An adaptive dosing system
By introducing a metering device and stirring equipment into the adaptive dosing system, combined with a gravity sensor and a timer, the problem of metered dosing was solved, improving the wastewater purification effect and system stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHONGKE JIELI FUZHOU ENVIRONMENTAL PROTECTION TECH
- Filing Date
- 2024-03-20
- Publication Date
- 2026-05-26
Smart Images

Figure CN118206166B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of adaptive dosing equipment technology, and more particularly to an adaptive dosing system. Background Technology
[0002] An adaptive dosing system is a mechanical device used in power plants to treat feedwater, boiler water, circulating water, and wastewater. When using an adaptive dosing system, simply place the modular dosing unit in the dosing room, connect the dosing pipes, and turn on the power to start operation. This factory-installed complete system greatly reduces the workload of design and on-site construction, providing reliable guarantees for the overall quality, safety, and on-site operation. Therefore, it is mainly used in industries such as petroleum, chemical, environmental protection, and water supply systems.
[0003] However, the existing technology has the following shortcomings: Currently, when adaptive dosing systems treat wastewater, the required reactive chemicals are usually added manually. This method of adding reactive chemicals makes it impossible to achieve the ideal dosage and dosing interval, thus reducing the degree of wastewater purification by the adaptive dosing system. Summary of the Invention
[0004] The purpose of this application is to overcome the above-mentioned shortcomings and provide an adaptive dosing system. The system can perform quantitative operation on the drugs fed into the adaptive dosing system through the quantitative device in the quantitative equipment, which effectively avoids the impact of the adaptive dosing system being unable to perform quantitative dosing on the drug dosing of the adaptive dosing system.
[0005] To achieve the above objectives, this application provides the following technical solution: an adaptive dosing system includes a metering device. The metering device contains a metering unit, and an outer wall is installed within the metering unit. A timer is connected to the outer wall, and a plurality of metering unit fixing keys are connected to the outer wall. A metering device is installed next to each fixing key, and an outer wall is formed within the metering device. A gravity sensor is nested within the outer wall, and a plurality of metering locking plates are connected to the outer wall. A plurality of metering locking keys are installed next to each locking plate, and a locking door is located next to each fixing key. The internal parts of the metering locking plates cooperate with the internal parts of the locking doors, allowing the medication to slowly enter the locking doors, greatly improving the practicality of the adaptive dosing system.
[0006] In some embodiments, a stirring device is nested within the metering device, and a scraping device is installed beside the metering device. The metering device has a plurality of metering device fixing keys, and both the scraping and stirring devices have their own outer walls. The inside of the metering locking plate cooperates with the inside of the locking door, and the inner side of the scraping device engages with the outer side of the stirring device. This engagement allows the liquid within the scraping device to be stirred by the stirring device, greatly improving the practicality of the adaptive dosing system.
[0007] In some embodiments, the metering device fixing key is connected to the outer wall of the metering device, and the outer side of the metering device fixing key is embedded in the inner side of the outer wall of the stirring device. This embedding of the outer side of the metering device fixing key into the inner side of the outer wall of the stirring device makes the internal structure of the adaptive dosing system more robust and reliable, greatly improving the operational stability of the adaptive dosing system.
[0008] In some embodiments, a plurality of scraping devices are connected to the outer wall of the scraping device, and a discharge port is nested beside the outer wall of the scraping device. The tail end of the discharge port is connected to the front end of the scraping device, and the outer side of the outer wall of the scraping device is engaged with the inner side of the outer wall of the mixing device. This engagement between the outer side of the scraping device and the inner side of the mixing device allows for a tighter connection between the internal devices of the adaptive dosing system, improving the safety of the adaptive dosing system's operation.
[0009] In some embodiments, the scraping device has an outer wall, a fixing ring is connected to the outer wall, and a scraper is installed next to the fixing ring. The outer side of the fixing ring is fixedly engaged with the inner side of the outer wall. This engagement of the fixing ring with the inner side of the outer wall makes the internal structure of the adaptive dosing system more robust and reliable, improving the stability of the adaptive dosing system.
[0010] In some embodiments, the scraper has an outer wall, a fixing key is connected to the outer wall, and a plurality of scraping keys are installed next to the fixing key. The outer side of the fixing key engages with the inner side of the outer wall, and the inner side of the scraping keys cooperates with the inner side of the outer wall. Because the inner side of the scraping keys cooperates with the inner side of the outer wall, a motor inside the outer wall can directly drive the scraping keys to rotate, improving the integrity of the internal structure of the adaptive dosing system.
