Sterilizing device of skin care device and skin care device suite
By using a dual light-shielding structure with a first deformable light-shielding part and a second deformable light-shielding part in the disinfection device of the skin care device, the problem of disinfection light leakage is solved, achieving a more efficient light leakage prevention effect and ensuring user safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-03-20
AI Technical Summary
In existing skin care devices, the disinfection light is prone to leakage, which may cause harm to users.
The device employs a dual light-shielding structure with a first deformable light-shielding part and a second deformable light-shielding part to block the disinfection light from leaking out of the accommodating tank opening, and seals the gap between the part to be disinfected and the inner circumferential surface of the accommodating tank through the annular second deformable light-shielding part.
It effectively prevents light leakage during disinfection, improves the safety and light leakage prevention effect of the disinfection device, and ensures user safety.
Smart Images

Figure CN224008750U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the field of cosmetic devices, and in particular relates to a disinfection device of a skin care device and a skin care device kit. BACKGROUND
[0002] Skin care devices are mainly used for skin care, and generally include light skin care devices, ultrasonic skin care devices, electric stimulation skin care devices, etc. Some skin care devices are also provided with disinfection devices, so that users can place the skin care devices in the disinfection devices for disinfection.
[0003] In related technologies, the disinfection device mainly adopts light disinfection, i.e. emitting disinfection light to the skin care device for disinfection. However, in the disinfection process of the disinfection device, the disinfection light is easy to leak, and the leaked disinfection light is easy to cause harm to the user. CONTENT OF THE UTILITY MODEL
[0004] The embodiments of the present application provide a disinfection device of a skin care device and a skin care device kit to improve the technical problem that the disinfection light of the disinfection device is easy to leak.
[0005] In a first aspect, the embodiments of the present application provide a disinfection device of a skin care device, comprising:
[0006] a housing, the housing is provided with a first accommodating groove, the first accommodating groove is used for accommodating a to-be-disinfected member, the to-be-disinfected member includes a skin care device and / or an accessory of the skin care device;
[0007] a disinfection assembly, the disinfection assembly is used for generating disinfection light in the first accommodating groove to disinfect the to-be-disinfected member accommodated in the first accommodating groove;
[0008] a first deformable light shielding part, the first deformable light shielding part is arranged in the first accommodating groove, and the first deformable light shielding part blocks the disinfection light in the first accommodating groove from emitting from a slot opening of the first accommodating groove; and
[0009] a second deformable light shielding part, the second deformable light shielding part is arranged on a side of the first deformable light shielding part close to the slot opening of the first accommodating groove, the second deformable light shielding part is in a circular ring shape and is arranged around an inner circumferential surface of the first accommodating groove, and the second deformable light shielding part is used for sealing a gap between the to-be-disinfected member and the inner circumferential surface of the first accommodating groove to block the disinfection light in the first accommodating groove from emitting from the slot opening of the first accommodating groove.
[0010] In some embodiments, the disinfection device includes a light shielding member, the light shielding member includes a first main body part, and the first main body part is arranged around the inner circumferential surface of the first accommodating groove.
[0011] At least one of the first deformable light shielding part and the second deformable light shielding part is integrally formed with the first main part and protrudes from an inner circumferential surface of the first main part.
[0012] In some embodiments, an outer end edge of the first deformable light shielding part is connected to a side end edge of the first main part close to a bottom of the first accommodating groove, and an inner end edge of the first deformable light shielding part is inclined towards an opening of the first accommodating groove; and / or,
[0013] A thickness of the first deformable light shielding part is less than a thickness of the first main part; and / or,
[0014] An outer end edge of the second deformable light shielding part is connected to a side end edge of the first main part close to the opening of the first accommodating groove, and an inner end edge of the second deformable light shielding part is inclined towards the bottom of the first accommodating groove; and / or,
[0015] A thickness of the second deformable light shielding part is less than the thickness of the first main part; and / or,
[0016] The light shielding piece further comprises a connecting part connected to an outer circumferential side of the first main part; wherein an inner wall of the first accommodating groove comprises a first ring wall and a second ring wall, the first ring wall is located on one side of the second ring wall along a depth direction of the first accommodating groove, and the connecting part is clamped between the first ring wall and the second ring wall; and / or,
[0017] The light shielding piece further comprises a pull rod, a ratio of a length to a diameter of the pull rod is greater than or equal to 5, and the pull rod is arranged in the shell, so that the first main part is fixedly arranged on an inner circumferential surface of the first accommodating groove.
[0018] In some embodiments, an inner wall of the first accommodating groove is provided with a light transmission part, the sterilization assembly is configured to generate the sterilization light rays that are emitted from the light transmission part towards the first accommodating groove, and the first deformable light shielding part is arranged around the light transmission part.
[0019] In some embodiments, the light transmission part is arranged on a bottom wall of the first accommodating groove, and the first deformable light shielding part is configured to support a side surface of the object to be sterilized towards the light transmission part; and / or,
[0020] The first deformable light shielding part is a polygonal ring structure; and / or,
[0021] The light transmission part comprises a light transmission hole, and the sterilization device further comprises a light transmission sheet arranged on the light transmission hole.
[0022] In some embodiments, the shell further comprises a mounting cavity, and the sterilization assembly is arranged in the mounting cavity.
[0023] The sterilization device further comprises a light-reflecting member arranged in the mounting cavity, the light-reflecting member being configured to reflect at least part of the sterilization light generated by the sterilization assembly towards the light-transmitting part.
[0024] In some embodiments, the light-transmitting part comprises a light-transmitting hole, and the sterilization device further comprises a light-transmitting sheet arranged on the light-transmitting hole, the light-transmitting sheet being clamped between the outer wall of the first accommodating groove and the light-reflecting member; and / or,
[0025] The light-reflecting member is clamped on the outer wall of the first accommodating groove.
[0026] In some embodiments, the sterilization assembly comprises at least one sterilization assembly, and each sterilization assembly comprises:
[0027] at least one sensor configured to detect whether the object to be sterilized is arranged in the first accommodating groove;
[0028] at least two blue light lamps arranged at intervals around the periphery of the sensor; and
[0029] at least two ultraviolet light lamps arranged at intervals around the periphery of the sensor.
