Soaking and cooking device for processing ginger processed pinellia

By designing a soaking and cooking device for ginger and panax notoginseng with multi-layer partitions and automatic stirring functions, the problems of insufficient contact with the liquid and difficulty in manual stirring in traditional methods are solved, and the efficient and automated ginger and panax notoginseng preparation process is achieved.

CN120053292AInactive Publication Date: 2025-05-30QIANJIANG QIANBANXIA GENUINE CHINESE HERBAL PIECES CO LTD
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Patent Information

Application Number
CN202510207407.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention relates to the technical field of ginger processed pinellia preparation, and discloses a soaking and cooking device for ginger processed pinellia processing, which comprises a tank body, and a heating loop line is arranged in a circumferential side plate of the tank body, and is characterized in that a material box is clamped in the tank body, and a plurality of layers of partition plates are arranged in the material box; a rotating shaft is rotatably connected to the center of the bottom face in the tank body, three connecting rods are vertically fixed to the circumferential side face of the rotating shaft at equal intervals, stirring rods are vertically fixed to the ends of the connecting rods, stirring blades are arranged on the stirring rods, and the stirring blades are arranged on the stirring rods. The pinellia ternate soaking and cooking device has the following advantages and effects that the contact area of pinellia ternate and liquid is increased, the soaking and cooking efficiency is improved, meanwhile, the scraper is arranged on the stirring rod, the wall face of the tank body is scraped, and the loss of soaking and cooking liquid is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of the preparation of Pinelliae Rhizoma Praeparatum, and particularly relates to an immersion and steaming device for processing Pinelliae Rhizoma Praeparatum with ginger. Background Art

[0002] Pinelliae Rhizoma Praeparatum is a processed product of Pinelliae Rhizoma. Fresh ginger and alum are used to make Pinelliae Rhizoma Praeparatum from raw Pinelliae Rhizoma. The processing method of Pinelliae Rhizoma Praeparatum mainly includes the following steps: preparing materials: selecting fresh ginger and high-quality Pinelliae Rhizoma. The ginger needs to be washed and peeled, and then cut into thin slices or filaments, while the Pinelliae Rhizoma should be selected to be clean without impurities; soaking Pinelliae Rhizoma: putting the Pinelliae Rhizoma into a pot, adding an appropriate amount of water, and soaking until there is no dry core inside, that is, the inside of the Pinelliae Rhizoma is completely moist without dry parts; decocting ginger and Pinelliae Rhizoma: taking out the soaked Pinelliae Rhizoma and draining the water. At the same time, putting the cut ginger slices into the pot to decoct ginger juice, and then adding an appropriate amount of alum and Pinelliae Rhizoma to the ginger juice and decocting them together until the Pinelliae Rhizoma is completely cooked through; drying treatment: taking out the decocted Pinelliae Rhizoma and drying it after airing or slicing. It can be seen that the traditional method uses a pot for soaking and steaming. During soaking, stirring is not allowed to avoid damaging the Pinelliae Rhizoma, while during steaming, manual stirring of the ginger juice is required at any time to avoid sticking to the bottom, and at the same time, it is necessary to increase the contact area between the Pinelliae Rhizoma, the ginger juice and the alum to improve the preparation efficiency of Pinelliae Rhizoma Praeparatum. Therefore, a new immersion and steaming device is needed to replace the pot in the traditional method. Summary of the Invention

[0003] The purpose of the present invention is to provide an immersion and steaming device for processing Pinelliae Rhizoma Praeparatum with ginger, which has the effects of good soaking effect, avoiding sticking to the bottom during steaming, and convenient feeding and discharging.

[0004] The above technical purpose of the present invention is achieved through the following technical solutions: It includes a tank body, and a heating loop is arranged inside the circumferential side plate of the tank body. It is characterized in that: a material box is clamped inside the tank body, several layers of partition plates are arranged inside the material box, holes are arranged on the side plate of the material box and each partition plate, the center of the inner bottom surface of the tank body is rotatably connected with a rotating shaft, 3 connecting rods are vertically and equally spaced and fixedly arranged on the circumferential side surface of the rotating shaft, a stirring rod is fixedly arranged vertically at the end of the connecting rod, stirring blades are arranged on the stirring rod, and a scraper is arranged on the side surface of the stirring rod close to the inner wall surface of the circumferential wall of the tank body.

