A micro-current AI intelligent facial mask instrument and an intelligent control method thereof
Through the innovative design of the headband and microcurrent AI facial mask device, the stability and versatility issues of existing facial mask devices have been solved, achieving stable wear and compatibility with various facial masks, thus improving the user experience.
Patent Information
- Application Number
- CN202510339241.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2045-03-21
AI Technical Summary
Existing AI-powered facial mask devices are unstable during use, are prone to falling off, and can only be used with masks that have printed electrode circuits, resulting in poor versatility.
A microcurrent AI smart mask device was designed, which combines a headband and a microcurrent AI mask device. Stable wearing is achieved through drive components and linkage components, and it is compatible with masks with printed or unprinted electrode circuits. The stability and flexibility are improved by using structures such as inserts, limiting frames, push rods and slots.
It improves the stability and versatility of the mask device, allowing for flexible wearing options. It supports electrotherapy massage with ordinary masks and direct use with electrode circuit masks, enhancing the flexibility and comfort of use.
Smart Images

Figure CN120168869B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of intelligent mask instruments, in particular to a micro-current AI intelligent mask instrument and an intelligent control method thereof. BACKGROUND
[0002] The current AI intelligent mask instrument is an innovative product that combines artificial intelligence, micro-current and other high-tech skincare technologies. It detects data such as skin moisture, oil, temperature, and resistance through intelligent sensors, then analyzes these data using AI algorithms to accurately understand the skin condition, automatically adjusts the skincare mode according to the analysis results, and provides personalized care solutions. The specific principle is to use micro-current pulse wave principle to generate weak current. This micro-current can stimulate skin cells and tissues, promote cell metabolism, increase cell energy supply, accelerate cell renewal and repair process; it can also promote local blood circulation, improve cell membrane permeability, promote collagen and elastic fiber generation, reduce inflammatory response, stimulate lymph circulation, and help remove excess water and toxins from the skin. Some mask instruments have temperature sensing control function, and warm introduction technology can accelerate skin circulation and enhance the absorption of anti-aging ingredients by the skin.
[0003] However, the existing current AI intelligent mask instrument is attached to the user's forehead by magnetic attraction when in use to power and control the specially printed mask with electrode circuit, resulting in poor stability during use and easy falling off. At the same time, it can only be used with masks printed with electrode circuits, making it difficult for ordinary masks to achieve current AI intelligent control, and the versatility is poor. Therefore, a micro-current AI intelligent mask instrument and an intelligent control method thereof are proposed. SUMMARY
[0004] In order to overcome the shortcomings of the prior art, the present application proposes a micro-current AI intelligent mask instrument and an intelligent control method thereof, which can flexibly select the existing current AI intelligent mask instrument to wear on the head, increasing the stability and comfort during use, and also can be applied to masks without printed electrode circuits, greatly improving the versatility.
[0005] In order to solve the above technical problems, the basic technical scheme proposed by the present application is:
[0006] The micro-current AI intelligent mask instrument comprises a head ring, a micro-current AI mask instrument, a plug block connected to the head ring, and a limiting frame connected to the micro-current AI mask instrument and matched with the plug block, wherein a through hole is formed through the plug block, trapezoidal limiting blocks are slidably connected to both sides of the plug block and outside the through hole, a clamping groove matched with the trapezoidal limiting blocks is formed in the inner wall of the limiting frame, a push rod is slidably connected in the through hole, and a driving assembly is arranged on the plug block and used to push the push rod to slide in the through hole so as to make the trapezoidal limiting blocks on both sides slide away from each other to the outside of the plug block.
[0007] Both sides of the micro-current AI mask instrument are provided with storage bins, each of which is provided with a bin door, a winding drum is rotatably arranged in the storage bin, a micro-current wire is wound on the surface of the winding drum, a plurality of micro-electrode pieces are connected to the micro-current wire, a snap ring is connected to the bin door, a clamping column matched with the snap ring is slidably arranged in the micro-current AI mask instrument, and a linkage assembly is further arranged in the micro-current AI mask instrument, which is used to control the clamping column and the snap ring to cancel the limiting when the push rod moves downward.
[0008] Preferably, a universal bending rod is connected to the head ring, and a clamping seat is connected to the universal bending rod.
[0009] Preferably, the driving assembly comprises a motor, a lead screw, the motor is arranged on the inner wall of the clamping seat, the lead screw is connected to the output end of the motor and is threadedly sleeved with the push rod, the cross section of the through hole and the push rod is a square that is slidably matched, an electric terminal one is arranged on the trapezoidal limiting block on one side of each of the plug blocks, and an electric terminal two electrically connected with the electric terminal one is arranged on the inner wall of the clamping groove on one side of each of the limiting frames.
