Air conditioner

By setting up a movable air guide mechanism in the air conditioner, the air treatment unit is connected and partitioned with the outside world, solving the problem that existing air treatment equipment is difficult to meet users' needs for improving air quality, and effectively controlling indoor air quality is achieved.

CN114909712BActive Publication Date: 2025-05-27GD MIDEA AIR CONDITIONING EQUIP CO LTD +1
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Patent Information

Application Number
CN202110183865.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-02-08
Publication Date
2025-05-27
Estimated Expiration
2041-02-08

AI Technical Summary

Technical Problem

Existing air treatment equipment is difficult to meet users' higher air quality improvement needs.

Method used

An air conditioner is designed to control indoor air quality by providing a movable air guide mechanism in the case to realize the communication and partition between the air treatment unit and the outside world.

Benefits of technology

Through the mobile air guide mechanism, it is possible to easily achieve improved control of indoor air quality and meet higher needs of users.

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Abstract

The present invention discloses an air conditioner, comprising: a housing, an air treatment device and a wind guiding mechanism. An air outlet cavity is provided inside the housing, and a first air outlet communicating the air outlet cavity with the outside is formed on the side wall of the air outlet cavity. The air treatment device is arranged inside the housing and includes an air treatment unit. The air treatment device has an air inlet. The wind guiding mechanism is movably arranged inside the housing to communicate or cut off the inner cavity of the air treatment unit from the outside. When the inner cavity of the air treatment unit is communicated with the outside, the air entering from the air inlet flows into the air outlet cavity after passing through the air treatment unit and is blown out through the first air outlet. According to the air conditioner of the embodiment of the present invention, through the movement of the wind guiding mechanism, the control of improving the indoor air quality is conveniently realized, meeting the higher requirements of users.
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Description

Technical Field

[0001] The present invention relates to the technical field of air treatment equipment, and more particularly to an air conditioner. Background Art

[0002] With the consumption upgrade and the pursuit of high-quality living, the air treatment equipment in the related art, such as the air treatment equipment with fresh air function, is difficult to meet the higher demands of users. Summary of the Invention

[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. For this purpose, an object of the present invention is to provide an air conditioner, which can conveniently control the improvement of indoor air quality through the movement of the air guiding mechanism, and meet the higher demands of users.

[0004] The air conditioner according to an embodiment of the present invention includes: a housing, an air outlet cavity is provided in the housing, and a first air outlet communicating the air outlet cavity with the outside is formed on the side wall of the air outlet cavity; an air treatment device, the air treatment device is provided in the housing, the air treatment device includes an air treatment unit, and the air treatment device has an air inlet; an air guiding mechanism, the air guiding mechanism is movably provided in the housing to communicate or cut off the inner cavity of the air treatment unit from the outside. When the inner cavity of the air treatment unit is communicated with the outside, the air entering from the air inlet flows into the air outlet cavity after passing through the air treatment unit, and is blown out through the first air outlet.

[0005] The air conditioner according to an embodiment of the present invention can improve the indoor air quality through the provided air treatment device, and through the movable air guiding mechanism provided in the housing, by moving the air guiding mechanism, the communication and cut-off between the air treatment unit and the outside can be realized, so that the movement of the air guiding mechanism can be controlled, and the control of the improvement of indoor air quality can be conveniently realized, meeting the higher demands of users.

[0006] According to some embodiments of the present invention, the air outlet cavity is located in the middle of the housing in the height direction or adjacent to the middle of the housing in the height direction.

[0007] According to some embodiments of the present invention, the housing includes: a rear box body component; a front panel, the front panel is connected to the front side of the rear box body component, the front panel includes an upper panel and a lower panel arranged at intervals up and down, and the first air outlet is defined between the upper panel and the lower panel.

[0008] In some alternative embodiments of the present invention, the casing includes an air outlet frame member, the air outlet frame member is disposed on the front side of the rear box body member, the front panel is disposed on the front side of the air outlet frame member, a portion of the air outlet frame member opposite to the air treatment unit is open to form a disassembly opening, and the bottom panel can cover and open the disassembly opening.

[0009] According to some embodiments of the present invention, the air guiding mechanism is movably disposed in the air treatment device.

[0010] According to some embodiments of the present invention, the air treatment device includes an air outlet box body, the air outlet box body is disposed on the air treatment unit, an air outlet cavity communicating with the inner cavity of the air treatment unit is defined in the air outlet box body, a first air outlet communicating with the air outlet cavity is formed on the air outlet box body, the air guiding mechanism is movably disposed in the air outlet box body to open and close the first air outlet, and when the air guiding mechanism opens the first air outlet, the first air outlet is communicated with the first air outlet through the air outlet cavity.

[0011] In some alternative embodiments of the present invention, the air outlet box body is located below the air outlet cavity, the first air outlet is formed at the top of the air outlet box body, and the air guiding mechanism is movably disposed up and down in the air outlet box body.

[0012] Optionally, when the air guiding mechanism opens the first air outlet, at least a part of the air guiding mechanism is located in the air outlet cavity.

[0013] In some further embodiments of the present invention, the air treatment device includes an air guiding cover, the air guiding cover is disposed on the top of the air outlet box body and is located in the air outlet cavity, an air guiding cavity is defined between the top of the air outlet box body and the air guiding cover, at least a part of the air guiding outlet of the air guiding cavity is opposite to and communicated with the first air outlet, and when the air guiding mechanism opens the first air outlet, the first air outlet is communicated with the first air outlet through the air guiding cavity.

[0014] Optionally, when the air guiding mechanism opens the first air outlet, a part of the air guiding mechanism is located in the air guiding cavity.

[0015] In some alternative embodiments of the present invention, the air outlet box body includes a box body main body and an air outlet member, an installation opening is formed at the top of the box body main body, the air outlet member is disposed in the installation opening, the first air outlet is formed on the air outlet member, the air guiding mechanism includes an air guiding member and a mounting seat, the air guiding member is used to open and close the first air outlet, the mounting seat is connected below the air guiding member, and the mounting seat is movably disposed up and down through the air outlet member.

[0016] In some specific embodiments of the present invention, the air outlet member includes: an air outlet portion provided at the installation opening, and a first air outlet is formed on the air outlet portion; an installation portion connected below the air outlet portion and located in the air outlet cavity, and a receiving cavity with an open top is defined in the installation portion, and the installation seat is movably disposed up and down in the receiving cavity.

[0017] Optionally, the air outlet portion includes an air outlet grille located at the first air outlet, and the air outlet grille includes at least one sub-air outlet grille disposed obliquely, and the obliquely disposed sub-air outlet grille extends upwardly in the direction from the connection between the air outlet portion and the installation portion to the outer edge of the air outlet portion.

