Extract mixing equipment for processing of iba fungus oral liquid

Through the mixing equipment of bubble stirring and modular design, the problems of mechanical stirring damage and cleaning difficulties in the processing of Bachijun oral liquid are solved, and the mixing effect of stable product quality and energy-saving and environmentally friendly is achieved, and it is adapted to the production of multiple formulas.

CN120268295AInactive Publication Date: 2025-07-08YANBIAN LINGHUA WORKSHOP BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510251459.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-07-08
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the processing of Bachichi oral liquid, mechanical stirring may damage the active ingredients, make cleaning difficult and cross-contamination risk, and inaccurate raw material ratio leads to unstable product quality.

Method used

The mixing equipment with bubble stirring and modular design is adopted to generate disturbed mixing through gas pressure to ensure accurate raw material proportions and realize rapid replacement and cleaning of raw material barrels. Accurate transportation is achieved using servo motors and screws, and combined with quality detection devices to ensure uniform mixing of ingredients.

Benefits of technology

Improves the consistency of product quality, reduces mechanical damage and cleaning complexity, is energy-saving and environmentally friendly, adapts to production of multiple formulas, and reduces waste of raw materials and operation complexity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of oral liquid extracting and processing devices, in particular to an extract mixing device for processing archaea oral liquid, which comprises a device box, a plurality of material conveying pipes are fixedly mounted at the left end of the inner side of the device box, the material conveying pipes correspond to raw material barrels, and the material conveying pipes are fixedly connected with a mixing pipe; a plurality of discharging pipes used for extracting raw materials in the raw material barrel are fixedly installed at the upper end of the inner side of the device box and correspond to the raw material barrel, the upper ends of the discharging pipes penetrate through the interior of the raw material barrel, and pushing pipes are fixedly installed at the ends, away from the raw material barrel, of the discharging pipes. The end, close to the mixing pipe, of the propelling pipe is fixedly connected with a weighing pipe used for detecting the mass of the raw materials, a mass detection device is arranged in the weighing pipe, the raw materials are weighed according to the proportion before mixing, it is ensured that the content of each component in a product is kept stable, product component fluctuation caused by inaccurate raw material amount is avoided, and the product quality is improved. Therefore, the consistency of product quality is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of oral liquid extraction and processing devices, and particularly to an extract mixing device for processing Inonotus obliquus oral liquid. Background Art

[0002] Inonotus obliquus is a type of fungus that has received extensive attention due to its rich bioactive components. Especially in the medicinal field, the extracts of Inonotus obliquus have various effects, such as enhancing immunity, anti-tumor, antioxidant, etc. Therefore, it is widely used in the research and development of health products and drugs. Especially in products in the form of oral liquids, it is favored by consumers because of its convenience for absorption and use.

[0003] After retrieval, it is found that the prior art publication number is CN213824420U, which discloses a mixing device for raw materials of veterinary oral liquid, including a mixing tank. Above the mixing tank, there are a motor and a feed inlet. The feed inlet is located on one side of the motor. Below the motor, a rotating shaft is rotatably connected, and the rotating shaft extends into the interior of the mixing tank. Stirring plates are welded and fixed on the rotating shaft. At the top of the feed inlet, a clamping groove is opened. Inside the clamping groove, a clamping cylinder is clamped and connected. Above the clamping cylinder, a funnel is welded and fixed. Below the mixing tank, there is a vibration motor and a discharge port. This solution is convenient for clamping and fixing the funnel on the feed inlet by opening a clamping groove at the top of the feed inlet, which can increase the firmness of the funnel and avoid poor fixing effect of the funnel and easy falling. By installing the vibration motor below the mixing tank, it is convenient for the vibration motor to vibrate the bottom of the mixing tank, and the impurities deposited at the bottom of the mixing tank are vibrated and floated up and discharged through the discharge port.

