CN213955454U - Air treatment device, air conditioner indoor unit and air conditioner - Google Patents

Air treatment device, air conditioner indoor unit and air conditioner Download PDF

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Publication number
CN213955454U
CN213955454U CN202023194797.3U CN202023194797U CN213955454U CN 213955454 U CN213955454 U CN 213955454U CN 202023194797 U CN202023194797 U CN 202023194797U CN 213955454 U CN213955454 U CN 213955454U
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China
Prior art keywords
air
air treatment
support
treatment device
treatment module
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CN202023194797.3U
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Chinese (zh)
Inventor
康铁生
毛先友
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Midea Group Co Ltd
GD Midea Air Conditioning Equipment Co Ltd
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Midea Group Co Ltd
GD Midea Air Conditioning Equipment Co Ltd
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Priority to CN202023194797.3U priority Critical patent/CN213955454U/en
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Abstract

The utility model discloses an air treatment device, an air conditioner indoor unit and an air conditioner, wherein the air treatment device comprises a shell, a support grid and an air treatment module; the shell is provided with an air inlet, an air outlet and an air channel for communicating the air inlet and the air outlet; the support grid is arranged in the air duct; the air treatment module is located in the air duct and is mounted on the support grid. The utility model discloses air treatment device makes air treatment module's installation convenient and fast more, and supports the grid and support air treatment module comprehensively, can promote air treatment module's installation steadiness, and overall structure is simple, with low costs simultaneously. In addition, the support grating can play the guard action, can prevent that the user from missing the handle and stretching into touching the fan in the wind channel, perhaps debris fall into and influence the fan operation in the wind channel.

