Integrated disinfection plate and disinfection cabinet with same
By integrating the air inlet, air outlet, and air outlet channels onto the mounting plate, the problem of high production costs in existing disinfection cabinets is solved, achieving low-cost, high-efficiency production and better drying results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO KADEER ELECTRICAL APPLIANCES
- Filing Date
- 2025-05-08
- Publication Date
- 2026-05-12
AI Technical Summary
The air inlet and air outlet of existing disinfection cabinets are located on the base and top cover respectively, which requires separate processing during production and increases processing costs.
将进风通道、过风通道和出风通道一体成型在一块安装板上,生产时只需一个模具即可成型,集成消毒板装配至消毒柜中时热风实现侧进侧出,提高烘干效果。
It reduces production costs, improves production efficiency and drying performance, achieves better hot air circulation, reduces airflow loss, and enhances drying effect and performance.
Smart Images

Figure CN224220456U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of disinfection cabinet technology, and in particular to an integrated disinfection panel and a disinfection cabinet having the same. Background Technology
[0002] A Chinese patent with publication number CN211434297U discloses an ozone reduction device for an ozone disinfection cabinet, including a base with supporting feet at the bottom and a top cover connected to the top of the base. An air inlet and an air outlet are respectively provided on the base and the top cover. Both the air inlet and the air outlet are equipped with filters. The air inlet and the air outlet are connected by an air duct. A heating device and a humidifying device are provided on the air duct to humidify and heat the gas. The front of the base is equipped with an input keyboard, a display panel, a working indicator light, and a completion indicator light.
[0003] However, the above-mentioned disinfection cabinet has the following drawbacks: the air inlet of the disinfection cabinet is located on the base, and the air outlet is located on the top cover. During production, the top cover and the base need to be processed separately to form the corresponding air inlet and air outlet, which results in high processing costs and urgently needs to be improved. Utility Model Content
[0004] The purpose of this invention is to provide an integrated disinfection board and a disinfection cabinet incorporating it, which can reduce production costs, improve production efficiency, and enhance drying performance.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an integrated disinfection plate, including an installation plate, the installation plate having an air passage and an air outlet, an air inlet integrally formed on the installation plate, the air inlet having an air inlet channel, and the air outlet end of the air inlet channel being connected to the air inlet end of the air passage.
[0006] By adopting the above technical solution, this utility model integrates the air inlet channel, the air passage channel, and the air outlet channel into a single mounting plate. During production, only one mold is needed to form the mounting plate, making the production method simple, efficient, and with lower manufacturing costs. Furthermore, when the integrated disinfection plate of this utility model is assembled into the disinfection cabinet, hot air is blown into the disinfection cabinet from the air inlet channel of the mounting plate, and the hot air that has finished circulating is blown out from the air outlet channel of the mounting plate. This allows the hot air to enter and exit from the side, resulting in better circulation and improved drying effect. This design reduces production costs, increases production efficiency, and enhances drying performance.
[0007] A further feature of this invention is that: a thin-walled protrusion is integrally formed on the mounting plate, the air passage is formed in the inner cavity of the thin-walled protrusion, the air inlet of the air passage is opened on the side wall of the thin-walled protrusion, and the air outlet of the air passage penetrates the surface of the mounting plate away from the thin-walled protrusion.
[0008] By adopting the above technical solution, the airflow entering from the air inlet channel can enter the inner cavity of the thin-walled protrusion laterally from the side wall of the thin-walled protrusion, and after being guided and redirected by the inner wall of the thin-walled protrusion, it can be blown directly out from the side wall of the mounting plate.
[0009] A further feature of this invention is that a connecting sleeve is provided between the air inlet and the thin-walled protrusion, the air inlet channel is connected to the air passage through the connecting sleeve, and a heating element is installed in the inner cavity of the connecting sleeve.
[0010] By adopting the above technical solution, the connecting sleeve is easy to disassemble and assemble from the mounting plate, which facilitates the disassembly and cleaning of the heating element. The heating element is used to heat the air at the air inlet of the air passage, so that the air blown out from the air passage is hotter and drier, thereby improving the efficiency of disinfection and drying of this utility model.
[0011] A further feature of this invention is that the mounting plate is provided with a fan device, the fan device having a fan inlet and a fan outlet, and the fan outlet being connected to the air inlet end of the air inlet channel.
