CN211017748U - Dual mode ionizer - Google Patents
Dual mode ionizer Download PDFInfo
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- CN211017748U CN211017748U CN201922458356.0U CN201922458356U CN211017748U CN 211017748 U CN211017748 U CN 211017748U CN 201922458356 U CN201922458356 U CN 201922458356U CN 211017748 U CN211017748 U CN 211017748U
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- electric wire
- bottom plate
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Abstract
The utility model relates to a dual mode ion generator, comprising a base plate, the work end of bottom plate is equipped with the support cover admittedly, the inner intracavity that the support cover encloses with the bottom plate is provided with high-pressure booster and control panel, and high-pressure booster and control panel set firmly the work end at the bottom plate, the outside of support cover sets firmly a plurality of ionic tubes, the outer wall cover of ionic tube is equipped with outer metal mesh, the one end of sheetmetal sets firmly in the outside of support cover through metal connecting piece, the one end of connecting piece is passed the support cover and is stretched into the inner chamber and pass through electric wire connection with the booster, sheetmetal and outer metal mesh butt, pass through electric wire connection between booster and the control panel, the booster passes through electric wire connection with the ionic tube, the control panel passes. Use the utility model discloses can provide different clean modes after can under someone and unmanned two kinds of circumstances, realize cleaning and fresh the air, improve staff operational environment, improve staff work efficiency.
Description
Technical Field
The utility model relates to an air pollution prevention and cure equipment field especially relates to dual mode ion generator.
Background
In some closed special environments, such as laboratories, anatomical rooms, medical teaching rooms and the like, gases harmful to the bodies of workers are often generated along with the development of work in the closed environments, and meanwhile, the harmful gases are accompanied with strong peculiar smell. The strong odor not only influences the working impression of the staff and prevents the staff from working continuously, but also has potential danger to the physical and mental health of the staff, so that the closed environment needs to be cleaned.
The traditional air cleaning method is carried out in an adsorption mode, but the adsorption effect is not good. The air cleaning device has the advantages that the cleaning effect is poor in adsorption, and the ion generator appears on the market, the principle of the ion generator is that voltage is applied to air to generate ozone in the air, and the air in the closed environment is cleaned by the strong oxidizing property of the ozone. However, this cleaning method has disadvantages that ozone has strong oxidizing property, so that ozone is harmful to human body after exceeding a certain concentration, and the ionizer can be used only in an environment without workers, and still cannot solve the problems that the odor affects the appearance and hinders the continuous operation.
SUMMERY OF THE UTILITY MODEL
The applicant aims at the defects in the prior art and provides a dual-mode ionizer with a reasonable structure, so that different cleaning modes can be provided under the conditions of people and no people, air can be cleaned and refreshed, the working environment of workers is improved, and the working efficiency of the workers is improved.
The utility model discloses the technical scheme who adopts as follows:
double mode ion generator, comprising a base plate, the work end of bottom plate is equipped with the support cover admittedly, be provided with high-pressure booster and control panel in the inner chamber that support cover and bottom plate enclose, just high-pressure booster and control panel set firmly the work end at the bottom plate, and the outside of support cover sets firmly a plurality of ionic tubes, the outer wall cover of ionic tube is equipped with outer metal mesh, and the one end of sheetmetal sets firmly the outside at the support cover through metal connecting piece, the one end of connecting piece is passed the support cover and is stretched into the inner chamber and pass through the connection of electric lines with the booster, the sheetmetal with outer metal mesh butt passes through connection of electric lines between booster and the control panel, and the booster passes through connection of electric lines with the ionic tube, and the control panel passes through the.
Furthermore, the ion tube comprises a glass tube, an inner metal net, a metal rod and a fixing block, wherein an opening is formed in one side of the glass tube, the fixing block is fixedly arranged in the opening, the inner metal net is additionally arranged on the inner wall of the glass tube, the metal rod is fixedly arranged in the fixing block, one end of the metal rod extends into the glass tube, and the other end of the metal rod extends out of the fixing block.
Furthermore, an insulating hole is formed in the support cover, an insulating plate covers the insulating hole, and the ion tube is fixedly arranged on the outer side of the insulating plate.
The utility model has the advantages as follows:
the utility model has the advantages of being compact and reasonable in structure, convenient operation is through using high-voltage booster, makes the utility model discloses can provide the high-voltage electricity more than 1 ten thousand volts, make through high-voltage electricity electric shock air and produce the anion in making the air, the anion is that the oxygen molecule in the air has combined free electron and has formed, and it has fresh air's effect, but is harmless to human health, consequently can use in the environment that has the staff, improves operational environment, improves staff's work efficiency, promotes duration of operation time. Meanwhile, under the unmanned state, the utility model can still generate ozone, and the air is cleaned by the ozone.
Drawings
Fig. 1 is a sectional view of the present invention.
Fig. 2 is a cross-sectional view of the middle ion tube of the present invention.
Fig. 3 is a front view of the present invention.
Wherein: 1. an ion tube; 101. a glass tube; 102. an inner metal mesh; 103. a metal rod; 104. a fixed block; 2. an outer metal mesh; 3. an insulating plate; 4. a support housing; 5. an inner cavity; 6. a base plate; 7. a high voltage booster; 8. a control panel; 9. a metal sheet.
