Mask processing system and mask processing method
By designing the processing, storage, and mixing mechanisms of the facial mask processing system, the problem of complex operation of traditional Chinese medicine facial masks has been solved. This has enabled simplified processing of medicinal materials and flexible adjustment of the ingredients in the finished traditional Chinese medicine facial masks, reducing the frequency of equipment maintenance and operating costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 王啸奔
- Filing Date
- 2023-12-27
- Publication Date
- 2026-04-17
AI Technical Summary
The extraction of active ingredients from traditional Chinese medicine facial masks is inconvenient and cannot meet daily needs; furthermore, the variety of equipment makes the operation complex.
A facial mask processing system was designed, including a processing mechanism, a material storage mechanism, and a mixing mechanism. By changing the processing accessories and adjusting the processing method, the system enables simplified processing and component adjustment of medicinal materials. The material storage and mixing mechanisms are combined to achieve quantitative addition and mixing of medicinal powder raw materials.
It simplifies the processing of Chinese herbal face masks, enables the extraction of effective components from various medicinal materials and allows for flexible adjustment of the component ratios in the finished Chinese herbal face mask, thereby reducing equipment maintenance frequency and operating costs.
Smart Images

Figure CN121868148A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of facial mask processing technology, and more specifically to a facial mask processing system and a facial mask processing method. Background Technology
[0002] Traditional Chinese medicine (TCM) face masks are products made primarily from TCM powders. They are typically in powder or paste form and can be mixed with water before being applied to the skin to form a soft, thin film. They are gentle, causing less pressure on the skin, and offer moisturizing, cleansing, and nourishing benefits. Compared to serum masks, TCM face masks have a milder and simpler formula, are less expensive, and offer more noticeable effects than ordinary homemade masks. Choosing the right homemade TCM face mask can effectively improve skin condition; however, due to the different extraction methods for the active ingredients in TCM herbs, various equipment is required for different extraction processes, making the process inconvenient and unable to meet daily needs. Summary of the Invention
[0003] To overcome the shortcomings of the prior art, the present invention provides a mask processing system and a mask processing method, which has the advantage of being able to easily complete the processing of household Chinese herbal masks.
[0004] The technical solution adopted by this invention to solve its technical problem is:
[0005] A facial mask processing system includes a control shell, a processing mechanism mounted on the upper side of the control shell, a turntable rotatably connected to the rear side of the control shell, multiple material storage mechanisms placed on the upper side of the turntable, and a mixing mechanism mounted on the lower side of the turntable.
[0006] The processing mechanism includes a heat insulation shell, inside which a heating device is placed. A support plate is slidably connected to the inner side of the heat insulation shell, and a movable frame is slidably connected to the upper side of the support plate. A medicine container is placed on the upper side of the movable frame. A processing cover is hinged to the left side of the heat insulation shell, and a transfer plate is hinged to the right side of the heat insulation shell. A fixing block is rotatably connected to the processing cover, and a processing accessory is fixed to the fixing block.
[0007] The processing accessories are one of the following: a pulverizer, a filter screen, a grinding stone, and a stirring plate.
[0008] Each of the aforementioned material storage mechanisms includes a material cup, a bottom shell is fixedly connected to the lower side of the material cup, a pressing device is installed inside the bottom shell, a material receiving port is provided on the material cup, and a transfer port corresponding to the material receiving port is provided on the transfer plate.
[0009] The pressing device includes a U-shaped shell, with connecting plates slidably connected to both the upper and lower sides of the U-shaped shell. A receiving port is provided on the lower side of the material cup, and both connecting plates are inserted into the receiving port. Each of the two connecting plates has an opening corresponding to the inner cavity of the receiving port. A button is fixedly connected to the left side of the upper connecting plate, and a pressing spring is fixedly connected to the left side of the lower U-shaped shell. The pressing spring is fixedly connected to the bottom shell, and hydraulic oil is sealed inside the U-shaped shell.
[0010] The mixing mechanism includes mixing blades and a mixing cylinder. The mixing blades are rotatably connected to a turntable, and the mixing cylinder is detachably fixed to the turntable. A switch corresponding to the mixing blades is installed on the turntable.