[0018] Optionally, the air outlet portion includes an air outlet grille located at the first air outlet, and the equivalent diameter of the air dispersion holes on the air outlet grille is 3 mm - 8 mm.

[0019] In some alternative embodiments of the present invention, at least one second air outlet is formed on the circumferential side wall of the air outlet box body, and a second air outlet is formed on the casing opposite to and communicating with the second air outlet.

[0020] Optionally, a wind deflector for opening and closing the second air outlet is provided at the second air outlet.

[0021] In some alternative embodiments of the present invention, the air treatment unit includes: a first fan component for driving air flow to enter the air treatment device from the air inlet; a humidifying component provided in the air outlet box body, and an air outlet cavity is defined between the humidifying component and the air outlet box body; a purification component provided between the air outlet box body and the first fan component, and a purification cavity of the purification component communicates with the air outlet cavity.

[0022] Optionally, the first fan component, the purification component and the air outlet box body are arranged in sequence in the upward direction.

[0023] In some specific embodiments of the present invention, the humidifying component includes: a humidifying bracket having a humidifying water tank therein, and the humidifying bracket is slidably disposed in the air outlet box body; a wet film bracket provided on the humidifying bracket; a humidifying film disposed on the wet film bracket and a part of the humidifying film is located in the humidifying water tank, and a humidifying water tank is provided on the humidifying bracket and located on the side of the wet film bracket away from the air outlet cavity, and the humidifying water tank is used to supply water to the humidifying water tank.

[0024] Further, the air outlet box body is located below the air outlet cavity. The top of the air outlet box body forms the first air outlet. The air guiding mechanism is movably arranged up and down on the air outlet box body. At least one second air outlet is formed on the circumferential side wall of the air outlet box body. A second air outlet is formed on the machine shell and is opposite to and communicated with the second air outlet. The humidifying film is adjacent to the second air outlet and is arranged opposite to the second air outlet.

[0025] In some specific embodiments of the present invention, the purification component includes multiple purification elements stacked along the flowing direction of the air flow, and each purification element is slidably arranged in the purification cavity.

[0026] According to some embodiments of the present invention, there are multiple air inlets, and at least one of the air inlets is adapted to communicate with outdoor air, and the remaining air inlets are adapted to communicate with indoor air.

[0027] The additional aspects and advantages of the present invention will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] The above and / or additional aspects and advantages of the present invention will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, wherein:

[0029] Figure 1 is a partially exploded schematic view of the structure of the air treatment device in the embodiment of the present invention;

[0030] Figure 2 is a partially exploded schematic view of the structure of the air treatment device in the embodiment of the present invention Figure 1 ;

[0031] Figure 3 is a partially exploded schematic view of the structure of the air treatment device in the embodiment of the present invention Figure 2 ;

[0032] Figure 4 is Figure 3 a partial enlarged schematic view at A of

[0033] Figure 5 is a schematic view of the cooperation between the driving part and the guiding part in the embodiment of the present invention;

[0034] Figure 6 is a partially exploded schematic view of the structure of the air treatment device in the embodiment of the present invention Figure 3 ;

[0035] Figure 7 is an exploded schematic view of the driving assembly in the embodiment of the present invention;

[0036] Figure 8 is a partial structural diagram of the air handling device in the embodiment of the present invention;

[0037] Figure 9 is Figure 8 a partial exploded view of the air handling device in

[0038] Figure 10 is a structural diagram of the air outlet part in the embodiment of the present invention;

[0039] Figure 11 is an exploded view of the indoor unit of the air conditioner in the embodiment of the present invention;

[0040] Figure 12 is Figure 11 a partial enlarged view of the B position in

[0041] Figure 13 is a three-dimensional structural diagram of the indoor unit of the air conditioner in the embodiment of the present invention;

[0042] Figure 14 is the front view of the indoor unit of the air conditioner in the embodiment of the present invention.

[0043] Reference numerals:

[0044] 1000, indoor unit of the air conditioner;

[0045] 10, air outlet box body;

[0046] 101, first air outlet; 102, second air outlet; 103, air outlet cavity;

[0047] 110, box body main body; 1101, installation opening; 1102, accommodation groove;

[0048] 120, air outlet part; 1201, air outlet part; 12011, sub-air outlet grille; 12012, air diffusing holes; 1202, installation part; 1203, accommodation cavity; 1204, first open opening;

[0049] 130, guiding part; 1301, guiding cavity; 1302, second open opening;

[0050] 140, fixing seat of the air guiding mechanism;

[0051] 20, air guiding mechanism;

[0052] 202, installation notch;

[0053] 210, air guiding part; 2101, air guiding inclined surface; 220, installation seat;

[0054] 30, driving assembly;

[0055] 310. Driving part; 320. Driving mechanism; 3201. Gear; 3202. Driving motor; 3203. Driving box; 301. Avoidance opening; 302. Second mounting hole; 303. Box body convex part; 304. Box body clamping hole; 305. Screw post; 306. Mounting convex ring; 32031. First box body; 32032. Second box body;

[0056] 40. Guide structure;

[0057] 410. First guiding part; 4101. Rib; 420. Second guiding part; 4201. Groove;

[0058] 510. First limiting convex block; 520. Second limiting convex block; 530. Third limiting block;

[0059] 60. Mounting part;

[0060] 601. Positioning convex block; 602. First mounting hole;

[0061] 200. Air treatment device;

[0062] 70. Air guiding cover; 701. Air guiding cavity;

[0063] 2. Air treatment unit; 201. Air inlet;

[0064] 21. First fan component;

[0065] 22. Humidifying component; 221. Humidifying water tank; 222. Humidifying bracket; 223. Wet film bracket;

[0066] 23. Purifying component; 231. Purifying part;

[0067] 700. Air heat exchange device;

[0068] 720. Second fan component;

[0069] 730. Heat exchanger component;

[0070] 800. Machine shell; 801. Front panel; 8011. Upper panel; 8012. Lower panel; 802. Air outlet frame component; 8021. Disassembly opening; 803. Rear box body component; 804. Top cover; 805. Chassis; 806. Heat exchange air inlet; 807. Heat exchange air outlet; 808. First air outlet; 809. Second air outlet; 810. Air guiding plate; 811. Air outlet cavity; 812. Indoor air inlet. Detailed implementation mode

[0071] Embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention and should not be construed as a limitation of the present invention.

[0072] An air conditioner according to an embodiment of the present invention will be described below with reference to the accompanying drawings.

[0073] As Figures 11 - 14 shown, the air conditioner according to an embodiment of the present invention includes a housing 800, an air treatment device 200, and an air guiding mechanism 20.

[0074] An air outlet cavity 811 is provided in the housing 800. A first air outlet 808 communicating the air outlet cavity 811 with the outside is formed on the side wall of the air outlet cavity 811. For example, the first air outlet 808 is formed on the front side wall of the air outlet cavity 811, and a part of the housing 800 constitutes the side wall of the air outlet cavity 811. Herein, when the air conditioner is placed in an indoor space for operation, the outside refers to the indoor space.

