CN210532546U - Plasma reaction mechanism and air conditioner - Google Patents

Plasma reaction mechanism and air conditioner Download PDF

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CN210532546U
CN210532546U CN201921648574.4U CN201921648574U CN210532546U CN 210532546 U CN210532546 U CN 210532546U CN 201921648574 U CN201921648574 U CN 201921648574U CN 210532546 U CN210532546 U CN 210532546U
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plasma reaction
reaction mechanism
medium
air
parts
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CN201921648574.4U
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袁封明
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Ningbo Aux Electric Co Ltd
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Ningbo Aux Electric Co Ltd
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Abstract

The utility model provides a plasma reaction mechanism and air conditioner, concretely relates to air purification field. The plasma reaction mechanism includes: two electrode members arranged oppositely; the two electrode parts are respectively wrapped in the two medium parts in a one-to-one correspondence mode, no gap exists between the medium parts and the electrode parts, and the two medium parts are arranged in a clearance mode; wherein, two said medium parts are the medium parts made of glass. Compared with the prior art, the two electrode pieces are respectively wrapped in the two medium parts in a one-to-one correspondence mode, and the two medium parts are made of glass, so that no gap can be formed between the medium parts and the electrode pieces. Thereby reducing the extra energy consumption of the plasma reaction mechanism and further reducing the power consumption of the plasma reaction mechanism.