[0005] By adopting the above technical solutions, the material box is used to hold Pinelliae Rhizoma. Multiple layers of partition plates are provided, and a certain number of raw Pinelliae Rhizoma are placed on each partition plate, replacing the previous method of piling them all together. Holes are arranged on the side plate and partition plates of the material box, which is convenient for increasing the contact area between the Pinelliae Rhizoma and the liquid, and the soaking and steaming effects are better; when it is necessary to stir the liquid in the tank body, the rotating shaft is driven, and the connecting plate drives the stirring rod to stir in the tank body, further increasing the contact area between the Pinelliae Rhizoma and the liquid, improving the soaking and steaming efficiency. At the same time, a scraper is arranged on the stirring rod to scrape the wall surface of the tank body, reducing the loss of the soaking and steaming liquid.

[0006] A further setting of the present invention is that a rotating sleeve rod is sleeved on and rotationally connected to each connecting rod in a limited manner. A first brush hair in a spiral shape is arranged outside the rotating sleeve rod. A first bevel gear is fixed at the end of the rotating sleeve rod close to the rotating shaft. A second bevel gear is sleeved on and rotationally connected to the rotating shaft. The second bevel gear is externally meshed with the first bevel gear. The second bevel gear is fixed on the bottom plate of the tank body.

[0007] By adopting the above technical solution, when the rotating shaft rotates, the connecting rod drives the rotating sleeve rod to rotate. At this time, the first bevel gear meshes with the second bevel gear, and the first bevel gear will rotate by itself at this time. Therefore, the rotating sleeve rod finally rotates outside the connecting rod, that is, the rotating sleeve rod realizes the revolution and self-rotation around the rotating shaft. Since the first brush hair is arranged outside the rotating sleeve rod, the first brush hair will continuously brush the upper end surface of the bottom plate, avoiding the sticking of the cooking liquid on the bottom plate and affecting the service life of the entire device at the same time.

[0008] A further setting of the present invention is that a push plate is slidably connected to each partition plate. One end of the push plate is connected with a first slider. The first slider is slidably connected to a first lead screw at intervals. One end of the first lead screw is coaxially and fixedly connected to the output shaft of a first motor. The first lead screw is located inside a U-shaped vertical rod. The first slider is slidably connected to the inner wall of the U-shaped vertical rod. A second slider is arranged at the top of the U-shaped vertical rod. The second slider is slidably clamped on the top of a side plate of the first material box. The second slider is slidably connected to a second lead screw. One end of the second lead screw is coaxially and fixedly connected to the output shaft of a second motor. The bottom of the U-shaped vertical rod is slidably clamped in a chute of the bottom cross plate of the material box.

[0009] By adopting the above technical solution, according to the amount of Pinellia ternata to be placed on the partition plate, the distance between the push plate and the corresponding partition plate is determined. At this time, by starting the first motor, the first lead screw rotates, and the slider drives the push plate to slide up and down in the U-shaped vertical plate. Then, the second motor is started, the second lead screw is rotated, and the second slider drives the U-shaped vertical rod to slide in the chute of the bottom cross plate of the material box. The push plate levels the Pinellia ternata, ensuring that the Pinellia ternata is evenly stacked on the partition plate, ensuring the subsequent soaking and cooking efficiency, and at the same time, the Pinellia ternata can be pushed out of the partition plate after the cooking is completed, completing the pushing of the material.

[0010] A further setting of the present invention is that a second brush hair is arranged on the bottom surface of the push plate.

[0011] By adopting the above technical solution, by arranging the brush hair, the contact hardness with the Pinellia ternata is reduced, avoiding damage to the Pinellia ternata, and at the same time, the debris on the partition plate can be cleaned.

[0012] A further setting of the present invention is that: on one side plate of the material box parallel to the push plate, a feeding port with the same number as the partition plates is arranged at intervals, and a through groove is arranged inside the side plate. A first baffle slides up and down in the through groove, the top of the first baffle is connected to the piston rod of the first cylinder, a number of first openings are arranged at intervals on the first baffle, the number of the first openings is one less than that of the feeding ports, and the sizes of the first openings are the same as those of the feeding ports.

