Disinfecting box and cosmetic kit
By setting an incident window and an external disinfection module on the inner wall of the storage slot of the disinfection box, combined with a light-blocking cup and a distance sensor, the problems of small disinfection range and light leakage are solved, achieving better disinfection effect and safety.
Patent Information
- Application Number
- CN202520189506.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-02-06
AI Technical Summary
The existing disinfection box has a disinfection lamp that is too close to the contact surface of the beauty device, resulting in a small disinfection range, poor disinfection effect, and easy leakage of disinfection light, which is not safe.
An incident window is set on the inner wall of the storage slot of the disinfection box, and the disinfection module is located outside the storage slot. The disinfection light shines into the storage slot through the incident window. Combined with a light-blocking cup to block the leakage light, a distance sensor is used to optimize the disinfection effect and safety.
It increases the disinfection range, improves the disinfection effect, reduces light leakage, and enhances safety, while avoiding structural complexity and increased costs.
Smart Images

Figure CN223969316U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of beauty equipment technology, and in particular to a sterilization box and beauty kit. Background Technology
[0002] Currently, most beauty devices are used through contact with the skin, making the skin-contacting parts prone to bacterial and viral growth. Therefore, these devices need to be disinfected periodically to prevent bacteria and viruses from affecting skin health. To facilitate disinfection, manufacturers have introduced disinfection boxes for beauty devices. Users simply place the device inside and close the lid to disinfect it.
[0003] Existing disinfection boxes typically consist of a box body and a lid. The box body has a storage slot for holding the beauty device. The lid closes to the box body to seal the opening of the storage slot. A disinfection lamp (such as an ultraviolet lamp) is installed on the inner wall of the storage slot. When disinfection of the beauty device is required, it is placed in the storage slot, the lid is closed, and the disinfection lamp is activated. The lamp then emits disinfecting light to disinfect the beauty device.
[0004] However, in existing disinfection boxes, when the beauty device is placed in the storage slot for disinfection, the distance between the disinfection lamp and the beauty device is very small. The disinfection lamp is almost touching the beauty device, and the area illuminated by the disinfection light is very small, which cannot cover the parts of the beauty device that need to be disinfected. As a result, the disinfection effect in some areas of the parts that need to be disinfected is very poor. Furthermore, the disinfection lamp is set on the inner wall of the storage slot, and the disinfection light is generated in the storage slot. The intensity of the disinfection light reaching the opening of the storage slot is relatively high. Therefore, the leakage of disinfection light from the gap between the lid and the box body is quite serious, which is unsafe. Utility Model Content
[0005] The main purpose of this application is to provide a disinfection box that aims to improve the disinfection effect and safety of the disinfection box.
[0006] To achieve the above objectives, the disinfection box proposed in this application includes:
[0007] The box body is provided with a storage slot for placing items to be disinfected, and the inner wall of the storage slot is provided with at least one entrance window;
[0008] A lid, connected to the box body, is used to seal or open the slot of the storage compartment;
[0009] The disinfection module is located inside the box and outside the storage slot. The disinfection module is spaced apart from and opposite to the incident window. The disinfection light of the disinfection module is emitted towards the incident window and enters the storage slot through the incident window.
[0010] In some embodiments, the size of the incident window is smaller than the size of the end of the item to be disinfected facing the incident window;
[0011] And / or,
[0012] The storage slot or the incident window is provided with a limiting member to prevent the item to be disinfected from extending into the incident window;
[0013] And / or,
[0014] The incident window is located on the side wall and / or bottom wall of the storage slot.
[0015] In some embodiments, the housing is provided with a light-blocking cup for blocking the disinfection light from leaking out from the periphery of the disinfection module. The bottom end of the light-blocking cup is located outside the storage groove, and the mouth end of the light-blocking cup is connected to the groove wall of the storage groove to align with the incident window.
[0016] The light-blocking cup has a clearance hole at its bottom, and the disinfection module is located in the clearance hole; or, the disinfection module is located on the inner wall of the bottom of the light-blocking cup.
[0017] In some embodiments, the size of the light-blocking cup gradually decreases from its rim to its bottom.
[0018] And / or,
[0019] The inner wall of the light-blocking cup is provided with a reflective coating or reflective film;
[0020] And / or,
[0021] The rim of the light-blocking cup is detachably connected to the wall of the storage slot.
[0022] In some embodiments, the inner wall of the incident window is provided with a plurality of flanges spaced apart along its circumference, and the cup mouth of the light-blocking cup is provided with a plurality of buckles offset from the flanges. The cup mouth of the light-blocking cup is engaged with the flanges, and the buckles are inserted through the incident window and fastened to the periphery of the incident window.
