CN204153938U - The flow-guiding structure of ultra-thin wall-hanging air purifier - Google Patents

The flow-guiding structure of ultra-thin wall-hanging air purifier Download PDF

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Publication number
CN204153938U
CN204153938U CN201420462521.4U CN201420462521U CN204153938U CN 204153938 U CN204153938 U CN 204153938U CN 201420462521 U CN201420462521 U CN 201420462521U CN 204153938 U CN204153938 U CN 204153938U
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CN
China
Prior art keywords
deflector
blowing device
filtering assembly
air
intake
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
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CN201420462521.4U
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Chinese (zh)
Inventor
龚士杰
李家海
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SHANGHAI XISHAN ENVIRONMENTAL PROTECTION TECHNOLOGY Co Ltd
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SHANGHAI XISHAN ENVIRONMENTAL PROTECTION TECHNOLOGY Co Ltd
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Priority to CN201420462521.4U priority Critical patent/CN204153938U/en
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Abstract

The utility model discloses a kind of flow-guiding structure of ultra-thin wall-hanging air purifier, comprise the air inlet being arranged at housing at least side, be equipped with air filtering assembly in described air inlet, described air filtering assembly is flat; The below of described air filtering assembly is provided with intake and blowing device, described intake and blowing device is installed on the base plate of housing, it is characterized in that: between air filtering assembly and described intake and blowing device, be provided with deflector, described deflector is provided with pod apertures, and the inlet scoop of described pod apertures and described intake and blowing device matches.The utility model, by arranging deflector between air filtering assembly and intake and blowing device, improves purification efficiency and the effect of clarifier, also reduces energy consumption.

