CN204638358U - Anion air purifying system - Google Patents

Anion air purifying system Download PDF

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Publication number
CN204638358U
CN204638358U CN201520125047.0U CN201520125047U CN204638358U CN 204638358 U CN204638358 U CN 204638358U CN 201520125047 U CN201520125047 U CN 201520125047U CN 204638358 U CN204638358 U CN 204638358U
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carbon fiber
discharge head
stainless steel
head group
centrifugal fan
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CN201520125047.0U
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Chinese (zh)
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徐军伟
宋述家
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Qingdao Haier Technology Co Ltd
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Qingdao Haier Technology Co Ltd
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Abstract

The utility model proposes a kind of anion air purifying system.It comprises: housing, comprises container cavity; Centrifugal fan, is arranged in container cavity; Carbon fiber discharge head assembly, comprise the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group, the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group are relatively arranged at the periphery of centrifugal fan; Stainless steel control of dust chip module, comprise the first stainless steel control of dust sheet and the second stainless steel control of dust sheet that are configured to tabular respectively, first stainless steel control of dust sheet is arranged at the outside of the first carbon fiber electric discharge head group, second stainless steel control of dust sheet is arranged at the outside of the second carbon fiber electric discharge head group, and stainless steel control of dust chip module ground connection; Anion generator, two output is electrically connected at the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group respectively.Adopting anion air purifying system can obtain higher negative ion concentration when reducing side effect, improving the serviceability of anion air purifying system.