[0023] In some embodiments, a stepped area is formed between the flange and the inner wall of the storage groove. The cup mouth end is provided with an outwardly turned edge arranged circumferentially along the light-blocking cup. The buckle is provided on the side of the outwardly turned edge facing the bottom end of the cup. The outwardly turned edge is located in the stepped area and abuts against the flange. The buckle is fastened to the outer wall of the storage groove. The side of the outwardly turned edge facing the storage groove is flush with the inner wall of the storage groove.
[0024] In some embodiments, the light-blocking cup is integrally formed with the wall of the storage slot.
[0025] In some embodiments, the disinfection module includes at least one disinfection lamp;
[0026] Alternatively, the disinfection module includes at least one disinfection lamp and at least one diffuser, the diffuser being disposed on the light-emitting side of the disinfection lamp to expand the coverage range of the disinfection light of the disinfection module.
[0027] In some embodiments, the disinfection box further includes a distance sensor disposed inside the box. The distance sensor is located outside the storage slot and adjacent to the disinfection module. The signal transceiver of the distance sensor faces the incident window. The distance sensor and the disinfection module are disposed on the same circuit board.
[0028] And / or,
[0029] The disinfection box also includes a distance sensor located on the inner wall of the storage slot.
[0030] In some embodiments, the disinfection module includes two disinfection lamps, the distance sensor is positioned at the center of the incident window, and the two disinfection lamps are distributed on opposite sides of the distance sensor along the length of the incident window;
[0031] Alternatively, the disinfection module may include multiple disinfection lamps, with the distance sensor positioned at the center of the incident window, and the disinfection lamps evenly distributed around the periphery of the distance sensor.
[0032] In some embodiments, the disinfection box further includes a circuit board disposed inside the box, the circuit board being opposite to and spaced from the incident window, and the disinfection module being disposed on the side of the circuit board facing the incident window;
[0033] And / or,
[0034] The opening of the storage slot is chamfered, and the side of the box lid facing the storage slot has a raised layer that matches the shape of the opening of the storage slot. The edge of the raised layer is chamfered. When the box lid closes the opening of the storage slot, the edge of the box lid fits against the box body, and the chamfer of the raised layer is opposite to the chamfer of the opening of the storage slot.
[0035] This application also proposes a beauty kit, including at least one beauty device and the aforementioned sterilization box, wherein the storage slot of the sterilization box is used to place the beauty device.
[0036] The technical solution of the disinfection box in this application includes a box body, a box lid, and a disinfection module. The box body is provided with a storage slot for placing items to be disinfected. The box lid is connected to the box body and is used to seal or open the slot of the storage slot. The inner wall of the storage slot is provided with at least one incident window. The disinfection module is located inside the box body and outside the storage slot. The disinfection module and the incident window are spaced apart and opposite to each other. The disinfection light of the disinfection module is emitted towards the incident window and enters the storage slot through the incident window. The technical solution of this application involves creating an incident window on the inner wall of the storage slot, and placing the disinfection module in the internal space outside the storage slot of the box body. The disinfection module and the incident window are spaced apart and opposite each other. This effectively increases the distance between the disinfection module and the items to be disinfected (such as beauty devices) in the storage slot, thereby increasing the coverage area of the disinfection light of the disinfection module on the items to be disinfected and improving the disinfection effect on the parts of the items to be disinfected. In addition, since the disinfection light of the disinfection module enters the storage slot from outside through the incident window, the intensity of the disinfection light is weaker at the opening of the storage slot, reducing the leakage of disinfection light from the gap between the lid and the box body, and improving the safety of the disinfection box. Attached Figure Description
[0037] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0038] Figure 1 This is a schematic diagram of the structure of an embodiment of the disinfection box of this application;
[0039] Figure 2 This is a schematic diagram of the structure of one embodiment of the disinfection box of this application;
[0040] Figure 3 This is a front view of an embodiment of the disinfection box of this application;
[0041] Figure 4 for Figure 3 A cross-sectional schematic diagram of an embodiment in the AA direction;
[0042] Figure 5 This is a schematic diagram of another embodiment of the disinfection box of this application;
[0043] Figure 6 for Figure 3 A cross-sectional schematic diagram of another embodiment in the AA direction;
[0044] Figure 7 This is a top view of one embodiment of the disinfection box of this application;
[0045] Figure 8 for Figure 7 Cross-sectional view along the BB direction;
[0046] Figure 9 This is a schematic diagram of the structure of a light-blocking cup of the disinfection box of this application;
[0047] Figure 10 This is a schematic diagram of the structure of an embodiment of the lid of the disinfection box of this application;
[0048] Figure 11 This is a front view of another embodiment of the disinfection box of this application;
[0049] Figure 12 for Figure 11 A cross-sectional view along the CC direction. Detailed Implementation
[0050] The technical solutions in the embodiments of this application will be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0051] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0052] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the term "and / or" throughout the text includes three solutions; taking A and / or B as an example, it includes technical solution A, technical solution B, and a technical solution that simultaneously satisfies A and B. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.
