Ozone generator

By designing the disassembly and assembly connection box and multi-function combination connector in the ozone generator, the problem of the module in the prior art being damaged after a long time of use is solved, and the machine needs to be disassembled and repaired after the module is damaged, which realizes rapid assembly and power-up, ensuring the safety and efficiency of the equipment.

CN119932588AActive Publication Date: 2025-05-06YIWU HUAMENG ELECTRICAL APPLIANCES
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Patent Information

Application Number
CN202510110691.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-05-06
Estimated Expiration
2045-01-23

AI Technical Summary

Technical Problem

After a long time of use, if the preparation module is damaged, it will be shut down and disassembled and repaired. It will take time and effort to operate, and the sealed connection will affect the safety and efficiency of the equipment.

Method used

An ozone generator is designed, including an ozone preparation water tank and disassembly and assembly and connection box. The multi-functional combination of connectors and electrical connection positioning components realizes rapid assembly and power-on the ozone preparation module. Strengthen the sealing assembly to ensure stable connection seals, control assembly and interception assembly allow blocking and opening of the module, ensuring that the equipment can still operate normally or be quickly disassembled and maintained when the module is damaged.

Benefits of technology

The rapid assembly and power-up of the ozone preparation module is realized, ensuring the safety and efficiency of the equipment, reducing maintenance time and cost, and avoiding equipment failures caused by seal leakage.

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Abstract

The invention relates to the technical field of ozone preparation, in particular to an ozone generator which comprises an ozone preparation water tank, a cut-off assembly, a reinforced sealing assembly, a control assembly and a power connection positioning assembly. The ozone preparation module and the disassembly and assembly connecting box can be quickly assembled and electrified, two reaction cover boxes of the ozone preparation module and four multifunctional combined joints can be stably connected and sealed under the action of the reinforced sealing assembly, water leakage of interfaces is avoided, the operation safety is further improved by a built-in power connection slot, and the service life of the ozone preparation module is prolonged. Meanwhile, under the matching action of the control assembly and the cut-off assembly, when the ozone preparation modules are connected with and separated from the multifunctional combined joint, the multifunctional combined joint can be plugged and connected, and when one or more ozone preparation modules are damaged, normal ozone preparation can be continued, or quick disassembly, overhaul and maintenance can be carried out.
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Description

Technical Field

[0001] The invention relates to the technical field of ozone preparation, in particular to an ozone generator. Background Art

[0002] Ozone, also known as superoxide, is an allotrope of oxygen. At room temperature, it is a light blue gas with a special odor. Ozone can be used to purify air, bleach drinking water, sterilize, treat industrial waste and act as a bleaching agent. Ozone is easy to decompose and cannot be stored. It needs to be produced on-site for on-site use. The invention of the existing publication number CN107177861 A discloses an ozone generator nozzle, comprising a water inlet cover connected in sequence, a cavity with a plurality of independently separated electrolysis chambers and a water outlet cover, wherein a positive electrode electrolysis chamber is arranged in the middle of the cavity, negative electrode electrolysis chambers are arranged on both sides of the positive electrode electrolysis chamber, and a positive electrode water inlet hole is arranged at one end of the cavity facing the water inlet cover to connect the positive electrode electrolysis chamber with the water inlet pipe of the water inlet cover. The invention has the advantages of high working efficiency, reasonable structural layout, wide application and good sealing performance, and can further optimize the equipment for preparing ozone water by electrolysis, improve the production efficiency of ozone and expand the scope of use of ozone; When in use, the above scheme improves work efficiency by adding negative electrode electrolysis chambers on both sides. When ozone is prepared by water electrolysis, the positive and negative electrode preparation modules play the main preparation function. When ozone is prepared by electrolysis, the preparation module is mainly connected to the outside of the electrolytic water tank through a hose. The connection and sealing effect between the hose and the preparation module will directly affect the safety and effect of the equipment. Since the preparation module participates in the continuous electrolysis operation of the positive and negative electrodes, after long-term use, if one or more preparation modules are damaged, it is necessary to shut down for long-term disassembly, inspection and maintenance, which is time-consuming and labor-intensive. Summary of the invention

[0003] The object of the present invention is to provide an ozone generator to solve the problems raised in the above background technology.