[0004] Therefore, based on the above retrieval and combined with the existing technology, when the above solution is used, during the stirring process, mechanical stirring directly applies mechanical force to the liquid through devices such as rotating blades, which may cause damage to some active ingredients or suspended particles in the liquid medicine. And after these components come into contact with the liquid medicine, they need to be cleaned regularly. Especially in the production of medicine or food, it is necessary to ensure the hygiene of the equipment, which further increases the workload of cleaning. Moreover, some components may be difficult to clean thoroughly, posing a risk of cross-contamination. For this reason, we propose an extract mixing device for processing Inonotus obliquus oral liquid. Summary of the Invention

[0005] The purpose of the present invention is to provide an extract mixing device for processing Inonotus obliquus oral liquid to solve the problems raised in the above background art.

[0006] To achieve the above object, the present invention provides the following technical solutions: An extract mixing device for processing the oral liquid of Inonotus obliquus, comprising a device box. At the upper inner side of the device box, a mixing barrel for stirring the medicine is fixedly installed. At the upper end of the device box, a plurality of raw material barrels are detachably installed. At the lower inner side of the device box, a mixing pipe is fixedly installed. The output end of the mixing pipe is communicated with the bottom end of the mixing barrel. At the left inner side of the device box, a plurality of feeding pipes are fixedly installed. The feeding pipes correspond to the raw material barrels, and the feeding pipes are all fixedly connected to the mixing pipe. At the upper inner side of the device box, a plurality of discharging pipes for extracting the raw materials in the raw material barrels are fixedly installed. The discharging pipes correspond to the raw material barrels, and the upper ends of the discharging pipes penetrate into the interiors of the raw material barrels. One end of the discharging pipe far from the raw material barrel is fixedly installed with a propulsion pipe. One end of the propulsion pipe close to the mixing pipe is fixedly connected with a weighing pipe for detecting the quality of the raw materials. A quality detection device is arranged inside the weighing pipe.

[0007] As a further solution of the present invention, a sealing plug is slidably connected to the bottom end of the mixing barrel. A plurality of air outlets are arranged on the outer surface of the sealing plug, and the mixing pipe is fixedly connected to the sealing plug. A plurality of blades are rotatably installed at the inner end of the discharging pipe. A servo motor is fixedly installed at the right end of the propulsion pipe. The output end of the servo motor is fixedly installed with a screw rod for transporting the raw materials. The screw rod is located inside the propulsion pipe. By rotating the blades, the extraction of the raw materials is realized, and the extraction efficiency is maximized.

[0008] As a further solution of the present invention, the quality detection device comprises a measuring cylinder. The measuring cylinder is slidably installed at the inner end of the weighing pipe. A conical head is fixedly installed at the bottom inner side of the measuring cylinder, and a plurality of rectangular holes are opened at the bottom end of the measuring cylinder. A plug piece is penetrated through the rectangular holes, and the plug pieces are fixedly connected through a connecting rod.

[0009] As a further solution of the present invention, an isolation pipe is fixedly installed at the inner end of the weighing pipe. A push rod is fixedly installed at the bottom end of the measuring cylinder. The push rod is located inside the isolation pipe. An installation ring is fixedly installed on the outer surface of the weighing pipe. A movable pipe is slidably installed at one end of the installation ring far from the weighing pipe. A conduction pipe is fixedly installed at the bottom end of the installation ring, and the output end of the conduction pipe penetrates into the inner end of the movable pipe. The input end of the conduction pipe is sleeved on the outer surface of the push rod.

[0010] As a further solution of the present invention, a movable frame is slidably installed at one end of the installation ring far from the weighing pipe. A locking ball is slidably installed at the inner end of the movable frame. An arc-shaped groove is opened on the outer surface of the movable pipe. The locking ball can be completely clamped in the arc-shaped groove. At the same time, the arc-shaped design of the arc-shaped groove reduces the stress friction.

[0011] As a further solution of the present invention, when the movable tube moves to be parallel to the locking ball, the locking ball is clamped in the arc-shaped groove, and a trigger cylinder is arranged inside the movable frame, and the trigger cylinder corresponds to the locking ball.