[0013] By adopting the above technical solution, the partition plates correspond to the feeding ports one by one. The first cylinder drives the first baffle to lift and slide in the through groove. When the first openings and the feeding ports are located on the same horizontal line one by one, it can be used to discharge materials into the material box and push the materials out. When the first openings on the first baffle driven by the first cylinder are staggered with the feeding ports, the material box is closed and can be used for soaking and cooking.

[0014] A further setting of the present invention is that: snap rings are respectively arranged at four end points of the top cover of the material box.

[0015] By adopting the above technical solution, by arranging the snap rings, an external hoisting device can be connected to the snap rings. After the material box is filled with Pinellia ternata, it can be transferred to the tank body for soaking and cooking, and can also be taken out after the cooking is completed.

[0016] A further setting of the present invention is that: 3 discharge ports are arranged at equal intervals on the bottom plate. An outlet plate is connected to the outside of the rotating shaft below the bottom plate in a limited rotation manner. The baffle plate includes a circular ring plate in the middle and baffle plates two fixed at equal intervals on the circumference of the circular ring plate. The baffle plates two can rotate to fit below the discharge ports. The sizes of the baffle plates two are larger than those of the discharge ports. A second cylinder is hinged to the bottom surface of the bottom plate, and the end of the piston rod of the second cylinder is connected to the outlet plate.

[0017] By adopting the above technical solution, when the second cylinder drives the baffle plate to rotate until the baffle plates two are located below the discharge ports, the bottom plate is closed. When the baffle plate rotates until the baffle plates two are located on the sides of the discharge ports, the discharge ports are communicated with the discharge hopper for draining liquid.

[0018] A further setting of the present invention is that: a discharge hopper is connected to the bottom of the tank body, and a discharge valve is arranged on the discharge pipe of the discharge hopper.

[0019] By adopting the above technical solution, when the soaking and cooking liquid needs to be replaced, it can be discharged from the discharge pipe.

[0020] A further setting of the present invention is that: an opening two is arranged on the top plate at the top of the tank body. Grooves are recessed on the top plate on opposite sides of the opening two. Protruding blocks are arranged on opposite side plates of the material box, and the protruding blocks are clamped in the grooves.

[0021] By adopting the above technical solution, after the material box is loaded with Pinellia ternata, when the external device lifts the material box, the clamping block is aligned with the groove and clamped, and the material box can be stably placed in the tank body.

[0022] A further setting of the present invention is that a third bevel gear is fixed on the rotating shaft below the bottom plate, the third bevel gear is externally meshed with a fourth bevel gear, and the fourth bevel gear is coaxially and fixedly connected to the output shaft of the rotating motor.

[0023] The beneficial effects of the present invention are:

[0024] 1. The material box is used to load Pinellia ternata, and multiple layers of partition plates are provided. A certain number of raw Pinellia ternata are placed on each partition plate, replacing the previous method of stacking them all together. Holes are provided on the side plates and partition plates of the material box to facilitate the contact area between Pinellia ternata and the liquid, and the soaking and cooking effect is better; when it is necessary to stir the liquid in the tank body, the rotating shaft is driven, and the connecting plate drives the stirring rod to stir in the tank body, further increasing the contact area between Pinellia ternata and the liquid, improving the soaking and cooking efficiency. At the same time, a scraper is provided on the stirring rod to scrape the wall surface of the tank body, reducing the loss of the soaking and cooking liquid.

[0025] 2. When the rotating shaft rotates, the connecting rod drives the rotating sleeve rod to rotate. At this time, the first bevel gear is meshed with the second bevel gear, and the first bevel gear will rotate self - rotatably at this time. Therefore, the rotating sleeve rod finally rotates outside the connecting rod, that is, the rotating sleeve rod realizes the revolution and self - rotation around the rotating shaft. Since a first brush is provided outside the rotating sleeve rod, the first brush will continuously brush the upper end surface of the bottom plate, avoiding the paste of the cooking liquid on the bottom plate and affecting the service life of the entire device at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following - described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0027] Figure 1 is the structural schematic diagram of the present invention.

[0028] Figure 2 is the structural schematic diagram of the interior of the tank body in the present invention.

