Ganoderma lucidum tablets storage device and method
By designing a storage device for Ganoderma lucidum tablets, and using the driving mechanism and inflatable mechanism to maintain the positive pressure inside the storage tank, the problem of destroying the aerobic environment during the use of the existing device is solved, and efficient and safe storage of Ganoderma lucidum tablets is achieved, which improves its nutritional and medicinal value.
Patent Information
- Application Number
- CN202510584895.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-05-08
AI Technical Summary
In the process of removing Ganoderma lucidum tablets, the existing Ganoderma lucidum tablet storage device needs to open the packaging or lid of the device, which directly destroys the internal anaerobic storage environment, causes external air to enter, affects temperature and humidity, increases the risk of Ganoderma lucidum tablets to deteriorate, and reduces its nutritional and medicinal value.
A Ganoderma lucidum mushroom tablet storage device is designed, including a storage tank, an inflatable mechanism and an intermittent discharge mechanism. The driving mechanism drives the inflatable mechanism and the intermittent discharge mechanism to operate simultaneously, and use nitrogen to maintain the positive pressure inside the storage tank to ensure that the oxygen-free environment is immediately restored after use and avoid oxygen penetration.
Effectively prevent external oxygen and pollutants from invading, ensure that Ganoderma lucidum tablets are stored under the best conditions, reduce losses, improve nutritional and medicinal effects, and provide safer storage.
Smart Images

Figure CN120096946B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of Ganoderma lucidum tablets storage, in particular to a Ganoderma lucidum tablets storage device and method. Background Art
[0002] Ganoderma lucidum tablets are traditional Chinese medicine preparations with Ganoderma lucidum spore powder, Ganoderma lucidum polysaccharide and Ganoderma lucidum triterpenoids as the core components. Their medicinal effects highly depend on the stability of the active ingredients. In recent years, with the development of science and technology, the extracts and functional foods of Ganoderma lucidum have received more and more attention. As a new type of health product, Ganoderma lucidum tablets have been widely accepted in the market due to their convenient administration and good absorbability. Ganoderma lucidum tablets are made from the effective components extracted from Ganoderma lucidum, including polysaccharides, triterpenoids, proteins, as well as various trace elements and vitamins, etc., aiming to provide people with a natural and healthy health care option. During the storage of Ganoderma lucidum tablets, ultraviolet rays in light can directly damage the molecular structure of Ganoderma lucidum polysaccharide, resulting in a decrease in its biological activity. Therefore, a Ganoderma lucidum tablets storage device and method are needed for storing Ganoderma lucidum tablets.
[0003] There are at least the following problems in the prior art:
[0004] When taking out Ganoderma lucidum tablets with the existing Ganoderma lucidum tablets storage device, it is necessary to open the package or lid of the device, and this operation directly destroys the anaerobic storage environment inside the device; when the device is opened, oxygen in the outside air will enter accordingly, and the temperature and humidity will also be affected, resulting in a decline in the quality of the originally well-preserved Ganoderma lucidum tablets; even worse, the repeated opening and closing operations will frequently expose Ganoderma lucidum tablets to an inappropriate environment, increasing the risk of Ganoderma lucidum tablets spoilage, thereby reducing their nutritional value and medicinal value. Summary of the Invention
[0005] In order to overcome the deficiencies of the prior art, the present invention provides a Ganoderma lucidum tablets storage device and method to solve the problem that the repeated opening and closing operations will frequently expose Ganoderma lucidum tablets to an inappropriate environment, increasing the risk of Ganoderma lucidum tablets spoilage, thereby reducing their nutritional value and medicinal value.
[0006] To solve the above technical problems, the technical solution proposed by the present invention is as follows:
[0007] The storage device for Ganoderma lucidum slices comprises a storage tank, an air charging mechanism and an intermittent feeding mechanism, and further comprises a mounting base fixedly mounted on one side of the storage tank, a controller fixedly mounted on the front of the mounting base; further comprises a rotating disk rotatably mounted inside the storage tank, a vertical feeding pipe fixedly mounted on the bottom of the rotating disk, and the bottom of the vertical feeding pipe rotatably mounted on the bottom of the storage tank, a spiral channel fixedly mounted inside the storage tank; the air charging mechanism is fixedly mounted on the top of the mounting base, a driving mechanism is fixedly mounted inside the mounting base, and the driving mechanism extends into the storage tank, and the driving mechanism is fixedly mounted on the bottom of the storage tank. The inflation mechanism and the intermittent unloading mechanism are connected by transmission, and the driving mechanism is connected to the rotating disk by transmission through the vertical unloading pipe. The inflation mechanism, the intermittent unloading mechanism and the rotating disk are driven by the driving mechanism to operate synchronously, so that the operating rotating disk cooperates with the spiral channel to arrange the Ganoderma lucidum slices in an orderly manner in the vertical unloading pipe, and then the intermittent unloading mechanism is used to intermittently take medicine from the Ganoderma lucidum slices in the vertical unloading pipe, and the vertical unloading pipe is quickly closed. At the same time, nitrogen is transported to the storage tank through the inflation mechanism to maintain positive pressure inside the storage tank to prevent oxygen from penetrating, ensuring that the oxygen-free environment in the storage tank can be immediately restored after the Ganoderma lucidum slices are taken.
