Low-temperature drying ozone sterilization cabinet
By introducing filtration, drying and disinfection components into the ozone sterilization cabinet, the problems of low ozone conversion, low utilization efficiency and uneven distribution in traditional ozone sterilization cabinets are solved, and the sterilization effect is significantly improved.
Patent Information
- Application Number
- PCT/CN2024/135090
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-12-21
- Filing Date
- 2024-11-28
- Publication Date
- 2025-06-26
AI Technical Summary
The air in traditional ozone sterilization cabinets contains a large amount of impurities such as dust, resulting in low conversion rate of ozone, low utilization efficiency, and uneven ozone distribution, and some items cannot come into contact with ozone, resulting in poor sterilization effect.
A low-temperature drying ozone sterilization cabinet is designed, including filter components, drying components, disinfection components, inner bracket components and storage components. The filter assembly filters impurities in the air through a filter mesh, the drying assembly is dried by a fan and heating device, the disinfection assembly generates and evenly discharges ozone through an ozone generator, and the inner bracket assembly and the storage assembly provide support and placement space.
By filtering impurities in the air, the conversion rate and utilization efficiency of ozone are improved, ensuring that the ozone is evenly distributed in the cabinet, and all items can be exposed to ozone, thereby improving the sterilization effect.
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Figure CN2024135090_26062025_PF_FP_ABST
Abstract
Description
A low-temperature drying ozone sterilizer Technical Field
[0001] The present invention relates to the technical field of ozone sterilization, in particular to a low-temperature drying ozone sterilization cabinet. Background Art
[0002] A low-temperature drying ozone sterilizer is a device used for low-temperature drying and ozone sterilization of items. By controlling the temperature and humidity, items are placed inside the sterilizer and dried at low temperatures. Simultaneously, ozone gas is introduced into the sterilizer, sterilizing them by oxidizing bacterial and viral proteins. Compared to traditional high-temperature sterilization methods, ozone sterilization is gentler and maintains the quality and performance of items. Ozone sterilization also boasts a broad-spectrum bactericidal capability, effectively eliminating a wide range of bacteria and viruses. These sterilizers are widely used in the medical, food, laboratory, and biotechnology industries. They can handle a wide variety of items, including laboratory instruments, medical devices, pharmaceuticals, food, textiles, and other items that require drying and sterilization. Traditional ozone sterilizers contain a high concentration of impurities, such as dust, which results in a low ozone conversion rate. Furthermore, impurities in the air pre-consume a significant amount of ozone, resulting in low ozone utilization efficiency. Furthermore, ozone is unevenly distributed upon entering the sterilizer, preventing some items from reaching the ozone, resulting in poor sterilization effectiveness. Summary of the Invention
[0003] In order to overcome the problem that the air in traditional ozone sterilizers contains a large amount of dust and other impurities, resulting in a low ozone conversion rate, and the impurities in the air will pre-consume a large amount of ozone, resulting in low ozone utilization efficiency, the ozone is unevenly distributed when entering the sterilization box, and some items cannot be exposed to ozone, resulting in poor sterilization effect.
[0004] The technical solution of the present invention is: a low-temperature drying ozone sterilizer, including a box assembly, a filter assembly, a drying assembly, a disinfection assembly, an inner bracket assembly and a storage assembly; the filter assembly is provided on the side of the box assembly, the drying assembly is provided on the inner bottom surface of the box assembly, the disinfection assembly is provided on the inner side of the box assembly, the inner bracket assembly is provided on the inner side of the box assembly, and the storage assembly is provided on the inner side of the inner bracket assembly, and multiple groups of storage assemblies are provided.
[0005] In some embodiments, the box assembly provides a closed drying and sterilization environment for the device, the filter assembly filters impurities and other substances in the air entering the device, the drying assembly dries the substances placed in the device, the ozone generated by the disinfection assembly disinfects and sterilizes the substances placed in the device, and the internal bracket assembly provides support for the storage assembly, and the substances that need to be dried and sterilized are placed in the storage assembly.