[0053] Currently, most disinfection boxes used for sterilizing beauty devices have their disinfection lamps mounted on the inner wall of the storage compartment. When the device is placed in the compartment, the distance between the lamp and the device is too small, resulting in the lamp being too close to the device. This limits the effective area illuminated by the disinfection light, failing to cover the entire area of the device requiring disinfection, leading to poor disinfection. To address this issue, most manufacturers increase the number of disinfection lamps within the box, distributing them more evenly along the inner wall of the compartment. This ensures that the entire area of the device needs disinfection, achieving a satisfactory disinfection effect. However, this approach introduces new problems: the excessive number of lamps significantly increases the cost of the box, reducing its market competitiveness. Furthermore, excessive light generated within the storage compartment increases the risk of leakage, lowering safety standards.
[0054] To address the poor disinfection effect of commercially available disinfection boxes, the inventors of this application initially proposed the following solution: a barrier structure is installed inside the storage slot. When a beauty device is placed in the slot, the barrier structure holds the device in place, maintaining a certain distance between the device and the disinfection lamp, thereby increasing the coverage of the disinfection lamp on the area to be disinfected. For example, the barrier structure could be a protrusion on the periphery of the disinfection lamp, or a limiting frame located on the light-emitting side of the lamp and spaced apart from it. However, while this solution improves the disinfection effect, the additional barrier structure inside the storage slot complicates the internal structure, making it less aesthetically pleasing. Furthermore, the space between the beauty device and the disinfection lamp on the inner wall of the storage slot is not used to accommodate the device, requiring the storage slot to be enlarged to accommodate it. This increases the overall size of the box, hindering the miniaturization design of the disinfection box.
[0055] To address this issue, the inventors of this application have further proposed a new technical solution for a disinfection box that effectively solves the problem of poor disinfection results through innovative structural design, and avoids the problems of an unsightly storage compartment and the need to increase the size of the storage compartment. The disinfection box proposed in this application is mainly used for disinfecting and sterilizing beauty devices (such as hair removal devices, radio frequency beauty devices, ultrasonic beauty devices, etc.), and of course, it can also be used for disinfecting other items.
[0056] Reference Figures 1 to 4In this embodiment, the disinfection box includes a box body 10, a lid 20, and a disinfection module 30. The box body 10 has a storage slot 11 for placing items to be disinfected (such as beauty devices). The lid 20 is connected to the box body 10 and is used to seal or open the opening of the storage slot 11. The inner wall of the storage slot 11 has at least one incident window 12 (in this embodiment, an incident window 12 located on the side wall of the storage slot 11 is used as an example). The incident window 12 can be located on any side wall of the storage slot 11, or on the bottom wall, or both the side and bottom walls of the storage slot 11 can have incident windows 12. The position and number of incident windows 12 can be determined according to the structure of the items to be disinfected and the areas to be disinfected. Furthermore, the shape of the incident window 12 can be rectangular, square, circular, elliptical, polygonal, etc., and can be correspondingly set according to the shape of the parts of the items to be disinfected. In this embodiment, a rectangular incident window 12 is used as an example.
[0057] The disinfection module 30 of the disinfection box is located inside the box body 10 and outside the storage slot 11. That is, the disinfection module 30 is situated within the internal space of the box body 10 outside the storage slot 11. The disinfection module 30 is spaced apart from and opposite the entrance window 12, meaning there is a certain distance between the disinfection module 30 and the inner wall of the storage slot 11 (the size of this distance can be set according to actual needs). The disinfection light from the disinfection module 30 is emitted towards the entrance window 12 and then enters the storage slot 11 through the entrance window 12 to irradiate and disinfect the items to be disinfected in the storage slot 11. The disinfection light from the disinfection module 30 is emitted at a certain divergence angle. Because the disinfection module 30 and the entrance window 12 on the inner wall of the storage slot 11 are spaced apart, the distance between the disinfection module 30 and the items to be disinfected in the storage slot 11 is increased. Therefore, the area covered by the disinfection light from the disinfection module 30 is increased, meaning the disinfection module 30 can better cover the entire area of the items to be disinfected, improving the disinfection effect. Furthermore, the disinfection lamp 31 of the disinfection module 30 is input into the storage slot 11 from outside the slot through the incident window 12, rather than being generated directly within the storage slot 11. Therefore, the intensity of the disinfection light radiating to the opening of the storage slot 11 is relatively low, reducing the possibility of high-intensity disinfection light leaking from the gap between the lid 20 and the body 10. In addition, the technical solution of this embodiment does not set a barrier structure inside the storage slot, ensuring a simple and aesthetically pleasing interior, and avoiding the need to increase the size of the storage slot, which is more conducive to the miniaturization design of the disinfection box.