Description

Plasma reaction mechanism and air conditioner
Technical Field
The utility model relates to an air purification field particularly, relates to a plasma reaction mechanism and air conditioner.
Background
Along with the continuous improvement of environmental awareness of people, the requirements of people on the household environment are higher and higher, especially the requirements on the air quality in a room are higher and higher, and the air conditioner has a certain air purification effect. For this reason, a plasma reactor is generally installed in an air conditioner, thereby achieving purification of indoor air.
However, the existing plasma reactor has the problem of high power consumption when being matched with an air conditioner for use; in addition, there is a problem that the durability is poor and the replacement is inconvenient.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the problem that the prior plasma reactor has high power consumption when being matched with an air conditioner for use to a certain extent; in addition, there is also at least one of the problems of poor durability, inconvenient replacement, etc.
In order to solve the above problem, the utility model provides a plasma reaction mechanism, include:
two electrode members arranged oppositely; and
the two electrode parts are respectively wrapped in the two medium parts in a one-to-one correspondence mode, no gap exists between the medium parts and the electrode parts, and the two medium parts are arranged in a clearance mode;
wherein, two said medium parts are the medium parts made of glass.
The two electrode pieces are respectively wrapped in the two medium parts in a one-to-one correspondence mode, and the two medium parts are made of glass, so that no gap can be formed between the medium parts and the electrode pieces. Thereby reducing the extra energy consumption of the plasma reaction mechanism and further reducing the power consumption of the plasma reaction mechanism.
Further, the two medium parts are connected through a connecting part, the connecting part encloses a gap between the two medium parts to form a sealed cavity, and the connecting part is mainly made of glass;
the connecting part is provided with an air input end and an air output end, the air input end is communicated with the inside and the outside of the cavity, and the air output end is communicated with the inside and the outside of the cavity.
A gap between the two medium parts is enclosed into a sealed cavity by using the connecting part; the connecting part is mainly made of glass, so that the air in the cavity is treated, a large amount of active ion derivatives are generated, and an effective air purification function is realized.
Further, the air input end is provided with an air filtering mechanism.
Based on this, the present embodiment prevents impurities from entering between the electrode members by providing an air filtering mechanism, such as a filter screen, at the air input end, thereby ensuring the service life of the electrode members and thus prolonging the durability of the plasma reaction mechanism.
Further, the two dielectric portions are dielectric portions made of quartz glass.
The insulation of the dielectric part is improved.
In addition, the dielectric part made of quartz realizes dielectric barrier discharge, so that microchannel filament discharge occurs, and the dielectric barrier discharge is more uniform and stable.
Further, the electrode member is of a disc-shaped structure, the medium part is of a disc-shaped structure, and the connecting part is arranged around the circumferential edge of the medium part.
The space between the two medium parts is enlarged, so that the volume of the cavity is increased, and the plasma reaction is more sufficient.
Further, the electrode piece is of a net structure.
The conductivity of the electrode member is improved.
Further, the terminal of the electrode member protrudes outside the dielectric portion.
So set up, make things convenient for the wiring of electrode spare to the plasma reaction mechanism dismouting of being convenient for.
Further, the gap between the two medium parts does not exceed 8 mm.
Thereby producing a high concentration of the reactive ion derivative.
Further, the plasma reaction mechanism further includes:
a base;
a support part connected with the base; and
and the clamping part is connected with the supporting part and is used for clamping the two medium parts.
Effective clamping of the two medium portions is achieved, and the base can be installed at a corresponding position in the air conditioner as needed.
Furthermore, the supporting part is two supporting rods, the clamping part comprises two fixing trays and two nuts, the two fixing trays are respectively fixed with the two supporting rods in a one-to-one correspondence mode, external threads are arranged on the surface of each supporting rod and matched with one nut, and the two fixing trays and the two nuts clamp the two medium parts.
This base, supporting part and clamping part simple structure, convenient to use to utilize the thread tightening mode of nut, can carry out corresponding regulation to two medium portions of different thickness, thereby improve the suitability of clamping part.
Further, the two nuts are nuts made of rubber or plastics.
On one hand, the nut made of rubber or plastic can reduce the damage to the medium parts made of two glasses in the clamping process, and on the other hand, the nut made of rubber or plastic plays an insulating role, so that the use safety is further improved.
Additionally, the utility model also provides an air conditioner, the air conditioner include the basis plasma reaction mechanism.
The air conditioner adopts the same technical characteristics and achieves the same technical effects as the plasma reaction mechanism, so that the explanation is not repeated.
Drawings
Fig. 1 is a schematic top view of the plasma reaction mechanism according to an embodiment of the present invention;
FIG. 2 is a schematic cross-sectional view taken at A-A in FIG. 1;
fig. 3 is a schematic side view of the plasma reaction mechanism according to an embodiment of the present invention.
Description of reference numerals:
100 electrode elements, 200 medium parts, 300 connecting parts, 301 air input ends, 302 air output ends, 303 cavities, 410 bases, 421 supporting rods, 431 fixing trays and 432 nuts.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present invention more comprehensible, embodiments accompanied with figures are described in detail below.
In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "rear", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus should not be construed as limiting the present invention.
The terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature.
Referring to fig. 1 to 3, the present embodiment provides a plasma reaction mechanism including: two electrode members 100 and two dielectric members 200. The two pole elements 100 are oppositely arranged; the two electrode elements 100 are respectively wrapped in the two medium parts 200 in a one-to-one correspondence manner, no gap exists between the medium parts 200 and the electrode elements 100, and the two medium parts 200 are arranged in a clearance manner; wherein the two dielectric portions 200 are glass dielectric portions.
It should be noted that, by using the characteristic that glass has insulation and the characteristic that the glass product processing technology is mature, after the glass is melted into liquid or viscous substance at high temperature, the electrode element 100 is inserted into the glass, and then the glass is cooled into solid with fixed shape, namely the medium part 200, so that the electrode element 100 is sealed in the medium part 200, and thus any gap between the medium part 200 and the electrode element 100 is prevented.
Of course, the plasma reaction mechanism of the present embodiment may be installed in other air processing equipment, such as an air dryer or an air humidifier, as long as it is capable of purifying air, in addition to the air conditioner.
