CN212585097U - Electrostatic adsorption device and air purifier including electrostatic adsorption device - Google Patents

Electrostatic adsorption device and air purifier including electrostatic adsorption device Download PDF

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CN212585097U
CN212585097U CN202020449114.5U CN202020449114U CN212585097U CN 212585097 U CN212585097 U CN 212585097U CN 202020449114 U CN202020449114 U CN 202020449114U CN 212585097 U CN212585097 U CN 212585097U
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voltage group
air
adsorption device
electrostatic adsorption
accommodating space
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徐逸
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Abstract

一种静电吸附装置及包含静电吸附装置的空气清净机,所述静电吸附装置包含一高电压组、一低电压组及一电压产生器,低电压组与高电压组相邻设置且彼此不直接接触,电压产生器输出给高电压组的电压大于给低电压组的电压。其中,高电压组的多个第一电极片沿一第一方向彼此间隔一第一间距排列,所述低电压组的多个第二电极片沿一第二方向彼此间隔一第二间距排列,所述第二间距小于所述第一间距。将前述之静电吸附装置设置于空气清净机中,可以过滤空气中大部分的悬浮粒子,减少吸附于空气清净机中之滤网的粒子,延长滤网的使用寿命,环保又节省耗材成本。

Figure 202020449114

An electrostatic adsorption device and an air purifier including the electrostatic adsorption device, wherein the electrostatic adsorption device includes a high voltage group, a low voltage group and a voltage generator, wherein the low voltage group and the high voltage group are arranged adjacent to each other and are not in direct contact with each other, and the voltage output by the voltage generator to the high voltage group is greater than the voltage output to the low voltage group. The multiple first electrode sheets of the high voltage group are arranged at a first spacing from each other along a first direction, and the multiple second electrode sheets of the low voltage group are arranged at a second spacing from each other along a second direction, and the second spacing is smaller than the first spacing. The aforementioned electrostatic adsorption device is arranged in an air purifier, which can filter most of the suspended particles in the air, reduce the particles adsorbed on the filter in the air purifier, extend the service life of the filter, and is environmentally friendly and saves consumables costs.

Figure 202020449114

Description

Electrostatic adsorption device and air cleaner comprising same
Technical Field
The utility model relates to an air purifying device; in particular to an air cleaner with an electrostatic adsorption device.
Background
With the change of times, excessive suspended particles are scattered in the air due to a great amount of activities of people, and the suspended particles are easily adsorbed on the surface of the skin of a human body or enter the lung, so that physiological diseases of people are caused. In order to maintain the air quality of the activity environment, except for carrying the mask outdoors, people need to install an air cleaner indoors, and suspended particles, bacteria and viruses in indoor air can be filtered by the air cleaner, so that the indoor air is kept clean, harmful substances are prevented from entering the human body, and the physiological health of people can be maintained.
The conventional air cleaner generally includes a housing, at least one filter, and a fan, the housing has an air inlet and an air outlet, and the filter and the fan are disposed in the housing. When the fan started, the air got into the casing from the income wind gap, and the air can be earlier through the filter screen, and the filter screen can adsorb the suspended particle in the air, and then, the air after being purified will leave inside the casing from the air outlet, reaches the effect of maintaining indoor air quality. However, after the filter screen is used for a certain period of time, the filter screen is prone to reduce the gaps of the filter holes due to the attachment of suspended particles, dust, oil smoke and other substances to the periphery of the filter holes, and the air filtering capacity begins to decrease. Therefore, it is necessary to replace the filter periodically, but the cost of purchasing a new filter is not small and the used filter must be discarded, which increases the burden on the environment.
SUMMERY OF THE UTILITY MODEL
In view of the above, an object of the present invention is to provide an electrostatic adsorption device and an air cleaner, in which the service life of a filter screen can be prolonged.
