Water dissolving processing device for menthol production

By using rotating components and spray nozzle technology in the menthol water dissolution processing device, the alcohol solution is evenly sprayed and processed through a filter, the alcohol control problem during the menthol water dissolution process is solved, ensuring the high quality and use effect of the menthol solution.

CN222900899UActive Publication Date: 2025-05-27NANTONG HEALTH&BEYOND HYGIENIC PROD INC
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Patent Information

Application Number
CN202421477820.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-05-27
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

During the water dissolution and processing of menthol, it is difficult to control the amount of alcohol, resulting in excessive alcohol content in menthol solution or incomplete dissolution of menthol, affecting the use effect.

Method used

A water dissolution processing device for menthol production is designed, using a combination of rotating components, rotating plates, main pipe lines, sub-pipe lines and spray nozzles. The alcohol solution is uniformly sprayed on the menthol in a mist-like rotating manner, and automatically slides down into the shell through a filter to ensure the uniformity and quality of the solution.

Benefits of technology

It effectively avoids the situation of excessive alcohol content in the mint solution or incomplete mint solution, ensures the effectiveness of the mint solution, and is designed to facilitate regular maintenance through a pull-out filter.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water dissolving and processing device for menthol production. The water dissolving and processing device comprises a fixed base, an alcohol box, a rotating plate, a funnel groove, a filter screen and a shell, an alcohol box, a rotating plate, a funnel groove and a shell are sequentially arranged in the fixed base from top to bottom; the lower end of the funnel groove is connected with the upper surface of the shell and is communicated with the shell; the upper end of the funnel groove is a large-diameter end, and the rotating plates are horizontally arranged close to the upper end in the funnel groove at intervals and horizontally rotate through the rotating assembly; a main pipeline is arranged on the lower surface of the rotating plate, a plurality of branch pipelines are uniformly distributed on the lower surface of the main pipeline in a matrix at intervals, and a spray nozzle is arranged at the lower end of each branch pipeline; a filter screen is arranged in the funnel groove relative to the lower part of the rotating plate, a liquid inlet channel is arranged between the center of the rotating plate and the alcohol box, and alcohol in the alcohol box is introduced into the main pipeline through the liquid inlet channel. According to the menthol spraying device, an alcoholic solution is uniformly sprayed on menthol in a vaporific rotary manner, so that the use effect of a mint solution is ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of menthol water solubility, and particularly relates to a water dissolution processing device for menthol production. Background Art

[0002] Menthol, also known as menthol alcohol, is an organic compound. Menthol is extracted from the leaves and stems of mint, and is a white crystal, which is the main component of mint and peppermint essential oils. Menthol can be used as a flavoring agent for toothpaste, perfume, beverages, candies, etc.; it is used as a stimulant in medicine, acting on the skin or mucous membrane, with a cooling and antipruritic effect; taken orally, it can be used as an antiemetic for headache and inflammation of the nose, pharynx, and larynx; its esters can also be used in perfumes and medicines. When dissolving menthol in water, first add a small amount of alcohol to dissolve the menthol, and then add water to dissolve it, so as to dissolve menthol in water. However, in the actual operation process, it is very difficult to control the specific amount of alcohol that can dissolve menthol, and it is easy to have the situation that the alcohol content in the final menthol solution is too high or the menthol is not completely dissolved, thus affecting the use effect of the menthol solution. Therefore, the above problems need to be solved urgently. Summary of the Invention

[0003] The technical problem to be solved by the utility model is to provide a water dissolution processing device for menthol production. By the combined use of a rotating component, a rotating plate, a main pipeline, a branch pipeline, and a spray nozzle, it is convenient to evenly spray the alcohol solution in a misty and rotating manner on the menthol. After the dissolved menthol is liquefied, it automatically slides down through the filter screen into the shell, thus avoiding the situation that the alcohol content in the final menthol solution is too high or the menthol solution is incomplete, and ensuring the use effect of the menthol solution.