[0029] Figure 3 is the structural schematic diagram of another side of the tank body in the present invention.

[0030] Figure 4 is Figure 3 the structural schematic diagram of another side of

[0031] Figure 5 is the structural schematic diagram of the material box in the present invention.

[0032] Figure 6 is Figure 5 the schematic diagram of the explosion structure.

[0033] In the figure, 1 is the tank body; 2 is the feed box; 3 is the partition board; 4 is the hole; 5 is the rotating shaft; 6 is the connecting rod; 7 is the stirring rod; 8 is the stirring blade; 9 is the scraper; 10 is the rotating sleeve rod; 11 is the first brush hair; 12 is the first bevel gear; 13 is the second bevel gear; 14 is the bottom plate; 15 is the push plate; 16 is the first slider; 17 is the first lead screw; 18 is the U-shaped vertical rod; 19 is the second slider; 20 is the second lead screw; 21 is the cross plate; 22 is the second brush hair; 23 is the feed inlet; 24 is the through groove; 25 is the first baffle; 26 is the first cylinder; 27 is the first opening; 28 is the snap ring; 29 is the discharge port; 30 is the discharge plate; 31 is the discharge hopper; 32 is the discharge valve; 33 is the second opening; 34 is the groove; 35 is the block; 36 is the third bevel gear; 37 is the fourth bevel gear; 38 is the second cylinder. Specific embodiments

[0034] The technical solutions of the present invention will be clearly and completely described below in conjunction with specific embodiments. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0035] Embodiment, an immersion and steaming device for processing Pinelliae Rhizoma Praeparatum, as Figures 1-6 shown, including a tank body 1, a heating loop is arranged in the circumferential side plate of the tank body 1. It is characterized in that: a feed box 2 is clamped in the tank body 1, 4 layers of partition boards 3 are arranged in the feed box 2, holes 4 are arranged on the side plate of the feed box 2 and each partition board 3, the center of the inner bottom surface of the tank body 1 is rotatably connected with a rotating shaft 5, 3 connecting rods 6 are vertically and equally spaced and fixedly arranged on the circumferential side surface of the rotating shaft 5, a stirring rod 7 is vertically fixed at the end of the connecting rod 6, stirring blades 8 are arranged on the stirring rod 7, and a scraper 9 is arranged on the side surface of the stirring rod 7 close to the inner wall surface of the circumferential wall of the tank body 1. The feed box 2 is used to hold Pinelliae Rhizoma. Multiple partition boards 3 are arranged, and a certain number of raw Pinelliae Rhizoma are placed on each partition board 3, replacing the previous method of stacking them all together. Holes 4 are arranged on the side plate of the feed box 2 and the partition board 3, which is convenient for increasing the contact area between Pinelliae Rhizoma and the liquid, and the immersion and steaming effect is better; when it is necessary to stir the liquid in the tank body 1, the rotating shaft 5 is driven, and the connecting plate drives the stirring rod 7 to stir in the tank body 1, further increasing the contact area between Pinelliae Rhizoma and the liquid, improving the immersion and steaming efficiency. At the same time, a scraper 9 is arranged on the stirring rod 7 to scrape the wall surface of the tank body 1, reducing the loss of the immersion and steaming liquid.

[0036] Furthermore, a rotating sleeve rod 10 is sleeved and rotationally connected to each connecting rod 6 in a limited manner. A first set of bristles 11 in a spiral shape is arranged outside the rotating sleeve rod 10. A first bevel gear 12 is fixed to the end of the rotating sleeve rod 10 close to the rotating shaft 5. A second bevel gear 13 is sleeved and rotationally connected to the rotating shaft 5. The second bevel gear 13 is externally meshed with the first bevel gear 12. The second bevel gear 13 is fixed to the bottom plate 14 of the tank body 1. When the rotating shaft 5 rotates, the connecting rod 6 drives the rotating sleeve rod 10 to rotate. At this time, the first bevel gear 12 meshes with the second bevel gear 13, and the first bevel gear 12 will rotate on its own axis. Therefore, the rotating sleeve rod 10 finally rotates outside the connecting rod 6, that is, the rotating sleeve rod 10 realizes the revolution and rotation around the rotating shaft 5. Since the first set of bristles 11 is arranged outside the rotating sleeve rod 10, the first set of bristles 11 will continuously brush the upper end surface of the bottom plate 14, preventing the cooking liquid on the bottom plate 14 from sticking to the bottom and affecting the service life of the entire device at the same time.