[0004] To achieve the above object, the present invention provides the following technical solution: an ozone generator, comprising: An ozone preparation water tank, wherein a plurality of detachable connection boxes are installed at the lower end of the ozone preparation water tank, and two multifunctional combination joints are symmetrically arranged at the upper and lower ends of the detachable connection box, and a reaction component is plugged into one side of the multifunctional combination joint, and the reaction component includes an ozone preparation module, and a positive electrode plate and a negative electrode plate are fixedly arranged on both sides of the ozone preparation module, and a reaction cover box is sealed and fixedly arranged on one side of the positive electrode plate and the negative electrode plate, and circulation plugs are symmetrically arranged at the upper and lower ends of the reaction cover box, and the two circulation plugs of the reaction cover box are respectively plugged into the upper and lower multifunctional combination joints on one side of the detachable connection box; The multifunctional combined joint is provided with a shutoff assembly and a reinforced sealing assembly, the shutoff assembly includes a sealing ball core, the reinforced sealing assembly includes a deformable sealing ring and a push ring, and the upper and lower ends of the disassembly and assembly connection box are respectively provided with control assemblies, the control assembly includes a control panel, the control panel is located between the two multifunctional combined joints, and the control panel is respectively connected to the sealing ball cores and the push rings of the two multifunctional combined joints; The electrical connection and positioning component comprises a positioning plug plate, two sides of which are respectively connected to the positive plate and the negative plate, and the positioning plug plate is plugged into one side of the disassembly and assembly connection box.

[0005] Preferably, the disassembly and assembly connection box is a U-shaped structure, and a reflux support pipe is fixedly provided on one side of the two multifunctional combination joints at the upper end of the disassembly and assembly connection box, and the upper ends of the two reflux support pipes are respectively connected and fixedly inserted in the lower end of the ozone preparation water tank, and a negative electrode water inlet pipe and a three-way joint are respectively provided on one side of the two multifunctional combination joints located at the lower end of the disassembly and assembly connection box, and the negative electrode water inlet pipe is connected to the reaction cover box of the negative electrode plate, and the two sides of the three-way joint are respectively connected with a positive electrode water inlet pipe and a return pipe, and the upper ends of the positive electrode water inlet pipe, the return pipe and the negative electrode water inlet pipe are respectively connected and fixedly inserted in the lower end of the ozone preparation water tank, and the upper end of the reflux support pipe connected to the reaction cover box on the positive electrode plate is inserted in the ozone preparation water tank and an ozone collecting bottle is provided together with the upper end of the return pipe.

[0006] Preferably, a U-shaped slot is provided on one side of the disassembly and assembly connection box, the ozone preparation module is inserted into the U-shaped slot, and the four circulation tubes are all L-shaped structures. When the ozone preparation module is fully inserted into the U-shaped slot, the four circulation tubes are horizontally inserted into one side of the four multifunctional combination joints respectively.

[0007] Preferably, two sealing rings are symmetrically embedded on one side of the multifunctional combined joint that is sleeved on the circulation cannula, and the two sealing rings are sleeved on the circulation cannula. An extrusion groove is provided on one side of the multifunctional combined joint that is sleeved on the circulation cannula, and a deformable sealing ring is inserted in the extrusion groove, and the deformable sealing ring is sleeved on the circulation cannula. An extrusion ring is provided on one side of the extrusion groove close to the deformable sealing ring, and one side of the extrusion ring abuts against the deformable sealing ring, and the side of the extrusion ring in contact with the deformable sealing ring is a conical surface.

[0008] Preferably, the upper and lower ends of the multifunctional combination joint are provided with control movable grooves, the lower ends of the control movable grooves are provided with horizontal sliding grooves, the two control plates are respectively slidably inserted in the two horizontal sliding grooves, the side of the multifunctional combination joint close to the extrusion groove is provided with a sleeve groove, the position of the multifunctional combination joint located in the sleeve groove is movably sleeved with a push ring, the control movable groove is provided with a horizontal strip groove on one side of the sleeve groove of the multifunctional combination joint, the side of the push ring close to the strip groove is provided with a synchronous pull rod horizontally, and the two synchronous pull rods respectively penetrate the strip groove, are inserted into the control movable groove and are connected to one side of the control plate.

