxa, and the moxa is compacted tightly with the cooperation of the lower die 7, the gas in the compaction cavity 8001 is discharged through the exhaust passage 6001 arranged on the lower side of the upper die 6, which ensures that the moxa is compacted tightly; the gluing system is arranged on the fixed frame 4, which sprays glue to the packaging paper, improving the packaging quality of the moxa sticks 9.
[0041] It also comprises an air extractor 204 and an air supply pipe 205; the air extractor 204 is fixed to the support frame 1; the blow hole 8002 is formed on the inner wall of the feeding hopper 8, and the cavity 8003 is arranged inside the feeding hopper 8; the cavity 8003 communicates with the blow hole 8002; the air supply pipe 205 communicates between the air outlet of the air extractor 204 and the feeding hopper 8, the airflow generated by the air extractor 204 is transmitted to the cavity 8003 through the air supply pipe 205, and then the airflow is blown out through the blow hole 8002, which blows away the moxa adhered to the inner wall of the feeding hopper 8, preventing the moxa from adhering to the inner wall of the feeding hopper 8.
[0042] The upper die 6 is divided into an upper part and a lower part, and the upper part and the lower part are connected through a sliding interface 6002, facilitating disassembly; the upper part of the upper die 6 is movably connected with the feeding hopper 8; the lower die 7 is movably connected with the support frame 1, facilitating replacement of the lower die 7; the lower part of the upper die 6 and the lower die 7 are both modularized parts, and are provided with different inner diameter sizes; corresponding modularized parts are selected according to the sizes of different incense sticks 9, so as to ensure that the compaction of the incense sticks 9 of different sizes can be adapted, and when the exhaust passage 6001 is blocked and needs to be cleaned, the lower part of the upper die 6 can be quickly disassembled through the sliding interface 6002, so as to facilitate cleaning of the exhaust passage 6001.
[0043] The support table 5 is internally hollow; the support table 5 is provided with an air extraction groove 5001 on the upper side; the roll film 2 is provided with an air extraction hole 2001; the air inlet of the air extractor 204 is in communication with the inside of the support table 5, and the air inside the support table 5 is extracted by the air extractor 204, so that the air pressure inside the support table 5 is less than the air pressure outside, and the packaging paper and the roll film 2 are tightly attached to each other through the pressure difference between the inside and outside of the support table 5.
[0044] Further comprising a first sliding rail 201 and a first electric sliding block 202; the support frame 1 is fixedly connected with two front and rear symmetrical first sliding rails 201; each first sliding rail 201 is movably connected with a first electric sliding block 202; the two first electric sliding blocks 202 are fixedly connected with the upper part of the upper die 6, and the upper die 6 is driven to move up and down through the up and down movement of the first electric sliding block 202 on the first sliding rail 201.
[0045] Further comprising a first elastic member 203; the first elastic member 203 is fixedly connected between the upper die 6 and the feeding hopper 8, and the first elastic member 203 is a spring telescopic rod, which enables the upper die 6 to continue to move downward when the feeding hopper 8 stops moving.
