Automatic stone grinding moxa production line
By designing an automated fossil milling production line, the problem of low efficiency of traditional stone milling milling technology is solved, and the automated crushing, screening and dust removal of mugwort is realized, and the quality and efficiency of moxa velvet are improved.
Patent Information
- Application Number
- CN202422245280.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-12
AI Technical Summary
The traditional stone-milling mugwort technology has the problems of single equipment, time-consuming and low efficiency, and it is difficult to achieve automated extraction and flow operation of high-proportion mugwort.
An automated fossil milling production line is designed, including parallel stone milling mechanisms, dust removal systems, cylinder wool lifting screens and flat screens. Through wind feeding and bag dust removal technology, the automated rolling, screening and dust removal of mugwort is realized.
It improves the quality and efficiency of moxa velvet lifting, realizes the automation and modernization of ancient moxa velvet lifting, is energy-saving and environmentally friendly, can produce high-quality moxa velvet on a large scale, and effectively utilizes moxa velvet.
Smart Images

Figure CN223029044U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of moxa floss processing equipment, and particularly relates to an automated stone mill moxa floss production line. Background Art
[0002] The stone mill is a traditional process for mugwort, which can better preserve the fiber structure of mugwort. The moxa floss extracted by the stone mill has high quality, and there is a high market demand for the mugwort market that pays attention to quality. However, the traditional stone mill moxa floss technology has the disadvantages of single equipment, time-consuming and laborious, and relatively low efficiency. For the extraction of high-proportion moxa floss, manual operation on the equipment is required repeatedly for many times, the production process cannot be carried out in a streamlined manner, and the cost performance of moxa floss extraction is relatively low. Summary of the Utility Model
[0003] The purpose of the utility model is to overcome the deficiencies of the prior art, and provide an automated stone mill moxa floss production line, which crushes mugwort with a stone mill and then performs dust removal and screening, realizes the automation of the ancient method of moxa floss extraction, and improves the quality of moxa floss.
[0004] The utility model is realized by the following technical solutions: an automated stone mill moxa floss production line, including several groups of parallel stone mill mechanisms. A dust removal hood is arranged directly above the stone mill mechanism, a dust removal chimney is arranged at the top of the dust removal hood, the dust removal chimney is connected to the dust removal main pipeline arranged above, the end of the dust removal main pipeline is connected to a dust collection box. The discharge port of the stone mill mechanism is connected to the main conveying pipeline through a lifting pipeline, the end of the main conveying pipeline is connected to the feed port of a cyclone arranged outside the cylindrical moxa floss sieve, the discharge port at the bottom of the cyclone is communicated with the cylindrical moxa floss sieve, the discharge port of the cylindrical moxa floss sieve is communicated with the feed port of a flat sieve, and the discharge port of the flat sieve receives the finished product. The top dust removal port of the cyclone is connected to a fan arranged at the top of the cylindrical moxa floss sieve through a pipeline, and the top of the fan is connected to the top of the dust collection box.
[0005] Preferably, the stone mill mechanism includes a stone mill bottom frame, a stone mill disc is arranged on the stone mill bottom frame, a central rotating shaft is arranged at the center of the stone mill disc, the central rotating shaft is connected to a motor arranged at the bottom of the stone mill disc, the top end of the central rotating shaft is connected to the central axis of the stone mill through a connecting plate, and a discharge port is opened on the stone mill disc.
[0006] Preferably, baffles are arranged on the circumference of the stone mill disc.
[0007] Preferably, a guard plate is arranged on the outer circumference of the stone mill disc.
[0008] Preferably, the cylindrical fleece screen comprises a cylindrical screen body, a top end of the cylindrical screen body is provided with a feed port corresponding to the shaklon discharge port, a circular screen main shaft is provided in the cylindrical screen body, and the circular screen main shaft is driven to rotate by a circular screen motor provided on the cylindrical screen body, a plurality of circular screen wheels are provided on the circular screen main shaft, a plurality of circular screen wheels are covered with a screen mesh on the outside, a plurality of mugwort residue outlets are provided at the bottom of the screen mesh, and the plurality of mugwort residue outlets are connected with the feed port at the top of the shaklon of the mugwort residue baler through pipes.
[0009] Preferably, the flat screen comprises a flat screen bracket, on which an inclined flat screen body is provided, the high end of the flat screen body is connected to the discharge port of the cylindrical wool screen, the low end of the flat screen body is the moxa discharge port, and below the moxa discharge port is the moxa ash discharge port, and a flat screen motor is provided at the bottom of the flat screen bracket, and the main shaft of the flat screen motor is connected to a rotating wheel that drives the flat screen to move through a belt.