[0009] Preferably, a sealing ball groove is provided in the multifunctional combination joint between the circulation insert and the reflux support tube, a sealing ball center is rotatably inserted in the sealing ball groove, a docking valve groove is penetrated through the sealing ball center, the diameter of the docking valve groove is the same as the inner diameter of the reflux support tube, a synchronous shaft is horizontally provided at the center of one side of the sealing ball center close to the control movable groove, one side of the synchronous shaft is movably penetrated and inserted into the control movable groove, a half-moon gear is commonly provided between the two synchronous shafts inserted in the control movable groove, a plurality of toggle teeth are provided on one side of the upper end of the control plate, and the teeth of the half-moon gear are meshed and connected with the toggle teeth.

[0010] Preferably, a plurality of push rods are symmetrically provided on one side of the extrusion ring close to the sleeve groove, and one side of the plurality of push rods are movably inserted into the sleeve groove respectively. When the push ring extrudes and pushes the push rods, the docking valve groove that blocks the center of the ball is connected with the reflux support pipe and the circulation insert pipe.

[0011] Preferably, a spring box is vertically provided on one side of the upper end of the control plate away from the toggle gear, a constraint rod is vertically inserted through the spring box through a downward pressure block, a downward pressure spring is sleeved on one side of the downward pressure block located in the spring box, constraint grooves are opened on both sides of the horizontal slide groove, and the constraint rod is selectively inserted into one of the constraint grooves.

[0012] Preferably, the positive plate and the negative plate are provided with power terminals on one side close to the disassembly and assembly connection box, and the two sides of the positioning plug plate are fixedly connected to the two power terminals by power connection screws respectively. A positioning slot is horizontally opened on one side of the disassembly and assembly connection box, and the positioning plug plate is horizontally inserted into the positioning slot. Two power connection rods are provided on both sides of the positioning plug plate inserted into the positioning slot, which are electrically connected to the two power connection terminals respectively. Two power connection slots are symmetrically provided on both sides of the positioning slot, and the two power connection rods are respectively inserted into the two power connection slots.

[0013] Preferably, two positioning springs are embedded in the positioning slot at both upper and lower ends, positioning slots are horizontally opened at both upper and lower ends of the positioning plug plate, and one side of the two positioning springs is elastically plugged into the two positioning slots respectively.

[0014] Compared with the prior art, the present invention has the following beneficial effects: A number of disassembly and assembly connection boxes are arranged at the lower end of the ozone preparation water tank. When the ozone preparation module is connected to the ozone preparation water tank for use, the ozone preparation module and the disassembly and assembly connection box can be quickly assembled and powered on by connecting the power positioning component. Under the action of the enhanced sealing component, the two reaction cover boxes of the ozone preparation module can be connected and sealed stably with four multifunctional combination joints without interface water leakage. The built-in power connection slot further improves the operation safety. At the same time, under the cooperation of the control component and the interception component, when the ozone preparation module is connected and separated from the multifunctional combination joint, the multifunctional combination joint can be blocked and connected. When a single or multiple ozone preparation modules are damaged, normal ozone preparation can continue, or it can be quickly disassembled for inspection and maintenance. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 For the present invention Figure 1 Schematic diagram of part A; Figure 3 This is a schematic diagram of the connection structure of the ozone collection bottle of the present invention; Figure 4 This is a schematic diagram of the connection structure between the disassembly and assembly connection box and the ozone preparation module of the present invention; Figure 5 For the present invention Figure 4 Schematic diagram of part B; Figure 6 It is a cross-sectional schematic diagram of the connection between the circulation cannula and the multifunctional combined joint of the present invention; Figure 7 For the present invention Figure 6 Schematic diagram of the C part; Figure 8 For the present invention Figure 7 Schematic diagram of the D part; Fig. 9 This is a schematic side cross-sectional view of the control panel connection of the present invention; Fig.10 For the present invention Fig. 9 Schematic diagram of part E; Fig.11 This is a schematic side cross-sectional view of the connection of the positioning plug board of the present invention; Fig.12 For the present invention Fig.11 Schematic diagram of the F part; Fig.13 This is a schematic diagram of the structure of the disassembly and assembly of the connection box of the present invention; Fig.14 For the present invention Fig.13 Schematic diagram of the G part; Fig.15 It is a schematic diagram of the combination of the ozone preparation module and the positioning plug plate of the present invention.