[0011] A method for processing a face mask using a face mask processing system, the method comprising the following steps:
[0012] a: Change different processing accessories according to the processing requirements of the medicinal materials to be processed;
[0013] b: Place the medicinal materials to be processed into the processing mechanism in sequence, start the processing mechanism to carry out the corresponding processing, and obtain a variety of medicinal powder raw materials;
[0014] c: Various medicinal powder raw materials, additives and water are separately introduced into the storage mechanism;
[0015] d: The appropriate quantity and type of pharmaceutical powder raw materials, additives, and water are added into the mixing mechanism through the material storage mechanism;
[0016] e: Start the mixing mechanism to mix the medicinal powder raw materials, additives and water to produce the finished Chinese herbal face mask.
[0017] In step a, the medicinal materials to be processed are pre-processed and marketable medicinal materials.
[0018] In step b, the particle size of the medicinal powder raw material is between 250 mesh and 300 mesh.
[0019] The additive in step c is one or more of the following: thickener, film-forming agent, and fragrance. Attached Figure Description
[0020] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0021] Figure 1 A production flow diagram for processing using a facial mask processing system;
[0022] Figure 2 This is an overall structural diagram of a facial mask processing system;
[0023] Figure 3 This is an overall cross-sectional view of a facial mask processing system;
[0024] Figure 4 This is a schematic diagram of the processing mechanism;
[0025] Figure 5 This is a structural cross-sectional view of the processing mechanism;
[0026] Figure 6 This is a schematic diagram of the material storage mechanism installation.
[0027] Figure 7 This is a schematic diagram of the material storage mechanism;
[0028] Figure 8 This is a sectional view of the material storage mechanism.
[0029] Figure 9 This is a cross-sectional view of the actuating device.
[0030] Figure 10 This is a structural cross-sectional view of the hybrid mechanism. Detailed Implementation
[0031] like Figure 2-3 As shown:
[0032] A mask processing system includes a control shell 000, a processing mechanism 100 mounted on the upper side of the control shell 000, a turntable 010 rotatably connected to the rear side of the control shell 000, a plurality of material storage mechanisms 200 placed on the upper side of the turntable 010, and a mixing mechanism 300 mounted on the lower side of the turntable 010.
[0033] Before processing a face mask using the face mask processing system, the medicinal materials to be processed can be placed in the processing mechanism 100. The processing mechanism 100 can then be adjusted according to the processing method, and then started. The processing mechanism 100 processes the medicinal materials to obtain medicinal powder raw materials. Then, the turntable 010 can be rotated, causing the storage mechanism 200 to rotate until it is in the position directly opposite the processing mechanism 100. Finally, the processing mechanism 100 can be closed, and the contents of the processing mechanism 100... The processed medicinal powder is fed into the storage mechanism 200, and the above operation is repeated until all the medicinal materials are processed. Then, additives and water can be added to the remaining storage mechanism 200 to complete the preparation work before using the mask processing system to process the mask. Then, the user can manually feed the appropriate amount and type of medicinal powder, additives and water into the mixing mechanism 300 according to the needs. Then, the mixing mechanism 300 can be started to mix the medicinal powder, additives and water, thereby completing the manufacturing of the finished Chinese herbal mask.
[0034] Secondly, since users can change the processing method of the processing mechanism 100 for the medicinal materials to be processed by adjusting the processing mechanism 100, the processing mechanism 100 can be used to meet the basic processing requirements of the medicinal materials to be processed, thereby meeting the processing needs of a variety of different medicinal materials to be processed, and thus easily completing the extraction of effective components from a variety of different medicinal materials to be processed, thereby providing convenience for easily completing the processing of household Chinese medicine facial masks.
[0035] Meanwhile, since multiple storage units 200 can hold various medicinal materials to be processed into powdered raw materials, the mask processing system can sequentially process various medicinal materials to be processed, thus easily adjusting the component ratio in the finished herbal mask, and easily adjusting the nutritional components in the finished herbal mask, thereby enabling the finished herbal mask to achieve the desired nutritional effect.