[0075] The air treatment device 200 is provided in the housing 800. The air treatment device 200 includes an air treatment unit 2. The air treatment device 200 has an air inlet 201. When the air treatment device 200 is operating, air flows into the air treatment unit 2 through the air inlet 201, and this air flow can be humidified, purified, etc. by the air treatment unit 2. If the air inlet 201 is communicated with indoor air, the air treatment unit 2 processes the indoor air and then flows into the room, improving the indoor air quality; if the air inlet 201 is communicated with outdoor air, the air treatment unit 2 processes the introduced outdoor air and then flows into the room, while introducing fresh air and processing the fresh air, further improving the indoor air quality.

[0076] The air guiding mechanism 20 is movably provided in the housing 800 to connect or disconnect the inner cavity of the air treatment unit 2 from the outside. When the inner cavity of the air treatment unit 2 is communicated with the outside, the air entering through the air inlet 201 flows into the air outlet cavity 811 after passing through the air treatment unit 2 and is blown out through the first air outlet 808. By providing a movable air guiding mechanism in the housing, through the movement of the air guiding mechanism, the connection and disconnection between the air treatment unit and the outside can be realized, so that the movement of the air guiding mechanism can be controlled, and the control of improving the indoor air quality can be conveniently realized to meet the higher requirements of users.

[0077] The air conditioner includes an air heat exchange device 700. The air treatment device 200 is located on one side of the air heat exchange device 700. For example, the air treatment device 200 is located above or below the air heat exchange device 700. The air heat exchange device 700 may include a second fan component 720 and a heat exchanger component 730. The air heat exchange device 700 can exchange heat with air to adjust the indoor temperature.

[0078] Optionally, the air conditioner may be a split air conditioner. For example, the air conditioner may be a split wall-mounted air conditioner or a split floor-standing air conditioner; the air conditioner may also be an integrated air conditioner. When the air conditioner is a split air conditioner, the air conditioner includes an air conditioner indoor unit 1000 and an air conditioner outdoor unit, where the air conditioner indoor unit 1000 includes the above-mentioned air treatment device 200 and air heat exchange device 700.

[0079] For the air conditioner according to an embodiment of the present invention, by providing the air treatment device 200, the indoor air quality can be improved. And by providing a movable air guiding mechanism 20 in the housing 800, through the movement of the air guiding mechanism 20, the communication and isolation between the air treatment unit 2 and the outside can be realized. Thus, the movement of the air guiding mechanism 20 can be controlled to conveniently realize the control of the improvement of the indoor air quality and meet the higher requirements of users.

[0080] According to some embodiments of the present invention, referring to Figures 11 - 14 , the air outlet cavity 811 is located in the middle of the housing 800 in the height direction or adjacent to the middle of the housing 800 in the height direction. Thus, by locating the air outlet cavity 811 in the middle of the housing 800 in the height direction or adjacent to the middle of the housing 800 in the height direction, the air heat exchange device 700 of the air conditioner can be located above the air outlet cavity 811, and the air treatment device 200 of the air conditioner can be located below the air outlet cavity 811, which can make the overall structural layout reasonable. And the first air outlet 808 is correspondingly arranged with the air outlet cavity 811, and the first air outlet 808 is located in the middle of the housing 800 in the height direction or adjacent to the middle of the housing 800 in the height direction, so that the air flow after being processed by the air treatment unit 2 of the air treatment device 200 is blown out from a position approximately in the middle of the housing 800 in the height direction.

[0081] According to some embodiments of the present invention, referring to Figures 11 - 14 , the housing 800 includes: a rear box body component 803 and a front panel 801. The front panel 801 is connected to the front side of the rear box body component 803. The front panel 801 includes an upper panel 8011 and a lower panel 8012 which are arranged at intervals up and down. The first air outlet 808 is defined between the upper panel 8011 and the lower panel 8012. Thus, it is convenient to form the first air outlet 808, and the air outlet area of the first air outlet 808 is large, which improves the air output.

[0082] In some embodiments of the present invention, the housing 800 includes an air outlet frame member 802. The air outlet frame member 802 is disposed on the front side of the rear box body member 803, and the front panel 801 is disposed on the front side of the air outlet frame member 802. A part of the air outlet frame member 802 opposite to the air handling unit 2 is open to form a disassembly opening 8021, and the bottom panel 8012 can cover and open the disassembly opening 8021. Thus, it is convenient to replace and maintain components such as the purification and humidification components of the air handling unit 2 of the air handling device 200, such as replacing the purification module, the humidification module, etc. For example, the bottom panel 8012 can be detachably disposed on the front side of the air outlet frame member 802. When the bottom panel 8012 is installed on the front side of the air outlet frame member 802, the bottom panel 8012 covers the disassembly opening 8021; when the bottom panel 8012 is removed from the front side of the air outlet frame member 802, the disassembly opening 8021 can be opened, facilitating the replacement and maintenance of components such as the purification and humidification components of the air handling unit 2 of the air handling device 200. Another example, the bottom panel 8012 can be rotatably disposed on the front side of the air outlet frame member 802. By rotating the bottom panel 8012, the bottom panel 8012 can cover and open the disassembly opening 8021. When the bottom panel 8012 rotates to the front side of the air outlet frame member 802, the bottom panel 8012 covers the disassembly opening 8021; when the bottom panel 8012 rotates to a position outside the front side of the air outlet frame member 802, the disassembly opening 8021 can be opened, facilitating the replacement and maintenance of components such as the purification and humidification components of the air handling unit 2 of the air handling device 200.

[0083] According to some embodiments of the present invention, referring to Figure 1 、 Figure 11 and Figure 12 , the air guiding mechanism 20 is movably disposed on the air handling device 200. Thus, it is convenient for the installation of the air guiding mechanism 20, and also makes the air guiding mechanism 20 and the air handling device 200 form an integral module, making the overall structure of the machine compact.

[0084] According to some alternative embodiments of the present invention, referring to Figure 1 、 Figure 8 、 Figure 11 and Figure 12, the air handling device 200 includes an air outlet box body 10. The air outlet box body 10 is arranged in the air handling unit 2. An air outlet cavity 103 communicating with the inner cavity of the air handling unit 2 is defined in the air outlet box body 10. A first air outlet 101 communicating with the air outlet cavity 103 is formed on the air outlet box body 10. The air guiding mechanism 20 is movably arranged in the air outlet box body 10 to open and close the first air outlet 101. When the air guiding mechanism 20 opens the first air outlet 101, the first air outlet 808 communicates with the first air outlet 101 through the air outlet cavity 811. When the air handling device 200 is working, the air guiding mechanism 20 opens the first air outlet 101. The air flow entering from the air inlet 201 flows into the air outlet cavity 103 of the air outlet box body 10 after being processed by the air handling unit 2, and then flows into the air outlet cavity 811 through the first air outlet 101, and finally blows into the room through the first air outlet 8808. By providing the air outlet box body 10 and movably arranging the air guiding mechanism 20 in the air outlet box body 10, the connection and disconnection between the air handling unit 2 and the outside can be conveniently realized through the movement of the air guiding mechanism 20.