[0011] In some embodiments, an AI controller is connected to the outer wall of the mixing device, and a mixing device is nested within the outer wall of the mixing device. The interior of the mixing device cooperates with the interior of the AI controller. This cooperation allows the AI controller to control the mixing device, improving the practicality of the adaptive dosing system.
[0012] In some embodiments, the stirring device has an outer wall, on which a fixing key is nested. A stirrer is installed next to the fixing key, with its upper end connected to the lower end of the stirring device. The outer side of the fixing key is fixedly embedded in the inner side of the outer wall of the stirring device. This secure embedding of the fixing key into the inner side of the outer wall of the stirring device allows for a tighter connection between the internal components of the adaptive dosing system, improving the operational safety of the adaptive dosing system.
[0013] In some embodiments, the stirrer has an inner outer wall, on which a plurality of stirrer springs are nested. A stirrer fixing key is installed next to each stirrer spring, and the outer side of the stirrer fixing key engages with the inner side of the outer wall of the stirring device. This engagement of the outer side of the stirrer fixing key with the inner side of the outer wall of the stirring device makes the internal structure of the adaptive dosing system more robust and reliable, greatly improving the operational stability of the adaptive dosing system.
[0014] In some embodiments, the two sides of the metering device engage with the inner side of the outer wall of the metering device, and the outer side of the metering device fixing key is embedded in the inner side of the outer wall of the metering device. This embedding of the outer side of the metering device fixing key into the inner side of the outer wall of the metering device allows for a tighter connection between the internal structures of the adaptive dosing system, greatly improving the integrity of the internal structure.
[0015] By adopting the above technical solution, the beneficial effects of this application are:
[0016] 1. This application uses a weight sensor in the quantitative device to open and close the door, thereby enabling the adaptive dosing system to automatically control the dosing amount. This effectively avoids the reduction in wastewater purification caused by manual dosing, which makes it impossible to achieve the ideal dosing amount and interval.
[0017] 2. This application ensures the purification level of the dispensed medicine and the smooth flow of the flow pipe by cooperating with the swing motor and scraping key in the scraping equipment. This effectively avoids the impact of an adaptive dosing system that has not filtered and cleaned the dispensed medicine on the dispensing of the adaptive dosing system.
[0018] 3. This application utilizes the interaction of the stirring blades and the stirring spring within the stirring equipment to vibrate and fully stir the medicine fed into the adaptive dosing system, effectively avoiding the impact of insufficient stirring on the operation of the adaptive dosing system.
[0019] Undoubtedly, such and other objectives of this application will become more apparent after the following detailed description of the preferred embodiments, which are illustrated in various accompanying drawings and figures.
[0020] To make the above and other objects, features and advantages of this application more apparent and understandable, one or more preferred embodiments are described below in detail with reference to the accompanying drawings. Attached Figure Description
[0021] In the accompanying drawings, the same parts use the same reference numerals, and the drawings are schematic and not necessarily drawn to actual scale.
[0022] Figure 1 This is a schematic diagram of the structure of an adaptive dosing system in some embodiments of this application;
[0023] Figure 2 This is a right-side rear-view stereoscopic structural diagram of an adaptive dosing system according to some embodiments of this application;
[0024] Figure 3 This is a right-side bottom-view perspective view of the three-dimensional structure of an adaptive dosing system in some embodiments of this application;
[0025] Figure 4 This is a three-dimensional structural diagram of the quantitative device in some embodiments of this application;
[0026] Figure 5 This is a three-dimensional structural diagram of the quantitative device in some embodiments of this application;
[0027] Figure 6 This is a three-dimensional structural diagram of the meter in some embodiments of this application;
[0028] Figure 7 This is a three-dimensional structural diagram of the scraping device in some embodiments of this application;
[0029] Figure 8 This is a three-dimensional structural schematic diagram of the scraping device in some embodiments of this application;
[0030] Figure 9 This is a three-dimensional structural diagram of the scraper in some embodiments of this application;
[0031] Figure 10 This is a three-dimensional structural diagram of the stirring device in some embodiments of this application;
[0032] Figure 11 This is a three-dimensional structural schematic diagram of the stirring device in some embodiments of this application;
[0033] Figure 12 This is a partially enlarged three-dimensional structural diagram of A in some embodiments of this application.