Description

The flow-guiding structure of ultra-thin wall-hanging air purifier
Technical field
The utility model relates to a kind of air purifier, particularly relates to a kind of flow-guiding structure of ultra-thin wall-hanging air purifier.
Background technology
Air purifier is also known as air cleaner, air cleaner, clarifier, refer to and can adsorb, decompose or transform various air pollutants (generally comprising the finishing pollution of PM2.5, dust, pollen, peculiar smell, formaldehyde and so on, bacterium, anaphylactogen etc.), the product of effective raising air cleanliness, to remove family expenses and the commercial air purifier of room air pollution.
In prior art, a kind of Dual-channel type purification of air computer all-in-one machine as disclosed in Chinese patent " CN 203689263U ", comprise computer assembly, be arranged at the suction wind assembly of frame-type casing upper end and be arranged at sterilization module and the filtration, purification assembly of frame-type Jack both sides, this suction wind assembly comprises the either-rotation motor motor and two cylinder type turbine air exhausting fans that are arranged at frame-type cabinet top, two cylinder type turbine air exhausting fans are installed on the both sides of either-rotation motor motor respectively, for air draught.As mentioned above, at least there is some deficiency following in said structure:
1, suction wind assembly is arranged at the top of casing, air filtering assembly is arranged at the both sides of casing, the intake and blowing device being positioned at cabinet top needs to enter clarifier through air filtering assembly from the air draught of casing both sides and purifies, the inlet scoop distance air inlet of intake and blowing device is distant, the arrangement in air channel is unreasonable, and under Same Efficieney, the negative pressure that inlet scoop produces is large not, make the efficiency of air draught not high, and energy consumption is high;
2, even if suction wind assembly is direct and air filtering assembly is fitted, also have problems, one is that the inlet scoop of intake and blowing device only has so large, air filtering assembly is generally greater than inlet scoop, therefore filter assemblies only has part to fit with inlet scoop, the negative pressure that the inlet scoop of such intake and blowing device produces is also not enough, make the efficiency of air draught not high, and air draught is uneven, air filtering assembly is caused to use also uneven, air filtering assembly near intake and blowing device inlet scoop place uses more, air filtering assembly away from intake and blowing device inlet scoop place uses less, when air filtering assembly is changed, in same air filtering assembly, part reaches the limit in service life, part does not reach the limit in service life, cause waste.
Summary of the invention
The utility model object is to provide a kind of flow-guiding structure of ultra-thin wall-hanging air purifier, by using this structure, improves the negative pressure at intake and blowing device inlet scoop place, improves purification efficiency and the effect of clarifier.
For achieving the above object, the technical solution adopted in the utility model is: a kind of flow-guiding structure of ultra-thin wall-hanging air purifier, comprise the air inlet being arranged at housing at least side, be equipped with air filtering assembly in described air inlet, described air filtering assembly is flat; The below of described air filtering assembly is provided with intake and blowing device, described intake and blowing device is installed on the base plate of housing, deflector is provided with between air filtering assembly and described intake and blowing device, described deflector is provided with pod apertures, and the inlet scoop of described pod apertures and described intake and blowing device matches.
In technique scheme, described housing comprises upper cover plate and lower cover, and the front of described deflector and the back side of described case top lid plate form suction channel, and the back side of described deflector and the base plate of described housing lower cover and inner walls form exhausting duct.
In technique scheme, described deflector is provided with the water conservancy diversion inclined-plane tilted gradually to described pod apertures place.
In technique scheme, the joint of described pod apertures and described intake and blowing device inlet scoop is provided with sealing ring.
In technique scheme, described sealing ring is rubber seal.
In technique scheme, the described housing left and right sides arranges air inlet, suction wind assembly described in every side is made up of at least one centrifugal blower, and on described deflector, corresponding described centrifugal blower place is provided with pod apertures, and the inlet scoop of described pod apertures and described centrifugal blower matches.
In technique scheme, described deflector size and described air filtering assembly size match.
Because technique scheme is used, the utility model compared with prior art has following advantages:
1. between air filtering assembly and described intake and blowing device, be provided with deflector in the utility model, described deflector is provided with pod apertures, the inlet scoop of described pod apertures and described intake and blowing device matches, by the setting of deflector, strengthen the negative pressure at intake and blowing device inlet scoop place, improve the air draught efficiency of intake and blowing device, reduce energy consumption;
2. by being provided with deflector between air filtering assembly and described intake and blowing device, and the back side of the front of deflector and described case top lid plate forms suction channel, the back side of described deflector and the base plate of described housing lower cover and inner walls form exhausting duct, suction channel and exhausting duct are separated by deflector, ensure that airfiltering efficiency and clean-up effect, also effectively reduce energy consumption;
3. between air filtering assembly and described intake and blowing device, be provided with deflector in the utility model, described deflector is provided with pod apertures, the inlet scoop of described pod apertures and described intake and blowing device matches, described deflector is provided with the water conservancy diversion inclined-plane tilted gradually to described pod apertures place, this deflector flare, size and the air filtering assembly of flaring deflector match, the horn mouth of deflector covers air filtering assembly, air is made to enter intake and blowing device by air filtering assembly through deflector, compared with structure in the past, air filtering assembly uses more even, service efficiency is higher, reduce use cost,
4. the utility model structure is simple, is easy to realize.
Accompanying drawing explanation
Fig. 1 is the structural representation of deflector in the utility model embodiment one;
Fig. 2 is the perspective view of deflector in the utility model embodiment one;
Fig. 3 is the structural representation of clarifier in the utility model embodiment one;
Fig. 4 is the side view of Fig. 3;
Fig. 5 is the internal structure schematic diagram I of clarifier in the utility model embodiment one;
Fig. 6 is the internal structure schematic diagram II of clarifier in the utility model embodiment one;
Fig. 7 is the internal structure schematic diagram III of clarifier in the utility model embodiment one.
Wherein: 1, air inlet; 2, air filtering assembly; 3, base plate; 4, deflector; 5, pod apertures; 6, inlet scoop; 7, upper cover plate; 8, lower cover; 9, centrifugal blower; 10, water conservancy diversion inclined-plane; 11, rubber seal; 12, exhaust outlet.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model is further described:
Embodiment one: shown in Fig. 1 ~ 7, a kind of flow-guiding structure of ultra-thin wall-hanging air purifier, comprises the air inlet 1 being arranged at housing both sides, is equipped with air filtering assembly 2 in air inlet 1 described in both sides, and described air filtering assembly 2 is flat; Described in every side, the below of air filtering assembly 2 is provided with intake and blowing device, described intake and blowing device is installed on the base plate 3 of housing, deflector 4 is provided with between air filtering assembly 2 and described intake and blowing device, described deflector 4 is provided with pod apertures 5, and described pod apertures 5 matches with the inlet scoop 6 of described intake and blowing device.
As shown in figure 3 to figure 7, described thickness of shell is not more than 9.5 centimetres, and thickness of shell gets 9.1 centimetres in the present embodiment.Described housing comprises upper cover plate 7 and lower cover 8, and the front of described deflector 4 and the back side of described case top lid plate 7 form suction channel, and the back side of described deflector 4 and the base plate 3 of described housing lower cover 8 and inner walls form exhausting duct.
In the present embodiment, suction wind assembly described in every side is made up of two centrifugal blowers 9, two centrifugal blowers 9 of every side misplace and arrange, on described deflector 4, corresponding described centrifugal blower 9 place is provided with two pod apertures 5, and described pod apertures 5 matches, as shown in Fig. 2,7 with the inlet scoop 6 of described centrifugal blower 9.
As shown in Figure 1, 2, described deflector 4 is provided with the water conservancy diversion inclined-plane 10 tilted gradually to described pod apertures 5 place, and the water conservancy diversion inclined-plane 10 at each pod apertures 5 place is 4, makes deflector 4 flare.Have the end face on 3 water conservancy diversion inclined-planes 10 to be connected with the outer edge surface of deflector 4 in 4 water conservancy diversion inclined-planes 10 at each pod apertures 5 place, another one end face connects with the water conservancy diversion inclined-plane 10 at adjacent guide hole 5 place.Simultaneously, described deflector 4 size and described air filtering assembly 2 size match, the below of whole like this air filtering assembly 2 is all deflector 4, make between air filtering assembly 2 and deflector 4, to form a negative-pressure air-suction place, during such centrifugal blower 9 air draught, form a negative-pressure air-suction, the air draught efficiency of centrifugal blower 9 can be improved, also can ensure that each place of air filtering assembly 2 is used, improve the utilization rate of air filtering assembly 2, reduce use cost.
Simultaneously, in order to improve negative pressure, rubber seal 11 is provided with the joint of described intake and blowing device inlet scoop 6 in described pod apertures 5, can ensure that pod apertures 5 is not leaked out with the joint of centrifugal blower 9, effectively raise negative pressure, improve the air draught efficiency of intake and blowing device, improve purification efficiency and the effect of clarifier, also reduce energy consumption.
In the present embodiment, case top is provided with exhaust outlet 12, when clarifier uses, centrifugal blower 9 rotation work, the air of clarifier outside is sucked in the air inlet 1 of housing both sides, air enters into air filtering assembly 2 and carries out purification filtering in suction channel, air after being cleaned filtration is inhaled in the centrifugal blower 9 at pod apertures 5 place via deflector 4, drain in exhausting duct by the air outlet of centrifugal blower 9 again, air after purification drains into the exhaust outlet 12 of case top by exhausting duct, by exhaust outlet 12, the air after purification is released in space outerpace, complete the circulation of primary air purification.During centrifugal blower 9 air draught, air has to pass through air filtering assembly 2, will certainly reduce an air draught efficiency of centrifugal blower 9 like this, suppose not arrange deflector 4, between centrifugal blower 9 and air filtering assembly 2, negative pressure is not enough, air draught efficiency is affected, if a purification efficiency set will be reached in certain hour and space, just must strengthen the power of centrifugal blower 9, can energy consumption be increased like this, improve use cost, also can reduce the service life of centrifugal blower 9.Simultaneously, the front of deflector 4 and the back side of described case top lid plate 7 form suction channel, the back side of described deflector 4 and the base plate 3 of described housing lower cover 8 and inner walls form exhausting duct, suction channel and exhausting duct separate by deflector 4, when clarifier works, can not interference be produced between suction channel and exhausting duct, namely ensure that the operating efficiency of clarifier, also ensure that the clean-up effect of clarifier.