[0012] By adopting the above technical solution, the airflow is drawn into the fan device from the fan inlet, and after being guided by the fan device, it is blown into the air inlet channel from the fan outlet.
[0013] A further feature of this invention is that an air-enhancing hood is mounted on the mounting plate, the air-enhancing hood has an flared air-enhancing inlet, and the air-enhancing hood is also provided with a plurality of air-filling holes that communicate with the air-enhancing inlet, the air-enhancing inlet being connected to the fan inlet through the air-filling holes.
[0014] By adopting the above technical solution, the flared air inlet is conducive to drawing in more airflow, enabling the fan device to draw more air from the air inlet and blow it into the air intake channel, thereby improving the drying efficiency of this utility model.
[0015] A further feature of this invention is that the air inlet includes two side plates arranged opposite to each other, with a notch formed between the two side plates, and the air booster hood is provided with a sealing part corresponding to the notch. When the air booster hood is installed on the mounting plate, the sealing part is sealed to the notch.
[0016] By adopting the above technical solution, the setting of the gap reduces the amount of raw materials used, and the sealing part of the air hood cooperates with the sealing of the gap to save production costs while ensuring airtightness.
[0017] A further feature of this invention is that a reflector is mounted on one side of the mounting plate, the reflector having an air inlet and an air outlet, the air inlet being connected to the air outlet end of the air passage, and the air outlet being connected to the air inlet end of the air outlet passage.
[0018] By adopting the above technical solution, the reflector and the mounting plate are integrated into one unit, thereby improving the integration level of this utility model.
[0019] A further feature of this invention is that an air inlet sealing ring and an air outlet sealing ring are provided between the reflector and the mounting plate, and the air inlet sealing ring is arranged between the air inlet hole and the air outlet end of the air passage, and the air outlet sealing ring is arranged between the air outlet hole and the air inlet end of the air outlet passage.
[0020] By adopting the above technical solution, the addition of the air inlet sealing ring and the air outlet sealing ring improves the sealing performance between the reflector and the mounting plate, reduces airflow loss, and improves the drying effect of this utility model.
[0021] A disinfection cabinet includes an outer shell body, an annular reflective frame assembly built into the outer shell body, and an integrated disinfection plate. The annular reflective frame assembly is fixedly connected to the mounting plate to form a disinfection cavity. The disinfection cavity is connected to the air passage and the air outlet respectively. A panel assembly is hinged to the opening end of the disinfection cavity of the outer shell body.
[0022] By adopting the above technical solution, during assembly, the mounting plate can be installed on the back of the annular reflective frame assembly to form a disinfection chamber. The disinfection chamber can be opened and closed by flipping the opening and closing panel assembly.
[0023] A further feature of this invention is that the outer shell body is provided with a filter element mounting position, the filter element mounting position is provided with a mounting groove and a plurality of hollow holes communicating with the mounting groove, the mounting groove is provided with a HEPA filter element and a filter screen, the outer shell body is detachably provided with a rear cover plate at the opening end of the mounting groove, and the rear cover plate is provided with a cold air inlet hole communicating with the mounting groove.
[0024] By adopting the above technical solution, the HEPA filter element and filter screen in the installation slot can be disassembled and cleaned by opening the rear cover. When in use, external air enters the installation slot through the cold air inlet and, after being filtered through multiple stages by the HEPA filter element and filter screen, becomes drier and purer air before entering the disinfection cabinet.
[0025] In summary, this utility model has the following beneficial effects:
[0026] This invention integrates the air inlet, air outlet, and air outlet channels onto a single mounting plate. This single-piece molding process requires only one mold to form the mounting plate, resulting in a simple, efficient, and cost-effective production method. Furthermore, when the integrated disinfection plate is assembled into the disinfection cabinet, hot air is blown into the cabinet through the air inlet channel of the mounting plate, and the hot air, after circulation, is blown out through the air outlet channel. This side-entry and side-exit design improves the circulation effect, thereby enhancing the drying performance. The invention also reduces production costs, increases production efficiency, and improves drying performance. Attached Figure Description
[0027] Figure 1 This is an overall structural diagram of the present invention.
[0028] Figure 2 This is a utility model Figure 1 A longitudinal sectional view.
[0029] Figure 3 This is an exploded view of the disinfection cabinet of this utility model.
