CN213872986U - Purification type air-conditioning fan - Google Patents

Purification type air-conditioning fan Download PDF

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Publication number
CN213872986U
CN213872986U CN202022939014.3U CN202022939014U CN213872986U CN 213872986 U CN213872986 U CN 213872986U CN 202022939014 U CN202022939014 U CN 202022939014U CN 213872986 U CN213872986 U CN 213872986U
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China
Prior art keywords
air
air duct
air outlet
shell
outlet
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CN202022939014.3U
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Chinese (zh)
Inventor
赖伴来
彭琦
庞亚鹏
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Shenzhen Lianchuang Technology Group Co Ltd
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Shenzhen Lianchuang Technology Group Co Ltd
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Abstract

The utility model discloses a purification type air-conditioning fan, which comprises a front shell component, an air duct component, a rear shell component and a water tank, wherein the front shell component is provided with an air outlet, the rear shell component is provided with an air inlet and a water evaporation carrier, the water evaporation carrier is positioned at the air inlet and is communicated with the water tank, the air duct component comprises an air duct shell and a filtering device arranged in the air duct shell, an air duct is formed in the air duct shell, and the filtering device is arranged at the air outlet end of the air duct; when the filtering device moves into the air outlet end of the air duct, the air outlet in the air duct is filtered and then discharged from the air outlet, and when the filtering device moves out of the air outlet end of the air duct, the air outlet in the air duct is directly discharged from the air outlet. The utility model discloses set up a mobilizable filter equipment in the middle of the wind channel between fan and fuselage air outlet, increased the purification performance of air cooler, made the more clean of wind that the air cooler blew off, and can regard as clarifier exclusive use, made single seasonal electric products become four seasons environment electric products, resources are saved, the reduction is extravagant.

