A disinfection cabinet suitable for a mother-infant scene
By installing an anti-scalding mesh at the bottom of the inner liner of the baby sterilizer, the inner liner cavity is divided into a placement area and an isolation area, which solves the problem of users being scalded by excessively high temperatures at the bottom of the inner liner, achieving a balance between safety and sterilization effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO MEIGAO KITCHENWARE CO LTD
- Filing Date
- 2025-05-30
- Publication Date
- 2026-06-02
AI Technical Summary
The bottom of the inner liner of existing baby sterilizers gets too hot, which can easily burn users and poses a safety hazard.
A heat-resistant mesh is installed at the bottom of the inner liner, dividing the inner liner cavity into a placement area and an isolation area. The heat-resistant mesh has a mesh structure to prevent users or items from directly contacting the bottom of the inner liner. Heated gas enters through the air inlet for drying, sterilization, and disinfection.
This reduces the probability of burns to users, improves safety, and ensures disinfection effectiveness.
Smart Images

Figure CN224307601U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of disinfection and drying cabinet technology, specifically to a disinfection cabinet suitable for mother and baby scenarios. Background Technology
[0002] As people pay more attention to health and hygiene, the demand for disinfection of daily necessities is gradually increasing, especially for mothers and babies, where there is a high demand for the disinfection and sterilization of items such as baby bottles, tableware, and toys. Most of the mother and baby sterilizers on the market use steam sterilization. Specifically, a heating mechanism is set up inside the sterilizer to heat the air flowing into the sterilizer, thereby evaporating the liquid on the items inside the sterilizer to achieve the effects of disinfection, drying, and sterilization.
[0003] However, in existing baby sterilizers, the heating mechanism is located at the bottom of the inner liner, resulting in a high temperature at the bottom. When users take items out of the inner liner, they are more likely to come into contact with the bottom, increasing the probability of burns and posing a significant safety hazard.
[0004] Therefore, there is room for further improvement in existing disinfection cabinet technologies. Utility Model Content
[0005] In view of this, and in response to the technical problem in the prior art that the heating mechanism at the bottom of the inner liner of the disinfection cabinet causes the temperature of the bottom of the inner liner to be too high and easily burn the user, this application provides a disinfection cabinet suitable for mother and baby scenarios, which is equipped with an anti-scalding mesh on the inner liner, which can prevent the user from directly contacting the bottom of the inner liner, reduce the probability of burns to the user, and minimize safety hazards.
[0006] This application provides a sterilizer suitable for mother and baby scenarios, comprising:
[0007] The housing has an air inlet at the bottom and an exhaust outlet at the top.
[0008] The inner liner, located inside the shell, has a cavity for placing items; the bottom of the inner liner has an air inlet and the top has an air outlet;
[0009] The heating mechanism is located in the installation space formed by the bottom of the inner liner and the outer shell;
[0010] The anti-scalding mesh is located at the bottom of the inner cavity and is used to divide the cavity into a placement area and an isolation area.
[0011] Compared with the prior art, the disinfection cabinet of this application has an anti-scalding mesh at the bottom of the inner liner cavity. Since the heating mechanism is located in the installation space formed by the bottom of the inner liner and the shell, and the bottom of the inner liner has an air inlet, the heated gas enters the inner liner cavity through the air inlet. Therefore, the temperature at the bottom of the inner liner is relatively high. By placing the anti-scalding mesh at the bottom of the cavity, that is, above the air inlet, the inner liner cavity is divided into a placement area and an isolation area. The placement area is located above the isolation area, which is formed by the bottom of the inner liner and the anti-scalding mesh. The anti-scalding mesh can prevent users or items from directly contacting the bottom of the inner liner, thereby reducing the probability of burns to users and minimizing safety hazards. Furthermore, the anti-scalding mesh has a mesh structure, which can ensure that gas can pass smoothly through the anti-scalding mesh into the placement area to dry, sterilize, and disinfect the items in the placement area.
[0012] Preferred options also include:
[0013] Door panel assembly, hinged to the housing, is used to cover the opening of the inner liner;
[0014] Install the buckle, which is located on the inner liner, to limit the anti-scalding mesh;
[0015] At least one mounting clip is located at the opening end of the inner liner.