[0004] To solve the above technical problems, the present utility model adopts the following technical solutions: A water dissolution processing device for producing menthol of the present utility model is characterized in that it includes a fixed base, an alcohol tank, a rotating plate, a main pipeline, a sub-pipeline, a funnel groove, a filter screen, a housing and a mixing component; the fixed base is a vertically arranged cuboid frame structure, and an alcohol tank, a rotating plate, a funnel groove and a housing are sequentially and fixedly arranged from top to bottom at the middle position inside it; the lower end of the funnel groove is a small-diameter end, and is fixedly connected to the center position of the upper surface of the housing and the two are in communication with each other; the upper end of the funnel groove is a large-diameter end, and the rotating plate is horizontally and spacedly arranged inside the funnel groove near its upper end, and a rotating component is also provided between its upper surface and the lower surface of the alcohol tank, and then the rotating plate is driven to rotate horizontally by the rotating component; a main pipeline is horizontally and fixedly attached to the lower surface of the rotating plate, and a plurality of sub-pipelines are vertically and communicatively arranged at equal intervals in a matrix on the lower surface of the main pipeline, and a spray nozzle is provided at the lower end of each sub-pipeline; a filter screen matching the rotating plate is horizontally and slidably arranged inside the funnel groove relative to the lower part of the rotating plate, and a mixing component is also provided inside the housing; an inlet channel is also provided between the center of the rotating plate and the alcohol tank, and the alcohol in the alcohol tank is introduced into the main pipeline through the inlet channel without interfering with the horizontal rotation of the rotating plate.

[0005] Preferably, a liquid inlet pipe is vertically provided at the middle position of the upper surface of the alcohol tank, the lower end of the liquid inlet pipe is communicated with the inside of the alcohol tank, and a first solenoid valve for controlling its on-off is also provided at its upper end, and then the alcohol tank is replenished with alcohol through the liquid inlet pipe.

[0006] Preferably, the funnel groove does not interfere with the horizontal rotation of the rotating plate, and the rotating component includes a box body, a rotating shaft, a first motor, a main bevel gear and a driven bevel gear; a box body is horizontally and fixedly provided on the lower surface of the alcohol tank, the box body is a hollow cuboid structure with an open lower surface and is arranged at an interval up and down with the rotating plate; a rotating shaft is vertically provided at the middle position inside the box body, the upper end of the rotating shaft is rotationally connected to the inner top surface of the box body through a bearing, and its lower end vertically extends out of the lower surface of the box body and is fixedly connected to the upper surface of the rotating plate coaxially; a driven bevel gear is coaxially sleeved and fixed on the rotating shaft relative to the inside of the box body, and the box body does not interfere with the rotation of the driven bevel gear along with the rotating shaft; a first motor is horizontally and spacedly arranged inside the box body relative to one side of the driven bevel gear, the fixed end of the first motor is screwed and fixed to the corresponding inner side surface of the box body, and its output end is arranged towards the driven bevel gear and is meshed with the driven bevel gear through the main bevel gear, and then under the drive of the first motor, through the meshing and cooperation of the main bevel gear and the driven bevel gear, the rotating plate rotates horizontally around its own axis along with the rotating shaft.

[0007] Preferably, reinforcing plates are vertically provided between the upper positions of the outer sides of the box body and the lower surface of the alcohol tank, and the box body is reinforced and fixed by the reinforcing plates.

[0008] Preferably, the liquid inlet channel is coaxially embedded in the rotating shaft, and its upper end extends vertically upward and is sealed and connected with the interior of the alcohol tank; the lower end of the liquid inlet channel extends vertically downward to the lower surface of the rotating plate, and is sealed and connected with the main pipeline, and then the alcohol in the alcohol tank is passed into the main pipeline through the liquid inlet channel, and the rotation of the rotating plate is not affected, and the alcohol solution is evenly sprayed on the menthol on the filter in a mist-like rotating manner as the rotating plate rotates.

[0009] Preferably, the filter is horizontally arranged in the vertical section of the funnel trough, and its filter holes need to ensure that the menthol to be processed in water cannot pass through the filter; the left end of the filter is in tight contact with the corresponding position of the left inner wall of the funnel trough, and the right end thereof extends horizontally and vertically out of the corresponding position of the right outer wall of the funnel trough, and limit plates are also horizontally and symmetrically provided on the upper and lower sides of the part of the filter that exceeds the funnel trough, each of the limit plates is a rectangular structure, and its left end face is fixedly connected to the corresponding position of the right outer wall of the funnel trough respectively; a pin is also vertically provided in the middle position of the upper surface of the upper limit plate, and the lower end of the pin vertically downwardly penetrates the upper limit plate, the filter and the lower limit plate in turn, and limits the horizontal horizontal sliding of the filter, and it needs to ensure that the fixed base has no influence on the horizontal horizontal pulling action of the filter.