[0012] As a further solution of the present invention, a plurality of locking hooks are rotatably installed at the inner end of the movable frame, the locking hooks correspond to the sliding holes, a central rod is penetrated through the inner end of the locking ball, a dial is fixedly installed on the outer surface of the central rod, and the central rod is connected to the movable frame through a return spring.

[0013] As a further solution of the present invention, a worm gear is rotatably installed on the outer surface of the mounting ring, an adjusting rod is penetrated through the outer surface of the mounting ring, a worm is fixedly installed at one end of the adjusting rod close to the worm gear, and the worm is meshed with the worm gear.

[0014] As a further solution of the present invention, a rack is fixedly installed at one end of the movable frame close to the adjusting rod, a driving gear is rotatably installed at the inner end of the mounting ring, the driving gear is fixedly connected to the worm gear, and the driving gear is meshed with the rack.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] 1. When the present invention is used, the weighing of the raw material ratio is carried out before mixing to ensure that the content of each component in the product remains stable, avoid the fluctuation of the product components caused by inaccurate raw material amounts, and thus improve the consistency of the product quality;

[0017] 2. When the present invention is used, the invention can also flexibly adjust the weighing conditions of each raw material, so that the same set of equipment can adapt to the production of multiple formulas, avoid the addition of excessive or insufficient raw materials, and reduce waste;

[0018] 3. When the present invention is used, the modular design of the raw material barrel of the device, and the raw material barrel can be directly taken out and replaced after the raw materials are consumed, making the raw material replenishment process simpler and faster, reducing the complexity of the worker's operation, and reducing the waste caused by improper raw material handling or traditional storage methods;

[0019] 4. When the present invention is used, the bubble stirring can uniformly generate disturbances in the liquid, fully mix the components in the liquid medicine. At the same time, the bubble stirring can produce effects only by means of the pressure and flow of gas, and does not require a complex mechanical power system. Therefore, it has obvious energy-saving effects during long-term operation, and the powdery raw materials enter the mixing barrel through the gas flow, making the stirring more sufficient. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural schematic diagram of an extraction mixture equipment for processing Cordyceps militaris oral liquid;

[0021] Figure 2 Schematic diagram of the internal structure of the device box;

[0022] Figure 3 Schematic diagram of the internal structure of the mixing barrel;

[0023] Figure 4 Schematic diagram of the positional relationship among the feeding pipe, mixing pipe, and raw material cylinder;

[0024] Figure 5 Schematic diagram of the positional relationship between the weighing pipe and the discharging pipe;

[0025] Figure 6 Schematic diagram of the internal structure of the propulsion pipe;

[0026] Figure 7 Schematic diagram of the internal structure of the weighing pipe;

[0027] Figure 8 Schematic diagram of the internal structure of the measuring barrel;

[0028] Figure 9 Schematic diagram of the structure at the movable frame;

[0029] Figure 10 Schematic diagram of the internal structure of the movable frame;

[0030] Figure 11 Schematic diagram of the enlarged internal structure of the movable frame;

[0031] Figure 12 Schematic diagram of the internal structure of the trigger cylinder.

[0032] In the figure: 1. Device box; 2. Raw material barrel; 3. Air pump; 21. Conducting port; 31. Arc groove;

[0033] 101. Mixing barrel; 102. Mixing pipe; 103. Feeding pipe; 104. Sealing plug; 105. Air pipe;

[0034] 201. Discharging pipe; 202. Propulsion pipe; 203. Weighing pipe; 204. Filter sheet; 205. Servo motor; 206. Screw; 207. Extraction motor; 208. Blade; 209. Measuring cylinder; 210. Plug piece; 211. Isolation pipe; 212. Pushing rod; 213. Taper head;

[0035] 301. Movable pipe; 302. Conducting pipe; 303. Adjusting rod; 304. Worm; 305. Worm gear; 306. Rack; 307. Driving gear; 308. Mounting ring;

[0036] 401. Movable frame; 402. Stabilizing ring; 403. Stabilizing frame; 404. Locking ball; 405. Trigger cylinder; 406. Trigger spring; 407. Locking hook; 408. Central rod; 409. Return spring; 410. Paddle. Detailed implementation manner

[0037] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. 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 making creative efforts belong to the scope of protection of the present invention.