[0016] In this embodiment, the mounting buckle can fix the anti-scalding net, preventing it from easily shifting and improving the safety factor; the purpose of setting the mounting buckle at the opening end of the inner liner is to ensure that the front end of the anti-scalding net is stably connected to the inner liner, preventing it from easily tipping over or shifting, thus improving the safety factor.
[0017] Preferably, the anti-scalding net includes mounting legs and a support frame, wherein the mounting legs are connected to both ends of the support frame and are used to support and raise the support frame;
[0018] The end of the mounting leg furthest from the support frame is connected to the mounting buckle.
[0019] In this embodiment, the installation of support legs can raise the support frame, prevent the anti-scalding mesh from directly contacting the inner liner, reduce the heat transfer from the inner liner to the anti-scalding mesh, and ensure the safety of the anti-scalding mesh.
[0020] Preferably, the door panel assembly includes a supporting outer panel, a supporting inner panel, and a metal plate, wherein the supporting outer panel is connected to the supporting inner panel, and there is a gap between the supporting outer panel and the supporting inner panel;
[0021] The metal plate is positioned close to the inner liner cavity, and the side of the supporting inner plate facing the inner liner cavity is attached to the metal plate;
[0022] The inner support plate includes support ribs with a mesh structure, which are used to support the metal plate.
[0023] In this embodiment, the inner support plate can support the metal plate, while the mesh structure of the support ribs can ensure the support of the metal plate, reduce the thermal conductivity of the metal plate to the inner support plate, and reduce the manufacturing material of the inner support plate, thus saving costs; the metal plate can reduce heat loss inside the liner and prevent excessively high temperatures inside the liner from affecting the outer support plate and the inner support plate.
[0024] Preferably, the metal plate is provided with a strip groove, the strip groove is recessed toward the supporting inner plate, and the surface of the strip groove is an arc surface;
[0025] The surface where the support rib meets the groove is arc-shaped.
[0026] In this embodiment, the strip groove can increase the structural strength of the metal plate, and the arc surface of the strip groove can reflect heat radiation, reducing heat loss in the cavity of the inner liner.
[0027] Preferably, the door panel assembly is provided with a lamp body assembly, and the door panel assembly is provided with a light emitting part, through which the lamp body assembly transmits light outward;
[0028] The light-emitting part is a transparent structure or an open structure.
[0029] In this embodiment, the lamp assembly can be used for lighting, improving ease of use and aesthetics.
[0030] Preferably, the lamp assembly includes a light-emitting element and a mounting base, the mounting base being used to mount the light-emitting element and connected to the door panel assembly;
[0031] The light-emitting part is a transparent structure, and the light-emitting part is used to allow light from the light-emitting element to pass through;
[0032] Alternatively, the light-emitting part may be an open structure, and the lamp body assembly may further include a light-transmitting element disposed within the light-emitting part.
[0033] In this embodiment, the light-emitting part is set as a transparent structure, which can ensure that light can pass through; when the light-emitting part is set as an open structure, the manufacturing difficulty of the door panel assembly can be simplified.
[0034] Preferably, the housing is provided with a take-up plate, and a take-up groove is formed between the take-up plate and the housing. The take-up groove has an annular structure.
[0035] In this embodiment, the cable tray can conveniently store the disinfection cabinet's power cord, improving its neatness and aesthetics.
[0036] Preferred options also include:
[0037] A negative ion module is located on the back of the inner liner, and the negative ion module is used to deliver negative ions into the inner liner.
[0038] The power module is located on the back of the inner liner, next to the negative ion module, and is used to connect to the heating mechanism and the negative ion module.
[0039] In this embodiment, the negative ion module can generate ozone molecules to achieve sterilization and disinfection effects; the power module is located to the side of the negative ion module, which can shorten the line distance between the negative ion module and the power module, thereby reducing energy loss.
[0040] Preferably, the inner liner includes a surrounding panel and an end plate, the surrounding panel having a ring-shaped structure, and the end plate being connected to the rear end of the surrounding panel;
[0041] The enclosure is formed by bending a single sheet of material, and the enclosure includes a weld seam located at the top of the enclosure.
