CN204786764U - Can effectively utilize static air -purifying's device - Google Patents

Can effectively utilize static air -purifying's device Download PDF

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Publication number
CN204786764U
CN204786764U CN201520339482.3U CN201520339482U CN204786764U CN 204786764 U CN204786764 U CN 204786764U CN 201520339482 U CN201520339482 U CN 201520339482U CN 204786764 U CN204786764 U CN 204786764U
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China
Prior art keywords
block
air
fixedly connected
framework
screen pack
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Expired - Fee Related
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CN201520339482.3U
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Chinese (zh)
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王杨
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Individual
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Individual
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Abstract

The utility model provides a can effectively utilize static air -purifying's device, the on -line screen storage device comprises a base, air outlet means, the framework, air inlet unit, the rotary devic, filter equipment and static board, air inlet unit includes the intake pipe, the fan, the fixed block, the supporting shoe, dead lever and first filter screen, rotary device includes swiveling wheel and lug, filter equipment includes the body, the filter, the bracing piece, the rectangle piece, second filter screen and support column, air outlet means includes outlet duct and third filter screen, the outlet duct is concave shape, the second filter screen is aimed at to the one end of outlet duct, the other end of outlet duct is vertical upwards, the side of third filter screen and the side fixed connection of framework, the lower surface of third filter screen and the last surface contact of outlet duct. The utility model discloses the impurity that can utilize static principle great majority in with the air purifies to purification efficiency is high, can realize quick purification, makes exhaust air be fit for human the breathing.

