A skin care bacteriostatic emulsion processing device

By designing a skin care antibacterial emulsion processing device that includes pretreatment and sterilization components, and utilizing components such as nano-silver filters, heating elements, and ultraviolet radiation elements, multiple sterilization and cleaning processes are achieved, solving the problems of low product quality and low production efficiency in existing technologies, and improving the hygiene conditions and efficiency of emulsion processing.

CN116510551BActive Publication Date: 2025-12-16JINGDE WANFANG DAILY NECESSITIES CO LTD
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Patent Information

Application Number
CN202310707809.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-15
Publication Date
2025-12-16
Estimated Expiration
2043-06-15

AI Technical Summary

Technical Problem

The existing antibacterial skin care lotion processing has problems with uncontrolled hygiene conditions, which makes it easy for microorganisms to grow, resulting in poor product quality and low production efficiency.

Method used

A skin care antibacterial emulsion processing device was designed, which includes a pretreatment component and a sterilization component. It utilizes a nano-silver filter, a heating element, an ultraviolet radiation element, and a water supply element to achieve a closed-loop process of multiple sterilization and cleaning processes. Combined with a stirring component, it ensures uniform mixing of raw materials and product quality.

Benefits of technology

It effectively improves the hygiene conditions and production efficiency of emulsion processing, ensures product quality, reduces the impact of external factors, and achieves efficient cleaning, disinfection, and formal operation processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a skin care bacteriostatic emulsion processing device, and belongs to the technical field of cosmetic production. The device comprises a container main body, an upper stirring assembly connected to the container main body, a pretreatment assembly, a filter, a control component, a nano-silver filter screen, a sterilization assembly, a heating component, a water supply component, and an ultraviolet radiation component. The heating component is used for heating the interior of the container main body and water in the water supply component, and the water supply component is in communication with the interior of the container main body. The pretreatment assembly and the sterilization assembly are provided to realize multiple sterilization processes and effectively ensure the sanitary conditions during emulsion processing.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of cosmetic production, and more particularly relates to a skin care and bacterium inhibiting emulsion processing device. BACKGROUND

[0002] With the continuous improvement of people's living standards, people's pursuit of beauty is also continuously improved, and most women hope to have beautiful appearance and tender, smooth and elastic skin. However, with the growth of age, the body's metabolism slows down, the human skin will deposit melanin, form spots in the skin keratin layer, and appear blackheads, and the decrease of the water content in the keratin layer leads to the loss of softness of the skin and the generation of wrinkles. External factors, such as ultraviolet rays, can damage the epidermal basement membrane and thus lead to low skin elasticity and wrinkle formation. Irregular life and endocrine disorders can also make the skin dry, dull and lusterless, and long pimple. Everyone has a love for beauty, and a good skin care and bacterium inhibiting emulsion product can play a role in skin care, moisturizing, water supplementing, bacterium inhibiting and the like, maintain the elasticity of the skin, and have a repairing effect on the skin.

[0003] However, the existing skin care and bacterium inhibiting emulsion processing process has the problems of difficult hygiene condition control, easy breeding of microorganisms, low product quality, and low production efficiency. SUMMARY

[0004] The purpose of the present application is to provide a skin care and bacterium inhibiting emulsion processing device, which aims to solve the technical problems of low product quality and low production efficiency in the prior art.

[0005] To achieve the above-mentioned purpose, the technical solution adopted by the present application is to provide a skin care and bacterium inhibiting emulsion processing device, comprising:

[0006] A container body is connected with a stirring assembly;

[0007] A pretreatment assembly comprises a shell connected with the container body, a filter arranged in the shell, and a control member for controlling whether the shell communicates with the container body; the filter comprises a nano-silver filter screen;

[0008] A sterilization assembly comprises a heating member connected with the inner wall of the container body, a water supply member connected with the container body, and an ultraviolet radiation member arranged in the container body; the heating member is used for heating the inside of the container body and the water in the water supply member; the water supply member communicates with the inside of the container body.

[0009] Preferably, the pretreatment assembly further comprises a material feeding member, which is used for feeding materials into the container body.

[0010] Preferably, the material feeding member comprises:

[0011] a pressing plate located in the storage box and matched with the shell;

[0012] an electric telescopic member connected with the shell, a movable end of the electric telescopic member being connected with the pressing plate; the electric telescopic member drives the pressing plate to move.