[0010] Preferably, the lower surface of the shell is arranged at the same horizontal plane as the bottom end of the fixed base and is fixedly supported on the ground; the mixing assembly includes a second motor, a coupling, a stirring shaft and a stirring rod; a second motor is also horizontally and transversely arranged in the middle position of the left outer side surface of the shell, the output end of the second motor extends horizontally and vertically to the interior of the shell, and is coaxially linked to the left end of the stirring shaft through a coupling, the stirring shaft is horizontally and transversely arranged inside the shell, and its right end is rotatably connected to the corresponding position of the right inner side surface of the shell; a plurality of stirring layers are vertically arranged at intervals from left to right on the outer circumferential surface of the stirring shaft, and a plurality of stirring rods are evenly and spaced and obliquely arranged in each stirring layer along its circumferential direction, each of the stirring rods is obliquely and parallelly arranged, and one end thereof is respectively fixedly connected to the stirring shaft, and the other end thereof is respectively extended outwardly in a direction away from the stirring shaft, and is respectively arranged without interfering with the shell, and then driven by the second motor, the stirring rod rotates with the stirring shaft.

[0011] Preferably, the dissolved menthol is liquefied and then automatically slides down to the lower end of the funnel trough through the filter screen and then flows into the interior of the housing; on the left outer side of the housing, a liquid adding pipe is also inclined and embedded and communicated above the second motor. The lower end of the liquid adding pipe extends obliquely downward into the housing and does not interfere with the mixing action of the stirring rod. Then, water is added into the housing through the liquid adding pipe, and the dissolved menthol and water are stirred and mixed by the mixing assembly to form a menthol solution; on the right outer side of the housing near its bottom end, a drain pipe is also horizontally and vertically communicated, and a second solenoid valve for controlling its on-off is also provided on the drain pipe; on the inner bottom surface of the housing, a deflector plate matching with the mixing assembly is also inclined, and the inclination angle of the deflector plate is 3°-5°; the lower end of the deflector plate is hermetically abutted against the left lower port of the drain pipe, and its upper end extends obliquely upward away from the drain pipe and abuts against and fits with the left inner side surface of the housing, so as to guide and collect the menthol solution to the drain pipe and ensure that the deflector plate does not interfere with the mixing action of the mixing assembly.

[0012] Advantages of the present utility model:

[0013] (1) By the cooperative use of the rotating assembly, the rotating plate, the main pipeline, the branch pipelines and the spray nozzles, the present utility model facilitates the atomized and rotary uniform spraying of the alcohol solution on the menthol. The dissolved menthol is liquefied and automatically slides down into the housing through the filter screen, thus avoiding the situation that the alcohol content in the final menthol solution is too high or the menthol solution is incomplete, and ensuring the use effect of the menthol solution;

[0014] (2) The filter screen of the present utility model adopts a pull-out design, which facilitates the regular maintenance and replacement of the filter screen. Description of the drawings

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the drawings required to be used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present utility model. For those of ordinary skill in the art, other drawings can be obtained according to these drawings without creative efforts.

[0016] Figure 1 It is a schematic structural diagram of a water dissolution processing device for producing menthol of the present utility model.

[0017] Figure 2 It is an enlarged schematic diagram of the rotating assembly part of the present utility model.

[0018] Among them, 1 - fixed base; 2 - alcohol tank; 3 - liquid inlet pipe; 4 - first solenoid valve; 5 - box body; 6 - reinforcing plate; 7 - rotating shaft; 8 - first motor; 9 - main bevel gear; 10 - driven bevel gear; 11 - liquid inlet channel; 12 - rotating plate; 13 - main pipeline; 14 - branch pipeline; 15 - funnel groove; 16 - filter screen; 17 - limiting plate; 18 - pin shaft; 19 - housing; 20 - liquid adding pipe; 21 - second motor; 22 - stirring shaft; 23 - stirring rod; 24 - guide plate; 25 - liquid discharge pipe; 26 - second solenoid valve. Detailed implementation manner

[0019] The technical solutions of the present utility model will be clearly and completely described below through specific implementation manners.