[0030] Figure 4 This is a structural diagram of the disinfection board of this utility model.
[0031] Figure 5 This is a structural diagram of the disinfection plate of this utility model from another perspective.
[0032] Figure 6 This is an exploded view of the disinfection plate of this utility model; the reflector is not shown.
[0033] Figure 7 This is a utility model Figure 6 Another perspective.
[0034] Figure 8 This is an exploded view of the disinfection board of this utility model.
[0035] Figure 9 This is a utility model Figure 8 Another perspective.
[0036] Figure 10 This is an exploded view of the HEPA filter element, filter screen, rear cover plate, and outer shell of this utility model.
[0037] In the diagram: 1. Mounting plate; 11. Air inlet; 110. Air inlet channel; 111. Side plate; 112. Notch; 12. Thin-walled protrusion; 120. Air passage; 13. Air outlet channel; 14. Connecting sleeve; 141. Heating element; 15. Fan unit; 151. Fan inlet; 152. Fan outlet; 16. Air booster hood; 161. Air booster inlet; 162. Air inlet hole; 163. Sealing part; 17. Air inlet sealing ring; 18. 1. Air outlet sealing ring; 191. Controller; 192. Negative ion generator; 193. Temperature detector; 194. Disinfection lamp assembly; 2. Reflector; 21. Air inlet; 22. Air outlet; 3. Main body of the outer shell; 31. Filter installation position; 32. Installation groove; 321. HEPA filter; 322. Filter screen; 33. Hollow hole; 34. Rear cover; 341. Cold air inlet; 4. Annular reflector frame assembly; 40. Disinfection chamber; 5. Panel assembly. Detailed Implementation
[0038] The present invention will be further described below with reference to the accompanying drawings.
[0039] An integrated disinfection panel, such as Figures 1-9 As shown, the mounting plate 1 includes an air inlet 120 and an air outlet 13. An air inlet 11 is integrally formed on the mounting plate 1, and an air inlet 110 is provided in the air inlet 11. The air outlet end of the air inlet 110 is connected to the air inlet end of the air inlet 120. A thin-walled protrusion 12 is integrally formed on the mounting plate 1. The air inlet 120 is formed in the inner cavity of the thin-walled protrusion 12. The air inlet end of the air inlet 120 is located on the side wall of the thin-walled protrusion 12, and the air outlet end of the air inlet 120 penetrates the surface of the mounting plate 1 away from the thin-walled protrusion 12. This allows the airflow entering from the air inlet 110 to enter the inner cavity of the thin-walled protrusion 12 laterally from the side wall of the thin-walled protrusion 12, and after being guided and redirected by the inner wall of the thin-walled protrusion 12, it exits directly from the side wall of the mounting plate 1. The air inlet 11 and the thin-walled protrusion 12 are connected by a connecting sleeve 14. The air inlet channel 110 is connected to the air passage 120 through the connecting sleeve 14. A heating element 141 is installed in the inner cavity of the connecting sleeve 14, which makes it easy to remove and install the connecting sleeve 14 from the mounting plate 1. This facilitates the removal, installation and cleaning of the heating element 141. The heating element 141 is used to heat the air at the air inlet end of the air passage 120, so that the air blown out from the air passage 120 is hotter and drier, thereby improving the efficiency of disinfection and drying of this utility model. In this embodiment, the heating element 141 is a PTC heating element. In this embodiment, an air passage gap is formed between the PTC heating element and the connecting sleeve 14. At the same time, the PTC heating element itself is porous, which improves the air heating efficiency and air passage effect.