[0037] Furthermore, a push plate 15 is slidably connected to each partition plate 3. One end of the push plate 15 is connected to a first slider 16. The first slider 16 is slidably connected to a first lead screw 17 at intervals. The end of the first lead screw 17 is coaxially and fixedly connected to the output shaft of the first motor. The first lead screw 17 is located inside the U-shaped vertical rod 18. The first slider 16 is slidably connected to the inner wall of the U-shaped vertical rod 18. A second slider 19 is arranged at the top of the U-shaped vertical rod 18. The second slider 19 is slidably clamped to the top of a side plate of the material box 2. The second slider 19 is slidably connected to a second lead screw 20. The end of the second lead screw 20 is coaxially and fixedly connected to the output shaft of the second motor. The bottom of the U-shaped vertical rod 18 is slidably clamped in the chute of the bottom cross plate 21 of the material box 2. According to the amount of Pinellia ternata to be placed on the partition plate 3, the distance between the push plate 15 and the corresponding partition plate 3 is determined. At this time, by starting the first motor, the first lead screw 17 rotates, and the slider drives the push plate 15 to slide up and down in the U-shaped vertical plate. Subsequently, the second motor is started, and the second lead screw 20 is started to rotate. The second slider 19 drives the U-shaped vertical rod 18 to slide in the chute of the bottom cross plate 21 of the material box 2. The push plate 15 levels the Pinellia ternata, ensuring that the Pinellia ternata is evenly stacked on the partition plate 3, guaranteeing the subsequent soaking and cooking efficiency. At the same time, after the cooking is completed, the Pinellia ternata can also be pushed out from the partition plate 3 to complete the pushing of the material.

[0038] Furthermore, a second set of bristles 22 is arranged on the bottom surface of the push plate 15. By arranging the bristles, the contact hardness with the Pinellia ternata is reduced, avoiding damage to the Pinellia ternata, and at the same time, the debris on the partition plate 3 can also be cleaned.

[0039] Further, on one side plate of the feed bin 2 parallel to the push plate 15, a number of feed inlets 23 equal to the number of the partition plates 3 are arranged at intervals, and a through groove 24 is arranged inside the side plate. A first baffle 25 is slidably lifted in the through groove 24. The top of the first baffle 25 is connected to the piston rod of the first cylinder 26. Three first openings 27 are arranged at intervals on the first baffle 25. The number of the first openings 27 is one less than that of the feed inlets 23. The first openings 27 are the same size as the feed inlets 23. The partition plates 3 correspond to the feed inlets 23 one by one. The first cylinder 26 drives the first baffle 25 to lift and slide in the through groove 24. When the first openings 27 and the feed inlets 23 are located on the same horizontal line one by one, it can be used to discharge materials into the feed bin 2 and push the materials out. When the first openings 27 on the first baffle 25 driven by the first cylinder 26 are staggered with the feed inlets 23, the feed bin 2 is closed and can be used for soaking and cooking.

[0040] Further, snap rings 28 are respectively arranged at the four end points of the top cover of the feed bin 2. By arranging the snap rings 28, an external hoisting device can be connected to the snap rings 28. After the feed bin 2 is filled with Pinellia ternata, it can be transferred to the tank body 1 for soaking and cooking, and can also be taken out after the cooking is completed.

[0041] Further, three discharge openings 29 are arranged at equal intervals on the bottom plate 14. An outlet plate 30 is connected to the outside of the rotating shaft 5 below the bottom plate 14 in a limited rotation manner. The baffle plate includes a circular ring plate in the middle and baffle plates two fixed at equal intervals on the circumference of the circular ring plate. The baffle plates two can be rotated to fit below the discharge openings 29. The size of the baffle plates two is larger than that of the discharge openings 29. When the baffle plate rotates until the baffle plates two are located below the discharge openings 29, the bottom plate 14 is closed. When the baffle plate rotates until the baffle plates two are located on the sides of the discharge openings 29, the discharge openings 29 communicate with the discharge hopper 31 for discharging liquid.

