Ultrasonic wrinkle removing instrument convenient for removing wrinkles on eyes
By setting a multi-function head and temperature control mechanism in the ultrasonic wrinkle remover, the problem of single function of traditional ultrasonic wrinkle removers is solved, multi-function operation and cost reduction are achieved, and the user experience and wrinkle removal effect are improved.
Patent Information
- Application Number
- CN202511080638.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2025-10-10
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional ultrasonic wrinkle removal devices usually only have a single ultrasonic wrinkle removal function, which is difficult to meet the user's multi-functional needs such as cold compress and massage on the skin.
An ultrasonic wrinkle removal device is designed to facilitate eye wrinkle removal. By setting a universal base, it is adapted to multiple functional heads, such as a cold compress head and a massage head, and combined with a drive mechanism and a temperature control mechanism to achieve multifunctional operation.
It significantly increases the functionality, improves the user experience, reduces production costs and heat dissipation pressure, and enhances the wrinkle removal effect.
Smart Images

Figure CN120754462A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ultrasonic wrinkle removal devices, and more particularly to an ultrasonic wrinkle removal device for facilitating eye wrinkle removal. Background Art
[0002] The ultrasonic wrinkle remover is a beauty device that uses ultrasonic technology to act on the skin, with the core function of improving wrinkles and tightening the skin. Due to its non-invasiveness and easy operation, it has quickly become a common anti-aging tool in home and professional beauty scenarios.
[0003] Ultrasonic wrinkle reduction techniques typically involve pre-treatment of the skin to improve the efficiency of ultrasonic energy, optimize the skin's repair environment, and enhance collagen regeneration. For example, a warm compress is applied to the skin surface for a period of time before treatment to open pores, dilate blood vessels, and relax muscles, thereby promoting the skin's absorption of nutrients (such as moisturizers and antioxidants) in skincare products. A cold compress is then applied promptly after treatment to quickly calm the skin through low-temperature stimulation, constricting dilated capillaries and inhibiting inflammation, relieving burning sensations, and reducing the risk of redness, swelling, and stinging, minimizing adverse reactions.
[0004] However, existing ultrasonic wrinkle removal devices still have many shortcomings in actual use. For example, traditional ultrasonic wrinkle removal devices usually only have a single ultrasonic wrinkle removal function. When users need to apply cold compresses or massage to the skin, other special instruments can only be used in addition, which makes it difficult to meet the user's multi-functional needs. Summary of the Invention
[0005] The present invention provides an ultrasonic wrinkle removal device for convenient eye wrinkle removal, and aims to solve the problem that traditional ultrasonic wrinkle removal devices usually only have a single ultrasonic wrinkle removal function. When the user needs to perform other treatments such as cold compresses or massage on the skin, other special instruments can only be used in addition, which makes it difficult to meet the user's multi-functional needs.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: an ultrasonic wrinkle removal device for facilitating eye wrinkle removal, comprising: a base, the base comprising a housing, the housing being provided with a card slot, the card slot being provided with a functional head, the functional head comprising an ultrasonic head, the ultrasonic head being adapted to fit within the card slot;
[0007] A circuit board four is provided in the housing, a power supply interface is provided on the circuit board four, the ultrasonic head includes a housing one, a circuit board one is provided in the housing one, a power supply connector is provided on the circuit board one, the power supply connector is adapted to the power supply interface, a control switch is provided on the housing, the control switch is adapted to the circuit board four, an ultrasonic generator is provided in the housing one, and a fitting cover one is provided on the top of the ultrasonic generator;
[0008] The functional head includes at least a cold compress head and a massage head, and both the cold compress head and the massage head are adapted to the card slot.
[0009] In a preferred embodiment, a driving mechanism is provided in the shell, the driving mechanism includes a motor, the motor is concentrically arranged with the shell, a peristaltic pump assembly is provided on the motor, a peristaltic tube is provided in the peristaltic pump assembly, and a transmission rod is provided at the top of the peristaltic tube.