Description

Anion air purifying system
Technical field
The utility model relates to technical field of air purification, particularly relates to a kind of anion air purifying system.
Background technology
At present, conventional negative ion air-cleaner cannot produce higher negative ion concentration, if need to produce higher negative ion concentration, then there will be the side effect that ozone is too high and electrostatic is excessive.Because, conventional negative ion air-cleaner generally adopts the principle of metal tip electric discharge or carbon fiber point discharge, but, metal tip discharge electrode adopts the mode of shielding to avoid the generation of electrostatic, the ozone of easy generation higher concentration, the dangerous concentrations reached in GB even if ozone concentration is far from, but the user of a part of sense of smell sensitivity can be allowed to produce detest, discomfort can be brought to user, even endanger the healthy of user.Carbon fiber point discharge easily causes too high air electrostatic and electromagnetic interference, thus the electronic equipment of electromagnetic interference air purifier periphery, brings adverse influence to the healthy of user.Therefore, in order to reduce the adverse effect of these side effects as much as possible, the negative ion concentration that current negative ion air-cleaner produces is not high enough, usually at 3,000,000 PCS/CM 3-500 ten thousand PCS/CM 3.Therefore, need a kind of anion air purifying system, to solve the above-mentioned technical problem existed in prior art.
Utility model content
The utility model provides a kind of anion air purifying system.Adopting described anion air purifying system can obtain higher negative ion concentration when reducing side effect, improving the serviceability of anion air purifying system.
The technical solution adopted in the utility model is:
A kind of anion air purifying system, it comprises: housing, comprises the container cavity being provided with air inlet and gas outlet; Centrifugal fan, is arranged in described container cavity, and the suction inlet of described centrifugal fan is near described air inlet, and the gas outlet of described centrifugal fan is near described exhaust outlet; Carbon fiber discharge head assembly, comprise the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group, described first carbon fiber electric discharge head group and described second carbon fiber discharge head group comprise multiple carbon fiber discharge heads of series connection respectively, and described first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group are relatively arranged at the periphery of described centrifugal fan; Stainless steel control of dust chip module, comprise the first stainless steel control of dust sheet and the second stainless steel control of dust sheet that are configured to tabular respectively, described first stainless steel control of dust sheet is arranged at the outside of described first carbon fiber electric discharge head group, and described second stainless steel control of dust sheet is arranged at the outside of described second carbon fiber electric discharge head group; Anion generator, two outputs of described anion generator are electrically connected at described first carbon fiber electric discharge head group and described second carbon fiber electric discharge head group respectively.
Preferably, described first stainless steel control of dust sheet is electrically connected at described second stainless steel control of dust sheet, and described stainless steel control of dust chip module is electrically connected at the earth terminal of described anion generator.
Preferably, described housing comprises upper shell and lower house, described upper shell and described lower house fasten, to form described container cavity, wherein, described centrifugal fan to be arranged on described lower house and the suction inlet of described centrifugal fan towards the bottom of described lower house, the dividing plate extended internally from the periphery of described upper shell is provided with in described upper shell, so that described container cavity is divided into upper chamber and lower chamber accordingly, and described dividing plate is snapped on the casing of described centrifugal fan, described air inlet is arranged on described lower house and fluid is communicated in the suction inlet of described centrifugal fan, described exhaust outlet is arranged on described upper shell and fluid is communicated in the gas outlet of described centrifugal fan.
Preferably, described lower house comprises smooth installation bottom surface, and described centrifugal fan and described anion generator are arranged on described installation bottom surface, and described centrifugal fan is arranged at the center of described installation bottom surface.
Preferably, described carbon fiber discharge head assembly and described stainless steel control of dust chip module are all arranged in described lower chamber, the head of the carbon fiber discharge head in wherein said carbon fiber discharge head assembly deviates from described centrifugal fan, and a surface of described first stainless steel control of dust sheet and a surface of described second stainless steel control of dust sheet are respectively towards described carbon fiber discharge head.
Preferably, described first carbon fiber electric discharge head group and described second carbon fiber discharge head group comprise 5 carbon fiber discharge heads of series connection respectively.
Preferably, 5 carbon fiber discharge heads in described first carbon fiber electric discharge head group and 5 carbon fiber discharge heads in described second carbon fiber electric discharge head group are symmetrical arranged relative to described centrifugal fan.
Preferably, described carbon fiber discharge head is 24K carbon brush head.
Preferably, the power supply of described anion generator is direct current 12V, and the pulse voltage that described anion generator is formed is not less than 10KV.
Preferably, the rotating speed of described centrifugal fan is not less than 3500RPM.
The term " outward " used in the utility model and " interior " refer to for centrifugal fan, and wherein in the position of described centrifugal fan is, the position away from described centrifugal fan is outward.In addition, a surface of the stainless steel control of dust sheet described in the utility model refers to one in the surface that the area of the stainless steel control of dust sheet of tabular is larger.
Adopt technique scheme, the utility model at least has following advantages: adopt high-power anion generator and 10 carbon fiber discharge head left and right Parallel Symmetrics to place in the utility model, simultaneously to atmospherical discharges, significantly improve the superelevation negative ion concentration that prior art is difficult to reach.Adopt stainless steel integration slice grounding connection, significantly reduce electrostatic influence and electromagnetic interference.10 carbon fiber discharge heads also significantly reduce ozone concentration in the mode of dividing potential drop.Described anion generator, carbon fiber discharge head and stainless steel control of dust sheet form negative ion generating device and can break through power limit in traditional design, 3,000 ten thousand PCS/CM that negative ion concentration can reach under the prerequisite on user health and the harmless impact of environment for use 3.
Accompanying drawing explanation
Fig. 1 is the top view of the anion air purifying system of a preferred embodiment of the present utility model;
Fig. 2 is the schematic diagram of the system of anion air purifying shown in Fig. 1;
Fig. 3 is the circuit connecting relation figure of the system of anion air purifying shown in Fig. 1.
Wherein, 1-upper shell; 2-dividing plate; 3-carbon fiber discharge head assembly; 4-stainless steel integration slice assembly; 5-lower house; 6-anion generator; 7-centrifugal fan; 8-anion.
Detailed description of the invention
For further setting forth the utility model for the technological means reaching predetermined object and take and effect, below in conjunction with accompanying drawing and preferred embodiment, the utility model is described in detail as rear.