[0030] In some embodiments, the sterilization device further comprises a mechanical switch electrically connected to the sterilization assembly to control the on-off of the sterilization assembly; wherein,
[0031] The shell further comprises a second accommodating groove, the first accommodating groove and the second accommodating groove are respectively configured to accommodate different regions of the skin care device to place the skin care device, and the mechanical switch is at least partially arranged in the second accommodating groove, so that the part of the skin care device arranged in the second accommodating groove can trigger the mechanical switch; and / or,
[0032] The sterilization device further comprises a control circuit board, the mechanical switch comprises a switch terminal and a first button, the switch terminal is arranged on the control circuit board, and the first button is arranged to at least partially penetrate the groove wall of the second accommodating groove, the first button is provided with an elastic arm abutting against the control circuit board and / or the shell to push the first button to move towards the second accommodating groove; and / or,
[0033] The mechanical switch comprises a first button, the first button is arranged in the slot wall of the second accommodating slot and at least partially located in the second accommodating slot, and the first button is made of light shielding material.
[0034] In some embodiments, the shell comprises a base and a bearing seat, one end of the bearing seat in the length direction is connected with one end of the base in the length direction, the bearing seat is arranged obliquely with the base, and the side of the bearing seat away from the base is provided with the first accommodating slot and used for placing the skin care device;
[0035] At least one of the base and the bearing seat is provided with a reinforcing rib, and the reinforcing rib extends along the length direction of the corresponding base or bearing seat.
[0036] In some embodiments, the sterilization device further comprises a control assembly and a light guide, the control assembly comprises a control circuit board, a light emitting element and a functional device, the control circuit board is arranged in the shell, the light emitting element and the functional device are arranged on the control circuit board, the light guide is arranged in the shell, the light guide is used for guiding the light generated by the light emitting element out of the shell, and the light guide is further provided with a clearance space facing the control circuit board; in the plane where the control circuit board is located, the normal projection of the clearance space and the normal projection of the functional device at least partially overlap; wherein,
[0037] The functional device comprises an electrical connector; and / or,
[0038] The functional device is mounted on the side of the control circuit board facing or away from the clearance space; and / or,
[0039] The light guide comprises a second main body part, a light inlet part and a light outlet part, the second main body part is arranged in the shell, the light inlet part is protruded on the side surface of the second main body part facing the control circuit board, the side surface of the light inlet part away from the second main body part faces the light emitting element, the side surface of the main body part facing the control circuit board and the light inlet part form the clearance space, and the light outlet part is at least partially connected to the side of the second main body part away from the clearance space, and the light outlet part is further arranged in the shell.
[0040] In a second aspect, the embodiments of the present application further provide a skin care device kit, comprising:
[0041] A skin care device; and,
[0042] The sterilization device according to any one of the above.
[0043] In the embodiment of the present application, on the one hand, when the disinfection assembly disinfects the to-be-disinfected member in the first accommodating groove, the disinfection device can block disinfection light from leaking from the groove opening of the first accommodating groove through the two light-blocking structures of the first deformable light-blocking part and the second deformable light-blocking part, thereby achieving a double light leakage prevention effect; on the other hand, the second deformable light-blocking part adopts a circular ring structure, and after the to-be-disinfected member is placed in the first accommodating groove, the second deformable light-blocking part can adaptively deform to seal the gap between the to-be-disinfected member and the inner circumferential surface of the first accommodating groove, thereby improving the light leakage prevention effect. BRIEF DESCRIPTION OF DRAWINGS
[0044] The technical solutions of the present application and the beneficial effects thereof will become apparent through the following detailed description of the specific embodiments of the present application in conjunction with the accompanying drawings.
[0045] Figure 1 A structure schematic diagram of a skin care device kit provided by the embodiment of the present application.
[0046] Figure 2 A Figure 1 A top view of the disinfection device shown in FIG. 1.
[0047] Figure 3 A Figure 2 A sectional view of the disinfection device shown in FIG. 1 along the direction of A-A.
[0048] Figure 4 A Figure 3 A local enlarged view of X in FIG. 1.
[0049] Figure 5 A Figure 3 A structure schematic diagram of the light-blocking member of the disinfection device shown in FIG. 1.
[0050] Figure 6 A Figure 3 A structure schematic diagram of the disinfection assembly and the light-reflecting member of the disinfection device shown in FIG. 1.
[0051] Figure 7 A Figure 1 A perspective view of the disinfection device shown in FIG. 1.
[0052] Figure 8 A Figure 7 A structure schematic diagram of the control assembly and the mechanical switch of the disinfection device shown in FIG. 1.
[0053] Figure 9 A Figure 7 An exploded view of the disinfection device shown in FIG. 1 Figure 1 .
[0054] Figure 10 A Figure 7 An exploded view of the disinfection device shown in FIG. 1 Figure 2 .
[0055] Reference Signs List:
[0056] 100, disinfection device;
[0057] 11, housing; 111, first accommodating groove; 112, first ring wall; 113, second ring wall; 114, light-transmitting part; 115, mounting cavity; 116, second accommodating groove; 117, base; 1171, non-slip pad; 118, bearing seat; 119, reinforcing rib; 1191, first reinforcing rib; 1192, second reinforcing rib; 12, disinfection assembly; 121, sensor; 122, blue light lamp; 123, ultraviolet lamp; 13, light shielding piece; 131, first deformable light shielding part; 132, second deformable light shielding part; 133, first main body part; 134, connecting part; 135, pull rod; 14, light-transmitting sheet; 15, light reflecting piece; 16, mechanical switch; 161, first button; 162, elastic arm; 163, switch terminal; 171, second button; 172, energy storage assembly; 18, control assembly; 181, control circuit board; 182, light-emitting element; 183, functional device; 19, light guide piece; 191, second main body part; 192, light inlet part; 193, light outlet part; 194, position-avoiding space;
[0058] 200, skin care device. DETAILED DESCRIPTION
[0059] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0060] Please refer to Figure 1 , in a first aspect, the embodiments of the present application provide a disinfection device 100 of a skin care device 200. The skin care device 200 can include light-illuminating skin care devices such as hair removal devices, skin rejuvenation devices, etc. The skin care device 200 can also include electrically stimulating skin care devices such as radio frequency skin care devices, etc. Of course, the skin care device 200 can also include water-light devices, etc., and the embodiments of the present application do not limit this.
