Traditional Chinese medicine capsule raw material multi-component mixing device and mixing method

By designing a multi-component mixing device for Chinese medicine capsule raw materials, and using a servo motor and bevel gear meshing to drive the rotation and movement of the moving tube, multi-point sampling and uniform addition of the powder were achieved, solving the problem of inaccurate sampling in the existing technology and improving the detection accuracy and mixing efficiency.

CN120900469AInactive Publication Date: 2025-11-07GUANGDONG SINOTAU PHARMA CO LTD
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Patent Information

Application Number
CN202511089261.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-05
Publication Date
2025-11-07
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing technology, when the raw materials for Chinese medicine capsules are mixed, it is easy to sample the upper layer of medicinal powder, but not easy to sample the bottom layer of medicinal powder. The sampling is random, which affects the accuracy of the medicinal powder detection, and multi-point sampling cannot be achieved.

Method used

A multi-component mixing device for raw materials of traditional Chinese medicine capsules was designed, including a tank, a mixing component and an adjustment component. A servo motor drives a rotating shaft to rotate a rotating cylinder and a movable tube in a circular motion. Combined with the design of bevel gear meshing and spiral blades, the movable tube can move up and down and rotate, enabling multi-point sampling.

Benefits of technology

It enables multi-point sampling of drug powder, avoids the randomness of sampling, improves the accuracy of drug powder detection, and facilitates the uniform addition of small amounts of drug powder or additives during the stirring process, saving stirring time and improving mixing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a traditional Chinese medicine capsule raw material multi-component mixing device and a mixing method, and relates to the technical field of capsule production, the traditional Chinese medicine capsule raw material multi-component mixing device comprises a tank body, one side of the tank body is connected with a feeding pipe in a penetrating manner, the bottom of the tank body is connected with a discharging pipe in a penetrating manner, and the traditional Chinese medicine capsule raw material multi-component mixing device further comprises a mixing assembly arranged in the tank body, the tank body is arranged above the tank body; the multi-point sampling of the medicine powder is facilitated in the stirring process of the medicine powder, the medicine powder at different depths can be sampled, meanwhile, the medicine powder in different areas can also be sampled, the multi-point sampling of the medicine powder can be realized, the sample contingency is avoided, and the subsequent detection precision is improved; and materials can be added in different depths and areas, so that the subsequent stirring time can be saved, and the powder mixing efficiency can be improved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of capsule production, in particular to a multi-component mixing device and mixing method for traditional Chinese medicine capsule raw materials. BACKGROUND

[0002] Capsules are made by filling the hollow coating with uniformly powdered or granulated medicine extract, medicine powder or excipients.

[0003] A capsule raw material mixing device disclosed in Patent No. CN220143157U can mix capsule particles in the mixing box by rotating the stirring plate and the two scraping assemblies along the inner wall of the mixing box. When the inner wall of the mixing box needs to be cleaned, the cleaning liquid can be delivered through the delivery pipe and sprayed through the through holes on the surface of the stirring plate. The two scraping assemblies can clean the inner wall of the mixing box more conveniently and completely, and facilitate repeated use of the device. However, when the capsule raw materials are mixed, the traditional Chinese medicine powders of multiple components are mixed. During the mixing process, the mixed medicine powders need to be sampled and detected to obtain the mixing condition of the medicine powders. The components of the medicine powders can be detected to determine whether the mixed medicine powders are uneven or layered. When the medicine powders are sampled, the medicine powders are stirred in the container. The upper layer of the medicine powders is usually sampled, and it is not easy to sample the lower layer of the medicine powders. The sampled sample is accidental, the sampling precision is poor, the precision of subsequent medicine powder detection is affected, the medicine powders cannot be sampled at multiple points, and there are some use defects.

[0004] Therefore, the multi-component mixing device and mixing method for traditional Chinese medicine capsule raw materials are proposed to solve the above problems. SUMMARY

[0005] The application aims to provide a multi-component mixing device and mixing method for traditional Chinese medicine capsule raw materials to solve the problem that when the medicine powders are sampled, the medicine powders are stirred in the container, the upper layer of the medicine powders is usually sampled, it is not easy to sample the lower layer of the medicine powders, the sampled sample is accidental, the sampling precision is poor, the precision of subsequent medicine powder detection is affected, and the medicine powders cannot be sampled at multiple points.

[0006] To achieve the above-mentioned purpose, the application provides the following technical scheme: a multi-component mixing device for traditional Chinese medicine capsule raw materials, comprising a tank body, a feed pipe is connected to one side of the tank body, a discharge pipe is connected to the bottom of the tank body, two groups of supporting legs are symmetrically installed on the bottom of the tank body, and a circular groove is formed in the top of the tank body. Also comprising: The mixing assembly is arranged in the interior of the tank body, and the mixing assembly comprises a fixing frame; The adjusting assembly is arranged above the tank body; The fixing frame is fixedly installed on the top of the tank body, the top of the fixing frame is fixedly installed with a servo motor, the output end of the servo motor is fixedly installed with a rotating shaft, the bottom end of the rotating shaft is rotatably connected with a support, the support is fixedly connected with the tank body, and a plurality of stirring blades are symmetrically installed on the outer side of the rotating shaft. The support frame is fixedly installed on one side of the rotating shaft, the interior of the support frame is movably connected with a movable pipe, two groups of stirring rods are symmetrically installed on the outer side of the movable pipe, and a positioning frame is fixedly installed on the outer top of the rotating shaft.

[0007] Preferably, the interior of the positioning frame is rotatably connected with a rotating cylinder, the two sides of the rotating cylinder are symmetrically and downwardly penetrated with a movable slot, the outer top of the movable pipe is symmetrically installed with a column block, the column block is slidably connected with the movable slot, the inner side of the tank body is circumferentially and symmetrically installed with two groups of mounting frames, the inner side of the two groups of mounting frames close to each other is fixedly installed with an inner gear ring, the outer top of the rotating cylinder is fixedly installed with a rotating gear, and the rotating gear is meshingly connected with the inner gear ring.

[0008] By adopting the above technical scheme, the rotating cylinder can rotate during circumferential rotation.