The anion air purifying system that the utility model provides comprises housing, centrifugal fan 7, carbon fiber discharge head assembly 3, stainless steel control of dust chip module 4 and anion generator 6.Anion air purifying system of the present utility model and various piece thereof will be described in detail belows.
Housing comprises the container cavity being provided with air inlet and exhaust outlet.Wherein two ports of air inlet and exhaust outlet just relative appellation like this, object is centrifugal fan 7 when working, and gas is convenient to pass in and out container cavity.In addition, housing can be form as one, and consider the convenience that enclosure interior device is installed, housing is partial installation preferably, will illustrate below with regard to partial installation.
Centrifugal fan 7 is arranged in container cavity, and the suction inlet of centrifugal fan 7 is near air inlet, and the gas outlet of centrifugal fan 7 is near exhaust outlet.Selecting of centrifugal fan 7 can be: the rotating speed of centrifugal fan 7 is not less than 3500RPM.
Carbon fiber discharge head assembly comprises the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group, first carbon fiber electric discharge head group and the second carbon fiber discharge head group comprise multiple carbon fiber discharge heads of series connection respectively, and the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group are relatively arranged at the periphery of centrifugal fan 7.Carbon fiber discharge head is the external discharge equipment becoming hairbrush shape structure with carbon fiber bundle, and the carbon brush head of can be such as purity be 24K, improves the discharge effect of carbon fiber discharge head thus.
Stainless steel control of dust chip module 4 comprises the first stainless steel control of dust sheet and the second stainless steel control of dust sheet that are configured to tabular, described first stainless steel control of dust sheet is arranged at the outside of described first carbon fiber electric discharge head group, described second stainless steel control of dust sheet is arranged at the outside of described second carbon fiber electric discharge head group, and stainless steel control of dust chip module 4 ground connection.Stainless steel control of dust chip module ground connection can significantly reduce ozone concentration and electrostatic, guarantees anion air purifying security of system thus, reliably works.
Two outputs of anion generator 6 are electrically connected at the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group respectively.Thus generation high-tension electricity is left the theatre around the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group, such as, form the pulse voltage being not less than 10KV after anion generator 6 accesses 12V dc source, thus, carbon fiber discharge head assembly 3 discharges to stainless steel control of dust chip module every sky.Anion generator 6 can for producing the direct current pulse power source being not less than 10KV voltage.
First stainless steel control of dust sheet and the second stainless steel control of dust sheet can distinguish ground connection, as preferably, as shown in Figure 3, the first stainless steel control of dust sheet is electrically connected at the second stainless steel control of dust sheet, and stainless steel control of dust chip module 4 is electrically connected at the earth terminal of anion generator 6.Thus when ensureing good discharge effect, simplify the circuit connection structure of product.
Preferably, as shown in figures 1 and 3, the first carbon fiber electric discharge head group and the second carbon fiber discharge head group comprise 5 carbon fiber discharge heads of series connection respectively.The quantity of carbon fiber discharge head can be 1 or multiple, and consider product cost and dividing potential drop effect, often group comprises the carbon fiber discharge heads of 5 series connection, thus effectively can reduce the magnitude of voltage that single carbon fiber discharge head carries.Further, 5 carbon fiber discharge heads in the first carbon fiber electric discharge head group and 5 carbon fiber discharge heads in the second carbon fiber electric discharge head group are symmetrical arranged relative to centrifugal fan 7.As can be seen from the figure, the carbon fiber discharge head often in group is symmetrical relative to centrifugal fan 7.Thus, 10 carbon fiber discharge heads discharge to stainless steel control of dust chip module every sky, thus the anion of high concentration can be produced, as discharged anion 8 from the both sides of the outside of the first stainless steel control of dust sheet and the second stainless steel control of dust sheet in Fig. 3, through experimental test, the negative ion concentration that the first carbon fiber electric discharge head group or the second carbon fiber electric discharge head group obtain after discharging is not less than 3,000 ten thousand PCS/CM 3.
As a preferred embodiment of the present utility model, shown in Fig. 1 and Fig. 2, housing comprises upper shell 1 and lower house 5, upper shell 1 and lower house 5 fasten, to form container cavity, wherein, centrifugal fan 7 to be arranged on lower house 5 and the suction inlet of centrifugal fan 7 towards the bottom of lower house 5, the dividing plate 2 extended internally from the periphery of upper shell 1 is provided with in upper shell 1, container cavity is divided into upper chamber and lower chamber by dividing plate 2 accordingly thus, and dividing plate 2 is buckled on the casing of centrifugal fan 7, air inlet is arranged on lower house 5 and fluid is communicated in the suction inlet of centrifugal fan 7, exhaust outlet is arranged on upper shell 1 and fluid is communicated in the gas outlet of centrifugal fan 7.
As preferably, shown in Figure 2, lower house 5 comprises smooth installation bottom surface, and centrifugal fan 7 and anion generator 6 are arranged to be installed on bottom surface, the stationarity under keeping anion air purifying system in running order thus.Further, centrifugal fan 7 is arranged on the center (shown in Fig. 1 and Fig. 2) of installing bottom surface, and the moment that housing makes centrifugal fan 7 produce in the course of the work is thus balanced preferably.
As shown in Figure 2, as preferred embodiment, carbon fiber discharge head assembly 3 and stainless steel control of dust chip module 4 are all arranged in lower chamber, the head of the carbon fiber discharge head wherein in carbon fiber discharge head assembly deviates from centrifugal fan 7, and a surface of the first stainless steel control of dust sheet and a surface of the second stainless steel control of dust sheet are respectively towards carbon fiber discharge head.Carbon fiber discharge head is in during Pulse Electric has a meeting, an audience, etc. well under one's control thus, carbon fiber discharge head high-voltage air ionizing, floating dust is punched on stainless steel control of dust chip module 4 after carrying anion, because a surface of the first stainless steel control of dust sheet and a surface of the second stainless steel control of dust sheet are respectively towards carbon fiber discharge head, thus the floating dust carrying anion be in a large number attached on stainless steel control of dust chip module 4 is broken up, anion 8 is released thus.
The workflow of large volume description once anion air purifying system of the present utility model below.
First, check the shape of carbon fiber discharge head and stainless steel control of dust sheet and structure whether intact, whether circuit between all parts connects reliable.Then, after connecting the DC power supply of anion generator, after input voltage is boosted to scheduled voltage such as 10KV by anion transmitter, carry out discharging every sky to stainless steel control of dust chip module by carbon fiber discharge head in the form of a pulse, the electromagnetic interference that electric discharge produces, air electrostatic will carry out ground connection by stainless steel control of dust sheet along earth connection, externally can not discharge, improve the security of anion air purifying system.
By the explanation of detailed description of the invention, should to the utility model for the technological means reaching predetermined object and take and effect be able to more deeply and concrete understanding, but appended diagram is only to provide with reference to the use with explanation, is not used for being limited the utility model.

