Camellia low-temperature fresh extraction and purification preparation device
By designing a device that includes a constant temperature box, a chute, a stainless steel mesh plate, a guide rail, an electric slider, an electric shaft and a scraper, the problem of the existing devices lacking automatic removal of evaporated residues is solved, and the residue is automatically removed, reducing manual labor and improving production efficiency.
Patent Information
- Application Number
- CN202421850335.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-01
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-01
AI Technical Summary
The existing Camellia low-temperature fresh extraction and purification preparation device lacks components that automatically remove the residue after evaporation, resulting in an increase in labor intensity and a decrease in production efficiency.
A device including a constant temperature box, a chute, a stainless steel mesh plate, a guide rail, an electric slider, an electric shaft and a scraper are designed. The combination of the chute and a stainless steel mesh plate provides a position and a defined sliding range. The guide rail and an electric slider drive the scraper to move forward and backward on the stainless steel mesh plate, and the electric shaft drives the scraper to rotate, realizing the automatic removal of camellia residues.
It realizes automatic removal of camellia residues after the evaporation process, reducing manual labor intensity and improving production efficiency.
Smart Images

Figure CN222990097U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of plant essential oils, and specifically relates to a device for low-temperature fresh extraction, purification and preparation of camellia flowers. Background Art
[0002] Plant essential oils are extracted from the unique aromatic substances of plants, and are extracted from the flowers, leaves, roots, bark, fruits, seeds, resins, etc. of herbaceous plants by distillation and pressing methods. Due to the high volatility and small molecules of aromatherapy essential oils, they are easily absorbed by the human body and can quickly penetrate into the internal organs of the human body, discharging the excess components out of the body. The whole process only takes a few minutes. Moreover, the fragrance of the plant itself directly stimulates the secretion of the pituitary gland, the secretion of enzymes and hormones, etc., balancing the body functions and playing a role in beauty and skin care. Essential oils are highly concentrated extracts of aromatic plants. A device for low-temperature fresh extraction, purification and preparation of camellia flowers is a device applied to the purification of camellia flowers.
[0003] However, the existing device does not install a component for automatically removing the camellia residues after evaporation, and cannot automatically remove the evaporated camellia residues after the evaporation process ends, resulting in an increase in manual labor intensity and a reduction in production efficiency. Summary of the Utility Model
[0004] The purpose of this application is to provide a device for low-temperature fresh extraction, purification and preparation of camellia flowers to solve the problem that the above-mentioned device does not install a component for automatically removing the camellia residues after evaporation, and cannot automatically remove the evaporated camellia residues after the evaporation process ends, resulting in an increase in manual labor intensity and a reduction in production efficiency.
[0005] The technical solution adopted by this application is as follows: It includes a constant temperature box, multiple chutes are fixedly installed inside the constant temperature box, multiple stainless steel mesh plates are arranged on the same inner side surface of the chutes, multiple guide rails are opened inside the constant temperature box, electric sliders are fitted inside the guide rails, an electric rotating shaft is fixedly installed on the lower surface of the electric sliders, and a scraper is arranged between the same inner sides of the electric rotating shafts.
[0006] By adopting the above technical solution, a plurality of chutes are fixedly installed inside the thermostat. A plurality of stainless steel mesh plates are arranged on the same inner side surface of the chutes. A plurality of guide rails are provided inside the thermostat. Electric sliders are fitted inside the guide rails. An electric rotating shaft is fixedly installed on the lower surface of the electric slider. A scraper is arranged between the same inner sides of the electric rotating shafts. The inside of the thermostat is used to provide conditions for the evaporation of camellias, and the thermostat serves as the installation foundation of the constant temperature component. A cavity is opened at the rear thereof to provide space for the removal of camellia residues. By using the combination of the chute and the stainless steel mesh plate, the chute can provide a position for the stainless steel mesh plate to be arranged inside the thermostat, and the chute can make the stainless steel mesh plate slide within the range defined inside the chute, preventing it from moving backward after being installed in place. The upper surface of the stainless steel mesh plate is used to place the camellias that need to be purified by constant temperature evaporation. And through the mesh holes opened inside the stainless steel mesh plate, the steam generated after heating can float upward and concentrate. The guide rail provides a certain range of movement for the component that automatically removes the camellia residues. The electric slider drives the component on its lower surface to move back and forth on the upper surface of the stainless steel mesh plate, providing power for the movement of the scraping component on the upper surface of the stainless steel mesh plate. By using the combination of the electric rotating shaft and the scraper, when preparing to remove the camellia residues on the upper surface of the stainless steel mesh plate, the electric slider moves to the front end of the guide rail. Then, the electric rotating shaft drives the scraper to rotate to a position perpendicular to the stainless steel mesh plate. Then, the electric slider is used to move towards the inner side of the thermostat, and the camellia residues can be scraped to the rear by the scraper, thereby automatically removing the camellia residues on the upper surface of the stainless steel mesh plate, reducing the intensity of manual labor. By installing a component for automatically removing the camellia residues after evaporation in this device, the evaporated camellia residues can be automatically removed after the evaporation process ends, reducing the intensity of manual labor and improving production efficiency.