Claims (7)

1. a flow-guiding structure for ultra-thin wall-hanging air purifier, comprise the air inlet being arranged at housing at least side, be equipped with air filtering assembly in described air inlet, described air filtering assembly is flat; The below of described air filtering assembly is provided with intake and blowing device, described intake and blowing device is installed on the base plate of housing, it is characterized in that: between air filtering assembly and described intake and blowing device, be provided with deflector, described deflector is provided with pod apertures, and the inlet scoop of described pod apertures and described intake and blowing device matches.
2. the flow-guiding structure of ultra-thin wall-hanging air purifier according to claim 1, it is characterized in that: described housing comprises upper cover plate and lower cover, the front of described deflector and the back side of described case top lid plate form suction channel, and the back side of described deflector and the base plate of described housing lower cover and inner walls form exhausting duct.
3. the flow-guiding structure of ultra-thin wall-hanging air purifier according to claim 1, is characterized in that: described deflector is provided with the water conservancy diversion inclined-plane tilted gradually to described pod apertures place.
4. the flow-guiding structure of ultra-thin wall-hanging air purifier according to claim 3, is characterized in that: the joint of described pod apertures and described intake and blowing device inlet scoop is provided with sealing ring.
5. the flow-guiding structure of ultra-thin wall-hanging air purifier according to claim 4, is characterized in that: described sealing ring is rubber seal.
6. the flow-guiding structure of ultra-thin wall-hanging air purifier according to claim 1, it is characterized in that: the described housing left and right sides arranges air inlet, suction wind assembly described in every side is made up of at least one centrifugal blower, on described deflector, corresponding described centrifugal blower place is provided with pod apertures, and the inlet scoop of described pod apertures and described centrifugal blower matches.
7. the flow-guiding structure of ultra-thin wall-hanging air purifier according to claim 1, is characterized in that: described deflector size and described air filtering assembly size match.
CN201420462521.4U 2014-08-15 2014-08-15 The flow-guiding structure of ultra-thin wall-hanging air purifier Expired - Fee Related CN204153938U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420462521.4U CN204153938U (en) 2014-08-15 2014-08-15 The flow-guiding structure of ultra-thin wall-hanging air purifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420462521.4U CN204153938U (en) 2014-08-15 2014-08-15 The flow-guiding structure of ultra-thin wall-hanging air purifier

Publications (1)

Publication Number Publication Date
CN204153938U true CN204153938U (en) 2015-02-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420462521.4U Expired - Fee Related CN204153938U (en) 2014-08-15 2014-08-15 The flow-guiding structure of ultra-thin wall-hanging air purifier

Country Status (1)

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CN (1) CN204153938U (en)

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

Granted publication date: 20150211

Termination date: 20170815

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