[0006] In some embodiments, the box assembly includes an outer box, a support base, support columns, an anti-slip pad, a box door, a door handle and an observation port; the bottom surface of the outer box is provided with a support base, the bottom surface of the support base is provided with support columns, four groups of support columns are provided, the bottom surfaces of the support columns are provided with anti-slip pads, the side of the outer box is provided with a box door, two groups of box doors are provided, the side of the box door is provided with a door handle, and the side of the door handle is provided with an observation port. The door is opened by using the door handle to facilitate taking or placing the materials in the outer box, and the drying and sterilization of the internal materials can be observed through the observation port.
[0007] In some embodiments, the filter assembly includes a filter box, a filter screen and a filter handle; a filter box is provided on the side of the outer box body, a filter screen is provided inside the filter box, and a filter handle is provided on the side of the filter screen. The air entering the interior of the device is filtered through the filter screen to prevent impurities and other substances in the air from entering the interior of the device. The filter screen is removed from the interior of the filter box using the filter handle to facilitate replacement of the filter screen.
[0008] In some embodiments, the drying component includes a fan, an air inlet pipe, a diverter table, an air blowing pipe and a heating device; a fan is provided on the inner bottom surface of the outer box body, an air inlet pipe is provided on the side of the fan, two groups of air inlet pipes are provided, a diverter table is provided on the side of the air inlet pipe, a blowing pipe is provided on the top surface of the diverter table, multiple groups of air blowing pipes are provided, and a heating device is provided above the blowing pipe. The fan is used to blow the filtered air into the diverter table through the air inlet pipe, blow it out of the device through the air blowing pipe, and dry the inside of the device after being heated by the heating device.
[0009] In some embodiments, the disinfection component includes an ozone generator, a transport pipe and an ozone outlet; the ozone generator is provided on the inner side of the outer box, the transport pipe is provided at the output end of the ozone generator, the ozone outlet is provided on the outer side of the transport pipe, and there are multiple groups of ozone outlets. The ozone generated by the ozone generator is transported to various parts of the device through the transport pipe, and then evenly discharged into the device through the ozone outlet.
[0010] In some embodiments, the inner bracket assembly includes an inner support frame, a slide groove and a vent hole; the inner side of the outer box body is provided with an inner support frame, the inner side of the inner support frame is provided with a slide groove, and there are multiple groups of slide grooves; the outer side of the inner support frame is provided with vent holes, and there are multiple groups of vent holes; the slide groove is used to provide support for the storage box, and the vent hole is used to communicate with the ozone to facilitate ozone sterilization.
[0011] In some embodiments, the storage assembly includes a storage box, a slide column, a storage slot and a storage handle; the slide column is provided inside the slide slot, the storage box is provided on the side of the slide column, the storage slot is provided on the top surface of the storage box, and the storage handle is provided on the side of the storage box. The materials are placed in the storage box, and the storage box is extracted and pushed using the storage handle to facilitate the replacement of the materials in the storage box.
[0012] Beneficial effects of the present invention:
[0013] 1. Compared with traditional ozone sterilizers, the air inside contains a large amount of dust and other impurities, resulting in a low ozone conversion rate. In addition, impurities in the air will consume a large amount of ozone in advance, resulting in low ozone utilization efficiency. Ozone is unevenly distributed when entering the sterilization box, and some items are not exposed to ozone, resulting in poor sterilization effect. The present invention filters the air entering the device and filters and absorbs impurities and other substances contained in the air to prevent impurities from entering the device and consuming ozone. The generated ozone is transported to the surroundings of the device and then discharged, so that the ozone is evenly distributed in the device, which is convenient for disinfection and sterilization.
[0014] 2. Filter the air entering the device through the filter to prevent impurities and other substances in the air from entering the device. Use the filter handle to take the filter out of the filter box to facilitate filter replacement. Use the ozone generator to generate ozone and transport it to various parts of the device through the transport pipe. Then, it is evenly discharged into the device through the ozone outlet. The air vent is connected to the ozone to facilitate ozone sterilization.