[0010] In a preferred embodiment, a temperature control mechanism is provided in the housing, the temperature control mechanism includes a liquid storage tank, a connecting cover is provided in the housing, the liquid storage tank is adapted to the connecting cover, and a one-way air inlet valve is provided on the connecting cover.
[0011] In a preferred embodiment, a heat dissipation sleeve is provided in the outer shell, and a heat dissipation sleeve is provided on the outside of the motor. The bottom of the heat dissipation sleeve is connected to a pipette, which extends into the liquid storage tank. The top of the heat dissipation sleeve is connected to an infusion tube, which is connected to the input end of the peristaltic tube.
[0012] In a preferred embodiment, an annular heat dissipation pipe is provided in the shell, a heat conduction groove is provided on the annular heat dissipation pipe, a through pipe 1 is connected to the annular heat dissipation pipe, and the through pipe 1 is connected to the output end of the peristaltic tube, and the annular heat dissipation pipe is connected to the through pipe 2, and the through pipe 2 is connected to the liquid storage tank.
[0013] In a preferred embodiment, a heat dissipation sleeve 2 is provided on the outside of the ultrasonic generator, a heat conduction plate 1 is provided on the bottom of the heat dissipation sleeve 2, a heat conduction member 1 is provided on the heat conduction plate 1, and the heat conduction member 1 is adapted to the heat conduction groove.
[0014] In a preferred embodiment, the cold compress head includes a shell two, a semiconductor refrigeration plate is arranged in the shell two, a fitting cover two is arranged on the top of the semiconductor refrigeration plate, a heat conducting plate two is arranged on the bottom of the semiconductor refrigeration plate, a heat conducting part two is arranged on the heat conducting plate two, the heat conducting part two is adapted to the heat conducting groove, a circuit board two is arranged in the shell two, and the circuit board two is adapted to the circuit board four.
[0015] In a preferred embodiment, the massage head includes a shell three, a rotating disk is provided in the shell three, a plurality of massage protrusions are evenly provided on the top of the rotating disk, a connecting sleeve is provided at the bottom of the rotating disk, the connecting sleeve is adapted to the transmission rod, and a circuit board three is provided inside.
[0016] In a preferred embodiment, a misting eye mask is provided on the shell, the misting eye mask is trumpet-shaped, and the top of the misting eye mask is opened, and the opening is adapted to the contour of the eye area.
[0017] In a preferred embodiment, the atomizing eye cover is communicated with a one-way water inlet valve, the annular heat dissipation pipe is communicated with a one-way water outlet valve, and a connecting pipe is arranged between the one-way water inlet valve and the one-way water outlet valve.
[0018] The present application has the advantages of:
[0019] The present application sets a universal base and adapts multiple functional heads with different functions, thereby providing users with various functions on the basis of one base, significantly increasing the use function, and effectively improving the use experience of the wrinkle removal instrument, thereby further improving the wrinkle removal effect.
[0020] The present application sets a driving mechanism cooperating with a temperature control mechanism, thereby utilizing the output shaft of the peristaltic pump assembly itself to drive the transmission rod, so that an additional driving motor is not needed when driving the massage head, effectively saving the internal space of the equipment, significantly reducing the production cost, and effectively reducing the heat dissipation pressure of the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a perspective view of the present application.
[0022] Figure 2 is a structure schematic view of the atomizing eye cover part of the present application.
[0023] Figure 3 is a structure schematic view of the functional head part of the present application.
[0024] Figure 4 is a structure schematic view of the driving mechanism part of the present application.
[0025] Figure 5 is a cross-sectional structure schematic view of the base part of the present application.
[0026] Figure 6 is a cross-sectional structure schematic view of the liquid storage tank part of the present application.
[0027] Figure 7 is a cross-sectional structure schematic view of the heat dissipation sleeve part of the present application.