[0010] Beneficial Effects
[0011] The utility model grinds the wormwood into wormwood wool by stone mill, and then performs secondary screening and dust removal through drum screen and flat screen, and adopts wind feeding, bag dust removal technology, automatic flow operation, high wool extraction efficiency, energy saving and environmental protection, time saving and labor saving. On the basis of inheriting the ancient method of wool extraction, combined with modern technology, it can produce large-scale fossil mill wool extraction, the obtained wormwood wool is of good quality, and the wormwood residue can be effectively utilized, cc BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a schematic diagram of the overall structure of the utility model.
[0013] Figure 2 It is a structural schematic diagram of the stone mill of the utility model.
[0014] Figure 3 It is a structural side view of the stone mill of the utility model.
[0015] Figure 4 It is a structural schematic diagram of the cylindrical fleece screen of the utility model.
[0016] Figure 5 It is a structural schematic diagram of the flat screen of the utility model.
[0017] Figure 6 It is a schematic diagram of the combined structure of the cylindrical fleece screen and the flat screen of the utility model. DETAILED DESCRIPTION
[0018] In order to make the purpose, technical solution and advantages of the utility model more clear, the utility model is further described in detail in combination with specific embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.
[0019] As shown Figure 1 —in FIG. 6, the utility model relates to an automated stone mill mugwort floss production line, which comprises a plurality of groups of parallel stone mill mechanisms 1. A dust removal hood 2 is arranged directly above the stone mill mechanism 1. A dust removal chimney 3 is arranged at the top of the dust removal hood 2. The dust removal chimney 3 is connected to a dust removal main pipeline 4 arranged above. The end of the dust removal main pipeline 4 is connected to a dust collection box 5. The discharge port 6 of the stone mill mechanism 1 is connected to a main conveying pipeline 8 through a lifting pipeline 7. The end of the main conveying pipeline 8 is connected to the feed port of a cyclone 10 arranged outside a cylindrical floss sieve 9. The discharge port at the bottom of the cyclone 10 is communicated with the cylindrical floss sieve 9. The discharge port of the cylindrical floss sieve 9 is communicated with the feed port of a flat sieve 11. The discharge port of the flat sieve 11 receives the finished product. The top dust removal port of the cyclone 10 is connected to a blower 12 arranged at the top of the cylindrical floss sieve 9 through a pipeline. The top of the blower 12 is connected to the top of the dust collection box 5.
[0020] The stone mill mechanism 1 includes a stone mill bottom frame 13. A stone mill disc 14 is arranged on the stone mill bottom frame 13. A central rotating shaft 15 is arranged at the center of the stone mill disc 14. The central rotating shaft 15 is connected to a motor 16 arranged at the bottom of the stone mill disc 14. The top end of the central rotating shaft 15 is connected to the central axis 19 of a stone mill 18 through a connecting plate 17. The discharge port 6 is arranged on the stone mill disc 14. A number of groups of the stone mill mechanisms 1 can be arranged according to the workshop conditions and connected in parallel to improve the efficiency. The mugwort is repeatedly ground into floss by the stone mill. The mugwort floss produced by the ancient method has better efficacy.
[0021] Furthermore, a baffle 20 is arranged on the circumference of the stone mill disc 14; the baffle 20 prevents the mugwort floss from falling during the grinding process.
[0022] Furthermore, a guard plate 35 is arranged on the outer circumference of the stone mill disc 14; the guard plate 35 can enhance the firmness of the stone mill disc 14 and extend its service life.
[0023] Furthermore, the cylindrical floss sieve 9 includes a cylindrical sieve body 21. One end at the top of the cylindrical sieve body 21 is provided with a feed port corresponding to the discharge port of the cyclone 10. A circular sieve main shaft 22 is arranged inside the cylindrical sieve body 21. The circular sieve main shaft 22 is driven to rotate by a circular sieve motor 23 arranged on the cylindrical sieve body 21. A number of circular sieve wheels 24 are arranged on the circular sieve main shaft 22. A sieve mesh 25 covers the outside of the number of circular sieve wheels 24. A number of mugwort residue outlets 26 are arranged at the bottom of the sieve mesh 25. The number of mugwort residue outlets 26 is communicated with the feed port at the top of a mugwort residue baling cyclone 27 through a pipeline; the ground mugwort floss is further screened and dust-removed by the cylindrical floss sieve 9 to remove the impurities in the mugwort floss, and the appearance of the mugwort floss is better.
[0024] Furthermore, the planishing screen 11 includes a planishing screen support 28, on which there is an inclined planishing screen body 29. The high end of the planishing screen body 29 is communicated with the discharge port of the cylindrical fluffing screen 9, the low end of the planishing screen body 29 is the moxa floss discharge port 30, and below the moxa floss discharge port 30 is the moxa ash discharge port 31. At the bottom of the planishing screen support 28, there is a planishing screen motor 32, and the main shaft of the planishing screen motor 32 is connected to a runner 34 that drives the planishing screen to move through a belt 33; After screening by the cylindrical fluffing screen 9, final screening is carried out by the planishing screen 11 to further improve the quality of moxa floss.