[0015] 3. Observe the drying and sterilization of the internal materials through the observation ports on the two sets of box doors. Use the door handle to open the appropriate box door, use the storage handle to extract the storage box, and replace the materials that have been dried and sterilized inside. Use the fan to blow the filtered air into the diversion table through the air inlet pipe, blow it out of the device through the air blowing pipe, and dry the inside of the device after heating it with the heating device. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] FIG1 is a schematic diagram of a first three-dimensional structure of a low-temperature drying ozone sterilizer in one or more embodiments of the present invention;
[0017] FIG2 is a schematic diagram of a second three-dimensional structure of a low-temperature drying ozone sterilizer in one or more embodiments of the present invention;
[0018] FIG3 is a schematic diagram of the three-dimensional structure of a low-temperature drying ozone sterilizer box assembly in one or more embodiments of the present invention;
[0019] FIG4 is a schematic diagram of the three-dimensional structure of a drying component of a low-temperature drying ozone sterilizer in one or more embodiments of the present invention;
[0020] FIG5 is a schematic diagram of the three-dimensional structure of a low-temperature drying ozone sterilizer disinfection component in one or more embodiments of the present invention;
[0021] Explanation of the accompanying symbols: 100, low-temperature drying ozone sterilizer; 1, box assembly; 2, filter assembly; 3, drying assembly; 4, disinfection assembly; 5, inner bracket assembly; 6, storage assembly; 101, outer box; 102, support base; 103, support column; 104, anti-slip mat; 105, box door; 106, door handle; 107, observation port; 201, filter box; 202, filter screen; 203, filter handle; 301, fan; 302, air inlet pipe; 303, diverter table; 304, air blowing pipe; 305, heating device; 401, ozone generator; 402, air pipe; 403, ozone outlet; 501, inner support frame; 502, slide; 503, vent; 601, storage box; 602, slide column; 603, storage slot; 604, storage handle. DETAILED DESCRIPTION
[0022] The present invention will be further described below with reference to the accompanying drawings and examples.
[0023] Please refer to Figures 1-2. The present invention provides an embodiment: a low-temperature drying ozone sterilizer 100, including a box assembly 1, a filter assembly 2, a drying assembly 3, a disinfection assembly 4, an inner support assembly 5 and a storage assembly 6; the filter assembly 2 is provided on the side of the box assembly 1, the drying assembly 3 is provided on the inner bottom surface of the box assembly 1, the disinfection assembly 4 is provided on the inner side of the box assembly 1, the inner support assembly 5 is provided on the inner side of the box assembly 1, and the storage assembly 6 is provided on the inner side of the inner support assembly 5. There are multiple groups of storage assemblies 6. The box assembly 1 provides a closed drying and disinfection environment for the device, the filter assembly 2 filters impurities and other substances in the air entering the device, the drying assembly 3 dries the substances placed in the device, the ozone generated by the disinfection assembly 4 disinfects and sterilizes the substances placed in the device, the inner support assembly 5 provides support for the storage assembly 6, and the substances to be dried and sterilized are placed in the storage assembly 6.
[0024] Please refer to Figures 3-4. In this embodiment, the box assembly 1 includes an outer box 101, a support base 102, a support column 103, an anti-slip pad 104, a box door 105, a door handle 106 and an observation port 107; the bottom surface of the outer box 101 is provided with a support base 102, the bottom surface of the support base 102 is provided with support columns 103, four groups of support columns 103 are provided, and the bottom surface of the support columns 103 is provided with an anti-slip pad 104; the side of the outer box 101 is provided with a box door 105, two groups of box doors 105 are provided, the side of the box door 105 is provided with a door handle 106, and the side of the door handle 106 is provided with an observation port 107. The door handle 106 is used to open the box door 105, which is convenient for taking or placing materials in the outer box 101, and the drying and sterilization of the internal materials can be observed through the observation port 107. The filter assembly 2 includes a filter box 201, a filter screen 202 and a filter handle 203; the filter box 201 is provided on the side of the outer box body 101, and the filter screen 202 is provided inside the filter box 201. The filter screen 202 is movably assembled with the filter box 201, and a filter handle 203 is provided on the side of the filter screen 202. The air entering the interior of the device is filtered through the filter screen 202 to prevent impurities and other substances in the air from entering the interior of the device. The filter screen 202 is removed from the interior of the filter box 201 using the filter handle 203, which facilitates the replacement of the filter screen 202. The drying component 3 includes a fan 301, an air inlet pipe 302, a diverter table 303, an air blowing pipe 304 and a heating device 305; the fan 301 is provided on the inner bottom surface of the outer box body 101, and the air inlet pipe 302 is provided on the side of the fan 301, and the air inlet pipe 302 is provided in two groups. The diverter table 303 is provided on the side of the air inlet pipe 302, and the air blowing pipe 304 is provided on the top surface of the diverter table 303. There are multiple groups of air blowing pipes 304, and a heating device 305 is provided above the air blowing pipe 304. The fan 301 is used to blow the filtered air into the diverter table 303 through the air inlet pipe 302, and blow it out through the air blowing pipe 304, and then the inside of the device is dried after being heated by the heating device 305.