[0036] like Figure 4-5 As shown:
[0037] The processing mechanism 100 includes a heat insulation shell 110, a heating device 120 placed inside the heat insulation shell 110, a support plate 130 slidably connected to the inner side of the heat insulation shell 110 via a support spring, a movable frame 140 slidably connected to the upper side of the support plate 130, a medicine container 150 placed on the upper side of the movable frame 140, a processing cover 160 hinged to the left side of the heat insulation shell 110 via a torque spring, a transfer plate 170 hinged to the right side of the heat insulation shell 110 via a torque spring, a fixing block 180 rotatably connected to the processing cover 160, and a processing accessory connected to the fixing block 180 via a thread;
[0038] When the processing mechanism 100 is used to process the medicinal material, the processing cover 160 can be opened, and the processing cover 160 can be rotated counterclockwise on the heat insulation shell 110. Then, the medicinal material to be processed is placed inside the medicine container 150, and then the medicine container 150 is placed on the moving frame 140. The medicine container 150 is pressed down, and at the same time, the processing cover 160 is released, so that the processing cover 160 can rotate clockwise under the action of the torque spring. This allows the processing cover 160 to continue to press down the medicine container 150, which in turn allows the medicine container 150 to drive the moving frame 140 and the support plate 130 to descend, causing the support spring to be compressed. This allows the medicine container 150 to carry the medicinal material to be processed into the heat insulation shell 110. Then, the heating device 120 can be activated, so that the medicinal material to be processed can be processed through the heating device 120 and the processing accessories, thereby completing the processing of the medicinal material.
[0039] Meanwhile, when different processing methods are required to process the medicinal materials, the processing accessories can be removed and the corresponding processing accessories can be connected to the fixing block 180 by threads, so that the processing cover 160 will not interfere with the operation of the processing accessories, and the medicinal materials can be processed in a simple way using various processing accessories, so that different processing methods can be used to process the medicinal materials conveniently.
[0040] Meanwhile, when the quantity of medicinal materials to be processed changes, the user can adjust the position of the processing auxiliary parts through the fixing block 180, thereby facilitating the processing of the medicinal materials to be processed by the processing auxiliary parts.
[0041] Secondly, after processing the medicinal materials, the processing cover 160 can be opened, allowing it to rotate counterclockwise on the heat insulation shell 110. Then, the support spring's elasticity will eject the tray 130, which in turn will cause the moving frame 140 and the medicine container 150 to eject. The user can then push the moving frame 140 to the right, causing it to move the medicine container 150 forward. When the medicine container 150 contacts the transfer plate 170, the moving frame 140 can be controlled to move the medicine container... Rotating clockwise, the transfer plate 170 is driven to rotate clockwise, thus pouring the medicinal powder from the container 150 into the storage mechanism 200, completing the transfer of the medicinal powder. Then, the torque spring controls the transfer plate 170 to rotate counterclockwise, returning it to its original position. This prevents the transfer plate 170 from interfering with the movement of the storage mechanism 200. The container 150 can then be removed for cleaning, allowing it to be reused for processing medicinal materials.
[0042] Further:
[0043] The processing auxiliary parts are one of the following: pulverizer, filter screen, grinding stone and stirring plate; thus, the processing method of the medicinal materials to be processed can be changed by replacing the processing auxiliary parts and adjusting the heating device 120, so that different processing of the medicinal materials to be processed can be easily completed according to different medicinal materials, and the effective components in different medicinal materials to be processed can be effectively extracted.
[0044] like Figure 4 and Figure 6-8 As shown:
[0045] Each of the multiple material storage mechanisms 200 includes a material cup 210. The bottom of the material cup 210 is connected to a bottom shell 220 by screws. A pressing device 400 is installed inside the bottom shell 220. The material cup 210 is provided with a material receiving port 211. The transfer plate 170 is provided with a transfer port 151 corresponding to the material receiving port 211.
[0046] When the storage mechanism 200 is used to hold the powder raw material, since the receiving port 211 corresponds to the transfer port 151, the transfer plate 170 can block and guide the medicine container 150, thereby preventing leakage when the medicine container 150 introduces the powder raw material into the storage cup 210.
[0047] Meanwhile, when the user needs to introduce the powder raw materials, additives or water in the corresponding storage mechanism 200 into the mixing mechanism 300, the user can press the pressing device 400 so that the powder raw materials, additives or water in the holding cup 210 can fall into the mixing mechanism 300, thereby completing the addition of powder raw materials, additives or water.