Description

Purification type air-conditioning fan
Technical Field
The utility model relates to an air conditioning equipment technical field, concretely relates to purification type air cooler.
Background
A water evaporation type air conditioning fan (air conditioning fan) is an energy-saving cooling product and is characterized in that a water evaporation carrier is arranged at an air inlet of a fan component in a machine body, air is driven by the fan to pass through the water evaporation carrier to promote water to be gasified at normal temperature, the water evaporation absorbs gasification heat to cool the air, the water which is not gasified flows back to a water tank for recycling, and the cooled air is blown out through an air duct and an air outlet to directly give people a cool feeling. Meanwhile, when air passes through the water evaporation carrier, the air becomes clean and fresh through the cleaning of the water, so that the ambient air becomes clean and comfortable. Because a compressor is not used and a common fan is adopted, the energy consumption is low, the cost is low, and the fan is favored by consumers in hot summer. The air conditioning fan belongs to a single seasonal product, is only suitable for hot summer, and is idle for a long time in one year, so that certain time waste and resource waste are caused.
SUMMERY OF THE UTILITY MODEL
To prior art not enough, the utility model provides a purification type air conditioner fan sets up a mobilizable filter equipment in the middle of the wind channel between fan and fuselage air outlet, has increased the purification performance of air conditioner fan, makes the more clean of wind that the air conditioner fan blew off, and can regard as the clarifier exclusive use.
The utility model adopts the following technical scheme:
a purification type air conditioning fan comprises a front shell assembly, an air duct assembly, a rear shell assembly and a water tank, wherein the air duct assembly and the water tank are arranged in a cavity formed by the front shell assembly and the rear shell assembly; the air duct assembly comprises an air duct shell, and a filtering device and a driving wind wheel which are arranged in the air duct shell, wherein an air duct is formed in the air duct shell, the driving wind wheel is arranged at an air inlet end of the air duct, and the air inlet end of the air duct is communicated with the air inlet; the filtering device is arranged at the air outlet end of the air duct, and the air outlet end of the air duct is communicated with the air outlet; when the filtering device moves into the air outlet end of the air duct, the air outlet in the air duct is filtered and then discharged from the air outlet, and when the filtering device moves out of the air outlet end of the air duct, the air outlet in the air duct is directly discharged from the air outlet.
The air inlet is positioned at the lower part of the rear shell assembly, the air outlet is positioned at the upper part of the front shell assembly, the side wall of the lower end of the air duct shell is provided with an air duct air inlet hole corresponding to the air inlet, and the air duct shell is communicated with the air inlet through the air duct air inlet hole; and the air duct shell is communicated with the air outlet through the air duct air outlet.
The air duct shell is characterized in that a rotating shaft arranged along one end portion of the rotating shaft is arranged on the filtering device, two ends of the rotating shaft are rotatably arranged in positioning grooves at two ends of the side wall of the upper portion of the air duct shell, and the air duct air outlet is opened or closed by controlling the filtering device to rotate along the rotating shaft.
The filter device comprises a support and a filter, wherein a cavity groove is formed in the support, the filter is embedded in the cavity groove, and the rotating shaft is located at the upper end of the support.
Preferably, the filter is one of a HEPA filter or an activated carbon filter, etc.
The air duct shell side wall on the outer side of the positioning groove is further provided with a control mechanism, and the control mechanism is connected with the rotating shaft and used for controlling the rotating angle of the filtering device.
Preferably, control mechanism is a driving motor, the rotatable setting of one end of pivot is in one side in the constant head tank, the other end pass the opposite side constant head tank with driving motor's drive shaft forms fixed connection, through the drive shaft drives the pivot is rotated, is used for controlling filter equipment's rotation.