[0042] Further, a discharge hopper 31 is connected to the bottom of the tank body 1. A discharge valve 32 is arranged on the discharge pipe of the discharge hopper 31. When the soaking and cooking liquid needs to be replaced, it can be discharged from the discharge pipe.

[0043] Further, an opening two 33 is arranged on the top plate at the top of the tank body 1. Grooves 34 are concavely arranged on the top plate on the opposite sides of the opening two 33. Protruding blocks 35 are arranged on the opposite two side plates of the feed bin 2. The protruding blocks 35 are clamped in the grooves 34. After the feed bin 2 is loaded with Pinellia ternata, when the feed bin 2 is lifted by an external device, the protruding blocks 35 are aligned with the grooves 34 and clamped, and the feed bin 2 can be stably placed in the tank body 1.

[0044] Further, a third bevel gear 36 is fixed on the rotating shaft 5 below the bottom plate 14. The third bevel gear 36 is externally meshed with a fourth bevel gear 37. The fourth bevel gear 37 is coaxially and fixedly connected to the output shaft of the rotating motor.

[0045] The working principle of an immersion and cooking device for processing Pinellia ternata praeparata:

[0046] According to the amount of Pinellia ternata to be placed on the partition plate 3, determine the distance between the push plate 15 and the corresponding partition plate 3. At this time, start the first motor, the first lead screw 17 rotates, and the slider drives the push plate 15 to slide up and down in the U-shaped vertical plate. Then start the second motor, start the second lead screw 20 to rotate, and the second slider 19 drives the U-shaped vertical rod 18 to slide in the chute of the bottom cross plate 21 of the material box 2. The push plate 15 levels the Pinellia ternata to ensure that the Pinellia ternata is evenly stacked on the partition plate 3.

[0047] Connect an external hoisting device to the snap ring 28, align the clamping block 35 with the groove 34 for clamping, and the material box 2 can be stably placed in the tank body 1.

[0048] During soaking, stirring is not required. When cooking, when stirring the liquid in the tank body 1, drive the rotating shaft 5, and the connecting plate drives the stirring rod 7 to stir in the tank body 1, further increasing the contact area between the Pinellia ternata and the liquid, improving the soaking and cooking efficiency. At the same time, a scraper 9 is provided on the stirring rod 7 to scrape the wall surface of the tank body 1 to reduce the loss of the soaking and cooking liquid. At the same time, when the rotating shaft 5 rotates, the connecting rod 6 drives the rotating sleeve rod 10 to rotate. At this time, the first bevel gear 12 meshes with the second bevel gear 13, and the first bevel gear 12 will rotate on its own at this time. Therefore, the rotating sleeve rod 10 finally rotates outside the connecting rod 6, that is, the rotating sleeve rod 10 realizes the revolution and rotation around the rotating shaft 5. Since the first brush 11 is provided outside the rotating sleeve rod 10, the first brush 11 will continuously brush the upper end surface of the bottom plate 14 to prevent the cooking liquid on the bottom plate 14 from sticking to the bottom, and at the same time affect the service life of the entire device.

[0049] When it is necessary to prepare the soaking and cooking liquid, when the baffle rotates until the second baffle is located on the side of the discharge port 29, the discharge port 29 penetrates the discharge hopper 31, and the discharge valve 32 is opened for liquid discharge.

Claims

1. A soaking and steaming device for processing ginger and pinellia, comprising a tank body (1), wherein a heating loop is arranged in a circumferential side plate of the tank body (1), characterized in that: A material box (2) is clamped in the tank body (1), and a plurality of partitions (3) are arranged in the material box (2). Holes (4) are arranged on the side panels of the material box (2) and each partition (3). A rotating shaft (5) is rotatably connected to the center of the bottom surface of the tank body (1), and three connecting rods (6) are vertically fixed at equal intervals on the circumferential side of the rotating shaft (5). A stirring rod (7) is vertically fixed at the end of the connecting rod (6), and a stirring blade (8) is arranged on the stirring rod (7). A scraper (9) is arranged on the side of the stirring rod (7) close to the circumferential inner wall of the tank body (1).