[0009] Preferably, the outer side of the rotating cylinder is rotatably connected with a housing below the rotating gear, the housing is fixedly connected with the positioning frame, the outer side of the rotating cylinder is fixedly installed with a first bevel gear inside the housing, the interior of the housing is rotatably connected with a rotating rod on one side, the outer side of the rotating rod is rotatably connected with a limiting frame, the limiting frame is fixedly connected with the positioning frame, one end of the rotating rod is fixedly installed with a second bevel gear, and the second bevel gear is meshingly connected with the first bevel gear.

[0010] By adopting the above technical scheme, the rotating of the rotating cylinder can drive the rotating of the rotating rod.

[0011] Preferably, the other end of the rotating rod is fixedly installed with a rotating disc, the top of the positioning frame is penetrated with a through slot below the rotating disc, the bottom of the positioning frame is fixedly installed with a U-shaped frame below the through slot, the interior of the U-shaped frame is slidably connected with a connecting frame, the top end of the connecting frame is fixedly installed with a movable frame, one side of the rotating disc is fixedly installed with a column rod, and the movable frame is slidably connected with the column rod.

[0012] By adopting the above technical scheme, the rotating of the rotating rod can drive the reciprocating movement of the connecting frame.

[0013] Preferably, the outer part of the movable tube is fixedly installed below the rotating cylinder with a fixed ring, and the outer part of the fixed ring is slidably connected with a connecting ring, and the connecting ring is fixedly connected with the connecting frame.

[0014] By adopting the above technical scheme, the movement of the connecting frame can drive the movement of the movable tube.

[0015] Preferably, the top of the movable tube is rotatably connected with a connecting tube, the top of the connecting tube is fixedly installed with a rotating motor, the inner bottom end of the movable tube is rotatably connected with a spiral blade, the output end of the rotating motor is fixedly connected with the spiral blade through the connecting tube, the outer side of the connecting tube is fixedly installed with a support rod, one side of the support rod is fixedly installed with an arc-shaped block, and the inner side of the circular groove is provided with a limiting ring groove, and the arc-shaped block is slidably connected with the limiting ring groove.

[0016] By adopting the above technical scheme, the material can be conveniently taken out and added.

[0017] Preferably, the lower part of the two sides of the movable tube is symmetrically connected with a connecting hose, one end of the connecting hose away from the movable tube is fixedly installed with a rotating tube, the outer side of the rotating tube is symmetrically hinged with a support plate, the support plate is fixedly connected with the movable tube, a torsional spring is arranged at the hinge between the rotating tube and the support plate, and the outer part of the movable tube is symmetrically installed below the connecting hose with a cylinder.

[0018] By adopting the above technical scheme, the material can be conveniently taken out and added.

[0019] Preferably, the inner part of the two cylinders is slidably connected with a movable rod, the outer side of the movable rod is sleeved with an extension spring, the two ends of the extension spring are fixedly connected with the cylinder and the movable rod respectively, the top side of the movable rod is fixedly installed with a support block, the top of the support block is fixedly installed with a moving block, one side of the moving block is provided with a sliding groove, the outer part of the movable tube is slidably connected with a moving plate above the cylinder, the bottom of the moving plate is symmetrically installed with two groups of mounting blocks, two mounting blocks in each group are fixedly installed with a movable block, the movable block is slidably connected with the sliding groove, and the top of the moving plate is symmetrically installed with a push rod.

[0020] By adopting the above technical scheme, when the rotating speed of the movable tube is increased, the rotating tube opening can be inclined downward.

[0021] Preferably, the adjusting assembly comprises a ring-shaped hopper slidingly connected outside the connecting pipe, and a material groove is symmetrically and vertically formed on the outside of the connecting pipe, and an arc-shaped groove is symmetrically and vertically formed on the inside of the ring-shaped hopper, and a mounting ring is fixedly mounted on the bottom of the ring-shaped hopper, and a mounting rod is fixedly mounted on one side of the mounting ring, and a moving frame is slidingly connected to the outside of the mounting rod, and a reset spring is sleeved between the moving frame and the mounting ring outside the mounting rod, and the two ends of the reset spring are fixedly connected to the moving frame and the mounting ring, and a positioning rod is symmetrically mounted on one side of the moving frame and slidingly connected to the mounting ring, and two groups of positioning grooves are symmetrically formed on the outside of the connecting pipe below the material groove, and the positioning rod is clampedly connected to the positioning grooves.

[0022] By adopting the above technical scheme, the position of the ring-shaped hopper can be conveniently adjusted.

[0023] A mixing method of a traditional Chinese medicine capsule raw material multi-component mixing device, the specific use steps are as follows: Step one: When the medicine powder is mixed, the medicine powder is added into the tank through the feeding pipe, and when the medicine powder is mixed, the servo motor is started to drive the rotating shaft to rotate, so that the stirring blade mixes the medicine powder, and the rotating shaft rotates at the same time to drive the rotating cylinder and the movable pipe to rotate in a circle through the support frame and the positioning frame, and the rotating cylinder rotates in a circle to rotate in a circle through the meshing of the rotating gear and the internal toothed ring, and the movable pipe is driven to rotate through the cooperation of the column block and the movable groove, and the movable pipe rotates in a circle to drive the connecting pipe to rotate in a circle, so that the arc-shaped block drives the sliding in the limiting ring groove, and the stirring rod is rotated to stir the medicine powder, and the rotating cylinder rotates in a circle to drive the rotating rod to rotate through the meshing of the first bevel gear and the second bevel gear, so that the column rod rotates in a circle on the rotating disc, and the column rod rotates in a circle to drive the connecting frame to move up and down reciprocatingly through the sliding connection with the movable frame, and then the movable pipe is continuously moved up and down through the cooperation of the connecting ring and the fixed ring, and when a small amount of medicine powder or additive is added during the mixing of the medicine powder, the material is added into the connecting pipe, the rotating motor is started to drive the spiral blade to rotate, so that the material is downwardly conveyed through the connecting hose into the rotating pipe, and then the material is discharged through the rotating pipe, and during the addition of the material, the movable pipe rotates rapidly, the centrifugal force is accelerated to discharge the material, the rotating pipe rotates in a circle with the movable pipe, and the rotating pipe can move up and down reciprocatingly, so that the material can be added at different depths and different regions during the mixing process, and when the sampling is performed after the material is mixed for a period of time, the rotating speed of the rotating shaft is reduced, the spiral blade is reversed through the rotating motor, the material in the tank can enter the rotating pipe, and then the material can enter the movable pipe and be discharged under the action of the spiral blade, and the movable pipe rotates in a circle and moves up and down reciprocatingly during the sampling, so that multi-point sampling can be realized; Step two: When mixing materials, if the rotating tube rotates too fast, it will cause the cylinder to rotate circumferentially. During the rotation of the cylinder, centrifugal force will cause the moving rod to move away from the rotating tube, compressing the telescopic spring. The moving rod can then move the moving block. Through the sliding groove on the moving block and the sliding connection between the moving block and the moving block, the moving rod can lift the moving plate after it moves. After the moving plate moves up, it can push the rotating tube onto the support plate through the push rod, causing the torsion spring to deform. At this time, the opening of the rotating tube will tilt downwards after rotation, thus preventing material residue inside the rotating tube when adding materials and accelerating the material discharge efficiency. At the same time, when sampling and testing materials, the rotation speed of the rotating shaft will be reduced, so that the centrifugal force on the moving rod will be continuously reduced, causing the moving rod to reset, which in turn will reset the rotating tube. The rotating tube will then tilt upwards after reset rotation, which will facilitate the entry of materials into the rotating tube and the moving tube, thus accelerating the material sampling efficiency and improving the testing efficiency. Step 3: During sampling, the two positioning rods are inserted into the two positioning slots below. During sampling, the material is discharged through the feeding trough of the connecting pipe, allowing the material to enter the annular hopper. After sampling, the moving frame can be pulled to stretch the return spring, causing the positioning rods to disengage from the positioning slots and the annular hopper to lose its limit position. The annular hopper can then be removed for easy inspection of the extracted material. When adding material, the material is placed in the annular hopper, and the annular hopper is placed over the connecting pipe. Pulling the moving frame aligns the arc-shaped groove on the annular hopper with the feeding trough on the connecting pipe, aligning the positioning rod with the upper positioning slot. Releasing the moving frame allows the positioning rod to insert into the positioning slot under the action of the return spring, thus positioning the annular hopper. The height of the annular hopper can then be adjusted according to whether material is being extracted or added, facilitating the adjustment of the annular hopper's position. This makes it convenient for both material collection during sampling and material placement during addition.

