CN211004562U - Ozone generator assembly - Google Patents

Ozone generator assembly Download PDF

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Publication number
CN211004562U
CN211004562U CN201921738510.3U CN201921738510U CN211004562U CN 211004562 U CN211004562 U CN 211004562U CN 201921738510 U CN201921738510 U CN 201921738510U CN 211004562 U CN211004562 U CN 211004562U
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China
Prior art keywords
ozone generator
mounting groove
fan
opening
mounting
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Active
Application number
CN201921738510.3U
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Chinese (zh)
Inventor
郑明枰
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Zhejiang Zhiguang Technology Co.,Ltd.
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Yueqing Zhiguang Electronic Technology Co ltd
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Priority to CN201921738510.3U priority Critical patent/CN211004562U/en
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Abstract

The utility model discloses an ozone generator subassembly, be connected fixed installation casing including ozone generator, fan and with the equipment cooperation, ozone generator and fan are together installed on the installation casing, the installation casing is including first mounting groove, ozone generator plug-in location has seted up first opening on the lateral wall of first mounting groove in first mounting groove, the fan installation is fixed at first opening part. The utility model discloses simple structure, spare part is less, can reduce cost, the assembly of being convenient for.

Description

Ozone generator assembly
Technical Field
The utility model relates to an ozone generator component.
Background
An ozone generator is a device for manually generating ozone, and is commonly used for equipment such as water treatment, medical treatment, fruit and vegetable disinfection machines, air purifiers and the like. The chinese patent application CN110002406A discloses an ozone generator, which comprises a dielectric tube, an inner electrode, and an outer electrode, wherein the inner electrode and the outer electrode are respectively coaxially sleeved on the inner side and the outer side of the dielectric tube, an electrolysis channel is formed between the inner electrode and the dielectric tube at an interval, and two ends of the inner electrode are provided with a pipeline joint. Air enters the electrolytic channel along the pipeline joint at one end of the inner electrode, generates ozone through electrolysis, and finally flows out from the pipeline joint at the other end of the inner electrode.
At present, an ozone generator on the market generally needs to be fixedly connected with the above devices through a mounting shell or a mounting bracket, but the ozone generator can continuously generate heat in a normal working state, in order to ensure the normal operation of the ozone generator, a heat dissipation block is generally arranged on the outer side of the ozone generator, the heat dissipation block is provided with a plurality of flaky heat dissipation parts, the contact area with air can be increased, fans matched with the heat dissipation block for heat dissipation are additionally arranged on the devices, and the fans need to be mounted on the devices through separate brackets, so that the overall structure is complex, the mounting is inconvenient, and the cost is increased.
SUMMERY OF THE UTILITY MODEL
The utility model provides a not enough to prior art, the utility model provides a from ozone generator subassembly of taking radiator fan, simple structure, spare part is less, can reduce cost, the assembly of being convenient for.
In order to realize the above object, the utility model provides an ozone generator subassembly, including ozone generator, fan and be connected fixed installation casing with the equipment cooperation, ozone generator and fan are together installed on the installation casing, the installation casing is including first mounting groove, ozone generator plug-in mounting location has seted up first opening on the lateral wall of first mounting groove in first mounting groove, the fan installation is fixed at first opening part.
The utility model has the advantages that: the ozone generator and the fan are arranged on the mounting shell, the mounting shell is directly fixed on the equipment during assembly, and the pipeline joint and the circuit of the ozone generator are connected, so that the assembly process can be completed, the fan does not need to be additionally arranged on the equipment, and a fan mounting support does not need to be used, so that the assembly is simpler and more convenient, and the cost is lower. In addition, when the fan and the ozone generator are installed and fixed on the installation shell, the positions and the orientations of the fan and the ozone generator are relatively fixed, the fan can radiate the ozone generator through the first opening on the side wall of the first installation groove, and the fan does not need to be adjusted during assembly, so that a good radiating effect can be ensured.
Furthermore, the ozone generator is sleeved with a heat dissipation block with a plurality of heat dissipation fins, and the heat dissipation block is accommodated in the first installation groove and located at a position corresponding to the first opening.
The effect of further setting is: because the radiating block is provided with the plurality of radiating fins, the contact area between the radiating block and the air can be increased, and the radiating block is arranged in the first mounting groove and at the position corresponding to the first opening based on the heat conduction effect of the radiating block and the ozone generator, so that the fan can directly act on the radiating block, and the radiating effect of the ozone generator is further improved.
Further, a plurality of convex ribs are arranged on the inner wall of the bottom of the first mounting groove, and the plurality of convex ribs surround a socket formed for embedding the lower end of the heat dissipation block.
The effect of further setting is: the positioning effect of the mounting shell on the heat dissipation block and the ozone generator is improved, and the ozone generator is prevented from shaking.
Furthermore, a second opening is formed in the side wall of the first mounting groove, and two pipeline joints of the ozone generator extend out of the second opening to the outer side of the mounting shell respectively.