The present inventors have found that one of the main reasons for the high power consumption of the conventional plasma generator is that there is a gap between the electrode member 100 and the medium portion 200, and the gap usually contains air, which causes the electrode member 100 to have extra power consumption increase under the condition of power-on, and since the electrode member 100 is usually used in pairs, i.e. at least two, this extra power consumption increase is also a multiple increase, such as 2 times or 4 times, which causes the power consumption increase of the plasma reaction mechanism.
Based on the above findings of the present invention, two electrode members 100 are wrapped in two medium portions 200 in a one-to-one correspondence, respectively, and the two medium portions 200 are medium portions 200 made of glass, so that no gap can be formed between the medium portions 200 and the electrode members 100. Thereby reducing the extra energy consumption of the plasma reaction mechanism and further reducing the power consumption of the plasma reaction mechanism.
Referring to fig. 1 and 2, further, the two medium parts 200 are connected by a connecting part 300, and the connecting part 300 encloses a gap between the two medium parts 200 into a sealed cavity 303; the connection part 300 is mainly made of glass.
The connecting portion 300 is provided with an air input end 301 and an air output end 302, wherein the air input end 301 communicates the inside and the outside of the cavity 303, and the air output end 302 communicates the inside and the outside of the cavity 303.
When the air purifier is used, the two electrode elements 100 are electrified, air enters the cavity 303 from the air input end 301 and generates active ion derivatives under the action of electrode discharge, the active ion derivatives are high-energy electrons and/or free radicals and/or ozone molecules, then the air containing the active ion derivatives leaves from the air output end 302 to purify the dirty air, for example, the air is mixed with the dirty air and the gas pollutants in the dirty air are purified by utilizing the strong oxidizing property of the active ion derivatives, so that the air purification is realized.
A gap between the two medium parts 200 is enclosed into a sealed cavity 303 by the connecting part 300; the connecting portion 300 is mainly made of glass, so that air in the cavity 303 is treated, a large amount of active ion derivatives are generated, and an effective air purification function is realized.
Moreover, the plasma reaction mechanism is an independent plasma reaction mechanism and is provided with an independent air input end 301 and an independent air output end 302, so that the limitation of the discharge distance between the two electrodes by an air inlet or an air return inlet of equipment such as an air conditioner is avoided, and the discharge distance between the two electrodes is adjusted to a corresponding distance capable of generating more active ion derivatives.
Referring to fig. 1, further, the air input 301 is provided with an air filtering mechanism.
The inventor of the utility model finds that one of the main reasons for the poor durability of the plasma reaction mechanism is that, in the prior art, the dirty air is often directly introduced between two electrode members 100, and in the discharge process of the electrode members 100, the impurities in the dirty air are often corroded with the electrode members 100 along with the discharge process, so that the continuous circulation is continued, the service life of the electrode is reduced, and the durability of the plasma reaction mechanism is reduced.
In this respect, the present embodiment prevents impurities from entering between the electrode members 100 by providing an air filtering mechanism, such as a filtering net, at the air input end 301, thereby securing the lifespan of the electrode members 100 and thus extending the durability of the plasma reaction mechanism.
Not shown in the drawings, further, the two dielectric portions 200 are dielectric portions made of quartz glass.
The insulation of the dielectric member 200 is improved. In addition, the dielectric part made of quartz realizes dielectric barrier discharge, so that microchannel filament discharge occurs, and the dielectric barrier discharge is more uniform and stable.
Referring to fig. 1 and 3, the electrode member 100 has a disk-shaped structure, the dielectric member 200 has a disk-shaped structure, and the connecting portion 300 is disposed around the circumferential edge of the dielectric member 200.
The thickness of the dielectric part 200 is preferably 1mm to 2mm, and the maximum thickness is not more than 3 mm.
Diameter of the medium portion 200: 90mm-120 mm.
The space between the two dielectric portions 200 is enlarged, so that the volume of the cavity 303 is increased, and the plasma reaction is more sufficient.
Referring to fig. 1, further, the electrode member 100 has a mesh structure.
Specifically, the electrode member 100 may be a dense wire mesh having a mesh size of 60-100, and the wire electrode has a diameter of 85-115 mm.
The electrical conductivity of the electrode member 100 is improved.
Not shown in the drawings, further, the terminals of the pole element 100 extend out of the dielectric member 200.
So set up, make things convenient for electrode 100 wiring to the plasma reaction mechanism dismouting of being convenient for.
Not shown in the drawings, further, the gap between the two medium portions 200 does not exceed 8 mm.
Thereby producing a high concentration of the reactive ion derivative.
Discharge gap: i.e., the distance between the upper and lower medium portions 200, is preferably 1mm to 3mm, but not more than 8mm at maximum.
Referring to fig. 3, further, the plasma reaction mechanism further includes: base 410, a support portion, and a clamping portion. The support part is connected with the base 410; the clamping portion is connected to the supporting portion, and the clamping portion is used to clamp the two medium portions 200.
Effective clamping of the two medium parts 200 is achieved and the base 410 can be installed at a corresponding position in the air conditioner as needed.
Referring to fig. 3, further, the supporting portion is two supporting rods 421, the clamping portion includes two fixing trays 431 and two nuts 432, the two fixing trays 431 are respectively fixed to the two supporting rods 421 in a one-to-one correspondence, a surface of each supporting rod 421 is provided with an external thread and is matched with one nut 432, and the two fixing trays 431 and the two nuts 432 clamp the two medium portions 200.
Of course, the support bar 421 and the base 410 can be connected by a fixing nut.
This base 410, supporting part and clamping part simple structure, convenient to use to utilize nut 432's thread tightening mode, can carry out corresponding regulation to two medium portion 200 of different thickness, thereby improve the suitability of clamping part.
Referring to fig. 3, further, the two nuts 432 are nuts 432 made of rubber or plastic.
On one hand, the nut 432 made of rubber or plastic can reduce damage to the two medium parts 200 made of glass in the clamping process, and on the other hand, the nut 432 made of rubber or plastic plays an insulating role, so that the use safety is further improved.
In addition, the embodiment also provides an air conditioner, which comprises the plasma reaction mechanism.
The air conditioner adopts the same technical characteristics and achieves the same technical effects as the plasma reaction mechanism, so that the explanation is not repeated.
Although the present invention is disclosed above, the present invention is not limited thereto. Various changes and modifications may be effected therein by one of ordinary skill in the pertinent art without departing from the scope or spirit of the present invention, and the scope of the present invention is defined by the appended claims.