Description

A kind of device that effectively can utilize electrostatic depuration air
Technical field
The utility model relates to environmental technology field, particularly relates to a kind of device that effectively can utilize electrostatic depuration air.
Background technology
Existing air purifier adopts the mode of electrostatic mostly, and impurity absorption most in air can be fallen by electrostatic, and preventing it from flying away affects air quality in atmosphere, and then affects surrounding environment.But existing electrostatic air cleaner complex structure, complex operation, can not meet primary demand, simultaneously more dangerous, and purification efficiency is low, and clean-up effect is poor, effectively cannot purge the impurity in air.
Therefore, need to provide a kind of new technical scheme to solve the problems of the technologies described above.
Utility model content
The purpose of this utility model is to provide a kind of device that effectively can utilize electrostatic depuration air that can effectively solve the problems of the technologies described above.
In order to solve the problems of the technologies described above, the utility model adopts following technical scheme:
A kind of device that effectively can utilize electrostatic depuration air, the described device of electrostatic depuration air that can effectively utilize comprises base, be positioned at the air-out apparatus above described base, be positioned at the framework above described air-out apparatus, be positioned at the inlet duct above described framework, be positioned at the whirligig of described framework inside, be positioned at the filter below described whirligig and be positioned at the static board of the described filter left and right sides, described inlet duct comprises air inlet pipe, be arranged at the blower fan in described air inlet pipe, be positioned at the fixed block of the described air inlet pipe left and right sides, be positioned at the back-up block below described fixed block, fixed bar below described back-up block and the first screen pack between described back-up block, described whirligig comprises the swiveling wheel being positioned at the left and right sides and the projection be arranged on described swiveling wheel, described filter comprises body, be positioned at the filter above described body, be positioned at the support bar below described body, be positioned at the rectangular block below described support bar, the second screen pack being positioned at the described rectangular block left and right sides and the support column be positioned at below described rectangular block, described air-out apparatus comprises escape pipe and is positioned at the 3rd screen pack above described escape pipe, described escape pipe is concave character type, described second screen pack is aimed in one end of described escape pipe, the other end of described escape pipe straight up, the side of described 3rd screen pack is fixedly connected with the side of described framework, the lower surface of described 3rd screen pack contacts with the upper surface of described escape pipe.
One side of described fixed bar is fixedly connected with the inner surface of described framework, and the another side of described fixed bar is skewed.
The left and right side of described back-up block is skewed, and the side of described back-up block and the contacts side surfaces of described fixed bar, described back-up block is provided with the first through hole running through its upper and lower surface.
Described first screen pack is cylindrical shape, and described first screen pack to be contained in described first through hole and to be fixedly connected with described back-up block, the first through hole described in the lower end aligned of described air inlet pipe and being fixedly connected with the upper surface of described back-up block.
Described static board is provided with two and lays respectively at the left and right sides, and described static board is cuboid, and the side of described static board is fixedly connected with the inner surface of described framework.
The below of described static board is provided with contiguous block, and described contiguous block is triangular in shape, and the upper surface of described contiguous block is fixedly connected with the lower surface of described static board, and a side of described contiguous block is fixedly connected with the inner surface of described framework.
Described body comprises upper end and bottom, and the left and right sides of described upper end is curved, and described upper-end part of driving is immediately below described whirligig, and described bottom is cuboid.
Described filter is provided with two and lays respectively at the left and right sides, and the lower end of described filter is fixedly connected with described body.
After adopting technique scheme, the utility model tool has the following advantages:
The utility model can effectively utilize the apparatus structure of electrostatic depuration air simple, easy to use, electrostatic principle can be utilized to be purged by impurity most in air, and purification efficiency is high, can fast purification be realized, make the air of discharging be applicable to human breathing.
Accompanying drawing explanation
The detailed description of the invention of the device of electrostatic depuration air can be effectively utilized to be described further below in conjunction with accompanying drawing to the utility model:
Fig. 1 is the structural representation that the utility model effectively can utilize the device of electrostatic depuration air;
Detailed description of the invention
As shown in Figure 1, the utility model effectively can utilize the device of electrostatic depuration air to comprise base 1, be positioned at air-out apparatus 2 above described framework 1, is positioned at framework 3 above described air-out apparatus 2, is positioned at inlet duct 4 above described framework 3, is positioned at the whirligig 5 of described framework 3 inside, is positioned at the filter 6 below described whirligig 5 and is positioned at the static board 7 of described filter 6 left and right sides.
As shown in Figure 1, described base 1 is cuboid, described base 1 horizontal positioned.Described framework 3 is in hollow cuboid, and described framework 3 is vertically placed.