An air duct plate, an air duct upper cover and an air duct side cover are arranged at the upper part of the air duct shell, and the air duct plate is arranged on the air duct shell at the lower side of the air outlet hole of the air duct; a side opening is further formed in the side wall of the air duct shell opposite to the air outlet hole of the air duct, and the air duct side cover is detachably buckled on the side opening; the upper end of the air duct shell is provided with an opening, two ends of a rotating shaft on the filtering device can be rotatably arranged at the opening at the upper end of the air duct shell, so that the filtering device is vertically arranged on the inner side of the side opening, and the upper cover of the air duct covers the opening at the upper end of the air duct shell; when the lower end of the filtering device is controlled to rotate to the position of the air duct plate, the filtering device filters the air outlet in the air duct and then discharges the air outlet, and when the lower end of the filtering device is controlled to rotate to the position of the air duct side cover, the air outlet in the air duct is directly discharged from the air outlet.
The rear shell assembly further comprises a rear shell and a water discharge groove, a filter inlet and a filter outlet are further formed in the side wall above the rear shell, the filter inlet and the filter outlet correspond to the air channel side cover in position and are used for disassembling and assembling the filter, a water tank inlet and a water tank outlet are formed in the side wall below the rear shell, and the water tank is connected with the rear shell assembly in a drawing mode through the water tank inlet and the water tank outlet; the water discharge tank is positioned above the water evaporation carrier, a water pump is arranged in the water tank, and the water discharge tank is communicated with the water pump through a pipeline to provide a water source to be evaporated for the water evaporation carrier;
the air inlet is embedded in the rear shell side wall, the water evaporation carrier is arranged on the outer side of the air inlet, a rear net is arranged on the outer side of the water evaporation carrier, and the rear net is connected with the rear shell in a detachable buckling mode at the position of the air inlet.
The utility model discloses technical scheme has following advantage:
A. the utility model discloses purification type air cooler sets up a mobilizable filter equipment in the middle of the wind channel between fan and fuselage air outlet, and this filter equipment realizes the separation and reunion state through automatic or manual rotation control mechanism in the wind channel. When the air-conditioning fan needs to be used as the air-conditioning fan, the rotation control mechanism drives the filtering device to evacuate from the air duct, air generated by the fan assembly is directly blown out from the air outlet of the machine body through the air duct, the air does not pass through the filter at the moment, strong air is not subjected to resistance of the filter, and the air-conditioning fan is suitable for cooling and relieving summer heat in hot summer. When the air purifier is used as a purifier, the rotating control mechanism drives the filtering device to close the air duct, air generated by the fan assembly passes through the filter in the air duct, is purified and filtered again and then is blown out from the air outlet of the machine body, and the air purifier is suitable for being used all the year round and is particularly suitable for indoor places with serious pollution.
B. The air sucked from the air inlet passes through the wet water evaporation carrier to promote the water to be gasified at normal temperature, the water evaporation absorbs the gasification heat to cool the water and the air, and the air is cleaned and purified by the water on the carrier; and a filter is added in the air duct, so that the air is filtered and purified again. Double purification, the air purification effect is better.
C. The utility model discloses principle and simple structure, user convenient operation. Compared with the traditional air conditioning fan, the air conditioning fan has the advantages that the purification function is added, so that a single seasonal electric appliance is changed into an electric appliance in the four-season environment, the resources are saved, and the waste is reduced.
Drawings
In order to illustrate the embodiments of the present invention more clearly, the drawings that are needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
FIG. 1 is a schematic view of an exploded axial view of a clean air conditioner fan assembly according to the present invention;
FIG. 2 is a sectional view showing a state of use of the present invention when the air conditioner fan is used;
FIG. 3 is a sectional view of the purifier of the present invention in a use state;
FIG. 4 is an exploded isometric view of the duct assembly of the present invention;
FIG. 5 is a schematic view of the filter dismounting and axial measurement of the present invention;
FIG. 6 is a schematic view of the filter device according to the present invention;
fig. 7 is an exploded perspective view of the middle and rear housing assembly of the present invention.
The labels in the figure are as follows:
1-front shell component, 11-air outlet; 2-air duct component, 21-air duct shell, 211-air duct air inlet hole, 212-air duct, 213-side port, 214-positioning groove, 215-air duct air outlet hole, 22-driving wind wheel, 23-air duct plate, 24-filtering device, 241-bracket, 242-filter, 2411-cavity groove, 2412-rotating shaft, 25-air duct upper cover, 26-air duct side cover, 27-rotation control mechanism and 28-main motor; 3-rear shell component, 31-rear shell, 311-water tank inlet and outlet, 312-air inlet, 313-filter inlet and outlet, 32-water evaporation carrier, 33-rear net, 34-water outlet tank, 35-rear cover; 4-a water tank; 5-water pump.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the accompanying drawings, and obviously, the described embodiments are some, but not all embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; the connection can be mechanical connection or electrical connection; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
As shown in fig. 1-4, the utility model provides a purification type air conditioner fan, including preceding shell subassembly 1, wind channel subassembly 2, backshell subassembly 3 and water tank 4, state wind channel subassembly 2 and water tank 4 and set up in the cavity that preceding shell subassembly 1 and backshell subassembly 3 are constituteed, water tank 4 is located the below of wind channel subassembly 2, be equipped with air outlet 11 on preceding shell subassembly 1, be equipped with air intake 312 and water evaporation carrier 32 on backshell subassembly 3, water evaporation carrier 32 is located air intake 312, and communicate with water tank 4, wind channel subassembly 2 includes wind channel shell 21 and sets up filter equipment 24 and the driving wind wheel 22 in wind channel shell 21, form a wind channel 212 in wind channel shell 21, driving wind wheel 22 sets up in the air inlet end of wind channel 212, the air inlet end and the air intake 312 intercommunication of wind channel 212; the filtering device 24 is arranged at the air outlet end of the air duct 212, and the air outlet end of the air duct 212 is communicated with the air outlet 11; when the filtering device 24 moves into the air outlet end of the air duct 212, the air outlet in the air duct 212 is filtered and then discharged from the air outlet 11, and when the filtering device 24 moves out of the air outlet end of the air duct 212, the air outlet in the air duct 212 is directly discharged from the air outlet 11. The purifying air-conditioning fan of the utility model adds the purifying function on the function of the traditional air-conditioning fan, so that the air blown by the air-conditioning fan is cleaner; the purifier can be selected to be used as a single purifier, the use frequency of the product is improved, the product is not a single seasonal product any more, and the use value of the product is improved.
Furthermore, the air inlet 312 is located at the lower part of the rear shell assembly 3, the air outlet 11 is located at the upper part of the front shell assembly 1, the side wall of the lower end of the air duct shell 21 is provided with an air duct air inlet hole 211 corresponding to the position of the air inlet 312, and the air duct shell 21 is communicated with the air inlet 312 through the air duct air inlet hole 211; an air duct air outlet 215 corresponding to the air outlet 11 is arranged on the side wall of the upper end of the air duct shell 21, and the air duct shell 21 is communicated with the air outlet 11 through the air duct air outlet 215. The filter 24 is provided with a rotating shaft 2412 along one end thereof, two ends of the rotating shaft 2412 are rotatably overlapped in the positioning grooves 214 at two ends of the upper side wall of the air duct shell 21, and the air outlet of the air duct is opened or closed by controlling the filter 24 to rotate along the rotating shaft 2412.
As shown in fig. 6, the filtering device 24 includes a bracket 241 and a filter 242, a cavity 2411 is formed on the bracket 241, the filter 242 is inserted into the cavity 2411, and a rotating shaft 2412 is located at the upper end of the bracket 241. The filter 242 may be one of a HEPA filter or an activated carbon filter.
The side wall of the air duct casing 21 outside the positioning groove 214 is further provided with a rotation control mechanism 27, and the rotation control mechanism 27 is connected with the rotating shaft 2412 and used for controlling the rotation angle of the filtering device 24. In this embodiment, the rotation control mechanism 27 is a driving motor, one end of the rotating shaft 2412 is rotatably disposed in the positioning groove 214 on one side, and the other end of the rotating shaft 2412 passes through the positioning groove 214 on the other side to form a fixed connection with a driving shaft of the driving motor, and the rotating shaft 2412 is driven by the driving shaft to rotate for controlling the rotation of the filtering device 24. In addition, the rotation control mechanism 27 may also be a transmission motor equipped with a sprocket, one end of the rotating shaft 2412 is rotatably disposed in the positioning groove 214 on one side, the other end thereof passes through the positioning groove 214 on the other side and is equipped with a sprocket on the extending end, and the filtering device 24 is in transmission connection with the transmission motor equipped with a sprocket through a chain. The control mechanism for driving the wind deflector can also be a gear structure, a connecting rod structure and other conventional transmission mechanisms, which are not described herein in detail.