[0038] Example 1: Please refer to Figures 1 - 2 , an extract mixing device for processing Inonotus obliquus oral liquid, including a device box 1. A mixing barrel 101 for drug stirring is fixedly installed at the upper end inside the device box 1. A plurality of raw material barrels 2 are detachably installed at the upper end of the device box 1. Specifically, the raw material barrel 2 contains oral liquid raw materials, and the raw materials are in powder form. The raw materials include Inonotus obliquus, Phellinus linteus, Inonotus rheades, Tricholoma matsutake, Armillaria matsutake, Fomitopsis officinalis, etc., and the mixing ratio of these raw materials finally entering the mixing barrel 101 is 18% for all. A mixing pipe 102 is fixedly installed at the bottom end inside the device box 1, and the output end of the mixing pipe 102 is communicated with the bottom end of the mixing barrel 101. Specifically, a sealing plug 104 is slidably connected to the bottom end of the mixing barrel 101, and a sealing rubber ring is fixedly installed on the outer surface of the sealing plug 104 to increase the airtightness with the mixing barrel 101;

[0039] Please refer to Figure 2 , 3 , 4, 5. A control terminal is fixedly installed at the right end of the device box 1 for detecting the batching ratio of the invention and starting and stopping various devices. This is a mature existing technology and will not be elaborated here. A plurality of air outlets are opened on the outer surface of the sealing plug 104, and the mixing pipe 102 is fixedly connected to the sealing plug 104. An air pump 3 is arranged on the left side of the device box 1. The output end of the air pump 3 is fixedly connected to an air pipe 105, and the output end of the air pipe 105 is fixedly connected to the mixing pipe 102. When the air pump 3 outputs a large amount of gas through the air pipe 105, the gas is then discharged from the air outlet outside the sealing plug 104 through the mixing pipe 102, thereby realizing a large amount of bubbles surging inside the mixing barrel 101, and then realizing the stirring of the liquid inside;

[0040] On the left end inside the device box 1, multiple feeding pipes 103 are fixedly installed. The feeding pipes 103 correspond to the raw material barrels 2, and the feeding pipes 103 are all fixedly connected to the mixing pipe 102. Specifically, a check valve is fixedly installed at the inner end of the mixing pipe 102 to prevent the liquid medicine in the mixing barrel 101 from flowing back, and electromagnetic solenoid valves are fixedly installed at the inner ends of the feeding pipes 103. At the upper end inside the device box 1, multiple discharging pipes 201 for extracting raw materials from the raw material barrels 2 are fixedly installed. The discharging pipes 201 correspond to the raw material barrels 2, and the upper ends of the discharging pipes 201 penetrate into the interior of the raw material barrels 2. Specifically, a movable cover is slidably installed at the bottom end of the raw material barrel 2, and a conduction port 21 is opened at one end of the discharging pipe 201 close to the raw material barrel 2. The conduction port 21 is higher than the device box 1. Whenever the raw material barrel 2 is placed above the discharging pipe 201, the conduction port 21 is inserted into the bottom end of the raw material barrel 2 and pushes up the movable cover at the bottom end of the raw material barrel 2, thereby realizing that the conduction port 21 is exposed inside the raw material barrel 2. One end of the discharging pipe 201 away from the raw material barrel 2 is fixedly installed with a propulsion pipe 202. One end of the propulsion pipe 202 close to the mixing pipe 102 is fixedly connected with a weighing pipe 203 for detecting the quality of the raw material. A quality detection device is arranged inside the weighing pipe 203. Specifically, the quality detection device is used to detect the quality of the raw material poured from the propulsion pipe 202 into the weighing pipe 203;