Accordingly, the present invention provides an electrostatic adsorption device including a high voltage set, a low voltage set and a voltage generator. The high-voltage group comprises a plurality of first electrode plates which are arranged at intervals along a first direction, a first interval is formed between every two adjacent first electrode plates, and each first interval is between 0.5 cm and 5 cm; the low voltage group and the high voltage group are arranged adjacently, and the high voltage group and the low voltage group are not in direct contact with each other, the low voltage group comprises a plurality of second electrode plates which are arranged at intervals along a second direction, a second distance is formed between every two adjacent second electrode plates, the second distance is between 0.2 cm and 1.5 cm, and the second distance is smaller than the first distance; the voltage generator is electrically connected with the high voltage group and the low voltage group, and the voltage output by the voltage generator for the high voltage group is greater than the voltage output for the low voltage group.
Wherein each first distance is between 1 cm and 3 cm; each of the second pitches is between 0.3 cm and 0.7 cm.
Wherein the voltage of each first electrode plate is between 2500 volts and 6000 volts; the voltage of each second electrode plate is between 1250 volts and 3000 volts.
Wherein the first direction is parallel to the second direction.
Another object of the present invention is to provide an air cleaner for filtering suspended particles in air, comprising a housing, the electrostatic adsorbing device, an ultraviolet lamp and a first filter. The shell is internally provided with an accommodating space and comprises an air inlet and an air outlet, and the air inlet and the air outlet are respectively communicated with the outside of the shell and the accommodating space; the electrostatic adsorption device is arranged in the accommodating space, and compared with the low voltage group, the high voltage group of the electrostatic adsorption device is closer to the air inlet; the ultraviolet lamps are arranged in the accommodating space, and the low-voltage group is closer to the ultraviolet lamps than the high-voltage group; and the first filter screen is arranged in the accommodating space and is positioned between the air outlet and the electrostatic adsorption device.
Wherein, the air cleaner contains a baffle, the baffle set up in the accommodation space, and will the accommodation space separates into a first space and a second space that communicate each other, electrostatic adsorption device is located first space, first filter screen set up in the second space, the baffle with the casing forms an opening jointly, with high voltage group compares, low voltage group is closer to the opening.
The air cleaner comprises a second filter screen and a second filter screen, wherein the second filter screen is arranged in the second space of the accommodating space and contains active carbon; the first screen has a composition of silver ions.
The air cleaner comprises a fan which is arranged in the second space of the accommodating space and is close to the air outlet, and the fan is used for sucking the air in the accommodating space, so that the air outside the air cleaner enters the accommodating space from the air inlet and is discharged out of the air cleaner from the air outlet.
The air inlet is arranged on the lower side of the side face of the shell, and the air outlet is arranged on the top face of the shell.
Wherein, air cleaner contains a third filter screen set up in the accommodation space in the first space and be close to go into the wind gap, the filter aperture of third filter screen is greater than the filter aperture of first filter screen.
The utility model has the advantages that the electrostatic adsorption device can prolong the service time of the filter screen of the air cleaner. The first interval of the high-voltage group and the second interval of the low-voltage group are designed, suspended particles pass through the first electrode plates to become charged particles and are adsorbed on the surfaces of the second electrode plates in a free mode, most of the suspended particles in the air are successfully filtered, only a few suspended particles need to be purified through the first filter screen, the effect of prolonging the service life of the first filter screen is achieved, and the electrostatic adsorption device can be reused after adsorbed substances are washed away, so that the environmental protection benefit is greatly met.
Drawings
FIG. 1 is a schematic view of an air cleaner according to a preferred embodiment of the present invention.
Fig. 2 is an exploded view of fig. 1.
Fig. 3 is a front view of fig. 1.
Fig. 4 is a sectional view taken in the direction 4-4 of fig. 3.