[0058] The technical solution of the disinfection box in this embodiment involves opening an incident window 12 on the inner wall of the storage slot 11, and placing the disinfection module 30 in the internal space of the box body 10 outside the storage slot 11. The disinfection module 30 and the incident window 12 are spaced apart and opposite each other. This effectively increases the distance between the disinfection module 30 and the items to be disinfected (such as beauty devices) in the storage slot 11, thereby increasing the coverage area of the disinfection light of the disinfection module 30 on the items to be disinfected, improving the disinfection effect on the parts of the items to be disinfected, and without increasing the number of disinfection lamps 31 of the disinfection module 30, thus not increasing the cost of the disinfection module 30. In addition, since the disinfection light of the disinfection module 30 enters the storage slot 11 from the outside through the incident window 12, the intensity of the disinfection light is weaker and can only be diffused to the opening of the storage slot 11, reducing the leakage of disinfection light from the gap between the box cover 20 and the box body 10, and improving the safety of the disinfection box.
[0059] In some embodiments, the size of the entrance window 12 is smaller than the size of the end of the item to be disinfected facing the entrance window 12. For example, when the entrance window 12 is rectangular, it means that the length and / or height of the entrance window 12 is smaller than the length and / or height of the end of the item to be disinfected facing the entrance window 12; or, when the entrance window 12 is circular, it means that the inner diameter of the entrance window 12 is smaller than the outer diameter of the end of the item to be disinfected facing the entrance window 12; and so on. The technical solution of this embodiment, by designing the size of the entrance window 12 to be smaller than the size of the end of the item to be disinfected facing the entrance window 12, prevents the end of the item to be disinfected facing the entrance window 12 from extending into the entrance window 12. This ensures that even if the item to be disinfected slides towards the entrance window 12, it will not get stuck in the entrance window 12, effectively guaranteeing the distance between the disinfection module 30 and the item to be disinfected, that is, ensuring the effective coverage of the disinfection module 30 of the part of the item to be disinfected, thereby ensuring the disinfection effect of the item to be disinfected. In addition, this solution, which prevents items to be disinfected from entering the incident window 12 without setting up additional structures, ensures that the storage slot 11 is simple and aesthetically pleasing.
[0060] In addition, to ensure that the entire part of the item to be disinfected is covered when it is against the entrance window 12, the size of the entrance window 12 can be set to be greater than or equal to the size of the part of the item to be disinfected. In this way, when the item to be disinfected is against the entrance window 12, the part of the item to be disinfected can be completely located in the area directly opposite the entrance window 12, and the disinfection light emitted by the disinfection module 30 towards the entrance window 12 can also cover the entire part of the disinfection module 30 to be disinfected.
[0061] In some embodiments, a limiting member is provided in the receiving groove 11 or the incident window 12 to prevent the item to be disinfected from extending into the incident window 12. In this embodiment, the limiting member is added to prevent the item to be disinfected from extending into the incident window 12, thus ensuring the distance between the disinfection module 30 and the item to be disinfected, and consequently ensuring the disinfection effect. For example, the limiting member can be a light-transmitting plate, a light-transmitting grid, etc., provided in the incident window 12, or it can be a limiting protrusion provided on the inner wall of the receiving groove 11, etc.
[0062] When the disinfection light generated by the disinfection module 30 shines on the item to be disinfected, some of the light may be reflected by the item and emitted from the entrance window 12 into the internal space of the box 10 outside the storage slot 11. Additionally, some of the disinfection light generated by the disinfection module 30 may diffuse and shine onto the outer wall of the storage slot 11 surrounding the entrance window 12. This light, after being reflected by the outer wall of the storage slot 11, will then shine into the internal space of the box 10 outside the storage slot 11. This results in disinfection light being present in the internal space of the box 10 outside the storage slot 11, which may leak out through gaps or holes in the box 10, potentially affecting user safety.
