Disinfecting chopstick cage with wireless charging function
By incorporating a built-in ultraviolet light source and heating element for dual sterilization and disinfection in the chopstick holder, and combining it with wireless charging, the problem of bacteria growth in the storage box is solved, realizing the multi-functional application of the chopstick holder.
Patent Information
- Application Number
- CN202210286676.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-21
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2042-03-21
AI Technical Summary
Items placed in existing storage boxes are prone to bacterial growth, which can affect the health of users.
Design a sterilization chopsticks holder with wireless charging function. It has a built-in ultraviolet light source and heating component, which sterilize and disinfect through dual sterilization by ultraviolet light and high temperature. The holder also has a wireless charging component inside to enable wireless charging of mobile devices.
It effectively kills bacteria on items, keeps items hygienic, expands the functional application range of the chopstick holder, and enables wireless charging of mobile devices.
Smart Images

Figure CN114617409B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of disinfection products, and more particularly to a disinfection chopsticks holder with wireless charging function. Background Technology
[0002] As people continuously pursue a higher quality of life, their hygiene requirements for personal tableware are also increasing. When tableware is not in use, it is often placed in a storage box (chopstick holder). This can lead to the growth of bacteria in the holder, negatively impacting the user's health. Therefore, to ensure the user's health, these tableware items need to be disinfected.
[0003] Therefore, existing technologies still need to be improved and developed. Summary of the Invention
[0004] In view of the shortcomings of the prior art, the purpose of this invention is to provide a sterilized chopsticks holder with wireless charging function, which aims to solve the problem that items placed in existing storage boxes are prone to bacterial growth, thus adversely affecting the health of users.
[0005] The technical solution of the present invention is as follows:
[0006] A sterilized chopsticks cage with wireless charging function includes: a cage body and a wireless charging component for wirelessly charging a mobile terminal.
[0007] The cage is provided with an open storage cavity, and a heating element is provided at the bottom of the storage cavity;
[0008] An ultraviolet light source is installed inside the cage, and a light-transmitting hole is opened on the inner side wall of the storage cavity, with the ultraviolet light source facing the light-transmitting hole;
[0009] The wireless charging component includes:
[0010] A wireless charging module, wherein the wireless charging module is located within the cage;
[0011] A PCB circuit board, wherein the PCB circuit board is located within the cage;
[0012] The heating element, ultraviolet light source, and wireless charging module are all electrically connected to the PCB circuit board.
[0013] Furthermore, the cage body includes: a bottom plate;
[0014] An outer casing, wherein the outer casing is disposed vertically on the base plate;
[0015] An inner housing, wherein the inner housing is disposed within the outer housing;
[0016] A box body, which is connected to the base plate and located on one side of the outer shell;
[0017] The heating element is disposed between the base plate and the inner shell, and the storage cavity is opened in the inner shell;
[0018] The wireless charging module is located inside the housing, and the PCB circuit board is located on the side of the wireless charging module facing the base plate.
[0019] Furthermore, it also includes an ultraviolet light source circuit board, on which the ultraviolet light source is disposed, and the ultraviolet light source circuit board is located on the outside of the inner housing.
[0020] Furthermore, the storage cavity includes:
[0021] The main storage cavity is vertically disposed within the inner shell;
[0022] The first auxiliary cavity and the second auxiliary cavity;
[0023] The first auxiliary cavity and the second auxiliary cavity are both located on the side of the main storage cavity facing the ultraviolet light source. The first auxiliary cavity and the second auxiliary cavity are separated from the main storage cavity by a baffle. The first auxiliary cavity and the second auxiliary cavity are separated by a baffle.
[0024] Furthermore, the bottom of both the first auxiliary cavity and the bottom of the second auxiliary cavity are higher than the bottom of the storage cavity;
[0025] The bottom of the second auxiliary cavity is higher than the bottom of the first auxiliary cavity.
[0026] Furthermore, the inner wall of the storage cavity is inclined, and the inclination direction is: the inner wall is inclined close to the bottom center along the direction of the opening towards the bottom.
[0027] Furthermore, the heating component includes a heating element disposed below the storage cavity;
[0028] A heat-conducting baffle is disposed above the heating element.
[0029] Furthermore, a drain hole is provided at the bottom of the storage cavity, and the drain hole passes through the heating component and the cage.