Description

Air treatment device, air conditioner indoor unit and air conditioner
Technical Field
The utility model relates to an air conditioning technology field, in particular to machine and air conditioner in air treatment device, air conditioning.
Background
With the gradual rise of health consciousness of consumers, the air conditioner with health function has become a development direction of high-end products at present. However, the air treatment module of the health function air conditioner on the market has poor installation effect.
The above is only for the purpose of assisting understanding of the technical solution of the present invention, and does not represent an admission that the above is the prior art.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims at providing an air treatment device, aim at solving the not good technical problem of installation effect of air treatment module.
In order to achieve the above object, the present invention provides an air treatment device, which comprises a housing, a support grid and an air treatment module;
the shell is provided with an air inlet, an air outlet and an air channel communicated with the air inlet and the air outlet;
the support grid is arranged in the air duct;
the air treatment module is located in the air duct and is mounted on the support grid.
In an embodiment, the support grids are provided with at least two layers, the at least two layers of support grids are sequentially arranged in the air outlet direction of the air duct, an installation position is defined between two adjacent layers of support grids, and the air treatment module is arranged at the installation position.
In one embodiment, the grid holes of the two adjacent layers of the support grids are correspondingly arranged in the air outlet direction of the air duct.
In an embodiment, the installation positions are provided with a plurality of installation positions, the air treatment modules are provided with a plurality of installation positions, and the plurality of air treatment modules are correspondingly installed on the plurality of installation positions.
In one embodiment, the at least two layers of support grids are integrally arranged.
In an embodiment, the air duct is provided with a forward opening, the air treatment module is installed in the air duct in a manner that the air treatment module can be pulled out from the opening, a fan is further arranged in the air duct, the air treatment module is arranged on the air outlet side of the fan, the supporting grid is arranged at the bottom wall of the opening, or the distance between the supporting grid adjacent to the bottom wall of the opening and the bottom wall of the opening is smaller than or equal to 50 mm.
In an embodiment, the support grid comprises a plurality of transverse ribs and/or a plurality of longitudinal ribs; or the support grid comprises a plurality of annular ribs and a plurality of radiation ribs for connecting the annular ribs.
In one embodiment, the support grid is integrally provided with the housing, or the support grid is detachably connected with the housing.
In one embodiment, the cross section of the air duct is rectangular.
In one embodiment, a fan is further arranged in the air duct, and the air inlet comprises an indoor air inlet and/or a fresh air inlet.
The utility model also provides an air-conditioning indoor unit, which comprises a casing and an air treatment device, wherein the air treatment device is arranged in the casing, and comprises a casing, a support grid and an air treatment module;
the shell is provided with an air inlet, an air outlet and an air channel communicated with the air inlet and the air outlet;
the support grid is arranged in the air duct;
the air treatment module is located in the air duct and is mounted on the support grid.
The utility model also provides an air conditioner, including air condensing units and the indoor set of air conditioner that are connected through the refrigerant pipe, wherein, the indoor set of air conditioner includes casing and air treatment unit, the air treatment unit is installed in the casing, wherein, air treatment unit includes casing, support grid and air treatment module;
the shell is provided with an air inlet, an air outlet and an air channel communicated with the air inlet and the air outlet;
the support grid is arranged in the air duct;
the air treatment module is located in the air duct and is mounted on the support grid.
The utility model discloses air treatment module through make support grid install in the wind channel. The air treatment module is located in the air duct and is mounted on the support grid. The air treatment module is installed by utilizing the support grating, and compared with other modes, the air treatment module is more convenient and faster to install, the support grating comprehensively supports the air treatment module, the installation stability of the air treatment module can be improved, meanwhile, the air treatment module is not additionally provided with an installation structure, and the whole structure is simple and low in cost. In addition, through set up the support grid in the wind channel, then after dismantling air treatment module, the support grid can play the guard action, can prevent that the user from missing the handle and stretch into touching the fan in the wind channel, perhaps debris fall into and influence the fan operation in the wind channel.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the structures shown in the drawings without creative efforts.
FIG. 1 is a schematic structural view of an embodiment of an air treatment device according to the present invention;
FIG. 2 is a schematic view of a portion of the air treatment apparatus of FIG. 1;
FIG. 3 is a schematic view of a portion of the housing of FIG. 2;
fig. 4 is a schematic structural view of an embodiment of an indoor unit of an air conditioner according to the present invention;
FIG. 5 is a schematic view of the air conditioning indoor unit of FIG. 4 at another angle;
fig. 6 is a partially exploded view of the air conditioning indoor unit of fig. 5.
The reference numbers illustrate:
reference numerals Name (R) Reference numerals Name (R) Reference numerals Name (R)
100 Air treatment device 1131 Opening of the container 200 Casing (CN)
110 Shell body 114 Mounting position 210 Indoor air inlet of casing
1111 Indoor wind inlet 120 Support grid 220 Fresh air inlet of casing
1112 Fresh air inlet 121 Grid hole 230 Air outlet of machine shell
112 Air outlet 130 Air treatment module
113 Air duct 140 Fan blower
The objects, features and advantages of the present invention will be further described with reference to the accompanying drawings.
Detailed Description