[0024] Compared with the prior art, the beneficial effects of the present invention are as follows: the multi-component mixing device and mixing method for the raw materials of traditional Chinese medicine capsules make it convenient to sample the powder at multiple points during the mixing process. It can sample the powder at different depths and in different areas, thus avoiding randomness in the samples and improving the accuracy of subsequent testing. Furthermore, the mixing component facilitates the uniform addition of small amounts of powder or additives during the mixing process. Materials can be added at different depths and in different areas, saving subsequent mixing time and improving the mixing efficiency of the powder. 1. When mixing the medicine powder, the medicine powder is added to the tank through the feeding pipe, and when mixing the medicine powder, the servo motor is started to drive the rotating shaft to rotate, so that the stirring blade mixes the medicine powder. The rotating shaft rotates at the same time, and the supporting frame and the positioning frame can drive the rotating cylinder and the movable pipe to rotate in a circle. The rotating cylinder rotates in a circle at the same time, and can rotate by itself through the meshing of the rotating gear and the internal tooth ring. The movable pipe can be driven to rotate by the cooperation of the column block and the movable groove. The movable pipe rotates in a circle to drive the connecting pipe to rotate in a circle, so that the arc-shaped block drives the sliding in the limiting ring groove, so that the stirring rod rotates to stir the medicine powder. The rotating cylinder rotates by itself through the meshing of the first bevel gear and the second bevel gear to drive the rotating rod to rotate, so that the column rod rotates in a circle on the rotating disc. The column rod rotates in a circle and can drive the connecting frame to move up and down reciprocatingly through the sliding connection with the movable frame, and then drive the movable pipe to move up and down continuously through the cooperation of the connecting ring and the fixed ring. When a small amount of medicine powder or additive is added during the mixing process of the medicine powder, the material is added to the connecting pipe, the rotating motor is started to drive the spiral blade to rotate, so that the material is downwardly conveyed through the connecting hose into the rotating pipe, and then discharged through the rotating pipe. During the material adding process, the movable pipe rotates rapidly, and the centrifugal force is used to accelerate the material discharge. During the material adding process, the rotating pipe rotates in a circle with the movable pipe, and the rotating pipe can move up and down reciprocatingly, so that the material can be added at different depths and different areas during the mixing process. At the same time, when sampling after the material mixing for a period of time, the rotating speed of the rotating shaft is reduced, the spiral blade is reversed by the rotating motor, the material in the tank can enter the rotating pipe, and then the material can enter the movable pipe and be discharged under the action of the spiral blade. The setting of the rotating pipe facilitates the sampling and the addition of the material, so that the medicine powder can be sampled at multiple points during the stirring process of the medicine powder, the medicine powder at different depths can be sampled, and the medicine powder at different areas can also be sampled, so that the medicine powder can be sampled at multiple points, the randomness of the sample can be avoided, the accuracy of the subsequent detection can be improved, and the medicine powder can be uniformly added by the stirring assembly during the stirring process. The material can be added at different depths and areas, the subsequent stirring time can be saved, and the mixing efficiency of the medicine powder can be improved; 2. When mixing materials, if the rotating tube rotates too fast, it will cause the cylinder to rotate circumferentially. During the rotation of the cylinder, centrifugal force will cause the moving rod to move away from the rotating tube, compressing the telescopic spring. The moving rod can then move the moving block. Through the sliding groove on the moving block and the sliding connection between the moving block and the moving block, the moving rod can lift the moving plate after it moves. After the moving plate moves up, it can push the rotating tube onto the support plate through the push rod, causing the torsion spring to deform. At this time, the opening of the rotating tube will tilt downwards after rotation, thus preventing material residue inside the rotating tube when adding materials and accelerating the material discharge efficiency. At the same time, when sampling and testing materials, reducing the rotation speed of the rotating shaft will continuously reduce the centrifugal force on the moving rod, causing the moving rod to reset. This will also reset the rotating tube, and the opening of the reset rotating tube will tilt upwards, making it easier for materials to enter the rotating tube and the moving tube. This will accelerate the material sampling efficiency and improve the testing efficiency. 3. During sampling, the two positioning rods are inserted into the two positioning slots below. During sampling, the material is discharged through the feed chute of the connecting pipe, allowing the material to enter the annular hopper. After sampling, the moving frame can be pulled to stretch the return spring, causing the positioning rods to disengage from the positioning slots and the annular hopper to lose its limit position. The annular hopper can then be removed for easy inspection of the extracted material. When adding material, place the material into the annular hopper, place the annular hopper over the connecting pipe, and pull the moving frame to align the arc groove on the annular hopper with the feed chute on the connecting pipe. At this point, the positioning rod is aligned with the upper positioning slot. Releasing the moving frame allows the positioning rod to insert into the positioning slot under the action of the return spring, thus positioning the annular hopper. The height of the annular hopper can then be adjusted according to whether material is being extracted or added, facilitating the adjustment of the annular hopper's position. This makes it convenient for both material collection during sampling and material placement during addition. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the cross-sectional structure of the tank body of the present invention; Figure 3 For the present invention Figure 2 Enlarged structural diagram of region A in the middle; Figure 4 This is a schematic diagram of the cross-sectional structure of the connecting ring of the present invention; Figure 5 This is a schematic diagram of the cross-sectional structure of the active tube of the present invention; Figure 6 For the present invention Figure 2 Enlarged structural diagram of region B in the middle; Figure 7 This is a schematic diagram of a partial structure of the active tube of the present invention; Figure 8 It is another perspective structure schematic view of the movable tube part of the application; Figure 9 It is a cross-section structure schematic view of the cylinder of the application; Figure 10 It is a structure schematic view of the adjusting assembly of the application.