[0013] Preferably, the control member comprises:

[0014] a blanking baffle connected with the shell through a rotating shaft assembly;

[0015] an electric control structure connected with the rotating shaft assembly, for driving the blanking baffle to rotate by driving the rotating shaft assembly;

[0016] a weight monitoring structure arranged on the blanking baffle and electrically connected with the electric control structure.

[0017] Preferably, a partition plate is detachably connected in the shell.

[0018] Preferably, the container body comprises:

[0019] a container shell provided with a groove, the groove being in a cylindrical shape, and the inner wall surface of the shell being provided with the ultraviolet light emitting member;

[0020] a cover connected with the container shell, for sealing an open end of the groove, the cover being connected with the stirring assembly, the cover being movably connected with the container shell, and the cover being configured to reciprocate along the up-down direction of the groove.

[0021] Preferably, the stirring assembly comprises:

[0022] a stirring shaft having one end movably connected with the bottom of the container shell and the other end movably connected with the cover;

[0023] a fan blade connected with the stirring shaft, the fan blade being provided with a plurality of blades;

[0024] a driving member connected with the container shell and in transmission connection with the stirring shaft.

[0025] Preferably, the stirring shaft is movably connected with the cover through a transmission assembly, the transmission assembly being configured to drive the cover to reciprocate along the axial direction of the stirring shaft.

[0026] Preferably, the electric telescopic member is magnetically connected with the pressing plate.

[0027] Preferably, the application further comprises a collecting assembly detachably connected with the container body.

[0028] The beneficial effects of the skin-care antibacterial emulsion processing device provided by this invention are as follows: Compared with the prior art, the skin-care antibacterial emulsion processing device of this invention achieves multiple sterilization processes through the setting of pretreatment components and sterilization components, effectively ensuring hygienic conditions during emulsion processing. This device forms a closed-loop and cyclical process from cleaning and sterilization to raw material feeding, stirring, and product acquisition. The cleaning and disinfection process, as well as the formal operation process, minimizes the influence of external factors, not only effectively improving work efficiency but also maximizing the guarantee of hygienic conditions during emulsion processing, thereby improving product quality. Attached Figure Description

[0029] To more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0030] Figure 1 A schematic diagram of a skin care antibacterial emulsion processing device provided in an embodiment of the present invention. Figure 1 ;

[0031] Figure 2 A schematic diagram of a skin care antibacterial emulsion processing device provided in an embodiment of the present invention. Figure 2 ;

[0032] Figure 3 A schematic diagram of the structure of the stirring component (transmission component not shown) used in a skin care antibacterial emulsion processing device provided in an embodiment of the present invention;

[0033] Figure 4 A schematic diagram illustrating the connection relationship between the stirring component and the transmission component in a skin care antibacterial emulsion processing device provided in an embodiment of the present invention;

[0034] Figure 5 A schematic diagram of the pretreatment component used in a skin care antibacterial emulsion processing apparatus provided in an embodiment of the present invention. Figure 1 ;

[0035] Figure 6 A schematic diagram of the pretreatment component used in a skin care antibacterial emulsion processing apparatus provided in an embodiment of the present invention. Figure 2 ;

[0036] Figure 7 For along Figure 5 Cross-sectional view of the middle BB line;

[0037] Figure 8 for Figure 7 Enlarged schematic diagram of the structure at point A in the middle;

[0038] Figure 9 Another use state of the pretreatment assembly of the skin care bacteriostatic emulsion processing device provided by the embodiment of the present application is shown in the schematic view.

[0039] Figure 10 The structural schematic view of the connection relationship between the container shell and the sterilization assembly of the skin care bacteriostatic emulsion processing device provided by the embodiment of the present application is shown in the view.

[0040] In the view: 1, container main body; 11, container shell; 12, cover body; 13, groove; 14, discharging pipe; 2, pretreatment assembly; 21, shell; 22, filter; 23, control member; 231, discharging baffle; 232, rotating shaft assembly; 233, electric control structure; 234, weight monitoring structure; 24, material feeding member; 241, electromagnetic member; 242, pressing plate; 243, one-way valve; 244, electric telescopic member; 3, sterilization assembly; 31, heating member; 32, water supply member; 33, ultraviolet light emitting member; 4, stirring assembly; 41, stirring shaft; 42, fan blade; 43, driving member; 5, transmission assembly; 51, second driving member; 52, first roller; 53, second roller; 54, connecting belt; 6, collecting assembly. DETAILED DESCRIPTION

[0041] In order to make the technical problems, technical solutions and beneficial effects of the present application more clear, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.

