Stacked plate type ozone generator integration box

By installing partition plates and optimizing the gas path layout within the support box, the stacked plate ozone generator integrated box solves the problems of low gas output and large space occupation in the existing technology, and achieves the effect of efficient ozone production in a small space.

CN223592408UActive Publication Date: 2025-11-25WUXI SIRUI ELECTRONICS EQUIP TECH CO LTD

Patent Information

Application Number
CN202423196361.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-25
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing stacked plate ozone generators have low output and require a large amount of space when combined, resulting in insufficient space utilization.

Method used

A stacked plate ozone generator integrated box is designed. By setting multiple partition plates in the support box, an ozone generating unit, a cooling unit and a gas guiding unit are installed. The gas path layout is optimized, and multiple ozone generating devices are integrated, which increases the gas output and reduces the space occupation.

Benefits of technology

It increases ozone output in a relatively small space, with a compact structure and reasonable layout, meeting the needs of on-site ozone production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a stacked plate-type ozone generator integrated box which comprises a supporting box body, a plurality of plates and a plurality of plates, the plurality of groups of ozone generating units are mounted on the partition plates in a one-to-one correspondence manner; each group of ozone generation unit comprises one or a plurality of stacked plate type ozone generation devices which are arranged side by side; the plurality of groups of cooling units are in one-to-one correspondence with the partition plates; each group of cooling units comprises cooling modules of which the number is consistent with that of the stacked plate type ozone generating devices; the cooling module comprises a water inlet pipe communicated with the stacked plate type ozone generator, a water outlet pipe communicated with the stacked plate type ozone generator, a cooling plate connected with the water outlet pipe and a water return pipe connected with the cooling plate; and an air guide unit. The ozone generator can increase the ozone output in a small space, and is compact in structure and reasonable in arrangement.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of ozone generator, concretely relates to a stacked plate type ozone generator integrated box. BACKGROUND

[0002] Ozone generator is the device for preparing ozone gas. Since ozone is easy to decompose and cannot be stored, it needs to be prepared on site and used on site, so the place where ozone is usually used needs to be equipped with an ozone generator.

[0003] The Chinese utility model patent with the application number 202322801533.7 discloses a stacked plate type ozone generator shell, which comprises a support assembly, the support assembly comprises an upper support plate and a lower support plate arranged at intervals and a plurality of support rods connecting the upper support plate and the lower support plate; a generator assembly, the generator assembly comprises a plurality of cylindrical ozone generation units installed between the upper support plate and the lower support plate and arranged in layers, two groups of air guide mechanisms communicated with each cylindrical ozone generation unit, and two groups of cooling mechanisms communicated with each cylindrical ozone generation unit; one group of the air guide mechanisms is used for inputting oxygen, and the other group of the air guide mechanisms is used for outputting ozone; one group of the cooling mechanisms is used for inputting cooling water, and the other group of the cooling mechanisms is used for outputting cooling water. However, a single stacked plate type ozone generator usually has the defect of small gas output, so it is necessary to combine these stacked plate type ozone generators for use, and the existing combination method usually occupies a large space. SUMMARY

[0004] The utility model aims at overcoming the defects of the prior art and provides a stacked plate type ozone generator integrated box.

[0005] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a stacked plate type ozone generator integrated box, which comprises:

[0006] A support box body, the support box body comprises at least a plurality of partition plates;

[0007] A plurality of ozone generation units, a plurality of ozone generation units are installed on the partition plate one by one; each ozone generation unit comprises one or a plurality of stacked plate type ozone generator devices arranged side by side;

[0008] A plurality of cooling units, a plurality of cooling units correspond to the partition plate; each cooling unit comprises a cooling module consistent with the number of stacked plate type ozone generator devices, the cooling module comprises a water inlet pipe communicated with the stacked plate type ozone generator device, a water outlet pipe communicated with the stacked plate type ozone generator device, a cooling plate connected with the water outlet pipe and a backwater pipe connected with the cooling plate;

[0009] The gas guiding unit comprises a plurality of groups of gas guiding modules corresponding to the stacked plate type ozone generator, an oxygen inlet pipe communicated with the plurality of groups of gas guiding modules, a nitrogen inlet pipe communicated with the plurality of groups of gas guiding modules, an exhaust pipe communicated with the plurality of groups of gas guiding modules, and a plurality of ozone outlet pipes communicated with the plurality of groups of gas guiding modules one by one.