[0028] Figure 8 is a cross-sectional structure schematic view of the annular heat dissipation pipe part of the present application.
[0029] Figure 9 is a cross-sectional structure schematic view of the ultrasonic head part of the present application.
[0030] Figure 10 is a cross-sectional structure schematic view of the cold compress head part of the present application.
[0031] Figure 11It is a schematic cross-sectional structural diagram of the massage head part of the present invention.
[0032] Figure 12 It is a structural schematic diagram of the one-way water inlet valve and the one-way drain valve of the present invention.
[0033] The accompanying drawings are marked as follows: 1. base; 11. housing; 12. card slot; 13. circuit board four; 14. control switch; 15. connection cover; 2. function head; 21. ultrasonic head; 211. housing one; 212. ultrasonic generator; 213. fitting cover one; 214. heat dissipation sleeve two; 215. heat conducting plate one; 216. heat conducting element one; 217. circuit board one; 22. cold compress head; 221. housing two; 222. semiconductor cooling plate; 223. fitting cover two; 224. heat conducting plate two; 225. heat conducting element two; 226. circuit board 1. Board 2; 23. Massage head; 231. Shell 3; 232. Rotating disk; 233. Massage protrusion; 234. Connecting sleeve; 235. Circuit board 3; 24. Atomizing eye mask; 25. One-way water inlet valve; 3. Driving mechanism; 31. Motor; 32. Peristaltic pump assembly; 33. Peristaltic tube; 34. Transmission rod; 4. Temperature control mechanism; 41. Liquid storage tank; 42. Heat dissipation sleeve 1; 43. Suction tube; 44. Infusion tube; 45. Through pipe 1; 46. Annular heat dissipation pipe; 47. Through pipe 2; 48. One-way air inlet valve; 49. One-way drain valve. DETAILED DESCRIPTION
[0034] The present application is described in further detail below in conjunction with the accompanying drawings. It is necessary to point out that the following specific implementation methods are only used to further illustrate the present application and cannot be understood as limiting the scope of protection of the present application. Technicians in this field can make some non-essential improvements and adjustments to the present application based on the above application content.
[0035] Example 1
[0036] Refer to the instruction manual Figures 1 to 12 The present invention proposes an ultrasonic wrinkle removal device that is convenient for removing wrinkles around the eyes, so as to solve the problem that traditional ultrasonic wrinkle removal devices usually only have a single ultrasonic wrinkle removal function. When the user needs to perform other treatments such as cold compresses or massage on the skin, other special instruments can only be used in addition, which makes it difficult to meet the user's multi-functional needs.
[0037] The base 1 includes a housing 11, a card slot 12 is provided on the housing 11, a functional head 2 is provided on the card slot 12, and the functional head 2 includes an ultrasonic head 21, which is adapted to the card slot 12;
[0038] It should be noted that there is a certain friction force between the slot 12 and the ultrasonic head 21 . When the ultrasonic head 21 is placed in the slot 12 , the friction force between the two can stably fix the ultrasonic head 21 .
[0039] A circuit board 217 is disposed within the housing 11, and a power supply interface is provided on the circuit board 217. The ultrasonic head 21 includes a housing 211, a circuit board 217 is disposed within the housing 211, and a power supply connector is provided on the circuit board 217. The power supply connector is adapted to the power supply interface. A control switch 14 is provided on the housing 11, and the control switch 14 is adapted to the circuit board 213. An ultrasonic generator 212 is disposed within the housing 211, and a fitting cover 213 is provided on the top of the ultrasonic generator 212.
[0040] It should be noted that a battery can be pre-installed on the circuit board four 13, or an external power cord can be connected to power different functional heads 2. The power supply connector can be a USB power supply head, which is a mature technology well known to people in this field and will not be repeated in this embodiment. The ultrasonic generator 212 is an ultrasonic transducer, which is a mature technology well known to people in this field and will not be repeated in this embodiment. The surface of the fitting cover 213 is smoothed and it is in direct contact with the skin.