[0061] Please continue to refer to Figure 2 and Figure 3 The disinfection device 100 includes a housing 11, a disinfection assembly 12, a first deformable light shielding part 131, and a second deformable light shielding part 132.
[0062] The shell 11 is provided with a first accommodating groove 111 for accommodating a to-be-disinfected member, which includes the skin care device 200 and / or an accessory of the skin care device 200. It can be understood that the accessory of the skin care device 200 can include an auxiliary head of the skin care device 200, that is, a head mounted to the outer surface of the working head of the skin care device 200, so that the skin care device 200 can adapt to more use requirements through the externally mounted auxiliary head.
[0063] The disinfection assembly 12 is used to generate disinfection light in the first accommodating groove 111 to disinfect the to-be-disinfected member accommodated in the first accommodating groove 111. In turn, the user can place the single skin care device 200 or the single accessory or the accessory mounted on the skin care device 200 into the first accommodating groove 111 according to actual needs during use, and the disinfection light generated by the disinfection assembly 12 is used for disinfection, which is not limited in the embodiments of the present application.
[0064] The first deformable light shielding part 131 is arranged in the first accommodating groove 111, and is used to block the disinfection light in the first accommodating groove 111 from being emitted from the slot opening of the first accommodating groove 111.
[0065] The second deformable light shielding part 132 is arranged at one side of the first deformable light shielding part 131 close to the slot opening of the first accommodating groove 111, and is in the form of a circular ring and is arranged around the inner circumferential surface of the first accommodating groove 111. The second deformable light shielding part 132 is used to seal the gap between the to-be-disinfected member and the inner circumferential surface of the first accommodating groove 111, so as to block the disinfection light in the first accommodating groove 111 from being emitted from the slot opening of the first accommodating groove 111.
[0066] On the one hand, when the disinfection assembly 12 disinfects the to-be-disinfected member in the first accommodating groove 111, the disinfection device 100 can block the disinfection light from leaking from the slot opening of the first accommodating groove 111 through the two light shielding structures of the first deformable light shielding part 131 and the second deformable light shielding part 132, thereby achieving a double light leakage prevention effect. On the other hand, based on the structure of the second deformable light shielding part 132 in the form of a circular ring, when the to-be-disinfected member is placed into the first accommodating groove 111, the second deformable light shielding part 132 can adaptively deform to seal the gap between the to-be-disinfected member and the inner circumferential surface of the first accommodating groove 111, thereby improving the light leakage prevention effect.
[0067] In some embodiments, the first deformable light shielding part 131 is also used to support the to-be-disinfected member.
[0068] It can be understood that for skin care devices, on the one hand, based on the needs of consumers for appearance modeling, on the other hand, based on the care needs of the skin to be treated for special parts (such as eyebrows, underarms, etc.), the working head and / or accessories of the skin care device 200 are usually non-circular structures. On this basis, in order to ensure that the first deformable light shielding part 131 can provide stable and reliable support for the working head and / or accessories of the skin care device 200 (i.e. the to-be-disinfected part), the first deformable light shielding part 131 usually needs to be made into a contoured structure that matches the contour of the to-be-disinfected part, and therefore the first deformable light shielding part 131 usually needs to be made into a non-circular structure. Then, when the user places the to-be-disinfected part into the first accommodating groove 111, if there is an error in the placement angle of the to-be-disinfected part, it will cause the fit between the first deformable light shielding part 131 and the to-be-disinfected part to decrease, thereby causing part of the disinfecting light to be emitted from the gap between the first deformable light shielding part 131 and the to-be-disinfected part to the slot of the first accommodating groove 111. At this time, since the second deformable light shielding part 132 is arranged in a circular ring shape on the side of the first deformable light shielding part 131 close to the slot of the first accommodating groove 111, the second deformable light shielding part 132 can well seal the gap between the to-be-disinfected part and the inner circumferential surface of the first accommodating groove 111 even if there is a certain deviation in the placement angle of the to-be-disinfected part, thereby improving the light leakage prevention effect.
[0069] As can be seen, through the cooperation of the first deformable light shielding part 131 and the second deformable light shielding part 132, not only can the to-be-disinfected part be well supported and positioned, but also the disinfecting light in the first accommodating groove 111 can be effectively prevented from leaking.
[0070] The above is a general introduction to the technical solutions of the embodiments of the present application. Next, the first deformable light shielding part 131 and the second deformable light shielding part 132 will be introduced.
[0071] Please continue to refer to Figure 4 and Figure 5 , the disinfection device 100 can include a light shielding part 13. The light shielding part 13 includes a first main body part 133, which is arranged around the inner circumferential surface of the first accommodating groove 111. At least one of the first deformable light shielding part 131 and the second deformable light shielding part 132 is integrally formed with the first main body part 133 and protrudes from the inner circumferential surface of the first main body part 133.
[0072] That is, it can be that only the first deformable light shielding part 131 is integrally formed with the first main body part 133 and protrudes from the inner circumferential surface of the first main body part 133, it can be that only the second deformable light shielding part 132 is integrally formed with the first main body part 133 and protrudes from the inner circumferential surface of the first main body part 133, and it can be that both the first deformable light shielding part 131 and the second deformable light shielding part 132 are integrally formed with the first main body part 133 and protrude from the inner circumferential surface of the first main body part 133, and the embodiments of the present application do not limit this.