[0042] In this embodiment, the inner liner is formed by integral bending, which reduces the number of welds and ensures the airtightness of the inner liner; and the welds are located at the top, which reduces the leakage points when hot air enters the inner liner and ensures the drying effect of the disinfection cabinet. Attached Figure Description
[0043] Figure 1 This is a three-dimensional structural diagram of a sterilization cabinet suitable for mother and baby scenarios provided in one embodiment of this application. Figure 1 ;
[0044] Figure 2 This is a three-dimensional structural diagram of a sterilization cabinet suitable for mother and baby scenarios provided in one embodiment of this application. Figure 2 ;
[0045] Figure 3 This is a cross-sectional structural diagram of a sterilization cabinet suitable for mother and baby scenarios provided in one embodiment of this application. Figure 1 ;
[0046] Figure 4 yes Figure 3 A magnified view of part A;
[0047] Figure 5 This is a three-dimensional structural diagram of the supporting inner plate provided in an embodiment of this application;
[0048] Figure 6 This is a three-dimensional structural diagram of a metal plate provided in an embodiment of this application;
[0049] Figure 7 yes Figure 3 A magnified view of part B;
[0050] Figure 8 This is a partial structural schematic diagram of the inner liner provided in one embodiment of this application;
[0051] Figure 9 This is a three-dimensional structural schematic diagram of an embodiment of the anti-scalding mesh provided in this application;
[0052] Figure 10 This is a partial structural diagram of the connection between the anti-scalding mesh and the mounting buckle provided in one embodiment of this application.
[0053] Attached reference numerals: 1. Shell; 2. Inner liner; 3. Door panel assembly; 4. Anti-scalding mesh; 5. Lamp body assembly; 6. Mounting clip; 7. Cord retractor; 8. Negative ion module;
[0054] 11. Air intake; 12. Exhaust outlet;
[0055] 21. Air inlet; 22. Air outlet; 23. Enclosure panel; 24. Weld seam;
[0056] 31. Supporting outer panel; 32. Supporting inner panel; 33. Metal plate;
[0057] 321. Supporting rib; 331. Strip groove;
[0058] 41. Install support legs; 42. Support frame;
[0059] 51. Light-emitting component; 52. Mounting base; 53. Light-transmitting component;
[0060] 71. Cable tray. Detailed Implementation
[0061] To enable those skilled in the art to better understand the technical solutions of this disclosure, the following detailed, clear, and complete description of this disclosure is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of this disclosure and are not intended to limit it.
[0062] In the description of this application, the use of "first" and "second" is for the purpose of distinguishing technical features only, and should not be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated or the order of the technical features indicated.
[0063] Those skilled in the art should understand that in the disclosure of this application, the terms "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on this application.
[0064] The present application will now be described in further detail with reference to the accompanying drawings, see below. Figures 1 to 10 illustrate.
[0065] This application provides a disinfection cabinet (hereinafter referred to as disinfection cabinet) suitable for maternal and infant scenarios, which is used to dry, sterilize and disinfect maternal and infant products.
[0066] like Figures 1 to 3 As shown, the disinfection cabinet includes a door panel assembly 3, a shell 1, and an inner liner 2. The inner liner 2 is disposed inside the shell 1, and there is a gap between the shell 1 and the inner liner 2. The front ends of the shell 1 and the inner liner 2 are provided with openings. The door panel assembly 3 is hinged to the front side wall of the shell 1. The door panel assembly 3 can cover the openings at the front ends of the shell 1 and the inner liner 2 so that the inner liner 2 can be sealed to prevent gas leakage from the inner liner 2. The inner liner 2 is provided with a shelf for placing items.
[0067] The shell 1 has an air inlet 11 at the bottom and an exhaust outlet 12 at the top; the inner liner 2 has an air inlet 21 at the bottom and an air outlet 22 at the top; the air inlet 11 is connected to the outside, and outside air flows into the space between the shell 1 and the inner liner 2 from the air inlet 11; the exhaust outlet 12 is connected to the external environment and the air outlet 22 of the inner liner 2; a heating mechanism is provided between the shell 1 and the inner liner 2, which is used to heat the air flowing in from the air inlet 11; the hot air heated by the heating mechanism flows into the inner liner 2 from the air inlet 21, flows out of the inner liner 2 from the air outlet 22 to the space between the inner liner 2 and the shell 1, and then flows out from the exhaust outlet 12 of the shell 1;
[0068] In this embodiment, the exhaust port 12 and the air inlet 11 are located at the upper and lower ends of the housing 1, respectively, thereby lengthening the steam discharge distance in the vertical space to ensure that the chimney effect can be fully utilized, thereby enabling the steam to be discharged more quickly, reducing the cooling time of the disinfection cabinet, and improving ease of use.
