Leontopodium alpinum processing equipment and processing method capable of automatically grinding and extracting grass juice
By introducing shearing, pneumatic mixing, and cleaning components into the alpine edelweiss processing equipment, the problems of low equipment efficiency and fiber entanglement were solved, achieving efficient and uniform extraction of edelweiss juice.
Patent Information
- Application Number
- CN202511743832.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-25
- Publication Date
- 2026-01-27
AI Technical Summary
Existing alpine edelweiss processing equipment is inefficient during crushing and grinding, and the stirring blades are prone to fiber entanglement, leading to equipment damage.
The system employs a shearing component and a wind-powered mixing component. The shearing component performs initial shearing through the relative rotation of the first and second fixed discs. The wind-powered mixing component blows the unshorn grass through the cooperation of fan blades and actuating pins. The cleaning component cleans the residue in the gaps through rolling beads and airflow.
It improves processing efficiency, reduces labor intensity, avoids fiber entanglement, reduces equipment damage, and ensures uniform crushing and cleanliness of alpine edelweiss.
Smart Images

Figure CN121402206A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of alpine edelweiss processing technology, specifically to an automatic grinding and extraction equipment and method for alpine edelweiss processing. Background Technology
[0002] The processing methods of Edelweiss vary depending on its intended use. The most common methods are tea preparation and extract preparation. In addition, there is a special crushing and processing technology for its high fiber content. The Edelweiss crushing and grinding equipment works by adding Edelweiss into the equipment and crushing and grinding the material into fine powder through the operation of the equipment, which is convenient for subsequent grinding with water to make pulp and extract juice. In the existing technology, there are certain drawbacks when processing edelweiss in grinding equipment. When the mixing blades of the crushing and grinding equipment crush and grind edelweiss, it is troublesome and inefficient to use the mixing blades to mix the larger edelweiss into a finer texture. Furthermore, the edelweiss is relatively long before and after shearing, which can easily cause the fibers to become entangled on the equipment and damage it. Summary of the Invention
[0003] The purpose of this invention is to provide an automatic grinding and extraction equipment and method for processing Edelweiss juice, so as to solve the problems mentioned in the background art.
[0004] The objective of this invention can be achieved through the following technical solutions: An automatic grinding and extraction device for edelweiss juice includes a fixed frame, a drive motor, a grinding box, and a stirring blade. The drive motor is installed inside the fixed frame, the grinding box is installed at the output shaft of the drive motor, and the stirring blade is located inside the grinding box. The output shaft of the drive motor is connected to the stirring blade. A shearing assembly is installed inside the grinding box on the output shaft of the drive motor. The shearing assembly includes a first connecting shaft and a fixed seat welded together. Both the first connecting shaft and the fixed seat rotate synchronously with the output shaft of the drive motor. A first fixed plate is welded to the outside of the fixed seat, and a first bevel gear is welded to the inside of the first fixed plate. A second connecting shaft is rotatably connected to the end of the fixed seat, and a second fixed plate is rotatably connected to the outside of the second connecting shaft. A second bevel gear is welded to the inside of the second fixed plate, and a third bevel gear is rotatably connected to the outside of the second connecting shaft. Both the first and second bevel gears mesh with the third bevel gear. The first and second fixed plates rotate in opposite directions. A first shearing hole is formed on the surface of the first fixed plate, and a second shearing hole is formed on the surface of the second fixed plate. The first and second shearing holes are used for preliminary shearing of the edelweiss inside the grinding box.
[0005] As a preferred embodiment of the present invention, a first fixing groove is provided in the middle position of the first fixing plate, a first bevel gear is welded inside the first fixing groove, a second fixing groove is provided in the middle position of the second fixing plate, a second bevel gear is welded inside the second fixing groove, and the end of the second connecting shaft is rotatably connected to the second bevel gear.
[0006] In a preferred embodiment of the present invention, the output shaft of the drive motor, the first connecting shaft, and the fixed base are fixed together. The top end of the second connecting shaft is welded to the grinding box through a connecting frame. The fixed base rotates relative to the second connecting shaft. The axes of the first bevel gear and the second bevel gear are both perpendicular to the axis of the third bevel gear. The rotation direction of the first bevel gear is opposite to that of the second bevel gear.