[0030] Furthermore, it also includes a cover that is detachably connected to the cage body, the cover being used to cover the opening of the storage cavity;
[0031] The cover has a locking platform protruding from one side of the cage, which is used to fit into the storage cavity so that the cover is connected to the cage.
[0032] Furthermore, a rechargeable battery is also provided inside the box. The rechargeable battery is electrically connected to the PCB circuit board and provides power to the heating component, the ultraviolet light source, and the wireless charging module respectively.
[0033] The outer wall of the box is also provided with control buttons and a charging interface, and the control buttons and the charging interface are respectively electrically connected to the PCB circuit board.
[0034] Compared to existing technologies, this invention places temporarily unused items, such as chopsticks, into the storage chamber. Upon opening the sterilization box, an ultraviolet light source located on the side wall of the chamber emits ultraviolet light, which sterilizes the chopsticks. A heating element at the bottom of the chamber generates heat, providing high-temperature sterilization and drying any remaining water droplets. This dual sterilization of ultraviolet light and high temperature thoroughly eliminates bacteria, ensuring the cleanliness and hygiene of the chopsticks and other items used by the user. This solves the problem of bacteria growth in existing storage boxes, which can negatively impact user health. Furthermore, by incorporating a wireless charging component on the chopstick holder, mobile devices (such as smartphones) can be placed on it for wireless charging, expanding the chopstick holder's functionality beyond simply holding chopsticks and other tableware. Attached Figure Description
[0035] Figure 1 This is a schematic diagram of the structure of the disinfection chopsticks cage with wireless charging function of the present invention in use.
[0036] Figure 2 This is a first cross-sectional view of the cage body used in Embodiment 1 of the present invention, which has a wireless charging function for sterilizing chopsticks.
[0037] Figure 3 This is a second sectional view of the cage body used in Embodiment 1 of the present invention, which features a wireless charging function for sterilizing chopsticks; (the second sectional view is perpendicular to the first sectional view).
[0038] Figure 4 This is a schematic diagram of the structure of the cover used in an embodiment of the disinfection chopsticks holder with wireless charging function of the present invention;
[0039] Figure 5 This is a cross-sectional view of the cage used in Embodiment 2 of the present invention, which is a disinfection chopsticks cage with wireless charging function;
[0040] Figure 6 This is the present invention. Figure 5 Enlarged view of part A.
[0041] Summary of labels in the diagram: 100, Cage; 110, Storage cavity; 111, Main storage cavity; 112, First auxiliary cavity; 113, Second auxiliary cavity; 114, Drainage hole; 120, Base plate; 130, Outer shell; 140, Inner shell; 150, Heating element; 151, Heating element; 152, Heat-conducting baffle; 160, Ultraviolet light source; 161, Ultraviolet light source circuit board; 162, Light-transmitting hole; 170, Box body; 180, Slot; 181. Sealing cap; 182. Torsion spring; 190. Reflective layer; 191. Triangular prism; 192. Concave part; 193. Raised part; 200. Cover body; 210. Card holder; 300. Wireless charging component; 310. Bracket; 320. Wireless charging module; 321. Charging coil; 322. Coil board; 330. PCB circuit board; 340. Rechargeable battery; 400. Object; 410. Mobile phone; 500. Anti-shielding groove. Detailed Implementation
[0042] This invention provides a sterilizing chopsticks holder with wireless charging function. To make the objectives, technical solutions, and effects of this invention clearer and more explicit, the invention will be further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
[0043] like Figure 1 , Figure 2As shown, this embodiment of the invention provides a sterilizing chopsticks holder with wireless charging function for sterilizing items 400, including chopsticks, knives, forks, spoons, and other tableware. The sterilizing chopsticks holder with wireless charging function includes a cage body 100, which can be used alone to sterilize items 400. Alternatively, a cover 200 can be provided, detachable from the cage body 100, which can be used in conjunction with the cover 200 to sterilize items 400. In this embodiment, the cage body 100 extends vertically, which is also the up-down direction, and is elongated in the up-down direction. A heating element 150 is provided at the bottom of the storage cavity 110; the heating element 150 generates heat when powered on, supplying heat to the storage cavity 110. As heat accumulates in the storage cavity 110, the temperature inside the storage cavity 110 rises, thereby killing bacteria through high temperature. Simultaneously, it can evaporate moisture inside the storage cavity 110 or on the object 400, keeping it dry and inhibiting bacterial growth. An ultraviolet light source 160 is installed inside the cage 100, and a light-transmitting hole 162 is opened on the inner side wall of the storage cavity 110, with the ultraviolet light source 160 facing the light-transmitting hole 162. The ultraviolet light source 160 emits ultraviolet light through the light-transmitting hole 162 into the storage cavity 110, sterilizing and disinfecting the object 400 (such as chopsticks) inside the storage cavity 110. A wireless charging component 300 is installed inside the cage, used for wirelessly charging a mobile terminal (phone 410). The wireless charging component 300 includes a wireless charging module 320 and a PCB circuit board 330 for controlling the wireless charging module 320. The wireless charging module 320 and the PCB circuit board 330 are located inside the cage 100. The heating element 150, ultraviolet light source 160, and wireless charging module 320 are all electrically connected to the PCB circuit board 330. This electrical connection via the PCB circuit board 330 enables control of the heating element 150, ultraviolet light source 160, and wireless charging module 330, achieving multiple functions such as disinfection, heating and drying, and wireless charging with a simple structure.