[0026] In the figure: 1, tank body; 101, feed pipe; 102, discharge pipe; 103, support leg; 104, circular groove; 2, mixing assembly; 201, fixing frame; 202, servo motor; 203, rotating shaft; 204, stirring blade; 205, support frame; 206, movable tube; 207, positioning frame; 208, rotating cylinder; 209, movable groove; 210, column block; 211, mounting frame; 212, inner gear ring; 213, rotating gear; 214, shell; 215, first bevel gear; 216, rotating rod; 217, limiting frame; 218, second bevel gear; 219, rotating disc; 220, through groove; 221, U-shaped frame; 222, connecting frame; 223, movable frame; 224, column rod; 225, connecting ring; 226, fixed ring; 227, connecting pipe; 2271, support rod; 2272, arc block; 2273, limiting ring groove; 228, rotating motor; 229, helical blade; 230, connecting hose; 231, rotating pipe; 232, support plate; 233, torsional spring; 234, cylinder; 235, movable rod; 236, extension spring; 237, support block; 238, moving block; 239, sliding groove; 240, moving plate; 241, mounting block; 242, movable block; 243, push rod; 3, adjusting assembly; 301, annular hopper; 3011, mounting ring; 302, trough; 303, arc-shaped groove; 304, mounting rod; 305, moving frame; 306, return spring; 307, positioning rod; 308, positioning groove. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0028] Please refer to Figures 1-10 The application provides a technical solution: a traditional Chinese medicine capsule raw material multi-component mixing device, which comprises a tank body 1, a feed pipe 101 is connected through one side of the tank body 1, a discharge pipe 102 is connected through the bottom of the tank body 1, and two groups of support legs 103 are symmetrically installed on the bottom of the tank body 1 in a circumferential direction, and a circular groove 104 is provided through the top of the tank body 1; It also comprises: The mixing assembly 2 is arranged in the interior of the tank body 1, and the mixing assembly 2 comprises a fixing frame 201; The fixing frame 201 is fixedly installed on the top of the tank body 1, and a servo motor 202 is fixedly installed on the top of the fixing frame 201, and an output end of the servo motor 202 is fixedly installed with a rotating shaft 203, and the bottom end of the rotating shaft 203 is rotatably connected with a support, and the support is fixedly connected with the tank body 1, and a plurality of stirring blades 204 are symmetrically installed on the outer side of the rotating shaft 203 below; A support frame 205 is fixedly installed on one side of the rotating shaft 203, and an active pipe 206 is movably connected in the interior of the support frame 205, and two groups of stirring rods are symmetrically installed on the outer side of the active pipe 206 below, and a positioning frame 207 is fixedly installed on the outer side of the rotating shaft 203 above; A rotating cylinder 208 is rotatably connected on one side in the interior of the positioning frame 207, and two active grooves 209 are symmetrically and penetratingly arranged on the two sides of the rotating cylinder 208 below, and column blocks 210 are symmetrically installed on the outer side of the active pipe 206 above, and the column blocks 210 are slidably connected with the active grooves 209, and two groups of installation frames 211 are circumferentially and symmetrically installed on the inner side of the tank body 1 above, and an inner gear ring 212 is fixedly installed on one side of the two groups of installation frames 211 close to each other, and a rotating gear 213 is fixedly installed on the outer side of the rotating cylinder 208 above, and the rotating gear 213 is meshingly connected with the inner gear ring 212; A housing 214 is rotatably connected on the outer side of the rotating cylinder 208 below the rotating gear 213, and the housing 214 is fixedly connected with the positioning frame 207, and a first bevel gear 215 is fixedly installed on the outer side of the rotating cylinder 208 inside the housing 214 above, and a rotating rod 216 is rotatably connected on one side in the interior of the housing 214, and a limiting frame 217 is rotatably connected on the outer side of the rotating rod 216, and the limiting frame 217 is fixedly connected with the positioning frame 207, and a second bevel gear 218 is fixedly installed on one end of the rotating rod 216, and the second bevel gear 218 is meshingly connected with the first bevel gear 215; A rotating disc 219 is fixedly installed on the other end of the rotating rod 216, and a through groove 220 is penetratingly arranged on the top of the positioning frame 207 below the rotating disc 219, and a U-shaped frame 221 is fixedly installed on the bottom of the positioning frame 207 below the through groove 220, and a connecting frame 222 is slidably connected in the interior of the U-shaped frame 221, and an active frame 223 is fixedly installed on the top end of the connecting frame 222, and a column rod 224 is fixedly installed on one side of the rotating disc 219, and the active frame 223 is slidably connected with the column rod 224; A fixed ring 226 is fixedly installed on the outer side of the active pipe 206 below the rotating cylinder 208, and a connecting ring 225 is slidably connected on the outer side of the fixed ring 226, and the connecting ring 225 is fixedly connected with the connecting frame 222; The top of the movable pipe 206 is rotationally connected with a connecting pipe 227, the top of the connecting pipe 227 is fixedly installed with a rotation motor 228, the inside bottom end of the movable pipe 206 is rotationally connected with a spiral blade 229, the output end of the rotation motor 228 is fixedly connected with the spiral blade 229 through the connecting pipe 227, one side of the outside of the connecting pipe 227 is fixedly installed with a supporting rod 2271, one side of the supporting rod 2271 is fixedly installed with an arc block 2272, the inside of the circular groove 104 is provided with a limiting ring groove 2273, and the arc block 2272 is in sliding connection with the limiting ring groove 2273; The lower sides of the two sides of the movable pipe 206 are symmetrically penetrated with a connecting hose 230, the end, away from the movable pipe 206, of the connecting hose 230 is fixedly installed with a rotating pipe 231, the outside of the rotating pipe 231 is symmetrically hingedly connected with a supporting plate 232, the supporting plate 232 is fixedly connected with the movable pipe 206, the hinged position of the rotating pipe 231 and the supporting plate 232 is provided with a torsional spring 233, and the outside of the movable pipe 206 is symmetrically installed with a cylinder 234 below the connecting hose 230.