Description of the reference numerals
[ the utility model ]
100: air cleaner
10: shell body
10 a: air inlet
10 b: air outlet
10 c: opening of the container
12: side plate
14: body
20: baffle plate
30: electrostatic adsorption device
32: high voltage group
321: first electrode sheet
34: low voltage group
341: second electrode sheet
36: voltage generator
38: supporting frame
40: ultraviolet lamp
50: first filter screen
60: second filter screen
70: fan blower
80: third filter screen
S: containing space
S1: the first space
S2: second space
X1: a first direction
X2: second direction
D1: first interval
D2: second pitch
Detailed Description
In order to explain the present invention more clearly, the following detailed description will be given with reference to the accompanying drawings. Referring to fig. 1 and 2, an air cleaner 100 according to a preferred embodiment of the present invention includes a housing 10, a baffle 20, an electrostatic adsorption device 30, an ultraviolet lamp 40, a first filter 50, a second filter 60, and a fan 70.
The housing 10 has a side plate 12 and a body 14, the side plate 12 is detachable relative to the body 14, and the body 14 has an accommodating space S therein. The housing 10 includes an air inlet 10a and an air outlet 10b, the air inlet 10a is disposed at a lower side of the side plate 12, the air outlet 10b is disposed at a top surface of the housing 10, and the air inlet 10a and the air outlet 10b are respectively communicated with an exterior of the housing 10 and an accommodating space S inside the housing 10. The baffle 20 is disposed in the accommodating space S and divides the accommodating space S into a first space S1 and a second space S2 (refer to fig. 3), the baffle 20 and the body 14 of the housing 10 together form an opening 10c, and the opening 10c communicates the first space S1 and the second space S2.
The electrostatic adsorption device 30 is disposed in the first space S1 of the accommodating space S, the electrostatic adsorption device 30 includes a high voltage group 32 and a low voltage group 34 disposed adjacently, and a voltage generator 36 is electrically connected to the high voltage group 32 and the low voltage group 34. The high voltage set 32 and the low voltage set 34 are respectively connected to the inner bottom surface of the body 14 by a support frame 38, and the high voltage set 32 and the low voltage set 34 are not in direct contact with each other. The high voltage group 32 is closer to the air inlet 10a than the low voltage group 34, and the low voltage group 34 is closer to the opening 10c than the high voltage group 32.
Referring to fig. 4 again, the high voltage group 32 includes a plurality of first electrode pads 321, the plurality of first electrode pads 321 are arranged at intervals along a first direction X1, a first distance D1 is provided between two adjacent first electrode pads 321, and each first distance D1 is between 0.5 cm and 5 cm; preferably, each of the first distances D1 is between 1 cm and 3 cm. The range of the first distance D1 is designed such that, if the first distance D1 is less than 0.5 cm, the distance between the first electrode plates 321 is too close and then a high voltage is applied, which may cause the first electrode plates 321 to overheat or generate fire when the suspended particles pass through the first electrode plates 321 after becoming charged particles, which may cause the high voltage group 32 to be damaged; if the first distance D1 is greater than 5 cm, a large amount of air will pass through the gaps between the first electrode plates 321 per unit time, and it is not ensured that most of the suspended particles in the air are charged by high voltage, and the electrostatic effect is poor. The low voltage set 34 includes a plurality of second electrode pads 341, the second electrode pads 341 are arranged along a second direction X2 at intervals, in this embodiment, the first direction X1 is parallel to the second direction X2. A second distance D2 is formed between two adjacent second electrode pads 341, the second distance is between 0.2 cm and 1.5 cm, and the second distance is smaller than the first distance; preferably, each of the second distances D2 is between 0.3 cm and 0.7 cm. The second distance D2 is designed to have a value range such that, if the second distance D2 is less than 0.2 cm, the amount of air passing through the gaps between the second electrode sheets 341 per unit time is too small, which results in a low air purification efficiency of the electrostatic adsorption device 30; if the second distance D2 is greater than 1.5 cm, the air is too large to effectively adsorb all the charged particles on the surfaces of the second electrode plates 341 due to the gaps between the second electrode plates 341, resulting in poor dust collecting effect of the electrostatic adsorbing device 30. Further, the shape of each of the first electrode pads 321 is the same, the shape of each of the second electrode pads 341 is the same, and the area of each of the first electrode pads 321 is smaller than the area of each of the second electrode pads 341, however, the size and the shape of the plurality of first electrode pads 321 and the plurality of second electrode pads 341 may be adjusted according to different applications, and is not limited thereto.