[0085] In some alternative embodiments of the present invention, the air outlet box body 10 can be located below the air outlet cavity 811. The first air outlet 101 is formed at the top of the air outlet box body 10. The air guiding mechanism 20 is movably arranged up and down in the air outlet box body 10. Thus, the structural layout is reasonable. When the air handling device 200 is working, the air guiding mechanism 20 opens the first air outlet 101. The air flow entering from the air inlet 201 flows into the air outlet cavity 103 of the air outlet box body 10 after being processed by the air handling unit 2, and then flows upward into the air outlet cavity 811 through the first air outlet 101, and finally blows into the room through the first air outlet 8808. By providing the air outlet box body 10 and movably arranging the air guiding mechanism 20 in the air outlet box body 10, the connection and disconnection between the air handling unit 2 and the outside can be conveniently realized through the movement of the air guiding mechanism 20, and the top air outlet effect of the air handling device 200 can be achieved. By moving the air guiding mechanism 20 up and down, the opening and closing of the first air outlet 101 can be conveniently realized. When the air guiding mechanism 20 moves upward to the first position, the air guiding mechanism 20 opens the first air outlet 101; when the air guiding mechanism 20 moves downward to the second position, the air guiding mechanism 20 closes the first air outlet 101.

[0086] The air handling device 200 further includes a driving component 30. The driving component 30 is configured to drive the air guiding mechanism 20 to move up and down, so as to realize the automatic lifting of the air guiding mechanism 20, and thus realize the automatic opening and closing of the first air outlet 101. When it is necessary to blow air out through the first air outlet 101, the driving component 30 drives the air guiding mechanism 20 to move upward. The air guiding mechanism 20 rises and gradually moves away from the air outlet box body 10, opening the first air outlet 101. At this time, the air handling device 200 can realize top air outlet. When the first air outlet 101 does not need to blow air, the driving component 30 drives the air guiding mechanism 20 to move downward. The air guiding mechanism 20 gradually approaches the air outlet box body 10 and cooperates with the first air outlet 101 to close the first air outlet 101.

[0087] By providing the first air outlet 101 at the top of the air outlet box body 10, top air outlet can be realized, providing a new air outlet mode. By driving the air guiding mechanism 20 to lift and lower through the driving component 30, the opening and closing of the first air outlet 101 at the top of the air outlet box body 10 can be conveniently realized, achieving the effect of top air outlet, which can improve the user experience and further meet the user's needs.

[0088] In some alternative embodiments of the present invention, referring to Figure 13 and Figure 14 , when the air guiding mechanism 20 opens the first air outlet 101, at least a part of the air guiding mechanism 20 is located in the air outlet cavity 811. For example, a part of the air guiding mechanism 20 can be located in the air outlet cavity 811. Thus, the space of the air outlet cavity 811 can be fully utilized, making the overall structure compact.

[0089] In some alternative embodiments of the present invention, referring to Figures 11 - 14, the air handling device 200 includes an air guiding hood 70. The air guiding hood 70 is provided at the top of the air outlet box body 10 and is located within the air outlet cavity 811. An air guiding cavity 701 is defined between the top of the air outlet box body 10 and the air guiding hood 70. The air guiding cavity 701 is located within the air outlet cavity 811. At least a part of the air guiding outlet of the air guiding cavity 701 faces and communicates with the first air outlet 808. When the air guiding mechanism 20 opens the first air outlet 101, the first air outlet 808 communicates with the first air outlet 101 through the air guiding cavity 701. When the air guiding mechanism 20 opens the first air outlet 101, the air guiding cavity 701 communicates with the first air outlet 101. After the air flow flowing out from the first air outlet 101 is guided by the air guiding cavity 701, it can flow towards the indoor through the first air outlet 808. By providing the air guiding hood 70, when the air flow processed by the air handling unit 2 flows through the air outlet cavity 103 and the first air outlet 101 into the air outlet cavity 811, it can play a better guiding role for the air flow and guide the air flow to the first air outlet 808 for outward air outlet. Among them, the outer wall of the air guiding hood 70 can be in contact with the inner wall of the casing 800, so that the volume of the air guiding cavity 701 is approximately the same as the volume of the air outlet cavity 811; the outer wall of the air guiding hood 70 can be spaced apart from the inner wall of the casing 800, so that the volume of the air guiding cavity 701 is significantly smaller than the volume of the air outlet cavity 811.

[0090] Optionally, when the air guiding mechanism 20 opens the first air outlet 101, a part of the air guiding mechanism 20 is located within the air guiding cavity 701. Thus, the space of the air guiding cavity 701 can be fully utilized, making the overall structure compact.

[0091] In some alternative embodiments of the present invention, referring to Figures 1 - 3 , Figures 8 - 9 , the air outlet box body 10 includes a box body main body 110 and an air outlet member 120. An installation opening 1101 is formed at the top of the box body main body 110. The air outlet member 120 is provided at the installation opening 1101. A first air outlet 101 is formed on the air outlet member 120. The air guiding mechanism 20 includes an air guiding member 210 and a mounting seat 220. The air guiding member 210 is used to open and close the first air outlet 101. The mounting seat 220 is connected below the air guiding member 210. The mounting seat 220 is movably penetrated through the air outlet member 120 in the up and down direction. By movably penetrating the mounting seat 220 of the air guiding mechanism 20 through the air outlet member 120 of the air outlet box body 10, the overall structure can be made compact, and the air outlet member 120 can play a certain guiding role in the up and down movement of the mounting seat 220, making the movement of the air guiding mechanism 20 more stable.

[0092] In some specific embodiments of the present invention, referring to Figures 1 - 3 , Figures 6 - 9, the air outlet member 120 includes: an air outlet portion 1201 and a mounting portion 1202. The air outlet portion 1201 is provided at the mounting opening 1101, and a first air outlet 101 is formed on the air outlet portion 1201. The mounting portion 1202 is connected below the air outlet portion 1201 and is located within the air outlet cavity 103. An accommodation cavity 1203 with an open top is defined within the mounting portion 1202, and the mounting base 220 is disposed within the accommodation cavity 1203 so as to be movable up and down. By configuring the air outlet member 120 to include the air outlet portion 1201 and the mounting portion 1202 connected up and down, it not only facilitates the formation of the first air outlet 101, but also facilitates the installation and movement of the mounting base 220 of the air guiding mechanism 20. Since the mounting base 220 is disposed within the accommodation cavity 1203 so as to be movable up and down, when the air guiding mechanism 20 moves, the accommodation cavity 1203 has a good guiding effect on the mounting base 220, making the movement of the air guiding mechanism 20 more stable.