[0008] Furthermore, the inflation mechanism consists of a nitrogen tank, a piston, a transmission bevel gear, a threaded lifting mechanism and a solenoid valve, wherein the nitrogen tank is fixedly mounted on the top of the mounting base, the piston is fixedly mounted on the top of the threaded lifting mechanism, the transmission bevel gear is fixedly mounted on the bottom of the threaded lifting mechanism, and the threaded lifting mechanism extends to the inside of the mounting base, and the threaded lifting mechanism is transmission-connected to the driving mechanism, the solenoid valve is fixedly mounted on the top of the nitrogen tank, and the top of the solenoid valve is connected to the storage tank through a pipeline.
[0009] Furthermore, the intermittent unloading mechanism consists of a unloading seat, a rotating seat, an intermittent transmission assembly and a unloading hopper, wherein the rotating seat is rotatably installed inside the unloading seat, and a medicine taking groove is opened inside the rotating seat; the intermittent transmission assembly is rotatably installed on one side of the unloading seat, and the intermittent transmission assembly is connected to the rotating seat for transmission, and the unloading hopper is rotatably installed at the bottom of the unloading seat.
[0010] Furthermore, the intermittent transmission assembly consists of an intermittent wheel and a rotating wheel, wherein transmission grooves are equidistantly opened inside the intermittent wheel, the rotating wheel is rotatably installed on one side of the unloading seat, a fifth bevel gear is fixedly installed at the center of one side of the rotating wheel, the fifth bevel gear is connected to the driving mechanism, and a toggle rod is fixedly installed on one side of the rotating wheel.
[0011] Furthermore, the driving mechanism is composed of a servo motor, a first bevel gear, a third bevel gear, a face gear, a first gear, a second gear and a fourth bevel gear, wherein the servo motor is fixedly mounted on one side of the mounting seat, and an encoder is fixedly mounted on the output end of the servo motor, the first bevel gear is transmission-connected to the output end of the servo motor through a shaft, one side of the third bevel gear is fixedly connected to the first bevel gear through a shaft, the third bevel gear is meshed with the face gear, the bottom of the first gear is fixedly connected to the top of the face gear, and a vertical discharge pipe passes through the interior of the face gear and the first gear, the vertical discharge pipe is fixedly connected to the face gear and the first gear, the first gear is meshed with the second gear, the fourth bevel gear is fixedly connected to the bottom of the second gear through the shaft, and the fourth bevel gear is meshed with the fifth bevel gear.
[0012] Furthermore, a tank cover is threadedly installed on the top of the storage tank, and the interior of the tank cover is filled with molecular sieve filler. A deoxidation tank is threadedly installed on the top of the spiral channel, and the interior of the deoxidation tank is filled with deoxidizer filler. A micro oxygen sensor is fixedly installed on the front of the storage tank.
[0013] The method for storing Ganoderma lucidum slices comprises the following steps:
[0014] Step 1: Open the tank cover and place the Ganoderma lucidum slices into the storage tank. Refill or replace the molecular sieve filler and deoxidizer filler in the tank cover and deoxidizer tank respectively to ensure the drying and deoxidation effects of the device. Then screw the tank cover on the top of the storage tank.
[0015] Step 2: During the storage of Ganoderma lucidum slices, the oxygen content inside the storage tank is detected in real time through a micro oxygen sensor, and the detection data is transmitted to the controller for calculation. When the oxygen content inside the storage tank is lower than the set value, the controller opens the solenoid valve and the nitrogen stored in the nitrogen tank is transported to the storage tank through the solenoid valve, ensuring an oxygen-free environment inside the storage tank.