[0016] In the figure: ozone preparation water tank 1, disassembly and assembly connection box 2, multifunctional combination joint 3, reflux support pipe 4, ozone preparation module 5, positive plate 6, negative plate 7, reaction cover box 8, circulation cannula 9, positive water inlet pipe 10, return pipe 11, ozone collection bottle 12, negative water inlet pipe 13, sealing ring 14, extrusion groove 15, deformation sealing ring 16, extrusion ring 17, sleeve groove 18, push ring 19, control movable groove 20, strip groove 21, horizontal slide groove 22, control board 23, synchronous pull rod 24, sealing ball groove 25, blocking ball center 26, docking valve groove 27, synchronous shaft 28, half-moon gear 29, toggle tooth 30, spring box 31, restraining rod 32, downward pressure spring 33, restraining groove 34, power terminal 35, positioning plug plate 36, positioning slot 37, power plug rod 38, power slot 39, positioning card slot 40, positioning spring 41, push rod 42. DETAILED DESCRIPTION

[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0018] Please see attached Figure 1-Figure 15 , this application provides the following technical solutions.

[0019] Embodiment 1: An ozone generator comprises an ozone preparation water tank 1, a plurality of detachable connection boxes 2 are installed at the lower end of the ozone preparation water tank 1, two multifunctional combination joints 3 are symmetrically arranged at the upper and lower ends of the detachable connection box 2, a reaction component is plugged into one side of the multifunctional combination joint 3, and the reaction component comprises an ozone preparation module 5, a positive electrode plate 6 and a negative electrode plate 7 are fixedly arranged on both sides of the ozone preparation module 5, a reaction cover box 8 is sealed and fixedly arranged on one side of the positive electrode plate 6 and the negative electrode plate 7, a circulation plug 9 is symmetrically arranged at the upper and lower ends of the reaction cover box 8, and the two circulation plugs 9 of the reaction cover box 8 are respectively plugged into The disassembly and assembly connection box 2 is connected to the upper and lower multifunctional combined joints 3 on one side. The disassembly and assembly connection box 2 is a U-shaped structure. The two multifunctional combined joints 3 on the upper end of the disassembly and assembly connection box 2 are fixedly provided with a reflux support pipe 4 on one side. The upper ends of the two reflux support pipes 4 are respectively connected and fixedly plugged into the lower end of the ozone preparation water tank 1. The two multifunctional combined joints 3 at the lower end of the disassembly and assembly connection box 2 are respectively provided with a negative electrode water inlet pipe 13 and a three-way joint on one side. The negative electrode water inlet pipe 13 is connected to the reaction cover box 8 of the negative electrode plate 7. The two sides of the three-way joint are respectively connected with a positive electrode water inlet pipe 10 and a return pipe 11. The positive electrode water inlet pipe 13 is connected to the reaction cover box 8 of the negative electrode plate 7. The upper ends of the pipe 10, the return pipe 11 and the negative electrode water inlet pipe 13 are respectively connected and fixedly plugged into the lower end of the ozone preparation water tank 1, and the upper end of the reflux support pipe 4 connected to the reaction cover box 8 on the positive plate 6 is plugged into the ozone preparation water tank 1 and is provided with an ozone collection bottle 12 together with the upper end of the return pipe 11. When ozone is produced, the industrial water is filtered and treated by a pure water machine, and the treated pure water is sent into the ozone preparation water tank 1 through a pumping device. The pure water entering the ozone preparation water tank 1 enters the reaction cover box 8 on one side of the positive plate 6 and the negative plate 7 through the return pipe 11 and the negative electrode water inlet pipe 13 respectively. When water enters the reaction box 8, the positive plate 6 and the negative plate 7 prepare ozone for the pure water, and the prepared ozone gas enters the reflux support tube 4 from the circulation insert tube 9 above the reaction box 8 of the positive plate 6, and then enters the ozone collecting bottle 12. Finally, the ozone in several ozone collecting bottles 12 is collected together, and the hydrogen produced by ozone preparation enters the reaction box 8 on the side of the negative plate 7 through the proton exchange membrane, and then refluxes to the ozone preparation water tank 1 under the action of the circulation insert tube 9 and the reflux support tube 4, and is collected and processed together. The two reflux support tubes 4 are used for reflux collection of hydrogen and ozone respectively.