[0034] In the diagram: 1. Metering device; 2. Scraping device; 3. Mixing device; 11. Metering apparatus; 12. Outer wall of metering device; 13. Fixing key of metering device; 111. Meter; 112. Fixing key of metering apparatus; 113. Outer wall of metering apparatus; 114. Timer; 1111. Outer wall of metering apparatus; 1112. Locking door; 1113. Metering locking plate; 1114. Fixing key of metering apparatus; 1115. Gravity sensor; 21. Discharge port; 22. Scraping device; 23. Outer wall of scraping device; 221. Outer wall of scraping device; 222. Fixing ring of scraping device; 223. Scraper; 2231. Fixing key of scraper; 2232. Scraping key; 2233. Outer wall of scraper; 31. AI controller; 32. Mixing device; 33. Outer wall of mixing device; 321. Fixing key of mixing device; 322. Outer wall of mixing device; 323. Agitator; 3231. Outer wall of agitator; 3232. Agitator spring; 3233. Fixing key of agitator. Detailed Implementation
[0035] The following will describe in detail the implementation methods of this application with reference to the accompanying drawings and embodiments, so as to fully understand how this application uses technical means to solve technical problems and achieve technical effects, and to implement it accordingly. It should be noted that, as long as there is no conflict, the various embodiments and features in each embodiment of this application can be combined with each other, and the resulting technical solutions are all within the protection scope of this application.
[0036] Furthermore, numerous specific details are set forth in the following description for illustrative purposes to provide a thorough understanding of the embodiments of this application. However, it will be apparent to those skilled in the art that this application may be implemented without the specific details herein or the particular methods described.
[0037] Example 1
[0038] Reference Figures 1 to 6 As shown:
[0039] This application provides an adaptive dosing system, comprising: a metering device; a stirring device nested within the metering device; a scraping device installed beside the metering device; a plurality of metering device fixing keys (13) inside the metering device; the outer wall of the metering device (12) connected to the fixing keys; the outer side of the fixing keys (13) being fixed to the inner side of the outer wall of the stirring device (33); the outer wall of the scraping device (23) installed inside the scraping device; the outer wall of the stirring device (33) installed inside the stirring device; the inner side of the metering locking plate (1113) cooperating with the inner side of the locking door (1112); and the inner side of the scraping device (2) engaging with the outer side of the stirring device (3). The device has 11 metering devices inside, 113 metering device outer wall installed inside the 11 metering devices, 114 timer connected to the 113 metering device outer wall, a plurality of 112 metering device fixing keys connected to the 113 metering device outer wall, 111 metering device installed next to the 112 metering device fixing keys, 111 metering device outer wall inside the 111 metering device, 1115 gravity sensor nested on the 1111 metering device outer wall, a plurality of 1113 metering locking plates connected to the 1111 metering device outer wall, a plurality of 1114 metering device fixing keys installed next to the 1113 metering locking plates, and 1112 locking door opened next to the 1114 metering device fixing keys.
[0040] Among them, the outer wall of the metering device (12), the fixing key of the metering device (13), the fixing key of the metering device (112), the outer wall of the metering device (113), the outer wall of the metering device (1111), and the fixing key of the metering device (1114) are made of harder materials to make the internal structure of the adaptive dosing system more robust and reliable.
[0041] The 111 metering device features a steeper structure at the top, allowing medication placed on top to enter the device more quickly when needed, preventing medication from failing to fall due to insufficient steepness of the device.
[0042] The internal spring of the 1113 metering clamp is in a slightly contracted state, so as to keep the 1113 metering clamp slightly extended at all times, to prevent the drug from failing to fall due to the high strength of the internal spring of the 1113 metering clamp.
[0043] The 114 timer uses the existing 555 timer, whose internal BJT and CMOS gate circuits can be fully connected to the Arduino's internal chips to complete the corresponding control output.
[0044] Among them, the 1115 gravity sensor is an existing accessory, using a small HSX-A-100KG, which allows the entire 1115 gravity sensor HSX-A-100KG to be more securely fixed inside the outer wall of the 1111 weighing device for weighing.