The effect of further setting is: two pipeline joints of the ozone generator respectively extend out of the outer side of the mounting shell along the second opening, so that the pipelines can be conveniently connected, and meanwhile, the structure of the mounting shell can be more compact.
Furthermore, the second opening is a U-shaped notch communicated to the edge of the side wall of the first mounting groove.
The effect of further setting is: be convenient for wear to establish between pipeline joint and the first mounting groove lateral wall.
Further, the fan is fixedly installed at the outer side of the first installation groove.
The effect of further setting is: set up the outside of first mounting groove with the fan, the assembly of the fan of being convenient for can improve the gas flow effect in the first mounting groove moreover, improves the radiating effect.
Further, the installation casing is including the second mounting groove, and the adjacent first mounting groove setting of second mounting groove has the circuit board that links mutually with ozone generator to the plastic envelope in the second mounting groove.
The effect of further setting is: the circuit board is used for driving the ozone generator to work, the adjacent first mounting groove of second mounting groove is arranged to make the whole structure more compact, the length of the electric connecting wire between the smoke generator and the circuit board can be reduced, the plastic package can isolate and protect the circuit board, and the waterproof and moistureproof effects are achieved.
Drawings
FIG. 1 is a block diagram of an embodiment of the present invention;
fig. 2 is a top view of an embodiment of the present invention;
FIG. 3 is a block diagram of an embodiment of the present invention;
fig. 4 is a top view of another embodiment of the present invention.
Detailed Description
The utility model discloses an embodiment of ozone generator subassembly is shown in fig. 1 to 3: the device comprises an ozone generator 1, a fan 2 and a mounting shell 3 which is matched, connected and fixed with the device, wherein the device is used for water treatment, medical treatment, a fruit and vegetable disinfection machine, an air purifier and the like and can purify air, the two ends of the ozone generator 1 are provided with pipeline connectors 11, the ozone generator 1 and the fan 2 are mounted on the mounting shell 3 together, the mounting shell 3 is provided with mounting holes 31 for screws to penetrate through, the mounting shell 3 can be fixed on the device through the screws penetrating through the mounting holes 31, the fan 2 and the device can be kept relatively fixed when the mounting shell 3 is assembled on the device, therefore, the fan does not need to be additionally mounted, the mounting shell 3 comprises a first mounting groove 32, the ozone generator 1 is inserted and positioned in the first mounting groove 32, the side wall of the first mounting groove 32 is provided with a first opening 33, the fan 2 is fixedly arranged at the first opening 33, the fan 2 is fixedly arranged at the outer side of the first mounting groove 32, a plurality of screw hole columns are arranged at the outer side of the first opening 33 corresponding to the first mounting groove 32 and can be used for fixing the fan 2 and the mounting shell 3 through screws,
the fan 2 generates an airflow when operating, and the generated airflow may flow toward the outer side of the first mounting groove 32, but in this embodiment, the airflow preferably flows toward the inner side of the first mounting groove 32, so as to improve the heat dissipation effect.
The ozone generator 1 is sleeved with a radiating block 12 with a plurality of radiating fins, the radiating block 12 is made of metal, the radiating block 12 is accommodated in the first mounting groove 32 and located at a position corresponding to the first opening 33, airflow generated by the fan 2 is directly blown onto the radiating block 12, and the ozone generator 1 is radiated based on the heat conduction effect between the radiating block 12 and the ozone generator 1.
A plurality of convex ribs 321 (as shown in fig. 3) are arranged at the inner wall of the bottom of the first mounting groove 32, the plurality of convex ribs 321 surround a socket 322 formed for the lower end of the heat dissipation block 12 to be embedded, the shape of the socket 322 is matched with that of the lower end of the heat dissipation block 12, the lower end of the heat dissipation block 12 can be embedded into the socket 322 and then reinforced by glue, and a gap formed between every two adjacent convex ribs 321 at intervals can be used for overflowing of redundant glue.
The side wall of the first mounting groove 32 is provided with a second opening 34 for the two pipeline joints 11 of the ozone generator 1 to respectively extend to the outer side of the mounting shell 3, and the second opening 34 is preferably a U-shaped notch communicated to the edge of the side wall of the first mounting groove 32.
The mounting shell 3 comprises a second mounting groove 35, the second mounting groove 35 is arranged adjacent to the first mounting groove 32, a circuit board (not shown in the figure) electrically connected with the ozone generator 1 is plastically packaged in the second mounting groove 35, a main control circuit for driving the ozone generator 1 to work is configured on the circuit board, the circuit board and a plastic layer 351 formed by plastic packaging are contained in the second mounting groove 35 together, and the circuit board, the ozone generator 1 and an external power supply are electrically connected through conducting wires.
Fig. 4 shows another embodiment of the present invention, which is different from the above embodiment in that the fan 2 is installed and fixed inside the first installation groove 32, the fan 2 is accommodated in the first installation groove 32 together with the ozone generator 1, and the generated air flow can enter the first installation groove 32 along the first opening 33 and act on the heat dissipation block 12.
The above embodiment is only one of the preferred embodiments of the present invention, and the general changes and substitutions performed by those skilled in the art within the technical scope of the present invention are included in the protection scope of the present invention.