[0016] Step 3: When the servo motor drives the third bevel gear to rotate through the shaft, the rotating third bevel gear drives the vertical discharge pipe to rotate through the meshing face gear disk, and the rotating vertical discharge pipe drives the rotating disk fixed on the top to rotate synchronously. The rotating rotating disk rotates and transports the Ganoderma lucidum slices on the top surface into the spiral channel, so that the Ganoderma lucidum slices are stored in an orderly manner inside the spiral channel and transported to the vertical discharge pipe for vertical and orderly arrangement, which is convenient for subsequent medicine collection;
[0017] Step 4: When the Ganoderma lucidum tablets are effectively arranged and stored in the vertical feeding pipe, the rotating surface gear disk drives the meshing-connected second gear to rotate through the first gear fixedly connected to the top. The rotating second gear drives the fourth bevel gear to rotate through the shaft rod. The rotating fourth bevel gear drives the rotating seat to rotate intermittently through the intermittent transmission assembly. When the medicine-taking groove inside the rotating seat is docked with the bottom opening of the vertical feeding pipe, the Ganoderma lucidum tablets stored inside the vertical feeding pipe fall into the medicine-taking groove. When the medicine-taking groove inside the rotating seat moves away from the bottom opening of the vertical feeding pipe, the rotating seat closes the bottom opening of the vertical feeding pipe, achieving the purpose of quickly closing the vertical feeding pipe. When the medicine-taking groove inside the rotating seat rotates to the bottom, the Ganoderma lucidum tablets in the medicine-taking groove fall into the feeding hopper, realizing the non-destruction of the anaerobic environment inside the storage tank;
[0018] Step 5: While the intermittent feeding mechanism takes medicine, the servo motor drives the screw lifting mechanism to lift through the cooperation of the first bevel gear and the meshing-connected transmission bevel gear. While the screw lifting mechanism rises and drives the piston to move inside the nitrogen tank, the controller opens the solenoid valve. At this time, the moving piston transports the nitrogen inside the nitrogen tank to the inside of the storage tank, filling high-purity nitrogen, and cooperating with the micro positive pressure maintenance technology to prevent external air from infiltrating, achieving the ability to immediately restore the anaerobic environment inside the storage tank after taking the Ganoderma lucidum tablets.
[0019] The beneficial effects of the present invention are:
[0020] The technical solution of the present invention drives the inflation mechanism, the intermittent feeding mechanism, and the rotating disk to operate synchronously through the driving mechanism. The driving mechanism drives the rotating disk to rotate through the vertical feeding pipe. The rotating rotating disk, in cooperation with the spiral channel, arranges the Ganoderma lucidum tablets in an orderly manner into the vertical feeding pipe. At this time, the intermittent feeding mechanism takes medicine from the Ganoderma lucidum tablets arranged in an orderly manner inside the vertical feeding pipe at predetermined intervals and quickly closes the vertical feeding pipe to prevent external air from entering; while taking medicine, the inflation mechanism transports nitrogen into the storage tank to maintain the positive pressure state inside the storage tank, thereby effectively preventing oxygen from infiltrating and ensuring that the storage tank can immediately return to the anaerobic environment after taking the Ganoderma lucidum tablets; this device should not only be able to effectively prevent the intrusion of external oxygen and pollutants, but also be able to immediately restore the anaerobic environment after each use, ensuring that the Ganoderma lucidum tablets are stored under the best conditions, thereby enhancing their nutritional value and medicinal effects, reducing losses, and providing a safer storage. Description of the Drawings
[0021] Figure 1 is the overall structural schematic diagram of the present invention;
[0022] Figure 2 is the internal structural schematic diagram of the present invention;
[0023] Figure 3 is the internal structural schematic diagram of the storage tank of the present invention;
[0024] Figure 4 This is a schematic diagram of the transmission connection between the driving mechanism and the thread lifting mechanism, the intermittent feeding mechanism, and the rotating disk of the present invention;
[0025] Figure 5 This is a schematic diagram of the internal structure of the nitrogen tank of the present invention;
[0026] Figure 6 This is a schematic diagram of the internal structure of the thread lifting mechanism of the present invention;
[0027] Figure 7 Schematic diagram of the driving mechanism structure of the present invention;
[0028] Figure 8 This is a schematic diagram of the internal structure of the intermittent feeding mechanism of the present invention;
[0029] Figure 9 It is a schematic structural diagram of the intermittent transmission component in the present invention.
[0030] Description of reference numerals:
[0031] 1. Storage tank; 101. Tank cover; 102. Deoxidation tank; 103. Spiral channel; 2. Inflating mechanism; 201. Nitrogen tank; 202. Piston; 203. Transmission bevel gear; 204. Threaded lifting mechanism; 205. Solenoid valve; 3. Mounting base; 301. Controller; 4. Driving mechanism; 401. Servo motor; 402. First bevel gear; 403. Third bevel gear; 404. Face gear; 405. First gear; 406. Second gear; 407. Fourth bevel gear; 5. Intermittent unloading mechanism; 501. Unloading base; 502. Rotating base; 503. Intermittent transmission assembly; 5031. Intermittent wheel; 5032. Rotating wheel; 5033. Toggle lever; 5034. Fifth bevel gear; 504. Unloading hopper; 6. Rotating disk; 601. Vertical unloading pipe. DETAILED DESCRIPTION
[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0033] Please refer to Figures 1-9The present invention provides a Ganoderma lucidum slice storage device, comprising a storage tank 1, an inflation mechanism 2, and an intermittent feeding mechanism 5. The device also includes a mounting base 3 fixedly mounted on one side of the storage tank 1, a controller 301 fixedly mounted on the front of the mounting base 3; a rotating disk 6 rotatably mounted inside the storage tank 1, a vertical feeding pipe 601 fixedly mounted on the bottom of the rotating disk 6, and the bottom of the vertical feeding pipe 601 rotatably mounted on the bottom of the storage tank 1, and a spiral channel 103 fixedly mounted inside the storage tank 1;
[0034] The spiral channel 103 is movably connected to the rotating disk 6. When the rotating disk 6 rotates, the Ganoderma lucidum slices can be transported into the spiral channel 103. The spiral channel 103 can be used to arrange and transport the Ganoderma lucidum slices in an orderly manner, so that the Ganoderma lucidum slices enter the vertical discharge pipe 601 in an orderly manner, thereby achieving the purpose of orderly vertical arrangement of the Ganoderma lucidum slices.