[0041] The functional head 2 at least includes a cooling head 22 and a massage head 23 , and both the cooling head 22 and the massage head 23 are adapted to the card slot 12 .
[0042] It should be noted that the cold compress head 22 has an ice compress function, and the massage head 23 has a rotational massage function. Functional heads with other functions can also be designed according to actual needs, such as a photon beauty head, a hot compress head, etc. These are mature technologies well known to people in this field and will not be described in detail in this embodiment.
[0043] In this embodiment, the implementation scenario is as follows: when using the ultrasonic wrinkle remover, the user installs the ultrasonic head 21 on the card slot 12, thereby powering the ultrasonic head 21 through the housing 11, thereby activating the ultrasonic generator 212 to start operation. The ultrasonic waves generated by the ultrasonic generator 212 are transmitted to the surface of the fitting cover 1 213. The user fits the fitting cover 1 213 to the skin around the eyes and continuously performs ultrasonic massage on different parts of the eye area. After long-term use, the wrinkles around the eyes can be effectively eliminated.
[0044] After ultrasonic wrinkle removal around the eyes, the cold compress head 22 can be replaced to conveniently perform cold compress cooling treatment on the skin that has just undergone ultrasonic wrinkle removal, thereby avoiding the occurrence of redness, swelling, allergies, etc., effectively improving the use effect, and being more conducive to use by people with allergies; at the same time, the massage head 23 can also be replaced to massage the skin surface during leisure time, thereby further improving the user experience.
[0045] Example 2
[0046] Based on Example 1, refer to the attached Figures 1 to 12 This embodiment proposes a temperature control mechanism 4 to solve the problem in the prior art that after long-term use of a conventional ultrasonic wrinkle remover, the heat accumulated in the internal heating element is difficult to dissipate through passive heat dissipation.
[0047] The heat dissipation sleeve 1 42 and the annular heat dissipation pipe 46 are both made of heat-conducting materials, such as heat-conducting silicone.
[0048] For example, when the wrinkle remover is used on multiple users in succession, since the single use time is usually within the range of 15 to 20 minutes, long-term use without stopping the device can easily cause the device to overheat. For example, the surface temperature of the fitting cover 213 and the outer shell 11 will increase significantly after long-term use, which will not only affect the user experience but may even burn the user. The existing technology usually sets a cooling fan in the device on the basis of passive heat dissipation, but the cooling fan is noisy, and the device is used close to the user's face, and the noise will seriously affect the user experience.
[0049] A driving mechanism 3 is provided in the housing 11 , and the driving mechanism 3 includes a motor 31 , which is concentrically arranged with the housing 11 . A peristaltic pump assembly 32 is provided on the motor 31 , a peristaltic tube 33 is provided in the peristaltic pump assembly 32 , and a transmission rod 34 is provided at the top of the peristaltic tube 33 .
[0050] It should be noted that the motor 31 is a small motor, and the peristaltic pump assembly 32 is adapted by design. The output shaft of the peristaltic pump assembly 32 itself is utilized, so that on the basis of the original function of only pumping the liquid in the peristaltic tube 33, it can also drive the transmission rod 34. Therefore, when driving the massage head 23, there is no need to set up an additional drive motor, which effectively saves the internal space of the equipment, not only significantly reduces the production cost, but also effectively reduces the heat dissipation pressure of the equipment.
[0051] A temperature control mechanism 4 is provided in the housing 11 , and the temperature control mechanism 4 includes a liquid storage tank 41 . A connecting cover 15 is provided in the housing 11 , and the liquid storage tank 41 is adapted to the connecting cover 15 . A one-way air inlet valve 48 is provided on the connecting cover 15 .