[0007] In a preferred embodiment, an electric heater is fixedly installed at the rear part of the upper surface of the thermostat, and an electric valve is fixedly installed on the lower surface inside the thermostat.
[0008] By adopting the above technical solution, an electric heater is fixedly installed at the rear part of the upper surface of the thermostat, and an electric valve is fixedly installed on the lower surface inside the thermostat. The electric heater can heat the inside of the thermostat, thereby providing a heat source for evaporating the camellias inside the thermostat. The electric valve prevents the hot air from being discharged to the equipment at the lower end of the thermostat. When cleaning the camellia residues, after the electric valve is opened, the camellia residues can be discharged to the equipment below by their own structure.
[0009] In a preferred embodiment, a collection box is fixedly installed on the lower surface of the thermostat, and a drawer is arranged inside the collection box.
[0010] By adopting the above technical solution, a collection box is fixedly installed on the lower surface of the incubator. A drawer is arranged inside the collection box, and the inside of the collection box provides an installation position for the drawer. In addition, a guiding plate is arranged inside the collection box, which can introduce the camellia residues into the inside of the drawer. The drawer can collect the camellia residues cleared by the scraping component, enabling them to be concentrated inside the drawer, which is convenient for the staff to clean up later.
[0011] In a preferred embodiment, a cabinet door of the incubator is hingedly installed on the front outer surface of the incubator, and a heat-insulating glass is provided on the outer surface of the cabinet door of the incubator.
[0012] By adopting the above technical solution, the cabinet door of the incubator is hingedly installed on the front outer surface of the incubator, and a heat-insulating glass is provided on the outer surface of the cabinet door. By opening the cabinet door of the incubator, the stainless steel mesh plate inside the incubator can be put in or taken out, so as to add new camellia slices to the upper surface of the stainless steel mesh plate. The heat-insulating glass can observe the evaporation situation of the camellia inside the incubator without opening the cabinet door of the incubator.
[0013] In a preferred embodiment, a base is fixedly installed on the lower surface of the collection box, and a support column is fixedly installed at the rear part of the upper surface of the base.
[0014] By adopting the above technical solution, the base is fixedly installed on the lower surface of the collection box, and the support column is fixedly installed at the rear part of the upper surface of the base. The base serves as the installation foundation of the whole device, which can bear and share the weight of the device itself, and the support column supports the components for purifying the steam of the camellia at low temperature.
[0015] In a preferred embodiment, a cooling box is fixedly installed on the upper surface of the support column, and a plurality of cold air pipes are provided on the outer surface of the cooling box.
[0016] By adopting the above technical solution, the cooling box is fixedly installed on the upper surface of the support column, and a plurality of cold air pipes are provided on the outer surface of the cooling box. By using the combination of the cooling box and the cold air pipes, the cooling box is used to maintain the purification components at a reduced temperature to prevent the destruction of the active ingredients by high temperature. Moreover, the low-temperature environment inside the cooling box can condense the steam entering the purification components into water, so as to obtain camellia essential oil with higher purity. The cold air pipes are respectively provided with an air inlet pipe and an air outlet pipe, which can be connected to an external refrigeration device to continuously supply cold air to the cooling box.