[0007] As a preferred embodiment of the present invention, a connecting pin is integrally manufactured at the bottom end of the second connecting shaft, a nut is threadedly connected to the end of the connecting pin, a connecting sleeve is threadedly connected to the end of the fixed seat, the nut at the end of the connecting pin is located inside the connecting sleeve, the connecting pin is rotatably connected to the inside of the connecting sleeve, and a threaded sleeve is provided in the middle of the second connecting shaft, the threaded sleeve is used to restrict the second fixed disc from moving axially.
[0008] As a preferred embodiment of the present invention, a wind-powered stirring assembly is provided on the edge of the first fixed disk. The wind-powered stirring assembly includes a ring of reserved grooves on the edge of the first fixed disk. A central pin is connected to the edge of the first fixed disk and at each reserved groove. A first blade and a second blade are connected to the center of each central pin. A first actuating pin is welded to the center of each first blade. A second actuating pin is welded to the center of each second blade. A first guide groove and a second guide groove are provided on the inner wall of the grinding box. A central groove is provided at the center of the first guide groove and the center of the second guide groove, and at each position of the first fixed disk. The end of the first actuating pin slides along the interior of the first guide groove and the central groove. The end of the second actuating pin slides along the interior of the second guide groove and the central groove. The rotation direction of the first actuating pin is opposite to that of the second actuating pin. The first blade and the second blade are used to blow the edelweiss remaining on the first fixed disk and the second fixed disk.
[0009] As a preferred embodiment of the present invention, the reserved slots and the intermediate slots are arranged in a circular array, and the number of reserved slots, the number of first shearing holes and the number of second shearing holes are the same. The first fixing plate and the second fixing plate are attached to each other, or the first fixing plate and the second fixing plate are in a V-shape.
[0010] In a preferred embodiment of the present invention, a cleaning component is provided between the first fixed plate and the second fixed plate. The cleaning component includes a movable groove, which is formed on the mating surface between the first and second fixed plates. A ring of rolling beads is provided inside the movable groove, and the rolling beads are in rolling connection with the movable groove. A first vent hole is provided at the mating point between the edge of the second fixed plate and the middle of the first fixed plate. A second vent hole is provided in the diameter direction of the first fixed plate and the diameter direction of the second fixed plate. The second vent hole is used to blow away the edelweiss residue in the gap between the first and second fixed plates and the edelweiss at the bottom of the grinding box.
[0011] In a preferred embodiment of the present invention, the movable groove and the first vent hole are both concentric rings, the cross-sectional diameter of the movable groove is adapted to the diameter of the rolling ball, and the second vent hole and each of the first vent holes are interconnected.
[0012] A method for automatically grinding and extracting juice from Edelweiss, applied to an automated Edelweiss processing device, includes the following steps: S1. Preparation before grinding: Select fresh flowers and leaves of Edelweiss, rinse quickly with clean water to remove impurities, and drain the surface water. S2. Preliminary cutting of Edelweiss using the shearing assembly: Place the cleaned Edelweiss inside the grinding box, where it is preliminarily cut and broken by the first and second shearing holes. S3. The alpine edelweiss is blown by the wind-powered stirring component: the edelweiss above the first and second fixed plates can be blown by the repeated fan of the first and second fan blades, and the edelweiss at the bottom of the grinding box can also be blown and mixed by the fan of the first and second fan blades. S4. Clean the Edelweiss using the cleaning component: The first and second blades repeatedly fan to clean the Edelweiss in the gap between the first and second shearing holes. S5. The stirring blades grind and crush the initially chopped edelweiss again: the stirring blades stir the edelweiss until it forms a fine paste-like mixture. S6. Juice separation and purification: Filter the paste-like mixture with multiple layers of gauze or filter paper, and collect the filtered clear juice.
[0013] As a preferred embodiment of the present invention, the neutral solvent in the grinding box in S5 is distilled water, which is added in a ratio of 10:1 between the material and the solvent, and is added in small amounts multiple times during grinding.