[0035] The inflation mechanism 2 is fixedly mounted on the top of the mounting base 3, and a driving mechanism 4 is fixedly mounted inside the mounting base 3, and the driving mechanism 4 extends into the interior of the storage tank 1, and the driving mechanism 4 is transmission-connected with the inflation mechanism 2 and the intermittent unloading mechanism 5, and the driving mechanism 4 is transmission-connected with the rotating disk 6 through the vertical unloading pipe 601, and the inflation mechanism 2, the intermittent unloading mechanism 5 and the rotating disk 6 are driven by the driving mechanism 4 to run synchronously, so that the running rotating disk 6 cooperates with the spiral channel 103 to arrange the Ganoderma lucidum slices in an orderly manner in the vertical unloading pipe 601, and then the intermittent unloading mechanism 5 that runs intermittently is used to intermittently take medicine from the Ganoderma lucidum slices in the vertical unloading pipe 601, and the vertical unloading pipe 601 is quickly closed, and at the same time, nitrogen is transported to the storage tank 1 through the inflation mechanism 2 to maintain a positive pressure inside the storage tank 1 to prevent oxygen from penetrating, thereby ensuring that the anaerobic environment in the storage tank 1 can be immediately restored after the Ganoderma lucidum slices are taken out;
[0036] Among them, the driving mechanism 4 is connected with the inflation mechanism 2, the intermittent feeding mechanism 5 and the rotating disk 6 to realize synchronous operation through transmission. When the driving mechanism 4 is started, the rotating disk 6 arranges the Ganoderma lucidum slices in an orderly manner into the vertical feeding pipe 601 with the cooperation of the spiral channel 103; at this time, the intermittent feeding mechanism 5 intermittently takes medicine from the Ganoderma lucidum slices arranged in an orderly manner in the vertical feeding pipe 601 at a predetermined interval, and quickly closes the vertical feeding pipe 601 to prevent external air from entering; while taking medicine, the inflation mechanism 2 transports nitrogen into the storage tank 1 to maintain a positive pressure state inside the storage tank 1, thereby effectively preventing oxygen from infiltrating, and ensuring that the storage tank 1 can be immediately restored to an anaerobic environment after taking the Ganoderma lucidum slices.
[0037] The inflation mechanism 2 is composed of a nitrogen tank 201, a piston 202, a transmission bevel gear 203, a threaded lifting mechanism 204, and a solenoid valve 205. Among them, the nitrogen tank 201 is fixedly installed at the top of the mounting base 3, the piston 202 is fixedly installed at the top of the threaded lifting mechanism 204, the transmission bevel gear 203 is fixedly installed at the bottom of the threaded lifting mechanism 204, and the threaded lifting mechanism 204 extends into the mounting base 3 and is in transmission connection with the driving mechanism 4. The solenoid valve 205 is fixedly installed at the top of the nitrogen tank 201, and the top of the solenoid valve 205 is connected to the storage tank 1 through a pipeline;
[0038] Among them, it should be noted that: from Figure 6 it can be seen that the threaded lifting mechanism 204 uses the existing technology of a nut lifting rod to convert rotational motion into linear motion; an inflation valve is fixedly installed on one side of the top of the nitrogen tank 201 to facilitate the replenishment of nitrogen into the nitrogen tank 201. The transmission bevel gear 203 is meshed with the first bevel gear 402, and the driving mechanism 4 drives the meshed transmission bevel gear 203 to rotate through the first bevel gear 402. The rotating transmission bevel gear 203 drives the threaded lifting mechanism 204 to operate and drive the piston 202 to move. The moving distance of the piston 202 can control the transmission amount of nitrogen. The solenoid valve 205 controls the flow direction of nitrogen in the nitrogen tank 201 and is connected to the storage tank 1 through a pipeline to ensure that nitrogen can be accurately transmitted into the storage tank 1.