[0073] When the first deformable light shielding part 131 is integrally formed with the first main body part 133 and protrudes from the inner circumferential surface of the first main body part 133, it can also be simply understood that the first deformable light shielding part 131 is a flange formed by inwardly bending the first main body part 133 or a protruding rib formed by inwardly protruding the first main body part 133. Therefore, on the one hand, the first deformable light shielding part 131 can protrude from the inner circumferential surface of the first main body part 133 to support the side surface of the to-be-disinfected member toward the bottom of the first accommodating groove 111; on the other hand, the first deformable light shielding part 131 has low strength and is easy to deform, and the first deformable light shielding part 131 that is easy to deform can better fit the surface of the to-be-disinfected member, thereby reducing or even eliminating the gap between the to-be-disinfected member and the first deformable light shielding part 131, and thereby improving the problem that the disinfecting light is easily leaked through the gap between the to-be-disinfected member and the first deformable light shielding part 131.
[0074] When the second deformable light shielding part 132 is integrally formed with the first main body part 133 and protrudes from the inner circumferential surface of the first main body part 133, it can also be simply understood that the second deformable light shielding part 132 is a flange formed by inwardly bending the first main body part 133 or a protruding rib formed by inwardly protruding the first main body part 133. Therefore, the second deformable light shielding part 132 has low strength and is easy to deform, and the second deformable light shielding part 132 that is easy to deform can better fit the surface of the to-be-disinfected member, thereby reducing or even eliminating the gap between the to-be-disinfected member and the second deformable light shielding part 132, and thereby improving the problem that the disinfecting light is leaked through the gap between the to-be-disinfected member and the second deformable light shielding part 132.
[0075] The light shielding member 13 can be a light shielding silica gel member, a light shielding rubber member, or the like, and the embodiments of the present application do not limit this.
[0076] In some embodiments, the outer end edge of the first deformable light shielding part 131 is connected to the side end edge of the first main body part 133 close to the bottom of the first accommodating groove 111. Therefore, it can also be simply understood that the first deformable light shielding part 131 is a flange formed by inwardly bending the first main body part 133.
[0077] In some embodiments, the inner end edge of the first deformable light shielding part 131 is inclined toward the groove opening of the first accommodating groove 111, so that the first deformable light shielding part 131 can support the side surface of the to-be-disinfected member toward the bottom of the first accommodating groove 111.
[0078] In some embodiments, the thickness of the first deformable light-shielding part 131 is less than the thickness of the first main body part 133, thereby making the first deformable light-shielding part 131 less strong and easier to deform. As a result, the easily deformable first deformable light-shielding part 131 can better fit the surface of the part to be disinfected, thereby reducing or even eliminating the disinfection light leakage from the gap between the part to be disinfected and the first deformable light-shielding part 131.
[0079] In some embodiments, the outer edge of the second deformable light-shielding portion 132 is connected to the side edge of the first main body portion 133 near the opening of the first receiving groove 111. Therefore, it can also be simply understood that the second deformable light-shielding portion 132 is a flange formed by bending the first main body portion 133 inward.
[0080] Therefore, when the first deformable light-shielding part 131 and the second deformable light-shielding part 132 are integrally formed with the first main body part 133, the first deformable light-shielding part 131 can be a flange formed at the lower edge of the first main body part 133, and the second deformable light-shielding part 132 can be a flange formed at the upper edge of the first main body part 133, so that the light-shielding part 13 has the advantages of simple structure, easy molding and convenient installation.
[0081] In some embodiments, the inner edge of the second deformable light-shielding part 132 is inclined toward the bottom of the first receiving groove 111, so that the first deformable light-shielding part 131 can be smoothly pushed toward the bottom of the groove during the process of placing the item to be disinfected into the first receiving groove 111, thereby making it easier to insert the item to be disinfected into the first receiving groove 111.
[0082] In some embodiments, the thickness of the second deformable light-shielding portion 132 is less than the thickness of the first main body portion 133. Therefore, the second deformable light-shielding portion 132 has lower strength and is easier to deform. As a result, the easily deformable second deformable light-shielding portion 132 can better fit the surface of the part to be disinfected, thereby reducing or even eliminating the disinfection light leakage from the gap between the part to be disinfected and the second deformable light-shielding portion 132.
[0083] In some embodiments, the light-shielding member 13 further includes a connecting portion 134, which is connected to the outer periphery of the first main body portion 133. The inner wall of the first receiving groove 111 includes a first annular wall 112 and a second annular wall 113. The first annular wall 112 is located on one side of the second annular wall 113 along the depth direction of the first receiving groove 111, and the connecting portion 134 is sandwiched between the first annular wall 112 and the second annular wall 113.
[0084] Taking the opening of the first receiving groove 111 facing upward as an example, the connecting part 134 can be clamped and fixed from both the upper and lower sides by the upper first annular wall 112 and the lower second annular wall 113, thereby realizing the installation and fixing of the light-shielding member 13.
[0085] Please combine them together Figure 3 , Figure 4 and Figure 5 In some embodiments, the light-shielding member 13 further includes a pull rod 135, the length-to-diameter ratio of the pull rod 135 being greater than or equal to 5, and the pull rod 135 passing through the housing 11 so that the first main body 133 is fixedly disposed on the inner circumferential surface of the first receiving groove 111.
[0086] Taking the manual assembly of the disinfection device 100 by the operator as an example, the operator can pass the free end of the pull rod 135 through the corresponding hole on the housing 11, and then pull the pull rod 135 to install the light shield 13 into place, thereby fixing the first main body 133 to the inner circumferential surface of the first receiving groove 111. In this process, since the length-to-diameter ratio of the pull rod 135 is greater than or equal to 5, the pull rod 135 is relatively slender, which makes it convenient for the operator to pull the free end of the pull rod 135.
[0087] For example, the length-to-diameter ratio of the pull rod 135 is 5, 5.3, 5.5, 5.94, 6, 6.5, 6.7, 7.2, 7.5 or 8, etc., and this application embodiment does not limit this.