[0042] Please refer to Figures 1 to 10 , now a skin care bacteriostatic emulsion processing device provided by the present application will be described. The skin care bacteriostatic emulsion processing device comprises a container main body 1, a pretreatment assembly 2 and a sterilization assembly 3, and the container main body 1 is connected with a stirring assembly 4; the pretreatment assembly 2 comprises a shell 21 connected with the container main body 1, a filter 22 arranged in the shell 21, and a control member 23 for controlling whether the shell 21 is in communication with the container main body 1; the filter 22 comprises a nano-silver filter screen; the sterilization assembly 3 comprises a heating member 31 connected with the inner wall of the container main body 1, a water supply member 32 connected with the container main body 1, and an ultraviolet light emitting member 33 arranged in the container main body 1, the heating member 31 is used for heating the inside of the container main body 1 and the water body in the water supply member 32, and the water supply member 32 is in communication with the inside of the container main body 1.

[0043] The container body 1 is configured to discharge gas, liquid to the outside environment. The skin care bacteriostatic emulsion processing device operates as follows: before formal operation, the processing device needs to be cleaned and disinfected. The specific process is as follows: first, the cleaning liquid and water are put into the container body 1, then the heating element 31 is started to heat the cleaning liquid and water, and the stirring assembly 4 is started to stir the cleaning liquid and water. Then, during the discharge of the cleaning liquid and water, the water supply element 32 continuously supplies water for cleaning into the container body 1. In this process, the ultraviolet light emitting element 33 can be in operation state for continuous sterilization operation. After cleaning is completed, the water supply element 32 stops operation, the heating element 31 continues to operate until the internal space of the container body 1 is dried.

[0044] Formal operation: after each raw material is treated by the pretreatment assembly 2, it enters the container body 1, and then is uniformly mixed by the stirring action of the stirring assembly 4. In this process, the temperature inside the container body 1 can be controlled by the heating element 31. If necessary, water can be supplemented into the container body 1 by the water supply element 32. The inside of the container body 1 can be sterilized by the ultraviolet light emitting element 33 throughout the process. The specific process of each raw material through the pretreatment assembly 2 is as follows: the raw material enters the shell 21, then is sterilized by the nanometer silver filter screen by using the sterilization effect of nanometer silver, and then enters the container body 1 under the open state of the control element 23.

[0045] Compared with the prior art, the pretreatment assembly 2 and the sterilization assembly 3 are provided to realize multiple sterilization processes, which effectively ensure the sanitary conditions during emulsion processing. The device forms a closed loop and circulation for the entire processing process of cleaning and sterilization, raw material feeding, stirring operation and product obtaining, which maximizes the reduction of the influence of external factors during the cleaning and disinfection process and the formal operation process, not only effectively improves the operation efficiency, but also maximizes the sanitary conditions during emulsion processing and improves the quality of the product.

[0046] As a specific embodiment of the present application, please refer to Figures 1 to 10 The container body 1 includes a container shell 11 and a cover 12, the container shell 11 is provided with a groove 13, the shape of the groove 13 is cylindrical, and the inner wall surface of the container shell 11 is provided with an ultraviolet light emitting element 33; the cover 12 is connected with the container shell 11 and is used to seal the open end of the groove 13, the cover 12 is connected with the stirring assembly 4, the cover 12 is movably connected with the container shell 11, and the cover 12 is configured to reciprocate along the up-down direction of the groove 13.

[0047] In any embodiment, the inner wall of the container shell 11 is provided with a heating element 31 and a water supply element 32. The heating element 31 includes a power supply element, a heat-conducting wire connected to the power supply element, and a heat-conducting cover connected to the inner wall of the container shell 11. The heat-conducting cover is sealingly connected to the inner wall of the container shell 11. The heat-conducting wire is arranged in the heat-conducting cover. When the power supply element is in operation, the heat-conducting wire generates heat. The generated heat is diffused in the recess 13 through the heat-conducting cover. The heat-conducting cover is an arc-shaped cover. The cooperation of the power supply element, the heat-conducting wire, and the heat-conducting cover realizes a safe heating process for the space of the recess 13. Meanwhile, the arrangement of the heat-conducting cover also has a turbulence effect, which is more conducive to the uniform stirring of the raw materials.

[0048] In any embodiment, the water supply element 32 includes a pipe body arranged adjacent to the heat-conducting cover. A plurality of water outlet valves are arranged at intervals on the pipe body. The pipe body is in communication with an external water pump. The external water pump (prior art) is placed in an external water tank (prior art). The pipe body is a heat-conducting pipe. When needed, the external water pump sucks water in the water tank into the pipe body. The water in the pipe flows into the recess 13 through the water outlet valves.