As shown in fig. 4 and 5, the air duct casing 21 is provided at an upper portion thereof with an air duct plate 23, an air duct upper cover 25 and an air duct side cover 26, and the air duct plate 23 is provided on the air duct casing 21 below the air outlet of the air duct. The side wall of the air duct shell 21 opposite to the air outlet hole of the air duct is further provided with a side opening 213, and the air duct side cover 26 is detachably buckled on the side opening 213. The upper end opening of air duct shell 21, the both ends of the rotating shaft on filter device 24 can be rotatably arranged at the upper end opening of air duct shell 21, so that filter device 24 is vertically arranged at the inner side of side opening 213, and air duct upper cover 25 covers the upper end opening of air duct shell 21. When the lower end of the filter device 24 is controlled to rotate to the position of the air duct plate 23, the filter device 24 filters the outlet air in the air duct 212 and then discharges the filtered outlet air from the air outlet 11, and when the lower end of the filter device 24 is controlled to rotate to the position of the air duct side cover 26, the outlet air in the air duct 212 is directly discharged from the air outlet 11.
As shown in fig. 2 and 7, the rear housing assembly 3 further includes a rear housing 31 and a lower water tank 34, a filter inlet 313 is further provided on the upper side wall of the rear housing 31, and the filter inlet 313 corresponds to the position of the air duct side cover 26 for mounting and dismounting the filter 242. A water tank inlet 311 is arranged on the side wall below the rear shell 31, and the water tank 4 is connected with the rear shell component 3 in a drawing way through the water tank inlet 311. The water discharge tank 34 is positioned above the water evaporation carrier 32, the water pump 5 is arranged in the water tank 4, and the water discharge tank 34 is communicated with the water pump 5 through a pipeline to provide a water source to be evaporated for the water evaporation carrier 32. The air inlet 312 is embedded in the side wall of the rear shell 31, the water evaporation carrier 32 is arranged outside the air inlet 312, the rear net 33 is arranged outside the water evaporation carrier 32, and the rear net 33 is detachably buckled and connected with the air inlet 312 of the rear shell 31.
As shown in fig. 2, when the air conditioner fan is used, the rotation control mechanism 27 drives the filter device 24 to rotate, the lower end of the filter device 24 rotates in the direction away from the air inlet 312 and leaves the air duct 212, the main motor 28 drives the driving wind wheel 22 to rotate at a high speed, so that negative pressure is generated in the housing, and the air which is gasified and cooled by the water evaporation carrier 32 and sucked from the air inlet 312 is directly blown out from the air outlet 11 through the air duct 212. At the moment, the wind does not pass through the filter, and strong wind is not subjected to the resistance of the filter, so that the wind-driven solar water heater is suitable for cooling and relieving summer heat in hot summer. As shown in fig. 3, when the air purifier is used, the rotation control mechanism 27 drives the filter device 24 to rotate, the lower end of the filter device 24 rotates towards the air inlet 312 to close the air duct 212, the main motor 28 drives the driving wind wheel 22 to rotate at a high speed, so that negative pressure is generated in the housing, and air which is gasified and cooled by the water evaporation carrier 32 and sucked from the air inlet 312 passes through the air duct 212, is filtered and purified by the filter device 24, and is blown out from the air outlet 11. Air generated in the air duct assembly passes through the filter in the air duct, is purified and filtered again and then is blown out from the air outlet of the machine body, and the air duct assembly is suitable for being used all the year round. The air sucked from the air inlet passes through the wet water evaporation carrier to promote the water to be gasified at normal temperature, the water evaporation absorbs the gasification heat to cool the water and the air, and the air is cleaned and purified by the water on the carrier; and a filter is added in the air duct, so that the air is filtered and purified again. Double purification, the air purification effect is more, is particularly suitable for polluting serious indoor place and is good.
The utility model discloses principle and simple structure, user convenient operation. Compared with the traditional air conditioning fan, the air conditioning fan has the advantages that the purification function is added, so that a single seasonal electric appliance is changed into an electric appliance in the four-season environment, resources are saved, and waste is reduced.
The utility model discloses the nothing is mentioned the part and is applicable to prior art.
It should be understood that the above examples are only for clarity of illustration and are not intended to limit the embodiments. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. And obvious variations or modifications therefrom are within the scope of the invention.