The voltage generator 36 is disposed at one side of the high voltage group 32 and the low voltage group 34, and the voltage generator 36 provides different voltage values for the high voltage group 32 and the low voltage group 34, respectively, wherein the voltage of the high voltage group 32 is greater than the voltage of the low voltage group 34. In the present invention, the voltage value of each of the first electrode pieces 321 is between 2500 volts and 6000 volts, and the voltage value of each of the second electrode pieces 341 is between 1250 volts and 3000 volts; preferably, the voltage value of each of the first electrode pieces 321 is between 3000 volts and 5000 volts, and the voltage value of each of the second electrode pieces 341 is between 1500 volts and 2500 volts. The floating particles in the air pass through the gaps between the first electrode sheets 321 of the high voltage group 32, become charged particles after receiving the voltage of the high voltage group 32, move from the high voltage group 32 to the low voltage group 34, adhere to the surfaces of the second electrode sheets 341 of the low voltage group 34, and the air without the charged particles passes through the gaps between the second electrode sheets 341 of the low voltage group 34 and leaves the electrostatic adsorption device 30.
In accordance with the aforementioned design, if the first distance D1 between the first electrode plates 321 is reduced (e.g. from 1.0 cm to 0.5 cm), and the originally provided high voltage value is added to the first electrode plates 321 (e.g. 3000 volts is provided to the first electrode plates 321 spaced from each other by the first distance D1 of 1.0 cm), the first electrode plates 321 are easily overheated due to over-high power, or the high voltage group 32 is damaged due to the generation of fire when the suspended particles pass through the first electrode plates 321 after becoming charged particles, and the voltage value is reduced (e.g. from 3000 volts to 2500 volts) to avoid the situation that the high voltage group 32 is damaged due to over-high power, so the first distance D1 is reduced, and the voltage value of the configured high voltage group 32 needs to be reduced. If the first distance D1 is increased (e.g., from 1 cm to 5 cm), the amount of air passing through the gaps between the first electrode plates 321 per unit time is increased, and the originally provided high voltage value is applied to the first electrode plates 321 (e.g., 3000 volts is applied to the first electrode plates 321 spaced apart from each other by the first distance D1 of 1 cm), the originally provided high voltage value generates an electric field which is insufficient to make most of the airborne particles become charged particles, i.e., the airborne particles directly pass through the high voltage group 32, so that the electrostatic polarization effect is not improved, and the same electrostatic polarization effect can be maintained by increasing the voltage value (e.g., from 3000 volts to 6000 volts), so that the first distance D1 is increased, and the voltage value of the allocated high voltage group 32 needs to be increased.
If the second distance D2 of the second electrode pads 341 is decreased (e.g., from 0.5 cm to 0.2 cm), and the originally provided low voltage value is added to the second electrode pads 341 (e.g., 2000 v is provided to the second electrode pads 341 spaced from each other by the second distance D2 of 0.5 cm), the first electrode pad 321 is easily overheated or glowing, which may cause damage to the low voltage set 34, and the decrease of the voltage value (e.g., from 2000 v to 1250 v) may avoid the situation that the power is too high to damage the low voltage set 34 or consume too much energy, so the second distance D2 is decreased and the voltage value of the configured low voltage set 34 is decreased. If the second distance D2 is increased (e.g., from 0.5 cm to 1.5 cm), and the originally provided low voltage value is applied to the second electrode pads 341 (e.g., 2000 v is applied to the second electrode pads 341 spaced from each other by the second distance D2 of 0.5 cm), the electric field is too small to effectively adsorb all the charged particles on the surfaces of the second electrode pads 341, so that the charged particles in the air easily pass through the gaps between the second electrode pads 341, the dust collecting effect of the electrostatic adsorbing device 30 is not good, and the voltage value is increased (e.g., from 2000 v to 3000 v) to effectively adsorb the charged particles, so the second distance D2 is increased, and the voltage value of the configured low voltage group 34 needs to be increased.