[0040] like Figures 2-6As shown, a fan device 15 is provided on the mounting plate 1. The fan device 15 has a fan inlet 151 and a fan outlet 152. The fan outlet 152 is connected to the air inlet end of the air inlet channel 110. The airflow is drawn into the fan device 15 from the fan inlet 151, and after being guided by the fan device 15, it is blown into the air inlet channel 110 from the fan outlet 152. An air booster hood 16 is installed on the mounting plate 1. The air booster hood 16 has a flared air booster inlet 161, and the air booster hood 16 also has openings. A plurality of air intake holes 162 are connected to the air intake 161. The air intake 161 is connected to the fan inlet 151 through the air intake holes 162. The flared air intake 161 is conducive to drawing in more airflow, so that the fan device 15 can draw more air from the air intake 161 and blow it into the air inlet channel 110, thereby improving the drying efficiency of this utility model. The air inlet 11 includes two side plates 111 that are disposed opposite to each other on the mounting plate 1, and a notch 11 is formed between the two side plates 111. 2. The air-enhancing hood 16 is provided with a sealing part 163 corresponding to the notch 112. When the air-enhancing hood 16 is installed on the mounting plate 1, the sealing part 163 and the notch 112 are sealed together. The setting of the notch 112 reduces the amount of raw materials used. By sealing the air-enhancing hood 16 with the notch 112, the production cost is saved while ensuring the airtightness. In other embodiments, the two side plates 111 can also be integrally formed on the air-enhancing hood 16. In this embodiment, a controller 191 and a disinfection lamp group 194 are also installed on the mounting plate 1. A negative ion generator 192 is installed on the thin-walled protrusion 12 of the mounting plate 1. The negative ion generator 192 can release negative ions, so that the hot air blown into the disinfection cabinet through the air passage 120 carries negative ions, thereby improving the disinfection and sterilization effect in the disinfection chamber 40. A temperature detector 193 is provided in the air outlet passage 13 of the mounting plate 1. The temperature sensor can detect the temperature of the hot air at the air inlet of the air outlet passage 13 in real time.
[0041] like Figures 8-9 As shown, a reflector plate 2 is installed on the side of the mounting plate 1 away from the air inlet 11. The reflector plate 2 has an air inlet hole 21 and an air outlet hole 22. The air inlet hole 21 is connected to the air outlet end of the air passage 120, and the air outlet hole 22 is connected to the air inlet end of the air outlet passage 13, so that the reflector plate 2 and the mounting plate 1 are integrated into one unit, which improves the integration of this utility model. An air inlet sealing ring 17 and an air outlet sealing ring 18 are provided between the reflector plate 2 and the mounting plate 1. The air inlet sealing ring 17 is arranged between the air inlet hole 21 and the air outlet end of the air passage 120, and the air outlet sealing ring 18 is arranged between the air outlet hole 22 and the air inlet end of the air outlet passage 13. The addition of the air inlet sealing ring 17 and the air outlet sealing ring 18 improves the sealing performance between the reflector plate 2 and the mounting plate 1, reduces airflow loss, and improves the drying effect of this utility model.
[0042] A type of disinfection cabinet, such as Figures 1-3 and Figure 10As shown, the device includes a main body 3, an annular reflective frame assembly 4 built into the main body 3, and the aforementioned integrated disinfection plate. The annular reflective frame assembly 4 is fixedly connected to the mounting plate 1 to form a disinfection chamber 40. The disinfection chamber 40 is connected to the air passage 120 and the air outlet 13. A panel assembly 5 is hinged to the opening end of the disinfection chamber 40 on the main body 3. During assembly, the mounting plate 1 can be installed on the back of the annular reflective frame assembly 4 to form the disinfection chamber 40. The disinfection chamber 40 can be opened and closed by flipping and opening the panel assembly 5. The main body 3 is provided with a filter element mounting position 31, which has an opening... The mounting slot 32 has several perforated holes 33 that connect to it. The mounting slot 32 contains a HEPA filter element 321 and a filter screen 322. The outer shell 3 is detachably equipped with a rear cover plate 34 at the opening end of the mounting slot 32. The rear cover plate 34 has a cold air inlet 341 that connects to the mounting slot 32. By opening the rear cover plate 34, the HEPA filter element 321 and the filter screen 322 in the mounting slot 32 can be disassembled, installed, and cleaned. When in use, outside air enters the mounting slot 32 through the cold air inlet 341. After being filtered through multiple stages by the HEPA filter element 321 and the filter screen 322, drier and purer air enters the disinfection cabinet.
[0043] The basic working principle of this utility model is as follows: the air inlet channel 110, the air passage 120, and the air outlet channel 13 are integrally set on a single mounting plate 1. The air inlet channel 110, the air passage 120, and the air outlet channel 13 are integrally formed on a single mounting plate 1. Only one mold is needed to form the mounting plate 1 during production, making the production method simple, efficient, and with lower manufacturing costs. When the integrated disinfection plate of this utility model is assembled into the disinfection cabinet, hot air is blown into the disinfection cabinet from the air inlet channel 110 of the mounting plate 1, and the hot air after circulation ends is blown out from the air outlet channel 13 of the mounting plate 1. This allows the hot air to enter and exit from the side, resulting in better circulation and thus improving the drying effect. This has the effect of reducing production costs, improving production efficiency, and enhancing drying performance.