[0014] Compared with the prior art, the beneficial effects of the present invention are: Equipped with a shearing component, the first and second fixed plates can rotate relative to each other, and the alpine edelweiss can be crushed and sheared through the first and second shearing holes, preparing for the subsequent crushing and grinding of alpine edelweiss. Shorter alpine edelweiss is easily crushed by the stirring blades, and the alpine edelweiss fibers will not become entangled. Equipped with a wind-powered stirring component, the rotation of the first fixed plate drives the first deflector pin of the first blade and the second deflector pin of the second blade to move relative to each other. The deflector pins cooperate with the guide groove to make the first blade and the second blade approach or close, which can blow away the uncut alpine edelweiss on the surface of the fixed plate and prevent the alpine edelweiss from covering the various cutting holes. Equipped with a wind-powered mixing component, the first and second blades approach or close to cause the airflow to blow the edelweiss at the first and second fixed plates. This not only blows and mixes the edelweiss at the bottom of the grinding box, making it easier to crush and grind the edelweiss, but also cleans the edelweiss in the gap between the first and second shearing holes. The shearing component performs preliminary cutting of Edelweiss, improving processing efficiency and reducing labor intensity. The sheared Edelweiss is finer and shorter, and only the shortened pieces fall to the bottom of the grinding box for further cutting, reducing fiber entanglement and preventing equipment damage. Attached Figure Description
[0015] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings.
[0016] Figure 1 This is a structural diagram of the main body of the present invention; Figure 2 This is a schematic diagram of the interior of the grinding box of the present invention; Figure 3 This is a schematic diagram of the shearing component of the present invention; Figure 4 This is a schematic diagram of the first fixing groove and the second fixing groove of the present invention; Figure 5 This is a schematic diagram of the first and second bevel gears of the present invention; Figure 6 This is a schematic diagram of the connecting pin and connecting sleeve of the present invention; Figure 7 This is a schematic diagram of the wind-powered stirring assembly of the present invention; Figure 8 This is a schematic diagram of the first and second fan blades of the present invention; Figure 9 This is a schematic diagram of the first guide groove and the second guide groove of the present invention; Figure 10 This is a schematic diagram of the cleaning component of the present invention.
[0017] In the diagram: 1. Fixing frame; 2. Drive motor; 3. Grinding box; 4. Stirring blade; 5. Shearing assembly; 6. Wind-driven stirring assembly; 7. Cleaning assembly; 51. First connecting shaft; 52. Second connecting shaft; 53. First fixing plate; 54. Second fixing plate; 55. First shearing hole; 56. Second shearing hole; 57. First fixing groove; 58. Second fixing groove; 59. First bevel gear; 510. Second bevel gear; 511. Third bevel gear; 512. Connecting pin; 513. Connecting sleeve; 514. Fixing seat; 61. Reserved groove; 62. Intermediate pin; 63. First fan blade; 64. Second fan blade; 65. First actuating pin; 66. Second actuating pin; 67. First guide groove; 68. Second guide groove; 69. Intermediate groove; 71. Movable groove; 72. Rolling ball; 73. First vent hole; 74. Second vent hole. Detailed Implementation
[0018] The technical solution of the present invention will be clearly and completely described below with reference to the embodiments. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0019] Example 1: Please see Figure 1 - Figure 6As shown, an automatic grinding and extraction device for edelweiss juice includes a fixed frame 1, a drive motor 2, a grinding box 3, and a stirring blade 4. The drive motor 2 is installed inside the fixed frame 1, the grinding box 3 is installed at the output shaft of the drive motor 2, and the stirring blade 4 is located inside the grinding box 3. The output shaft of the drive motor 2 is connected to the stirring blade 4. When the drive motor 2 is started, it drives the stirring blade 4 in the grinding box 3 to rotate, thereby crushing and grinding the edelweiss. A shearing assembly 5 is installed inside the grinding box 3 at the output shaft of the drive motor 2. The shearing assembly 5 includes mutually... A first connecting shaft 51 and a fixed base 514 are welded together. Both the first connecting shaft 51 and the fixed base 514 rotate synchronously with the output shaft of the drive motor 2. The rotation of the output shaft of the drive motor 2 can drive the first connecting shaft 51 and the fixed base 514 to rotate. A first