[0020] A device for dissolving and processing peppermint oil production water of the present utility model includes a fixed base 1, an alcohol tank 2, a rotating plate 12, a main pipeline 13, a branch pipeline 14, a funnel groove 15, a filter screen 16, a housing 19 and a mixing assembly; the specific structure is as Figure 1 , Figure 2 shown. The fixed base 1 is a vertically arranged cuboid frame structure, and an alcohol tank 2, a rotating plate 12, a funnel groove 15 and a housing 19 are sequentially and fixedly arranged from top to bottom at the middle position inside it; the lower end of the funnel groove 15 is a small-diameter end, and is fixedly connected to the center position of the upper surface of the housing 19 and the two are communicated with each other; the upper end of the funnel groove 15 is a large-diameter end, and the rotating plate 12 is horizontally and spacedly arranged inside the funnel groove 15 near its upper end, and a rotating assembly is also arranged between its upper surface and the lower surface of the alcohol tank 2, and then the rotating plate 12 is driven to rotate horizontally by the rotating assembly.

[0021] As Figure 1 shown, a liquid inlet pipe 3 is also vertically arranged at the middle position of the upper surface of the alcohol tank 2. The lower end of the liquid inlet pipe 3 is communicated with the inside of the alcohol tank 2, and a first solenoid valve 4 for controlling its on-off is also arranged at its upper end, and then the alcohol tank 2 is replenished with alcohol through the liquid inlet pipe 3.

[0022] The funnel groove 15 of the present utility model does not interfere with the horizontal rotation of the rotating plate 12, and the rotating assembly includes a box body 5, a rotating shaft 7, a first motor 8, a main bevel gear 9 and a driven bevel gear 10; as Figure 1 , Figure 2As shown, a box body 5 is horizontally and fixedly arranged on the lower surface of the alcohol box 2. The box body 5 is a hollow cuboid structure with an open lower surface, and is arranged at an upper and lower interval with the rotating plate 12; at a position slightly above the outer side surfaces of the four sides of the box body 5 and the lower surface of the alcohol box 2, reinforcing plates 6 are respectively vertically arranged, and the box body 5 is strengthened and fixed through the reinforcing plates 6; a rotating shaft 7 is vertically arranged at the middle position inside the box body 5. The upper end of the rotating shaft 7 is rotationally connected to the inner top surface of the box body 5 through a bearing, and its lower end vertically extends downward out of the lower surface of the box body 5 and is coaxially fixedly connected to the upper surface of the rotating plate 12; a driven bevel gear 10 is coaxially sleeved and fixedly arranged on the rotating shaft 7 relative to the inside of the box body 5, and the box body 5 does not interfere with the rotation of the driven bevel gear 10 along with the rotating shaft 7; a first motor 8 is horizontally arranged at an interval relative to one side of the driven bevel gear 10 inside the box body 5. The fixed end of the first motor 8 is screwed and fixed to the corresponding inner side surface of the box body 5, and its output end is arranged towards the driven bevel gear 10 and is meshed and connected to the driven bevel gear 10 through a main bevel gear 9. Driven by the first motor 8 of the present utility model, through the meshing and cooperation of the main bevel gear 9 and the driven bevel gear 10, the rotating plate 12 rotates horizontally around its own axis along with the rotating shaft 7.

[0023] On the lower surface of the rotating plate 12 of the present utility model, a main pipeline 13 is horizontally and fixedly attached, and several branch pipelines 14 are vertically and uniformly arranged at intervals in a matrix on the lower surface of the main pipeline 13, and a spray nozzle is arranged at the lower end of each branch pipeline; as Figure 1 、 Figure 2 shown, a filter screen 16 matching with it is horizontally and transversely slidably arranged inside the funnel groove 15 relative to the lower part of the rotating plate 12, and a mixing assembly is arranged inside the housing 19; a liquid inlet channel 11 is arranged between the center of the rotating plate 12 and the alcohol box 2. The liquid inlet channel 11 is coaxially embedded and opened in the rotating shaft 7, and its upper end vertically extends upward and is hermetically communicated with the inside of the alcohol box 2; the lower end of the liquid inlet channel 11 vertically extends downward to the lower surface of the rotating plate 12 and is hermetically communicated with the main pipeline 13. Thus, the alcohol in the alcohol box 2 is introduced into the main pipeline 13 through the liquid inlet channel 11, and does not affect the horizontal rotation of the rotating plate 12, and the alcohol solution is evenly sprayed on the menthol on the filter screen 16 in a swirling manner along with the rotation of the rotating plate 12.