[0010] Each group of the gas guiding module comprises an oxygen inlet branch pipe communicated with the oxygen inlet pipe, a first pneumatic valve mounted on the oxygen inlet branch pipe, and a first flow meter mounted on the oxygen inlet branch pipe, and the oxygen inlet branch pipe is communicated with the stacked plate type ozone generator.

[0011] Further, each group of the gas guiding module further comprises a nitrogen inlet branch pipe communicated with the nitrogen inlet pipe, a second pneumatic valve mounted on the nitrogen inlet branch pipe, a second flow meter mounted on the nitrogen inlet branch pipe, a mixing pipe communicated with the oxygen inlet branch pipe and the nitrogen inlet branch pipe and communicated with the stacked plate type ozone generator, an inlet branch pipe communicated with the oxygen inlet branch pipe and communicated with the stacked plate type ozone generator, and an outlet branch pipe communicated with the stacked plate type ozone generator.

[0012] Further, each group of the gas guiding module further comprises a switching pipe communicated with the outlet branch pipe, an exhaust branch pipe communicated with the switching pipe and communicated with the exhaust pipe, and an ozone outlet branch pipe communicated with the switching pipe and communicated with one of the ozone outlet pipes.

[0013] The support box body comprises a support base, a top cover arranged above the support base, and a plurality of side plates mounted between the support base and the top cover to form an accommodation space therebetween, and a plurality of partition plates are mounted on the side plates and arranged in the accommodation space in an up-down manner.

[0014] The cooling module further comprises a bracket mounted on the partition plate, a cooling plate mounted on the bracket, and a plurality of driving plates mounted on two surfaces of the cooling plate.

[0015] The stacked plate type ozone generator integrated box of the present application has the following advantages compared with the prior art: the stacked plate type ozone generator integrated box of the present application is provided with a plurality of partition plates in the support box body, each of which is provided with an ozone generating unit comprising one or more stacked plate type ozone generator devices, and is matched with a cooling unit and a gas guiding unit, so that the ozone outlet amount can be increased in a small space, and the structure is compact and reasonable. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structure schematic view of the stacked plate type ozone generator integrated box of the utility model.

[0017] Figure 2 It is a structure schematic view of another view angle of the stacked plate type ozone generator integrated box of the utility model. DETAILED DESCRIPTION

[0018] The utility model will be further described below in combination with the embodiments shown in the drawings.

[0019] The following description of the embodiments is made with reference to the drawings, which are intended to illustrate specific embodiments of the utility model that can be implemented. The directions mentioned in the utility model, such as "up", "down", "front", "back", "left", "right", "inside", "outside", "side" and the like, are only the directions of the drawings. Therefore, the directions used are used to explain and understand the application, and not to limit the application. In addition, in the specification, unless explicitly described as the opposite, the word "includes" or "contains" should be understood as meaning including the element, but not excluding any other element.

[0020] As shown in Figure 1 and Figure 2 The stacked plate type ozone generator integrated box mainly comprises a support box body 1, an ozone generation unit 2, a gas guide unit 3 and a cooling unit and the like.

[0021] The support box body 1 comprises a support base 11, side plates 12, a top cover 13 and a partition plate 14 and the like. The top cover 13 is arranged above (usually directly above and cooperates with the support base 11) the support base 11; the side plates 12 are multiple, which are installed between the support base 11 and the top cover 13 to form a containing space (only part of the side plates 12 are shown in Figure 1 and Figure 2 The arrangement of the side plates 12 can be usually set according to the specific shape of the support box body 1 (such as the support box body 1 is in the shape of a cube or a column); the partition plates 14 are multiple, the number of which can be conventionally selected according to the height of the support box body 1 and the height of the ozone generation unit 2, which are usually installed on the multiple side plates 12 and arranged in the above-mentioned containing space in an upper and lower interval.

[0022] The ozone generation units 2 are multiple groups, which are one-to-one installed on the partition plates 14 (that is, the number of groups of ozone generation units 2 is consistent with the number of partition plates 14). Each group of ozone generation units 2 includes one or multiple stacked plate-type ozone generation devices 21 arranged side by side (the specific number of stacked plate-type ozone generation devices 21 in each group of ozone generation units 2 can be routinely selected according to the size of the partition plate 14), and in this embodiment, each group of ozone generation units 2 includes two stacked plate-type ozone generation devices 21 arranged side by side. The stacked plate-type ozone generation device 21 can be any conventional one, and is preferably the one disclosed in the Chinese Utility Model Patent with Application No. 202322801533.7 (in this application, it is defined as a stacked plate-type ozone generator housing), wherein each generator assembly includes multiple cylindrical ozone generation units stacked together (the cylindrical ozone generation unit is a deformed cylindrical structure). Specifically, in order to clarify the connection relationship between the stacked plate-type ozone generation device 21 and the cooling unit and the gas guiding unit, the two groups of liquid inlet pipes (one group for liquid inlet, and one group for liquid outlet) and the two groups of drainage pipes (one group for gas inlet, and one group for gas outlet) of the stacked plate-type ozone generator housing are highlighted here.