[0029] Embodiment one: as Figures 1-6As shown, when the medicine powder is mixed, the medicine powder is added to the tank body 1 through the feeding pipe 101, and when the medicine powder is mixed, the servo motor 202 is started to drive the rotating shaft 203 to rotate, so that the stirring blade 204 mixes the medicine powder. The rotating shaft 203 rotates at the same time, and the rotating cylinder 208 and the movable pipe 206 can be driven to rotate in a circle through the support frame 205 and the positioning frame 207. The rotating cylinder 208 rotates in a circle at the same time, and can rotate by itself through the meshing of the rotating gear 213 and the inner gear ring 212. The movable pipe 206 can be driven to rotate through the cooperation of the column block 210 and the movable groove 209. The movable pipe 206 rotates in a circle to drive the connecting pipe 227 to rotate in a circle, so that the arc block 2272 and the limiting ring groove 2273 slide, so that the stirring rod rotates to stir the medicine powder. The rotating cylinder 208 rotates by itself through the meshing of the first bevel gear 215 and the second bevel gear 218 to drive the rotating rod 216 to rotate, so that the column rod 224 on the rotating disc 219 rotates in a circle. The column rod 224 rotates in a circle and can drive the connecting frame 222 to move up and down reciprocatingly through the sliding connection with the movable frame 223, and then drive the movable pipe 206 to move up and down continuously through the cooperation of the connecting ring 225 and the fixed ring 226. When a small amount of medicine powder or additive is added during the mixing of the medicine powder, the material is added to the connecting pipe 227, the rotating motor 228 is started to drive the spiral blade 229 to rotate, so that the material is downwardly conveyed through the connecting hose 230 into the rotating pipe 231, and then discharged through the rotating pipe 231. During the addition of the material, the movable pipe 206 rotates rapidly, and the centrifugal force is used to accelerate the discharge of the material. The rotating pipe 231 rotates in a circle with the movable pipe 206, and can move up and down reciprocatingly, so that the material can be added at different depths and in different regions during the mixing process. When the material is sampled after being mixed for a period of time, the rotating speed of the rotating shaft 203 is reduced, the spiral blade 229 is reversed through the rotating motor 228, and the material in the tank body 1 can enter the rotating pipe 231. Then the material can enter the movable pipe 206, and the sampling material can be discharged under the action of the spiral blade 229, so that the medicine powder can be sampled at multiple points during the stirring process, the medicine powder at different depths can be sampled, and the medicine powder at different regions can also be sampled. The medicine powder can be sampled at multiple points, the randomness of the sample can be avoided, the accuracy of subsequent detection can be improved, and the medicine powder can be uniformly added through the stirring assembly during the stirring process. The material can be added at different depths and in different regions, the subsequent stirring time can be saved, and the mixing efficiency of the medicine powder can be improved.

[0030] Both cylinders 234 have movable rods 235 slidably connected inside them. A telescopic spring 236 is sleeved on one side of the movable rod 235, and the two ends of the telescopic spring 236 are fixedly connected to the cylinder 234 and the movable rod 235 respectively. A support block 237 is fixedly installed on one side of the top of the movable rod 235, and a moving block 238 is fixedly installed on the top of the support block 237. A sliding groove 239 is opened through one side of the moving block 238. A moving plate 240 is slidably connected above the cylinder 234 on the outside of the movable tube 206. Two sets of mounting blocks 241 are symmetrically installed on the bottom of the moving plate 240, and a movable block 242 is fixedly installed between each set of two mounting blocks 241. The movable block 242 is slidably connected to the sliding groove 239, and push rods 243 are symmetrically installed on the top of the moving plate 240.

[0031] Example 2: Figures 7-9 As shown, when mixing and stirring the materials, the rotation speed of the movable tube 206 is too fast. During the rotation of the movable tube 206, the cylinder 234 rotates circumferentially. During the circumferential rotation of the cylinder 234, the centrifugal force causes the movable rod 235 to move away from the movable tube 206, while simultaneously compressing the telescopic spring 236. The movable rod 235 can drive the movable block 238 to move. Through the sliding groove 239 on the movable block 238 and the sliding block 242, the movable rod 235 can lift the movable plate 240 after moving. After the movable plate 240 moves upward, it can push the rotating tube 231 onto the support plate 232 through the push rod 243, causing the torsion... When spring 233 deforms, the opening of rotating tube 231 tilts downwards after rotation, thus preventing material residue inside rotating tube 231 when adding material and accelerating material discharge efficiency. Simultaneously, during material sampling and testing, the rotational speed of rotating shaft 203 is reduced, causing the centrifugal force on movable rod 235 to continuously decrease, leading to rod 235 resetting. This, in turn, resets rotating tube 231, causing its opening to tilt upwards, facilitating material entry into rotating tube 231 and subsequently into movable tube 206, thereby accelerating material sampling and improving testing efficiency.

[0032] Adjustment component 3 is located above tank body 1; The adjusting assembly 3 comprises an annular hopper 301 slidably connected outside the connecting pipe 227, a material groove 302 is symmetrically and through provided above the outer portion of the connecting pipe 227, and an arc-shaped groove 303 is symmetrically and through provided inside the annular hopper 301, and the bottom of the annular hopper 301 is fixedly installed with a mounting ring 3011, one side of the mounting ring 3011 is fixedly installed with a mounting rod 304, the outer portion of the mounting rod 304 is slidably connected with a moving frame 305, and a reset spring 306 is sleeved outside the mounting rod 304 between the moving frame 305 and the mounting ring 3011, both ends of the reset spring 306 are fixedly connected with the moving frame 305 and the mounting ring 3011 respectively, one side of the moving frame 305 is symmetrically installed with a positioning rod 307, the positioning rod 307 is slidably connected with the mounting ring 3011, and two groups of positioning grooves 308 are symmetrically and through provided below the outer portion of the connecting pipe 227 at the material groove 302, and the positioning rod 307 is clampedly connected with the positioning grooves 308.