It should be noted that if the embodiments of the present invention are described with reference to "first", "second", etc., the description of "first", "second", etc. is only for descriptive purposes and is not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, the meaning of "and/or" appearing throughout is to include three juxtapositions, exemplified by "A and/or B" including either scheme A, or scheme B, or a scheme in which both A and B are satisfied.
The utility model provides an air treatment device, but the exclusive use, or be arranged in equipment such as air conditioner, clearing machine, air machine, this air conditioner can be split type air conditioner, like floor type air conditioner, wall-hanging air conditioner, also can be integral type air conditioner, like window machine, portable air conditioner etc.. The air treatment device is mainly used for improving the quality of air, such as replacing indoor air, increasing air humidity, increasing air cleanliness and the like.
In the embodiment of the present invention, as shown in fig. 1 to 3, the air treatment device 100 includes a housing 110, a support grid 120 and an air treatment module 130. The housing 110 has an inlet, an outlet 112 and an air duct 113 connecting the inlet and the outlet 112. The support grill 120 is installed in the air duct 113. The air treatment module 130 is located within the air chute 113 and is mounted to the support grid 120.
In the present embodiment, the entire housing 110 may have a square, rectangular, cylindrical, irregular shape, or the like. The air duct 113 may be formed by the entire inner cavity of the housing 110. The housing 110 may be integrally formed, or may be formed by splicing an air inlet volute and an air outlet volute. Typically, a fan 140 is disposed in the air duct 113 to drive an air flow from the air inlet into the air duct 113 and out of the air outlet 112. The fan 140 includes an air duct shell fixed on the housing 110, and a motor and a wind wheel arranged in the air duct shell, the motor is connected with the wind wheel to drive the wind wheel to rotate, and the wind wheel may be a centrifugal wind wheel. Specifically, the air inlet includes a fresh air inlet 1112 and/or an indoor air inlet 1111. The fresh air inlet 1112 is connected to the outside of the room through a fresh air duct. Thus, the air treatment module 130 has a fresh air mode and an indoor circulation purification mode. In the fresh air mode, the fresh air inlet 1112 and the air outlet 112 are opened, the indoor air inlet 1111 is closed, and the fan 140 is configured to drive outdoor airflow to flow into the air duct 113 through the fresh air inlet 1112, and the outdoor airflow is blown out to the indoor through the air outlet 112 after being processed by the air processing module 130, so as to introduce fresh air. In the indoor circulation purification mode, the indoor air inlet 1111 and the air outlet 112 are opened, the fresh air inlet 1112 is closed, and the fan 140 is configured to drive the indoor air flow to flow into the air duct 113 from the indoor air inlet 1111, and the indoor air flow is blown out from the air outlet 112 after being subjected to dust removal, sterilization and other treatment by the air treatment module 130, so as to realize circulation purification of the indoor air.
The air inlet and the air outlet 112 are generally disposed on different sides of the housing 110, and the fresh air inlet 1112 is generally disposed on the rear side of the housing 110 to ensure the appearance of the air treatment device 100. The indoor air inlet 1111 may be opened at both left and right sides of the case 110. The air outlet 112 may be disposed on the left and right sides of the housing 110, or on the top wall surface or the front side surface of the housing 110, and the specific disposing position of the air outlet 112 may be selected and designed according to the actual use requirement, which is not limited herein. The number of the air outlets 112 is at least one, and the number of the air outlets 112 may be selected according to requirements, for example, one, two, or three. The air outlet 112 of the casing 110 is provided with a guiding sealing structure, and is in sealing fit with the casing air outlet 112 arranged on the casing of the indoor unit of the air conditioner through the guiding sealing structure. The shape of the air inlet and the air outlet 112 can be selected according to actual requirements, and may be, for example, circular, rectangular, or elongated. Specifically, the air treatment module 130 may be a humidification module, a filter screen module (such as a primary filter screen, a HEPA filter screen, an activated carbon screen, etc.), a formaldehyde removal module, a VOC (volatile organic compound) removal module, a dust removal module, an allergen removal module, a sterilization module (plasma screen), a odor removal module, a fragrance module, etc. The number of the air treatment modules 130 may be one or plural, and when the number of the air treatment modules 130 is plural, the functions of the plural air treatment modules 130 may be the same or different. In an embodiment, referring to fig. 1 and 4, a plurality of air treatment modules 130 are disposed, and the plurality of air treatment modules 130 are sequentially disposed along the air outlet direction of the air duct 113. By providing a plurality of air treatment modules 130, different air treatment needs of the user, such as humidification, filtration, disinfection, etc., can be met.
When the support grill 120 is installed in the air duct 113, the support grill 120 may be integrally formed with the housing 110 or may be formed separately from the housing 110. When the support grid 120 and the housing 110 are formed separately, the support grid 120 may be fixedly mounted on the housing 110 by welding, riveting, or the like, or the support grid 120 may be detachably mounted on the housing 110 by inserting, clamping, or the like. The support grid 120 may be formed by transverse ribs, longitudinal ribs, or a combination of transverse ribs and longitudinal ribs. The form of the support grid 120 may also be numerous and is not listed here. The air treatment module 130 may be directly placed on the support grid 120 or may be limited and mounted on the support grid 120 by a limiting structure. The air treatment module 130 is installed by arranging the support grid 120, the structure is simple, the cost is low, and the installation of the air treatment module 130 is more stable and convenient.