[0048] like Figure 9 As shown:
[0049] The pressing device 400 includes a U-shaped shell 410, with connecting plates 420 slidably connected to both the upper and lower sides of the U-shaped shell 410. A receiving port 211 is provided on the lower side of the material cup 210. Both connecting plates 420 are inserted into the receiving port 211. Both connecting plates 420 have openings corresponding to the inner cavity of the receiving port 211. A button 440 is welded to the left side of the upper connecting plate 420, and a pressing spring 450 is welded to the left side of the lower U-shaped shell 410. The pressing spring 450 is welded to the bottom shell 220, and hydraulic oil 430 is sealed inside the U-shaped shell 410.
[0050] When the user controls the powder, additives, or water to fall into the mixing mechanism 300 via the pressing device 400, they can press button 440. This pushes the upper connecting plate 420 to the right, causing the opening on the upper connecting plate 420 to move out of the receiving port 211. Simultaneously, because the U-shaped shell 410 is sealed with hydraulic oil 430, the pressurized hydraulic oil 430 pushes the lower connecting plate 420, compressing the pressing spring 450. This causes the opening on the lower connecting plate 420 to move into the receiving port 211, thereby enabling... The inlet 211 is internally connected, allowing the powder, additives, or water inside the cup 210 to continuously fall into the mixing mechanism 300 through the inlet 211. When the user needs to stop adding the powder, additives, or water, they can release the button 440, causing the spring 450 to extend due to its own elasticity. This spring 450 can push the connecting plate 420 located on the lower side to reset, thus completely blocking the inlet 211 and preventing the powder, additives, or water from continuing to fall into the mixing mechanism 300.
[0051] Meanwhile, when the user needs to add a quantitative amount of powder, additives, or water, they can press the button 440 to the bottom, which will push the upper connecting plate 420 to the rightmost position. This will completely block the inside of the receiving port 211, allowing only the powder, additives, or water between the two connecting plates 420 to fall out of the receiving port 211, thus completing the quantitative introduction of the powder, additives, or water. Then, the user can release the button 440, which will cause the pressing spring 450 to push the upper and lower connecting plates 420 back to their original positions. This will allow the powder, additives, or water inside the container 210 to fall back between the two connecting plates 420. By repeatedly pressing the button 440 to the bottom, the powder, additives, or water can be quantitatively added into the mixing mechanism 300, thus enabling simple control of the proportions of different powders and additives in the mixing mechanism 300.
[0052] Meanwhile, since the pressing device 400 is controlled by a purely mechanical structure, the maintenance frequency of the pressing device 400 can be reduced, the operating cost of the mask processing system can be reduced, and the service life of the mask processing system can be extended.
[0053] like Figure 10 As shown:
[0054] The mixing mechanism 300 includes a mixing blade 310 and a mixing cylinder 320. The mixing blade 310 is rotatably connected to the turntable 010 via a rotary motor. The mixing cylinder 320 is detachably snapped onto the turntable 010. A round rod is provided on the turntable 010, and a switch 011 corresponding to the mixing blade 310 is installed at the top of the round rod.
[0055] When the mixing mechanism 300 mixes the medicinal powder raw materials, additives and water, the mixing cylinder 320 can be clamped onto the turntable 010, and then the medicinal powder raw materials, additives and water are added into the mixing cylinder 320. Then the rotary motor can be started, so that the medicinal powder raw materials, additives and water can be mixed and stirred through the output shaft of the rotary motor, thereby completing the mixing of medicinal powder raw materials, additives and water, and thus completing the production of the finished Chinese herbal face mask.
[0056] Meanwhile, the user can rotate the turntable 010 by rotating the round rod on the upper side of the turntable 010, so that the mixing cylinder 320 can be locked onto the turntable 010. Then, the user can control the start and stop of the rotary motor by pressing the mixing blade 310, so as to easily complete the start and stop control of the mixing blade 310. Thus, without the need to pre-process the medicinal powder raw materials, the user can directly add different medicinal powder raw materials, additives and water to the storage mechanism 200 to complete the processing of finished Chinese medicine facial masks.
[0057] A method for processing a face mask using a face mask processing system, the method comprising the following steps:
[0058] a: Change different processing accessories according to the processing requirements of the medicinal materials to be processed;
[0059] b: Place the medicinal materials to be processed into the processing mechanism 100 in sequence, start the processing mechanism 100 to perform the corresponding processing, and obtain a variety of medicinal powder raw materials.