[0093] Further, referring to Figures 1 - 3 and Figure 10 , the air outlet portion 1201 includes an air outlet grille located at the first air outlet 101. The air outlet grille includes at least one sub-air outlet grille 12011 disposed obliquely, and the obliquely disposed sub-air outlet grille 12011 extends obliquely upward in the direction from the connection between the air outlet portion 1201 and the mounting portion 1202 to the outer edge of the air outlet portion 1201. By providing the air outlet grille at the first air outlet 101, it can play a role in dispersing the air flow, making the air outlet gentle, and since the air outlet grille includes at least one obliquely disposed sub-air outlet grille 12011, it can reduce the occupied space of the air outlet grille in the horizontal direction, making the air outlet structure compact, and can better guide the air flow in the air outlet cavity 103 into the air outlet cavity 811.

[0094] Optionally, referring to Figure 10 , the air outlet portion 1201 includes an air outlet grille located at the first air outlet 101, and the equivalent diameter of the air dispersion holes 12012 on the air outlet grille is 3 mm - 8 mm. The equivalent diameter of the air dispersion holes 12012 can take any value within 3 mm - 8 mm. Among them, the equivalent diameter of the air dispersion holes 12012 refers to the diameter of a circle with the same cross-sectional area as the air dispersion holes 12012. For example, the equivalent diameter of the air dispersion holes 12012 can be 3 mm, 3.5 mm, 4 mm, 4.5 mm, 5 mm, 5.5 mm, 6 mm, 6.5 mm, 7 mm, 7.5 mm, or 8 mm. Thus, on the one hand, it can ensure that the equivalent diameter of the air dispersion holes 12012 is not too small, so as to guarantee the air volume discharged from the air dispersion holes 12012; on the other hand, it can ensure that the equivalent diameter of the air dispersion holes 12012 is not too large, so as to be conducive to ensuring the weakening effect of the air dispersion holes 12012 on the air flow. At the same time, it can prevent foreign objects from entering and leaving the housing through the air dispersion holes 12012, which is conducive to ensuring the reliability of the air conditioner operation.

[0095] In some embodiments of the present invention, as Figure 1 shown, the air outlet box body 10 may include a box body main body 110 and an air outlet member 120. An installation opening 1101 is formed at the top of the box body main body 110. The air outlet member 120 may be disposed in the installation opening 1101. A first air outlet 101 is formed on the air outlet member 120. After the air outlet box body 10 is ventilated, the air flow enters the box body main body 110 and then is blown out through the first air outlet 101 on the air outlet member 120. The driving assembly 30 includes a driving part 310 and a driving mechanism 320. The driving part 310 may be disposed on the air guiding mechanism 20, and the driving mechanism 320 may be disposed on the air outlet member 120. The driving mechanism 320 and the driving part 310 may be in transmission cooperation, so that the driving part 310 can be driven to move up and down. By setting the air outlet box body 10 to include the box body main body 110 and the air outlet member 120, and setting the air guiding mechanism 20 on the air outlet member 120, it is convenient for the installation and fixation of the driving mechanism 20, and the structure is compact. And adopting this layout method is convenient to realize the transmission cooperation between the driving mechanism 320 and the driving part 310, and the layout can be made compact and space can be saved.

[0096] Optionally, as Figure 6 and Figure 7 shown, the driving mechanism 320 includes: a gear transmission mechanism and a driving motor 3202. The gear transmission mechanism includes at least one gear 3201. The driving part 310 is a rack, and the gear 3201 at the end of the gear transmission mechanism meshes with the rack. The driving motor 3202 is connected to the gear transmission mechanism to drive the gear transmission mechanism to move. For example, the driving motor 3202 drives the gear 3201 at the end to rotate clockwise. After the gear 3201 meshes with the rack, it drives the rack to move upward, and the rack drives the air guiding mechanism 20 to move upward to open the first air outlet 101; when the driving motor 3202 drives the gear 3201 at the end to rotate counterclockwise, the gear 3201 meshes with the rack and then drives the rack to move downward, and the air guiding mechanism 20 moves downward to close the first air outlet 101. Adopting this way of using gear and rack cooperation to drive the lifting of the air guiding mechanism has a simple structure, stable transmission and strong reliability.

[0097] Specifically, as Figure 6 and Figure 7 ​As shown, the gear transmission mechanism may include a gear 3201. When the gear transmission mechanism includes a gear 3201, this gear 3201 is the gear 3201 at the end of the gear transmission mechanism. This gear 3201 is connected to the motor shaft of the driving motor 3202. The gear 3201 meshes with the rack. As the driving motor 3202 drives the gear 3201 to rotate, it drives the rack to move up and down, so that the rack drives the air guiding mechanism 20 to move up or down. Using a single gear 3201 can simplify the structure of the driving mechanism 320 and reduce costs. Of course, the gear transmission mechanism can also be multiple gears meshing with each other in sequence, where the gear at the starting end is connected to the motor shaft of the driving motor 3202, and the gear at the end meshes with the rack, which can also drive the air guiding mechanism 20 to move up and down.

[0098] Further, as Figure 6 and Figure 7 shown, the driving mechanism 320 may further include a driving box 3203. The driving box 3203 can be connected to the air outlet member 120. The driving motor 3202 and the gear transmission mechanism can both be disposed inside the driving box 3203. An avoidance opening 301 is formed on the driving box 3203. The tooth part of the gear 3201 at the end of the gear transmission mechanism extends out of the driving box 3203 through the avoidance opening 301 and meshes with the rack (i.e., the driving part 310), which facilitates the cooperation between the gear 3201 at the end of the gear transmission mechanism and the driving part 310 outside the driving box 3203. The driving box 3203 can provide an installation position for the gear transmission mechanism and the driving motor 3202, and can also protect the gear transmission mechanism and the driving motor 3202, preventing dust or other contaminants from entering the gear-rack meshing, thereby ensuring the overall performance of the driving mechanism 320.

[0099] In some specific embodiments of the present invention, the gear transmission mechanism includes a gear 3201. An installation convex ring 306 is formed on the inner wall of the driving box 3203. The installation convex ring 306 is disposed adjacent to the avoidance opening 301 on the driving box 3203. One end of the gear shaft of this gear 3201 is connected to and fixed relative to the motor shaft of the driving motor 3202. The other end of the gear shaft of this gear 3201 is received and fitted in the fitting hole defined by the installation convex ring 306, and the other end of the gear shaft of this gear 3201 is rotatable relative to the fitting hole defined by the installation convex ring 306. By providing the installation convex ring 306, the installation of the gear 3201 can be made more stable and reliable, so that the transmission of the gear 3201 is more stable and reliable.