[0044] The above solution involves placing temporarily unused items 400, such as chopsticks, into the storage cavity 110, opening the sterilization box, and emitting ultraviolet light from the ultraviolet light source 160 located on the side wall of the storage cavity 110. This ultraviolet light sterilizes the chopsticks within the storage cavity 110. Heat generated by the heating element 150 at the bottom of the storage cavity 110 provides high-temperature sterilization of the chopsticks and dries any remaining water droplets. This dual sterilization process of ultraviolet light and high temperature thoroughly eliminates bacteria on the items, ensuring the cleanliness and hygiene of the chopsticks and other items 400 used by the user. This solves the problem of bacteria easily growing in existing storage boxes, which can negatively impact the user's health. Furthermore, by incorporating a wireless charging component into the chopstick holder, mobile devices (such as mobile phones 410) can be placed on it for wireless charging, expanding the chopstick holder's functionality beyond simply storing chopsticks and other tableware, thus broadening its application range.
[0045] Example 1
[0046] like Figure 2 As shown, based on the above embodiments, the cage 100 in this embodiment includes: a base plate 120, an outer shell 130, an inner shell 140, and a box 170. The base plate 120 is located below and laid on a horizontal plane. The outer shell 130 is detachably mounted on the base plate 120 in the vertical direction, and the outer shape of the outer shell 130 in the horizontal plane is square. The inner shell 140 is detachably mounted inside the outer shell 130, and the storage cavity 110 is formed in the inner shell 140. An inner cavity is formed between the outer shell 130 and the inner shell 140, and the inner cavity can be used to install the relevant electrical components of the disinfection box. The base plate 120 supports the outer shell 130 and the inner shell 140, forming an inner cavity between them, simplifying the structural design.
[0047] like Figure 2As shown, an ultraviolet light source circuit board 161 is disposed between the inner housing 140 and the outer housing 130, with the side away from the storage cavity 110 as the outer side. Therefore, the ultraviolet light source circuit board 161 is located on the outer side of the inner housing 140. The ultraviolet light source 160 is disposed on the ultraviolet light source circuit board 161, and the ultraviolet light source circuit board 161 drives the ultraviolet light source 160 to emit ultraviolet light after being powered on. Two ultraviolet light sources 160 are disposed on the ultraviolet light source circuit board 161, arranged side-by-side in a vertical direction, and both are located in the lower part of the storage cavity 110. In this embodiment, the lower part of the storage cavity 110 is the position near the bottom of the storage cavity 110, and the upper part of the storage cavity 110 is the position near the opening of the storage cavity 110. By placing the ultraviolet light source 160 in the lower part of the storage cavity 110, the coverage range of the ultraviolet light can be wider, and the sterilization effect stronger. It is easy to imagine that multiple ultraviolet light sources 160 can be set, and the multiple ultraviolet light sources 160 can be arranged in different ways according to production design requirements.