[0039] The intermittent feeding mechanism 5 is composed of a feeding base 501, a rotating base 502, an intermittent transmission component 503, and a feeding hopper 504. Among them, the rotating base 502 is rotatably installed inside the feeding base 501, and a medicine-taking groove is provided inside the rotating base 502; the intermittent transmission component 503 is rotatably installed on one side of the feeding base 501, and the intermittent transmission component 503 is in transmission connection with the rotating base 502. The feeding hopper 504 is rotatably installed at the bottom of the feeding base 501;
[0040] Among them, the rotating seat 502 is ingeniously installed inside the blanking seat 501, and a medicine-taking groove is provided inside it. Through precise transmission connection, it is ensured that the rotating seat 502 rotates at a predetermined time interval, so as to ensure that the medicine materials can fall into the blanking hopper 504 regularly and quantitatively. The blanking hopper 504 is rotatably installed at the bottom of the blanking seat 501, and the orientation of the blanking hopper 504 is manually rotated to adjust the medicine-taking orientation. When the medicine-taking groove inside the rotating seat 502 is butted with the bottom opening of the vertical blanking pipe 601, the Ganoderma lucidum slices stored in the vertical blanking pipe 601 will directly fall into the medicine-taking groove, and then as the rotating seat 502 rotates, the medicine-taking groove will gradually move away from the bottom opening of the vertical blanking pipe 601, realizing the rapid closing of the vertical blanking pipe 601 and avoiding damaging the anaerobic environment inside the storage tank 1. When the medicine-taking groove inside the rotating seat 502 rotates to the bottom, the Ganoderma lucidum slices fall into the blanking hopper 504 under the action of gravity, thus completing the orderly medicine-taking and conveying process of the Ganoderma lucidum slices.
[0041] The intermittent transmission assembly 503 is composed of an intermittent wheel 5031 and a runner 503 from which the intermittent wheel 5031 is internally provided with transmission grooves at equal intervals. The runner 5032 is rotatably installed on one side of the blanking seat 501. A fifth bevel gear 5034 is fixedly installed at the center of one side of the runner 5032. The fifth bevel gear 5034 is in transmission connection with the driving mechanism 4. A shifting rod 5033 is fixedly installed on one side of the runner 5032.
[0042] Among them, the fourth bevel gear 407 drives the runner 5032 to rotate through the engaged fifth bevel gear 5034. The rotating runner 5032 intermittently drives the intermittent wheel 5031 through the cooperation of the shifting rod 5033 and the transmission groove. The intermittently rotating intermittent wheel 5031 drives the rotating seat 502 to rotate intermittently. The intermittently rotating rotating seat 502 uses the medicine-taking groove to achieve intermittent medicine-taking and quickly closes the vertical blanking pipe 601.
[0043] The driving mechanism 4 is composed of a servo motor 401, a first bevel gear 402, a third bevel gear 403, a face gear 404, a first gear 405, a second gear 406 and a fourth bevel gear 407, wherein the servo motor 401 is fixedly mounted on one side of the mounting base 3, and an encoder is fixedly mounted on the output end of the servo motor 401, the first bevel gear 402 is connected to the output end of the servo motor 401 through a shaft, one side of the third bevel gear 403 is fixedly connected to the first bevel gear 402 through a shaft, and the third bevel gear 406 is fixedly connected to the first bevel gear 402 through a shaft. The wheel 403 is meshed with the face gear disc 404, the bottom of the first gear 405 is fixedly connected to the top of the face gear disc 404, and the vertical discharge pipe 601 passes through the interior of the face gear disc 404 and the first gear 405. The vertical discharge pipe 601 is fixedly connected to the face gear disc 404 and the first gear 405. The first gear 405 is meshed with the second gear 406. The fourth bevel gear 407 is fixedly connected to the bottom of the second gear 406 via a shaft, and the fourth bevel gear 407 is meshed with the fifth bevel gear 5034.
[0044] Among them, the shaft between the first bevel gear 402 and the third bevel gear 403 is horizontally installed at the bottom of the storage tank 1, and the shaft passes through the storage tank 1 for rotational connection, and the shaft between the second gear 406 and the fourth bevel gear 407 is vertically installed at the bottom of the storage tank 1, and the shaft passes through the storage tank 1 for rotational connection; the encoder at the output end of the servo motor 401 is electrically connected to the controller 301 through a wire, and the controller 301 presets the encoder detection value according to the maximum lifting stroke of the threaded lifting mechanism 204. When the encoder detects that the stroke of the servo motor 401 reaches the preset value, it immediately controls the servo motor 401 to rotate in the opposite direction, so that the threaded lifting mechanism 204 drives the piston 202 to move downward, so as to facilitate the subsequent replenishment of nitrogen into the nitrogen tank 201.