fixed disk 53 is welded to the outside of the fixed base 514, and a first bevel gear 59 is welded to the inside of the first fixed disk 53. The rotation of the fixed base 514 drives the first fixed disk 53 to rotate, thereby causing the first bevel gear 59 inside the first fixed disk 53 to rotate. A second connecting shaft 52 is rotatably connected to the end of the fixed base 514. A second fixed disk 54 is rotatably connected to the outside of the second connecting shaft 52. A second bevel gear 510 is welded inside the second fixed disk 54. A third bevel gear 511 is rotatably connected to the outside of the second connecting shaft 52. Both the first bevel gear 59 and the second bevel gear 510 mesh with the third bevel gear 511. The first fixed disk 53 and the second fixed disk 54 rotate in opposite directions. The rotation of the first bevel gear 59 drives the third bevel gear 511 and the second bevel gear 510 to rotate. The rotation of the second bevel gear 510 drives the second fixed disk 54 to rotate around the second connecting shaft 52. Thus, the first fixed plate 53 and the second fixed plate 54 rotate in opposite directions. The surface of the first fixed plate 53 is provided with a ring of first shearing holes 55, and the surface of the second fixed plate 54 is provided with a ring of second shearing holes 56. The first shearing holes 55 and the second shearing holes 56 are used for preliminary shearing of the edelweiss inside the grinding box 3. The first shearing holes 55 of the first fixed plate 53 and the second shearing holes 56 of the second fixed plate 54 rotate in opposite directions, so that the first shearing holes 55 and the second shearing holes 56 can preliminarily shear the edelweiss, which facilitates the subsequent crushing and grinding of the edelweiss.
[0020] Please see Figure 4 - Figure 6As shown, a first fixing groove 57 is provided in the middle of the first fixing disk 53. The first bevel gear 59 is welded inside the first fixing groove 57. The first fixing groove 57 can accommodate the first bevel gear 59 without affecting the rotation of the first bevel gear 59. A second fixing groove 58 is provided in the middle of the second fixing disk 54. The second bevel gear 510 is welded inside the second fixing groove 58. The end of the second connecting shaft 52 is rotatably connected to the second bevel gear 510. The second fixing groove 58 can accommodate the second bevel gear 510 without affecting the rotation of the second bevel gear 510. The second fixing disk 54 and the second bevel gear 510 rotate around the second connecting shaft 52.
[0021] Please see Figure 5 and Figure 6 As shown, the output shaft of the drive motor 2, the first connecting shaft 51, and the fixed seat 514 are fixed together. The end of the first connecting shaft 51 is fixed to the inside of the fixed seat 514 by a clamping pin. The rotation of the drive motor 2 drives the first connecting shaft 51 and the fixed seat 514 to rotate, thereby causing the first fixed disk 53 and the first bevel gear 59 to rotate synchronously. The top end of the second connecting shaft 52 is welded to the grinding box 3 through a connecting frame. The fixed seat 514 rotates relative to the second connecting shaft 52. Since the second connecting shaft 52 is fixed, the rotating fixed seat 514 rotates relative to the second connecting shaft 52. The axes of the first bevel gear 59 and the second bevel gear 510 are both perpendicular to the axis of the third bevel gear 511. The rotation direction of the first bevel gear 59 is opposite to the rotation direction of the second bevel gear 510. The rotation of the first bevel gear 59 drives the third bevel gear 511 and the second bevel gear 510 to rotate. The third bevel gear 511 can rotate freely on the second connecting shaft 52.
[0022] Please see Figure 6 As shown, a connecting pin 512 is integrally manufactured at the bottom end of the second connecting shaft 52. A nut is threaded to the end of the connecting pin 512. A connecting sleeve 513 is threaded to the end of the fixing seat 514. The connecting pin 512 is inserted into the interior of the connecting sleeve 513 and fixed inside the connecting sleeve 513 by the nut. The connecting pin 512 can rotate relative to the connecting sleeve 513. The nut at the end of the connecting pin 512 is located inside the connecting sleeve 513. The connecting pin 512 is rotatably connected to the interior of the connecting sleeve 513. A threaded sleeve is provided in the middle of the second connecting shaft 52. The threaded sleeve is used to restrict the second fixing plate 54 from moving axially. The connecting sleeve 513 is screwed into the interior of the fixing seat 514. When the fixing seat 514 and the second connecting shaft 52 rotate relative to each other, the connecting pin 512 and the connecting sleeve 513 rotate relative to each other.