The above-mentioned distance value and voltage value are within the preferred range defined by the present invention, all have the effects of energy saving, safe use and excellent air purification. In practical use, can be according to the utility model provides an air cleaner set up the space (like the environment terrace number) and different, estimate the required air volume of purifying of electrostatic adsorption device 30 at every unit interval, according to have more suitable size with design electrostatic adsorption device 30 to and interval and quantity between its high-low voltage electrode piece, dispose again the utility model discloses voltage value in the voltage range can reach abundant air-purifying effect.
The ultraviolet lamp 40 is disposed in the first space S1 of the accommodating space S, and the ultraviolet lamp 40 is disposed on the inner wall of the casing 10 near one side of the low voltage set 34 and corresponds to the gaps between the first electrode sheets 321. The ultraviolet lamp 40 is used to destroy microorganisms (such as bacteria or viruses) in the accommodating space S, so as to achieve the effect of killing the bacteria and viruses.
The first filter 50 is disposed in the second space S2 of the accommodating space S, between the air outlet 10b and the electrostatic adsorption device 30, and above the baffle 20. The first filter screen 50 has a component of nano silver ions, and can effectively filter fine dust, and has the functions of antibiosis and mould prevention. In the embodiment of the present invention, the first filter 50 may be, for example, a HEPA filter (High-Efficiency Air filter), but is not limited thereto.
The second filter 60 is disposed in the second space S2 of the accommodating space S and located between the air outlet 10b and the first filter 50, and the second filter 60 has active carbon components for removing odor and harmful gases. In the embodiment of the present invention, the second screen 60 may be, for example, an activated carbon screen, but is not limited thereto.
The fan 70 is disposed in the second space S2 of the accommodating space S and close to the air outlet 10b, and the fan 70 is used for sucking the air in the accommodating space S, sucking the air outside the air cleaner 100 into the accommodating space S from the air inlet 10a, and discharging the air in the accommodating space S out of the air cleaner 100 through the air outlet 10 b.
The air filtering method according to the above structure will be described below. As shown in fig. 3 and 4, when the fan 70 starts to operate, the fan 70 sucks air into the accommodating space S from the air inlet 10a, when the air passes through the electrostatic adsorption device 30, suspended particles in the air first pass through gaps between the first electrode plates 321 of the high voltage group 32, and become charged particles under the voltage of the high voltage group 32, the charged particles move from the high voltage group 32 to the low voltage group 34, the charged particles are adsorbed on the surfaces of the second electrode plates 341 of the low voltage group 34, and the air without charged particles passes through gaps between the second electrode plates 341 of the low voltage group 34 and leaves the electrostatic adsorption device 30. Then, the air passes through the ultraviolet light, and moves from the first space S1 to the second space S2 through the opening 10c beside the baffle 20, and passes through the first filter 50 and the second filter 60 in sequence to achieve the air purifying effects of sterilization, deodorization, etc., and the purified air is discharged from the air outlet 10b to the accommodating space S.
In addition to the above components, the air cleaner 100 of the present embodiment further includes a third filter 80 disposed in the first space S1 of the accommodating space S and located between the high voltage set 32 and the air inlet 10 a. The filtering aperture of the third filter screen 80 is larger than that of the first filter screen 50, and is used for preliminarily filtering larger substances in the air, such as hair balls or small stones, so as to effectively prevent the electrostatic adsorption device 30 from being damaged by the larger substances, and also prevent the high voltage group 32 and the low voltage group 34 from generating short circuit, thereby avoiding the occurrence of electrical fire.