[0010] Preferably, a limiting sliding groove one is symmetrically formed on both sides of the through hole of the plug block, the limiting sliding groove one respectively penetrates the through hole and the surface of the plug block, the trapezoidal end of the trapezoidal limiting block extends in the through hole and is slidably matched with the lower end of the push rod, the other end of the trapezoidal limiting block slides through the surface of the plug block, and a spring one is connected between the inner wall of the limiting sliding groove one on one side of each of the trapezoidal limiting blocks and the other trapezoidal limiting block.
[0011] Preferably, the linkage assembly comprises a sliding frame, an inclined block, and a sliding plate, the sliding plate slides up and down in the micro-current AI mask instrument and is matched with and abuts against the lower end of the push rod, the sliding frame is symmetrically arranged on both sides of the micro-current AI mask instrument, the inclined block is symmetrically connected to one side of each of the sliding frames and is slidably matched with and abuts against the side edge of the sliding plate, and a rotating rod is rotatably connected between each of the sliding frames and the clamping column on one side thereof.
[0012] Preferably, the inner wall of the micro-current AI mask instrument is connected with a sliding rail, the sliding rail is connected with a sliding block, the clamping column is connected with the sliding block, the inner wall of the micro-current AI mask instrument is connected with a guide rod one and a guide rod four, the sliding frame is slidably sleeved outside the guide rod one and the guide rod four, and the sliding frame and the inner wall of the micro-current AI mask instrument are further connected with a spring four sleeved outside the guide rod four, and the sliding block and the sliding frame are both connected with a spring hinge seat, and the both ends of the rotating rod are rotatably connected with the sliding block and the sliding frame through the spring hinge seat.
[0013] The inner wall of the micro-current AI mask instrument is connected with a guide rod two, the sliding plate is slidably sleeved outside the guide rod two, and the sliding plate and the inner wall of the micro-current AI mask instrument are further connected with a spring two sleeved outside the guide rod two, and the guide rod two is between the inclined block and the push rod.
[0014] Preferably, the rear side of the micro-current AI mask instrument is provided with a limiting sliding hole, a conical cylinder is slidably sleeved in the limiting sliding hole, the power terminal three is connected to the side of the conical cylinder away from the sliding frame and penetrates in and outside the limiting sliding hole, the conical cylinder and the inner wall of the limiting sliding hole are connected with a spring three, the sliding frame is connected with a resisting plate, and the sliding frame and the resisting plate are in abutting sliding contact with the extending end of the conical cylinder in the micro-current AI mask instrument.
[0015] Preferably, the micro-current AI mask instrument is rotatably sleeved with a threaded cylinder, the threaded cylinder extends in the micro-current AI mask instrument, a screw rod is threadedly sleeved in the threaded cylinder, the lower end of the screw rod extends below the threaded cylinder and is connected with a concave plate abutting the sliding plate, the inner wall of the micro-current AI mask instrument is connected with a guide rod three, and the both ends of the concave plate are slidably sleeved outside the guide rod three.
[0016] Preferably, the both sides of the head-wearing ring are provided with Bluetooth earphones, the micro-current AI mask instrument is internally provided with a micro-current AI control module, the micro-current AI mask instrument is provided with a display screen and control keys, the inner wall of the storage bin is provided with an electric motor, the winding drum is connected with the output end of the electric motor, the storage door is provided with a threading hole and is connected with a pulling block, the lower end of the clamping seat is further connected with an abutting switch abutting the upper end of the micro-current AI mask instrument, and the abutting switch is electrically connected with the motor.
[0017] A smart control method of a micro-current AI intelligent mask instrument, comprising the following steps:
[0018] Step one: before using the mask, first insert the plug block into the limiting frame, then control the driving assembly to run, drive the push rod to move downward, make the two trapezoidal limiting blocks in each plug block move away from each other, and then insert the limiting block into the clamping groove in the limiting frame, so as to realize the clamping of the micro-current AI mask instrument on the head-wearing ring;
[0019] Step two: continue to control the drive assembly to drive the push rod to move downward, the lower end of the push rod gradually penetrates the perforation and moves downward to the lower side of the plug, and cooperates with the linkage assembly, so that the clamping column and the clamping ring are disengaged through the linkage assembly, at this time the door is not limited, which is convenient for opening, and then the micro-current line wound on the reel is pulled out;
[0020] Step three: and the plurality of micro-electrode pieces connected to the micro-current line are pasted on the face according to the face acupoints or self-defined, short-time electrotherapy is carried out, then the micro-electrode pieces are removed, and the micro-current line is wound on the outer side of the reel, and the head ring is taken off;
[0021] Step four: the mask printed with electrode circuit is applied to the face, and then the head ring is worn again, the power supply is carried out through the power connection terminal three at the rear side of the micro-current AI mask instrument and the contact of the electrode circuit on the mask, the mask application in the micro-current AI intelligent state is carried out, or only the mask without printing the electrode circuit is applied.