[0046] The processing process of the moxa stick 9 is described as follows: during the processing of the moxa, the worker usually needs to place the moxa in the form of a ball in the feeding position of the rolling machine, and compact the moxa to form the moxa stick 9, but during the compaction of the moxa, the moxa is easy to drift, resulting in waste of part of the moxa, and manual compaction of the moxa takes a long time and the compaction quality is unstable, thereby causing the yield of the moxa stick 9 to be not high, in order to avoid the above problems, when processing the moxa, the worker first lays the rolling film 2 flat, so that the rolling film 2 is flat and adheres to the upper surface of the support table 5 and the lower die 7, then controls the first electric sliding block 202 to move downward on the first sliding rail 201, drives the upper die 6 to move downward, and then the upper die 6 drives the feeding hopper 8 to move downward through the first elastic member 203, until the lower side of the feeding hopper 8 is adhered to the lower side of the lower die 7, so that a compaction cavity 8001 is formed between the feeding hopper 8 and the lower die 7, at this time the upper side of the compaction cavity 8001 is open and the lower side is sealed, the worker places the moxa in the compaction cavity 8001 through the feeding port on the left side of the feeding hopper 8, then controls the first electric sliding block 202 to continue to move downward, since the feeding hopper 8 is adhered to the lower die 7, the feeding hopper 8 cannot move downward, so that when the upper die 6 moves downward, the first elastic member 203 is compressed, as the upper die 6 moves downward, the upper die 6 closes the compaction cavity 8001, avoiding the moxa from drifting around during the compaction process, reducing the waste of moxa, at the same time, the upper die 6 gradually applies pressure to the moxa, and the moxa is compacted tightly under the cooperation of the lower die 7, in order to avoid that the air in the gap between the moxas cannot be discharged in time during the compaction process, resulting in that the moxa is not compacted tightly, the air in the compaction cavity 8001 is discharged through the exhaust passage 6001 on the lower side of the upper die 6, ensuring that the moxa is compacted tightly, on this basis, since the moxa is easy to adhere to the inner wall of the feeding hopper 8, part of the moxa is difficult to be compacted, therefore, the blowing holes 8002 are formed on the inner wall of the feeding hopper 8, and the cavity 8003 is arranged in the feeding hopper 8, air flow is generated by the air extractor 204, the air flow is transmitted to the cavity 8003 through the air supply pipe 205, then the air flow is blown out through the blowing holes 8002, the moxa adhered to the inner wall of the feeding hopper 8 is blown away, at the same time, since the exhaust passage 6001 is arranged on the lower side of the upper die 6, the air flow flows upward after passing through the blowing holes 8002, thereby driving the moxa on the inner wall of the feeding hopper 8 to move to the lower side of the upper die 6, ensuring that the moxa in the compaction cavity 8001 can be compacted, and improving the compaction density.
[0047] On this basis, since the incense stick 9 usually needs to be processed into different sizes, and the amount of incense needed for incense sticks 9 of different sizes is also very different, a single compaction die is difficult to meet the compaction of incense sticks 9 of different sizes. Therefore, the upper die 6 is divided into an upper part and a lower part, and the upper part and the lower part are connected through a sliding interface 6002 for easy disassembly. The lower die 7 is movably connected with the support frame 1, facilitating replacement of the lower die 7. The lower part of the upper die 6 and the lower die 7 are modular parts, provided with different inner diameters, and corresponding modular parts are selected according to the size of the incense stick 9, to ensure that the compaction of incense sticks 9 of different sizes can be adapted. When the exhaust channel 6001 needs to be cleaned due to blockage, the lower part of the upper die 6 can be quickly disassembled through the sliding interface 6002, thereby facilitating cleaning of the exhaust channel 6001.
[0048] Further, after the incense is compacted and the incense stick 9 is formed, the incense stick 9 needs to be rolled and packaged. The worker first lays the packaging paper on the upper side of the rolling film 2 within the range of the support table 5. At this time, the first electric sliding block 202 is controlled to move upwards, driving the upper die 6, the lower die 7 and the feeding hopper 8 to move upwards until a certain gap is left between the feeding hopper 8 and the lower die 7, facilitating the passage of the rolling roller 3. At this time, the incense stick 9 is located on the upper side of the lower die 7, and the incense stick 9 and the lower die 7 are left with the rolling film 2. By controlling the rolling roller 3 to move from left to right, the rolling film 2 is wrapped around the incense stick 9, and then the incense stick 9 is rolled in the rolling film 2. When the incense stick 9 rolls to the support table 5, the packaging paper is located between the incense stick 9 and the rolling film 2, so that the incense stick 9 rolls on the surface of the packaging paper, realizing the rolling and packaging of the incense stick 9. However, since the packaging paper is relatively light in quality and the surface is usually uneven with creases, as the rolling film 2 moves, the packaging paper is prone to deviate, resulting in loose packaging and uneven packaging paper at the end face, so that the incense stick 9 is prone to loosen, reducing the packaging quality of the incense stick 9. Therefore, the support table 5 is hollow inside, and an air extraction groove 5001 is formed on the upper side of the support table 5. An air extraction hole 2001 is formed on the rolling film 2. By controlling the air extractor 204 to extract and transport the air inside the support table 5 to the cavity 8003, the airflow enters the inside of the support table 5 through the air extraction hole 2001 and the air extraction groove 5001. When the packaging paper is laid on the surface of the rolling film 2, the air extraction hole 2001 is blocked, so that the air pressure inside the support table 5 is less than the air pressure outside. Through the pressure difference between the inside and outside of the support table 5, the packaging paper is tightly attached to the rolling film 2, thereby avoiding loose packaging and uneven packaging paper at the end face, and improving the packaging quality of the incense stick 9.