[0052] It should be noted that the liquid storage tank 41 and the connecting cover 15 are detachably connected, for example, the two are fixed by a threaded connection, so as to facilitate the replacement of water in the liquid storage tank 41, thereby further extending the duration of efficient heat dissipation. A ventilation hole is provided on the outer shell 11, which is not marked in the drawings. While the peristaltic pump assembly 32 draws water from the liquid storage tank 41, the one-way air inlet valve 48 will continuously supply air to the outer shell 11, thereby ensuring the constant air pressure.
[0053] A heat dissipation sleeve 42 is provided in the outer shell 11, and the heat dissipation sleeve 42 is sleeved on the outside of the motor 31. The bottom of the heat dissipation sleeve 42 is connected to a suction tube 43, and the suction tube 43 extends into the liquid storage tank 41. The top of the heat dissipation sleeve 42 is connected to an infusion tube 44, and the infusion tube 44 is connected to the input end of the peristaltic tube 33.
[0054] It should be noted that when the peristaltic pump assembly 32 draws water out of the liquid storage tank 41, it will first be transported to the heat dissipation sleeve 42. When the water in the heat dissipation sleeve 42 is full, the water will continue to be transported to the annular heat dissipation pipe 46. Through the flowing water flow, the heat generated by the motor 31 during operation can be taken away.
[0055] An annular heat dissipation pipe 46 is provided in the housing 11 , and a heat conduction groove is provided on the annular heat dissipation pipe 46 . A through pipe 1 45 is connected to the annular heat dissipation pipe 46 , and the through pipe 1 45 is connected to the output end of the peristaltic tube 33 . A through pipe 2 47 is connected to the annular heat dissipation pipe 46 , and the through pipe 2 47 is connected to the liquid storage tank 41 .
[0056] It should be noted that after the annular heat dissipation pipe 46 is filled with water, the water flows back to the liquid storage tank 41 through the second through-tube 47. The flow rate of the second through-tube 47 is smaller than that of the peristaltic tube 33. Therefore, only when the annular heat dissipation pipe 46 is filled and the water pressure reaches a certain level, the reflux speed of the second through-tube 47 will be balanced with the delivery speed of the peristaltic tube 33.
[0057] A heat dissipation sleeve 214 is provided outside the ultrasonic generator 212 . A heat conducting plate 215 is provided on the bottom of the heat dissipation sleeve 214 . A heat conducting member 216 is provided on the heat conducting plate 215 . The heat conducting member 216 is adapted to the heat conducting groove.
[0058] It should be noted that the heat dissipation sleeve 214 and the heat conducting plate 1 215 are both made of heat-conducting metal, such as copper, and the heat conducting member 1 216 is a heat pipe, similar to the heat pipe installed inside a laptop computer. It is a mature technology well known to people in this field and will not be described in detail in this embodiment. Through the synergistic effect of the heat dissipation sleeve 214, the heat conducting plate 1 215 and the heat conducting member 1 216, the heat generated during the operation of the ultrasonic generator 212 can be efficiently taken away, thereby avoiding the surface temperature of the fitting cover 1 213 from rising too much and affecting the user's experience.
[0059] The cold compress head 22 includes a shell 221, a semiconductor refrigeration plate 222 is arranged in the shell 221, a fitting cover 223 is arranged on the top of the semiconductor refrigeration plate 222, a heat conducting plate 224 is arranged on the bottom of the semiconductor refrigeration plate 222, a heat conducting part 225 is arranged on the heat conducting plate 224, the heat conducting part 225 is adapted to the heat conducting groove, a circuit board 226 is arranged in the shell 221, and the circuit board 226 is adapted to the circuit board 4 13.
[0060] It should be noted that the semiconductor refrigeration sheet 222 may generate heat on one side and cool on the other side during operation. This is a mature technology well known to those skilled in the art and will not be described in detail in this embodiment. The side in contact with the second contact cover 223 is the cooling side, and the side in contact with the second heat conducting sheet 224 is the heating side. The heat generated by the semiconductor refrigeration sheet 222 during operation can be efficiently removed through the synergistic effect of the second heat conducting sheet 224, the second heat conducting member 225, and the first heat conducting member 216.