[0045] The top of the storage tank 1 is threadedly mounted with a tank cover 101, the interior of the tank cover 101 is filled with a molecular sieve filler, the top of the spiral channel 103 is threadedly mounted with a deoxidizer tank 102, the interior of the deoxidizer tank 102 is filled with a deoxidizer filler, and a micro oxygen sensor is fixedly mounted on the front of the storage tank 1;
[0046] Among them, the molecular sieve filler and the deoxidizer filler effectively ensure that the material stored in the storage tank 1 is in a low-oxygen, dry environment, thereby extending the shelf life of the material; at the same time, the micro oxygen sensor fixedly installed on the front of the storage tank 1 can monitor the oxygen concentration in the tank in real time. When the oxygen concentration is close to the preset value, the controller 301 starts the solenoid valve 205 to supplement nitrogen to maintain a low-oxygen environment in the tank, further ensuring the quality and safety of the Ganoderma lucidum slices.
[0047] The method for storing Ganoderma lucidum slices comprises the following steps:
[0048] Step 1: Rotate and open the can lid 101, put the Ganoderma lucidum tablets into the storage tank 1, replenish or replace the molecular sieve filler and deoxidizer filler filled in the can lid 101 and the deoxidation tank 102 respectively, ensure the drying effect and deoxidation effect of the device, and then thread the can lid 101 onto the top of the storage tank 1. It should be noted that when filling the molecular sieve filler and deoxidizer filler, first remove the original molecular sieve filler and deoxidizer filler, and then refill an appropriate amount of molecular sieve and deoxidizer according to needs. This not only maintains the dry and oxygen-free environment inside the storage tank 1, but also extends the shelf life of the Ganoderma lucidum tablets and avoids the influence of microbial growth and oxidation reactions.
[0049] Step 2: During the process of storing the Ganoderma lucidum tablets, the oxygen content inside the storage tank 1 is detected in real time by a micro oxygen sensor, and the detection data is transmitted to the controller 301 for calculation. When the oxygen content inside the storage tank 1 is lower than the set value, the solenoid valve 205 is opened by the controller 301, and the nitrogen gas stored inside the nitrogen gas tank 201 is transported into the storage tank 1 through the solenoid valve 205, ensuring the oxygen-free environment inside the storage tank 1, so as to ensure that the environment inside the storage tank 1 is always in an oxygen-free state, thereby effectively extending the preservation period of the Ganoderma lucidum tablets and maintaining their quality.
[0050] Step 3: When the servo motor 401 drives the third bevel gear 403 to rotate through the shaft rod, the rotating third bevel gear 403 drives the vertical feeding pipe 601 to rotate through the meshing surface gear disk 404. The top of the vertical feeding pipe 601 is fixedly connected through the rotating disk 6, and the rotating disk 6 rotates synchronously. The rotation of the rotating disk 6 causes the Ganoderma lucidum tablets on the top surface to be rotated and conveyed clockwise or counterclockwise into the spiral channel 103. The spiral channel 103 guides the Ganoderma lucidum tablets to be stored in an orderly manner, and arranges them in an orderly manner through the vertical channel of the vertical feeding pipe 601, which ultimately facilitates subsequent medicine taking, thus realizing the automatic and orderly transportation and storage of the Ganoderma lucidum tablets, and effectively improving the efficiency and convenience of the Ganoderma lucidum tablets during storage and retrieval.
[0051] Step 4: When the Ganoderma lucidum tablets are effectively arranged and stored in the vertical feeding pipe 601, the rotating surface gear disk 404 drives the meshing second gear 406 to rotate through the first gear 405 fixedly connected at the top. The rotating second gear 406 drives the fourth bevel gear 407 to rotate through the shaft rod. The rotating fourth bevel gear 407 drives the rotating seat 502 to rotate intermittently through the intermittent transmission assembly 503. When the medicine-taking groove inside the rotating seat 502 is docked with the bottom opening of the vertical feeding pipe 601, the Ganoderma lucidum tablets stored inside the vertical feeding pipe 601 fall into the medicine-taking groove. When the medicine-taking groove inside the rotating seat 502 is away from the bottom opening of the vertical feeding pipe 601, the rotating seat 502 closes the bottom opening of the vertical feeding pipe 601, achieving the purpose of quickly closing the vertical feeding pipe 601 and preventing subsequent Ganoderma lucidum tablets from falling, thus realizing a fast and precise discharging process. When the medicine-taking groove inside the rotating seat 502 rotates to the bottom, the Ganoderma lucidum tablets in the medicine-taking groove fall into the feeding hopper 504, realizing the non-destruction of the anaerobic environment inside the storage tank 1. The intermittent transmission mechanism is used, enabling the Ganoderma lucidum tablets to completely fall into the lower feeding hopper 504 each time they are discharged, effectively avoiding the destruction of the anaerobic environment inside the storage tank 1 and ensuring the activity and quality of the Ganoderma lucidum tablets;
[0052] Step 5: While the intermittent feeding mechanism 5 takes medicine, the servo motor 401 drives the screw lifting mechanism 204 to lift through the cooperation of the first bevel gear 402 and the meshing transmission bevel gear 203. While the screw lifting mechanism 204 rises and drives the piston 202 to move inside the nitrogen tank 201, the controller 301 opens the solenoid valve 205. At this time, the moving piston 202 transports the nitrogen inside the nitrogen tank 201 into the storage tank 1, filling high-purity nitrogen (>99.99%). Combining with the micro-positive pressure maintenance technology to prevent external air from infiltrating, achieving the restoration of the anaerobic environment inside the storage tank 1 immediately after taking the Ganoderma lucidum tablets. This device should not only be able to effectively prevent the intrusion of external oxygen and pollutants, but also be able to immediately restore the anaerobic environment after each use to ensure the storage of Ganoderma lucidum tablets under the best conditions.