Claims (10)

1. an anion air purifying system, is characterized in that, comprising:
Housing, comprises the container cavity being provided with air inlet and exhaust outlet;
Centrifugal fan, is arranged in described container cavity, and the suction inlet of described centrifugal fan is near described air inlet, and the gas outlet of described centrifugal fan is near described exhaust outlet;
Carbon fiber discharge head assembly, comprise the first carbon fiber electric discharge head group and the second carbon fiber electric discharge head group, described first carbon fiber electric discharge head group and described second carbon fiber discharge head group comprise multiple carbon fiber discharge heads of series connection respectively, and described first carbon fiber electric discharge head group and described second carbon fiber electric discharge head group are relatively arranged at the periphery of described centrifugal fan;
Stainless steel control of dust chip module, comprise the first stainless steel control of dust sheet and the second stainless steel control of dust sheet that are configured to tabular respectively, described first stainless steel control of dust sheet is arranged at the outside of described first carbon fiber electric discharge head group, described second stainless steel control of dust sheet is arranged at the outside of described second carbon fiber electric discharge head group, and described stainless steel control of dust chip module ground connection;
Anion generator, two outputs of described anion generator are electrically connected at described first carbon fiber electric discharge head group and described second carbon fiber electric discharge head group respectively.
2. anion air purifying system according to claim 1, it is characterized in that, described first stainless steel control of dust sheet is electrically connected at described second stainless steel control of dust sheet, and described stainless steel control of dust chip module is electrically connected at the earth terminal of described anion generator.
3. anion air purifying system according to claim 1 and 2, it is characterized in that, described housing comprises upper shell and lower house, described upper shell and described lower house fasten, to form described container cavity, wherein, described centrifugal fan to be arranged on described lower house and the suction inlet of described centrifugal fan towards the bottom of described lower house, the dividing plate extended internally from the periphery of described upper shell is provided with in described upper shell, so that described container cavity is divided into upper chamber and lower chamber accordingly, and described dividing plate is snapped on the casing of described centrifugal fan, described air inlet is arranged on described lower house and fluid is communicated in the suction inlet of described centrifugal fan, described exhaust outlet is arranged on described upper shell and fluid is communicated in the gas outlet of described centrifugal fan.
4. anion air purifying system according to claim 3, it is characterized in that, described lower house comprises smooth installation bottom surface, and described centrifugal fan and described anion generator are arranged on described installation bottom surface, and described centrifugal fan is arranged at the center of described installation bottom surface.
5. anion air purifying system according to claim 3, it is characterized in that, described carbon fiber discharge head assembly and described stainless steel control of dust chip module are all arranged in described lower chamber, the head of the carbon fiber discharge head in wherein said carbon fiber discharge head assembly deviates from described centrifugal fan, and a surface of described first stainless steel control of dust sheet and a surface of described second stainless steel control of dust sheet are respectively towards described carbon fiber discharge head.
6. anion air purifying system according to claim 1, is characterized in that, described first carbon fiber electric discharge head group and described second carbon fiber discharge head group comprise 5 carbon fiber discharge heads of series connection respectively.
7. anion air purifying system according to claim 6, it is characterized in that, 5 carbon fiber discharge heads that 5 carbon fiber discharge heads in described first carbon fiber electric discharge head group and described second carbon fiber discharge in head group are symmetrical arranged relative to described centrifugal fan.
8. anion air purifying system according to claim 1, is characterized in that, described carbon fiber discharge head is 24K carbon brush head.
9. anion air purifying system according to claim 1, is characterized in that, the power supply of described anion generator is direct current 12V, and the pulse voltage that described anion generator is formed is not less than 10KV.
10. anion air purifying system according to claim 1, is characterized in that, the rotating speed of described centrifugal fan is not less than 3500RPM.
CN201520125047.0U 2015-03-04 2015-03-04 Anion air purifying system Active CN204638358U (en)

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Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106765661A (en) * 2017-02-22 2017-05-31 国际竹藤中心 A kind of round bamboo negative ion air cleaner and preparation method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106765661A (en) * 2017-02-22 2017-05-31 国际竹藤中心 A kind of round bamboo negative ion air cleaner and preparation method thereof

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