[0025] Please refer to Figure 5. In this embodiment, the disinfection component 4 includes an ozone generator 401, a delivery pipe 402 and an ozone outlet 403; the ozone generator 401 is provided on the inner side of the outer box body 101, and the delivery pipe 402 is provided at the output end of the ozone generator 401. The ozone outlet 403 is provided on the outside or inside of the delivery pipe 402. There are multiple groups of ozone outlets 403. The ozone generated by the ozone generator 401 is transported to various parts of the device through the delivery pipe 402, and then evenly discharged into the device through the ozone outlet 403. The inner bracket assembly 5 includes an inner support frame 501, a slide groove 502 and a vent 503; the inner side of the outer box body 101 is provided with an inner support frame 501, the inner side of the inner support frame 501 is provided with a slide groove 502, and the slide groove 502 is provided in multiple groups. The outer side of the inner support frame 501 is provided with a vent 503, and the vent 503 passes through the side wall of the inner support frame 501. The inner support frame 501 is provided on the inner side of the transport pipe 402, and the vent 503 is provided in multiple groups. The slide groove 502 is used to provide support for the storage box 601, and it communicates with the ozone through the vent 503 to facilitate ozone sterilization. The storage assembly 6 includes a storage box 601, a slide 602, a storage groove 603 and a storage handle 604; the slide 602 is arranged inside the slide groove 502, the storage box 601 is arranged on the side of the slide 602, the storage groove 603 is opened on the top surface of the storage box 601, and the storage handle 604 is arranged on the front side of the storage box 601. The items are placed in the storage box 601, and the storage box 601 is pulled out and pushed using the storage handle 604, which facilitates the replacement of the items in the storage box 601.
[0026] During operation, the door 105 is opened using the door handle 106, and the storage box 601 is taken out using the storage handle 604 to replace the contents of the storage box 601.
[0027] The air entering the device is filtered by the filter 202, and the filtered air is blown into the diversion table 303 through the air inlet pipe 302 by the fan 301, blown out through the air blowing pipe 304, and then heated by the heating device 305 to dry the inside of the device;
[0028] Ozone is generated by the ozone generator 401 and transported to various parts of the device through the transport pipe 402. It is then evenly discharged into the device through the ozone outlet 403 to sterilize the substances in the device.
[0029] The drying and sterilization of the internal substances can be observed through the observation port 107 , and the filter net 202 can be taken out from the interior of the filter box 201 using the filter handle 203 to replace the filter net 202 .
[0030] Through the above steps, the box assembly 1 provides a closed drying and disinfection environment for the device, the materials that need to be dried and sterilized are placed in the storage assembly 6, the inner bracket assembly 5 is used to provide support for the storage assembly 6, the filter assembly 2 is used to filter impurities and other substances in the air entering the device, the materials placed in the storage assembly 6 are dried by the drying assembly 3, and then the ozone generated by the disinfection assembly 4 is used to disinfect and sterilize the materials placed in the storage assembly 6.
[0031] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge of those skilled in the art without departing from the spirit of the present invention.
Claims
1. A low-temperature drying ozone sterilization cabinet, comprising a box body assembly (1); characterized in that: It also includes a filtering component (2), a drying component (3), a disinfection component (4), an inner support component (5) and a storage component (6); the filtering component (2) is arranged on the side of the box body component (1), the drying component (3) is arranged on the inner bottom surface of the box body component (1), the disinfection component (4) is arranged on the inner side of the box body component (1), the inner support component (5) is arranged on the inner side of the box body component (1), the storage component (6) is arranged on the inner side of the inner support component (5), and multiple groups of storage components (6) are provided.