[0041] Please refer to Figure 5 、 6 , multiple blades 208 are rotatably installed at the inner end of the discharging pipe 201. The multiple blades 208 rotate simultaneously to achieve a sufficiently large attraction force. A suction motor 207 is fixedly installed at the inner end of the discharging pipe 201, and the output shafts of the suction motor 207 are fixedly connected to the central axes of the multiple blades 208. A servo motor 205 is fixedly installed at the right end of the propulsion pipe 202, and a screw 206 for transporting the raw material is fixedly installed at the output end of the servo motor 205. The screw 206 is located inside the propulsion pipe 202. When the output end of the suction motor 207 drives the blades 208 to rotate, the raw materials inside the raw material barrel 2 are extracted and accumulated in the propulsion pipe 202. Immediately afterwards, the output shaft of the servo motor 205 drives the screw 206 to rotate. Since the servo motor 205 can accurately rotate at any angle, the accurate transportation of the raw material can be realized under precise control.

[0042] Example 2: Please refer to Figure 6 、 7, 8, An extract mixing device for processing Cordyceps cicadae oral liquid. Based on Example 1, the quality inspection device includes a measuring cylinder 209. The measuring cylinder 209 is slidably installed at the inner end of the weighing tube 203. The outer surface of the measuring cylinder 209 is closely attached to the inner wall of the weighing tube 203. A conical head 213 is fixedly installed at the inner bottom end of the measuring cylinder 209. The conical head 213 is used to increase the counterweight effect and slide all the raw material powders scattered inside the measuring cylinder 209 down to the bottom edge of the measuring cylinder 209 along its slope. Multiple rectangular holes are opened at the bottom end of the measuring cylinder 209. A plug piece 210 is inserted through the rectangular holes. The plug pieces 210 are fixedly connected by a connecting rod. A sealing rubber ring is fixedly installed at the bottom end of the plug piece 210 to increase the airtightness between the plug piece 210 and the measuring cylinder 209. The volume of the connecting rod is smaller than the size of the rectangular hole. When the plug piece 210 moves upward, the connecting rod is located in the rectangular hole at the bottom end of the measuring cylinder 209, creating a gap through which the raw material powder can fall;

[0043] An electromagnet is fixedly installed at the inner end of the conical head 213, and a magnet is fixedly installed at the inner end of the plug piece 210. When the electromagnet is energized, the plug piece 210 will be attracted and separated from the rectangular hole;

[0044] An isolation tube 211 is fixedly installed at the inner end of the weighing tube 203. A push rod 212 is fixedly installed at the bottom end of the measuring cylinder 209. The push rod 212 is located inside the isolation tube 211. The isolation tube 211 isolates the push rod 212 from the inside of the weighing tube 203 to prevent the powdery raw materials from contaminating the outer surface of the push rod 212 and prevent the push rod 212 from polluting the raw materials. An installation ring 308 is fixedly installed on the outer surface of the weighing tube 203. A movable tube 301 is slidably installed at one end of the installation ring 308 away from the weighing tube 203. A conduction tube 302 is fixedly installed at the bottom end of the installation ring 308. The output end of the conduction tube 302 is inserted through the inner end of the movable tube 301, and the input end of the conduction tube 302 is sleeved on the outer surface of the push rod 212. Specifically, the inside of the conduction tube 302 is filled with hydraulic oil. A sealing ring is fixedly sleeved on the outer surface of the push rod 212, and a sealing ring is also fixedly installed on the inner wall of the movable tube 301 to prevent liquid leakage. Utilizing the almost incompressible property of the liquid, when the inside of the measuring cylinder 209 is filled with raw materials, it moves downward under the action of gravity, causing the movable tube 301 to move upward;

[0045] Please refer to Figure 7 , 9, 10. A movable frame 401 is slidably installed at one end of the mounting ring 308 away from the weighing tube 203. A locking ball 404 is slidably installed at the inner end of the movable frame 401. An arc-shaped groove 31 is formed on the outer surface of the movable tube 301. When the movable tube 301 moves to be parallel to the locking ball 404, the locking ball 404 is clamped in the arc-shaped groove 31. A trigger cylinder 405 is arranged inside the movable frame 401 and corresponds to the locking ball 404. Specifically, a stabilizing frame 403 is fixedly installed at the inner end of the movable frame 401, and the stabilizing frame 403 is sleeved on the outer surface of the trigger cylinder 405. More specifically, a rectangular block is fixedly installed at one end of the stabilizing frame 403 close to the trigger cylinder 405. A sliding hole is formed on the outer surface of the trigger cylinder 405, and the rectangular block is located in the sliding hole, thereby preventing the trigger cylinder 405 from rotating.