[0100] In some embodiments, as Figure 2 and Figure 6As shown, the drive box 3203 is detachably provided on the air outlet member 120. Specifically, the drive box 3203 can be detachably provided on the air outlet member 120 by bolts. For example, the drive box 3203 is provided with a second mounting hole 302, and the air outlet member 120 is provided with a threaded hole. The fastener passes through the second mounting hole 302 and mates with the threaded hole.

[0101] According to some embodiments of the present invention, with reference to Figure 8 and Figure 9 , the drive assembly 30 includes: a drive part 310 and a drive mechanism 320. The drive part 310 is provided on the air guiding mechanism 20, and the drive mechanism 320 is provided in the air outlet box body 10. The drive mechanism 320 is drivably engaged with the drive part 310 to drive the air guiding mechanism 20 to move up and down. The drive mechanism 320 includes a gear transmission mechanism and a drive motor 3202. The gear transmission mechanism includes at least one gear 3201. The drive part 310 is a rack. The gear 3201 at the end of the gear transmission mechanism meshes with the rack, and the drive motor 3202 is connected to the gear transmission mechanism to drive the gear transmission mechanism to move. When the drive motor 3202 drives the gear transmission mechanism to move, the gear 3201 at the end of the gear transmission mechanism meshes with the rack to drive the rack to move up and down, thereby driving the air guiding mechanism 20 to move up and down. By adopting this method of using a gear and rack to drive the lifting of the air guiding mechanism, the structure is simple, the transmission is stable, and the reliability is strong.

[0102] Wherein, an air outlet cavity 103 communicating with the first air outlet 101 is defined in the air outlet box body 10, and the drive motor 3202 is located outside the air outlet cavity 103. Placing the drive motor 3202 outside the air outlet cavity 103 can avoid the influence of the air flow in the air outlet cavity 103 on the drive motor 3202. For example, when the air flow entering the air outlet cavity 103 is a humidified air flow, since the humidity of the air flow is relatively high, it will have an adverse effect on the drive motor 3202. Through this setting, the influence of the air flow in the air outlet cavity 103 on the drive motor 3202 can be avoided, the reliability of the drive motor 3202 can be improved, and the service life of the drive motor 3202 can be extended.

[0103] Optionally, at least a part of the gear transmission mechanism is located in the air outlet cavity 103. For example, the entire gear transmission mechanism can be located in the air outlet cavity 103; or a part of the gear transmission mechanism can be located in the air outlet cavity 103, and the other part of the gear transmission mechanism can be located outside the air outlet cavity 103. By arranging at least a part of the gear transmission mechanism in the air outlet cavity 103, the overall structure is made compact.

[0104] Optionally, with reference to Figure 9, a receiving groove 1102 may be formed on the outer side wall of the air outlet box body 10. The receiving groove 1102 may penetrate through the side wall of the air outlet box body 10. The driving motor 3202 may be located outside the air outlet cavity 103 and received in the receiving groove 1102, thus making the structure compact.

[0105] Optionally, referring to Figure 8 , the gear transmission mechanism includes a plurality of gears 3201 that are sequentially engaged. For example, the gear transmission mechanism includes three gears 3201 that are sequentially engaged. Thus, when the driving motor 3202 is disposed outside the air outlet cavity 103, by setting the gear transmission mechanism to include a structure of a plurality of gears 3201, the transmission cooperation between the gear transmission mechanism and the rack can be conveniently achieved, and the structural design of the gear transmission mechanism is more flexible. The specification size of a single gear 3201 can be set to be smaller, reducing the weight of the gear transmission mechanism.

[0106] For example, in Figure 8 and Figure 9 's example, the driving mechanism 320 further includes a driving box 3203. The gear transmission mechanism is disposed in the driving box 3203. The gear transmission mechanism includes a plurality of gears 3201 that are sequentially engaged. The motor shaft of the driving motor 3202 extends into the driving box 3203 and is connected to the gear 3201 at the starting end of the gear transmission mechanism. An air outlet cavity 103 is defined in the air outlet box body 10. The above-mentioned receiving groove 1102 may be formed on the outer side wall of the air outlet box body 10. The gear 3201 at the starting end and the part of the driving box 3203 that accommodates the gear 3201 at the starting end are located in the above-mentioned receiving groove 1102, and the remaining gears 3201 and other parts of the driving box 3203 are located in the air outlet cavity 103. The driving motor 3202 is located outside the air outlet cavity 103 and in the receiving groove 1102. Thus, the overall structure is made compact, and the airflow in the air outlet cavity 103 can be prevented from affecting the driving motor 3202, improving the reliability of the driving motor 3202 and prolonging the service life of the driving motor 3202.

[0107] Further, the air outlet box body 10 may include a box body main body 110 and an air outlet member 120. An installation opening 1101 is formed at the top of the box body main body 110. The air outlet member 120 may be disposed at the installation opening 1101. A first air outlet 101 is formed on the air outlet member 120. An air outlet cavity 103 is defined inside the box body main body 110. The above-mentioned accommodation groove 1102 may be formed on the outer side wall of the box body main body 110. The lower part of the air outlet member 120 (such as the following installation part 1202) is located inside the air outlet cavity 103. The driving box 3203 is connected to the lower part of the air outlet member 120 and the driving box 3203 is connected to the box body main body 110. For example, the driving box 3203 is connected to the lower part of the air outlet member 120 through fasteners such as screws, and the driving box 3203 is connected to the box body main body 110 through a snap structure. A snap is formed on the driving box 3203, and a snap hole is formed on the box body main body 110. By fitting the snap on the driving box 3203 into the snap hole on the box body main body 110, the snap connection between the driving box 3203 and the box body main body 110 can be realized. By connecting the driving box 3203 to the lower part of the air outlet member 120 and connecting the driving box 3203 to the box body main body 110, the installation and fixation of the driving box 3203 can be made more stable and reliable.

[0108] It should be noted that the "multiple" described in the present invention means two or more.

[0109] In some embodiments, as Figure 3 and Figure 6 shown, the air outlet member 120 may include an air outlet part 1201 and an installation part 1202. The air outlet part 1201 may be disposed at the installation opening 1101, and a first air outlet 101 is formed on the air outlet part 1201; the installation part 1202 may be connected below the air outlet part, and the driving mechanism 320 may be connected to the installation part 1202 and located below the air outlet part 1201. By setting the air outlet member 120 to include the air outlet part 1201 and the installation part 1202, it is convenient to form the first air outlet 101, and at the same time, it is convenient to install and fix the driving mechanism 320, and the overall structure is made more compact. In addition, since the driving mechanism is located below the air outlet part 1201, when the air flow entering the box body main body 110 flows towards the air outlet part 1201, part of the air flow can pass through the driving mechanism 320 to realize heat dissipation of the driving mechanism 320.