[0025] The working principle of the present utility model is as follows: Fill wormwood into the stone mill disc 14, start the motor 16, the stone mill 18 rotates to roll the wormwood, and the rolled moxa floss is discharged from the discharge port 6, then enters the main conveying pipeline 8 through the feeding pipeline 7 and then enters the cylindrical fluffing screen 9 for secondary screening. The dust generated by the stone mill is sucked away by the dust removal hood 2 above it and collected in the dust collection box 5. The moxa floss screened by the cylindrical fluffing screen 9 further enters the planishing screen 11 for screening. The screened moxa floss is directly the finished product. The moxa residue coming out from the bottom of the cylindrical fluffing screen 9 enters the cyclone 27 of the moxa residue baler through the moxa residue outlet 26 through the pipeline and then enters the moxa residue baler for baling. The baled moxa residue can be reused, such as making foot bath bags, etc., without causing waste.
[0026] Combined with modern fluffing process technology, on the basis of inheriting the advantages of traditional technology, the present utility model adopts automated flow operation. Through advanced fluffing processes such as the cylindrical fluffing screen 9 and the planishing screen 11, combined with air suction feeding and cloth bag dust removal technology, it effectively overcomes the disadvantages of the ancient fluffing method, greatly improves the production efficiency, and meets the requirements of dust-free environmental protection. It is an innovative automated moxa fluffing technology that combines the ancient and modern methods and carries forward the past and opens up the future.
[0027] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various optimizations, changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. An automated stone-milled moxa production line, characterized in that: The invention comprises a plurality of parallel stone mill mechanisms (1), wherein a dust collecting hood (2) is arranged directly above the stone mill mechanism (1), a dust collecting chimney (3) is arranged on the top of the dust collecting hood (2), the dust collecting chimney (3) is connected to a dust collecting main pipeline (4) arranged above, the end of the dust collecting main pipeline (4) is connected to a dust collecting box (5), the material outlet (6) of the stone mill mechanism (1) is connected to a main material conveying pipeline (8) through a material lifting pipeline (7), the end of the main material conveying pipeline (8) is connected to a cylindrical lifting pipeline (8), and the end of the cylindrical lifting pipeline (8) is connected to a main material conveying pipeline (8). The feed port of the shaker (10) arranged outside the screen (9) is connected, the discharge port at the bottom of the shaker (10) is connected to the cylindrical fleece screen (9), the discharge port of the cylindrical fleece screen (9) is connected to the feed port of the flat screen (11), the discharge port of the flat screen (11) is connected to the finished product, the top dust removal port of the shaker (10) is connected to the fan (12) arranged on the top of the cylindrical fleece screen (9) through a pipeline, and the top of the fan (12) is connected to the top of the dust collecting box (5).
2. The automated stone-milled moxa production line according to claim 1, characterized in that: The stone mill mechanism (1) comprises a stone mill bottom frame (13), a stone mill disc (14) is arranged on the stone mill bottom frame (13), a central rotating shaft (15) is arranged at the center of the stone mill disc (14), the central rotating shaft (15) is connected to a motor (16) arranged at the bottom of the stone mill disc (14), the top end of the central rotating shaft (15) is connected to the central shaft (19) of the stone mill (18) through a connecting plate (17), and a discharge port (6) is opened on the stone mill disc (14).
3. The automated stone-milled moxa production line according to claim 2, characterized in that: A baffle (20) is provided on the circumference of the stone mill disc (14).
4. The automated stone-milled moxa production line according to claim 2, characterized in that: A guard plate (35) is provided on the outer circumference of the stone mill disc (14).
5. The automated stone-milled moxa production line according to claim 1, characterized in that: The cylindrical fleece screen (9) comprises a cylindrical screen body (21), a top end of the cylindrical screen body (21) is provided with a feed port corresponding to the discharge port of the shakron (10), a circular screen main shaft (22) is provided inside the cylindrical screen body (21), and the circular screen main shaft (22) is driven to rotate by a circular screen motor (23) provided on the cylindrical screen body (21), a plurality of circular screen wheels (24) are provided on the circular screen main shaft (22), a plurality of circular screen wheels (24) are covered with a screen (25) on the outside, a plurality of mugwort residue outlets (26) are provided at the bottom of the screen (25), and the plurality of mugwort residue outlets (26) are connected to the feed port at the top of the shakron (27) of the mugwort residue packaging machine through a pipeline.
6. The automated stone-milled moxa production line according to claim 1, characterized in that: The flat screen (11) comprises a flat screen support (28), on which an inclined flat screen body (29) is arranged, the high end of the flat screen body (29) is connected to the discharge port of the cylindrical velvet screen (9), the low end of the flat screen body (29) is the moxa discharge port (30), and below the moxa discharge port (30) is the moxa ash discharge port (31), and a flat screen motor (32) is arranged at the bottom of the flat screen support (28), and the main shaft of the flat screen motor (32) is connected to a rotating wheel (34) that drives the flat screen to move through a belt (33).