[0049] Embodiment 2
[0050] On the basis of embodiment 1, as Figures 11-15As shown, the gluing system comprises a glue storage bin 301, a glue outlet nozzle 302 and a glue roller 303; the glue storage bin 301 is mounted on the fixed frame 4; the glue storage bin 301 internally stores glue; a plurality of glue outlet nozzles 302 are fixedly connected to the lower middle part of the glue storage bin 301; the glue outlet nozzles 302 are in communication with the inside of the glue storage bin 301, and glue stored in the glue storage bin 301 is sprayed onto the upper side of the packaging paper through the glue outlet nozzles 302; the glue roller 303 is rotatably connected to the lower left part of the glue storage bin 301, and the glue roller 303 is rotated on the upper side of the packaging paper, so that the glue roller 303 extrudes the glue on the surface of the packaging paper, thereby avoiding damage to the packaging paper caused by excessive glue on the packaging paper in some areas, and further improving the packaging quality of the incense stick 9.
[0051] The gluing system further comprises a second sliding rail 304, a second electric sliding block 305 and a first driving member 306; two front and rear symmetrical second sliding rails 304 are fixedly connected to the upper side of the fixed frame 4; the second electric sliding block 305 is slidably connected to each second sliding rail 304; the first driving member 306 is fixedly connected to each second electric sliding block 305, and the first driving member 306 is an electric push rod; the extension end of each first driving member 306 is fixedly connected to the glue storage bin 301, and the glue storage bin 301 is driven to move up and down by controlling the first driving member 306, and the first driving member 306 and the glue storage bin 301 are driven to move left and right by controlling the second electric sliding block 305 to move left and right on the second sliding rail 304.
[0052] The gluing system further comprises a first scraper 401; the first scraper 401 is rotatably connected to the lower left part of the glue storage bin 301; the first scraper 401 is located above the glue roller 303, and the impurities on the surface of the glue roller 303 are scraped off by the first scraper 401 to ensure that the surface of the glue roller 303 is free of impurities.
[0053] The gluing system further comprises a collection bin 402 and a second scraper 403; the collection bin 402 is fixedly connected to the lower left part of the glue storage bin 301; the collection bin 402 is located to the left of the glue roller 303; the second scraper 403 is connected to the upper side of the collection bin 402 through a torsion spring; the second scraper 403 is located to the left of the first scraper 401, and the impurities attached to the left side of the first scraper 401 are scraped off by the second scraper 403, and the impurities are dropped into the collection bin 402 after being scraped off, thereby completing the collection of impurities.
[0054] The gluing system further comprises a baffle 404; the baffle 404 is connected to the right side of the collection bin 402 through a torsion spring; the baffle 404 is provided with bristles on the left side, and the impurities attached to the right side of the first scraper 401 are cleaned by the bristles provided on the baffle 404.
[0055] The gluing system further comprises a second driving member 405; two front and rear symmetrical second driving members 405 are connected to the upper side of the collecting bin 402 through hinges, and the second driving member 405 is an electric push rod; the telescopic end of each second driving member 405 is connected to the first scraper 401 through a hinge, and the first scraper 401 is driven to rotate by the second driving member 405.