[0110] Further, the projection of the installation part 1202 on the horizontal plane and the projection of the driving mechanism 320 on the horizontal plane are both located inside the outer contour line of the projection of the air outlet part 1201 on the horizontal plane. In short, the installation part 1202 and the driving mechanism 320 will not extend out of the air outlet part 1201 in the horizontal direction, which can realize a compact structural layout and save the internal space of the air outlet box body 10.

[0111] In some embodiments, as Figure 3As shown, the air outlet part 1201 includes an air outlet grille located at the first air outlet 101. The air outlet grille includes at least one sub-air outlet grille 12011 arranged obliquely. The obliquely arranged sub-air outlet grille 12011 extends upwardly in the direction from the connection of the air outlet part 1201 with the installation part 1202 to the outer edge of the air outlet part 1201. When the air guiding mechanism 20 is matched with the air outlet part 1201, the obliquely extending sub-air outlet grille 12011 is conducive to the air guiding mechanism 20 being fitted onto the air outlet part 1201, making the positioning and installation between the air guiding mechanism 20 and the air outlet part 1201 more reliable. By setting the air outlet grille to include at least one obliquely arranged sub-air outlet grille 12011, the driving mechanism 320 is located below the obliquely arranged sub-air outlet grille 12011. The obliquely arranged sub-air outlet grille 12011 can provide more installation space for the avoidance of the driving mechanism 320, and the driving mechanism 320 can be hidden, so that a compact layout can be achieved and space can be saved.

[0112] Optionally, as Figure 3 shown, the air outlet grille includes a plurality of obliquely arranged sub-air outlet grilles 12011, wherein the driving mechanism 320 is located below the sub-air outlet grille 12011 with the largest inclination angle. The inclination angle is the angle between the sub-air outlet grille 12011 and the horizontal plane. The space below the sub-air outlet grille 12011 with the largest inclination angle is larger than that at other sub-air outlet grilles 12011, and more space can be provided for the avoidance of the driving mechanism 320. Installing the driving mechanism 320 at this position can achieve a more compact layout to a greater extent and save more space.

[0113] In some specific embodiments, as Figure 3 shown, the air outlet grille includes four sub-air outlet grilles 12011. Among them, two sub-air outlet grilles 12011 cover the left part and the right part of the first air outlet 101, and the other two sub-air outlet grilles 12011 cover the front part and the rear part of the first air outlet 101, and the sub-air outlet grille 12011 covering the rear part of the first air outlet 101 has the largest inclination angle. By adopting four obliquely arranged sub-air outlet grilles 12011 arranged in the front, rear, left and right directions, a groove structure can be formed at the first air outlet 101 of the air outlet part 1201, which is convenient for the air guiding mechanism 20 to be fitted onto the air outlet part 1201 when it is closed. And the sub-air outlet grille 12011 covering the rear part of the first air outlet 101 has the largest inclination angle, so a larger space can be avoided in the height direction below this position. The driving mechanism 320 is arranged below this position, which is convenient for the installation and fixation of the driving mechanism 320, can achieve a more compact layout to a greater extent, save more space, and can reduce the influence on the air outlet, which is beneficial to the air being blown out from the front part.

[0114] In some examples, the air outlet member 120 can be detachably disposed at the installation opening 1101. Since the driving mechanism 320 is disposed on the air outlet member 120, the detachable disposition of the air outlet member 120 at the installation opening 1101 facilitates the disassembly, repair, and replacement of the driving mechanism 320. Moreover, adopting this method also facilitates the later repair or replacement of the air outlet member 120 and extends its service life. The air outlet member 120 and the installation opening 1101 can be fixedly connected by screws or bolts, and can also be detachably connected by a snap structure. For example, one of the air outlet member 120 and the installation opening 1101 is provided with a bayonet (not shown in the figure), and the other is provided with a snap projection (not shown in the figure), which can also achieve quick installation and disassembly.

[0115] In some embodiments, such as Figure 2 shown, the air outlet box body 10 further includes a wind guiding mechanism fixing seat 140. The wind guiding mechanism fixing seat 140 is disposed on the box body main body 110, and the air outlet member 120 is detachably disposed on the wind guiding mechanism fixing seat 140. The detachable manner between the air outlet member 120 and the wind guiding mechanism fixing seat 140 can adopt screw or bolt connection, or a snap structure of a snap projection cooperating with a bayonet. Details are not described herein again.

[0116] In some embodiments, such as Figure 3 and Figure 6 shown, the wind guiding mechanism 20 can include a wind guiding member 210 and a mounting seat 220. The wind guiding member 210 is used to open and close the first air outlet 101. The mounting seat 220 can be connected below the wind guiding member 210, and the driving part 310 can be disposed on the mounting seat 220. By setting the wind guiding mechanism 20 to include the wind guiding member 210 and the mounting seat 220, while realizing the opening and closing of the first air outlet 101 by the wind guiding mechanism 20, it facilitates the installation and fixation of the driving part 310.

[0117] In some embodiments, such as Figure 3 and Figure 6 shown, on one side of the wind guiding member 210 close to the air outlet part 1201, a wind guiding inclined surface 2101 is formed that cooperates with the sub-air outlet grille 12011. When the wind blows out from the sub-air outlet grille 12011, the wind guiding inclined surface 2101 can guide the wind to blow out obliquely upward from the first air outlet 101, bringing a better wind guiding effect.

[0118] In some embodiments, such as Figure 3 shown, the air outlet grille includes a plurality of sub-air outlet grilles 12011 arranged obliquely, and the wind guiding member 210 includes a plurality of wind guiding inclined surfaces 2101. Each wind guiding inclined surface 2101 corresponds to and cooperates with each sub-air outlet grille 12011.

[0119] Further, such as Figure 3 and Figure 6As shown, the air outlet member 120 includes an air outlet portion 1201 and a mounting portion 1202. The air outlet portion 1201 is disposed at the mounting opening 1101, and a first air outlet 101 is formed on the air outlet portion 1201. The mounting portion 1202 is connected below the air outlet portion 1201. The driving mechanism 320 is connected to the mounting portion 1202. An accommodating cavity 1203 with an open top is defined in the mounting portion 1202, and the mounting seat 220 is disposed in the accommodating cavity 1203 in a vertically movable manner. One side of the accommodating cavity 1203 facing the driving mechanism 320 is open to form a first opening 1204. The driving portion 310 is opposite to or located at the first opening 1204. When the driving portion 310 can be disposed in the accommodating cavity 1203 along with the mounting seat 220, the driving mechanism 320 can partially pass through the first opening 1204 to be in driving cooperation with the driving portion 310. Alternatively, the driving portion 310 is located at the first opening 1204, and the driving mechanism 320 is in driving cooperation with the driving portion 310 outside the first opening 1204.