[0053] According to the explanations and teachings of the above specification, those skilled in the art of the present invention can also make changes and modifications to the above embodiments. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should also fall within the protection scope of the claims of the present invention. In addition, although some specific terms are used in this specification, these terms are only for convenience of description and do not constitute any limitation to the present invention.
Claims
1. Ganoderma lucidum spore powder storage device, comprising a storage tank (1), an inflation mechanism (2) and an intermittent feeding mechanism (5), characterized in that, The invention also includes a mounting base (3) fixedly mounted on one side of the storage tank (1), a controller (301) fixedly mounted on the front of the mounting base (3); a rotating disk (6) rotatably mounted inside the storage tank (1), a vertical discharge pipe (601) fixedly mounted on the bottom of the rotating disk (6), and the bottom of the vertical discharge pipe (601) is rotatably mounted on the bottom of the storage tank (1), and a spiral channel (103) is fixedly mounted inside the storage tank (1); the inflation mechanism (2) is fixedly mounted on the top of the mounting base (3), a driving mechanism (4) is fixedly mounted inside the mounting base (3), and the driving mechanism (4) extends into the interior of the storage tank (1), and the driving mechanism (4) is connected to the inflation mechanism (2) and the intermittent discharge mechanism ( 5) transmission connection, the driving mechanism (4) is connected to the rotating disk (6) through the vertical discharge pipe (601), and the driving mechanism (4) drives the inflation mechanism (2), the intermittent discharge mechanism (5) and the rotating disk (6) to operate synchronously, so that the running rotating disk (6) cooperates with the spiral channel (103) to arrange the Ganoderma lucidum slices in an orderly manner in the vertical discharge pipe (601), and then uses the intermittently running intermittent discharge mechanism (5) to intermittently take medicine from the Ganoderma lucidum slices in the vertical discharge pipe (601), and quickly closes the vertical discharge pipe (601), and at the same time, nitrogen is transported to the storage tank (1) through the inflation mechanism (2) to maintain the positive pressure inside the storage tank (1) to prevent oxygen from penetrating, ensuring that the anaerobic environment in the storage tank (1) can be immediately restored after the Ganoderma lucidum slices are taken.
2. The Ganoderma lucidum tablet storage device according to claim 1, characterized in that: The inflation mechanism (2) is composed of a nitrogen tank (201), a piston (202), a transmission bevel gear (203), a threaded lifting mechanism (204), and a solenoid valve (205), wherein the nitrogen tank (201) is fixedly mounted on the top of the mounting seat (3), the piston (202) is fixedly mounted on the top of the threaded lifting mechanism (204), the transmission bevel gear (203) is fixedly mounted on the bottom of the threaded lifting mechanism (204), and the threaded lifting mechanism (204) extends into the interior of the mounting seat (3), and the threaded lifting mechanism (204) is transmission-connected to the driving mechanism (4), and the solenoid valve (205) is fixedly mounted on the top of the nitrogen tank (201), and the top of the solenoid valve (205) is connected to the storage tank (1) via a pipeline.
3. The Ganoderma lucidum tablet storage device according to claim 1, wherein: The intermittent feeding mechanism (5) is composed of a feeding base (501), a rotating base (502), an intermittent transmission component (503) and a feeding hopper (504), wherein the rotating base (502) is rotatably mounted inside the feeding base (501), and a medicine taking slot is provided inside the rotating base (502); the intermittent transmission component (503) is rotatably mounted on one side of the feeding base (501), and the intermittent transmission component (503) is transmission-connected to the rotating base (502); and the feeding hopper (504) is rotatably mounted at the bottom of the feeding base (501).
4. The Ganoderma lucidum tablet storage device according to claim 3, characterized in that: The intermittent transmission component (503) is composed of an intermittent wheel (5031) and a runner (5032). Among them, drive grooves are equidistantly arranged inside the intermittent wheel (5031). The runner (5032) is rotatably installed on one side of the blanking seat (501). A fifth bevel gear (5034) is fixedly installed at the center of one side of the runner (5032). The fifth bevel gear (5034) is in transmission connection with the drive mechanism (4). A toggle rod (5033) is fixedly installed on one side of the runner (5032).