[0061] Furthermore, if a hot compress head needs to be installed, the hot compress head can achieve the hot compress function by flipping the semiconductor refrigeration plate 222. At the same time, the cooling surface of the semiconductor refrigeration plate 222 can also reduce the water flow temperature, thereby further improving the use effect.
[0062] The massage head 23 includes a shell body 231, a rotating disk 232 is provided in the shell body 231, a plurality of massage protrusions 233 are evenly provided on the top of the rotating disk 232, a connecting sleeve 234 is provided at the bottom of the rotating disk 232, the connecting sleeve 234 is adapted to the transmission rod 34, and a circuit board 235 is provided in the shell body 231.
[0063] It should be noted that the top end of the transmission rod 34 is a rectangular rod, and the bottom end of the connecting sleeve 234 is a rectangular groove, the two are adapted to each other, the surface of the massage protrusion 233 is smoothed, and the bottoms of shell 1 211, shell 2 221 and shell 3 231 are all provided with through holes to avoid interference with the transmission rod 34.
[0064] Example 3
[0065] Based on Example 2, refer to the attached Figures 1 to 12 This embodiment proposes an atomizing eye mask 24, which can utilize the functional characteristics of the ultrasonic head 21. Without opening holes on the surface of the fitting cover 213, it does not require additional dedicated atomizing equipment and can provide the user with an atomizing function, thereby further improving the user experience of the device.
[0066] The shell 1 211 is provided with an atomizing eye mask 24 . The atomizing eye mask 24 is trumpet-shaped, and the top of the atomizing eye mask 24 is opened, and the opening is adapted to the contour of the eye area.
[0067] It should be noted that the contact position between the atomizing eye mask 24 and the fitting cover 213 is sealed, and the two are adapted to each other, and the atomizing eye mask 24 is detachably connected to the shell 1 211 by snap-fitting, so that the atomizing eye mask 24 can be easily disassembled and assembled without affecting the normal use of the ultrasonic head 21.
[0068] The atomizing eye mask 24 is connected to a one-way water inlet valve 25 , the annular heat dissipation pipe 46 is connected to a one-way drain valve 49 , and a connecting pipe is provided between the one-way water inlet valve 25 and the one-way drain valve 49 .
[0069] It should be noted that when the atomizing function is not in use, a sealing cover can be installed on the one-way drain valve 49 for sealing. When the atomizing function is in use, the sealing cover is removed and the one-way drain valve 49 is connected to the one-way water inlet valve 25 via a connecting pipe. Thus, after the annular heat dissipation pipe 46 is filled with water, the water pressure automatically and continuously diverts part of the water into the connecting pipe, and finally passes through the one-way water inlet valve 25 to the surface of the fitting cover 1 213. Then, the ultrasonic waves generated by the fitting cover 1 213 are used to atomize the water. By fitting the atomizing eye mask 24 around the eye area, the skin around the eye area can be atomized and hydrated.
[0070] Furthermore, the atomization effect can be further improved by pouring a dedicated atomizing liquid into the liquid storage tank 41 without affecting the normal function of the temperature control mechanism 4.
[0071] The above-described embodiments merely illustrate several implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, and all such variations and improvements fall within the scope of protection of the present invention.
Claims
1. An ultrasonic wrinkle removal device for removing wrinkles around the eyes, comprising: A base (1), the base (1) comprising a housing (11), a card slot (12) being provided on the housing (11), a functional head (2) being provided on the card slot (12), the functional head (2) comprising an ultrasonic head (21), and the ultrasonic head (21) being adapted to the card slot (12); The invention is characterized in that a circuit board four (13) is provided in the housing (11), a power supply interface is provided on the circuit board four (13), the ultrasonic head (21) comprises a housing one (211), a circuit board one (217) is provided in the housing one (211), a power supply connector is provided on the circuit board one (217), the power supply connector is adapted to the power supply interface, a control switch (14) is provided on the housing (11), the control switch (14) is adapted to the circuit board four (13), an ultrasonic generator (212) is provided in the housing one (211), and a fitting cover one (213) is provided on the top of the ultrasonic generator (212); The functional head (2) further comprises at least a cold compress head (22) and a massage head (23), and both the cold compress head (22) and the massage head (23) are adapted to the card slot (12).
2. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 1, characterized in that: A driving mechanism (3) is provided in the housing (11), and the driving mechanism (3) includes a motor (31). The motor (31) is concentrically arranged with the housing (11), a peristaltic pump assembly (32) is provided on the motor (31), a peristaltic tube (33) is provided in the peristaltic pump assembly (32), and a transmission rod (34) is provided at the top end of the peristaltic tube (33).
3. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 2, characterized in that: A temperature control mechanism (4) is provided in the housing (11), the temperature control mechanism (4) comprising a liquid storage tank (41), a connecting cover (15) is provided in the housing (11), the liquid storage tank (41) is adapted to the connecting cover (15), and a one-way air inlet valve (48) is provided on the connecting cover (15).
4. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 3, characterized in that: A heat dissipation sleeve (42) is provided in the housing (11), and the heat dissipation sleeve (42) is sleeved on the outside of the motor (31). The bottom of the heat dissipation sleeve (42) is connected to a liquid suction pipe (43), and the liquid suction pipe (43) extends into the liquid storage tank (41). The top of the heat dissipation sleeve (42) is connected to an infusion pipe (44), and the infusion pipe (44) is connected to the input end of the peristaltic tube (33).
5. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 4, characterized in that: An annular heat dissipation pipe (46) is provided in the housing (11), a heat conduction groove is provided on the annular heat dissipation pipe (46), a through pipe 1 (45) is connected to the annular heat dissipation pipe (46), and the through pipe 1 (45) is connected to the output end of the peristaltic tube (33), and a through pipe 2 (47) is connected to the annular heat dissipation pipe (46), and the through pipe 2 (47) is connected to the liquid storage tank (41).
6. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 5, characterized in that: A heat dissipation sleeve 2 (214) is provided on the outside of the ultrasonic generator (212), a heat conduction plate 1 (215) is provided on the bottom of the heat dissipation sleeve 2 (214), a heat conduction member 1 (216) is provided on the heat conduction plate 1 (215), and the heat conduction member 1 (216) is adapted to the heat conduction groove.
7. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 6, characterized in that: The cold compress head (22) includes a second shell (221), a semiconductor cooling plate (222) is arranged in the second shell (221), a fitting cover (223) is arranged on the top of the semiconductor cooling plate (222), a heat conducting plate (224) is arranged on the bottom of the semiconductor cooling plate (222), a heat conducting part (225) is arranged on the second heat conducting plate (224), the heat conducting part (225) is adapted to the heat conducting groove, a circuit board (226) is arranged in the second shell (221), and the circuit board (226) is adapted to the fourth circuit board (13).
8. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 7, characterized in that: The massage head (23) comprises a third shell (231), a rotating disk (232) is provided in the third shell (231), a plurality of massage protrusions (233) are evenly provided on the top of the rotating disk (232), a connecting sleeve (234) is provided at the bottom of the rotating disk (232), the connecting sleeve (234) is adapted to the transmission rod (34), and a circuit board (235) is provided in the third shell (231).
9. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 8, characterized in that: The shell (211) is provided with an atomizing eye mask (24), which is trumpet-shaped and has an opening at the top thereof, the opening being adapted to the contour of the eye area.
10. The ultrasonic wrinkle removal device for removing wrinkles around the eyes according to claim 9, characterized in that: The atomizing eye mask (24) is connected to a one-way water inlet valve (25), the annular heat dissipation pipe (46) is connected to a one-way drain valve (49), and a connecting pipe is provided between the one-way water inlet valve (25) and the one-way drain valve (49).