[0088] In some embodiments, the pull rod 135 can be connected to the connecting portion 134. Therefore, taking the housing 11 as an example, which includes a first housing with a first annular wall 112 and a second housing with a second annular wall 113, one assembly method for the light-shielding member 13 can be as follows:
[0089] First, after the pull rod 135 is inserted through the first housing, the pull rod 135 is pulled so that the first main body 133 fits against the first annular wall 112 and the connecting part 134 abuts against the upper edge of the first annular wall 112; then, the second housing is connected to the first housing so that the second annular wall 113 and the first annular wall 112 clamp and fix the connecting part 134.
[0090] In some embodiments, the inner wall of the first receiving groove 111 is provided with a light-transmitting portion 114, and the disinfection component 12 is used to generate disinfection light rays that are projected from the light-transmitting portion 114 into the first receiving groove 111. Therefore, the disinfection component 12 can generate disinfection light rays acting on the first receiving groove 111 from outside the first receiving groove 111, thereby avoiding direct contact between the disinfection component 12 and the items to be disinfected in the first receiving groove 111, which could result in collision damage or contamination.
[0091] In some embodiments, the first deformable light-shielding portion 131 is disposed around the light-transmitting portion 114. Therefore, the light emitted by the disinfection assembly 12 into the first receiving groove 111 is confined between the surface of the item to be disinfected facing the light-transmitting portion 114 and the first deformable light-shielding portion 131, thereby allowing the first deformable light-shielding portion 131 to block the disinfection light in the first receiving groove 111 from escaping from the opening of the first receiving groove 111.
[0092] In some embodiments, the light-transmitting part 114 is disposed on the bottom wall of the first receiving groove 111, and the first deformable light-shielding part 131 is used to support the side surface of the item to be disinfected facing the light-transmitting part 114, thereby providing better support and positioning effect for the item to be disinfected.
[0093] In some embodiments, the first deformable light-shielding part 131 is a polygonal ring structure, so that the first deformable light-shielding part 131 can be adapted to the working head or accessory of the skin care device which has a polygonal structure.
[0094] For example, the first deformable light-shielding part 131 can be a pentagonal ring structure, a hexagonal ring structure, a heptagonal ring structure, or an octagonal ring structure. This application embodiment does not limit this.
[0095] In some embodiments, the light-transmitting part 114 includes a light-transmitting hole, and the disinfection device 100 also includes a light-transmitting sheet 14, which covers the light-transmitting hole. Thus, the light-transmitting hole can be sealed by the light-transmitting sheet 14 to prevent foreign objects from passing through the light-transmitting hole and causing contamination or damage to the disinfection component 12. Of course, the light-transmitting sheet 14 can also serve as a dustproof and waterproof function.
[0096] In some embodiments, the light-transmitting sheet 14 may be polygonal. For example, the shape of the light-transmitting sheet 14 may be similar to the shape of the light-transmitting hole, and this application embodiment does not limit this.
[0097] In some embodiments, the light-transmitting sheet 14 can be circular, which gives it the advantages of being easy to manufacture and low in cost. For example, the light-transmitting sheet 14 can be made by directly slicing from a cylindrical light-transmitting material blank.
[0098] The light-transmitting sheet 14 can be made of glass, acrylic, or any other light-transmitting material; this application embodiment does not limit this.
[0099] Of course, in some embodiments, at least a portion of the housing 11 may be made of a light-transmitting material to form a light-transmitting portion 114. Accordingly, the disinfection device 100 may not need to have a light-transmitting sheet 14, and this application embodiment does not limit this.
[0100] Please refer to this as well. Figure 4 and Figure 6In some embodiments, the housing 11 further includes a mounting cavity 115, within which the disinfection component 12 is disposed. The disinfection device 100 also includes a reflector 15. The reflector 15, disposed within the mounting cavity 115, reflects at least a portion of the disinfection light generated by the disinfection component 12 toward the light-transmitting portion 114. Thus, the reflector 15 increases the amount of disinfection light generated by the disinfection component 12 directed toward the light-transmitting portion 114, thereby improving the disinfection effect on the item to be disinfected.
[0101] For example, the reflector 15 may include a third ring wall, one end of which surrounds the light emitting device of the disinfection assembly 12 (such as blue light and ultraviolet light, which will be described below), and the other end of which surrounds the light-transmitting part 114, so that most of the disinfection light generated by the disinfection assembly 12 can be focused into the light-transmitting part 114 and thus enter the first receiving groove 111.
[0102] As mentioned above, in some embodiments, the light-transmitting part 114 includes a light-transmitting hole, and the disinfection device 100 also includes a light-transmitting sheet 14, which covers the light-transmitting hole. The light-transmitting sheet 14 can be fixed to the outer wall of the first receiving groove 111.
[0103] Understandably, if the light-transmitting sheet 14 is bonded to the inner wall of the first receiving groove 111 with glue, adhesive, etc., it is usually necessary to set a screen printing structure in the bonding area of the light-transmitting sheet 14 to cover the glue and adhesive in the bonding area. In contrast, the light-transmitting sheet 14 in this embodiment can be bonded to the outer wall of the first receiving groove 111 so that the bonding area of the light-transmitting sheet 14 is covered by the outer wall of the first receiving groove 111, so that the light-transmitting sheet 14 does not need to be screen printed, thereby reducing the manufacturing cost of the disinfection device 100.
[0104] In some embodiments, the light-transmitting sheet 14 can be sandwiched between the outer wall of the first receiving groove 111 and the reflector 15. In this case, the light-transmitting sheet 14 and the outer wall of the first receiving groove 111 can be bonded together or not; this application does not limit this.
[0105] In some embodiments, the reflector 15 is snapped onto the outer wall of the first receiving groove 111, thereby giving the reflector 15 the advantage of easy installation.
[0106] One way to install the reflector 15 and the light-transmitting sheet 14 is as follows: First, the light-transmitting sheet 14 is bonded to the outer wall of the first receiving groove 111; then the reflector 15 is snapped onto the outer wall of the first receiving groove 111, so that the light-transmitting sheet 14 is sandwiched between the outer wall of the first receiving groove 111 and the reflector 15.
[0107] In some embodiments, the number of disinfection components 12 is at least one. Therefore, when the number of disinfection components 12 is at least two, the disinfection effect of the disinfection device 100 can be improved by having a larger number of disinfection components 12.