Claims (12)

1. A plasma reaction mechanism, comprising:
two pole elements (100) arranged opposite to each other; and
the two electrode parts (100) are respectively wrapped in the two medium parts (200) in a one-to-one correspondence mode, no gap exists between the medium parts (200) and the electrode parts (100), and the two medium parts (200) are arranged in a clearance mode;
wherein the two dielectric portions (200) are made of glass.
2. The plasma reaction mechanism according to claim 1, wherein the two medium portions (200) are connected by a connecting portion (300), the connecting portion (300) encloses a gap between the two medium portions (200) into a sealed cavity (303), and the connecting portion (300) is mainly made of glass;
the connecting part (300) is provided with an air input end (301) and an air output end (302), the air input end (301) is communicated with the inside and the outside of the cavity (303), and the air output end (302) is communicated with the inside and the outside of the cavity (303).
3. The plasma reaction mechanism according to claim 2, wherein the air input end (301) is provided with an air filtering mechanism.
4. The plasma reaction mechanism according to claim 2, wherein the two dielectric portions (200) are dielectric portions made of quartz glass.
5. The plasma reaction mechanism as claimed in claim 2, wherein the electrode member (100) has a disk-like configuration, the dielectric portion (200) has a disk-like configuration, and the connecting portion (300) is disposed around a circumferential edge of the dielectric portion (200).
6. The plasma reaction mechanism as claimed in claim 5, wherein the electrode member (100) is a mesh structure.
7. The plasma reaction mechanism according to claim 1, wherein the terminal end of the electrode member (100) protrudes outside the dielectric portion (200).
8. The plasma reaction mechanism according to any of claims 1 to 7, wherein a gap between two of the medium portions (200) does not exceed 8 mm.
9. The plasma reaction mechanism according to any one of claims 1 to 7, further comprising:
a base (410);
a support part connected with the base (410); and
a clamping portion connected with the support portion, the clamping portion being for clamping two of the media portions (200).
10. The plasma reaction mechanism as claimed in claim 9, wherein the supporting portion is two supporting rods (421), the clamping portion comprises two fixing trays (431) and two nuts (432), the two fixing trays (431) are respectively fixed with the two supporting rods (421), one to one correspondence, the surface of each supporting rod (421) is provided with an external thread and is matched with one nut (432), and the two fixing trays (431) and the two nuts (432) clamp the two medium portions (200).
11. The plasma reaction mechanism according to claim 10, wherein two of said nuts (432) are nuts (432) made of rubber or plastic.
12. An air conditioner, characterized in that the air conditioner comprises the plasma reaction mechanism according to any one of claims 1 to 11.
CN201921648574.4U 2019-09-30 2019-09-30 Plasma reaction mechanism and air conditioner Active CN210532546U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921648574.4U CN210532546U (en) 2019-09-30 2019-09-30 Plasma reaction mechanism and air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921648574.4U CN210532546U (en) 2019-09-30 2019-09-30 Plasma reaction mechanism and air conditioner

Publications (1)

Publication Number Publication Date
CN210532546U true CN210532546U (en) 2020-05-15

Family

ID=70607016

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921648574.4U Active CN210532546U (en) 2019-09-30 2019-09-30 Plasma reaction mechanism and air conditioner

Country Status (1)

Country Link
CN (1) CN210532546U (en)

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