Claims (10)

1. A purification type air conditioning fan comprises a front shell component (1), an air duct component (2), a rear shell component (3) and a water tank (4), wherein the air duct component (2) and the water tank (4) are arranged in a cavity formed by the front shell component (1) and the rear shell component (3), the water tank (4) is positioned below the air duct component (2), an air outlet (11) is formed in the front shell component (1), an air inlet (312) and a water evaporation carrier (32) are arranged on the rear shell component (3), the water evaporation carrier (32) is positioned at the air inlet (312) and is communicated with the water tank (4), and the purification type air conditioning fan is characterized in that the air duct component (2) comprises an air duct shell (21) and a filtering device (24) and a driving wind wheel (22) which are arranged in the air duct shell (21), an air duct (212) is formed in the air duct shell (21), the driving wind wheel (22) is arranged at the air inlet end of the air duct (212), and the air inlet end of the air duct (212) is communicated with the air inlet (312); the filtering device (24) is arranged at the air outlet end of the air duct (212), and the air outlet end of the air duct (212) is communicated with the air outlet (11); when the filtering device (24) moves into the air outlet end of the air duct (212), the air outlet in the air duct (212) is filtered and then discharged from the air outlet (11), and when the filtering device (24) moves out of the air outlet end of the air duct (212), the air outlet in the air duct (212) is directly discharged from the air outlet (11).
2. The purifying type air conditioner fan as claimed in claim 1, wherein the air inlet (312) is located at a lower portion of the rear housing assembly (3), the air outlet (11) is located at an upper portion of the front housing assembly (1), an air duct inlet (211) corresponding to the air inlet (312) is disposed on a side wall of a lower end of the air duct housing (21), and the air duct housing (21) is communicated with the air inlet (312) through the air duct inlet (211); the air duct shell (21) is characterized in that an air duct air outlet (215) corresponding to the air outlet (11) in position is formed in the side wall of the upper end of the air duct shell (21), and the air duct shell (21) is communicated with the air outlet (11) through the air duct air outlet (215).
3. The purifying type air conditioner fan as claimed in claim 2, wherein the filter device (24) is provided with a rotating shaft (2412) along one end thereof, two ends of the rotating shaft (2412) are rotatably overlapped in positioning slots (214) at two ends of the upper side wall of the air duct housing (21), and the air outlet of the air duct is opened or closed by controlling the filter device (24) to rotate along the rotating shaft (2412).
4. The purification type air conditioner fan as claimed in claim 3, wherein the filtering means (24) comprises a bracket (241) and a filter (242), the bracket (241) is provided with a cavity groove (2411), the filter (242) is embedded in the cavity groove (2411), and the rotating shaft (2412) is located at the upper end of the bracket (241).
5. The clean air fan of claim 4, wherein said filter (242) is one of a HEPA filter or an activated carbon filter.
6. The purifying type air conditioner fan as claimed in claim 4, wherein a control mechanism (27) is further disposed on the side wall of the air duct housing (21) outside the positioning groove (214), and the control mechanism (27) is connected to the rotating shaft (2412) for controlling the rotation angle of the filtering device (24).
7. The purifying type air conditioner fan as claimed in claim 6, wherein the control mechanism (27) is a driving motor, one end of the shaft (2412) is rotatably disposed in the positioning groove (214) on one side, and the other end of the shaft passes through the positioning groove (214) on the other side to form a fixed connection with a driving shaft of the driving motor, and the shaft (2412) is driven by the driving shaft to rotate for controlling the rotation of the filtering device (24).
8. The clean air conditioner fan as claimed in any one of claims 3-7, wherein the upper portion of the air duct shell (21) is provided with an air duct plate (23), an air duct upper cover (25) and an air duct side cover (26), the air duct plate (23) is provided on the air duct shell (21) at the lower side of the air duct outlet hole (215); the side wall of the air duct shell (21) opposite to the air duct air outlet hole is also provided with a side opening (213), and the air duct side cover (26) is detachably buckled on the side opening (213); the upper end of the air duct shell (21) is open, two ends of a rotating shaft on the filtering device (24) can be rotatably arranged at the upper end opening of the air duct shell (21), so that the filtering device (24) is vertically arranged on the inner side of the side opening (213), and the air duct upper cover (25) covers the upper end opening of the air duct shell (21); when the lower end of the filter device (24) is controlled to rotate to the position of the air duct plate (23), the filter device (24) filters the air outlet in the air duct (212) and then discharges the air outlet (11), and when the lower end of the filter device (24) is controlled to rotate to the position of the air duct side cover (26), the air outlet in the air duct (212) is directly discharged from the air outlet (11).
9. The purifying air conditioner fan as claimed in claim 8, wherein the rear housing assembly (3) further comprises a rear housing (31), a filter inlet/outlet (313) is further provided on the upper side wall of the rear housing (31), and the filter inlet/outlet (313) corresponds to the position of the air duct side cover (26) for assembling and disassembling the filter (242).
10. The purifying air conditioner fan as claimed in claim 1, wherein the rear housing assembly (3) further comprises a rear housing (31) and a lower water tank (34), a water tank inlet/outlet (311) is provided on a lower side wall of the rear housing (31), and the water tank (4) is connected with the rear housing assembly (3) in a drawing manner through the water tank inlet/outlet (311); the water discharge tank (34) is positioned above the water evaporation carrier (32), a water pump (5) is arranged in the water tank (4), and the water discharge tank (34) is communicated with the water pump (5) through a pipeline to provide a water source to be evaporated for the water evaporation carrier (32);
air intake (312) are embedded to be in on backshell (31) lateral wall, water evaporation carrier (32) set up the air intake (312) outside, and water evaporation carrier (32) outside is equipped with back net (33), back net (33) with backshell (31) air intake (312) department can dismantle the lock and connect.
CN202022939014.3U 2020-12-09 2020-12-09 Purification type air-conditioning fan Active CN213872986U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022939014.3U CN213872986U (en) 2020-12-09 2020-12-09 Purification type air-conditioning fan

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022939014.3U CN213872986U (en) 2020-12-09 2020-12-09 Purification type air-conditioning fan

Publications (1)

Publication Number Publication Date
CN213872986U true CN213872986U (en) 2021-08-03

Family

ID=77065685

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022939014.3U Active CN213872986U (en) 2020-12-09 2020-12-09 Purification type air-conditioning fan

Country Status (1)

Country Link
CN (1) CN213872986U (en)

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