As shown in Figure 1, described inlet duct 4 comprise air inlet pipe 41, the blower fan 42 be arranged in described air inlet pipe 41, at the fixed block 43 of described air inlet pipe 41 left and right sides, back-up block 44, the fixed bar 45 below described back-up block 44 and the first screen pack between described back-up block 44 below described fixed block 43.Described fixed bar 45 is provided with two and lays respectively at the left and right sides, and a side of described fixed bar 45 is fixedly connected with the inner surface of described framework 3, and the another side of described fixed bar 45 is skewed.The left and right side of described back-up block 44 is skewed, the side of described back-up block 44 and the contacts side surfaces of described fixed bar 45, because the side of described fixed bar 45 is skewed, described back-up block 44 can not be moved down, described back-up block 44 contacts with the inner surface of described framework 3, and the upper surface of described back-up block 44 and the upper surface of described framework 3 are in same level.Described back-up block 44 is provided with the first through hole running through its upper and lower surface, and described first through hole is cylindrical shape.Described first screen pack is cylindrical shape, and described first screen pack to be contained in described first through hole and to be fixedly connected with described back-up block 44.First through hole described in the lower end aligned of described air inlet pipe 41 and being fixedly connected with the upper surface of described back-up block 44.Described blower fan 42 is arranged in described air inlet pipe 41, for by the air intake in the external world in described air inlet pipe 41.The lower surface of described fixed block 43 is fixedly connected with the upper surface of described back-up block 44, and a side of described fixed block 43 is fixedly connected with described air inlet pipe 41.
As shown in Figure 1, described whirligig 5 is positioned at immediately below described air inlet pipe 41, and described whirligig 5 comprises the swiveling wheel 51 being positioned at the left and right sides and the projection 52 be arranged on described swiveling wheel 51.Described swiveling wheel 51 is cylinder, described swiveling wheel 51 horizontal positioned.Described projection 52 semicircular in shape, described projection 52 is fixedly connected with the surface of described swiveling wheel 51.
As shown in Figure 1, described static board 7 is provided with two and lays respectively at the left and right sides, described static board 7 is in cuboid, the side of described static board 7 is fixedly connected with the inner surface of described framework 3, described static board 7 is positioned at the left and right sides of described whirligig 5, the below of described static board 7 is provided with contiguous block 71, described contiguous block 71 is triangular in shape, the upper surface of described contiguous block 71 is fixedly connected with the lower surface of described static board 7, one side of described contiguous block 71 is fixedly connected with the inner surface of described framework 3, and another surface of described contiguous block 71 is in skewed.
As shown in Figure 1, described filter 6 comprises body 61, is positioned at filter 62 above described body 61, is positioned at support bar 63 below described body 61, is positioned at the rectangular block 64 below described support bar 63, the second screen pack 65 being positioned at described rectangular block 64 left and right sides and the support column 66 be positioned at below described rectangular block 64.Described body 61 comprises upper end and bottom, described upper end and described bottom one-body molded, the left and right sides of described upper end is curved, and described upper-end part of driving is immediately below described whirligig 5, and described bottom is cuboid.Described filter 62 is provided with two and lays respectively at the left and right sides, and the lower end of described filter 62 is fixedly connected with described body 61.Described support bar 63 is provided with two and lays respectively at the left and right sides, and the upper surface of described support bar 63 is fixedly connected with the lower surface of described body 61, and the lower surface of described support bar 63 is fixedly connected with the upper surface of described rectangular block 64.Described rectangular block 64 is cuboid, described rectangular block 64 horizontal positioned.Described second screen pack 65 is provided with two and lays respectively at the left and right sides, and the side of described second screen pack 65 is fixedly connected with the side of described rectangular block 64 and the inner surface of framework 3 respectively.Described support column 66 is in cuboid, and the lower surface of described support column 66 is fixedly connected with the upper surface of described base 1, and the upper surface of described support column 66 is fixedly connected with the lower surface of described rectangular block 64.
As shown in Figure 1, described air-out apparatus 2 is provided with two and lays respectively at the left and right sides, and described air-out apparatus 2 comprises escape pipe 21 and is positioned at the 3rd screen pack 22 above described escape pipe 21.Described escape pipe 21 is in concave character type, and one end of described escape pipe 21 is aimed at described second screen pack 65 and is fixedly connected with the lower surface of described framework 3 and the lower surface of rectangular opening 64, and the other end of described escape pipe 21 straight up.Described 3rd screen pack 22 is provided with two and lays respectively at the left and right sides, the side of described 3rd screen pack 22 is fixedly connected with the side of described framework 3, the lower surface of described 3rd screen pack 22 contacts with the upper surface of described escape pipe 21, thus the air flowed out from described escape pipe 21 is through the filtration of described 3rd screen pack 22.
As shown in Figure 1, when described the utility model can effectively utilize the device of electrostatic depuration air to use, first waste gas is drawn into the inside of framework 3 by blower fan 42 by air inlet pipe 41, first through the filtration of the first screen pack, then static board 7 is started, make swiveling wheel 51 start to rotate simultaneously, the swiveling wheel 51 being now positioned at left side is rotated counterclockwise, the swiveling wheel being positioned at right side turns clockwise, under the effect of projection 52, solid particle from the gas that recent pipe 41 sprays into is by both sides of transferring, be adsorbed onto under the effect of static board 7 on static board 7, the solid particle of both sides do not transferred drops on body 61, and do not have filter 62 to filter out.Then ventilate and enter on escape pipe 21 after the filtration of the second screen pack 65, then discharge after the filtration of the 3rd screen pack 22.So far, the utility model can effectively utilize the device use procedure of electrostatic depuration air to describe.
The above; be only detailed description of the invention of the present utility model, but protection domain of the present utility model is not limited thereto, any those skilled in the art are in the technical scope that the present invention discloses; change can be expected easily or replace, all should be encompassed within protection domain of the present utility model.Therefore, protection domain of the present utility model should be as the criterion with the protection domain of described claim.