[0022] The beneficial effects of the present application are:
[0023] 1、The technical scheme of the present application drives the push rod to move downward through the drive assembly, so that the trapezoidal limiting blocks on both sides of the plug can move away from each other and be inserted into the clamping groove in the corresponding clamping frame for limiting, which facilitates the clamping of the micro-current AI mask instrument on the head ring, and when in use, the head ring is directly worn on the head, which greatly improves the stability of the existing micro-current AI mask instrument in use, ensures that it will not fall off, and also can be removed to meet the needs of part of the direct use, and has good use flexibility;
[0024] 2、The technical scheme of the present application drives the push rod to continuously move downward through the drive assembly, which can act on the linkage assembly, so that the clamping column and the clamping ring on both sides of the micro-current AI mask instrument are separated, the door is opened, the micro-current line wound on the reel in the storage compartment is pulled out, and the micro-electrode pieces on the micro-current line are pasted on each acupoint or any position on the face, realizing electrotherapy massage of the face, then applying ordinary mask or mask printed with electrode circuit, so that ordinary mask can also be used with micro-current AI mask instrument, and at the same time, it can also be directly applied to the mask printed with electrode circuit without electrotherapy massage, and the micro-current AI mask instrument is used to supply power and detect, realizing intelligent application control of the micro-current AI mask;
[0025] 3. The technical scheme of the present application, by the setting of the threaded cylinder, when the micro-current AI mask instrument is used alone, the sliding plate can be controlled by rotating the threaded cylinder, to realize the insertion and separation of the clamping column and the clamping ring, providing multiple use schemes, increasing the use flexibility, and the setting of the limiting sliding hole enables the power terminal three to slide therein, and when the sliding plate is driven, the two sliding frames move away from each other, and the power terminal three can be controlled to slide out of the limiting sliding hole to the rear side of the micro-current AI mask instrument, to facilitate power use, and when not in use, the power terminal three can be stored and protected. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 is a structural schematic view of the present application;
[0027] Figure 2 is a structural schematic view of the micro-current AI mask instrument and the clamping seat of the present application;
[0028] Figure 3 is a sectional view of the side structure of the micro-current AI mask instrument and the clamping seat of the present application;
[0029] Figure 4 is a sectional view of A-A; Figure 3
[0030] is a sectional view of B-B; Figure 5 Figure 3 is an enlarged view of C;
[0031] Figure 6 Figure 4 is an enlarged view of D;
[0032] Figure 7 is an enlarged view of D; Figure 5
[0033] is a structural schematic view of the clamping seat of the present application; Figure 8
[0034] is a structural schematic view of the inside of the clamping seat of the present application; Figure 9
[0035] is a structural schematic view of the inside of the micro-current AI mask instrument of the present application; Figure 10
[0036] is a structural schematic view of the inside of the micro-current AI mask instrument and the storage groove of the present application; Figure 11
[0037] is a structural schematic view of the linkage assembly of the present application; Figure 12
[0038] is a structural schematic view of the rear view of the linkage assembly of the present application; Figure 13
[0039] Figure 14 This is a schematic diagram of the structure of the microcurrent line and microelectrode sheet of the present invention.
[0040] Explanation of reference numerals in the attached figures:
[0041] 1. Headband; 2. Microcurrent AI Facial Mask Device; 3. Universal Bending Rod; 4. Card Holder; 5. Insert Block; 6. Perforation; 7. Limiting Slide Rail 1; 8. Trapezoidal Limiting Block; 9. Spring 1; 10. Limiting Frame; 11. Card Slot; 12. Push Rod; 13. Motor; 14. Lead Screw; 15. Power Terminal 1; 16. Power Terminal 2; 17. Storage Compartment; 18. Compartment Door; 19. Electric Motor; 20. Roller; 21. Microcurrent Wire; 22. Microelectrode Plate; 23. Snap Ring; 24. Slide Rail; 25. Slider; 26. Snap Column; 27. Guide Rod 1 28. Spring hinge seat; 29. Rotating rod; 30. Sliding frame; 31. Inclined block; 32. Guide rod two; 33. Slide plate; 34. Spring two; 35. Wire hole; 36. Pull block; 37. Threaded cylinder; 38. Screw; 39. Concave plate; 40. Guide rod three; 41. Limiting sliding hole; 42. Conical cylinder; 43. Power terminal three; 44. Spring three; 45. Support plate; 46. Bluetooth headset; 47. Microcurrent AI control module; 48. Display screen; 49. Control key; 50. Contact switch; 51. Guide rod four; 52. Spring four. Detailed Implementation
[0042] The following will be combined with the appendix Figure 1 To be continued Figure 14 The technical solutions in the embodiments of the present invention have been clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0043] Example 1:
[0044] like Figures 1-6 As shown in Figure 12, this invention discloses a microcurrent AI smart facial mask device, including a headband 1 and a microcurrent AI facial mask device 2. The headband 1 is connected to a plug 5, and the microcurrent AI facial mask device 2 is connected to a limiting frame 10 that cooperates with the plug 5. The plug 5 has a through hole 6, and trapezoidal limiting blocks 8 are slidably connected to the two sides of the plug 5 through the through hole 6 and to its outer side. The inner wall of the limiting frame 10 has a slot 11 that cooperates with the trapezoidal limiting blocks 8. A push rod 12 is slidably connected in the through hole 6. The plug 5 is provided with a driving component, which is used to push the push rod 12 to slide in the through hole 6 so that it abuts against the trapezoidal limiting blocks 8 on both sides and slides away from each other to the two outer sides of the plug 5. As shown in the figure, there are two plugs 5, so that when they are installed in conjunction with two limiting frames 10, a more stable effect can be obtained.