[0044] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. An integrated disinfection panel, comprising a mounting plate (1), characterized in that: The mounting plate (1) has an air passage (120) and an air outlet (13). An air inlet (11) is integrally formed on the mounting plate (1). The air inlet (11) has an air inlet channel (110). The air outlet end of the air inlet channel (110) is connected to the air inlet end of the air passage (120).
2. The integrated disinfection board according to claim 1, characterized in that: A thin-walled protrusion (12) is integrally formed on the mounting plate (1). The air passage (120) is formed in the inner cavity of the thin-walled protrusion (12). The air inlet end of the air passage (120) is opened on the side wall of the thin-walled protrusion (12). The air outlet end of the air passage (120) penetrates the surface of the mounting plate (1) away from the thin-walled protrusion (12).
3. The integrated disinfection board according to claim 2, characterized in that: A connecting sleeve (14) is provided between the air inlet (11) and the thin-walled protrusion (12). The air inlet channel (110) is connected to the air passage (120) through the connecting sleeve (14), and a heating element (141) is installed in the inner cavity of the connecting sleeve (14).
4. The integrated disinfection board according to claim 1, characterized in that: The mounting plate (1) is provided with a fan device (15), which has a fan inlet (151) and a fan outlet (152). The fan outlet (152) is connected to the air inlet end of the air inlet channel (110).
5. An integrated disinfection board according to claim 4, characterized in that: An air booster hood (16) is installed on the mounting plate (1). The air booster hood (16) has an flared air booster inlet (161). The air booster hood (16) is also provided with a plurality of air inlet holes (162) that communicate with the air booster inlet (161). The air booster inlet (161) is connected to the fan inlet (151) through the air inlet holes (162).
6. An integrated disinfection board according to claim 5, characterized in that: The air inlet (11) includes two side plates (111) arranged opposite to each other, with a notch (112) formed between the two side plates (111). The air booster hood (16) is provided with a sealing part (163) corresponding to the notch (112). When the air booster hood (16) is installed on the mounting plate (1), the sealing part (163) and the notch (112) are sealed together.
7. An integrated disinfection board according to claim 1, characterized in that: A reflector plate (2) is installed on one side of the mounting plate (1). The reflector plate (2) has an air inlet (21) and an air outlet (22). The air inlet (21) is connected to the air outlet end of the air passage (120), and the air outlet (22) is connected to the air inlet end of the air outlet passage (13).
8. An integrated disinfection board according to claim 7, characterized in that: An air inlet sealing ring (17) and an air outlet sealing ring (18) are provided between the reflector (2) and the mounting plate (1). The air inlet sealing ring (17) is arranged between the air inlet hole (21) and the air outlet end of the air passage (120), and the air outlet sealing ring (18) is arranged between the air outlet hole (22) and the air inlet end of the air outlet passage (13).
9. A disinfection cabinet, comprising an outer shell body (3) and an annular reflective frame assembly (4) built into the outer shell body (3), characterized in that: It also includes an integrated disinfection plate as described in any one of claims 1-8, wherein the annular reflective frame assembly (4) is fixedly connected to the mounting plate (1) to form a disinfection cavity (40), the disinfection cavity (40) is connected to the air passage (120) and the air outlet (13) respectively, and the outer shell body (3) has a panel assembly (5) hinged to the opening end of the disinfection cavity (40).
10. A disinfection cabinet according to claim 9, characterized in that: The outer shell body (3) is provided with a filter element mounting position (31), the filter element mounting position (31) is provided with a mounting groove (32) and a plurality of hollow holes (33) communicating with the mounting groove (32), the mounting groove (32) is provided with a HEPA filter element (321) and a filter screen (322), the outer shell body (3) is detachably provided with a rear cover plate (34) at the opening end of the mounting groove (32), the rear cover plate (34) is provided with a cold air inlet hole (341) communicating with the mounting groove (32).
Citation Information
Patent Citations
Ozone reduction equipment for ozone disinfection cabinet
CN211434297U