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
As shown in fig. 1 to 3, the dual-mode ion generator includes a base plate 6, a support cover 4 is fixedly arranged at a working end of the base plate 6, a high-voltage booster 7 and a control panel 8 are arranged in an inner cavity 5 enclosed by the support cover 4 and the base plate 6, the high-voltage booster 7 and the control panel 8 are fixedly arranged at the working end of the base plate 6, an insulating hole is formed in the support cover 4, an insulating plate 3 is covered on the insulating hole, four ion tubes 1 are fixedly arranged at the outer side of the insulating plate 3, and the ion tubes 1 are arranged in a rectangular shape two by two; the ion tube 1 consists of a glass tube 101, an inner metal mesh 102, a metal rod 103 and a fixing block 104, wherein one side of the glass tube 101 is provided with an opening, the fixing block 104 is fixedly arranged in the opening, the inner metal mesh 102 is additionally arranged on the inner wall of the glass tube 101, the metal rod 103 is fixedly arranged in the fixing block 104, one end of the metal rod extends into the glass tube 101, and the other end of the metal rod extends out of the fixing block 104; the outer wall cover of glass pipe 101 is equipped with outer metal mesh 2, the one end of sheetmetal 9 sets firmly in the outside of insulation board 3 through the screw, the one end of screw is passed support cover 4 and is stretched into inner chamber 5 and pass through the connection of electric lines with the booster, sheetmetal 9 and outer metal mesh 2 butt, connect through electric wire (not drawn) between booster and the control panel 8, the booster passes through the electric wire (not drawn) with metal bar 103 and is connected, control panel 8 passes through electric wire (not drawn) external power supply (not drawn).
The control panel 8 can control the third gear to control the high voltage booster 7 to be in three states of off, relatively low voltage and relatively high voltage, respectively.
When no person is in the closed environment, the power supply is turned on, the high-voltage booster 7 is controlled to be in a relatively low-voltage state, the high-voltage booster 7 provides 3-3.3 KV voltage, one path of the voltage is input into the metal rod 103 through the wire, the other path of the voltage is input into the outer metal net 2 through the wire and the metal sheet 9, due to the fact that the voltage is relatively low, only electric arcs exist between the metal rod 103 and the air near the outer metal net 2, ozone is just generated in the air at the moment, and cleaning and disinfection are conducted through the ozone.
When someone is in the closed environment, the high-voltage booster 7 needs to be controlled to be in a relatively high-voltage state at the moment, the high-voltage booster 7 provides a voltage of 10 KV-30 KV, and due to the fact that the voltage is high, air between the ion tubes 1 is subjected to electric shock of the voltage, and then the air is combined with free electrons to generate negative ions, and the air is cleaned by the negative ions.
The above description is for the purpose of explanation and not limitation of the invention, which is defined in the claims, and any modifications may be made within the scope of the invention.
Claims (3)
1. Dual mode ionizer, comprising a base plate (6), characterized in that: the working end of the bottom plate (6) is fixedly provided with a supporting cover (4), a high-voltage booster (7) and a control panel (8) are arranged in an inner cavity (5) surrounded by the supporting cover (4) and the bottom plate (6), the high-voltage booster (7) and the control panel (8) are fixedly arranged at the working end of the bottom plate (6), a plurality of ion tubes (1) are fixedly arranged on the outer side of the supporting cover (4), an outer metal net (2) is sleeved on the outer wall of each ion tube (1), one end of a metal sheet (9) is fixedly arranged on the outer side of the supporting cover (4) through a metal connecting piece, one end of the connecting piece penetrates through the supporting cover (4) to stretch into the inner cavity (5) and is connected with the booster through an electric wire, the metal sheet (9) is abutted against the outer metal net (2), the booster is connected with the control panel (8) through an electric wire, and the booster is connected with, the control panel (8) is externally connected with a power supply through an electric wire.
2. The dual mode ionizer of claim 1 wherein: the ion tube (1) is composed of a glass tube (101), an inner metal net (102), a metal rod (103) and a fixing block (104), wherein an opening is formed in one side of the glass tube (101), the fixing block (104) is fixedly arranged in the opening, the inner metal net (102) is additionally arranged on the inner wall of the glass tube (101), the metal rod (103) is fixedly arranged in the fixing block (104), one end of the metal rod extends into the glass tube (101), and the other end of the metal rod extends out of the fixing block (104).
3. The dual mode ionizer of claim 1 wherein: the support cover (4) is provided with an insulating hole, the insulating hole is covered with an insulating plate (3), and the ion tube (1) is fixedly arranged on the outer side of the insulating plate (3).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922458356.0U CN211017748U (en) | 2019-12-31 | 2019-12-31 | Dual mode ionizer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922458356.0U CN211017748U (en) | 2019-12-31 | 2019-12-31 | Dual mode ionizer |
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CN211017748U true CN211017748U (en) | 2020-07-14 |
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CN201922458356.0U Active CN211017748U (en) | 2019-12-31 | 2019-12-31 | Dual mode ionizer |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111908445A (en) * | 2020-07-15 | 2020-11-10 | 成都金创立科技有限责任公司 | Superfine carbon material dual-mode plasma reaction device and preparation method thereof |
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2019
- 2019-12-31 CN CN201922458356.0U patent/CN211017748U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111908445A (en) * | 2020-07-15 | 2020-11-10 | 成都金创立科技有限责任公司 | Superfine carbon material dual-mode plasma reaction device and preparation method thereof |
CN111908445B (en) * | 2020-07-15 | 2023-02-03 | 成都金创立科技有限责任公司 | Superfine carbon material dual-mode plasma reaction device and preparation method thereof |
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