[0024] As Figure 1 、 Figure 2As shown, the filter screen 16 is horizontally arranged in the vertical section of the funnel groove 15, and its filter holes need to ensure that the menthol to be processed in water cannot pass through the filter screen 16; the left end of the filter screen 16 is in close contact with the corresponding position of the left inner wall of the funnel groove 15, and its right end horizontally and vertically extends out of the corresponding position of the right outer wall of the funnel groove 15, and limit plates 17 are also horizontally and symmetrically arranged on the upper and lower sides of the part of the filter screen 16 that exceeds the funnel groove 15. Each limit plate 17 is a rectangular structure, and its left end face is fixedly connected to the corresponding position of the right outer wall of the funnel groove 15 respectively; a pin shaft 18 is also vertically arranged in the middle position of the upper surface of the upper limit plate 17, and the lower end of the pin shaft 18 vertically downward passes through the upper limit plate 17, the filter screen 16 and the lower limit plate 17 in sequence, and limits the horizontal horizontal sliding of the filter screen 16, and it is necessary to ensure that the fixed base 1 has no effect on the horizontal horizontal pulling action of the filter screen 16.

[0025] The lower surface of the housing 19 of the utility model is arranged at the same level as the bottom end of the fixed base 1 and is fixedly supported on the ground; the mixing assembly includes a second motor 21, a coupling, a stirring shaft 22 and a stirring rod 23; Figure 1 As shown, a second motor 21 is horizontally and transversely arranged in the middle position of the left outer side surface of the shell 19, and the output end of the second motor 21 extends horizontally and vertically to the interior of the shell 19, and is coaxially linked with the left end of the stirring shaft 22 through a coupling. The stirring shaft 22 is horizontally and transversely arranged inside the shell 19, and its right end is rotatably connected to the corresponding position of the right inner side surface of the shell 19; on the outer circumferential surface of the stirring shaft 22, several stirring layers are vertically and spaced in sequence from left to right, and in each stirring layer, several stirring rods 23 are evenly and spaced and tilted along the circumferential direction, each stirring rod 23 is tilted and parallel, and one end thereof is fixedly connected to the stirring shaft 22, and the other end thereof is tilted and extended outward in a direction away from the stirring shaft 22, and is respectively arranged without interfering with the shell 19, and then driven by the second motor 21, the stirring rod 23 rotates with the stirring shaft 22.

[0026] The dissolved menthol of the utility model is liquefied and automatically slides down to the lower end of the funnel groove 15 through the filter screen 16, and then flows into the interior of the housing 19; Figure 1As shown in the figure, a liquid adding pipe 20 is also inclined and embedded in communication with the upper part of the second motor 21 on the left outer side of the housing 19. The lower end of the liquid adding pipe 20 extends obliquely downward into the housing 19 without interfering with the mixing action of the stirring rod 23. Then, water is added into the housing 19 through the liquid adding pipe 20, and the dissolved menthol and water are stirred and mixed by the mixing assembly to form a menthol solution. On the right outer side of the housing 19 near its bottom end, a drain pipe 25 is also horizontally and vertically communicated, and a second solenoid valve 26 for controlling its on-off is also provided on the drain pipe 25. On the inner bottom surface of the housing 19 below the mixing assembly, a guide plate 24 matching it is also inclined, and the inclination angle of the guide plate 24 is 3° - 5°. The lower end of the guide plate 24 is tightly sealed against the left lower port of the drain pipe 25, and its upper end extends obliquely upward away from the drain pipe 25 and is tightly attached to the left inner side of the housing 19, so as to guide and collect the menthol solution to the drain pipe 25 and ensure that the guide plate 24 does not interfere with the mixing action of the mixing assembly.

[0027] The working principle of the present utility model: First, the menthol to be processed by water dissolution is evenly distributed on the filter screen 16. Then, the alcohol in the alcohol tank 2 enters the main pipeline 13 through the liquid inlet channel 11. Under the drive of the rotating assembly, as the rotating plate 12 rotates, the spray nozzle sprays the alcohol in a misty and rotating manner evenly on the menthol. The dissolved menthol liquefies and automatically slides down through the filter screen 16 into the housing 19. Then, under the action of the mixing assembly, it is fully mixed with water to form a menthol solution, and the menthol solution is guided and collected to the drain pipe 25 through the guide plate 24.