[0045] The micro-current AI mask instrument 2 is provided with a storage bin 17 on both sides, the storage bin 17 is provided with a bin door 18, a winding drum 20 is rotatably arranged in the storage bin 17, a micro-current wire 21 is wound on the surface of the winding drum 20, a plurality of micro-electrode sheets 22 are connected to the micro-current wire 21, a snap ring 23 is connected to the bin door 18, a clamping column 26 matched with the snap ring 23 is slidably arranged in the micro-current AI mask instrument 2, and a linkage assembly is further arranged in the micro-current AI mask instrument 2, the linkage assembly is used for controlling the clamping column 26 and the snap ring 23 to cancel the clamping and limiting when the push rod 12 moves downward, and the micro-current AI mask instrument 2 is provided with an electricity connection terminal three 43 at the rear side.
[0046] The head-mounted ring 1 is provided with a battery pack.
[0047] The plug block 5 is symmetrically provided with a limiting sliding groove one 7 on both sides of the perforation 6, the limiting sliding groove one 7 respectively penetrates the surface of the perforation 6 and the plug block 5, the trapezoidal end of the trapezoidal limiting block 8 extends in the perforation 6 and is in close sliding connection with the lower end of the push rod 12, the other end is slidably penetrated through the surface of the plug block 5, and the trapezoidal limiting blocks 8 on both sides are connected with the inner walls of the respective limiting sliding grooves one 7 on one side away from each other, as shown in Figure 6 The inclined surface of the trapezoidal limiting block 8 can be in close connection with the inclined surfaces on both sides of the lower end of the push rod 12, when the push rod 12 is driven to move downward, the inclined surface end of the trapezoidal limiting block 8 extending in the perforation 6 can be pushed to slide to the outside of the plug block 5, and then inserted into the clamping groove 11 of the limiting frame 10, so as to install the micro-current AI mask instrument 2 on the head-mounted ring 1, so that the micro-current AI mask instrument 2 can be stably worn on the head during specific use, avoiding the problem of poor stability caused by only magnetic attraction, and also having the ability to be used alone.
[0048] And through the arrangement of the micro-current wire 21 and the micro-electrode sheet 22, the mask without a printed electrode circuit can first perform electrotherapy massage on the face, and after natural application of the mask, whether to perform electrotherapy massage again can be selected, so as to improve the absorption of the nutrient ingredients in the mask;
[0049] And the mask printed with an electrode circuit does not need to be electrotherapy massaged first, and can be directly powered through contact with the electrode circuit of the mask through the electricity connection terminal three 43.
[0050] Embodiment two:
[0051] As shown in Figure 1 , 8 , 9, the application discloses a micro-current AI intelligent mask instrument and an intelligent control method thereof, compared with embodiment one, the structure of the driving assembly is disclosed in the embodiment.
[0052] The head ring 1 is connected with a universal bending rod 3, and the card seat 4 is connected through the universal bending rod 3, the plug block 5 is connected on the card seat 4, the universal bending rod 3 is metal material, so that the angle of the card seat 4 and the micro-current AI mask instrument 2 installed thereon can be adjusted by bending the universal bending rod 3, so as to be more suitable and comfortable to wear on the head.