2. The soaking and steaming device for processing pinellia tuber according to claim 1, characterized in that: Each of the connecting rods (6) is provided with a limited rotationally connected rotating sleeve rod (10) on the outer side, and a spiral bristle (11) is provided on the outer side of the rotating sleeve rod (10). A bevel gear (12) is fixed to the end of the rotating sleeve rod (10) close to the rotating shaft (5). A bevel gear (13) is provided on the outer side of the rotating shaft (5) for rotational connection. The bevel gear (13) is meshed with the outer side of the bevel gear (12), and the bevel gear (13) is fixed to the bottom plate (14) of the tank body (1).

3. The soaking and steaming device for processing Rhizoma Pinelliae Rhizoma according to claim 2, characterized in that: Each of the partitions (3) is slidably connected to a push plate (15), and the end of the push plate (15) is connected to a slider 1 (16). The slider 1 (16) is slidably connected to a screw rod 1 (17) at intervals, and the end of the screw rod 1 (17) is coaxially fixedly connected to the output shaft of the motor 1. The screw rod 1 (17) is located in a U-shaped vertical rod (18), and the slider 1 (16) is slidably connected to the inner wall of the U-shaped vertical rod (18). A slider 2 (19) is provided on the top of the U-shaped vertical rod (18), and the slider 2 (19) is slidably engaged with the top of a side plate of the material box (2). The slider 2 (19) is slidably connected to a screw rod 2 (20), and the end of the screw rod 2 (20) is coaxially fixedly connected to the output shaft of the motor 2. The bottom of the U-shaped vertical rod (18) is slidably engaged in the slide groove of the bottom horizontal plate (21) of the material box (2).

4. The soaking and boiling device for processing Pinellia ternata according to claim 3, characterized in that: The bottom surface of the push plate (15) is provided with bristles 2 (22).

5. The soaking and steaming device for processing pinellia tuber according to claim 4, characterized in that: A side plate of the material box (2) parallel to the push plate (15) is provided with feed ports (23) having the same number as the partition plate (3), and a through groove (24) is provided in the side plate. A baffle plate (25) is slidably raised and lowered in the through groove (24). The top of the baffle plate (25) is connected to the piston rod of the cylinder (26). A plurality of openings (27) are provided on the baffle plate (25) at intervals. The number of the openings (27) is one less than the number of the feed ports (23), and the size of the openings (27) is the same as that of the feed ports (23).

6. The soaking and steaming device for processing ginger and pinellia tuber according to claim 5, characterized in that: Snap rings (28) are respectively provided at the four end points of the top cover of the material box (2).

7. The soaking and steaming device for processing pinellia tuber according to claim 6, characterized in that: Three discharge ports (29) are arranged at equal intervals on the bottom plate (14); the rotating shaft (5) located below the bottom plate (14) is externally limited and rotatably connected to a discharge plate (30); the baffle plate comprises a circular ring plate in the middle and baffle plates 2 fixed at equal intervals on the circumference of the circular ring plate; the baffle plates 2 can be rotated to fit below the discharge ports (29); the size of the baffle plates 2 is larger than the size of the discharge ports (29); a cylinder 2 (38) is hingedly connected to the bottom surface of the bottom plate (14); the piston rod end of the cylinder 2 (38) is connected to the discharge plate (30).

8. The soaking and steaming device for processing ginger and pinellia tuber according to claim 7, characterized in that: The bottom of the tank body (1) is connected to a discharge hopper (31), and a discharge valve (32) is provided on a discharge pipe of the discharge hopper (31).

9. The soaking and steaming device for processing Rhizoma Pinelliae Rhizoma according to claim 8, characterized in that: The top plate of the tank body (1) is provided with a second opening (33), and grooves (34) are concavely provided on the top plates on two opposite sides of the second opening (33), and clamping blocks (35) are protrudingly provided on two opposite side plates of the material box (2), and the clamping blocks (35) are clamped in the grooves (34).

10. The soaking and steaming device for processing ginger and pinellia tuber according to claim 9, characterized in that: A bevel gear three (36) is fixed on the rotating shaft (5) located below the bottom plate (14), the bevel gear three (36) is externally meshed with a bevel gear four (37), and the bevel gear four (37) is coaxially fixedly connected to the output shaft of the rotating motor.