[0023] Please see Figure 2 , Figure 7 and Figure 8As shown, a wind-powered stirring assembly 6 is provided on the edge of the first fixed disk 53. The wind-powered stirring assembly 6 includes a ring of reserved grooves 61 formed on the edge of the first fixed disk 53. An intermediate pin 62 is connected to each reserved groove 61 on the edge of the first fixed disk 53. A first fan blade 63 and a second fan blade 64 are connected to the center of each intermediate pin 62. The first fan blade 63 and the second fan blade 64 are fitted into the center of the intermediate pin 62, so that the first fan blade 63 and the second fan blade 64 rotate around the intermediate pin 62. Each fan blade 63 has a first actuating pin 65 welded to its center, and each second fan blade 64 has a second actuating pin 66 welded to its center. The inner wall of the grinding box 3 has a first guide groove 67 and a second guide groove 68. An intermediate groove 69 is formed at the center of the first guide groove 67 and the center of the second guide groove 68, and at the position of each first fixed plate 53. The end of the first actuating pin 65 slides along the interior of the first guide groove 67 and the intermediate groove 69, and the end of the second actuating pin 66 slides along the interior of the second guide groove 68 and the intermediate groove 69. The internal sliding mechanism allows the first fixed disk 53 to rotate, driving the first fan blades 63 and the second fan blades 64 to rotate. The first actuating pin 65 on the first fan blade 63 changes position along the first guide groove 67 and the intermediate groove 69, while the second actuating pin 66 on the second fan blade 64 changes position along the second guide groove 68 and the intermediate groove 69. The rotation direction of the first actuating pin 65 is opposite to that of the second actuating pin 66. The first fan blades 63 and the second fan blades 64 are used to connect the first fixed disk 53 and the second fixed disk 54. The remaining edelweiss in the four locations is blown, and the first deflector pin 65 of the first blade 63 and the second deflector pin 66 of the second blade 64 rotate around the central pin 62. Thus, the rotation direction of the first blade 63 is opposite to that of the second blade 64. The first blade 63 and the second blade 64 can fan the edelweiss above the fixed plate. Part of the cut edelweiss enters below the cutting hole, while the other part of the cut edelweiss is blown by the blades to prevent larger edelweiss from falling below the cutting hole.
[0024] Please see Figure 7 and Figure 8 As shown, the reserved slots 61 and the intermediate slots 69 are arranged in a circular array, and the number of reserved slots 61, the number of first shearing holes 55 and the number of second shearing holes 56 are the same. The number of sets of first fan blades 63 and second fan blades 64, the number of sets of first shearing holes 55 and second shearing holes 56 are the same, so that each fan blade can blow directly towards the shearing hole. After shearing the alpine edelweiss, the fan blades can be used to blow the alpine edelweiss away. After the fan blades close, they are located at the shearing hole again and can be sheared again. The first fixing plate 53 and the second fixing plate 54 are attached to each other, or the first fixing plate 53 and the second fixing plate 54 are in a V-shape. When the first fixing plate 53 and the second fixing plate 54 are unfolded, they can blow air. When the first fixing plate 53 and the second fixing plate 54 are closed, they stop blowing air.