[0046] Please refer to Figure 10 , 11 , 12. The trigger cylinder 405 and the stabilizing frame 403 are connected by a trigger spring 406. A plurality of locking hooks 407 are rotatably installed at the inner end of the movable frame 401, and the locking hooks 407 correspond to the sliding holes. A central rod 408 is inserted through the inner end of the locking ball 404, and the trigger cylinder 405 is sleeved on the outer surface of the central rod 408. A dial 410 is fixedly installed on the outer surface of the central rod 408 and corresponds to the locking hooks 407. The central rod 408 and the movable frame 401 are connected by a return spring 409. When the movable tube 301 moves upward, and the central rod 408 is pushed by the elastic force of the return spring 409, at the arc-shaped edge of the arc-shaped groove 31, at this time, the locking ball 404 does not contact the outer surface of the movable tube 301. At this time, the end of the central rod 408 will touch the edge of the arc-shaped groove 31. As the movable tube 301 continues to rise, then the central rod 408 will reach the center from the edge of the arc-shaped groove 31. At this time, the dial 410 on the outer surface of the central rod 408 will pick open the locking hook 407. At this time, the trigger cylinder 405 will move to the right under the elastic force of the trigger spring 406, and then push the locking ball 404 to move into the arc-shaped groove 31. A stabilizing ring 402 is fixedly installed at the inner end of the movable frame 401, and the stabilizing ring 402 is sleeved on the outer surface of the trigger cylinder 405;

[0047] On the contrary, a return rod is fixedly installed at one end of the locking hook 407 away from the locking ball 404. When the locking hook 407 is picked open, the return rod will be perpendicular to the central rod 408. When the central rod 408 moves to the left, it will push the return rod, so that the locking hook 407 rotates again and hooks the trigger cylinder 405 again;

[0048] More specifically, a trigger device (not shown in the figure) is fixedly installed on the outer surface of the movable frame 401, the locking ball 404 and the movable tube 301 are made of metal, the trigger device is electrically connected to the adjacent movable frame 401 through a signal line, and the trigger device is electrically connected to the locking ball 404 through a wire, and the trigger device is electrically connected to the electromagnetic switch valve inside the conveying pipe 103 through a wire. When the quality meets the process requirements, the trigger device will detect that the line is grounded, current is generated, and the electromagnetic switch is turned on at the same time. If any of the trigger devices is not triggered, the electromagnetic switch will not be turned on, and each trigger device communicates with the control terminal, and the electromagnetic switch is electrically connected to the electromagnet inside the cone head 213 through a wire;

[0049] According to the above conditions, the state of each trigger device can be represented by a binary variable, T i represents the state of the i-th trigger device, then, T i =1 means the device is triggered, T i = 0 means the device is not triggered, then the logic of the device can be described as follows: if all T i =1, switch S is open (1), if any T i =0, switch S is not turned on (0), the specific calculation method is as follows:

[0050]

[0051] It is worth noting that the above calculations are all calculated by the processor inside the control terminal;

[0052] like Figure 9 As shown, a worm wheel 305 is rotatably mounted on the outer surface of the mounting ring 308, an adjusting rod 303 is penetrated on the outer surface of the mounting ring 308, a worm 304 is fixedly mounted on one end of the adjusting rod 303 close to the worm wheel 305, the worm 304 is meshed with the worm wheel 305, a rack 306 is fixedly mounted on one end of the movable frame 401 close to the adjusting rod 303, a driving gear 307 is rotatably mounted on the inner end of the mounting ring 308, the driving gear 307 is fixedly connected to the worm wheel 305, and the driving gear 307 is meshed with the rack 306, by rotating the adjusting rod 303, the worm wheel 305 drives the driving gear 307 to rotate, and then, the driving gear 307 drives the movable frame 401 to move upward or downward under the meshing action with the rack 306, so as to change the position of the locking ball 404, so that it can be triggered under different conditions and different formula proportions, and adjusted accordingly;