[0023] The cooling unit is multiple groups, and the number of groups is also consistent with the number of partition plates 14, so that the multiple groups of cooling units are one-to-one corresponding to the partition plates 14. Each group of cooling units includes a cooling module 4 consistent in number with the stacked plate-type ozone generation device 21, so that the cooling module 4 is one-to-one corresponding to the stacked plate-type ozone generation device 21 for use in cooperation to achieve cooling of the stacked plate-type ozone generation device 21. The cooling module 4 includes a water inlet pipe 40 (that is, in communication with the aforementioned liquid inlet pipe for liquid inlet) connected in communication with the stacked plate-type ozone generation device 21, a water outlet pipe 44 (that is, in communication with the aforementioned liquid outlet pipe for liquid outlet) connected in communication with the stacked plate-type ozone generation device 21, a cooling plate 42 connected with the water outlet pipe 44, and a backwater pipe 45 connected with the cooling plate 42, so that the cooling water can also cool the cooling plate 42 after cooling the stacked plate-type ozone generation device 21, thereby improving the utilization rate of cooling. In this embodiment, the cooling module 4 further includes a bracket 41 and multiple driving plates 43, the bracket 41 is installed on the partition plate 14, the cooling plate 42 is installed on the bracket 41, and the multiple driving plates 43 are installed on both surfaces of the cooling plate 42, so that the multiple driving plates 43 are one-to-one connected with the aforementioned cylindrical ozone generation unit for control (the circuit structure of the driving plate 43 can adopt the one disclosed in the Chinese Utility Model Patent with Application No. 202322815202.9), so that synchronous cooling of the driving plate 43 can also be achieved, thereby prolonging the service life of the driving plate 43.

[0024] The gas guiding unit 3 comprises a plurality of groups of gas guiding modules corresponding to the stacked plate type ozone generator 21, an oxygen inlet pipe 31 connected to the plurality of groups of gas guiding modules, a nitrogen inlet pipe 32 connected to the plurality of groups of gas guiding modules, an exhaust pipe 33 connected to the plurality of groups of gas guiding modules, and a plurality of ozone outlet pipes 30 connected to the plurality of groups of gas guiding modules one by one. The oxygen inlet pipe 31, the nitrogen inlet pipe 32 and the exhaust pipe 33 are arranged in parallel and vertically, and are mounted on the inner side of one side plate 12 through a plurality of first adapter blocks; and the plurality of ozone outlet pipes 30 are also arranged in parallel and vertically, and are mounted on the inner side of another side plate 12 (opposite to the aforementioned side plate 12) through a plurality of second adapter blocks.

[0025] Each group of gas guiding modules comprises an oxygen inlet branch pipe 34 connected to the oxygen inlet pipe 31, a first flow meter 341 mounted on the oxygen inlet branch pipe 34, and a first pneumatic valve mounted on the oxygen inlet branch pipe 34 (the first pneumatic valve is located downstream of the first flow meter 341, and the same applies hereinafter in terms of gas flow direction); and each group of gas guiding modules further comprises a nitrogen inlet branch pipe 35 connected to the nitrogen inlet pipe 32, a second flow meter 351 mounted on the nitrogen inlet branch pipe 35, a second pneumatic valve mounted on the nitrogen inlet branch pipe 35, a mixing pipe 36 connected to the oxygen inlet branch pipe 34 and the nitrogen inlet branch pipe 35 and connected to the stacked plate type ozone generator 21 (for mixing oxygen and nitrogen), an inlet branch pipe 37 connected to the oxygen inlet branch pipe 34 and connected to the stacked plate type ozone generator 21 (the inlet branch pipe 37 is connected to the aforementioned inlet flow guide pipe), and an outlet branch pipe 38 connected to the stacked plate type ozone generator 21 (the outlet branch pipe 38 is connected to the aforementioned outlet flow guide pipe). In this embodiment, two adjacent inlet branch pipes 37 can be combined into one through a communication pipe, and then connected to the mixing pipe 36; and two adjacent outlet branch pipes 38 can also be combined into one through a communication pipe, and then connected to the subsequent structure (i.e. the subsequent adapter pipe), so as to reduce the complexity of the gas path in the entire stacked plate type ozone generator integrated box.