[0025] Please see Figure 2 , Figure 9 and Figure 10 As shown, a cleaning component 7 is disposed between the first fixed disk 53 and the second fixed disk 54. The cleaning component 7 includes a movable groove 71, which is formed on the mating surface between the first fixed disk 53 and the second fixed disk 54. A ring of rolling balls 72 is disposed inside the movable groove 71, and the rolling balls 72 are in rolling connection with the movable groove 71. When the first fixed disk 53 rotates relative to the second fixed disk 54, the rolling balls 72 inside the movable groove 71 roll, thereby allowing the first fixed disk 53 and the second fixed disk 54 to rotate freely. The edge of the second fixed disk 54 and the center of the first fixed disk 53 are connected. A first ventilation hole 73 is provided at the joint between the two plates. A second ventilation hole 74 is provided in the diameter direction of the first fixed plate 53 and the diameter direction of the second fixed plate 54. The second ventilation hole 74 is used to blow away the edelweiss residue in the gap between the first fixed plate 53 and the second fixed plate 54 and the edelweiss at the bottom of the grinding box 3. The first fan blade 63 and the second fan blade 64 repeatedly fan to allow airflow into each of the first ventilation holes 73 and the second ventilation holes 74. Even if the first fixed plate 53 and the second fixed plate 54 rotate relative to each other, it will not affect the airflow from the first ventilation holes 73 and the second ventilation holes 74.
[0026] Please see Figure 9 and Figure 10 As shown, the movable groove 71 and the first vent hole 73 are both concentric rings. The cross-sectional diameter of the movable groove 71 is matched with the diameter of the rolling ball 72. The rolling ball 72 rolls inside the movable groove 71, thereby allowing the first fixed disk 53 and the second fixed disk 54 to rotate freely. The second vent hole 74 and each of the first vent holes 73 are interconnected. The free rotation of the first fixed disk 53 and the second fixed disk 54 will not cause the second vent hole 74 to close. When the fan blades are fanning, the first vent hole 73 and the second vent hole 74 can allow airflow to enter the shear hole.
[0027] A method for automatically grinding and extracting juice from Edelweiss, applied to an automatic Edelweiss processing device, includes the following steps: S1. Preparation before grinding: Select fresh flowers and leaves of Edelweiss, rinse quickly with clean water to remove impurities, drain the surface water, pick out the yellowed, withered, or insect-damaged parts of the flowers and leaves, and keep only the tender and undamaged tissues. Rinse with running room temperature water with the water flow rate set to a gentle pressure. After rinsing, immediately place the plant in a clean filter and gently shake the filter to drain the surface water. If there is a lot of water, gently press and absorb it with sterile gauze or kitchen paper. There is no need to invert it to dry. S2. Preliminary cutting of Edelweiss using shearing component 5: Place the cleaned Edelweiss inside grinding box 3. The Edelweiss is preliminarily cut and broken by first shearing hole 55 and second shearing hole 56. The Edelweiss is fed into the equipment and preliminarily cut using first shearing hole 55 and second shearing hole 56. S3. The alpine edelweiss is blown by the wind-powered stirring component 6: The edelweiss above the first fixed plate 53 and the second fixed plate 54 can be blown by the repeated fan of the first blade 63 and the second blade 64. The fan of the first blade 63 and the second blade 64 can blow the alpine edelweiss on the surface of the first fixed plate 53, so that the undone alpine edelweiss swings and enters the shearing hole. The fan of the first blade 63 and the second blade 64 can also blow and mix the edelweiss at the bottom of the grinding box 3. The edelweiss inside the grinding box 3 is more easily crushed and ground by the stirring blade 4. S4. Cleaning the alpine edelweiss using the cleaning component 7: The first blade 63 and the second blade 64 repeatedly fan to clean the alpine edelweiss in the gap between the first shear hole 55 and the second shear hole 56. The fanning of the first blade 63 and the second blade 64 can allow air to pass through the first ventilation hole 73 and the second ventilation hole 74 to clean the alpine edelweiss residue in the shear hole. S5, stirring blade 4 further grinds and crushes the initially chopped edelweiss: stirring blade 4 stirs the edelweiss until it forms a fine paste mixture, adds a small amount of neutral solvent, moistens the material, and then grinds it evenly clockwise; the neutral solvent in grinding box 3 in S5 is distilled water, and it is added in a 10:1 ratio of material to solvent, added in small amounts multiple times during grinding; the grinding process must maintain a consistent direction to reduce material clumping and improve the uniformity of gelatinization. The choice of neutral solvent must be matched with the subsequent use to avoid introducing impurities or affecting subsequent reactions. Grinding can be stopped when there is no obvious particle feel to avoid over-grinding and loss of effective ingredients; S6. Juice separation and purification: Filter the paste mixture with multiple layers of gauze or filter paper, collect the filtered clear juice, preferably using multiple layers of gauze or filter paper. Slowly pour the paste mixture into the filter medium, gently squeeze the gauze to accelerate the juice flow, retain only the filtered juice with no obvious particles and clear texture, and discard the filter residue.