[0020] The multifunctional combined joint 3 is provided with a cut-off component and a reinforced sealing component, the reinforced sealing component includes a deformable sealing ring 16 and a push ring 19, a U-shaped slot is provided on one side of the disassembly and assembly connection box 2, the ozone preparation module 5 is inserted into the U-shaped slot, and the four circulation cannulas 9 are all L-shaped structures. When the ozone preparation module 5 is fully inserted into the U-shaped slot, the four circulation cannulas 9 are horizontally inserted into one side of the four multifunctional combined joints 3, respectively, and the multifunctional combined joint 3 is sleeved on one side of the circulation cannulas 9. Two sealing ferrules 14 are symmetrically embedded, and the two sealing ferrules 14 are sleeved on the circulation cannulas 9. An extrusion groove 15 is provided on one side of the multifunctional combined joint 3 sleeved on the circulation cannulas 9, and a deformable sealing ring 16 is inserted in the extrusion groove 15, and the deformable sealing ring 16 is sleeved on the circulation cannulas On the ring insert 9, an extrusion ring 17 is provided on one side of the extrusion groove 15 close to the deformable sealing ring 16. One side of the extrusion ring 17 abuts against the deformable sealing ring 16, and the side where the extrusion ring 17 contacts the deformable sealing ring 16 is a conical surface. When the ozone preparation module 5 is assembled and connected with the disassembly connection box 2, it is installed by horizontal plugging. At this time, the four circulation inserts 9 are respectively plugged into the four multifunctional combination joints 3, and the plugging operation is stable and reliable. Under the action of the sealing ring 14, the sealing is reliable after the connection. When it is necessary to strengthen the sealing effect between the multifunctional combination joint 3 and the circulation insert 9, the conical surface of the extrusion ring 17 can be used to extrude the conical surface of the deformable sealing ring 16, so that the deformable sealing ring 16 is deformed and then squeezes the circulation insert 9 to enhance the sealing effect. The upper and lower ends of the disassembly and assembly connection box 2 are respectively provided with control components, and the control components include a control board 23, which is located between the two multifunctional combination joints 3. The upper and lower ends of the multifunctional combination joint 3 are provided with control movable grooves 20, and the lower ends of the control movable grooves 20 are provided with horizontal slide grooves 22. The two control boards 23 are respectively slidably inserted into the two horizontal slide grooves 22, and the multifunctional combination joint 3 is provided with a sleeve groove 18 on one side close to the extrusion groove 15. The multifunctional combination joint 3 is located at the position of the sleeve groove 18. The position of the multifunctional combination joint 3 is movably sleeved with a push ring 19, and the control movable groove 20 is located at the multifunctional combination joint 3. A strip groove 21 is horizontally provided on one side of the sleeve groove 18 of the joint 3, and a synchronous pull rod 24 is horizontally provided on one side of the push ring 19 close to the strip groove 21. The two synchronous pull rods 24 respectively penetrate the strip groove 21 and are inserted into the control movable groove 20 and are connected to one side of the control board 23. When the control board 23 is pulled horizontally in the horizontal slide groove 22, the synchronous pull rod 24 can be horizontally slid in the strip groove 21 to control the two push rings 19 to move toward the extrusion ring 17. The sliding insertion of the strip groove 21 and the synchronous pull rod 24 also guides and supports the horizontal sliding of the control board 23.