[0069] In particular, in this application, such as Figure 3 , Figure 10As shown, the inner liner 2 has a cavity for placing items, and a shelf can be installed inside the cavity for placing items. A heat-resistant mesh 4 is located at the bottom of the inner liner 2 cavity, dividing the cavity into a placement area and an isolation area. In this embodiment, since the heating mechanism is located within the installation space formed by the bottom of the inner liner 2 and the outer shell 1, and the bottom of the inner liner 2 has an air inlet 21, the heated gas enters the cavity of the inner liner 2 through the air inlet 21. Therefore, the bottom of the inner liner 2 has a higher temperature, hence the heat-resistant mesh 4 is placed at the bottom of the inner liner 2 cavity. The anti-scalding mesh 4 is located above the air inlet 21, dividing the inner liner 2 cavity into a placement area and an isolation area. The placement area is located above the isolation area, and the shelf is placed in the placement area, which is specifically used to place items. The isolation area is formed by the bottom of the inner liner 2 and the anti-scalding mesh 4. The anti-scalding mesh 4 can prevent users or items from directly contacting the bottom of the inner liner 2, thereby reducing the probability of burns to users and minimizing safety hazards. Furthermore, the anti-scalding mesh 4 has a mesh structure, which can ensure that gas can pass smoothly through the anti-scalding mesh 4 into the placement area to dry, sterilize, and disinfect the items in the placement area.
[0070] Furthermore, the anti-scalding mesh 4 is described in more detail; such as... Figure 9 , Figure 10 As shown, the bottom plate of the inner liner 2 is provided with a mounting buckle 6 at the upper end. The bottom of the mounting buckle 6 is fixedly connected to the bottom plate of the inner liner 2. The mounting buckle 6 is used to limit the anti-scalding mesh 4. The upper end of the mounting buckle 6 is provided with a slot, and the bottom of the anti-scalding mesh 4 can be inserted into the slot to achieve relative fixation between the anti-scalding mesh 4 and the inner liner 2. This prevents the anti-scalding mesh 4 from easily becoming misaligned and avoids the user accidentally touching it, causing the anti-scalding mesh 4 to become misaligned and come into contact with the bottom of the inner liner 2, thus improving the safety factor.
[0071] At least one mounting clip 6 is located at the opening end of the inner liner 2. That is, the anti-scalding net 4 must be fixed by the mounting clip 6 near the opening end. This ensures that the front end of the anti-scalding net 4 is stably connected to the inner liner 2, so that the front end of the anti-scalding net 4 will not be easily touched by the user and tipped over or misplaced. This ensures that the bottom front end of the inner liner 2 is always separated by the anti-scalding net 4, reducing the probability of the user coming into contact with the bottom of the inner liner 2 and improving the safety factor.
[0072] Preferably, in this embodiment, four mounting clips 6 are provided, two at the front end and two at the rear end of the bottom of the inner liner 2, and the two mounting clips 6 are respectively located on the left and right sides, which improves the installation stability of the anti-scalding net 4 and reduces the probability of the anti-scalding net 4 detaching from the mounting clips 6 due to accidental contact by the user.
[0073] Furthermore, such as Figure 9 , Figure 10As shown, the anti-scalding net 4 includes mounting legs 41 and a support frame 42. The support frame 42 is a plate-shaped grid structure. The mounting legs 41 are connected to the front and rear ends of the support frame 42. The mounting legs 41 are U-shaped structures. The upper end of the mounting legs 41 is connected to the bottom of the support frame 42. The mounting legs 41 are used to support and raise the support frame 42. The end of the mounting legs 41 away from the support frame 42 is connected to the mounting buckle 6.
[0074] In this embodiment, the included angle between the mounting leg 41 and the support frame 42 is greater than or equal to 90°. When it is greater than 90°, the distance between the upper ends of the two mounting legs 41 is less than the lower ends, which allows the support frame 42 to be retracted inward, reducing the probability of the front end of the support frame 42 contacting the user and reducing safety hazards.