[0026] In this embodiment, each group of gas guiding modules further comprises an adapter pipe 39 connected to the outlet branch pipe 38, an exhaust branch pipe connected to the adapter pipe 39 and connected to the exhaust pipe 33, and an ozone outlet branch pipe connected to the adapter pipe 39 and connected to one ozone outlet pipe 30, and a pneumatic valve is mounted on each of the exhaust branch pipe and the ozone outlet branch pipe. When the gas in the ozone outlet pipe 30 is used, the exhaust branch pipe is usually closed; when the gas in the ozone outlet pipe 30 is not needed, the ozone outlet branch pipe can be closed, and the exhaust branch pipe can be opened to exhaust the gas to the atmosphere.

[0027] The above examples are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and to implement it, and cannot limit the protection scope of the present application. Any equivalent changes or modifications made according to the spirit and essence of the present application shall be covered within the protection scope of the present application.

Claims

1. A stacked plate ozone generator integrated tank, characterized by, It comprises: a support box (1) comprising at least a plurality of partition plates (14); a plurality of ozone generation units (2) installed on the partition plates (14) one by one; each ozone generation unit (2) comprises one or a plurality of stacked plate-type ozone generation devices (21) arranged side by side; a plurality of cooling units corresponding to the partition plates (14); each cooling unit comprises a cooling module (4) corresponding to the number of stacked plate-type ozone generation devices (21), the cooling module (4) comprising a water inlet pipe (40) connected to the stacked plate-type ozone generation device (21), a water outlet pipe (44) connected to the stacked plate-type ozone generation device (21), a cooling plate (42) connected to the water outlet pipe (44), and a backwater pipe (45) connected to the cooling plate (42); an air guide unit (3) comprising a plurality of air guide modules corresponding to the stacked plate-type ozone generation devices (21), an oxygen inlet pipe (31) connected to the plurality of air guide modules, a nitrogen inlet pipe (32) connected to the plurality of air guide modules, an exhaust pipe (33) connected to the plurality of air guide modules, and a plurality of ozone outlet pipes (30) connected to the plurality of air guide modules one by one.

2. The stacked plate ozone generator integrated tank according to claim 1, characterized in that: Each air guide module comprises an oxygen inlet branch pipe (34) connected to the oxygen inlet pipe (31), a first pneumatic valve installed on the oxygen inlet branch pipe (34), and a first flow meter (341) installed on the oxygen inlet branch pipe (34), the oxygen inlet branch pipe (34) being connected to the stacked plate-type ozone generation device (21).

3. The stacked plate ozone generator integrated tank according to claim 2, characterized in that: Each air guide module further comprises a nitrogen inlet branch pipe (35) connected to the nitrogen inlet pipe (32), a second pneumatic valve installed on the nitrogen inlet branch pipe (35), a second flow meter (351) installed on the nitrogen inlet branch pipe (35), a mixing pipe (36) connected to the oxygen inlet branch pipe (34) and the nitrogen inlet branch pipe (35) and connected to the stacked plate-type ozone generation device (21), an inlet branch pipe (37) connected to the oxygen inlet branch pipe (34) and the stacked plate-type ozone generation device (21), and an outlet branch pipe (38) connected to the stacked plate-type ozone generation device (21).

4. The stacked plate ozone generator integrated tank according to claim 3, characterized in that: Each air guide module further comprises an adapter pipe (39) connected to the outlet branch pipe (38), an exhaust branch pipe connected to the adapter pipe (39) and the exhaust pipe (33), and an ozone outlet branch pipe connected to the adapter pipe (39) and one of the ozone outlet pipes (30).

5. The stacked plate ozone generator integrated tank of claim 1, wherein: The support box (1) comprises a support base (11), a top cover (13) arranged above the support base (11), and a plurality of side plates (12) mounted between the support base (11) and the top cover (13) to form a containing space therearound, and a plurality of partition plates (14) are mounted on the plurality of side plates (12) and arranged in the containing space in an up-down spaced manner.

6. The stacked plate ozone generator integrated tank of claim 1, wherein: The cooling module (4) further comprises a support (41) and a plurality of driving plates (43), the support (41) is mounted on the partition plate (14), the cooling plate (42) is mounted on the support (41), and the plurality of driving plates (43) are mounted on two surfaces of the cooling plate (42).

Citation Information

Patent Citations

  • Ozone generator control system

    CN220820496U

  • Stacked plate type ozone generator shell

    CN220887020U

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