[0108] Please continue to refer to this. Figure 6 In some embodiments, at least one disinfection component 12 may include a blue light lamp 122, an ultraviolet lamp 123, etc., but this application embodiment does not limit this.
[0109] In some embodiments, at least one disinfection component 12 includes at least one sensor 121 for detecting whether the item to be disinfected is accommodated in the first receiving slot 111. Furthermore, by integrating the sensor 121 onto the disinfection component 12, the disinfection device 100 can have the advantage of a compact structure.
[0110] Sensor 121 may include optical sensors such as infrared sensors, laser rangefinders, etc., but this application embodiment does not limit this.
[0111] In some embodiments, at least one disinfection component 12 includes at least two ultraviolet lamps 123. The at least two ultraviolet lamps 123 are arranged circumferentially around the sensor 121, thereby making the brightness of the disinfection light emitted from different circumferential positions of the sensor 121 onto the object to be disinfected more uniform, so as to improve the disinfection effect.
[0112] In some embodiments, at least one disinfection component 12 includes at least two blue light lamps 122, which are arranged circumferentially around the sensor 121, thereby making the brightness of the disinfection light emitted from different circumferential positions of the sensor 121 to the item to be disinfected more uniform, so as to improve the disinfection effect.
[0113] It is also understandable that when the disinfection component 12 includes both an ultraviolet lamp 123 and a blue light lamp 122, since ultraviolet light is invisible light and blue light is visible light, the user can determine whether ultraviolet light will also leak by checking whether blue light leaks at the opening in the first receiving slot 111.
[0114] In some embodiments, the blue light lamp 122 and the ultraviolet light lamp 123 are arranged alternately around the sensor 121 in a circumferential manner to make the disinfection light generated by the disinfection assembly 12 more uniform.
[0115] Please continue to refer to this. Figure 7 In some embodiments, the disinfection device 100 further includes a mechanical switch 16, which is electrically connected to the disinfection component 12 for controlling the switching of the disinfection component 12.
[0116] Therefore, in actual use, the user can only activate the disinfection component 12 via the second button 171 on the disinfection device 100 when both the sensor 121 and the mechanical switch 16 of the disinfection component 12 are triggered. Thus, compared to using either the sensor 121 or the mechanical switch 16 alone to control the operation of the disinfection component 12, this embodiment effectively prevents the disinfection component 12 from being mistakenly opened and causing harm to the user, thereby improving the safety and reliability of the disinfection component 12.
[0117] The mechanical switch 16 may include micro switches, limit switches, etc., but this application embodiment does not limit it.
[0118] In some embodiments, the housing 11 further includes a second receiving groove 116, the first receiving groove 111 and the second receiving groove 116 being used to receive different areas of the skin care device 200 for placing the skin care device 200.
[0119] Therefore, the mechanical switch 16 is at least partially located within the second receiving slot 116, so that the portion of the skin care device 200 residing within the second receiving slot 116 can trigger the mechanical switch 16. Furthermore, the sterilization component 12 can only be activated when two different parts of the skin care device trigger the sensor 121 and the mechanical switch 16 respectively. For example, the head of the skin care device 200 can be placed in the first receiving slot 111 and trigger the sensor 121, while the tail of the skin care device 200 can be placed in the second receiving slot 116 and trigger the mechanical switch 16. In this case, since both the head and tail of the skin care device 200 are properly positioned, the overall orientation of the skin care device 200 is essentially correct.
[0120] Please continue to refer to this. Figure 8 In some embodiments, the disinfection device 100 further includes a control circuit board 181, and the mechanical switch 16 includes a switch terminal 163 and a first button 161. The switch terminal 163 is disposed on the control circuit board 181, and the first button 161 passes through the groove wall of the second receiving groove 116 so as to be at least partially located in the second receiving groove 116, thereby enabling the portion of the skin care device 200 received in the second receiving groove 116 to trigger the mechanical switch 16 by applying pressure to the first button 161, that is, by applying pressure to the first button 161 so as to press the switch terminal 163 to trigger the mechanical switch 16.
[0121] Please combine them together Figure 7 and Figure 8In some embodiments, the first button 161 is provided with an elastic arm 162, which abuts against the control circuit board 181 and / or the housing 11 to push the first button 161 into the second receiving groove 116. When the corresponding part of the skin care device 200 leaves the second receiving groove 116, the elastic arm 162 can elastically recover to drive the first button 161 to reset.
[0122] In some embodiments, the mechanical switch 16 includes a first button 161, which is disposed through the wall of the second receiving groove 116 so as to be at least partially located within the second receiving groove 116. The first button 161 is made of a light-shielding material, thereby preventing light leakage at the first button 161.
[0123] For example, the first button 161 can be a light-shielding silicone part, rubber part, etc., and this application embodiment does not limit this.
[0124] Please continue to refer to this. Figure 9 In some embodiments, the housing 11 includes a base 117 and a support 118. One end of the support 118 in the length direction is connected to one end of the base 117 in the length direction. The support 118 and the base 117 are inclined. The side of the support 118 away from the base 117 is provided with a first receiving groove 111 for placing the skin care device 200.
[0125] Understandably, if the disinfection device 100 only has a base 117 and the skin care device 200 is placed horizontally on the base 117, it would be inconvenient for the user to pick up the skin care device 200. If the disinfection device 100 only has a base 117 and the skin care device 200 is inserted vertically on the base 117, the center of gravity of the skin care device 200 would be too high, making it easy to tip over or be knocked over by the user. In contrast, in this embodiment, since the support 118 is tilted, the skin care device 200 can also be placed tilted on the support 118. Therefore, it is convenient for the user to pick up the skin care device 200, and the center of gravity of the skin care device 200 is lower, making the placement of the skin care device 200 more stable and reliable.
[0126] In some embodiments, at least one of the base 117 and the support 118 is provided with a reinforcing rib 119, which extends along the length direction of the corresponding base 117 or support 118.