5. The Ganoderma lucidum tablet storage device according to claim 4, wherein: The drive mechanism (4) is composed of a servo motor (401), a first bevel gear (402), a third bevel gear (403), a face gear disk (404), a first gear (405), a second gear (406) and a fourth bevel gear (407). Among them, the servo motor (401) is fixedly installed on one side of the mounting seat (3), and an encoder is fixedly installed at the output end of the servo motor (401). The first bevel gear (402) is in transmission connection with the output end of the servo motor (401) through a shaft rod. One side of the third bevel gear (403) is fixedly connected with the first bevel gear (402) through a shaft rod. The third bevel gear (403) is meshed with the face gear disk (404). The bottom of the first gear (405) is fixedly connected with the top of the face gear disk (404). And the vertical blanking pipe (601) passes through the face gear disk (404) and the inside of the first gear (405). The vertical blanking pipe (601) is fixedly connected with the face gear disk (404) and the first gear (405). The first gear (405) is meshed with the second gear (406). The fourth bevel gear (407) is fixedly connected with the bottom of the second gear (406) through a shaft rod. And the fourth bevel gear (407) is meshed with the fifth bevel gear (5034).
6. The Ganoderma lucidum tablet storage device according to claim 1, characterized in that: A tank cover (101) is threadedly installed at the top of the storage tank (1). Molecular sieve packing is filled inside the tank cover (101). A deoxidation tank (102) is threadedly installed at the top of the spiral channel (103). Deoxidant packing is filled inside the deoxidation tank (102). A micro oxygen sensor is fixedly installed on the front surface of the storage tank (1).
7. Storage method of Ganoderma lucidum tablets, using the Ganoderma lucidum tablet storage device according to any one of claims 1-6, characterized in that, It includes the following steps: Step 1: Rotate and open the tank cover (101), put the Ganoderma lucidum slices into the storage tank (1), replenish or replace the molecular sieve packing and deoxidant packing filled in the tank cover (101) and the deoxidation tank (102) respectively to ensure the drying effect and deoxidation effect of the device. Then threadedly install the tank cover (101) on the top of the storage tank (1). Step 2: During the process of storing the Ganoderma lucidum slices, the oxygen content inside the storage tank (1) is detected in real time through the micro oxygen sensor, and the detected data is transmitted to the controller (301) for calculation. When the oxygen content inside the storage tank (1) is lower than the set value, the solenoid valve (205) is opened through the controller (301), and the nitrogen stored inside the nitrogen tank (201) is conveyed into the storage tank (1) through the solenoid valve (205) to ensure an oxygen-free environment inside the storage tank (1). Step 3: When the servo motor (401) drives the third bevel gear (403) to rotate through the shaft, the rotating third bevel gear (403) drives the vertical feeding pipe (601) to rotate through the meshing surface gear disc (404). The rotating vertical feeding pipe (601) drives the synchronously rotating rotating disc (6) fixedly connected to the top. The rotating rotating disc (6) rotates and conveys the Ganoderma lucidum slices on the top surface into the spiral channel (103), so that the Ganoderma lucidum slices are stored orderly inside the spiral channel (103) and conveyed into the vertical feeding pipe (601) for vertical orderly arrangement, which is convenient for subsequent medicine taking. Step 4: When the Ganoderma lucidum slices are effectively arranged and stored in the vertical feeding pipe (601), the rotating surface gear disc (404) drives the meshing second gear (406) to rotate through the first gear (405) fixedly connected to the top. The rotating second gear (406) drives the fourth bevel gear (407) to rotate through the shaft. The rotating fourth bevel gear (407) drives the rotating seat (502) to rotate intermittently through the intermittent transmission assembly (503). When the medicine taking groove inside the rotating seat (502) is docked with the bottom opening of the vertical feeding pipe (601), the Ganoderma lucidum slices stored inside the vertical feeding pipe (601) fall into the medicine taking groove. When the medicine taking groove inside the rotating seat (502) is away from the bottom opening of the vertical feeding pipe (601), the rotating seat (502) closes the bottom opening of the vertical feeding pipe (601), achieving the purpose of quickly closing the vertical feeding pipe (601). When the medicine taking groove inside the rotating seat (502) rotates to the bottom, the Ganoderma lucidum slices in the medicine taking groove fall into the feeding hopper (504), realizing the non-destruction of the anaerobic environment inside the storage tank (1). Step 5: While the intermittent feeding mechanism (5) takes medicine, the servo motor (401) drives the threaded lifting mechanism (204) to lift through the cooperation of the first bevel gear (402) and the meshing transmission bevel gear (203). While the threaded lifting mechanism (204) rises and drives the piston (202) to move inside the nitrogen tank (201), the controller (301) opens the solenoid valve (205). At this time, the moving piston (202) conveys the nitrogen inside the nitrogen tank (201) into the storage tank (1) and fills high-purity nitrogen. Combining with the micro-positive pressure maintenance technology, it prevents external air from infiltrating, achieving the restoration of the anaerobic environment inside the storage tank (1) immediately after taking the Ganoderma lucidum slices.
Citation Information
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