[0063] Reference Figures 5 to 9 and Figure 12 To avoid the above problems, this embodiment provides a light-blocking cup 40 inside the box 10 to block the disinfection light from leaking out from the periphery of the disinfection module 30. The bottom end 42 of the light-blocking cup 40 is located outside the storage groove 11, and the mouth end 41 of the light-blocking cup 40 is connected to the groove wall of the storage groove 11 to mate with the incident window 12. In the figure of this embodiment, the arrangement of the light-blocking cup 40 having a clearance hole 421 at the bottom end 42 and the disinfection module 30 being located in the clearance hole 421 is taken as an example. Of course, in other embodiments, the disinfection module 30 can also be directly disposed on the inner wall of the bottom end 42 of the light-blocking cup 40. The technical solution of the disinfection box in this embodiment surrounds the disinfection module 30 by setting a light-blocking cup 40 that connects the cup mouth 41 to the incident window 12. This ensures that both the disinfection light reflected by the item to be disinfected and emitted from the incident window 12 to the outside of the storage slot 11, and the disinfection light emitted by the disinfection module 30 to the outer wall of the storage slot 11 outside the incident window 12, are blocked by the light-blocking cup 40 and will not leak into the internal space of the box body 10 located outside the storage slot 11. This effectively prevents the disinfection light from leaking to the outside of the box body 10 through gaps or holes, thus ensuring the safety of the disinfection box.
[0064] In some embodiments, the inner wall of the light-blocking cup 40 is provided with a reflective coating or reflective film; through the reflective coating or reflective film of the light-blocking cup 40, the disinfection light blocked by the light-blocking cup 40 can be reflected back into the storage tank 11 and irradiated onto the items to be disinfected. In this way, the disinfection intensity of the disinfection module 30 on the items to be disinfected is enhanced, thereby improving the disinfection effect of the disinfection box.
[0065] In some embodiments, the size of the light-blocking cup 40 gradually decreases from its mouth end 41 to its bottom end 42, that is, the light-blocking cup 40 is generally conical, so that the side wall of the light-blocking cup 40 can better concentrate and reflect the blocked disinfection light into the collection tank 11, and act on the items to be disinfected, thereby enhancing the disinfection intensity.
[0066] The light-blocking cup 40 in this application can be integrally formed with the wall of the storage groove 11 (i.e., integrally molded), or it can be separately formed from the wall of the storage groove 11. In the figures of this embodiment, the cup mouth 41 of the light-blocking cup 40 is detachably connected to the wall of the storage groove 11 as an example.
[0067] Reference Figure 3 , Figure 4 , Figures 6 to 9 In some embodiments, the inner wall of the incident window 12 is provided with a plurality of flanges 121 spaced apart along its circumference, and the cup mouth end 41 of the light-blocking cup 40 is provided with a plurality of buckles 43 offset from the flanges 121. The cup mouth end 41 of the light-blocking cup 40 is engaged with the flanges 121, and the buckles 43 are inserted through the incident window 12 and fastened to the periphery of the incident window 12. That is, the light-blocking cup 40 is fastened to the periphery of the incident window 12 by the plurality of buckles 43, so that the cup mouth end 41 of the light-blocking cup 40 and the flanges 121 are kept in a fastened state. Alternatively, the side of the cup mouth end 41 facing the inside of the storage groove 11 may abut against the flange 121, and the buckles 43 may fasten to the inner wall of the storage groove 11. Alternatively, the side of the cup mouth end 41 facing the disinfection module 30 may be hooked onto the flange 121, and the buckles 43 may fasten to the outer wall of the storage groove 11. Among them, the multiple buckles 43 can be symmetrically distributed at the cup mouth end 41 of the light-blocking cup 40, or distributed at intervals or evenly along the circumference of the light-blocking cup 40, or they can be respectively distributed on opposite sides of the cup mouth end 41.
[0068] In this embodiment, the connection between the light-blocking cup 40 and the incident window 12 is achieved by the snap-fit fixing of the buckle 43 and the limiting abutment of the flange 121, resulting in a simple structure and convenient assembly. Of course, in other embodiments, the connection between the light-blocking cup 40 and the incident window 12 can also be achieved by other fixing structures or methods, such as screw locking, magnetic fixation, etc.