[0075] Based on any of the above embodiments, the door panel assembly 3 will be further described; such as Figures 3 to 6 As shown, the door panel assembly 3 includes a supporting outer panel 31, a supporting inner panel 32, and a metal plate 33. The outer side of the supporting outer panel 31 has an arc-shaped structure and bends towards the supporting inner panel 32 to achieve connection with the supporting inner panel 32. There is a gap between the supporting inner panel 32 and the supporting outer panel 31 to achieve a heat insulation effect. The metal plate 33 is located close to the cavity of the inner liner 2. The side of the supporting inner panel 32 away from the supporting outer panel 31 is attached to the side of the metal plate 33 facing away from the cavity of the inner liner 2, so that the metal plate 33 and the supporting outer panel 31 are connected through the supporting inner panel 32. In this embodiment, the metal plate 33 is located close to the cavity of the inner liner 2, which can reduce heat loss in the inner liner 2 and prevent excessively high temperatures in the inner liner 2 from affecting the supporting outer panel 31 and the supporting inner panel 32, thus ensuring the structural stability of the door panel assembly 3.
[0076] Among them, such as Figures 4 to 6 As shown, the inner support plate 32 includes support ribs 321 with a mesh structure. The support ribs 321 are attached to the metal plate 33. The outer periphery of the support ribs 321 is a plate structure. The area of the support ribs 321 is slightly larger than that of the metal plate 33 to ensure full support for the metal plate 33, thereby ensuring the connection stability between the metal plate 33 and the inner support plate 32.
[0077] Furthermore, the overall area of the inner support panel 32 is larger than the area of the opening end of the inner liner 2, but slightly smaller than the overall area of the opening end of the shell 1; the projected area of the outer support panel 31 at the opening end of the shell 1 is equal to the area of the opening end of the shell 1, thereby ensuring that the door panel assembly 3 effectively shields the inner liner 2 and the opening end of the shell 1, and ensuring the airtightness of the disinfection cabinet.
[0078] Furthermore, such as Figure 6As shown, the metal plate 33 is provided with a strip groove 331, which is recessed towards the supporting inner plate 32. The surface of the strip groove 331 is arc-shaped, and the length of the strip groove 331 extends perpendicularly to the vertical direction. Multiple strip grooves 331 are provided, and they are distributed parallel to each other along the vertical direction. This arrangement increases the structural strength of the metal plate 33, and the arc surface of the strip groove 331 can better reflect heat radiation, reducing heat loss within the cavity of the inner liner 2. For example... Figure 4 , Figure 5 As shown, the contact surface between the support rib 321 and the strip groove 331 is set as an arc surface. The curvature of the arc surface is the same as that of the arc of the strip groove 331, which can increase the contact between the support rib 321 and the metal plate 33, thereby improving the support stability of the inner support plate 32 on the metal plate 33.
[0079] Based on any of the above embodiments, the disinfection cabinet can be further expanded; such as... Figure 4 As shown, the disinfection cabinet is also equipped with a lamp assembly 5, which is located inside the door panel assembly 3. The lamp assembly 5 can emit light to serve as a night light or for decorative purposes.
[0080] Specifically, in this embodiment, the lamp body assembly 5 is located at the bottom of the door panel assembly 3, and the supporting outer plate 31 of the door panel assembly 3 is provided with a light-emitting part. The light emitted by the lamp body assembly 5 can propagate outward through the light-emitting part so that the user can see it. The length extension direction of the light-emitting part is the same as the length extension direction of the lamp body assembly 5, and the light-emitting part is correspondingly located on the light-emitting side of the lamp body assembly 5. Figure 4 As shown, the lamp body assembly 5 includes a light-emitting element 51 and a mounting base 52. The mounting base 52 is connected to the supporting outer plate 31 of the door panel assembly 3. The light-emitting element 51 can emit light and is connected to the mounting base 52 so that the light-emitting element 51 can be stably connected to the supporting outer plate 31.
[0081] In one optional embodiment, the light-emitting part can be a transparent structure, that is, a light-transmitting area can be provided on the outer support plate 31 at the location corresponding to the lamp body assembly 5, so that the light from the lamp body assembly 5 can be transmitted to the outside through the light-emitting part; in this embodiment, the light-emitting part can be supported by transparent plastic or glass, which is a part of the outer support plate 31, thus ensuring the sealing and flatness of the outer support plate 31.
[0082] In another alternative embodiment, such as Figure 4As shown, the light-emitting part has an open structure, that is, the outer support plate 31 has an opening that penetrates the inside and outside of the outer support plate 31; the lamp body assembly 5 also includes a light-transmitting element 53, which is located inside the light-emitting part, that is, the light-transmitting element 53 is located inside the opening to block the opening and prevent external impurities from entering the door panel assembly 3 through the light-emitting part; the light-transmitting element 53 is made of a light-transmitting material, and the light from the light-emitting element 51 can be emitted outward through the light-transmitting element 53.