[0017] In a preferred embodiment, a purification barrel is fixedly installed inside the cooling box, and a drain valve is fixedly installed through the lower surface of the purification barrel and the cooling box.
[0018] By adopting the above technical solution, a purification barrel is fixedly installed inside the cooling box. A drain valve is fixedly installed through the lower surface of the purification barrel and penetrates the cooling box. The inside of the purification barrel is used to store the steam generated after the evaporation of camellia flowers. And affected by the low-temperature environment of the cooling box, the steam can be turned into water to achieve the purpose of purification. The other end of the drain valve can be connected to an external pipeline. By opening the drain valve, the condensed water droplets inside the purification barrel can be discharged from the inside of the purification barrel.
[0019] In a preferred embodiment, a concentrating cone is fixedly installed on the upper surface of the thermostat box, and a conveying pipe is fixedly installed between the purification barrel and the concentrating cone.
[0020] By adopting the above technical solution, a concentrating cone is fixedly installed on the upper surface of the thermostat box, and a conveying pipe is fixedly installed between the purification barrel and the concentrating cone. The concentrating cone can concentrate the steam generated inside the thermostat box, facilitating its entry into the inside of the conveying pipe. The other end of the conveying pipe is connected to the upper surface of the purification barrel. The conveying pipe conveys the steam generated inside the thermostat box into the purification barrel, thereby providing a steam source for the purification component.
[0021] In summary, due to the adoption of the above technical solution, the beneficial effects of this application are:
[0022] In this application, a combination of an electric rotating shaft and a scraper is adopted. When preparing to remove the camellia flower residue on the upper surface of the stainless steel mesh plate, the electric slider moves to the front end of the guide rail. Then, the electric rotating shaft drives the scraper to rotate to a position perpendicular to the stainless steel mesh plate. Then, the electric slider is used to move in the inner direction of the thermostat box, and the camellia flower residue can be scraped backward by the scraper, thereby automatically removing the camellia flower residue on the upper surface of the stainless steel mesh plate, reducing the intensity of manual labor. By installing a component for automatically removing the evaporated camellia flower residue in this device, the evaporated camellia flower residue can be automatically removed after the evaporation process ends, reducing the intensity of manual labor and improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a front three-dimensional structure schematic diagram of this application;
[0024] Figure 2 It is a rear three-dimensional structure schematic diagram of this application;
[0025] Figure 3 It is a schematic diagram of the internal sectional structure of the thermostat component of this application;
[0026] Figure 4 It is a schematic diagram of the internal three-dimensional structure of the thermostat component of this application.
[0027] Markings in the figure: 1. Incubator; 2. Slide groove; 3. Stainless steel mesh plate; 4. Guide rail; 5. Electric slider; 6. Electric rotating shaft; 7. Scraper; 8. Electric heater; 9. Electric valve; 10. Collection box; 11. Drawer; 12. Incubator cabinet door; 13. Heat-insulating glass; 14. Base; 15. Support column; 16. Cooling box; 17. Cold air pipeline; 18. Purification barrel; 19. Drain valve; 20. Concentrating cone; 21. Delivery pipe. Detailed implementation mode
[0028] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0029] Embodiment:
[0030] Referring to Figures 1 - 4 , including an incubator 1, the interior of the incubator 1 is used to provide conditions for the evaporation of camellias, and the incubator 1 serves as the installation basis for the constant temperature component. A cavity is opened at the rear thereof to provide space for the removal of camellia residues. The combination of the slide groove 2 and the stainless steel mesh plate 3 is adopted. The slide groove 2 can provide a position for the stainless steel mesh plate 3 to be arranged inside the incubator 1, and the slide groove 2 can enable the stainless steel mesh plate 3 to slide within the range defined inside the slide groove 2, preventing it from moving backward after the stainless steel mesh plate 3 is installed in place. The upper surface of the stainless steel mesh plate 3 is used to place the camellias that need to be purified by constant temperature evaporation. Through the mesh holes opened inside the stainless steel mesh plate 3, the steam generated after heating can float upward and concentrate. The guide rail 4 provides a certain range of movement for the component that automatically removes the camellia residues. The electric slider 5 drives the component on its lower surface to move back and forth on the upper surface of the stainless steel mesh plate 3, providing power for the movement of the scraping component on the upper surface of the stainless steel mesh plate 3. The combination of the electric rotating shaft 6 and the scraper 7 is adopted. When preparing to remove the camellia residues on the upper surface of the stainless steel mesh plate 3, the electric slider 5 moves to the front end of the guide rail 4. Then, the electric rotating shaft 6 drives the scraper 7 to rotate to a position perpendicular to the stainless steel mesh plate 3. Then, the electric slider 5 is used to move towards the inner side of the incubator 1, and the camellia residues can be scraped backward through the scraper 7, thus automatically removing the camellia residues on the upper surface of the stainless steel mesh plate 3, reducing the intensity of manual labor. By installing a component for automatically removing the camellia residues after evaporation in this device, the evaporated camellia residues can be automatically removed after the evaporation process ends, reducing the intensity of manual labor and improving production efficiency.