[0048] like Figure 2 As shown, the heating element 150 is disposed between the base plate 120 and the inner shell 140, allowing the heat generated by the heating element 150 to directly enter the storage cavity 110 from the bottom, improving heat transfer efficiency and reducing heat loss. The specific structure of the heating element 150 includes a heating plate 151 and a heat-conducting baffle 152. The heating plate 151 is disposed below the storage cavity 110 and generates heat when energized. The heat-conducting baffle 152 is disposed above the heating plate 151, conducting heat into the storage cavity 110. A through hole is formed in the middle of the inner shell 140, and the heat-conducting baffle 152 seals the through hole at the lower end of the inner shell 140, thus forming the storage cavity 110 on the inner shell 140. The upper surface of the heat-conducting baffle 152 forms the bottom of the storage cavity 110, and the side of the through hole forms the side wall of the storage cavity 110. The heat generated by the heating element 150 after being powered on is concentrated in the bottom area of the storage cavity 110, and the heating temperature can reach 60 degrees Celsius, thus achieving a better sterilization effect on the bottom of chopsticks and other tableware. This targeted sterilization and disinfection improves sterilization efficiency. Moreover, heating keeps the fingerprint cavity inside the chopstick holder dry, reducing the growth of bacteria.
[0049] like Figure 2 As shown, the inner wall of the storage cavity 110 is inclined, with the inclination direction being: the inner wall slopes towards the bottom center along the direction from the opening to the bottom. That is, the opening area of the storage cavity 110 is large and the bottom area is small, which facilitates the sliding of chopsticks along the inner wall of the storage cavity 110 when they are inserted, and guides the object 400 when it is inserted into the storage cavity 110.
[0050] like Figure 2 , Figure 3 As shown, the specific structure of the storage cavity 110 in this embodiment includes: a main storage cavity 111, a first auxiliary cavity 112, and a second auxiliary cavity 113. To facilitate the placement of different objects 400, the storage cavity 110 is divided into different areas. The main storage cavity 111 is vertically disposed within the inner shell 140. The first auxiliary cavity 112 and the second auxiliary cavity 113 are both located on the side of the main storage cavity 111 facing the ultraviolet light source 160. The first auxiliary cavity 112 and the second auxiliary cavity 113 are separated from the main storage cavity 111 by baffles. In this embodiment, it is not necessary to disinfect the interior of the first auxiliary cavity 112 and the second auxiliary cavity 113. The opening of the main storage cavity 111 is larger than the openings of the first auxiliary cavity 112 and the second auxiliary cavity 113. The opening of the main storage compartment 111 is large enough to hold a sufficient number of chopsticks. The second auxiliary compartment 113 can hold toothpicks sealed in paper bags, while the first auxiliary compartment 112 can be used to hold flower arrangements. When the chopstick holder is placed on the dining table and the lid is opened, a bright red rose or an artificial red rose can be inserted into the first auxiliary compartment 112 to enhance the aesthetics of the restaurant and improve the dining atmosphere. This makes it convenient to store and arrange different tableware or utensils, with different compartments for different functions to facilitate user use.
[0051] In this embodiment, the bottom of the first auxiliary cavity 112 and the bottom of the second auxiliary cavity 113 are both higher than the bottom of the storage cavity 110, and the bottom of the second auxiliary cavity 113 is higher than the bottom of the first auxiliary cavity 112. This facilitates the placement of objects 400 of different heights. If objects 400 of different heights are all placed in the main storage cavity 111, some short objects (such as toothpicks) will directly enter the interior of the main storage cavity 111 and will not protrude from the opening of the main storage cavity 111, which is inconvenient for picking up and putting down. Using storage cavities of different depths makes it convenient to place objects of different heights, which is more user-friendly. In addition, there is a certain gap between the bottom of the first auxiliary cavity 112 and the second auxiliary cavity 113 and the base plate 120, and the ultraviolet light source circuit board 161 and other electrical components can be set in the gap between the bottom of the first auxiliary cavity 112 and the second auxiliary cavity 113 and the base plate 120, which saves structural space and reduces the volume of the entire chopstick holder.
[0052] like Figure 2As shown, a drain hole 114 is provided at the bottom of the storage cavity 110, and the drain hole 114 passes through the heating element 150 and the cage. Water brought in by the object 400 accumulates at the bottom of the storage cavity 110 and flows out through the drain hole 114, thus preventing water brought in by the object 400 from accumulating at the bottom of the storage cavity 110.