[0049] In any realizable embodiment, the heating element 31 includes a power supply element, a heat-conducting wire connected to the power supply element, and a heat-conducting cover connected to the inner wall of the container shell 11. The heat-conducting cover is an arc-shaped cover. The heat-conducting wire is embedded in the heat-conducting cover. The heat-conducting cover is sealingly connected to the inner wall of the container shell 11. The heat-conducting cover and the inner wall of the container shell 11 form a sealed passage. The water supply element 32 includes a plurality of water outlet valves arranged on the heat-conducting cover and an external water pump (external water pump is prior art) in communication with the sealed passage.

[0050] In this embodiment, the container shell 11 is provided with a discharge pipe 14. The discharge pipe 14 is in communication with the recess 13. After the stirring operation is completed, the cover 12 can move towards the bottom surface of the recess 13, so that the product in the recess 13 is discharged through the discharge pipe 14.

[0051] In this embodiment, the cover 12 includes a connecting portion and a sealing portion. The sealing portion is a sealing ring. The sealing ring is sleeved on the side surface of the connecting portion. The sealing ring is used to contact the side surface of the recess 13. The connecting portion is connected with the stirring assembly 4. The sealing ring has a sealing effect. It can also deform to ensure normal movement when encountering the heating element 31 and the water supply element 32.

[0052] In this embodiment, the stirring assembly 4 includes: a stirring shaft 41, one end of which is rotatably connected to the bottom of the container shell 11, and the other end is movably connected to the cover 12, so that the cover 12 can move up and down along the stirring shaft 41; a fan blade 42 connected to the stirring shaft 41, the fan blade 42 being provided with a plurality of blades; and a driving element 43 connected to the container shell 11 and in transmission connection with the stirring shaft 41.

[0053] In any possible embodiment, the driving member 43 is arranged at the bottom of the container shell 11. The driving member 43 is an electric motor. The driving end of the electric motor is connected with the stirring shaft 41. When the electric motor is operated, the driving end can drive the stirring shaft 41 to rotate.

[0054] In the present embodiment, the stirring shaft 41 is movably connected with the cover 12 through the transmission assembly 5. The transmission assembly 5 is configured to drive the cover 12 to reciprocate along the axial direction of the stirring shaft 41.

[0055] In the present embodiment, the stirring shaft 41 is a hollow pipe structure. The transmission assembly 5 includes a second driving member 51, a first roller 52, a second roller 53, and a connecting belt 54. The first roller 52 is arranged at the bottom of the stirring shaft 41, and the first roller 52 is a driven roller rotatably connected with the stirring shaft 41. The second roller 53 is arranged at the top end of the stirring shaft 41, and the second roller 53 is rotatably connected with the stirring shaft 41. One end of the connecting belt 54 is connected with the top surface of the cover 12, and the other end of the connecting belt 54 passes through the second roller 53, the first roller 52, and the stirring shaft 41 and is connected with the bottom surface of the cover 12. The second driving member 51 is in transmission connection with the second roller 53. When discharging, the second driving member 51 is operated, and the second driving member 51 drives the movement of the connecting belt 54 through the second roller 53, and the movement of the connecting belt 54 drives the cover 12 to move downward. The downward movement of the cover 12 extrudes the internal space of the groove 13, so that the product flows out of the container shell 11 through the discharging pipe 14. When the product is discharged, the discharging pipe 14 is closed, and the second driving member 51 drives the second roller 53 to move, so that the cover 12 returns to the initial position. Water can also be injected into the groove 13 through the water supply member 32 to automatically drive the cover 12 to return to the initial position by water pressure.

[0056] In the present embodiment, the surface of the connecting belt 54 is provided with a nano-silver structure layer. The raw materials are in contact with the connecting belt 54 during stirring, and the nano-silver structure layer has a sterilization effect.

[0057] In another possible embodiment, the stirring shaft 41 is a hollow pipe. The hollow pipe is provided with a through groove in the axial direction. The transmission assembly 5 includes a rack arranged in the stirring shaft 41. The rack is fixedly connected with the stirring shaft 41. The transmission assembly 5 further includes a connecting member arranged on the cover 12. The connecting member is in sliding connection with the stirring shaft 41. The transmission assembly 5 further includes an electric gear member arranged on the cover 12. The electric gear member is in meshing connection with the rack. The electric gear member is composed of an electric motor and a gear, which is a prior art and will not be described in detail. When the electric motor of the electric gear member is operated, the gear is driven to rotate, and the rotation of the gear drives the cover 12 to move along the axial direction of the stirring shaft.