[0053] like Figure 7As shown, the outer surface of the weighing tube 203 is provided with a plurality of air holes, in which filter sheets 204 are slidably installed, and an isolation plate is fixedly installed at one end of the filter sheets 204 close to each other. Whenever negative pressure is generated in the weighing tube 203, the filter sheets 204 move toward each other under the action of atmospheric pressure, and at this time, air enters the weighing tube 203 from the filter screen of the filter sheets 204.

[0054] The working principle of the present invention is:

[0055] When in use, the raw material barrel 2 containing the raw material of the oral liquid is placed on the top of the device box 1 in sequence. At this time, the conducting port 21 is inserted into the bottom end of the raw material barrel 2, and the movable cover at the bottom end of the raw material barrel 2 is lifted up, so that the conducting port 21 is exposed inside the raw material barrel 2. The air pump 3 is turned on through the control terminal. At this time, the gas output by the air pump 3 will be ejected from the output port of the mixing tube 102. The bubbles that emerge make the liquid in the mixing barrel 101 active, thus achieving a stirring effect.

[0056] Subsequently, when the output end of the extraction motor 207 drives the blade 208 to rotate, the raw material inside the raw material barrel 2 is extracted and accumulated in the push tube 202. Then, the output shaft of the servo motor 205 drives the screw 206 to rotate, and the raw material inside the push tube 202 is sent into the weighing tube 203. As the raw material inside the measuring cylinder 209 continues to increase, the measuring cylinder 209 slowly descends under the action of gravity, accompanied by the fall of the push rod 212. Through the transmission of hydraulic oil, the movable tube 301 moves upward, and then the center rod 408 reaches the center from the edge of the arc groove 31. At this time, the paddle 410 on the outer surface of the center rod 408 will pick up the lock hook 407. At this time, the trigger cylinder 405 will move to the right under the elastic force of the trigger spring 406, and then push the locking ball 404 to move into the arc groove 31. At this time, the trigger device is triggered;

[0057] Waiting for the adjacent trigger devices to be triggered one after another, the electromagnetic switch and the electromagnet are energized one after another, and the plug 210 moves upward. Due to the continuous output of gas by the air pump 3, the pressure inside the feed pipe 103 becomes smaller, and the powdered raw materials inside the measuring cylinder 209 begin to be extracted and follow the gas into the mixing barrel 101, thereby achieving mixing and stirring of the oral liquid processing.

[0058] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed in the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An extract mixing device for processing Cordyceps militaris oral liquid, comprising a device box (1), characterized in that: At the upper inner end of the device box (1), a mixing barrel (101) for drug stirring is fixedly installed. At the upper end of the device box (1), a plurality of raw material barrels (2) are detachably installed. At the lower inner end of the device box (1), a mixing pipe (102) is fixedly installed. The output end of the mixing pipe (102) is communicated with the bottom end of the mixing barrel (101). At the lower left inner end of the device box (1), a plurality of feeding pipes (103) are fixedly installed. The feeding pipes (103) correspond to the raw material barrels (2), and the feeding pipes (103) are fixedly connected to the mixing pipe (102). At the upper inner end of the device box (1), a plurality of discharging pipes (201) for extracting the raw materials in the raw material barrels (2) are fixedly installed. The discharging pipes (201) correspond to the raw material barrels (2), and the upper ends of the discharging pipes (201) penetrate into the interiors of the raw material barrels (2). One end of the discharging pipe (201) away from the raw material barrel (2) is fixedly installed with a propulsion pipe (202). One end of the propulsion pipe (202) close to the mixing pipe (102) is fixedly connected with a weighing pipe (203) for detecting the quality of the raw materials. A quality detection device is arranged inside the weighing pipe (203).