The utility model discloses air treatment module 130 is through making support grid 120 install in wind channel 113. The air treatment module 130 is located within the air chute 113 and is mounted to the support grid 120. The support grids 120 are utilized to provide installation for the air treatment module 130, compared with other modes, the installation of the air treatment module 130 is more convenient and faster, the support grids 120 comprehensively support the air treatment module 130, the installation stability of the air treatment module 130 can be improved, and meanwhile, an installation structure does not need to be additionally arranged on the air treatment module 130, so that the whole structure is simple and the cost is low. In addition, through setting up support grid 120 in wind channel 113, then after dismantling air treatment module 130, support grid 120 can play the guard action, can prevent that the user from mistake handle stretches into and touches fan 140 in wind channel 113, perhaps debris fall into and influence fan 140 operation in wind channel 113.
In an embodiment, referring to fig. 1 and 3, the support grids 120 are disposed in at least two layers, the at least two layers of support grids 120 are sequentially disposed in the air outlet direction of the air duct 113, an installation position 114 is defined between two adjacent layers of support grids 120, and the air treatment module 130 is disposed in the installation position 114.
In the present embodiment, at least two layers of support grids 120 are arranged, and the mounting positions 114 are defined between two adjacent layers of grids, so that the air treatment module 130 can be mounted. The air treatment module 130 is sandwiched between the two side grills, so that the air treatment module 130 can be prevented from moving in the air outlet direction of the air duct 113, compared to the case where the air treatment module 130 is mounted on only one layer of the support grille 120, and the air treatment module 130 is more stably mounted. And the multilayer support grid 120 can more effectively prevent the user from mistakenly stretching the handle into the air duct 113 to touch the fan 140, or prevent sundries from falling into the air duct 113 to influence the operation of the fan 140. It will be appreciated that the distance between adjacent side support grids 120 corresponds to the thickness of the air treatment module 130. The air treatment module 130 may be readily removed from the mounting location 114 while allowing secure mounting of the air treatment module 130 to the mounting location 114.
Further, as shown in fig. 3, the grid holes 121 of the two adjacent layers of support grids 120 are correspondingly arranged in the air outlet direction of the air duct 113. The grid holes 121 of the two adjacent layers of support grids 120 are correspondingly arranged in the air outlet direction of the air duct 113, which means that the positions and the shapes of the grid holes 121 of the two adjacent layers of support grids 120 are both corresponding. So, can effectively reduce the windage that multilayer support grid 120 brought, promote the air output and the air-out efficiency in whole wind channel 113. The shape of the grid holes 121 may be rectangular, circular, triangular, arc-shaped, irregular-shaped, etc., and is not particularly limited herein.
In an embodiment, referring to fig. 1 to 3, a plurality of mounting locations 114 are provided, a plurality of air treatment modules 130 are provided, and the plurality of air treatment modules 130 are correspondingly mounted on the plurality of mounting locations 114. The mounting locations 114 may specifically be provided with two, three, four, five, etc. Each mounting location 114 may be configured to have an air treatment module 130 mounted thereon. It is understood that an air treatment module 130 may also be mounted above the uppermost support grid 120. A mounting location 114 may be formed between the lowermost support grid 120 and the housing 110 for mounting the air treatment module 130. By providing a plurality of mounting locations 114 for mounting a plurality of air treatment modules 130, the mounting stability of the plurality of air treatment modules 130 can be improved, and the mounting of the plurality of air treatment modules 130 is more convenient and faster.
In one embodiment, at least two layers of support grids 120 are integrally provided. By integrally arranging the plurality of layers of support grids 120, when the support grids 120 and the housing 110 are separately arranged, the plurality of layers of support grids 120 can be integrally mounted on the housing 110, so that the mounting steps of the support grids 120 and the housing 110 are simplified, and the mounting efficiency is improved.
In an embodiment, referring to fig. 1 to 3 again, the air duct 113 is provided with a forward opening 1131, the air treatment module 130 is installed in the air duct 113 in a drawable manner through the opening 1131, the air duct 113 is further provided with a fan 140, the air treatment module 130 is installed at the air outlet side of the fan 140, the bottom wall of the opening 1131 is provided with the support grid 120, or the distance between the support grid 120 adjacent to the bottom wall of the opening 1131 and the bottom wall of the opening 1131 is less than or equal to 50 mm.
In this embodiment, optionally, the opening 1131 of the wind channel 113 is disposed toward the front side of the whole air processing device 100, so that the user can pull the air processing module 130 from the front side of the air processing device 100, which is more convenient for the user to operate. The air processing module 130 is disposed on the air outlet side of the fan 140, and the fan 140 drives the airflow to flow into the air duct 113 through the air inlet, and the airflow is processed by the air processing module 130 and then blown out through the air outlet 112. By providing the support grid 120 at the bottom wall of the opening 1131, after the air treatment module 130 draws out the air duct 113, the user is prevented from inserting a hand into the fan 140 through the opening 1131 or dropping foreign objects into the fan 140 to affect the operation thereof. The support grid 120 adjacent to the bottom wall of the opening 1131 refers to the support grid 120 of the multiple layers of support grids 120 that is closest to the bottom wall of the opening 1131. Optionally, the distance between support grid 120 adjacent the bottom wall of opening 1131 and the bottom wall of opening 1131 is less than or equal to 20 mm. By making the distance between the support grid 120 adjacent to the bottom wall of the opening 1131 and the bottom wall of the opening 1131 less than or equal to 50mm, the user can be prevented from inserting a hand into the fan 140 through the gap between the support grid 120 and the bottom wall of the opening 1131, and large impurities can be effectively prevented from falling into the fan 140 to influence the operation thereof, thereby ensuring the operation stability of the whole machine.