[0083] In this embodiment, as Figure 4 As shown, the mounting base 52 has an n-shaped cross-section, with the light-transmitting element 53 located at its open end, and the light-emitting element 51 located within the cavity formed by the mounting base 52 and the light-transmitting element 53. The light-transmitting element 53 has a T-shaped cross-section, with its wide section connected to the open end of the mounting base 52 and its narrow section inserted into the light-emitting part, thereby achieving stable connection and positioning of the light-emitting component.
[0084] Based on any of the above embodiments, the disinfection cabinet can be further expanded; such as... Figure 2 , Figure 7 As shown, the door panel assembly 3 is located on the front of the housing 1, and the back of the housing 1 is provided with a cable tray 7. The cable tray 7 is a rectangular block structure. The middle of the cable tray 7 is connected to the housing 1 through a connecting block. The area of the connecting block is smaller than the area of the cable tray 7, so that there is a gap between the outer periphery of the cable tray 7 and the housing 1, thereby forming a cable tray groove 71 between the cable tray 7 and the housing 1. The cable tray groove 71 is arranged around the outer periphery of the connecting block, that is, the cable tray groove 71 is a ring structure, so that the power cord of the disinfection cabinet can be wound in the cable tray groove 71 to better store the power cord, improve the neatness and aesthetics.
[0085] Furthermore, such as Figure 2 As shown, the housing 1 has a groove, and the cable take-up plate 7 is set in the groove. The groove is recessed towards the front end of the housing 1, and the area of the groove is larger than the area of the cable take-up plate 7, so that the wire can have enough space to be taken out from the cable take-up groove 71. This setting can make the outer surface of the cable take-up plate 7 flush with the outer surface of the housing 1, thereby making the outer side of the disinfection cabinet highly flat and aesthetically pleasing.
[0086] Based on any of the above embodiments, the disinfection cabinet can be further expanded; such as... Figure 7 As shown, the disinfection cabinet also includes a negative ion module 8 and a power module. Both the power module and the negative ion module 8 are located on the back of the inner liner 2. The power module is located on the side of the negative ion module 8, which can shorten the negative ion circuit and reduce energy consumption. The power module is connected to the heating mechanism, the negative ion module 8, and the lamp assembly 5 to supply power to the heating mechanism, the negative ion module 8, and the lamp assembly 5.
[0087] The negative ion module 8 is connected to the cavity of the inner liner 2. The negative ion module 8 can react with the air inside the cavity of the inner liner 2 to generate negative ions, which will destroy the cell membranes of bacteria and viruses inside the cavity of the inner liner 2, making them inactive, thereby achieving the effect of sterilization and disinfection; it can also decompose odor molecules in the air, such as ammonia and hydrogen sulfide, to reduce odor.
[0088] In this embodiment, as Figure 2 As shown, the back panel of the housing 1 can shield the negative ion module 8, preventing the negative ion module 8 from being exposed.
[0089] Based on any of the above embodiments, the inner liner 2 can be further expanded; such as... Figure 8 As shown, the inner liner 2 includes a surrounding plate 23 and an end plate. The surrounding plate 23 has a ring-shaped structure, and the end plate has a plate-shaped structure. The end plate is connected to the rear end of the surrounding plate 23. The surrounding plate 23 is formed by bending a single plate, which can reduce leakage points in the inner liner 2 and improve the sealing and heat preservation effect of the inner liner 2. Furthermore, its manufacturing difficulty is reduced, which can improve production efficiency.
[0090] Furthermore, the enclosure 23 is formed by bending a single sheet of material and welding it at only one seam, so that the enclosure 23 forms a closed ring structure; that is, the enclosure 23 includes only one weld 24, which is located at the top of the enclosure 23 and is arranged along the front and back. This can reduce the leakage points when hot air enters the inner liner 2, ensure that all hot air can enter the inner liner 2, and ensure the drying effect of the disinfection cabinet.
[0091] It should be noted that the various embodiments of this application can be arbitrarily combined into new embodiments, provided that the solutions do not conflict and the technical solutions can coexist.