[0021] The interception assembly includes a plugging ball 26. A sealing ball groove 25 is provided between the circulation insert 9 and the reflux support tube 4 in the multifunctional combined joint 3. A plugging ball 26 is rotatably inserted in the sealing ball groove 25. A docking valve groove 27 is provided through the plugging ball 26. The diameter of the docking valve groove 27 is the same as the inner diameter of the reflux support tube 4. A synchronous shaft 28 is horizontally provided at the center of one side of the plugging ball 26 close to the control movable groove 20. One side of the synchronous shaft 28 is movably inserted into the control movable groove 20 and inserted into the control movable groove 20. A half-moon gear 29 is provided between the two synchronous shafts 28 in the movable groove 20. A plurality of shifting teeth 30 are provided on one side of the upper end of the control panel 23, and the teeth of the half-moon gear 29 are meshed and connected with the shifting teeth 30. When the ozone preparation module 5 is not connected to the disassembly connection box 2, the multifunctional combined joint 3 can perform a self-sealing operation through the blocking ball core 26. The operation method is to shift the half-moon gear 29 through the horizontal movement of the control panel 23 to control the blocking ball core 26 to rotate 90 degrees, so that the docking valve groove 27 is misaligned with the reflux support pipe 4. A plurality of push rods 42 are symmetrically arranged on one side of the extrusion ring 17 close to the sleeve groove 18. One side of the plurality of push rods 42 is respectively movably inserted into the sleeve groove 18. When the push ring 19 squeezes and pushes the push rods 42, the docking valve groove 27 of the sealing ball core 26 is connected with the reflux support pipe 4 and the circulation cannula 9. When the circulation cannula 9 is inserted into the multifunctional combination joint 3, the ozone preparation module 5 is in the operation demand state. In order to ensure that the circulation cannula 9 is connected to the multifunctional combination joint 3 without pure water leakage, and the circulation cannula 9 It is connected with the reflux support pipe 4. At this time, the control panel 23 is pulled to control the push ring 19 to contact the push rod 42, and the push rod 42 and the extrusion ring 17 are pushed to move to the position of the deformed sealing ring 16, so as to extrude and deform the deformed sealing ring 16, and strengthen the contact sealing effect between the deformed sealing ring 16 and the circulation cannula 9. After the control panel 23 moves, the teeth 30 are moved and the half-moon gear 29 is rotated at the same time, so that the docking valve slot 27 of the sealing ball core 26 is connected with the reflux support pipe 4 and the circulation cannula 9, and normal ozone preparation can be carried out; On the contrary, when it is necessary to disassemble the ozone preparation module 5 from the disassembly connection box 2, the control plate 23 can be slid back to its original position, the deformed sealing ring 16 loses the compression state of the enhanced seal, and the sealing ball core 26 intercepts and seals the multifunctional combination joint 3. At this time, the ozone preparation module 5 can be pulled out forcefully to keep the four circulation cannulas 9 away from the multifunctional combination joint 3 to complete the rapid replacement of the ozone preparation module 5.

[0022] A spring box 31 is vertically provided on the upper end side of the control board 23 away from the toggle tooth 30, and a constraint rod 32 is vertically penetrated and inserted in the spring box 31 through a downward pressure block. The constraint rod 32 is located on one side of the downward pressure block in the spring box 31 and is sleeved with a downward pressure spring 33. Constraint grooves 34 are opened on both sides of the horizontal slide groove 22, and the constraint rod 32 is selectively inserted into one of the constraint grooves 34. When the control board 23 has two position holding states, a constraint groove 34 is respectively set at these two positions. When the control board 23 moves to this position, the constraint rod 32 can be inserted therein to limit and fix the movement of the control board 23, so as to keep the blocking or connected state of the blocking ball center 26.

[0023] In this embodiment: Embodiment 2: On the basis of embodiment 1, an electrical connection positioning component is set to optimize the positive and negative pole connection wires of the ozone preparation module 5. The electrical connection positioning component includes a positioning plug plate 36. The two sides of the positioning plug plate 36 are respectively connected to the positive plate 6 and the negative plate 7. The positioning plug plate 36 is plugged into one side of the disassembly connection box 2. The positive plate 6 and the negative plate 7 are both provided with power connection terminals 35 on one side close to the disassembly connection box 2. The two sides of the positioning plug plate 36 are respectively fixedly connected to the two power connection terminals 35 by power connection screws. A positioning slot 37 is horizontally opened on one side of the disassembly connection box 2. The positioning plug plate 36 is horizontally inserted into the positive plate 6 and the negative plate 7. Connected in the positioning slot 37, the positioning plug plate 36 is plugged into the positioning slot 37, and two sides thereof are electrically connected to the two power terminals 35, respectively, and two power plug rods 38 are provided, and two power slots 39 are symmetrically provided on both sides of the positioning slot 37, and the two power plug rods 38 are respectively plugged into the two power slots 39. The structure connected by the built-in power slot 39 and the additionally installed adaptive power plug rods 38 can avoid the problems of leakage caused by the connection wires being exposed to the outside, and the connection position is protected. When the ozone preparation module 5 is disassembled and replaced, it can be conveniently disassembled by cooperating with the horizontal plugging of the ozone preparation module 5; Two positioning springs 41 are embedded at the upper and lower ends of the positioning slot 37, and positioning card slots 40 are horizontally opened at the upper and lower ends of the positioning plug plate 36, and one side of the two positioning springs 41 is elastically plugged into the two positioning card slots 40 respectively. When the ozone preparation module 5 is plugged into the disassembly and assembly connection box 2, the elastic plug-in of the positioning springs 41 and the positioning card slots 40 can keep the basic position of the ozone preparation module 5 in place, which is convenient for the subsequent operation of the control board 23.