[0053] like Figure 1 , Figure 4 As shown, the cover 200 is matched with the cage 100 and can cover the top of the cage 100. The cage 100 has an open storage cavity 110 with the opening facing upwards, facilitating the placement and removal of the item 400 to be disinfected. When the cover 200 is connected to the cage 100, it covers the opening of the storage cavity 110, thus covering the storage cavity 110 and allowing the item 400 to be disinfected inside the box. A retaining plate 210 protrudes from the side of the cover 200 facing the cage 100, and the retaining plate 210 is used to fit into the storage cavity 110, thereby connecting the cover 200 to the cage 100.
[0054] like Figure 1 As shown, in this embodiment, the box 170 is located outside the outer shell 130, specifically, the box 170 is located on the side of the outer shell 130 closer to the ultraviolet light source 160. The wireless charging component 300 is disposed inside the box 170. The wireless charging component 300 is used to wirelessly charge the mobile terminal. By setting the wireless charging component 300 on the chopstick holder, a mobile terminal (such as a mobile phone 410) can be placed on the chopstick holder to achieve wireless charging of the mobile phone 410.
[0055] like Figure 5 As shown, the wireless charging assembly 300 further includes a bracket 310, and the wireless charging module 320 includes a charging coil 321 and a coil plate 322. The PCB circuit board 330 is fixedly disposed within the housing 170. The bracket 310 is disposed within the housing 170 and located above the PCB circuit board 330. The coil plate 322 is located on the upper surface of the bracket 310, and the charging coil 321 is located on the upper surface of the coil plate 322. When the mobile terminal is placed on the upper surface of the housing 170, the charging coil 321 is controlled by the PCB circuit board 330 to wirelessly charge the mobile terminal.
[0056] The housing 170 also houses a rechargeable battery 340, which is electrically connected to the PCB circuit board and supplies power to the heating element 150, the ultraviolet light source 160, and the wireless charging module 320. The outer wall of the housing 170 is also equipped with control buttons and a charging interface, both electrically connected to the PCB circuit board. The charging interface can be connected to an external charger to charge the rechargeable battery 340. The rechargeable battery 340 supplies power to the heating element 150, the ultraviolet light source 160, and the wireless charging module 320. This allows the chopstick holder to remain usable even during power outages, improving its practicality.
[0057] Example 2
[0058] like Figure 5 , Figure 6 As shown, in another embodiment, based on Embodiment 1, the mobile phone 410 can also be charged and disinfected simultaneously. The specific structure is as follows:
[0059] like Figure 6 As shown, the upper surface of the box body 170 is lower than the upper surface of the outer shell 130. A slot 180 is provided on the outer wall of the outer shell 130 facing the box body 170. The slot 180 penetrates the side wall of the inner shell 140 facing the box body 170. The slot 180 is located above the upper surface of the housing 170 and extends horizontally along the side wall of the outer casing 130. This allows one end of the phone 410 to pass through the slot 180 and enter the storage cavity 110 when the phone 410 is placed flat on the upper surface of the housing 170. Since bacteria tend to accumulate at the microphone end of the phone 410, this slot 180 allows the earpiece to remain flat on the housing 170 while the microphone end is inserted into the storage cavity 110. This ensures that most of the phone 410 remains on the housing 170 for wireless charging, and the microphone end can be sterilized with ultraviolet light within the storage cavity 110. Additionally, when the earpiece end of the phone 410 is placed in the storage cavity 110, sterilization and wireless charging can be achieved simultaneously. When it is necessary to sterilize and wirelessly charge a mobile phone at the same time, the items in the first auxiliary cavity 112 and the second auxiliary cavity 113 need to be removed before the mobile phone is inserted for sterilization.
[0060] A sealing cover 181 is also movably disposed on the slot 180. The sealing cover 181 can be a push-pull type or a flip type. When the mobile phone 410 is not to be disinfected, the slot 180 is closed by the sealing cover 181, so that the side wall of the storage cavity 110 is sealed. When the mobile phone 410 needs to be disinfected, the sealing cover is opened and the mobile phone 410 can be inserted.
[0061] The push-pull sealing cap 181 allows the slot 180 to be opened or closed manually. Specifically, a groove (not shown in the figure) is provided on the inner wall of the outer casing. The sealing cap is embedded in the groove and slides vertically. Thus, when the slot needs to be opened, the sealing cap is manually pushed upwards to open the slot and insert the phone; to remove the phone, the sealing cap is pulled downwards to close the slot.