[0033] Embodiment three: as shown in Figure 2 and Figure 10 When the sampling operation is performed, the two positioning rods 307 are inserted with the two positioning grooves 308 below, in the sampling process, the material is discharged through the material groove 302 of the connecting pipe 227, so that the material can enter the annular hopper 301 during sampling, after the sampling is completed, the moving frame 305 can be pulled, so that the reset spring 306 can be stretched, and the positioning rod 307 is separated from the positioning groove 308, so that the annular hopper 301 loses the limit, the annular hopper 301 can be taken out, and the removed material can be detected, then when the material is added, the added material is placed in the annular hopper 301, the annular hopper 301 is sleeved outside the connecting pipe 227, the moving frame 305 is pulled, so that the arc-shaped groove 303 on the annular hopper 301 is aligned with the material groove 302 on the connecting pipe 227, at this time, the positioning rod 307 is aligned with the positioning groove 308 above, the moving frame 305 is loosened under the action of the reset spring 306, so that the positioning rod 307 is inserted into the positioning groove 308, the annular hopper 301 can be positioned, and then the height of the annular hopper 301 can be adjusted according to whether the material is removed or added, so as to conveniently adjust the position of the annular hopper 301, which is convenient for collecting the material during sampling and placing the material during adding.

[0034] Working principle: when the traditional Chinese medicine capsule raw material multi-component mixing device is used, first, according to Figures 1-10As shown, when the medicine powder is mixed, the medicine powder is added into the tank 1 through the feeding pipe 101, when the medicine powder is mixed, the servo motor 202 is started to drive the rotating shaft 203 to rotate, so that the stirring blade 204 mixes the medicine powder, the rotating shaft 203 rotates at the same time, and the rotating cylinder 208 and the movable pipe 206 can be driven to rotate in a circle through the support frame 205 and the positioning frame 207, the rotating cylinder 208 rotates in a circle at the same time, and can rotate by itself through the meshing of the rotating gear 213 and the inner gear ring 212, the movable pipe 206 can be driven to rotate through the cooperation of the column block 210 and the movable groove 209, the movable pipe 206 rotates in a circle to drive the connecting pipe 227 to rotate in a circle, so that the arc block 2272 and the limiting ring groove 2273 slide, so that the stirring rod rotates to stir the medicine powder, the rotating cylinder 208 rotates by itself in the process of rotating, and the rotating rod 216 is driven to rotate through the meshing of the first bevel gear 215 and the second bevel gear 218, so that the rotating disc 219 rotates in a circle, the column rod 224 rotates in a circle in the process of rotating, and can drive the connecting frame 222 to move up and down reciprocatingly through the sliding connection with the movable frame 223, and then drives the movable pipe 206 to move up and down continuously through the cooperation of the connecting ring 225 and the fixed ring 226, a small amount of medicine powder or additive is added during the mixing process of the medicine powder, the material is added into the connecting pipe 227, the rotating motor 228 is started to drive the spiral blade 229 to rotate, so that the material is downwardly conveyed through the connecting hose 230 into the rotating pipe 231, and is discharged through the rotating pipe 231, the material is rapidly rotated in the adding process of the material, and the material is discharged through the centrifugal force, the rotating pipe 231 rotates in a circle with the movable pipe 206, and the rotating pipe 231 can move up and down reciprocatingly, so that the material can be added in different depths and different areas in the mixing process, and at the same time, the sampling is carried out after the material is mixed for a period of time, the rotating speed of the rotating shaft 203 is reduced, the spiral blade 229 is reversed through the rotating motor 228, the material in the tank 1 can enter the rotating pipe 231, and then the material can enter the movable pipe 206, and the sampling material can be discharged under the action of the spiral blade 229; When the material is mixed and stirred, the rotating speed of the movable pipe 206 is too fast, the movable pipe 206 drives the cylinder 234 to rotate in a circle during rotation, the cylinder 234 rotates in a circle and moves away from the movable pipe 206 by centrifugal force during rotation, at the same time, the telescopic spring 236 is compressed, the movable rod 235 can drive the moving block 238 to move, through the sliding connection between the sliding groove 239 on the moving block 238 and the movable block 242, the movable rod 235 can lift the moving plate 240 after moving, the moving plate 240 can drive the rotating pipe 231 to push on the supporting plate 232 and make the torsional spring 233 deform after moving upwards, at this time, the opening of the rotating pipe 231 is inclined downward after rotating, thereby avoiding the material remaining in the rotating pipe 231 when adding the material, at the same time, the rotating speed of the rotating shaft 203 is reduced when sampling and detecting the material, the centrifugal force acting on the movable rod 235 is continuously reduced, the movable rod 235 is reset, thereby the rotating pipe 231 is reset, the rotating opening of the rotating pipe 231 is inclined upward after resetting, at this time, the material can enter the rotating pipe 231, thereby the material can enter the movable pipe 206, the sampling efficiency of the material is improved, the detection efficiency is improved, when sampling, the two positioning rods 307 are inserted into the two positioning grooves 308 below, during sampling, the material is discharged through the feeding groove 302 on the connecting pipe 227, so that the material can enter the annular hopper 301 when sampling, after sampling is completed, the movable frame 305 can be pulled, so that the reset spring 306 is stretched, at the same time, the positioning rod 307 is separated from the positioning groove 308, so that the annular hopper 301 is out of limit, the annular hopper 301 can be taken out, thereby the material taken out can be detected, then when adding the material, the added material is placed in the annular hopper 301, the annular hopper 301 is sleeved outside the connecting pipe 227, the movable frame 305 is pulled, so that the arc-shaped groove 303 on the annular hopper 301 is aligned with the feeding groove 302 on the connecting pipe 227, at this time, the positioning rod 307 is aligned with the positioning groove 308 above, the movable frame 305 is loosened, the positioning rod 307 is inserted into the positioning groove 308 under the action of the reset spring 306, the annular hopper 301 can be positioned, thereby the height of the annular hopper 301 can be adjusted according to whether the material is taken out or added.