[0127] Therefore, when the base 117 is provided with reinforcing ribs 119, the strength of the base 117 can be improved to avoid damage to the base 117. When the bearing seat 118 is provided with reinforcing ribs 119, the free end of the bearing seat 118 in the length direction can be prevented from bending downwards or even breaking.
[0128] The reinforcing rib 119 includes a first reinforcing rib 1191, which is at least partially disposed on the side of the base 117 near the support seat 118.
[0129] The first reinforcing rib 1191 can have a honeycomb structure, so that the first reinforcing rib 1191 has the advantage of high structural strength.
[0130] Please continue to refer to this. Figure 10 The reinforcing rib 119 includes a second reinforcing rib 1192, which is at least partially disposed on the side of the bearing seat 118 near the base 117.
[0131] The second reinforcing rib 1192 may include a first rib and a second rib that are crisscrossed, with the first rib extending along the length of the bearing seat 118.
[0132] In some embodiments, the disinfection device 100 also includes an energy storage component 172, such as a battery. The energy storage component 172 is disposed in the support 118 and connected to or abutting against the second reinforcing rib 1192, so that the second reinforcing rib 1192 can also be reused for the installation and fixation of the energy storage component 172, so that the disinfection device 100 has the advantage of simple structure.
[0133] like Figure 9 As shown, in some embodiments, at least two anti-slip pads 1171 are provided at intervals on the side surface of the base 117 opposite to the support seat 118.
[0134] It is understandable that if the surface of the base 117 facing away from the support 118 is completely covered by an anti-slip pad 1171, during the process of the anti-slip pad 1171 adhering to the surface of the base 117 facing away from the support 118, there may be space between the anti-slip pad 1171 and the surface of the base 117 facing away from the support 118 that cannot be discharged, resulting in uneven adhesion of the anti-slip pad 1171. In contrast, the two anti-slip pads 1171 in the embodiments of this application have the advantages of low cost and easy installation.
[0135] like Figure 8 As shown, in some embodiments, the disinfection device 100 further includes a control component 18 and a light guide 19.
[0136] The control assembly 18 includes a control circuit board 181, a light-emitting element 182, and a functional device 183. The control circuit board 181 is disposed within the housing 11. The light-emitting element 182 and the functional device 183 are disposed on the control circuit board 181. A light guide 19 passes through the housing 11 and is used to guide the light generated by the light-emitting element 182 to the outside of the housing 11. The light guide 19 also has a clearance space 194 facing the control circuit board 181; on the plane where the control circuit board 181 is located, the orthographic projection of the clearance space 194 and the orthographic projection of the functional device 183 at least partially coincide.
[0137] Furthermore, the light guide 19 can avoid the functional device 183 through the clearance space, so that the light guide 19 and the functional device 183 can be arranged more compactly in the housing 11, thereby facilitating the miniaturization design of the disinfection device 100.
[0138] For example, the light guide 19 includes a second main body 191, a light-incident portion 192, and a light-emitting portion 193. The second main body 191 is disposed within the housing 11. The light-incident portion 192 protrudes from the surface of the second main body 191 facing the control circuit board 181, and the surface of the light-incident portion 192 facing away from the second main body 191 faces the light-emitting element 182. A clearance space 194 is formed between the surface of the main body facing the control circuit board 181 and the light-incident portion 192. The light-emitting portion 193 is at least partially connected to the side of the second main body 191 facing away from the clearance space 194, and the light-emitting portion 193 also passes through the housing 11.
[0139] Taking the light guide 19 located above the control circuit board 181 as an example, the light-emitting element 182 and the functional device 183 can be arranged side by side below the second main body 191. The light-incident part 192 is located between the second main body 191 and the light-emitting element 182, and the light-emitting part 193 is located on the side of the second main body 191 away from the functional device 183 and directly above the functional device 183. This allows the light generated by the light-emitting element 182 to be emitted to the outside of the housing 11 through the light-incident part 192, the second main body 191 and the light-emitting part 193 in sequence.
[0140] Functional device 183 includes electrical connectors, such as USB (Universal Serial Bus) sockets, DC (direct current) sockets, or aviation sockets, etc., which are not limited in this application embodiment.
[0141] The functional device 183 is mounted on the side of the control circuit board 181 facing or away from the clearance space 194, and this application embodiment does not limit this.
[0142] Secondly, embodiments of this application also provide a skin care device 200 kit. The skin care device 200 kit includes a skin care device 200 and a disinfection device 100, wherein the disinfection device 100 is the disinfection device 100 described in the first aspect.
[0143] Since the disinfection device 100 is the disinfection device 100 described in the first aspect, when the disinfection component 12 disinfects the item to be disinfected in the first receiving groove 111, the disinfection device 100 can block the disinfection light from leaking from the opening of the first receiving groove 111 through the two light-shielding structures of the first deformable light-shielding part 131 and the second deformable light-shielding part 132, thereby achieving a double anti-leakage effect; on the other hand, the second deformable light-shielding part 132 adopts a ring-shaped structure. When the item to be disinfected is placed in the first receiving groove 111, the second deformable light-shielding part 132 can undergo adaptive deformation to seal the gap between the item to be disinfected and the inner circumferential surface of the first receiving groove 111, thereby improving the anti-leakage effect.
[0144] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.
[0145] The above provides a detailed description of the disinfection device 100 of the skin care device 200 provided in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. A disinfection device for a skin care apparatus, characterized in that, include: The housing has a first receiving groove for receiving a component to be disinfected, the component to be disinfected including a skin care device and / or an accessory of the skin care device; A disinfection component is used to generate disinfection light in the first receiving tank to disinfect the item to be disinfected contained in the first receiving tank. A first deformable light-shielding part is disposed in the first receiving groove, and the first deformable light-shielding part is used to block the disinfection light in the first receiving groove from being emitted from the opening of the first receiving groove. and, The second deformable light-shielding part is disposed at intervals on the side of the first deformable light-shielding part near the opening of the first receiving groove. The second deformable light-shielding part is annular and surrounds the inner circumferential surface of the first receiving groove. The second deformable light-shielding part is used to seal the gap between the part to be disinfected and the inner circumferential surface of the first receiving groove, so as to block the disinfection light in the first receiving groove from escaping from the opening of the first receiving groove.