[0062] The flip-type sealing cap 181 can be opened or closed by directly pressing the slot 180 with the mobile phone 410. The specific structure is as follows: Figure 6 As shown, a torsion spring 182 is provided in the gap between the outer shell 130 and the inner shell 140, and the upper or lower end of the sealing cover 181 is hinged to the outer shell 130. One end of the torsion spring 182 abuts against the inner wall of the outer shell 130, and the other end abuts against the inner wall of the sealing cover 181. When one end of the mobile phone 410 is about to enter the slot 180, the mobile phone 410 abuts against the sealing cover 181 and pushes towards the storage cavity 110, thereby causing the sealing cover 181 to flip towards the storage cavity 110 (flip inward) and open the slot 180. The flipped sealing cover 181 compresses the torsion spring 182. When the mobile phone 410 is removed from the slot 180, the sealing cover 181 rotates toward the box 170 (flips outward) under the elastic force of the torsion spring 182. When the mobile phone 410 is completely removed from the slot 180, the sealing cover 181 closes the slot 180 under the action of the torsion spring 182.
[0063] In addition, to improve sterilization efficiency, a reflective layer 190 is provided inside the storage cavity 110. The reflective layer 190 is disposed on the inner wall of the storage cavity 110. To increase the irradiation range of the reflected ultraviolet light, reflective layers 190 are provided on the inner walls of the four sides of the storage cavity 110. Alternatively, reflective layers 190 can be provided on the bottom surface and the inner walls of the four sides of the storage cavity 110. In this way, when the light emitted from the ultraviolet light source 160 hits the reflective layer 190, the reflective layer 190 reflects it. After multiple reflections, the light energy is reflected onto the mobile phone 410 inserted into the storage cavity 110, thereby disinfecting and sterilizing the mobile phone 410.
[0064] The reflective layer 190 includes a triangular prism 191, the inclined surface of which is a reflective surface. Because the mirror surface of the triangular prism 191 is tilted, it can reflect ultraviolet light over a wide range, effectively increasing the coverage area of ultraviolet light. The reflective layer 190 also includes concave portions 192 and / or convex portions 193 located on the mirror surface of the triangular prism 191. The concave portions 192 and / or convex portions 193 on the mirror surface ensure that the reflected light fills the interior of the storage cavity 110 after reflection, allowing illumination from both the upper and lower surfaces of the phone 410. This enables the phone 410 to be charged and sterilized simultaneously. When sterilizing chopsticks, removing the phone 410 directs ultraviolet light towards the bottom of the chopsticks without affecting the sterilization function.
[0065] like Figure 5 As shown, when a reflective layer 190 is provided inside the storage cavity 110, it will shield the mobile phone signal located inside the storage cavity 110 to a certain extent, which will affect the mobile phone's information reception. Therefore, anti-shielding grooves 500 are formed on the reflective layer 190. Multiple anti-shielding grooves 500 are provided, and each anti-shielding groove 500 surrounds the inner wall of the storage cavity. The anti-shielding grooves 500 divide the reflective layer, thus preventing the reflective layer 190 from shielding the mobile phone signal. When the reflective layer 190 reflects ultraviolet light, it will not shield the mobile phone information, making the chopstick holder more practical.
[0066] It should be noted that when the phone is being charged and disinfected simultaneously, the phone is inserted into the storage cavity 110, and any chopsticks or other items inside the cavity are pushed aside. Only the earpiece or microphone end of the phone needs to be inserted into the storage cavity 110 to achieve the disinfection function. Furthermore, to separate the chopsticks or other items inside the storage cavity 110 from the phone being disinfected, a transparent film layer can be installed on the inner wall of the storage cavity 110. When the end of the phone to be disinfected is pushed into the storage cavity 110, it pushes the transparent film layer, causing it to deform and allowing the end of the phone to be disinfected to enter the storage cavity 110, thus separating the chopsticks inside the storage cavity 110 from the end of the phone to be disinfected.
[0067] In summary, this invention, by placing temporarily unused items 400, such as chopsticks, in the storage cavity 110 and opening the sterilization box, allows the ultraviolet light source 160 located on the side wall of the storage cavity 110 to emit ultraviolet light, which sterilizes the chopsticks inside the storage cavity 110. Heat generated by the heating element 150 at the bottom of the storage cavity 110 provides high-temperature sterilization of the chopsticks and dries any residual water droplets. This dual sterilization process of ultraviolet light and high temperature thoroughly eliminates bacteria growing on the items 400, ensuring the cleanliness and hygiene of the chopsticks and other items used by the user. This solves the problem of bacteria easily growing in existing storage boxes, which can negatively impact the user's health.