[0028] The preferred embodiments of the present invention disclosed above are merely illustrative of the invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the invention to any specific implementation. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the invention, thereby enabling those skilled in the art to better understand and utilize the invention. The invention is limited only by the claims and their full scope and equivalents.
Claims
1. An automatic grinding and extraction device for edelweiss juice, comprising a fixed frame (1), a drive motor (2), a grinding box (3), and a stirring blade (4), wherein the drive motor (2) is installed inside the fixed frame (1), the grinding box (3) is installed at the output shaft of the drive motor (2), the stirring blade (4) is located inside the grinding box (3), and the output shaft of the drive motor (2) is connected to the stirring blade (4), characterized in that, The output shaft of the drive motor (2) is located inside the grinding box (3) and a shearing assembly (5) is installed. The shearing assembly (5) includes a first connecting shaft (51) and a fixed seat (514) welded together. Both the first connecting shaft (51) and the fixed seat (514) rotate synchronously with the output shaft of the drive motor (2). A first fixed plate (53) is welded to the outside of the fixed seat (514), and a first bevel gear (59) is welded inside the first fixed plate (53). A second connecting shaft (52) is rotatably connected to the end of the fixed seat (514), and a second fixed plate (54) is rotatably connected to the outside of the second connecting shaft (52). The second fixed disk (54) is welded with a second bevel gear (510), and the second connecting shaft (52) is rotatably connected with a third bevel gear (511). The first bevel gear (59) and the second bevel gear (510) are both meshed with the third bevel gear (511). The first fixed disk (53) and the second fixed disk (54) rotate in opposite directions. A first shearing hole (55) is opened on the surface of the first fixed disk (53), and a second shearing hole (56) is opened on the surface of the second fixed disk (54). The first shearing hole (55) and the second shearing hole (56) are used for preliminary shearing of the alpine edelweiss inside the grinding box (3).
2. The automatic grinding and extraction equipment for edelweiss juice according to claim 1, characterized in that, The first fixed plate (53) has a first fixed groove (57) in the middle position, and the first bevel gear (59) is welded inside the first fixed groove (57). The second fixed plate (54) has a second fixed groove (58) in the middle position, and the second bevel gear (510) is welded inside the second fixed groove (58). The end of the second connecting shaft (52) is rotatably connected to the second bevel gear (510).
3. The automatic grinding and extraction equipment for edelweiss juice according to claim 2, characterized in that, The output shaft of the drive motor (2), the first connecting shaft (51) and the fixed seat (514) are fixed together. The top end of the second connecting shaft (52) is welded to the grinding box (3) through the connecting frame. The fixed seat (514) rotates relative to the second connecting shaft (52). The axes of the first bevel gear (59) and the second bevel gear (510) are both perpendicular to the axis of the third bevel gear (511). The rotation direction of the first bevel gear (59) is opposite to the rotation direction of the second bevel gear (510).
4. The automatic grinding and extraction equipment for edelweiss juice according to claim 3, characterized in that, The bottom end of the second connecting shaft (52) is integrally manufactured with a connecting pin (512), and the end of the connecting pin (512) is threaded with a nut. The end of the fixed seat (514) is threaded with a connecting sleeve (513). The nut at the end of the connecting pin (512) is located inside the connecting sleeve (513). The connecting pin (512) is rotatably connected to the inside of the connecting sleeve (513). A threaded sleeve is provided in the middle of the second connecting shaft (52). The threaded sleeve is used to restrict the second fixed plate (54) from moving along the axial direction.