[0058] In the embodiment, the transmission assembly 5 further comprises a sealing belt matched with the through groove. Specifically, the hollow tube body is rotationally connected with a rotating shaft at the bottom end, and the sealing belt is wound on the rotating shaft. One end of the sealing belt is connected with the bottom end of the cover body 12 through the stirring shaft 41. The sealing belt is matched with the through groove, that is, the sealing belt can seal the through groove when the sealing belt is in contact with the through groove. The surface of the sealing belt is provided with a nano-silver structure layer. The raw materials are in contact with the sealing belt during stirring, and the nano-silver structure layer has a sterilization effect. The two sides of the through groove are respectively provided with grooves for limiting the sealing belt.

[0059] In the embodiment, the fan blade 42 is arranged at the bottom end of the stirring shaft 41. The height of the fan blade 42 is not greater than one third of the height of the groove 13. The total capacity of the groove 13 occupied by each raw material after being added is not more than two thirds. That is, the movement range of the cover body 12 is not affected by the fan blade 42.

[0060] As a specific embodiment of the present application, please refer to Figures 1 to 10 The shell 21 is detachably connected with a partition plate. The partition plate divides the internal space of the shell 21 into multiple independent spaces along the circumference. Multiple raw materials can be injected at the same time, improving the operation efficiency.

[0061] In the embodiment, the specific shape of the partition plate can be selected according to actual needs, which can be a cross-shaped plate body or a linear plate body. The side edges of the partition plate are respectively provided with sealing strips, so that the partition plate can be clamped with the shell 21. When the partition plate is installed in the shell 21, the partition plate is in contact with the filter 22. It should be noted that when the partition plate is used, the control member 23 needs to be used according to the number of independent spaces set in the internal space of the shell 21. For example, when a linear plate body is used to divide the internal space of the shell 21 into two independent spaces, two sets of control members 23 need to be used. And the two sets of control members 23 are respectively matched with the independent spaces.

[0062] As a specific embodiment of the present application, please refer to Figures 1 to 10 The pretreatment assembly 2 further comprises a material feeding member 24 for feeding the material into the container body 1.

[0063] In any realizable embodiment, the material feeding member 24 comprises a pressing plate 242 matched with the shell 21, and a driving structure for driving the pressing plate 242 to rotate and move. The pressing plate 242 is provided with a one-way valve 243.

[0064] In the embodiment, the driving structure comprises an electric telescopic member 244 rotationally connected with the shell 21. The movable end of the electric telescopic member 244 is connected with the pressing plate 242. The pressing plate 242 comprises a first plate and a second plate rotationally connected with the first plate, the first plate is slidingly connected with the shell 21, and the first plate and the second plate are further connected through a clasp spring structure. The movable end of the electric telescopic member 244 is connected with the second plate. When the electric telescopic member 244 operates, the second plate and the first plate are first brought into a perpendicular state, and then the second plate and the first plate are synchronously moved. Or when the electric telescopic member 244 operates, the second plate and the first plate are first moved simultaneously, and then the second plate and the first plate are brought into a 90° angle state. The movable end of the electric telescopic member 244 is connected with or separated from the pressing plate 242 through an electromagnetic member 241. It should be noted that the specific structure of the electromagnetic member 241 is prior art, and the technical means of magnetically connecting the electric telescopic member 244 and the pressing plate 242 is protected by the present application, therefore the specific structure of the electromagnetic member 241 will not be described in detail.

[0065] In the embodiment, the control member 23 comprises a blanking baffle 231, an electric control structure 233, the blanking baffle 231 is rotationally connected with the shell 21 through a rotating shaft assembly 232, the electric control structure 233 is connected with the rotating shaft assembly 232, and is used for driving the rotating shaft assembly 232 to drive the blanking baffle 231 to rotate, and a weight monitoring structure 234 is arranged on the blanking baffle 231 and is electrically connected with the electric control structure 233.

[0066] In the embodiment, the weight monitoring structure 234 is electrically connected with the electric telescopic member 244.

[0067] As a specific embodiment of the present application, please refer to Figures 1 to 10 Further comprising a collecting assembly 6 which is detachably connected with the container body 1. The collecting assembly 6 is used for communicating with the blanking pipe 14 and can collect products. The blanking pipe 14 is provided with valve structure.