[0056] The gluing system further comprises a pressure roller 501, a flattening plate 502 and a second elastic member 503; the lower side of the glue storage bin 301 is rotationally connected to the pressure roller 501; the upper side of the support table 5 is slidingly connected to the flattening plate 502; the flattening plate 502 is located between the rolled film 2 and the packaging paper; the flattening plate 502 is arranged at an angle of 30 degrees to the horizontal plane, and the flattening plate 502 is used to turn the folded corner outwards, and the pressure roller 501 is used to roll and press the packaging paper to make the folded corner flat, and at the same time, the packaging paper between the pressure roller 501 and the glue roller 303 is flattened without being raised, so that the glue nozzle 302 can spray glue to the folded corner, thereby avoiding the delamination of the edge of the packaging paper and ensuring the packaging quality of the moxa stick 9; the second elastic member 503, which is a spring telescopic rod, is fixed between the flattening plate 502 and the support table 5, and the second elastic member 503 is used to realize the reset movement of the flattening plate 502.
[0057] The gluing process is described as follows: in order to ensure the packaging quality of the moxa stick 9, it is necessary to apply glue to the surface of the packaging paper, so that the packaging paper is tightly bonded. To this end, the telescopic end of the first driving member 306 is controlled to be elongated, the glue storage bin 301, the glue nozzle 302 and the glue roller 303 are driven to move downwards until the glue roller 303 contacts the upper surface of the packaging paper, then the second electric sliding block 305 is controlled to slide to the right on the second sliding rail 304, thereby driving the glue storage bin 301, the glue nozzle 302 and the glue roller 303 to move to the right, and at the same time, the glue roller 303 is rotated clockwise by the friction between the glue roller 303 and the packaging paper, so that the glue stored in the glue storage bin 301 is sprayed onto the upper surface of the packaging paper through the glue nozzle 302. In order to avoid the damage of the packaging paper caused by excessive glue on the packaging paper, the glue roller 303 is rotated on the upper side of the packaging paper, so that the glue roller 303 extrudes the glue on the surface of the packaging paper, and the excess glue flows to the right under the extrusion of the glue roller 303, thereby ensuring the uniform thickness of the glue on the surface of the packaging paper, avoiding the damage of the packaging paper caused by excessive glue on the packaging paper, and further improving the packaging quality of the moxa stick 9.
[0058] On this basis, since the glue roller 303 is extruded by the glue, the glue is attached to the surface of the glue roller 303, and the glue roller 303 surface is easy to stick to the packaging paper scraps, moxa and dust and other impurities, the impurities are adhered to the surface of the packaging paper by the rotation of the glue roller 303, which reduces the adhesion of the glue on the surface of the packaging paper, and makes the packaging paper easy to delaminate. To this end, by controlling the length of the second driving member 405, the first scraper 401 approaches the surface of the glue roller 303 and leaves a gap with the glue roller 303, preventing the first scraper 401 from scraping off the glue on the surface of the glue roller 303. When the glue roller 303 rotates clockwise, the impurities adhered to the surface of the glue roller 303 are separated from the glue roller 303 by the first scraper 401, so that the impurities are attached to the surface of the first scraper 401, ensuring that the surface of the glue roller 303 is free of impurities. Further, when the first scraper 401 has a lot of impurities attached to its surface, the first scraper 401 is controlled to rotate clockwise by the second driving member 405 until the lower side of the first scraper 401 is turned into the collection bin 402. At the same time, the second scraper 403 is pressed by the first scraper 401 to rotate clockwise, and the torsion spring is stressed to make the second scraper 403 adhere to the left side of the first scraper 401 for cleaning, scraping off the impurities attached to the left side of the first scraper 401. After the impurities are scraped off, they fall into the collection bin 402, completing the collection of impurities and cleaning the left side of the first scraper 401. Further, the right side of the first scraper 401 also has a lot of impurities attached. After the left side of the first scraper 401 is cleaned, the first scraper 401 is controlled to rotate counterclockwise by the second driving member 405. At this time, the first scraper 401 contacts the baffle 404, and the bristles provided on the baffle 404 clean the impurities attached to the right side of the first scraper 401. Since the baffle 404 is connected to the collection bin 402 by a torsion spring, the baffle 404 rotates clockwise under the pressure of the first scraper 401 until the first scraper 401 and the baffle 404 are separated. The baffle 404 is reset by the torsion spring, and the first scraper 401 continues to rotate counterclockwise until the upper side of the glue roller 303. The second scraper 403 is reset by the torsion spring, and the self-cleaning of the first scraper 401 is completed.