[0045] Detailed usage and function of this embodiment:
[0046] In this application, when the adaptive dosing system needs to add medication, the operator places the medication directly above the 111 metering device. The 111 metering device will continuously drop. When the 1115 gravity sensor inside the outer wall of the 1111 metering device senses that the amount of medication on the outer wall of the 1111 metering device has reached the amount set by the Arduino Uno built-in chip, the 1112 locking door opens. At this time, the medication drops slowly through the 1113 metering locking plate. The 114 timer inside the outer wall of the 113 metering device and the locking plate serve the purpose of timed dropping, thereby enabling the adaptive dosing system to add medication quantitatively and at regular intervals.
[0047] Example 2
[0048] Reference Figures 7 to 9 As shown:
[0049] Furthermore, a plurality of scraping devices 22 are connected to the outer wall of scraping device 23. A discharge port 21 is nested beside the outer wall of scraping device 23, with the tail end of discharge port 21 connected to the front end of scraping device 22. The outer side of the outer wall of scraping device 23 is engaged with the inner side of the outer wall of mixing device 33. A scraping device outer wall 221 is formed inside scraping device 221, with a scraping device fixing ring 222 connected to the scraping device outer wall 221. A scraping device 223 is installed beside the scraping device fixing ring 222. The scraper has a 222 scraping device fixing ring that is fixed to the outer side of the outer wall of the scraping device 23. The scraper 223 has an outer wall 2233 inside. The outer wall of the scraper 2233 is connected to the scraper fixing key 2231. A plurality of scraping keys 2232 are installed next to the scraper fixing key 2231. The outer side of the scraper fixing key 2231 is engaged with the inner side of the outer wall of the scraping device 221. The inside of the scraping key 2232 is engaged with the inside of the outer wall of the scraper 2233.
[0050] Among them, the discharge port (21), the outer wall of the scraper (23), the outer wall of the scraper (221), the fixing ring of the scraper (222), the fixing key of the scraper (2231), and the outer wall of the scraper (2233) are made of harder materials to make the internal devices of the adaptive dosing system more tightly connected.
[0051] Among them, the scraping range of scraper 223 can completely scrape the filter screen inside the outer wall of scraper 221, preventing the filter screen inside the outer wall of scraper 221 from not being cleaned due to the insufficient scraping range of scraper 223.
[0052] The force of the internal motor rotating on the outer wall of the 2233 scraper can directly drive all the 2232 scraping keys to rotate and scrape, avoiding the 2232 scraping keys not being able to completely scrape the filter screen due to insufficient rotation force of the internal motor on the outer wall of the 2233 scraper.
[0053] Detailed usage and function of this embodiment:
[0054] In this application, when the adaptive dosing system dispenses medicine, the medicine solution flows directly from the outer wall of the scraper 23 to the discharge port 21. When the medicine solution enters the outer wall of the scraper 221, larger materials are filtered down by the filter screen. At this time, the motor inside the outer wall of the scraper 2233 drives the scraper key 2232 to swing up and down to scrape, thereby quickly scraping away the impurities on the filter screen.
[0055] Example 3
[0056] Reference Figures 10 to 12 As shown:
[0057] Furthermore, a 31AI controller is connected to the outer wall of the 33 mixing device, and a 32 mixing device is nested in the outer wall of the 33 mixing device. The interior of the 32 mixing device cooperates with the interior of the 31AI controller. An outer wall of the 32 mixing device is formed inside the 32 mixing device. A 321 mixing device fixing key is nested in the outer wall of the 322 mixing device. A 323 stirrer is installed next to the 321 stirring device fixing key. The upper end of the 323 stirrer is connected to the lower end of the 322 mixing device. The outer side of the 321 stirring device fixing key is fixed to the inner side of the outer wall of the 33 mixing device. An outer wall of the 323 stirrer is formed inside the 3231 stirrer. Several 3232 stirrer springs are nested in the outer wall of the 3231 stirrer. A 3233 stirrer fixing key is installed next to the 3232 stirrer springs. The outer side of the 3233 stirrer fixing key is engaged with the inner side of the outer wall of the 322 mixing device.
[0058] Among them, the outer wall of the mixing equipment (33), the fixing key of the mixing device (321), the outer wall of the mixing device (322), the outer wall of the agitator (3231), and the fixing key of the agitator (3233) are made of harder materials to make the internal structure of the adaptive dosing system more robust and reliable.
[0059] The blades inside the 323 agitator have a curved spiral structure, which allows the agitator to quickly and more thoroughly mix the drugs when it rotates.