5. The automatic grinding and extraction equipment for edelweiss juice according to claim 4, characterized in that, The first fixed plate (53) is provided with a wind-powered stirring assembly (6) on its edge. The wind-powered stirring assembly (6) includes a ring of reserved grooves (61) formed on the edge of the first fixed plate (53). An intermediate pin (62) is connected to the edge of the first fixed plate (53) and at each reserved groove (61). A first fan blade (63) and a second fan blade (64) are connected to the middle of each intermediate pin (62). A first actuating pin (65) is welded to the middle of each first fan blade (63), and a second actuating pin (66) is welded to the middle of each second fan blade (64). A first guide groove (67) and a second guide groove (66) are formed on the inner wall of the grinding box (3). A middle groove (69) is provided in the middle of the first guide groove (67) and the middle of the second guide groove (68) and at the position of each first fixed plate (53). The end of the first detonator (65) slides along the inside of the first guide groove (67) and the middle groove (69), and the end of the second detonator (66) slides along the inside of the second guide groove (68) and the middle groove (69). The rotation direction of the first detonator (65) is opposite to that of the second detonator (66). The first fan blade (63) and the second fan blade (64) are used to blow the edelweiss remaining at the first fixed plate (53) and the second fixed plate (54).
6. The automatic grinding and extraction equipment for edelweiss juice according to claim 5, characterized in that, The reserved slots (61) and intermediate slots (69) are arranged in a ring array, and the number of reserved slots (61), the number of first shearing holes (55), and the number of second shearing holes (56) are the same. The first fixing plate (53) and the second fixing plate (54) are attached to each other, or the first fixing plate (53) and the second fixing plate (54) are in a V-shape.
7. The automatic grinding and extraction equipment for edelweiss juice according to claim 6, characterized in that, A cleaning component (7) is provided between the first fixed plate (53) and the second fixed plate (54). The cleaning component (7) includes a movable groove (71). The movable groove (71) is opened on the mating surface between the first fixed plate (53) and the second fixed plate (54). A ring of rolling beads (72) is provided inside the movable groove (71). The rolling beads (72) are rolled and connected with the movable groove (71). A first vent hole (73) is opened at the mating point between the edge of the second fixed plate (54) and the middle of the first fixed plate (53). A second vent hole (74) is opened in the diameter direction of the first fixed plate (53) and the diameter direction of the second fixed plate (54). The second vent hole (74) is used to blow away the edelweiss residue in the gap between the first fixed plate (53) and the second fixed plate (54) and the edelweiss at the bottom of the grinding box (3).
8. The automatic grinding and extraction equipment for edelweiss juice according to claim 7, characterized in that, The movable groove (71) and the first vent (73) are both concentric rings. The cross-sectional diameter of the movable groove (71) is adapted to the diameter of the rolling ball (72). The second vent (74) and each of the first vents (73) are interconnected.
9. A method for automatically grinding and extracting juice from Edelweiss, applied to the Edelweiss processing equipment for automatically grinding and extracting juice as described in claim 8, characterized in that... Includes the following steps: S1. Preparation before grinding: Select fresh flowers and leaves of Edelweiss, rinse quickly with clean water to remove impurities, and drain the surface water. S2. The alpine edelweiss is initially cut by the shearing component (5): The cleaned alpine edelweiss is placed inside the grinding box (3), and the alpine edelweiss is initially cut and broken by the first shearing hole (55) and the second shearing hole (56); S3. The alpine edelweiss is blown by the wind-powered stirring component (6): the edelweiss above the first fixed plate (53) and the second fixed plate (54) can be blown by the first blade (63) and the second blade (64) repeatedly, and the edelweiss at the bottom of the grinding box (3) can also be blown and mixed by the first blade (63) and the second blade (64). S4. Clean the edelweiss using the cleaning component (7): The first blade (63) and the second blade (64) repeatedly fan the edelweiss in the gap between the first shear hole (55) and the second shear hole (56) to clean it. S5. Stirring blade (4) grinds and crushes the initially cut alpine edelweiss again: Stirring blade (4) stirs the edelweiss until it forms a fine paste mixture; S6. Juice separation and purification: Filter the paste-like mixture with multiple layers of gauze or filter paper, and collect the filtered clear juice.
10. The method for automatically grinding and extracting juice from Edelweiss according to claim 9, characterized in that, The neutral solvent in the grinding box (3) in S5 is distilled water, which is added in a ratio of 10:1 between the material and the solvent, and added in small amounts multiple times during grinding.