[0024] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An ozone generator, characterized in that: include: An ozone preparation water tank (1), wherein a plurality of detachable connection boxes (2) are installed at the lower end of the ozone preparation water tank (1), two multifunctional combination joints (3) are symmetrically arranged at the upper and lower ends of the detachable connection box (2), a reaction component is plugged into one side of the multifunctional combination joint (3), and the reaction component comprises an ozone preparation module (5), a positive electrode plate (6) and a negative electrode plate (7) are fixedly arranged at both sides of the ozone preparation module (5), a reaction cover box (8) is sealed and fixedly arranged at one side of the positive electrode plate (6) and the negative electrode plate (7), circulation plugs (9) are symmetrically arranged at the upper and lower ends of the reaction cover box (8), and the two circulation plugs (9) of the reaction cover box (8) are respectively plugged into the upper and lower multifunctional combination joints (3) at one side of the detachable connection box (2); The multifunctional combined joint (3) is provided with a shutoff assembly and a reinforced sealing assembly, the shutoff assembly comprising a sealing ball core (26), the reinforced sealing assembly comprising a deformable sealing ring (16) and a push ring (19), the upper and lower ends of the disassembly connection box (2) are respectively provided with control assemblies, the control assembly comprising a control panel (23), the control panel (23) being located between the two multifunctional combined joints (3), and the control panel (23) being respectively connected to the sealing ball cores (26) and the push rings (19) of the two multifunctional combined joints (3); The electrical connection and positioning assembly comprises a positioning plug plate (36), two sides of the positioning plug plate (36) are respectively connected to the positive plate (6) and the negative plate (7), and the positioning plug plate (36) is plugged into one side of the disassembly and assembly connection box (2).

2. An ozone generator according to claim 1, characterized in that: The disassembly and assembly connection box (2) is a U-shaped structure. A reflux support pipe (4) is fixedly provided on one side of two multifunctional combined joints (3) at the upper end of the disassembly and assembly connection box (2). The upper ends of the two reflux support pipes (4) are respectively connected to and fixedly plugged into the lower end of the ozone preparation water tank (1). A negative electrode water inlet pipe (13) and a three-way joint are respectively provided on one side of the two multifunctional combined joints (3) at the lower end of the disassembly and assembly connection box (2). The negative electrode water inlet pipe (13) is connected to the reaction cover of the negative electrode plate (7). The positive electrode water inlet pipe (10) and the negative electrode water inlet pipe (13) are connected to each other, and the upper ends of the positive electrode water inlet pipe (10), the return pipe (11) and the negative electrode water inlet pipe (13) are connected to each other and fixedly plugged into the lower end of the ozone preparation water tank (1). The upper end of the reflux support pipe (4) connected to the reaction cover box (8) on the positive electrode plate (6) is plugged into the ozone preparation water tank (1) and is provided with an ozone collection bottle (12) together with the upper end of the return pipe (11).

3. An ozone generator according to claim 2, characterized in that: A U-shaped slot is provided on one side of the disassembly and assembly connection box (2), and the ozone preparation module (5) is inserted into the U-shaped slot. The four circulation inserts (9) are all L-shaped structures. When the ozone preparation module (5) is fully inserted into the U-shaped slot, the four circulation inserts (9) are horizontally inserted into one side of the four multifunctional combined joints (3).