[0060] The 3232 agitator spring is always in a slightly contracted state. This slight contraction causes the rotating blades inside the adaptive dosing system to vibrate back and forth, allowing the agitator blades to more thoroughly mix the drug.
[0061] The 31AI controller is equipped with an Arduino Uno development board, allowing the entire adaptive dosing system's internal systems and mechanical structures to be operated directly through the Arduino's operating steps.
[0062] The 31AI controller is connected to the 114 timer and 1115 gravity sensor through the outer wall of the entire dosing machine. The 114 timer and 1115 gravity sensor are directly controlled by preset control inside the 31AI controller to perform timing and weighing operations.
[0063] Detailed usage and function of this embodiment:
[0064] In this application, when the adaptive dosing system is filled with solution and drug, the motor on the outer wall of the 33 stirring device drives the entire 32 stirring device to rotate. At this time, the blades inside the rotating 32 stirring device also rotate. The rotating blades are impacted by the external solution and drug and swing back and forth in conjunction with the 32 stirring spring. In this way, the swinging blades and the rotating 32 stirring device can fully stir the solution and drug inside the adaptive dosing system.
[0065] Example 4
[0066] Reference Figures 1 to 12 As shown: Figure 1 This is a schematic diagram of the structure of an adaptive dosing system in some embodiments of this application; Figure 2 This is a right-side rear-view stereoscopic structural diagram of an adaptive dosing system according to some embodiments of this application; Figure 3 This is a right-side bottom-view perspective view of the three-dimensional structure of an adaptive dosing system in some embodiments of this application; Figure 4 This is a three-dimensional structural diagram of the quantitative device in some embodiments of this application; Figure 5 This is a three-dimensional structural diagram of the quantitative device in some embodiments of this application; Figure 6 This is a three-dimensional structural diagram of the meter in some embodiments of this application; Figure 7 This is a three-dimensional structural diagram of the scraping device in some embodiments of this application; Figure 8 This is a three-dimensional structural schematic diagram of the scraping device in some embodiments of this application; Figure 9 This is a three-dimensional structural diagram of the scraper in some embodiments of this application; Figure 10 This is a three-dimensional structural diagram of the stirring device in some embodiments of this application; Figure 11 This is a three-dimensional structural schematic diagram of the stirring device in some embodiments of this application; Figure 12 This is a partially enlarged three-dimensional structural diagram of A in some embodiments of this application.
[0067] Detailed usage and function of this embodiment:
[0068] In this application, the 1 metering device is fixed to the 3 mixing device by connecting the 13 metering device fixing key inside the outer wall of the 12 metering device and the outer wall of the 33 mixing device; the 2 scraping device is fixed to the 3 mixing device by connecting the 23 scraping device and the outer wall of the 33 mixing device; the 11 metering device is fixed to the 12 metering device outer wall by connecting the 112 metering device fixing key inside the outer wall of the 113 metering device; the 111 metering device is connected to the 113 metering device outer wall by connecting the 1114 metering device fixing key inside the outer wall of the 1111 metering device; and the 22 scraping device is connected to the 23 scraping device outer wall by connecting the 222 scraping device fixing ring inside the outer wall of the 221 scraping device. The 23 scraper is connected to the 2231 scraper fixing key inside the 2233 scraper outer wall and the 221 scraping device outer wall. The 32 stirring device is connected to the 33 stirring device outer wall through the 321 stirring device fixing key inside the 322 stirring device outer wall. The 323 stirrer is connected to the 322 stirring device outer wall through the 3233 stirrer fixing key inside the 3231 stirrer outer wall. When the adaptive dosing system dissolves the drug, the required drug is first placed on the 111 metering device. The drug falling into the 111 metering device is constantly sensed by the 1115 gravity sensor. When the weight of the drug on the 111 metering device reaches the weight set on the Arduino Uno inside the 31 AI controller, the 1112 locking gate connected to the 1115 gravity sensor activates according to the Arduino. When the Uno setting is activated, the 1113 metering plate slowly drops the medication. At this point, all the medication falls onto the 113 metering device. The 114 timer is connected to the two plates below it. A pulse signal within the 114 timer causes the telescopic shaft at the rear of the plate to extend and retract effectively. The medication remains above the 113 metering device until the 114 timer reaches its set value. At this point, a high-level pulse is sent to the plates below the 113 metering device, causing the plates to open and allowing the medication to fall. This achieves both metered and timed medication dispensing. Once the medication enters the adaptive dosing system... The motor on the outer wall of the 33 mixing device drives the entire 32 mixing device to rotate. At this time, the blades inside the rotating 32 mixing device are subjected to force and swing back and forth through the 3232 agitator spring, so as to more fully react the drugs inside the adaptive dosing system. When the drug solution is ready for transportation, the drug flows to the 21 discharge port directly through the 31 AI controller. At this time, larger impurities are blocked on the filter screen. The motor inside the outer wall of the 2233 scraper drives the 2232 scraper key to swing back and forth, so that the 2232 scraper key scrapes all the impurities on the filter screen into the collection box below for collection and achieves the purpose of cleaning the filter screen.