[0035] The contents not described in detail in the specification belong to the prior art known by the person skilled in the art.

[0036] Although the present application has been described in detail with reference to the foregoing embodiments, the technical solutions recorded in the foregoing embodiments can be modified by the person skilled in the art, or some technical features can be replaced equivalently, any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A traditional Chinese medicine capsule raw material multi-component mixing device, comprising a tank body (1), one side of the tank body (1) is connected with a feeding pipe (101) penetratingly, the bottom of the tank body (1) is connected with a discharging pipe (102) penetratingly, and the bottom of the tank body (1) is symmetrically installed with two groups of supporting legs (103), and the top of the tank body (1) is penetratingly provided with a circular groove (104); characterized in that It also includes: a mixing assembly (2) arranged in the tank body (1), the mixing assembly (2) comprising a fixing frame (201); an adjusting assembly (3) arranged above the tank body (1); the fixing frame (201) is fixedly installed on the top of the tank body (1), the top of the fixing frame (201) is fixedly installed with a servo motor (202), the output end of the servo motor (202) is fixedly installed with a rotating shaft (203), the bottom end of the rotating shaft (203) is rotatably connected with a support, the support is fixedly connected with the tank body (1), and a plurality of stirring blades (204) are symmetrically installed on the outer side of the rotating shaft (203) below. a supporting frame (205) fixedly installed on one side of the rotating shaft (203), an active pipe (206) movably connected in the supporting frame (205), two groups of stirring rods symmetrically installed on the outer side of the active pipe (206) below, and a positioning frame (207) fixedly installed on the outer side of the rotating shaft (203) above.

2. The traditional Chinese medicine capsule raw material multi-component mixing device according to claim 1, characterized in that: a rotating cylinder (208) rotatably connected on one side of the positioning frame (207), two active grooves (209) symmetrically penetratingly provided on the two sides of the rotating cylinder (208) below, column blocks (210) symmetrically installed on the outer side of the active pipe (206) above, the column blocks (210) slidably connected with the active grooves (209), two groups of mounting frames (211) symmetrically installed on the inner side of the tank body (1) above, an inner gear ring (212) fixedly installed on one side of the two groups of mounting frames (211) close to each other, a rotating gear (213) fixedly installed on the outer side of the rotating cylinder (208) above, and the rotating gear (213) meshingly connected with the inner gear ring (212).

3. The traditional Chinese medicine capsule raw material multi-component mixing device according to claim 2, characterized in that: a housing (214) rotatably connected below the rotating gear (213) on the outer side of the rotating cylinder (208), the housing (214) fixedly connected with the positioning frame (207), a first bevel gear (215) fixedly installed on the outer side of the rotating cylinder (208) inside the housing (214) above, a rotating rod (216) rotatably connected on one side of the housing (214) inside, a limiting frame (217) rotatably connected on the outer side of the rotating rod (216), the limiting frame (217) fixedly connected with the positioning frame (207), a second bevel gear (218) fixedly installed on one end of the rotating rod (216), and the second bevel gear (218) meshingly connected with the first bevel gear (215).

4. The traditional Chinese medicine capsule raw material multi-component mixing device according to claim 3, characterized in that: The other end of the rotating rod (216) is fixedly installed with a rotating disc (219), a through groove (220) is vertically arranged on the bottom of the rotating disc (219), a U-shaped frame (221) is fixedly installed on the bottom of the through groove (220), a connecting frame (222) is slidably connected in the U-shaped frame (221), a movable frame (223) is fixedly installed on the top of the connecting frame (222), a column (224) is fixedly installed on one side of the rotating disc (219), and the movable frame (223) is slidably connected with the column (224).

5. The traditional Chinese medicine capsule raw material multi-component mixing device according to claim 4, characterized in that: A fixed ring (226) is fixedly installed on the bottom of the rotating cylinder (208) outside the movable pipe (206), a connecting ring (225) is slidably connected outside the fixed ring (226), and the connecting ring (225) is fixedly connected with the connecting frame (222).

6. The traditional Chinese medicine capsule raw material multi-component mixing device according to claim 5, characterized in that: A connecting pipe (227) is rotatably connected to the top of the movable pipe (206), a rotating motor (228) is fixedly installed on the top of the connecting pipe (227), a spiral blade (229) is rotatably connected to the bottom of the movable pipe (206), the output end of the rotating motor (228) is fixedly connected with the spiral blade (229) through the connecting pipe (227), a support rod (2271) is fixedly installed on one side of the connecting pipe (227) outside, an arc block (2272) is fixedly installed on one side of the support rod (2271), a limiting ring groove (2273) is formed in the inner side of the circular groove (104), and the arc block (2272) is slidably connected with the limiting ring groove (2273).

7. The traditional Chinese medicine capsule raw material multi-component mixing device according to claim 6, characterized in that: A connecting hose (230) is symmetrically and through connected below the two sides of the movable pipe (206), a rotating pipe (231) is fixedly installed on the end of the connecting hose (230) away from the movable pipe (206), support plates (232) are symmetrically hinged on the outer side of the rotating pipe (231), the support plates (232) are fixedly connected with the movable pipe (206), torsional springs (233) are arranged at the hinged positions of the rotating pipe (231) and the support plates (232), and cylinder bodies (234) are symmetrically installed below the connecting hose (230) outside the movable pipe (206).

8. The traditional Chinese medicine capsule raw material multi-component mixing device according to claim 7, characterized in that: The inner part of two said barrels (234) is slidably connected with a movable rod (235), one side of the outer part of said movable rod (235) is sleeved with a telescopic spring (236), and the two ends of said telescopic spring (236) are fixedly connected with the barrel (234) and the movable rod (235) respectively, at the same time, the top side of said movable rod (235) is fixedly installed with a supporting block (237), the top of said supporting block (237) is fixedly installed with a moving block (238), one side of said moving block (238) is penetrated with a sliding slot (239), the outer part of said movable tube (206) is slidably connected with a moving plate (240) above the barrel (234), at the same time, the bottom of said moving plate (240) is symmetrically installed with two groups of installation blocks (241), and two said installation blocks (241) are fixedly installed with a movable block (242) between each group, said movable block (242) is slidably connected with the sliding slot (239), and the top of said moving plate (240) is symmetrically installed with a push rod (243).