[0053] The driving assembly includes a motor 13 and a lead screw 14, the motor 13 is installed on the inner wall of the card seat 4, the lead screw 14 is connected to the output end of the motor 13 and is threadedly sleeved with the push rod 12, the cross section of the through hole 6 and the push rod 12 is a square that is slidably sleeved with each other, the two side plug blocks 5 are each installed with an electric terminal one 15 on the trapezoidal limiting block 8 close to each other, and the two side limiting frames 10 are each installed with an electric terminal two 16 on the inner wall of the clamping groove 11 close to each other.
[0054] In this way, the running of the motor 13 can drive the push rod 12 to slide up and down in the through hole 6 to cooperate with the trapezoidal limiting block 8 to control the card seat 4 and the micro-current AI mask instrument 2 to be clamped or separated, and the electric terminal one 15 and the electric terminal two 16 are arranged to make the trapezoidal limiting block 8 on the two sides of the plug block 5 close to each other to contact the inner wall of the clamping groove 11 at the same time, so as to drive the electric terminal one 15 and the electric terminal two 16 to contact, realize the conduction of the cable, and facilitate the power supply of the micro-current AI mask instrument 2 through the battery pack arranged in the head ring 1 when the head ring 1 and the micro-current AI mask instrument 2 are combined for use.
[0055] The head ring 1 is connected with a universal bending rod 3, and the card seat 4 is connected through the universal bending rod 3, the plug block 5 is connected on the card seat 4, the universal bending rod 3 is metal material, so that the angle of the card seat 4 and the micro-current AI mask instrument 2 installed thereon can be adjusted by bending the universal bending rod 3, so as to be more suitable and comfortable to wear on the head.
[0056] The setting of the Bluetooth earphone 46 enables the user to listen to music through the head-mounted ring 1 during the process of applying the mask, thereby increasing the comfort of use. The setting of the display screen 48 and the control key 49 facilitates control. The setting of the electric motor 19 facilitates the electric control of the winding and unwinding of the micro-current wire 21 and the micro-electrode sheet 22 on the winding drum 20. The warehouse door 18 and the storage warehouse 17 have a certain damping effect, so that when the clamping column 26 and the clamping ring 23 are disengaged, the warehouse door 18 can be opened by slightly pushing the setting of the pulling block 36. The setting of the threading hole 35 facilitates the micro-current wire 21 and the micro-electrode sheet 22 to pass through the inside after being unwound and pulled out, so as to close the warehouse door 18 and avoid the influence of the opening of the warehouse door 18. The setting of the contact switch 50 enables the upper end of the micro-current AI mask instrument 2 to be in contact with the contact switch 50 when the micro-current AI mask instrument 2 is clamped with the clamping seat 4, and the automatic control motor 13 starts to operate.
[0057] Embodiment three:
[0058] As shown in Figures 1-14 The present application discloses a kind of micro-current AI intelligent mask instrument and its intelligent control method, compared with embodiment two, this embodiment discloses the structure of linkage assembly.
[0059] Linkage assembly includes sliding frame 30, inclined block 31, sliding plate 33, sliding plate 33 is slid up and down in micro-current AI mask instrument 2, and with the lower end of push rod 12 cooperation contact, sliding frame 30 is symmetrically arranged in micro-current AI mask instrument 2 Two sides slide, inclined block 31 is symmetrically connected in the side of two sides sliding frame 30 each other, and with the side of sliding plate 33 sliding fit contact, each sliding frame 30 and the clamping column 26 of respective side are rotatably connected with rotating rod 29, so that when trapezoidal limiting block 8 is inserted with clamping groove 11, if motor 13 continues to control push rod 12 downward, at this time push rod 12 will gradually push sliding plate 33 down, and by sliding fit contact with inclined block 31, push two sides sliding frame 30 each other away, in turn drive rotating rod 29 rotation, push the clamping column 26 of upper and lower then each other away, cancel the insertion with clamping ring 23, facilitate the opening and closing of warehouse door 18, to use micro-current wire 21 and micro-electrode sheet 22.
[0060] The inner wall of micro-current AI mask instrument 2 is connected with slide rail 24, slide rail 24 is connected with sliding block 25, clamping column 26 is connected on sliding block 25, the inner wall of micro-current AI mask instrument 2 is connected with guide rod one 27 and guide rod four 51, sliding frame 30 is slidably sleeved on the outside of guide rod one 27 and guide rod four 51, and sliding frame 30 and the inner wall of micro-current AI mask instrument 2 are further connected with spring four 52, which is sleeved on the outside of guide rod four 51, sliding block 25 and sliding frame 30 are all connected with spring hinge seat 28, both ends of rotating rod 29 are rotatably connected with sliding block 25 and sliding frame 30 through spring hinge seat 28, as Figure 12As shown, the arrangement of the slide rail 24 and the slide block 25 can ensure the stable sliding of the clamping column 26, so as to stably control the insertion of the clamping column 26 and the clamping ring 23, the arrangement of the guide rod one 27 and the guide rod four 51 can stably control the sliding of the slide frame 30, and the arrangement of the spring four 52 can ensure that the two slide frames 30 can be reset to the initial state of being close to each other under the action of the spring four 52 without external force;
[0061] As shown, the limit sliding hole 41 is arranged on the rear side of the micro-current AI mask instrument 2, the conical cylinder 42 is slidably arranged in the limit sliding hole 41, the power terminal three 43 is connected to the side of the conical cylinder 42 away from the slide frame 30 and penetrates the limit sliding hole 41, the spring three 44 is connected between the conical cylinder 42 and the inner wall of the limit sliding hole 41, the abutting plate 45 is connected to the slide frame 30, and the slide frame 30 and the abutting plate 45 are in abutting sliding contact with the extension end of the conical cylinder 42 in the micro-current AI mask instrument 2.