The advantages of the air cleaner 100 are summarized. The electrostatic adsorption device 30 of the air cleaner 100 can filter most of the suspended particles in the air, and adsorb the suspended particles to the surface of the second electrode sheet 341 of the low voltage group 34, and the electrostatic adsorption device 30 is then cleaned periodically, so that the air cleaner can be reused. In accordance with the above, the electrostatic adsorption device 30 adsorbs most of the suspended particles, so that the suspended particles adsorbed on the first filter 50 and the second filter 60 can be reduced, the service life of the first filter 50 and the second filter 60 can be prolonged, the environmental protection benefit is obtained, and the cost for replacing the filter is reduced. In addition, as the distance between the electrode plates of each voltage set in the electrostatic adsorption device 30 is designed, the electrostatic adsorption device 30 is not bulky and heavy, so that the overall air cleaner 100 is prevented from being too large in volume, easy to store and small in space; the distance between the electrode plates is designed by matching with the voltage value, so that the electrostatic adsorption device 30 has the best effect of adsorbing the suspended particles and has the characteristic of energy saving.
The above description is only a preferred embodiment of the present invention, and all equivalent changes and modifications to the application of the present invention and the claims should be considered to be included in the scope of the present invention.

Claims (10)

1.一种静电吸附装置,其特征在于,包含:1. an electrostatic adsorption device, is characterized in that, comprises: 一高电压组,包含多个第一电极片,所述多个第一电极片沿一第一方向彼此间隔排列,所述多个第一电极片中相邻二者之间具有一第一间距,各所述第一间距介于0.5公分至5公分之间;A high-voltage group includes a plurality of first electrode sheets, the plurality of first electrode sheets are spaced apart from each other along a first direction, and there is a first distance between adjacent ones of the plurality of first electrode sheets , each of the first spacing is between 0.5 cm and 5 cm; 一低电压组,所述低电压组与所述高电压组相邻设置,且所述高电压组与所述低电压组彼此不直接接触,所述低电压组包含多个第二电极片,所述多个第二电极片沿一第二方向彼此间隔排列,所述多个第二电极片中相邻二者之间具有一第二间距,所述第二间距介于0.2公分至1.5公分之间,所述第二间距小于所述第一间距;以及a low-voltage group, the low-voltage group and the high-voltage group are arranged adjacent to each other, and the high-voltage group and the low-voltage group are not in direct contact with each other, the low-voltage group includes a plurality of second electrode sheets, The plurality of second electrode sheets are spaced apart from each other along a second direction, and there is a second distance between adjacent ones of the plurality of second electrode sheets, and the second distance is between 0.2 cm to 1.5 cm between, the second spacing is smaller than the first spacing; and 一电压产生器,电性连接所述高电压组及所述低电压组,所述电压产生器对于所述高电压组输出的电压大于对于所述低电压组输出的电压。A voltage generator is electrically connected to the high-voltage group and the low-voltage group, and the voltage output by the voltage generator for the high-voltage group is greater than the output voltage for the low-voltage group. 2.如权利要求1所述的静电吸附装置,其特征在于,各所述第一间距介于1公分至3公分之间;各所述第二间距介于0.3公分至0.7公分之间。2 . The electrostatic adsorption device according to claim 1 , wherein each of the first spacings is between 1 cm and 3 cm; and each of the second spacings is between 0.3 cm and 0.7 cm. 3 . 3.如权利要求2所述的静电吸附装置,其特征在于,各所述第一电极片的电压介于2500伏特与6000伏特之间;各所述第二电极片的电压介于1250伏特与3000伏特之间。3 . The electrostatic adsorption device of claim 2 , wherein the voltage of each of the first electrode sheets is between 2500 volts and 6000 volts; the voltage of each of the second electrode sheets is between 1250 volts and 6000 volts 3 . between 3000 volts. 4.如权利要求1所述的静电吸附装置,其特征在于,所述第一方向平行于所述第二方向。