[0069] Reference Figures 6 to 9In some embodiments, a stepped area 122 is formed between the flange 121 and the inner wall of the storage groove 11. The cup mouth end 41 is provided with an outward flange 411 (i.e. a flange that folds outward towards the outside of the light-blocking cup 40) arranged along the circumference of the light-blocking cup 40. The buckle 43 is provided on the side of the outward flange 411 facing the bottom end 42 of the cup. The outward flange 411 is located in the stepped area 122 and abuts against the flange 121. The buckle 43 is fastened to the outer wall of the storage groove 11. The side of the outward flange 411 facing the storage groove 11 is flush with the inner wall of the storage groove 11. In this embodiment, the light-blocking cup 40 is fitted onto the stepped area 122 with its outer flange 411 at the cup mouth end 41. The flange 121 limits the movement of the outer flange 411, preventing the light-blocking cup 40 from moving outwards from the storage groove 11. It is also secured to the outer wall of the storage groove 11 by a buckle 43, preventing the light-blocking cup 40 from moving inwards from the storage groove 11. This achieves a fixed installation of the light-blocking cup 40. Furthermore, by fitting the outer flange 411 onto the stepped area 122, the side of the outer flange 411 facing the storage groove 11 is flush with the inner wall of the storage groove 11, thus keeping the inner wall of the storage groove 11 smooth and clean, resulting in a more aesthetically pleasing appearance.
[0070] Reference Figures 2 to 4 and Figure 6 In some embodiments, the disinfection module 30 includes at least one disinfection lamp 31 (in this embodiment, the disinfection module 30 includes two disinfection lamps as an example). The disinfection lamp 31 can be an ultraviolet lamp or a lamp that emits other light with disinfection effects. The number of disinfection lamps 31 can be adapted to the shape and size of the part of the item to be disinfected. For example, when the part of the item to be disinfected is a long rectangle, the disinfection module 30 can include two, three, or more disinfection lamps 31 that are spaced apart along the length of the part to be disinfected, so that the entire part of the item to be disinfected can be covered. Or, when the part of the item to be disinfected is circular, a disinfection lamp 31 can be used with the center of the part to be disinfected in the same direction. The distance between the disinfection lamp 31 and the incident window 12 can be set so that the entire part of the item to be disinfected can be covered by one disinfection lamp 31.
[0071] In some embodiments, the disinfection module 30 further includes at least one diffuser disposed on the light-emitting side of the disinfection lamp 31, used to expand the coverage range of the disinfection light of the disinfection module 30; that is, the diffuser further diffuses the disinfection light generated by the disinfection lamp 31 to increase the divergence angle of the disinfection light emitted through the diffuser, thereby increasing the coverage range of the disinfection light irradiation; thus, a larger irradiation coverage range can be achieved with fewer disinfection lamps 31, thereby appropriately reducing the number of disinfection lamps 31 and reducing costs. The diffuser may be an optical lens with light diffusion effect, or a similar functional device.
[0072] refer to Figures 2 to 4 and Figure 6In some embodiments, the disinfection box further includes a distance sensor 60 disposed within the box body 10. The distance sensor 60 is located outside the storage slot 11 and adjacent to the disinfection module 30. The signal transceiver of the distance sensor 60 faces the incident window 12. The distance sensor 60 and the disinfection module 30 are disposed on the same circuit board 50. Additionally, in this embodiment, when combined with the light-blocking cup 40, the light-blocking cup 40 can be provided with a mounting hole 422 for the distance sensor 60, in which the distance sensor 60 can be installed; alternatively, the distance sensor 60 can also be disposed on the inner wall of the bottom end 42 of the light-blocking cup 40.
[0073] By positioning the distance sensor 60 adjacent to the disinfection module 30, the detection signal from the distance sensor 60 can provide feedback on the distance between the item to be disinfected in the storage slot 11 and the disinfection module 30, thereby controlling the operation of the disinfection module 30. For example, the controller can determine whether an item to be disinfected is placed in the storage slot 11 based on the detection signal from the distance sensor 60. If an item to be disinfected is found in the storage slot 11, the controller will start the disinfection process; if no item is found in the storage slot 11, the controller will not start the disinfection process. Alternatively, the controller can also determine the distance between the item to be disinfected and the disinfection module 30 based on the detection signal from the distance sensor 60, and then adjust the output power of the disinfection module 30 accordingly. If the distance between the item to be disinfected and the disinfection module 30 is large (e.g., the distance exceeds a preset value), the output power of the disinfection module 30 will be increased; if the distance is small (e.g., the distance is less than a preset value), the output power of the disinfection module 30 will be decreased. This ensures the disinfection effect of the disinfection box on the item to be disinfected in the storage slot 11. In addition, the distance sensor 60 is positioned adjacent to the disinfection module 30, allowing the distance sensor 60 and the disinfection module 30 to share the same circuit board 50, making the installation and setup of the circuit board 50 more convenient.