[0062] As shown, when the two slide frames 30 are pushed away from each other, the rear sides of the two slide frames 30 and the abutting plate 45 will abut against the inclined surface of the extension end of the conical cylinder 42 in the micro-current AI mask instrument 2, so as to push the conical cylinder 42 and drive the power terminal three 43 to move to the rear outer side of the micro-current AI mask instrument 2, so as to facilitate the contact and power control with the mask printed with the electrode circuit, and when not in use, the slide frame 30 will cancel the abutment with the conical cylinder 42 due to the reset, and the power terminal three 43 will be stored in the limit sliding hole 41 for protection under the action of the spring three 44, so as to avoid the problem that the exposed power terminal three 43 is easily damaged for a long time. Figure 7 and 12 As shown, when the two slide frames 30 are pushed away from each other, the rear sides of the two slide frames 30 and the abutting plate 45 will abut against the inclined surface of the extension end of the conical cylinder 42 in the micro-current AI mask instrument 2, so as to push the conical cylinder 42 and drive the power terminal three 43 to move to the rear outer side of the micro-current AI mask instrument 2, so as to facilitate the contact and power control with the mask printed with the electrode circuit, and when not in use, the slide frame 30 will cancel the abutment with the conical cylinder 42 due to the reset, and the power terminal three 43 will be stored in the limit sliding hole 41 for protection under the action of the spring three 44, so as to avoid the problem that the exposed power terminal three 43 is easily damaged for a long time.
[0063] Example four:
[0064] As shown, the limit sliding hole 41 is arranged on the rear side of the micro-current AI mask instrument 2, the conical cylinder 42 is slidably arranged in the limit sliding hole 41, the power terminal three 43 is connected to the side of the conical cylinder 42 away from the slide frame 30 and penetrates the limit sliding hole 41, the spring three 44 is connected between the conical cylinder 42 and the inner wall of the limit sliding hole 41, the abutting plate 45 is connected to the slide frame 30, and the slide frame 30 and the abutting plate 45 are in abutting sliding contact with the extension end of the conical cylinder 42 in the micro-current AI mask instrument 2. Figures 1-14 As shown, the limit sliding hole 41 is arranged on the rear side of the micro-current AI mask instrument 2, the conical cylinder 42 is slidably arranged in the limit sliding hole 41, the power terminal three 43 is connected to the side of the conical cylinder 42 away from the slide frame 30 and penetrates the limit sliding hole 41, the spring three 44 is connected between the conical cylinder 42 and the inner wall of the limit sliding hole 41, the abutting plate 45 is connected to the slide frame 30, and the slide frame 30 and the abutting plate 45 are in abutting sliding contact with the extension end of the conical cylinder 42 in the micro-current AI mask instrument 2.
[0065] The micro-current AI mask instrument 2 is sleeved with a threaded barrel 37, the threaded barrel 37 extends in the micro-current AI mask instrument 2, a screw rod 38 is sleeved in the threaded barrel 37 in a threaded mode, the lower end of the screw rod 38 extends below the threaded barrel 37 and is connected with a concave plate 39 that is matched with the sliding plate 33, and the inner wall of the micro-current AI mask instrument 2 is connected with a guide rod three 40, and the two ends of the concave plate 39 are sleeved on the outer side of the guide rod three 40 in a sliding mode.
[0066] As shown in Figure 10 and 11 , through the threaded sleeve of the threaded barrel 37 and the screw rod 38, and the sliding sleeve of the concave plate 39 and the guide rod three 40, when the micro-current AI mask instrument 2 is used alone, the screw rod 38 and the concave plate 39 can be driven to move downward by rotating the threaded barrel 37, the sliding plate 33 is moved downward and contacted, the insertion control of the clamping column 26 and the clamping ring 23 is realized, the application scene is increased, and multiple states and multiple scenes can be used.