4. An ozone generator according to claim 3, characterized in that: Two sealing ferrules (14) are symmetrically embedded on one side of the multifunctional combined joint (3) sleeved on the circulation cannula (9). The two sealing ferrules (14) are sleeved on the circulation cannula (9). An extrusion groove (15) is provided on one side of the multifunctional combined joint (3) sleeved on the circulation cannula (9). A deformable sealing ring (16) is inserted in the extrusion groove (15). The deformable sealing ring (16) is sleeved on the circulation cannula (9). An extrusion ring (17) is provided on one side of the extrusion groove (15) close to the deformable sealing ring (16). One side of the extrusion ring (17) abuts against the deformable sealing ring (16), and the sides of the extrusion ring (17) in contact with the deformable sealing ring (16) are both conical surfaces.

5. An ozone generator according to claim 4, characterized in that: The multifunctional combined joint (3) is provided with a control movable groove (20) at both upper and lower ends, and a horizontal slide groove (22) is provided at the lower end of the control movable groove (20). Two control plates (23) are respectively slidably inserted into the two horizontal slide grooves (22). A sleeve groove (18) is provided on a side of the multifunctional combined joint (3) close to the extrusion groove (15). A push ring (19) is movably sleeved at the position of the multifunctional combined joint (3) located in the sleeve groove (18). A strip groove (21) is horizontally provided on one side of the sleeve groove (18) of the multifunctional combined joint (3). A synchronous pull rod (24) is horizontally provided on one side of the push ring (19) close to the strip groove (21), and the two synchronous pull rods (24) respectively penetrate the strip groove (21), are inserted into the control movable groove (20), and are connected to one side of the control plate (23).

6. An ozone generator according to claim 5, characterized in that: The multifunctional combined joint (3) is provided with a sealing ball groove (25) between the circulation insert (9) and the reflux support tube (4), a sealing ball center (26) is rotatably inserted in the sealing ball groove (25), a docking valve groove (27) is penetrated through the sealing ball center (26), the diameter of the docking valve groove (27) is the same as the inner diameter of the reflux support tube (4), a synchronous shaft (28) is horizontally provided at the center of one side of the sealing ball center (26) close to the control movable groove (20), one side of the synchronous shaft (28) is movably inserted into the control movable groove (20), a half-moon gear (29) is provided between the two synchronous shafts (28) inserted into the control movable groove (20), and a plurality of toggle teeth (30) are provided on one side of the upper end of the control panel (23), and the teeth of the half-moon gear (29) are meshed and connected with the toggle teeth (30).

7. An ozone generator according to claim 6, characterized in that: A plurality of push rods (42) are symmetrically provided on one side of the extrusion ring (17) close to the sleeve groove (18), and one side of the plurality of push rods (42) is movably inserted into the sleeve groove (18). When the push ring (19) squeezes and pushes the push rods (42), the docking valve groove (27) of the sealing ball center (26) is connected to the reflux support pipe (4) and the circulation insert pipe (9).

8. An ozone generator according to claim 7, characterized in that: A spring box (31) is vertically provided on one side of the upper end of the control plate (23) away from the toggle teeth (30), and a restraining rod (32) is vertically inserted through a downward pressing block in the spring box (31), and a downward pressing spring (33) is sleeved on one side of the downward pressing block of the restraining rod (32) located in the spring box (31), and restraining grooves (34) are provided on both sides of the horizontal slide groove (22), and the restraining rod (32) is selectively inserted into one of the restraining grooves (34).

9. An ozone generator according to claim 8, characterized in that: The positive electrode plate (6) and the negative electrode plate (7) are both provided with power terminals (35) on one side close to the disassembly connection box (2); the two sides of the positioning plug plate (36) are respectively fixedly connected to the two power terminals (35) by power screws; a positioning slot (37) is horizontally opened on one side of the disassembly connection box (2); the positioning plug plate (36) is horizontally inserted into the positioning slot (37); the two sides of the positioning plug plate (36) inserted into the positioning slot (37) are respectively electrically connected to the two power terminals (35) and provided with two power plug rods (38); two power plug slots (39) are symmetrically provided on both sides of the positioning slot (37); and the two power plug rods (38) are respectively inserted into the two power plug slots (39).

10. An ozone generator according to claim 9, characterized in that: Two positioning spring pieces (41) are embedded in the positioning slot (37) at both upper and lower ends, and positioning card slots (40) are horizontally opened at both upper and lower ends of the positioning plug plate (36), and one side of the two positioning spring pieces (41) is elastically plugged into the two positioning card slots (40) respectively.

Citation Information

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