4. The electrostatic adsorption device of claim 1, wherein the first direction is parallel to the second direction. 5.一种空气清净机,用以过滤空气中的悬浮粒子,其特征在于,包含:5. an air purifier, in order to filter the suspended particles in the air, is characterized in that, comprises: 一壳体,所述壳体的内部具有一容置空间,且包含一入风口及一出风口,所述入风口与所述出风口分别连通所述壳体的外部与所述容置空间;a casing, the interior of the casing has an accommodating space, and includes an air inlet and an air outlet, the air inlet and the air outlet are respectively connected to the outside of the casing and the accommodating space; 如权利要求1至4中的任一项所述的静电吸附装置,设置于所述容置空间中,与所述低电压组相比较,所述静电吸附装置的所述高电压组更靠近所述入风口;The electrostatic adsorption device according to any one of claims 1 to 4, disposed in the accommodating space, and the high voltage group of the electrostatic adsorption device is closer to the low voltage group than the low voltage group the air inlet; 一紫外灯,设置于所述容置空间中,与所述高电压组相比较,所述低电压组更靠近所述紫外灯;以及an ultraviolet lamp disposed in the accommodating space, and the low voltage group is closer to the ultraviolet lamp than the high voltage group; and 一第一滤网,第一滤网设置于所述容置空间中且位于所述出风口与所述静电吸附装置之间。a first filter screen, the first filter screen is disposed in the accommodating space and located between the air outlet and the electrostatic adsorption device. 6.如权利要求5所述的空气清净机,其特征在于,包含一挡板,所述挡板设置于所述容置空间中,且将所述容置空间分隔成彼此连通的一第一空间及一第二空间,所述静电吸附装置位于所述第一空间,所述第一滤网设置于所述第二空间,所述挡板与所述壳体共同形成一开口,与所述高电压组相比较,所述低电压组更靠近所述开口。6. The air purifier according to claim 5, characterized in that it comprises a baffle plate, the baffle plate is arranged in the accommodating space, and divides the accommodating space into a first one communicating with each other. space and a second space, the electrostatic adsorption device is located in the first space, the first filter screen is arranged in the second space, the baffle plate and the housing together form an opening, which is connected with the The low voltage group is closer to the opening than the high voltage group. 7.如权利要求6所述的空气清净机,其特征在于,包含一第二滤网,设置于所述容置空间的所述第二空间内,所述第二滤网具有活性碳的成分;所述第一滤网具有银离子的成分。7. The air purifier according to claim 6, characterized in that it comprises a second filter screen disposed in the second space of the accommodating space, and the second filter screen has a component of activated carbon ; The first filter screen has the composition of silver ions. 8.如权利要求6所述的空气清净机,其特征在于,包含一风机,设置于所述容置空间的所述第二空间内且靠近所述出风口,所述风机系用于抽吸所述容置空间内的空气,以使所述空气清净机外的空气由所述入风口进入所述容置空间,且由所述出风口排出所述空气清净机。8. The air purifier according to claim 6, characterized in that it comprises a fan disposed in the second space of the accommodating space and close to the air outlet, and the fan is used for suction the air in the accommodating space, so that the air outside the air purifier enters the accommodating space through the air inlet, and is discharged from the air purifier through the air outlet. 9.如权利要求5所述的空气清净机,其特征在于,所述入风口开设于所述壳体的侧面之下侧,所述出风口开设于所述壳体的顶面。9 . The air purifier according to claim 5 , wherein the air inlet is opened on the lower side of the side surface of the casing, and the air outlet is opened on the top surface of the casing. 10 . 10.如权利要求6所述的空气清净机,其特征在于,包含一第三滤网设置于所述容置空间的所述第一空间内且靠近所述入风口,所述第三滤网的过滤孔径大于所述第一滤网的过滤孔径。10 . The air purifier according to claim 6 , wherein a third filter screen is disposed in the first space of the accommodating space and close to the air inlet, and the third filter screen is provided. 11 . The filtration pore size is larger than the filtration pore size of the first filter screen.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113465082A (en) * 2020-03-31 2021-10-01 徐逸 Electrostatic adsorption device and air cleaner comprising same

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113465082A (en) * 2020-03-31 2021-10-01 徐逸 Electrostatic adsorption device and air cleaner comprising same

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