[0069] It should be understood that the embodiments disclosed in this application are not limited to the specific processing steps or materials disclosed herein, but should be extended to equivalent substitutions of such features as understood by those skilled in the art. It should also be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting.
[0070] The term "embodiment" as used in this specification means that a specific feature or characteristic described in connection with an embodiment is included in at least one embodiment of this application. Therefore, phrases or "embodiments" appearing in various places throughout the specification do not necessarily refer to the same embodiment.
[0071] Furthermore, the described features or characteristics can be incorporated into one or more embodiments in any other suitable manner. In the above description, specific details, such as thickness, quantity, etc., are provided to provide a comprehensive understanding of the embodiments of this application. However, those skilled in the art will understand that this application can be implemented without the aforementioned one or more specific details or using other methods, components, materials, etc.
Claims
1. An adaptive dosing system, characterized in that, The device includes a quantitative apparatus, which contains a quantitative device. The quantitative device has an outer wall, and a timer is connected to it. Multiple quantitative device fixing keys are connected to the outer wall. A metering device is installed next to each fixing key. The metering device has an outer wall, and a gravity sensor is nested within it. Multiple metering locking plates are connected to the outer wall, and multiple metering device fixing keys are installed next to each locking plate. A locking door is located next to each fixing key. The metering device is nested with a stirring device, and a scraping device is installed next to the metering device. The metering device has a plurality of metering device fixing keys inside, and the scraping device has an outer wall inside. The stirring device has an outer wall inside, the metering locking plate cooperates with the locking door inside, and the inner side of the scraping device is locked with the outer side of the stirring device. A plurality of scraping devices are connected to the outer wall of the scraping device, and a discharge port is nested next to the outer wall of the scraping device. The tail end of the discharge port is connected to the front end of the scraping device, and the outer side of the outer wall of the scraping device is engaged with the inner side of the outer wall of the mixing device. The scraping device has an outer wall inside, a scraping device fixing ring is connected to the outer wall of the scraping device, a scraper is installed next to the scraping device fixing ring, and the outer side of the scraping device fixing ring is fixed to the inner side of the outer wall of the scraping device. The scraper has an outer wall inside, a scraper fixing key is connected to the outer wall, and a plurality of scraping keys are installed next to the scraper fixing key. The outer side of the scraper fixing key engages with the inner side of the outer wall of the scraper, and the inner side of the scraping key cooperates with the inner side of the outer wall of the scraper. An AI controller is connected to the outer wall of the mixing device, and a mixing device is nested on the outer wall of the mixing device. The interior of the mixing device cooperates with the interior of the AI controller. The stirring device has an outer wall inside, and a stirring device fixing key is nested on the outer wall. A stirrer is installed next to the stirring device fixing key. The upper end of the stirrer is connected to the lower end of the stirring device. The outer side of the stirring device fixing key is fixed to the inner side of the outer wall of the stirring device. The stirrer has an outer wall inside, and several stirrer springs are nested on the outer wall. A stirrer fixing key is installed next to the stirrer springs, and the outer side of the stirrer fixing key is engaged with the inner side of the outer wall of the stirring device.
2. The adaptive dosing system according to claim 1, characterized in that: The metering device fixing key is connected to the outer wall of the metering device, and the outer side of the metering device fixing key is embedded in the inner side of the outer wall of the stirring device.
3. The adaptive dosing system according to claim 1, characterized in that: The two sides of the metering device engage with the inner side of the outer wall of the metering device, and the outer side of the metering device fixing key is embedded in the inner side of the outer wall of the metering device.