[0092] The present application has been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of the present application. The descriptions of the embodiments above are only for the purpose of helping to understand the present application and its core ideas. It should be noted that those skilled in the art can make several improvements and modifications to the present application without departing from the principles of the present application, and these improvements and modifications also fall within the protection scope of the claims of the present application.
Claims
1. A sterilizing cabinet suitable for mother and baby scenarios, characterized in that, include: The housing (1) has an air inlet (11) at the bottom and an exhaust outlet (12) at the top; The inner liner (2) is located inside the shell (1) and has a cavity for placing items; the bottom of the inner liner (2) is provided with an air inlet (21) and the top is provided with an air outlet (22); The heating mechanism is located in the installation space formed by the bottom of the inner liner (2) and the shell (1); A heat-resistant mesh (4) is located at the bottom of the cavity of the inner liner (2) to divide the cavity into a placement area and an isolation area.
2. The sterilizing cabinet suitable for mother and baby scenarios according to claim 1, characterized in that, Also includes: The door panel assembly (3) is hinged to the housing (1) and is used to cover the opening of the inner liner (2); Install buckles (6) on the inner liner (2) to limit the anti-scalding mesh (4); At least one mounting clip (6) is provided at the opening end of the inner liner (2).
3. The sterilizing cabinet suitable for mother and baby scenarios according to claim 2, characterized in that, The anti-scalding net (4) includes mounting legs (41) and a support frame (42). The mounting legs (41) are connected to both ends of the support frame (42). The mounting legs (41) are used to support and raise the support frame (42). The end of the mounting leg (41) away from the support frame (42) is connected to the mounting buckle (6).
4. The sterilizing cabinet suitable for mother and baby scenarios according to claim 2, characterized in that, The door panel assembly (3) includes an outer support panel (31), an inner support panel (32), and a metal plate (33). The outer support panel (31) is connected to the inner support panel (32), and there is a gap between the outer support panel (31) and the inner support panel (32). The metal plate (33) is disposed close to the cavity of the inner liner (2), and the side of the supporting inner plate (32) facing the cavity of the inner liner (2) is in contact with the metal plate (33); The inner support plate (32) includes support ribs (321) in a mesh structure, which are used to support the metal plate (33).
5. The sterilizing cabinet suitable for mother and baby scenarios according to claim 4, characterized in that, The metal plate (33) is provided with a strip groove (331), the strip groove (331) is recessed toward the supporting inner plate (32), and the surface of the strip groove (331) is an arc surface; The contact surface between the supporting rib (321) and the strip groove (331) is an arc-shaped surface.
6. The sterilizing cabinet suitable for mother and baby scenarios according to claim 2, characterized in that, The door panel assembly (3) is provided with a lamp body assembly (5), and the door panel assembly (3) is provided with a light-emitting part. The lamp body assembly (5) transmits light outward through the light-emitting part. The light-emitting part is a transparent structure or an open structure.
7. The sterilizer for mother and baby scenarios according to claim 6, characterized in that, The lamp body assembly (5) includes a light-emitting element (51) and a mounting base (52). The mounting base (52) is used to install the light-emitting element (51), and the mounting base (52) is connected to the door panel assembly (3). The light-emitting part is a transparent structure, and the light-emitting part is used to allow light from the light-emitting element (51) to pass through; Alternatively, the light-emitting part may be an open structure, and the lamp body assembly (5) may also include a light-transmitting element (53), which is disposed inside the light-emitting part.
8. The sterilizing cabinet suitable for mother and baby scenarios according to claim 1, characterized in that, The housing (1) is provided with a take-up plate (7), and a take-up groove (71) is formed between the take-up plate (7) and the housing (1). The take-up groove (71) is an annular structure.
9. The sterilizing cabinet suitable for mother and baby scenarios according to claim 1, characterized in that, Also includes: A negative ion module (8) is located on the back of the inner liner (2). The negative ion module (8) is used to deliver negative ions into the inner liner (2). The power module is located on the back of the inner liner (2) and on the side of the negative ion module (8), and is used to connect with the heating mechanism and the negative ion module (8).
10. The sterilizing cabinet suitable for mother and baby scenarios according to claim 1, characterized in that, The inner liner (2) includes a surrounding panel (23) and an end plate. The surrounding panel (23) has a ring structure, and the end plate is connected to the rear end of the surrounding panel (23). The enclosure (23) is formed by bending a single plate, and the enclosure (23) includes a weld (24) located at the top of the enclosure (23).