Claims (8)

1. one kind effectively can utilize the device of electrostatic depuration air, it is characterized in that: the described device of electrostatic depuration air that can effectively utilize comprises base, be positioned at the air-out apparatus above described base, be positioned at the framework above described air-out apparatus, be positioned at the inlet duct above described framework, be positioned at the whirligig of described framework inside, be positioned at the filter below described whirligig and be positioned at the static board of the described filter left and right sides, described inlet duct comprises air inlet pipe, be arranged at the blower fan in described air inlet pipe, be positioned at the fixed block of the described air inlet pipe left and right sides, be positioned at the back-up block below described fixed block, fixed bar below described back-up block and the first screen pack between described back-up block, described whirligig comprises the swiveling wheel being positioned at the left and right sides and the projection be arranged on described swiveling wheel, described filter comprises body, be positioned at the filter above described body, be positioned at the support bar below described body, be positioned at the rectangular block below described support bar, the second screen pack being positioned at the described rectangular block left and right sides and the support column be positioned at below described rectangular block, described air-out apparatus comprises escape pipe and is positioned at the 3rd screen pack above described escape pipe, described escape pipe is concave character type, described second screen pack is aimed in one end of described escape pipe, the other end of described escape pipe straight up, the side of described 3rd screen pack is fixedly connected with the side of described framework, the lower surface of described 3rd screen pack contacts with the upper surface of described escape pipe.
2. the device that effectively can utilize electrostatic depuration air according to claim 1, it is characterized in that: a side of described fixed bar is fixedly connected with the inner surface of described framework, the another side of described fixed bar is skewed.
3. the device that effectively can utilize electrostatic depuration air according to claim 2, it is characterized in that: the left and right side of described back-up block is skewed, the side of described back-up block and the contacts side surfaces of described fixed bar, described back-up block is provided with the first through hole running through its upper and lower surface.
4. the device that effectively can utilize electrostatic depuration air according to claim 3, it is characterized in that: described first screen pack is cylindrical shape, described first screen pack to be contained in described first through hole and to be fixedly connected with described back-up block, the first through hole described in the lower end aligned of described air inlet pipe and being fixedly connected with the upper surface of described back-up block.
5. the device that effectively can utilize electrostatic depuration air according to claim 4, it is characterized in that: described static board is provided with two and lays respectively at the left and right sides, described static board is cuboid, and the side of described static board is fixedly connected with the inner surface of described framework.
6. the device that effectively can utilize electrostatic depuration air according to claim 5, it is characterized in that: the below of described static board is provided with contiguous block, described contiguous block is triangular in shape, the upper surface of described contiguous block is fixedly connected with the lower surface of described static board, and a side of described contiguous block is fixedly connected with the inner surface of described framework.
7. the device that effectively can utilize electrostatic depuration air according to claim 6, it is characterized in that: described body comprises upper end and bottom, the left and right sides of described upper end is curved, and described upper-end part of driving is immediately below described whirligig, and described bottom is cuboid.
8. the device that effectively can utilize electrostatic depuration air according to claim 7, is characterized in that: described filter is provided with two and lays respectively at the left and right sides, and the lower end of described filter is fixedly connected with described body.
CN201520339482.3U 2015-05-23 2015-05-23 Can effectively utilize static air -purifying's device Expired - Fee Related CN204786764U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520339482.3U CN204786764U (en) 2015-05-23 2015-05-23 Can effectively utilize static air -purifying's device

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Application Number Priority Date Filing Date Title
CN201520339482.3U CN204786764U (en) 2015-05-23 2015-05-23 Can effectively utilize static air -purifying's device

Publications (1)

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CN204786764U true CN204786764U (en) 2015-11-18

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104832995A (en) * 2015-05-23 2015-08-12 王杨 Device capable of effectively utilizing static electricity to purify air

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104832995A (en) * 2015-05-23 2015-08-12 王杨 Device capable of effectively utilizing static electricity to purify air
CN104832995B (en) * 2015-05-23 2017-12-05 刘梓桐 A kind of device that can effectively utilize electrostatic depuration air

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151118

Termination date: 20160523

CF01 Termination of patent right due to non-payment of annual fee