[0068] In any realizable embodiment, the collecting assembly 6 comprises a moving trolley and a collecting bag. The moving trolley is provided with a containing groove. The collecting bag is placed in the containing groove. The collecting bag communicates with the blanking pipe 14, and then the valve structure on the blanking pipe 14 is opened to transport product materials into the collecting bag.

[0069] The above only describes the preferred embodiments of the present application and should not be used to limit the present application. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A skin care antibacterial emulsion processing device, characterized in that, include: The container body (1) is connected to a stirring component (4); The pretreatment component (2) includes a housing (21) connected to the container body (1), a filter element (22) disposed within the housing (21), and a control element (23) for controlling whether the housing (21) is connected to the container body (1); the filter element (22) includes a nano silver filter screen; The sterilization component (3) includes a heating element (31) connected to the inner wall of the container body (1), a water supply element (32) connected to the container body (1), and an ultraviolet radiation element (33) disposed in the container body (1). The heating element (31) is used to heat the interior of the container body (1) and the water located in the water supply element (32). The water supply element (32) is in communication with the interior of the container body (1). The container body (1) includes: a container shell (11) with a groove (13) on it, the groove (13) being cylindrical in shape, and the ultraviolet radiating element (33) being provided on the inner wall surface of the container shell (11); a cover (12) connected to the container shell (11) for sealing the opening end of the groove (13), the cover (12) being connected to the stirring assembly (4), the cover (12) being movably connected to the container shell (11), and the cover (12) being constructed to reciprocate along the vertical direction of the groove (13); The stirring assembly (4) includes: a stirring shaft (41), one end of which is rotatably connected to the bottom of the container shell (11) and the other end of which is movably connected to the cover (12); a fan blade (42), which is connected to the stirring shaft (41) and has several blades; and a driving component (43), which is connected to the container shell (11) and is drively connected to the stirring shaft (41). The stirring shaft (41) is movably connected to the cover (12) via a transmission assembly (5). The transmission assembly (5) is configured to drive the cover (12) to reciprocate along the axial direction of the stirring shaft (41). The stirring shaft (41) is a hollow tube structure. The transmission assembly (5) includes a second driving member (51), a first roller (52), a second roller (53), and a connecting belt (54). The first roller (52) is located at the bottom inside the stirring shaft (41). The first roller (52) is a driven roller and is rotatably connected to the stirring shaft (41). The second roller (53) is located at the top of the stirring shaft (41) and is rotatably connected to the stirring shaft (41). One end of the connecting belt (54) is connected to the top surface of the cover (12), and the other end passes through the second roller (53), the first roller (52), and the stirring shaft (41) and is connected to the bottom surface of the cover (12). The second driving member (51) is connected to the second roller (53) in a transmission connection.

2. The skin care antibacterial emulsion processing device as described in claim 1, characterized in that, The pretreatment component (2) further includes a material feeder (24) for feeding materials into the container body (1).

3. The skin care antibacterial emulsion processing device as described in claim 2, characterized in that, The material feeder (24) includes: A pressure plate (242) is located inside the housing (21) and is adapted to the housing (21); An electric telescopic component (244) is connected to the housing (21), and the movable end of the electric telescopic component (244) is connected to the pressure plate (242); the electric telescopic component (244) drives the pressure plate (242) to move.

4. The skin care antibacterial emulsion processing device as described in claim 3, characterized in that, The control element (23) includes: The discharge baffle (231) is rotatably connected to the housing (21) via a rotating shaft assembly (232); An electronic control structure (233) is connected to the rotating shaft assembly (232) and is used to drive the feeding baffle (231) to rotate by driving the rotating shaft assembly (232); The weight monitoring structure (234) is installed on the feeding baffle (231) and is electrically connected to the electrical control structure (233).

5. The skin care antibacterial emulsion processing apparatus as described in claim 1, characterized in that, A partition plate is detachably connected inside the housing (21).

6. The skin care antibacterial emulsion processing apparatus as described in claim 3, characterized in that, The electric telescopic component (244) is magnetically connected to the pressure plate (242).

7. A skin care antibacterial emulsion processing apparatus as described in any one of claims 1-6, characterized in that, It also includes a collection component (6) which is detachably connected to the container body (1).

Citation Information

Patent Citations

  • Automatic feed supplying and stirring device used for iberico breeding

    CN109248588A

  • Down dryer

    CN206257922U

  • Gel equipment for processing colloidal cosmetics

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  • Sterilization device for lactic acid bacteria production

    CN214969479U

  • Heating equipment with good heating effect for oil extraction in oil field

    CN215571215U