[0059] Further, since the wrapping paper is prone to curling at the corners, forming downwardly turned corners, the corners are not coated with glue, causing the corners to peel off. Therefore, when the glue storage bin 301 moves downward, the glue storage bin 301 contacts the flattening plate 502, and then the glue storage bin 301 moves rightward, driving the flattening plate 502 to move rightward, and the second elastic member 503 is stretched under stress. When the glue outlet nozzle 302 moves rightward to spray glue, the wrapping paper on the right side of the glue outlet nozzle 302 is located between the flattening plate 502 and the compression roller 501. Since the flattening plate 502 is arranged at an angle of 30 degrees with the horizontal plane, when the flattening plate 502 passes the wrapping paper, a gap is left between the wrapping paper and the rolled film 2, and the corner is turned out by the flattening plate 502, and the corner is flattened by the compression roller 501, and the wrapping paper between the compression roller 501 and the glue roller 303 is flattened without curling, facilitating the glue outlet nozzle 302 to spray glue to the corner, thereby avoiding peeling off of the corners of the wrapping paper and ensuring the quality of the moxa stick 9.
[0060] Embodiment 3
[0061] On the basis of Embodiment 1 or 2, as shown in Figure 1 、 Figure 2 and Figure 9 , although the wrapping paper is coated with glue on the surface, after a long period of storage, the glue ages and peels off, causing the moxa stick 9 to be loosely packed. To avoid this, the upper surface of the rolled film 2 is provided with a plurality of spikes 2002. The angles of the plurality of spikes 2002 are all different. When the moxa stick 9 rolls on the surface of the rolled film 2, the spikes 2002 contact and penetrate the surface of the moxa stick 9. Since the wrapping paper is located between the moxa stick 9 and the rolled film 2, the spikes 2002 penetrate the surface of the moxa stick 9 together with the wrapping paper, and form recesses on the surface of the wrapping paper, increasing the contact area between the wrapping paper and the moxa stick 9, thereby increasing the friction between the wrapping paper and the moxa stick 9, ensuring that the wrapping paper tightly wraps the moxa stick 9 and is not prone to looseness. In addition, since the angles of the spikes 2002 are all different, the recesses on the wrapping paper are independent of each other. When the wrapping paper partially peels off, the adjacent recesses can block the peeling range from expanding, avoiding affecting the unpeeled part, and ensuring that the wrapping paper tightly wraps the moxa stick 9.
[0062] The above merely illustrates the specific embodiments of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which shall be covered within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.
Claims
1. An apparatus for processing moxa sticks, comprising a support frame (1), a winding roller (3), and a fixing frame (4); the support frame (1) is connected to the winding roller (3), which moves left and right; the fixing frame (4) is fixedly connected to the upper side of the support frame (1); moxa wool is placed on the support frame (1), and the moxa wool is compacted to form moxa sticks (9); characterized in that: The application also comprises a roll film (2), a support table (5), an upper mold (6), a lower mold (7), a feeding hopper (8) and a glue applying system; the upper side of the support frame (1) is provided with the roll film (2) for rolling and packaging the moxa sticks (9); the left and right sides of the roll film (2) are fixed on the left and right sides of the support frame (1) respectively; the roll film (2) is located below the roll film (2); the support table (5) is installed on the support frame (1); the support table (5) is located below the roll film (2); the support table (5) is provided with the packaging paper for packaging the moxa sticks (9) on the upper side of the roll film (2); the left side of the fixed frame (4) is connected with the upper mold (6) for moving up and down to compact the moxa; the lower side of the upper mold (6) is provided with an exhaust passage (6001); the support frame (1) is connected with the lower mold (7) for compacting the moxa in cooperation with the upper mold (6); the lower mold (7) is located below the upper mold (6); the roll film (2) is located between the upper mold (6) and the lower mold (7); the upper mold (6) is connected with the feeding hopper (8) for preventing the moxa from scattering; the feeding hopper (8) and the lower mold (7) form a compacting cavity (8001); the fixed frame (4) is provided with the glue applying system for spraying glue on the packaging paper; The