[0028] The beneficial effects of the present utility model:

[0029] (1) Through the coordinated use of the rotating assembly, the rotating plate 12, the main pipeline 13, the branch pipeline 14, and the spray nozzle in the present utility model, it is convenient to spray the alcohol solution in a misty and rotating manner evenly on the menthol. The dissolved menthol liquefies and automatically slides down through the filter screen 16 into the housing 19, thus avoiding the situation that the alcohol content in the final menthol solution is too high or the menthol solution is incomplete, and ensuring the use effect of the menthol solution.

[0030] (2) The filter screen 16 of the present utility model adopts a pull-out design, which is convenient for regularly maintaining and replacing the filter screen 16.

[0031] The above-described embodiments are only described as the preferred embodiments of the present utility model, and do not limit the concept and scope of the present utility model. Without departing from the design concept of the present utility model, various modifications and improvements made by ordinary engineering and technical personnel in the field to the technical solution of the present utility model should fall within the protection scope of the present utility model. The technical content for which the present utility model requests protection has been fully recorded in the technical requirements.

Claims

1. A menthol production water dissolution processing device, characterized in that: It includes a fixed base, an alcohol tank, a rotating plate, a main pipeline, a branch pipeline, a funnel trough, a filter screen, a shell and a mixing component; the fixed base is a vertically arranged rectangular parallelepiped frame structure, and the alcohol tank, the rotating plate, the funnel trough and the shell are fixedly arranged in sequence from top to bottom at the middle position inside the fixed base; the lower end of the funnel trough is a small-diameter end, and is fixedly connected to the center position of the upper surface of the shell, and the two are connected to each other; the upper end of the funnel trough is a large-diameter end, and the rotating plate is horizontally spaced inside the funnel trough near its upper end, and a rotating component is also provided between its upper surface and the lower surface of the alcohol tank, so as to pass The rotating plate is driven to rotate horizontally through a rotating assembly; a main pipeline is horizontally fitted and fixed on the lower surface of the rotating plate, and a number of branch pipelines are evenly spaced and vertically connected in a matrix on the lower surface of the main pipeline, and a spray nozzle is provided at the lower end of each branch pipeline; a filter screen matching it is horizontally slidably provided inside the funnel groove relative to the bottom of the rotating plate, and a mixing assembly is provided inside the shell; a liquid inlet channel is provided between the center of the rotating plate and the alcohol tank, and the liquid inlet channel passes the alcohol in the alcohol tank into the main pipeline without interfering with the horizontal rotation of the rotating plate.

2. A menthol production water dissolution processing device according to claim 1, characterized in that: A liquid inlet pipe is vertically provided in the middle position of the upper surface of the alcohol tank, the lower end of the liquid inlet pipe is connected to the interior of the alcohol tank, and a first solenoid valve for controlling its on and off is provided at the upper end, so that alcohol is replenished in the alcohol tank through the liquid inlet pipe.

3. A menthol production water dissolution processing device according to claim 1, characterized in that: The funnel groove does not interfere with the horizontal rotation of the rotating plate, and the rotating assembly includes a box body, a rotating shaft, a first motor, a main bevel gear and a slave bevel gear; a box body is also horizontally fixed on the lower surface of the alcohol tank, and the box body is a hollow rectangular structure with an open lower surface, and is spaced apart from the rotating plate above and below; a rotating shaft is also vertically provided at the middle position inside the box body, and the upper end of the rotating shaft is rotatably connected to the inner top surface of the box body through a bearing, and the lower end thereof extends vertically downward out of the lower surface of the box body, and is fixedly connected coaxially with the upper surface of the rotating plate. The gear is connected to the gear of the transmission gear of the present invention; a slave bevel gear is fixedly provided on the rotating shaft in a coaxial sleeve relative to the inside of the casing, and the casing does not interfere with the rotation of the slave bevel gear with the rotating shaft; a first motor is horizontally spaced apart from one side of the slave bevel gear inside the casing, and the fixed end of the first motor is screwed and fixed to the corresponding inner side surface of the casing, and the output end thereof is arranged toward the direction of the slave bevel gear, and is meshed and connected with the slave bevel gear through the main bevel gear, and then, driven by the first motor, the rotating plate rotates horizontally around its own axis with the rotating shaft through the meshing cooperation of the main bevel gear and the slave bevel gear.