[0068] It should be understood that the application of the present invention is not limited to the examples above. Those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. A sterilizing chopsticks holder with wireless charging function, characterized in that, include: A cage, a wireless charging component used for wirelessly charging mobile terminals; The cage is provided with an open storage cavity, and a heating element is provided at the bottom of the storage cavity; An ultraviolet light source is installed inside the cage, and a light-transmitting hole is opened on the inner side wall of the storage cavity, with the ultraviolet light source facing the light-transmitting hole; The wireless charging component includes: A wireless charging module, wherein the wireless charging module is located within the cage; A PCB circuit board, wherein the PCB circuit board is located within the cage; The heating element, ultraviolet light source, and wireless charging module are all electrically connected to the PCB circuit board; The cage includes: a bottom plate; An outer casing, wherein the outer casing is disposed vertically on the base plate; An inner housing, wherein the inner housing is disposed within the outer housing; A box body, which is connected to the base plate and located on one side of the outer shell; The heating element is disposed between the base plate and the inner shell, and the storage cavity is opened in the inner shell; The wireless charging module is located inside the box, and the PCB circuit board is located on the side of the wireless charging module facing the bottom plate; The upper surface of the box body is lower than the upper surface of the outer shell body. A slot is provided on the outer wall of the outer shell body facing the box body. The slot penetrates the side wall of the inner shell body facing the box body and is located above the upper surface of the box body. When the phone is placed flat on the upper surface of the box, one end of the phone can pass through the slot and enter the storage cavity. After the microphone end of the phone is inserted into the storage cavity through the slot, the earpiece part of the phone is placed flat on the box. The microphone end of the phone is sterilized by ultraviolet light in the storage cavity, realizing wireless charging while sterilizing the phone.
2. The sterilizing chopsticks holder with wireless charging function according to claim 1, characterized in that, It also includes an ultraviolet light source circuit board, on which the ultraviolet light source is disposed, and the ultraviolet light source circuit board is located on the outside of the inner housing.
3. The sterilizing chopsticks holder with wireless charging function according to claim 1, characterized in that, The storage cavity includes: The main storage cavity is vertically disposed on the inner shell; The first auxiliary cavity and the second auxiliary cavity; The first auxiliary cavity and the second auxiliary cavity are both located on the side of the main storage cavity facing the ultraviolet light source. The first auxiliary cavity and the second auxiliary cavity are separated from the main storage cavity by a baffle. The first auxiliary cavity and the second auxiliary cavity are separated by a baffle.
4. The sterilizing chopsticks holder with wireless charging function according to claim 3, characterized in that, The bottom of both the first auxiliary cavity and the bottom of the second auxiliary cavity are higher than the bottom of the storage cavity; The bottom of the second auxiliary cavity is higher than the bottom of the first auxiliary cavity.
5. The sterilizing chopsticks holder with wireless charging function according to claim 1, characterized in that, The inner wall of the storage cavity is inclined, and the inclination direction is: the inner wall is inclined close to the bottom center along the direction of the opening towards the bottom.
6. The sterilizing chopsticks holder with wireless charging function according to claim 1, characterized in that, The heating element includes a heating element disposed below the storage cavity; A heat-conducting baffle is disposed above the heating element.
7. The sterilizing chopsticks holder with wireless charging function according to claim 1, characterized in that, The bottom of the storage cavity is provided with a drainage hole, which connects the heating element and the cage.
8. The sterilizing chopsticks holder with wireless charging function according to claim 1, characterized in that, It also includes a cover that is detachably connected to the cage body, the cover being used to cover the opening of the storage cavity; The cover has a locking platform protruding from one side of the cage, which is used to fit into the storage cavity so that the cover is connected to the cage.
9. The sterilizing chopsticks holder with wireless charging function according to claim 1, characterized in that, The box also contains a rechargeable battery, which is electrically connected to the PCB circuit board and supplies power to the heating component, the ultraviolet light source, and the wireless charging module respectively. The outer wall of the box is also provided with control buttons and a charging interface, and the control buttons and the charging interface are respectively electrically connected to the PCB circuit board.
Citation Information
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