[0067] Example five:
[0068] As shown in Figures 1-14 , the application discloses a kind of intelligent control method of micro-current AI intelligent mask instrument, comprising the following steps:
[0069] Step one: before using mask, first, insert block 5 is inserted with limiting frame 10 cooperation, then control drive assembly runs, drives push rod 12 to move downward, so that the two trapezoidal limit blocks 8 in each insert block 5 are away from each other, to be inserted with the clamping groove 11 in the limiting frame 10 Limit, realize that micro-current AI mask instrument 2 is clamped on head ring 1;
[0070] Step two: continue to control drive assembly to drive push rod 12 to move downward, the lower end of push rod 12 gradually passes through perforation 6 and moves downward to the lower side of insert block 5, and is matched with linkage assembly component, and is inserted with the clamping column 26 and the clamping ring 23 by linkage assembly, at this time, the warehouse door 18 is not limited, is convenient to open, and then micro-current wire 21 wound by reel 20 in storage bin 17 is pulled out;
[0071] Step three: a plurality of micro-electrode pieces 22 connected on micro-current wire 21 are pasted on face acupoints or self-defined face for short-time electrotherapy, then micro-electrode piece 22 is removed, and micro-current wire 21 is rewound on the outer side of reel 20, and head ring 1 is taken off;
[0072] Step four: apply ordinary mask without printed electrode circuit.
[0073] Example six:
[0074] As shown in Figures 1-14 , the application discloses a kind of intelligent control method of micro-current AI intelligent mask instrument, comprising the following steps:
[0075] Step one: before using the mask, first insert the block 5 with the limit frame 10, and then control the drive assembly to run, drive the push rod 12 down, make the two trapezoidal limit blocks 8 in each block 5 away from each other, and insert the limit block into the clamping groove 11 in the limit frame 10, realize the clamping of the micro-current AI mask instrument 2 on the head ring 1;
[0076] Step two: apply the mask printed with electrode circuit to the face, then wear the head ring 1, and then the micro-current AI mask instrument 2 on the back side of the contact terminal three 43 contacts the electrode circuit on the mask to supply power, and the micro-current AI intelligent state mask application is carried out, or only the mask without printing electrode circuit is applied.
[0077] According to the disclosure and teaching of the above description, those skilled in the art of the present application can also make changes and modifications to the above embodiments. Therefore, the present application is not limited to the specific embodiments disclosed and described above, and some modifications and changes of the present application should fall within the protection scope of the claims of the present application. In addition, although some specific terms are used in the specification, these terms are only for convenience of description and do not constitute any limitation on the present application.
Claims
1. A micro-current AI intelligent mask instrument, comprising a head ring (1), a micro-current AI mask instrument (2), a plug-in block (5) connected to the head ring (1), and a limiting frame (10) connected to the micro-current AI mask instrument (2) and matched with the plug-in block (5), characterized in that, The plug block (5) is provided with a through hole (6) penetrating through the plug block (5), and trapezoidal limiting blocks (8) penetrating through the through hole (6) and outside the plug block (5) are slidably connected to the two sides of the plug block (5); the inner wall of the limiting frame (10) is provided with a clamping groove (11) matched with the trapezoidal limiting blocks (8); a push rod (12) is slidably connected in the through hole (6); the plug block (5) is provided with a driving assembly, which is used to push the push rod (12) to slide in the through hole (6) to abut against the trapezoidal limiting blocks (8) on the two sides to slide away from each other to the outer sides of the plug block (5); The micro-current AI mask instrument (2) is provided with storage bins (17) on the two sides, the storage bins (17) are each provided with a bin door (18), a winding drum (20) is rotatably installed in the storage bin (17), a micro-current wire (21) is wound on the surface of the winding drum (20), a plurality of micro-electrode sheets (22) are connected to the micro-current wire (21), a snap ring (23) is connected to the bin door (18), a clamping column (26) matched with the snap ring (23) is slidably connected in the micro-current AI mask instrument (2), and a linkage assembly is further arranged in the micro-current AI mask instrument (2), which is used to control the clamping column (26) and the snap ring (23) to cancel the insertion limiting when the push rod (12) moves downward, and a power terminal three (43) is arranged on the rear side of the micro-current AI mask instrument (2); The head ring (1) is connected with a universal bending rod (3), and a clamping seat (4) is connected through the universal bending rod (3), and the plug block (5) is connected to the clamping seat (4); The driving assembly comprises a motor (13) and a lead screw (14), the motor (13) is installed on the inner wall of the clamping seat (4), the lead screw (14) is connected to the output end of the motor (13) and is threadedly sleeved with the push rod (12), the cross section of the through hole (6) and the push rod (12) is a square that is slidably fitted with each