2. The disinfection device according to claim 1, characterized in that, The disinfection device includes a light-shielding component, which includes a first main body portion that surrounds the inner circumferential surface of the first receiving groove. In this embodiment, at least one of the first deformable light-shielding portion and the second deformable light-shielding portion is integrally formed with the first main body portion and protrudes from the inner peripheral surface of the first main body portion.
3. The disinfection device according to claim 2, characterized in that, The outer edge of the first deformable light-shielding portion is connected to one side edge of the first main body portion near the bottom of the first receiving groove, and the inner edge of the first deformable light-shielding portion is inclined toward the opening of the first receiving groove; and / or, The thickness of the first deformable light-shielding portion is less than the thickness of the first main body portion; and / or, The outer edge of the second deformable light-shielding part is connected to the side edge of the first main body near the opening of the first receiving groove, and the inner edge of the first deformable light-shielding part is inclined toward the bottom of the first receiving groove; and / or, The thickness of the second deformable light-shielding portion is less than the thickness of the first main body portion; and / or, The light-shielding member further includes a connecting portion connected to the outer periphery of the first main body; wherein the inner wall of the first receiving groove includes a first annular wall and a second annular wall, the first annular wall being located on one side of the second annular wall along the depth direction of the first receiving groove, and the connecting portion being sandwiched between the first annular wall and the second annular wall; and / or, The light-shielding component also includes a pull rod, the length-to-diameter ratio of which is greater than or equal to 5. The pull rod passes through the housing so that the first main body is fixedly disposed on the inner circumferential surface of the first receiving groove.
4. The disinfection device according to claim 1, characterized in that, The inner wall of the first receiving groove is provided with a light-transmitting part, and the disinfection component is used to generate the disinfection light rays that are projected from the light-transmitting part into the first receiving groove. The first deformable light-shielding part is arranged around the light-transmitting part.
5. The disinfection device according to claim 4, characterized in that, The light-transmitting part is disposed on the bottom wall of the first receiving groove, and the first deformable light-shielding part is used to support the side surface of the item to be disinfected facing the light-transmitting part. And / or, The first deformable light-shielding part is a polygonal ring structure; and / or, The light-transmitting part includes a light-transmitting hole, and the disinfection device also includes a light-transmitting sheet, which covers the light-transmitting hole.
6. The disinfection device according to claim 4, characterized in that, The housing also has an installation cavity, and the disinfection component is disposed within the installation cavity; The disinfection device further includes a reflector disposed within the mounting cavity, the reflector being used to reflect at least a portion of the disinfection light generated by the disinfection component toward the light-transmitting portion.
7. The disinfection device according to claim 6, characterized in that, The light-transmitting part includes a light-transmitting hole, and the disinfection device further includes a light-transmitting sheet, which covers the light-transmitting hole and is sandwiched between the outer wall of the first receiving groove and the reflective element; and / or The reflector is snapped onto the outer wall of the first receiving groove.
8. The disinfection device according to claim 1, characterized in that, The number of disinfection components is at least one, and at least one disinfection component includes: At least one sensor is provided for detecting whether the item to be disinfected is placed in the first receiving slot; At least two blue LEDs are arranged circumferentially around the sensor; and, At least two ultraviolet lamps are arranged circumferentially around the sensor.
9. The disinfection device according to any one of claims 1 to 8, characterized in that, The disinfection device further includes a mechanical switch, which is electrically connected to the disinfection component to control the switching of the disinfection component; wherein, The housing further includes a second receiving slot. The first receiving slot and the second receiving slot are respectively used to receive different areas of the skin care device for placing the skin care device. The mechanical switch is at least partially located within the second receiving slot, such that the portion of the skin care device received within the second receiving slot can trigger the mechanical switch; and / or, The disinfection device further includes a control circuit board. The mechanical switch includes a switch terminal and a first button. The switch terminal is disposed on the control circuit board. The first button passes through the wall of the second receiving groove so as to be at least partially located within the second receiving groove. The first button has an elastic arm, which abuts against the control circuit board and / or the housing to push the first button toward the second receiving groove; and / or, The mechanical switch includes a first button, which is inserted through the wall of the second receiving groove so as to be at least partially located within the second receiving groove, and the first button is made of a light-shielding material.
10. The disinfection apparatus according to any one of claims 1 to 8, characterized in that, The housing includes a base and a support seat. One end of the support seat is connected to one end of the base in the length direction. The support seat is inclined to the base. The side of the support seat away from the base is provided with the first receiving groove for placing the skin care device. At least one of the base and the support seat is provided with a reinforcing rib, which extends along the length direction of the corresponding base or the support seat.
11. The disinfection apparatus according to any one of claims 1 to 8, characterized in that, The disinfection device further includes a control component and a light guide. The control component includes a control circuit board, a light-emitting element, and functional devices. The control circuit board is disposed within the housing, and the light-emitting element and functional devices are disposed on the control circuit board. The light guide passes through the housing and is used to guide the light generated by the light-emitting element to the outside of the housing. The light guide also has a clearance space facing the control circuit board; on the plane where the control circuit board is located, the orthographic projection of the clearance space and the orthographic projection of the functional devices at least partially coincide. The functional device includes an electrical connector; and / or, The functional device is mounted on the side of the control circuit board facing or away from the clearance space; and / or, The light guide includes a second main body, a light-incident part, and a light-emitting part. The second main body is disposed inside the housing. The light-incident part protrudes from the side surface of the second main body facing the control circuit board. The side surface of the light-incident part away from the second main body faces the light-emitting element. The clearance space is formed between the side surface of the main body facing the control circuit board and the light-incident part. The light-emitting part is at least partially connected to the side of the second main body away from the clearance space. The light-emitting part also passes through the housing.
12. A skin care device kit, characterized in that, include: Skin care devices; and, The disinfection device as described in any one of claims 1 to 11.