[0074] In some embodiments, the disinfection box may also include a distance sensor 60 disposed on the inner wall of the storage slot 11. The distance sensor 60 may also be used to detect whether an item to be disinfected is placed in the storage slot 11, or to detect the distance between the item to be disinfected and the side wall of the storage slot 11. If the distance sensor 60 and the incident window 12 are disposed on the same side wall of the storage slot 11, the distance sensor 60 may detect the distance between the item to be disinfected and the incident window 12, so that the controller of the disinfection box may control the operation of the disinfection box according to the detection signal of the distance sensor 60.
[0075] The distance sensor 60 in the above embodiments can be an infrared sensor or other sensors (such as an ultrasonic sensor, a photoelectric sensor, etc.).
[0076] Reference Figures 2 to 6In some embodiments, the disinfection module 30 includes two disinfection lamps 31, and the distance sensor 60 is positioned at the center of the incident window 12. The two disinfection lamps 31 are distributed on opposite sides of the distance sensor 60 along the length of the incident window 12. In this embodiment, by positioning the distance sensor 60 at the center of the incident window 12, the distance sensor 60 can more accurately detect the distance between the item to be disinfected and the disinfection module 30. The two disinfection lamps 31 are distributed on opposite sides of the distance sensor 60 along the length of the incident window 12, allowing the two disinfection lamps 31 to cover and irradiate the entire area of the item to be disinfected relatively evenly, achieving comprehensive disinfection of the area. The length of the incident window 12 refers to the direction of the larger dimension of a rectangular, elliptical, or elongated incident window 12 (e.g., the length of a rectangle).
[0077] In other embodiments, the disinfection module 30 may also include multiple disinfection lamps 31, with the distance sensor 60 positioned at the center of the incident window 12. The disinfection lamps 31 are evenly distributed around the distance sensor 60, enabling the distance sensor 60 to more accurately detect the distance between the item to be disinfected and the disinfection module 30. Furthermore, each disinfection lamp 31 can evenly and comprehensively cover the parts of the item to be disinfected, achieving a better disinfection effect.
[0078] Reference Figures 2 to 4 In some embodiments, the disinfection box may also include a circuit board 50 disposed inside the box body 10. The circuit board 50 is opposite to and spaced from the incident window 12. The disinfection module 30 is disposed on the side of the circuit board 50 facing the incident window 12. The circuit board 50 is also disposed inside the box body 10 relative to the incident window 12, so that the disinfection module 30 can be directly disposed on the circuit board 50 without having to be connected to the circuit board 50 by wiring, making the placement of the disinfection module 30 more convenient.
[0079] Reference Figure 5 , Figures 10 to 12In some embodiments, the opening of the storage slot 11 is chamfered, and the side of the lid 20 facing the storage slot 11 is provided with a raised layer 21 that matches the shape of the opening of the storage slot 11. The edge of the raised layer 21 is chamfered. When the lid 20 closes the opening of the storage slot 11, the edge of the lid 20 fits against the box body 10, and the chamfer S1 of the raised layer 21 is opposite to the chamfer S2 of the opening of the storage slot 11. In this embodiment, when the lid 20 closes the opening of the storage slot 11 (i.e., the lid 20 and the box body 10 are closed), the chamfered edge of the raised layer 21 on the lid 20 is close to the chamfered edge of the opening of the storage slot 11. Thus, the disinfection light in the storage slot 11 must first pass through the gap between the chamfered edge S1 of the raised layer 21 and the chamfered edge S2 of the opening of the storage slot 11 before reaching the gap between the lid 20 and the box body 10. It can then leak out of the box body 10 through the gap between the lid 20 and the box body 10. Furthermore, the gap between the chamfered edge S1 of the raised layer 21 and the chamfered edge S2 of the opening of the storage slot 11 has a certain angle with the gap between the lid 20 and the box body 10. Therefore, the leakage of disinfection light from between the box body 10 and the lid 20 is greatly reduced, and even if leakage occurs, the amount of leakage is very weak. Therefore, the safety of using the disinfection box is effectively improved.
[0080] This application also proposes a beauty kit, including at least one beauty device and the aforementioned sterilization box. The storage slot of the sterilization box is used to hold the beauty device. The specific structure of the sterilization box is as described in the above embodiments and will not be repeated here. Since the beauty kit of this application adopts the technical solutions of all the above embodiments of the sterilization box, it possesses at least all the technical effects brought about by the technical solutions of the above embodiments, and will not be repeated here.
[0081] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0082] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the content of this application's specification and drawings under the concept of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.