In one embodiment, as shown in fig. 3, the support grid 120 includes a plurality of transverse ribs and/or a plurality of longitudinal ribs. By staggering the plurality of transverse ribs and longitudinal ribs, the structural strength of the entire support grid 120 can be improved. So that the support grid 120 is composed of only a plurality of transverse ribs or only a plurality of longitudinal ribs, the structure of the support grid 120 can be simplified, and the wind resistance can be reduced. In other embodiments, the support grid 120 may further include a plurality of diagonal ribs such that the diagonal ribs, the transverse ribs, and the longitudinal ribs are staggered. In another embodiment, the support grid 120 includes a plurality of annular ribs and a plurality of radiating ribs connecting the plurality of annular ribs. Thus, the entire support grill 120 is an annular radial structure, so that the structural stability of the support grill 120 can be enhanced, and the wind resistance can be effectively reduced.
In one embodiment, the support grid 120 is integral with the housing 110. Thus, it is not necessary to additionally install the support grill 120, simplifying the overall installation process. In another embodiment, the support grid 120 is removably attached to the housing 110. Specifically, a slot may be provided on the housing 110, so that the support grid 120 is inserted into the slot to realize the detachable connection between the support grid 120 and the housing 110. Of course, a snap structure may also be disposed on the housing 110, so that the support grid 120 is snapped on the housing 110. By having the support grid 120 removably attached to the housing 110, this makes the integral injection molding of the housing 110 simpler. And after the support grid 120 is damaged, the support grid 120 can be replaced independently, so that the replacement and maintenance cost is reduced, and meanwhile, the support grid 120 is convenient to be detached independently for cleaning.
Further, as shown in fig. 1 to 3, the cross section of the air duct 113 is rectangular. The cross section of the air duct 113 specifically refers to a section in the horizontal direction. By making the cross section of the air duct 113 rectangular, the overall shape of the support grid 120 is adapted to the cross section of the air duct 113, and the support grid 120 is also rectangular as a whole. In combination with the detachable connection of the support grid 120 and the housing 110, the support grid 120 can be more easily pulled and detached than when the air duct 113 is provided with other shapes.
The utility model also provides an air-conditioning indoor unit, as shown in fig. 4 to 6, the air-conditioning indoor unit comprises a casing 200 and an air treatment device 100, a casing fresh air inlet 220, a casing indoor air inlet 210 and a casing air outlet 230 are arranged on the casing 200, the concrete structure of the air treatment device 100 refers to the above embodiment, the air treatment device 100 is installed in the casing 200, a fresh air inlet 1112 of the air treatment device 100 is communicated with the casing fresh air inlet 220, an indoor air inlet 1111 of the air treatment device 100 is communicated with the casing indoor air inlet 210, and an air outlet 112 of the air treatment device 100 is communicated with the casing air outlet 230; the air processing device 100 is installed in the casing 200, and the specific structure of the air processing device 100 refers to the above-mentioned embodiments, and since the present air conditioning indoor unit adopts all technical solutions of all the above-mentioned embodiments, at least all the beneficial effects brought by the technical solutions of the above-mentioned embodiments are achieved, and no further description is given here.
In this embodiment, the whole of the housing 200 extends vertically. Wherein, the casing 200 can be composed of a front casing, a rear casing, a base, a top cover, etc.; the front shell is composed of one or more than one block, the front shell is provided with a shell air outlet 230, and a switch door is arranged corresponding to the shell air outlet 230 and is used for opening or closing the shell air outlet 230; the back shell is composed of one or more blocks, is provided with an air return channel of an air conditioner, and can also be provided with a fresh air inlet 220 of the shell and an indoor air inlet 210 of the shell. The casing air outlet 230 and the casing indoor air inlet 210 can be provided with a grid structure. An indoor heat exchanger part, an air conditioner fan part, a control part, an air treatment module 130, etc. are also provided in the cabinet 200. The two sides of the rear shell are provided with stand columns which are used for installing and fixing an indoor heat exchanger part, a fresh air part and an electric control part; the housing outlet 230 is disposed on either side of the rear housing or on the front housing; the rear housing is provided with a housing outlet 230 and a guiding and fixing structure assembled and fixed with the outlet volute of the air processing device 100. The air conditioner fan component is a single cross flow fan or a double cross flow fan. The air conditioner fan component is assembled by one or more of a cross flow fan, a centrifugal fan, an axial flow fan and an oblique flow fan. The fan 140 of the air treatment device 100 drives the air flow to be introduced into the fresh air inlet 1112 of the air treatment device 100 through the fresh air inlet 220 of the housing, or the air flow is introduced into the indoor air inlet 1111 of the air treatment device 100 through the indoor air inlet 210 of the housing, then enters the air duct 113, is humidified, purified, filtered and sterilized by the air treatment module 130, and then is blown to the outlet 230 of the housing through the outlet 112 to be blown into the room.
The utility model also provides an air conditioner, this air conditioner include the air condensing units and the air conditioning indoor set that are linked together through the refrigerant pipe, and the concrete structure of this air conditioning indoor set refers to above-mentioned embodiment, because this air conditioner has adopted the whole technical scheme of above-mentioned all embodiments, consequently has all beneficial effects that the technical scheme of above-mentioned embodiment brought at least, no longer gives unnecessary details here one by one.
The above is only the optional embodiment of the present invention, and not the scope of the present invention is limited thereby, all the equivalent structure changes made by the contents of the specification and the drawings are utilized under the inventive concept of the present invention, or the direct/indirect application in other related technical fields is included in the patent protection scope of the present invention.