application also comprises an air extractor (204) and a gas delivery pipe (205); the air extractor (204) is fixed on the support frame (1); the inner wall of the feeding hopper (8) is provided with the air blowing hole (8002) for preventing the moxa from adhering to the inner wall of the feeding hopper (8); the inner part of the feeding hopper (8) is provided with the cavity (8003) for air flow to enter the air blowing hole (8002); the cavity (8003) is in communication with the air blowing hole (8002); the air outlet of the air extractor (204) is in communication with the feeding hopper (8) through the gas delivery pipe (205); The glue applying system comprises a glue storage bin (301), glue spraying nozzles (302) and glue rollers (303); the glue storage bin (301) is installed on the fixed frame (4) and can move up and down and left and right; the glue storage bin (301) stores glue; the lower side of the glue storage bin (301) is fixedly connected with a plurality of glue spraying nozzles (302) for spraying glue on the packaging paper; the glue spraying nozzles (302) are in communication with the inner part of the glue storage bin (301); the lower side of the glue storage bin (301) is rotatably connected with the glue rollers (303) for uniform glue coating; The glue applying system also comprises a pressing roller (501), a flattening plate (502) and a second elastic member (503); the lower side of the glue storage bin (301) is rotatably connected with the pressing roller (501) for rolling and pressing the packaging paper; the upper side of the support table (5) is slidably connected with the flattening plate (502) for turning over the corners of the packaging paper; the flattening plate (502) is located between the roll film (2) and the packaging paper; the flattening plate (502) is arranged at an angle of 30 degrees with the horizontal plane; the second elastic member (503) is fixedly connected between the flattening plate (502) and the support table (5).
2. The apparatus for processing of incense sticks as claimed in claim 1 wherein: The upper die (6) is divided into an upper part and a lower part, and the upper part and the lower part are connected through a sliding interface (6002) to facilitate disassembly; the upper part of the upper die (6) is movably connected with the feeding hopper (8); the lower die (7) is movably connected with the support frame (1) to facilitate replacement of the lower die (7); the lower part of the upper die (6) and the lower die (7) are modular parts and are provided with different inner diameters.
3. The apparatus for processing of an incense stick as claimed in claim 2 wherein: The support table (5) is internally hollow; the upper side of the support table (5) is provided with an air extraction groove (5001) for facilitating air to enter the inside of the support table (5); the winding strip film (2) is provided with an air extraction hole (2001); and the air inlet of the air extractor (204) is in communication with the inside of the support table (5).
4. The apparatus for processing of incense sticks as claimed in claim 1 wherein: The gluing system further comprises a first scraper (401); the lower side of the glue storage bin (301) is rotatably connected with the first scraper (401) for scraping off impurities on the surface of the glue roller (303); and the first scraper (401) is located above the glue roller (303).
5. The apparatus for processing of incense sticks as claimed in claim 4 wherein: The gluing system further comprises a collection bin (402) and a second scraper (403); the lower side of the glue storage bin (301) is fixedly connected with the collection bin (402) for collecting impurities; the collection bin (402) is located to the left of the glue roller (303); the upper side of the collection bin (402) is connected with the second scraper (403) through a torsion spring, and the second scraper (403) is used for scraping off impurities to the left of the first scraper (401); and the second scraper (403) is located to the left of the first scraper (401).
6. The apparatus for processing of incense sticks as claimed in claim 5 wherein: The gluing system further comprises a baffle (404); the right side of the collection bin (402) is connected with the baffle (404) through a torsion spring, and the baffle (404) is used for scraping off impurities to the right of the first scraper (401); and the left side of the baffle (404) is provided with bristles.
7. The apparatus for processing of incense sticks as claimed in claim 1 wherein: The upper surface of the winding strip film (2) is provided with a plurality of spikes (2002); the angles of the plurality of spikes (2002) are all inconsistent.
Citation Information
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