[0031] Referring to Figure 1 AndFigure 3 , the electric heater 8 can heat the interior of the incubator 1, thereby providing a heat source for evaporating the camellias inside the incubator 1. The electric valve 9 prevents hot air from being discharged to the equipment at the lower end of the incubator 1. When cleaning the camellia residue, after the electric valve 9 is opened, the camellia residue can be discharged to the equipment below by its own structure.
[0032] Refer to Figures 1 - 3 , the interior of the collection box 10 provides an installation position for the drawer 11. In addition, a guiding plate is provided inside the collection box 10, which can introduce the camellia residue into the interior of the drawer 11. The drawer 11 can collect the camellia residue removed by the scraping component, making it concentrate inside the drawer 11, which is convenient for the staff to clean up later.
[0033] Refer to Figure 1 , opening the incubator cabinet door 12 allows the stainless steel mesh plate 3 inside the incubator 1 to be put in or taken out, so as to add new camellia slices to the upper surface of the stainless steel mesh plate 3. The heat-insulating glass 13 can observe the evaporation of the camellias inside the incubator 1 without opening the incubator cabinet door 12.
[0034] Refer to Figure 1 And Figure 2 , the base 14 serves as the installation foundation of the entire device and can bear and share the weight of the device itself. The support column 15 supports the components for purifying the steam of the camellias at low temperature.
[0035] Refer to Figure 2 , a combination of a cooling box 16 and a cold air pipeline 17 is adopted. The cooling box 16 is used to maintain the purification components at a reduced temperature to prevent the destruction of the active ingredients by high temperature. Moreover, the low-temperature environment inside the cooling box 16 can cause the steam entering the purification components to condense into water, thereby obtaining camellia essential oil with a higher purity. The cold air pipeline 17 is respectively provided with an intake pipe and an outlet pipe, which can be connected to an external refrigeration device to continuously supply cold air to the cooling box 16.
[0036] Refer to Figure 1 And Figure 2 , the interior of 18 is used to store the steam generated after the evaporation of the camellias. And affected by the low-temperature environment of the cooling box 16, the steam can turn into water to achieve the purification purpose. The other end of the drain valve 19 can be connected to an external pipeline. Opening the drain valve 19 can discharge the condensed water droplets inside the purification barrel 18 from the interior of the purification barrel 18.
[0037] Refer to Figures 1 - 3, the concentrating cone 20 can concentrate the steam generated inside the incubator 1, facilitating its entry into the interior of the conveying pipe 21. The other end of the conveying pipe 21 is connected to the upper surface of the purification barrel 18. The conveying pipe 21 conveys the steam generated inside the incubator 1 into the interior of the purification barrel 18, thereby providing a steam source for the purification assembly.