Claims (12)

1. An air treatment device, comprising:
the air conditioner comprises a shell, a fan and a control device, wherein the shell is provided with an air inlet, an air outlet and an air channel for communicating the air inlet and the air outlet;
the support grid is arranged in the air duct; and
and the air treatment module is positioned in the air channel and is arranged on the support grating.
2. The air treatment device as claimed in claim 1, wherein the support grids are provided with at least two layers, the at least two layers of support grids are sequentially arranged in the air outlet direction of the air duct, an installation position is defined between two adjacent layers of support grids, and the air treatment module is arranged at the installation position.
3. The air treatment device as claimed in claim 2, wherein the grid holes of the support grids of two adjacent layers are correspondingly arranged in the air outlet direction of the air duct.
4. The air treatment device as claimed in claim 2, wherein a plurality of mounting positions are provided, a plurality of air treatment modules are provided, and a plurality of air treatment modules are correspondingly mounted at a plurality of mounting positions.
5. The air treatment device of claim 2, wherein the at least two layers of support grids are integrally disposed.
6. The air treatment device according to claim 1, wherein the air duct is provided with a forward opening, the air treatment module is installed in the air duct in a manner that the air treatment module can be drawn and pulled from the opening, a fan is further arranged in the air duct, the air treatment module is arranged on the air outlet side of the fan, the bottom wall of the opening is provided with the support grid, or the distance between the support grid adjacent to the bottom wall of the opening and the bottom wall of the opening is less than or equal to 50 mm.
7. An air treatment unit as claimed in claim 1, characterized in that the support grid comprises a plurality of transverse ribs and/or a plurality of longitudinal ribs; or the support grid comprises a plurality of annular ribs and a plurality of radiation ribs for connecting the annular ribs.
8. An air treatment unit as claimed in any one of claims 1 to 7, wherein the support grille is integral with the housing or is removably attached to the housing.
9. The air treatment device of claim 8, wherein the cross-section of the air duct is rectangular.
10. The air treatment device of claim 1, wherein a fan is further disposed in the air duct, and the air inlet includes an indoor air inlet and/or a fresh air inlet.
11. An indoor unit of an air conditioner, comprising:
a housing; and
an air treatment device as claimed in any one of claims 1 to 10, mounted within the cabinet.
12. An air conditioner comprising an outdoor unit of the air conditioner and the indoor unit of the air conditioner as claimed in claim 11.
CN202023194797.3U 2020-12-24 2020-12-24 Air treatment device, air conditioner indoor unit and air conditioner Active CN213955454U (en)

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CN202023194797.3U CN213955454U (en) 2020-12-24 2020-12-24 Air treatment device, air conditioner indoor unit and air conditioner

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Application Number Priority Date Filing Date Title
CN202023194797.3U CN213955454U (en) 2020-12-24 2020-12-24 Air treatment device, air conditioner indoor unit and air conditioner

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Publication Number Publication Date
CN213955454U true CN213955454U (en) 2021-08-13

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114183907A (en) * 2021-12-28 2022-03-15 浙江大学建筑设计研究院有限公司 Multifunctional combined air port device for air conditioner

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114183907A (en) * 2021-12-28 2022-03-15 浙江大学建筑设计研究院有限公司 Multifunctional combined air port device for air conditioner

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