2. The extract mixing device for processing the Cordyceps cicadae oral liquid according to claim 1, wherein: A sealing plug (104) is slidably connected to the bottom end of the mixing barrel (101). A plurality of air outlets are formed on the outer surface of the sealing plug (104), and the mixing pipe (102) is fixedly connected to the sealing plug (104). A plurality of blades (208) are rotatably installed at the inner end of the discharging pipe (201). A servo motor (205) is fixedly installed at the right end of the propulsion pipe (202). The output end of the servo motor (205) is fixedly installed with a screw rod (206) for transporting the raw materials. The screw rod (206) is located inside the propulsion pipe (202).

3. An extract mixing device for processing the Cordyceps militaris oral liquid according to claim 1, characterized in that: The quality detection device includes a measuring cylinder (209). The measuring cylinder (209) is slidably installed at the inner end of the weighing pipe (203). A conical head (213) is fixedly installed at the lower inner end of the measuring cylinder (209). A plurality of rectangular holes are formed at the bottom end of the measuring cylinder (209). Plug pieces (210) are inserted into the rectangular holes. The plug pieces (210) are fixedly connected through connecting rods.

4. An extract mixing device for processing Cordyceps cicadae oral liquid according to claim 3, characterized in that: An isolation pipe (211) is fixedly installed at the inner end of the weighing pipe (203). A push rod (212) is fixedly installed at the bottom end of the measuring cylinder (209). The push rod (212) is located inside the isolation pipe (211). An installation ring (308) is fixedly installed on the outer surface of the weighing pipe (203). One end of the installation ring (308) away from the weighing pipe (203) is slidably installed with a movable pipe (301). A conduction pipe (302) is fixedly installed at the bottom end of the installation ring (308). The output end of the conduction pipe (302) penetrates into the inner end of the movable pipe (301). The input end of the conduction pipe (302) is sleeved on the outer surface of the push rod (212).

5. An extract mixing device for processing the Cordyceps cicadae oral liquid according to claim 4, characterized in that: A movable frame (401) is slidably mounted at one end of the mounting ring (308) away from the weighing tube (203). A locking ball (404) is slidably mounted at the inner end of the movable frame (401). An arc-shaped groove (31) is formed on the outer surface of the movable tube (301).

6. An extract mixing device for processing Cordyceps militaris oral liquid according to claim 5, characterized in that: When the movable tube (301) moves to be parallel to the locking ball (404), the locking ball (404) is clamped in the arc-shaped groove (31). A trigger cylinder (405) is arranged inside the movable frame (401), and the trigger cylinder (405) corresponds to the locking ball (404).

7. An extract mixing device for processing the Isaria cicadae oral liquid according to claim 6, characterized in that: A plurality of locking hooks (407) are rotatably mounted at the inner end of the movable frame (401). The locking hooks (407) correspond to the sliding holes. A central rod (408) is inserted through the inner end of the locking ball (404). A dial (410) is fixedly mounted on the outer surface of the central rod (408), and the central rod (408) is connected to the movable frame (401) through a return spring (409).

8. An extract mixing device for processing the Cordyceps cicadae oral liquid according to claim 7, characterized in that: A worm gear (305) is rotatably mounted on the outer surface of the mounting ring (308). An adjusting rod (303) is inserted through the outer surface of the mounting ring (308). A worm (304) is fixedly mounted at one end of the adjusting rod (303) close to the worm gear (305), and the worm (304) meshes with the worm gear (305).

9. An extract mixing device for processing the Cordyceps ophioglossoides oral liquid according to claim 8, characterized in that: A rack (306) is fixedly mounted at one end of the movable frame (401) close to the adjusting rod (303). A driving gear (307) is rotatably mounted at the inner end of the mounting ring (308). The driving gear (307) is fixedly connected to the worm gear (305), and the driving gear (307) meshes with the rack (306).

Citation Information

Patent Citations

  • Veterinary oral liquid raw material mixing equipment

    CN213824420U