Claims
1. A sterilization cassette, characterized in that, The application relates to a disinfection box. The box body is provided with a receiving groove for placing articles to be disinfected, and the inner wall of the receiving groove is provided with at least one incident window. The box cover is connected with the box body and is used for covering or opening the slot of the receiving groove. The disinfection module is arranged in the box body and outside the receiving groove, is spaced apart from and oppositely arranged with the incident window, the disinfection light of the disinfection module is emitted towards the incident window, and the disinfection light is emitted into the receiving groove through the incident window.
2. The disinfecting case of claim 1, wherein, The size of the incident window is smaller than the size of one end of the article to be disinfected which is directed towards the incident window. And / or, A limiting piece for blocking the article to be disinfected from extending into the incident window is arranged in the receiving groove or the incident window. And / or, The incident window is arranged on the side wall and / or the bottom wall of the receiving groove.
3. The sterilization box of claim 1, wherein, A light blocking cup is arranged in the box body and is used for blocking disinfection light from leaking from the side of the disinfection module, the bottom end of the light blocking cup is located outside the receiving groove, and the mouth end of the light blocking cup is connected with the groove wall of the receiving groove to be connected with the incident window. The bottom end of the light blocking cup is provided with an avoiding hole, and the disinfection module is located in the avoiding hole; or the disinfection module is arranged on the inner wall of the bottom end of the light blocking cup.
4. The sterilization box of claim 3, wherein, The size of the light blocking cup gradually decreases from the mouth end to the bottom end. And / or, The inner wall of the light blocking cup is provided with a reflective coating or a reflective film. And / or, The mouth end of the light blocking cup is detachably connected with the groove wall of the receiving groove.
5. The sterilization box of claim 4, wherein, The inner wall of the incident window is provided with a plurality of flanges which are spaced apart along the circumferential direction of the incident window, the mouth end of the light blocking cup is provided with a plurality of buckles which are staggered with the flanges, the mouth end of the light blocking cup is clamped on the flanges, and the buckles are arranged in the incident window and are buckled on the circumferential edge of the incident window.
6. The disinfecting case of claim 5, wherein, The flanges and the inner wall of the receiving groove form a step region, the mouth end is provided with an everted edge which is arranged along the circumferential direction of the light blocking cup, the buckle is arranged on one side of the everted edge which is directed towards the bottom end, the everted edge is located in the step region and abuts against the flange, the buckle is buckled on the outer wall of the receiving groove, and one side of the everted edge which is directed towards the receiving groove is flush with the inner wall of the receiving groove.
7. The sterilization box of claim 3, wherein, The light blocking cup is integrally arranged with the groove wall of the receiving groove.
8. The disinfection cassette of any one of claims 1 to 7, wherein, The disinfection module comprises at least one disinfection lamp. Or, the disinfection module comprises at least one disinfection lamp and at least one diffusion piece which is arranged on the light emitting side of the disinfection lamp and is used for expanding the coverage range of the disinfection light of the disinfection module.
9. The disinfection cassette of any one of claims 1 to 7, wherein, The disinfection box further comprises a distance sensor which is arranged in the box body, the distance sensor is located outside the receiving groove and is adjacent to the disinfection module, the signal receiving and transmitting end of the distance sensor is directed towards the incident window, and the distance sensor and the disinfection module are arranged on the same circuit board. And / or, The disinfection box further comprises a distance sensor which is arranged on the inner wall of the receiving groove.
10. The disinfecting case of claim 9, wherein, The disinfection module comprises two disinfection lamps, the distance sensor is arranged at the central position of the incident window, and the two disinfection lamps are distributed on the opposite sides of the distance sensor along the length direction of the incident window. Or, the disinfection module comprises a plurality of disinfection lamps, and the distance sensor is arranged corresponding to the center position of the incident window, and the disinfection lamps are uniformly distributed on the circumferential side of the distance sensor.
11. The disinfection cassette of any one of claims 1 to 7, wherein, Further comprising a circuit board arranged in the box body, the circuit board is opposite to the incident window and spaced, and the disinfection module is arranged on the side of the circuit board facing the incident window. And / or, The notch of the receiving groove is chamfered, the box cover is provided with a convex layer on the side facing the receiving groove, the convex layer is matched with the shape of the notch of the receiving groove, and the edge of the convex layer is chamfered; when the notch of the receiving groove is closed by the box cover, the edge of the box cover is attached to the box body, and the chamfered part of the convex layer is opposite to the chamfered part of the notch of the receiving groove.
12. A cosmetic kit characterized by, The disinfection box comprises at least one beauty instrument and the disinfection box of any one of claims 1-11, and the receiving groove of the disinfection box is used for placing the beauty instrument.