9. The traditional Chinese medicine capsule raw material multi-component mixing device according to claim 8, characterized in that: The adjusting assembly (3) comprises an annular hopper (301) slidably connected outside the connecting pipe (227), an ingredient groove (302) is symmetrically penetrated on the outer part of the upper part of the connecting pipe (227), and an arc-shaped groove (303) is symmetrically penetrated on the inner side of the annular hopper (301), at the same time, the bottom of the annular hopper (301) is fixedly installed with an installation ring (3011), one side of the installation ring (3011) is fixedly installed with an installation rod (304), the outer part of said installation rod (304) is slidably connected with a moving frame (305), a reset spring (306) is sleeved between the outer part of the installation rod (304) and the moving frame (305) and the installation ring (3011), at the same time, the two ends of said reset spring (306) are fixedly connected with the moving frame (305) and the installation ring (3011) respectively, one side of said moving frame (305) is symmetrically installed with a positioning rod (307), said positioning rod (307) is slidably connected with the installation ring (3011), and two groups of positioning grooves (308) are symmetrically arranged on the outer part of the connecting pipe (227) below the ingredient groove (302), at the same time, said positioning rod (307) is clampedly connected with the positioning groove (308).

10. A mixing method of a traditional Chinese medicine capsule raw material multi-component mixing device, adopting the traditional Chinese medicine capsule raw material multi-component mixing device according to claim 9, characterized in that, The specific use steps are as follows: Step one: When the medicine powder is mixed, the medicine powder is added into the tank (1) through the feeding pipe (101), and when the medicine powder is mixed, the servo motor (202) is started to drive the rotating shaft (203) to rotate, so that the stirring blade (204) mixes the medicine powder. The rotating shaft (203) rotates at the same time, and the rotating cylinder (208) and the movable pipe (206) can be driven to rotate in a circle through the support frame (205) and the positioning frame (207). The rotating cylinder (208) rotates in a circle at the same time, and can rotate by itself through the meshing of the rotating gear (213) and the inner gear ring (212). The movable pipe (206) can be driven to rotate through the cooperation of the column block (210) and the movable groove (209). The movable pipe (206) rotates in a circle to drive the connecting pipe (227) to rotate in a circle, so that the arc block (2272) and the driving limiting ring groove (2273) slide, so that the stirring rod rotates to stir the medicine powder. The rotating cylinder (208) rotates by itself through the meshing of the first bevel gear (215) and the second bevel gear (218) to drive the rotating rod (216) to rotate, so that the column rod (224) on the rotating disc (219) rotates in a circle. The column rod (224) rotates in a circle and can drive the connecting frame (222) to move up and down reciprocatingly through the sliding connection with the movable frame (223), and then drives the movable pipe (206) to move up and down continuously through the cooperation of the connecting ring (225) and the fixed ring (226). When a small amount of medicine powder or additive is added during the mixing of the medicine powder, the material is added into the connecting pipe (227), the rotating motor (228) is started to drive the spiral blade (229) to rotate, so that the material is downwardly conveyed through the connecting hose (230) into the rotating pipe (231), and then discharged through the rotating pipe (231). During the adding of the material, the movable pipe (206) rotates rapidly, and the centrifugal force is accelerated to discharge the material. During the adding of the material, the rotating pipe (231) rotates in a circle with the movable pipe (206), and the rotating pipe (231) can move up and down reciprocatingly, so that the material can be added at different depths and different regions during the mixing. At the same time, after the material is mixed for a period of time, the rotating speed of the rotating shaft (203) is reduced, the spiral blade (229) is reversed through the rotating motor (228), and the material in the tank (1) can enter the rotating pipe (231), and then the material can enter the movable pipe (206). The sampling material can be discharged under the action of the spiral blade (229). At the same time of sampling, the movable pipe (206) rotates by itself and moves up and down reciprocatingly, so that multi-point sampling can be realized; Step two: When the material is mixed and stirred, the rotating speed of the movable pipe (206) is too fast, and the movable pipe (206) drives the cylinder (234) to rotate in a circle during rotation. The cylinder (234) rotates in a circle and moves away from the movable pipe (206) through the centrifugal force, and at the same time, the movable rod (235) compresses the extension spring (236). The movable rod (235) can drive the moving block (238) to move, and through the sliding connection of the sliding groove (239) on the moving block (238) and the movable block (242), the movable rod (235) can lift the moving plate (240) after moving. After the moving plate (240) moves upwards, the push rod (243) pushes the rotating pipe (231) on the support plate (232) and makes the torsional spring (233) deform. At this time, the rotating pipe (231) rotates and the opening tilts downward, thereby avoiding the residue of the material in the rotating pipe (231) when adding the material, and at the same time, the efficiency of discharging the material can be accelerated. At the same time, when sampling and detecting the material, the rotating speed of the rotating shaft (203) is reduced, the centrifugal force acting on the movable rod (235) is continuously reduced, the movable rod (235) is reset, and the rotating pipe (231) is reset. The rotating pipe (231) is reset and the rotating opening tilts upward. At this time, the material can enter the rotating pipe (231), and the sampling efficiency of the material can be accelerated, and the detection efficiency can be improved. Step three: When the sampling operation is performed, the two positioning rods (307) are inserted into the two positioning grooves (308) below. During the sampling process, the material is discharged through the material slot (302) on the connecting pipe (227), so that the material can enter the annular hopper (301) during sampling. After the sampling is completed, the movable frame (305) can be pulled to stretch the reset spring (306), and at the same time, the positioning rod (307) is separated from the positioning groove (308), so that the annular hopper (301) loses the limit and can be taken down. The removed material can be detected, and then when the material is added, the added material is placed in the annular hopper (301), the annular hopper (301) is sleeved outside the connecting pipe (227), the movable frame (305) is pulled, the arc-shaped groove (303) on the annular hopper (301) is aligned with the material slot (302) on the connecting pipe (227), and at this time, the positioning rod (307) is aligned with the upper positioning groove (308). Loosen the movable frame (305) to make the positioning rod (307) inserted into the positioning groove (308) under the action of the reset spring (306), so that the annular hopper (301) can be positioned, and then the height of the annular hopper (301) can be adjusted according to whether the material is taken out or added. The position of the annular hopper (301) is adjusted, which is convenient for collecting the material during sampling and placing the material during adding.

Citation Information

Patent Citations

  • Capsule raw material mixing device

    CN220143157U