Claims (7)

1. The utility model provides an ozone generator subassembly, includes ozone generator, fan and is connected fixed installation casing with equipment cooperation, its characterized in that: the ozone generator and the fan are mounted on the mounting shell together, the mounting shell comprises a first mounting groove, the ozone generator is inserted and positioned in the first mounting groove, a first opening is formed in the side wall of the first mounting groove, and the fan is mounted and fixed at the first opening.
2. The ozone generator assembly of claim 1, wherein: the ozone generator is sleeved with a radiating block with a plurality of radiating fins, and the radiating block is accommodated in the first mounting groove and is positioned at a position corresponding to the first opening.
3. An ozone generator assembly according to claim 2, wherein: a plurality of convex ribs are arranged on the inner wall of the bottom of the first mounting groove and surround a socket formed for embedding the lower end of the radiating block.
4. The ozone generator assembly as claimed in claim 1, 2 or 3, wherein: and the side wall of the first mounting groove is provided with a second opening for the two pipeline joints of the ozone generator to respectively extend out of the outer side of the mounting shell.
5. The ozone generator assembly of claim 4, wherein: the second opening is a U-shaped notch communicated to the edge of the side wall of the first mounting groove.
6. The ozone generator assembly as claimed in claim 1 or 2 or 3 or 5, wherein: the fan is fixedly arranged on the outer side of the first mounting groove.
7. The ozone generator assembly as claimed in claim 1 or 2 or 3 or 5, wherein: the installation casing is including the second mounting groove, and the adjacent first mounting groove setting of second mounting groove has the circuit board that links mutually with ozone generator to the plastic envelope in the second mounting groove.
CN201921738510.3U 2019-10-16 2019-10-16 Ozone generator assembly Active CN211004562U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921738510.3U CN211004562U (en) 2019-10-16 2019-10-16 Ozone generator assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921738510.3U CN211004562U (en) 2019-10-16 2019-10-16 Ozone generator assembly

Publications (1)

Publication Number Publication Date
CN211004562U true CN211004562U (en) 2020-07-14

Family

ID=71471734

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921738510.3U Active CN211004562U (en) 2019-10-16 2019-10-16 Ozone generator assembly

Country Status (1)

Country Link
CN (1) CN211004562U (en)

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GR01 Patent grant
GR01 Patent grant
CP03 "change of name, title or address"

Address after: 325000 Jiufang community, Weng long street, Yueqing City, Wenzhou City, Zhejiang Province

Patentee after: Zhejiang Zhiguang Technology Co.,Ltd.

Address before: 325000 Weng Long Jie Dao Bei Jie Cun, Yueqing City, Wenzhou City, Zhejiang Province

Patentee before: Yueqing Zhiguang Electronic Technology Co.,Ltd.

CP03 "change of name, title or address"