2. The low-temperature drying ozone sterilization cabinet according to claim 1, wherein: The box body component (1) includes an outer box body (101), a support base (102), support columns (103), anti-slip pads (104), a box door (105), a door handle (106) and an observation port (107); the support base (102) is arranged on the bottom surface of the outer box body (101), the support columns (103) are arranged on the bottom surface of the support base (102), there are four groups of support columns (103), the anti-slip pads (104) are arranged on the bottom surface of the support columns (103), the box door (105) is arranged on the side of the outer box body (101), there are two groups of box doors (105), the door handle (106) is arranged on the side of the box door (105), and the observation port (107) is arranged on the side of the door handle (106).
3. The low-temperature drying ozone sterilization cabinet according to claim 2, characterized in that: The filtering component (2) includes a filtering box (201), a filter net (202) and a filtering handle (203); the filtering box (201) is arranged on the side of the outer box body (101), the filter net (202) is arranged inside the filtering box (201), and the filtering handle (203) is arranged on the side of the filter net (202).
4. The low-temperature drying ozone sterilization cabinet according to claim 2, characterized in that: The drying component (3) includes a fan (301), an air inlet pipe (302), a flow dividing table (303), air blowing pipes (304) and a heating device (305); the fan (301) is arranged on the inner bottom surface of the outer box body (101), the air inlet pipe (302) is arranged on the side of the fan (301), there are two groups of air inlet pipes (302), the flow dividing table (303) is arranged on the side of the air inlet pipe (302), the air blowing pipes (304) are arranged on the top surface of the flow dividing table (303), there are multiple groups of air blowing pipes (304), and the heating device (305) is arranged above the air blowing pipes (304).
5. The low-temperature drying ozone sterilization cabinet according to claim 2, characterized in that: The disinfection component (4) includes an ozone generator (401), an air delivery pipe (402) and ozone air outlets (403); the ozone generator (401) is arranged on the inner side of the outer box body (101), the output end of the ozone generator (401) is provided with the air delivery pipe (402), ozone air outlets (403) are formed on the outer side of the air delivery pipe (402), and multiple groups of ozone air outlets (403) are provided.
6. The low-temperature drying ozone sterilization cabinet according to claim 2, wherein: The inner support component (5) includes an inner support frame (501), sliding grooves (502) and ventilation holes (503); the inner support frame (501) is arranged on the inner side of the outer box body (101), the sliding grooves (502) are formed on the inner side of the inner support frame (501), multiple groups of sliding grooves (502) are provided, the ventilation holes (503) are formed on the outer side of the inner support frame (501), and multiple groups of ventilation holes (503) are provided.
7. The low-temperature drying ozone sterilization cabinet according to claim 6, characterized in that: The storage component (6) includes a storage box (601), a sliding column (602), a storage groove (603) and a storage handle (604); the sliding column (602) is arranged inside the sliding groove (502).
8. A low-temperature drying ozone sterilization cabinet according to claim 7, characterized in that: The storage box (601) is arranged on the side of the sliding column (602), the storage groove (603) is arranged on the top surface of the storage box (601), and the storage handle (604) is arranged on the side of the storage box (601).
9. The low-temperature drying ozone sterilization cabinet according to claim 7, wherein: The storage box (601) is arranged on the side of the sliding column (602), the storage groove (603) is arranged on the top surface of the storage box (601), and the storage handle (604) is arranged on the front side of the storage box (601).
10. A low-temperature drying ozone sterilization cabinet according to claim 2, characterized in that: The disinfection component (4) includes an ozone generator (401), an air delivery pipe (402) and an ozone outlet (403); the ozone generator (401) is arranged inside the outer box body (101), the output end of the ozone generator (401) is provided with the air delivery pipe (402), the ozone outlet (403) is arranged inside the air delivery pipe (402), and multiple groups of ozone outlets (403) are provided.
Citation Information
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