other, the trapezoidal limiting blocks (8) on one side of the plug block (5) on the two sides are each provided with a power terminal one (15), and the inner wall of the clamping groove (11) on one side of the limiting frame (10) on the two sides is provided with a power terminal two (16) electrically connected with the power terminal one (15); The linkage assembly comprises a sliding frame (30), an inclined block (31) and a sliding plate (33), the sliding plate (33) slides up and down in the micro-current AI mask instrument (2) and abuts against the lower end of the push rod (12), the sliding frames (30) are symmetrically and slidably arranged on the two sides of the micro-current AI mask instrument (2), the inclined blocks (31) are symmetrically connected to one side of the sliding frames (30) on the two sides and slidably and abut against the side edges of the sliding plate (33), and a rotating rod (29) is rotatably connected between each sliding frame (30) and the clamping column (26) on the respective one side. The inner wall of the micro-current AI mask instrument (2) is connected with a sliding rail (24), the sliding rail (24) is connected with a sliding block (25), the clamping column (26) is connected on the sliding block (25), the inner wall of the micro-current AI mask instrument (2) is connected with a guide rod one (27) and a guide rod four (51), the sliding frame (30) is slidably sleeved on the outer side of the guide rod one (27) and the guide rod four (51), and the sliding frame (30) and the inner wall of the micro-current AI mask instrument (2) are further connected with a spring four (52) sleeved on the outer side of the guide rod four (51), and the sliding block (25) and the sliding frame (30) are both connected with a spring hinge seat (28), and the both ends of the rotating rod (29) are rotatably connected with the sliding block (25) and the sliding frame (30) through the spring hinge seat (28); The inner wall of the micro-current AI mask instrument (2) is connected with a guide rod two (32), the sliding plate (33) is slidably sleeved on the outer side of the guide rod two (32), and the sliding plate (33) and the inner wall of the micro-current AI mask instrument (2) are further connected with a spring two (34) sleeved on the outer side of the guide rod two (32), and the guide rod two (32) is between the inclined block (31) and the push rod (12).
2. The micro-current AI intelligent facial mask instrument according to claim 1, characterized in that, The limit sliding groove one (7) is symmetrically arranged on both sides of the perforation (6), and the limit sliding groove one (7) penetrates the surface of the perforation (6) and the plug block (5) respectively, the trapezoidal end of the trapezoidal limiting block (8) extends in the perforation (6) and abuts and slides with the lower end of the push rod (12), the other end slides through the surface of the plug block (5), and the trapezoidal limiting blocks (8) on both sides are connected with the spring one (9) between the inner wall of the respective limit sliding groove one (7) and the side away from each other.
3. The micro-current AI intelligent facial mask instrument according to claim 1, characterized in that, The rear side of the micro-current AI mask instrument (2) is provided with a limiting sliding hole (41), the conical cylinder (42) is slidably sleeved in the limiting sliding hole (41), the power terminal three (43) is connected to the side of the conical cylinder (42) away from the sliding frame (30) and penetrates and slides in the limiting sliding hole (41), the spring three (44) is connected between the conical cylinder (42) and the inner wall of the limiting sliding hole (41), the sliding frame (30) is connected with the abutting plate (45), and the sliding frame (30) and the abutting plate (45) abut and slide against the extension end of the conical cylinder (42) in the micro-current AI mask instrument (2).
4. The micro-current AI intelligent mask instrument according to claim 1, characterized in that, The micro-current AI mask instrument (2) is rotatably sleeved with a threaded cylinder (37), the threaded cylinder (37) extends in the micro-current AI mask instrument (2), the threaded cylinder (37) is internally threadedly sleeved with a screw rod (38), the lower end of the screw rod (38) extends below the threaded cylinder (37) and is connected with a concave plate (39) matched with the sliding plate (33) at the extension end, the inner wall of the micro-current AI mask instrument (2) is connected with a guide rod three (40), and the both ends of the concave plate (39) are slidably sleeved on the outer side of the guide rod three (40).
5. The micro-current AI intelligent mask instrument according to claim 1, characterized in that, Both sides of the head ring (1) are provided with Bluetooth earphones (46), the micro-current AI mask instrument (2) is internally provided with a micro-current AI control module (47), the micro-current AI mask instrument (2) is provided with a display screen (48) and a control key (49), the inner wall of the storage bin (17) is provided with an electric motor (19), the winding drum (20) is connected with the output end of the electric motor (19), the bin door (18) is provided with a threading hole (35) and is connected with a pull block (36), the lower end of the clamping seat (4) is further connected with a resistance switch (50) matched with the upper end of the micro-current AI mask instrument (2), and the resistance switch (50) is electrically connected with the motor (13).
Citation Information
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