4. A menthol production water dissolution processing device according to claim 3, characterized in that: Reinforcement plates are vertically provided between the upper positions of the outer sides of the box body and the lower surface of the alcohol tank, and the box body is reinforced and fixed by the reinforcement plates.

5. A menthol production water dissolution processing device according to claim 3, characterized in that: The liquid inlet channel is coaxially embedded in the rotating shaft, and its upper end extends vertically upward and is sealed and connected with the interior of the alcohol tank; the lower end of the liquid inlet channel extends vertically downward to the lower surface of the rotating plate, and is sealed and connected with the main pipeline, and then the alcohol in the alcohol tank is passed into the main pipeline through the liquid inlet channel, and the rotation of the rotating plate is not affected, and the alcohol solution is evenly sprayed on the menthol on the filter in a mist-like rotating manner as the rotating plate rotates.

6. A menthol production water dissolution processing device according to claim 1, characterized in that: The filter is horizontally arranged in the vertical section of the funnel trough, and its filter holes need to ensure that the menthol to be processed in water cannot pass through the filter; the left end of the filter is in tight contact with the corresponding position of the left inner wall of the funnel trough, and the right end thereof extends horizontally and vertically out of the corresponding position of the right outer wall of the funnel trough, and limit plates are also horizontally and symmetrically arranged on the upper and lower sides of the part of the filter that exceeds the funnel trough, each of the limit plates is a rectangular structure, and its left end face is fixedly connected to the corresponding position of the right outer wall of the funnel trough respectively; a pin is also vertically arranged in the middle position of the upper surface of the upper limit plate, and the lower end of the pin vertically downwardly penetrates the upper limit plate, the filter and the lower limit plate in turn, and limits the horizontal horizontal sliding of the filter, and it needs to ensure that the fixed base has no influence on the horizontal horizontal pulling action of the filter.

7. A menthol production water dissolution processing device according to claim 1, characterized in that: The lower surface of the shell is arranged at the same level as the bottom end of the fixed base and is fixedly supported on the ground; the mixing assembly includes a second motor, a coupling, a stirring shaft and a stirring rod; a second motor is also horizontally and transversely arranged in the middle position of the left outer side surface of the shell, the output end of the second motor extends horizontally and vertically to the interior of the shell, and is coaxially linked with the left end of the stirring shaft through a coupling, the stirring shaft is horizontally and transversely arranged inside the shell, and its right end is rotatably connected to the corresponding position of the right inner side surface of the shell; a plurality of stirring layers are vertically arranged in sequence from left to right on the outer circumferential surface of the stirring shaft, and a plurality of stirring rods are evenly spaced and inclined along the circumferential direction in each stirring layer, each of the stirring rods is inclined and parallel, and one end thereof is respectively fixedly connected to the stirring shaft, and the other end thereof is respectively inclined and extends outward in a direction away from the stirring shaft, and is respectively arranged without interfering with the shell, and then driven by the second motor, the stirring rod rotates with the stirring shaft.

8. A menthol production water dissolution processing device according to claim 7, characterized in that: After the dissolved menthol is liquefied, it automatically slides down to the lower end of the funnel groove through the filter screen and then flows into the shell. A liquid adding pipe is obliquely embedded and connected on the left outer side surface of the shell relative to the upper part of the second motor. The lower end of the liquid adding pipe extends obliquely downward into the shell and does not interfere with the mixing action of the stirring rod. Water is then added to the shell through the liquid adding pipe, and the dissolved menthol and water are stirred and mixed by the mixing component to form a mint solution. A liquid discharge pipe is also horizontally and vertically connected on the right outer side surface of the shell near its bottom end, and at The drain pipe is also provided with a second solenoid valve for controlling its on and off; a guide plate matching it is also inclinedly provided on the inner bottom surface of the shell relative to the bottom of the mixing assembly, and the inclination angle of the guide plate is 3°~5°; the lower end of the guide plate is sealed and pressed against the lower port at the left end of the drain pipe, and the upper end thereof is inclined and extends upward in a direction away from the drain pipe, and is pressed against the left inner side surface of the shell, thereby guiding the mint solution to be collected at the drain pipe, and ensuring that the guide plate does not interfere with the mixing action of the mixing assembly.