[0060] c: Various medicinal powder raw materials, additives and water are respectively introduced into the storage mechanism 200;
[0061] d: The appropriate quantity and type of pharmaceutical powder raw materials, additives and water are added into the mixing mechanism 300 through the material storage mechanism 200.
[0062] e: Start the mixing mechanism 300 to mix the medicinal powder raw materials, additives and water to obtain the finished Chinese herbal facial mask;
[0063] In step a, the medicinal materials to be processed are pre-processed and marketable medicinal materials.
[0064] The particle size of the medicinal powder raw material in step b is 300 mesh.
[0065] The additive in step c is one or more of the following: thickener, film-forming agent, and fragrance.
Claims
1. A mask processing system, characterized by: It includes a control housing (000), a processing mechanism (100) is mounted on the upper side of the control housing (000), a turntable (010) is rotatably connected to the rear side of the control housing (000), a plurality of material storage mechanisms (200) are placed on the upper side of the turntable (010), and a mixing mechanism (300) is mounted on the lower side of the turntable (010).
2. The face mask processing system of claim 1, wherein: The processing mechanism (100) includes a heat insulation shell (110), a heating device (120) is placed inside the heat insulation shell (110), a support plate (130) is slidably connected to the inner side of the heat insulation shell (110), a movable frame (140) is slidably connected to the upper side of the support plate (130), a medicine container (150) is placed on the upper side of the movable frame (140), a processing cover (160) is hinged to the left side of the heat insulation shell (110), a transfer plate (170) is hinged to the right side of the heat insulation shell (110), a fixing block (180) is rotatably connected to the processing cover (160), and a processing auxiliary component is fixedly connected to the fixing block (180).
3. The face mask processing system of claim 2, wherein: The processing accessories are one of the following: a pulverizer, a filter screen, a grinding stone, and a stirring plate.
4. The face mask processing system of claim 1, wherein: Each of the aforementioned storage mechanisms (200) includes a material cup (210), a bottom shell (220) is fixedly connected to the lower side of the material cup (210), a pressing device (400) is installed inside the bottom shell (220), a material receiving port (211) is provided on the material cup (210), and a transfer port (151) corresponding to the material receiving port (211) is provided on the transfer plate (170).
5. The face mask processing system of claim 4, wherein: The pressing device (400) includes a U-shaped shell (410), with connecting plates (420) slidably connected to both the upper and lower sides of the U-shaped shell (410). A receiving port (211) is provided on the lower side of the material cup (210). Both connecting plates (420) are inserted into the receiving port (211). Both connecting plates (420) have openings corresponding to the inner cavity of the receiving port (211). A button (440) is fixedly connected to the left side of the upper connecting plate (420), and a pressing spring (450) is fixedly connected to the left side of the lower U-shaped shell (410). The pressing spring (450) is fixedly connected to the bottom shell (220), and hydraulic oil (430) is sealed inside the U-shaped shell (410).
6. The face mask processing system of claim 1, wherein: The mixing mechanism (300) includes a mixing blade (310) and a mixing cylinder (320). The mixing blade (310) is rotatably connected to the turntable (010), and the mixing cylinder (320) is detachably fixed to the turntable (010). A switch (011) corresponding to the mixing blade (310) is installed on the turntable (010).
7. A method of processing a facial mask using the facial mask processing system of any one of claims 1-6, wherein: The method includes the following steps: a: Change different processing accessories according to the processing requirements of the medicinal materials to be processed; b: Place the medicinal materials to be processed into the processing mechanism (100) in sequence, start the processing mechanism (100) to perform the corresponding processing, and obtain a variety of medicinal powder raw materials; c: Various medicinal powder raw materials, additives and water are introduced into the storage mechanism (200) respectively; d: The appropriate quantity and type of pharmaceutical powder raw materials, additives and water are added into the mixing mechanism (300) through the material storage mechanism (200); e: Start the mixing mechanism (300) to mix the medicinal powder raw materials, additives and water to obtain the finished Chinese medicine facial mask.
8. The method of claim 7, wherein: In step a, the medicinal materials to be processed are pre-processed and marketable medicinal materials.
9. The method of claim 7, wherein: In step b, the particle size of the medicinal powder raw material is between 250 mesh and 300 mesh.
10. The method of claim 7, wherein: The additive in step c is one or more of the following: thickener, film-forming agent, and fragrance.