[0038] The implementation principle of an embodiment of the camellia low-temperature fresh extraction and purification preparation device of the present application is as follows: The interior of the incubator 1 is used to provide conditions for the evaporation of camellia, and the incubator 1 serves as the installation basis for the temperature control assembly. A cavity is provided at its rear to provide space for the removal of camellia residues. The combination of the chute 2 and the stainless steel mesh plate 3 is adopted. The chute 2 can provide a position for the stainless steel mesh plate 3 to be arranged inside the incubator 1, and the chute 2 can enable the stainless steel mesh plate 3 to slide within the range defined inside the chute 2, preventing it from moving backward after the stainless steel mesh plate 3 is installed in place. The upper surface of the stainless steel mesh plate 3 is used to place the camellia that needs to be purified by constant-temperature evaporation. Through the mesh holes provided inside the stainless steel mesh plate 3, the steam generated after heating can float upward and concentrate. The guide rail 4 provides a certain range of movement for the assembly that automatically removes the camellia residues. The electric slider 5 drives the assembly on its lower surface to move back and forth on the upper surface of the stainless steel mesh plate 3, providing power for the movement of the scraping assembly on the upper surface of the stainless steel mesh plate 3. The combination of the electric rotating shaft 6 and the scraping plate 7 is adopted. When preparing to remove the camellia residues on the upper surface of the stainless steel mesh plate 3, the electric slider 5 moves to the front end of the guide rail 4. Then, the electric rotating shaft 6 drives the scraping plate 7 to rotate to a position perpendicular to the stainless steel mesh plate 3. Then, by moving the electric slider 5 towards the inner side of the incubator 1, the camellia residues can be scraped backward through the scraping plate 7, thereby automatically removing the camellia residues on the upper surface of the stainless steel mesh plate 3 and reducing the intensity of manual labor.
[0039] The interior of the collection box 10 provides an installation position for the drawer 11. In addition, a guiding plate is provided inside the collection box 10, which can introduce the camellia residues into the interior of the drawer 11. The drawer 11 can collect the camellia residues removed by the scraping assembly, enabling them to concentrate inside the drawer 11, which is convenient for later cleaning by the staff.
[0040] By installing a component for automatically removing the camellia residues after evaporation in this device, the evaporated camellia residues can be automatically removed after the evaporation process ends, reducing the intensity of manual labor and improving production efficiency.
[0041] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit it; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A low-temperature fresh extraction and purification device for camellia, comprising a constant temperature box (1), characterized in that: A plurality of slide grooves (2) are fixedly installed inside the thermostatic box (1), and a plurality of stainless steel mesh plates (3) are arranged on the same inner surface of the slide grooves (2). A plurality of guide rails (4) are opened inside the thermostatic box (1), and an electric slider (5) is fitted inside the guide rail (4). An electric rotating shaft (6) is fixedly installed on the lower surface of the electric slider (5), and a scraper (7) is arranged between the same inner sides of the electric rotating shaft (6).
2. The low-temperature fresh extraction and purification preparation device of camellia according to claim 1, characterized in that: An electric heater (8) is fixedly mounted on the rear portion of the upper surface of the thermostatic box (1), and an electric valve (9) is fixedly mounted on the inner lower surface of the thermostatic box (1).
3. The low-temperature fresh extraction and purification preparation device of camellia according to claim 1, characterized in that: A collection box (10) is fixedly mounted on the lower surface of the thermostatic box (1), and a drawer (11) is provided inside the collection box (10).
4. The low-temperature fresh extraction and purification preparation device of camellia according to claim 1, characterized in that: A thermostatic box door (12) is hingedly mounted on the front outer surface of the thermostatic box (1), and a heat-insulating glass (13) is provided on the outer surface of the thermostatic box door (12).
5. The low-temperature fresh extraction and purification preparation device of camellia according to claim 3, characterized in that: A base (14) is fixedly mounted on the lower surface of the collection box (10), and a support column (15) is fixedly mounted on the rear portion of the upper surface of the base (14).
6. The low-temperature fresh extraction and purification preparation device of camellia according to claim 5, characterized in that: A cooling box (16) is fixedly mounted on the upper surface of the support column (15), and a plurality of cold air pipes (17) are provided on the outer surface of the cooling box (16).
7. The low-temperature fresh extraction and purification preparation device of camellia according to claim 6, characterized in that: A purification barrel (18) is fixedly installed inside the cooling box (16), and a drainage valve (19) is fixedly installed on the lower surface of the purification barrel (18) penetrating through the cooling box (16).
8. The low-temperature fresh extraction and purification preparation device of camellia according to claim 7, characterized in that: A concentrating cone (20) is fixedly mounted on the upper surface of the thermostatic box (1), and a conveying pipe (21) is fixedly mounted between the purification barrel (18) and the concentrating cone (20).