[0120] In some embodiments, as Figure 6 shown, the air treatment device 200 includes: a mounting member 60. The mounting member 60 is disposed on the air guiding mechanism 20. The mounting member 60 and the air guiding mechanism 20 are both independently formed parts, that is, the mounting member 60 and the air guiding mechanism 20 are two different components, which can reduce the process difficulty and realize modular installation. The driving assembly 30 includes: a driving portion 310 and a driving mechanism 320. The driving portion 310 is disposed on the mounting member 60, and the driving portion 310 and the mounting member 60 are integrally formed. In this way, the process difficulty can be further reduced, the mold opening can be reduced, and the driving portion 310 and the mounting member 60 together realize modular installation with the air guiding mechanism 20. The driving mechanism 320 is disposed in the air outlet box body 10, and the driving mechanism 320 and the driving portion 310 are in drivable cooperation to drive the driving portion 310 to move up and down.

[0121] Optionally, as Figure 6 shown, the air guiding mechanism 20 includes an air guiding member 210 and a mounting seat 220. The air guiding member 210 is used to open and close the first air outlet 101. The mounting seat 220 is connected below the air guiding member 210. A mounting notch 202 is formed on the mounting seat 220. The mounting member 60 is disposed in the mounting notch 202. The mounting member 60 is installed at the mounting notch 202 to achieve installation cooperation with the air guiding mechanism 20, making the overall volume of the mounting member 60 and the air guiding mechanism 20 smaller and the structure more compact, and space can be saved.

[0122] Furthermore, as Figure 7As shown, the mounting member 60 is detachably connected to the air guiding mechanism 20. Thus, it is convenient to disassemble, install, or replace between the mounting member 60 and the air guiding mechanism 20. If the mounting member 60 or the driving part 310 is damaged, there is no need to replace the entire air guiding mechanism 20. Only the mounting member 60 needs to be disassembled and replaced, which is simple and convenient to operate and can greatly reduce costs. A positioning convex block 601 is formed on the mounting member 60, and a positioning groove (not shown in the figure) is formed on the air guiding mechanism 20. The positioning convex block 601 is adapted to be received in the positioning groove, and the positioning convex block 601 is arc-shaped. The cooperation between the positioning groove and the positioning convex block 601 can play a role in pre-positioning the mounting member 60, so that the mounting member 60 can be more easily and accurately installed on the air guiding mechanism 20.

[0123] In some embodiments, as Figure 7 shown, the mounting member 60 and the air guiding mechanism 20 are detachably connected by bolts. For example, threaded holes (not shown in the figure) are provided on the air guiding mechanism 20, and a first mounting hole 602 is provided on the mounting member 60. First, the positioning convex block 601 on the mounting member 60 is engaged with the positioning groove on the air guiding mechanism 20, and then the bolt passes through the first mounting hole 602 and is engaged with the threaded hole, so as to realize the disassembly and installation of the mounting member 60 and the air guiding mechanism 20.

[0124] In some examples, as Figure 7 shown, multiple threaded holes can be provided on the air guiding mechanism 20, and multiple first mounting holes 602 can be provided on the mounting member 60. The number of the multiple first mounting holes 602 is equal to and corresponds to the number of the multiple threaded holes one by one. This bolt connection method is reliable in connection and is relatively easy to disassemble and install.

[0125] Specifically, as Figure 7 shown, three threaded holes are provided on the air guiding mechanism 20 in the up and down direction, and three first mounting holes 602 are provided on the mounting member 60 in the up and down direction. The three first mounting holes 602 are sequentially provided at the upper end, the middle part, and the lower end of the mounting member 60. After the three threaded holes and the three first mounting holes 602 are connected by bolts, the upper end, the middle part, and the lower end of the mounting member 60 can be fixed, making the installation more firm.

[0126] In other examples, the mounting member 60 and the air guiding mechanism 20 are detachably connected by a snap-fit method. For example, snap holes (not shown in the figure) are provided on the air guiding mechanism 20, and snap protrusions (not shown in the figure) are provided on the mounting member 60. The installation or disassembly is realized by the cooperation between the snap protrusions and the snap holes. Of course, the number of the snap protrusions and the snap holes can be set to be multiple and correspond to each other one by one to improve the reliability of the connection.

[0127] In some examples, as Figure 7As shown, there are two positioning bumps 601 arranged at intervals up and down. The two positioning bumps 601 protrude away from each other. The upper positioning bump 601 protrudes upward in a curved shape, and the lower positioning bump 601 protrudes downward in a curved shape. Since the positioning bump 601 is arc-shaped, by making the two positioning bumps 601 protrude away from each other, it is convenient to cooperate with the positioning groove by means of the protruding arc portion, making the positioning easier. Moreover, it can be understood that the two positioning bumps 601 are symmetrically arranged, so that when the mounting member 60 is assembled, whether it is assembled correctly or reversely by 180 degrees, the mounting member 60 can be assembled onto the air guiding mechanism 20, thus playing an anti-fooling role.

[0128] Optionally, as Figure 1 shown, at least one second air outlet 102 is formed on the circumferential side wall of the air outlet box body 10 to realize the lateral air outlet of the air treatment device 200. In a specific example, two second air outlets 102 can be formed on the circumferential side wall of the air outlet box body 10. Since the first air outlet 101 is formed on the top of the air outlet box body 10, the air treatment device 200 can realize top air outlet and side air outlet. In other examples, among the circumferential side walls of the air outlet box body 10, second air outlets 102 are provided on two opposite side walls. Since the first air outlet 101 is formed on the top of the air outlet box body 10, the air treatment device 200 can realize top air outlet and two-side air outlet in the horizontal direction, thus bringing a more diverse air outlet effect, making the air outlet more three-dimensional and multi-dimensional, and the air outlet volume is also larger, which is beneficial to better and faster adjusting the indoor environment.

[0129] In some embodiments of the present invention, as Figures 3 - 5 shown, the air treatment device 200 further includes: a guiding structure 40. The guiding structure 40 includes a first guiding portion 410 and a second guiding portion 420 that cooperate with each other. The first guiding portion 410 is provided on the air guiding mechanism 20 and extends in the up and down direction, and the second guiding portion 420 is provided on the air outlet box body 10 and extends in the up and down direction. During the process that the air guiding mechanism 20 moves up and down to open and then close the first air outlet 101, through the cooperation of the first guiding portion 410 on the air guiding mechanism 20 and the second guiding portion 420 on the air outlet box body 10, the stability and reliability of the movement of the air guiding mechanism 20 can be improved.

[0130] Furthermore, as Figure 6 shown, the first guiding portion 410 is provided on the mounting member 60, and the first guiding portion 410 is integrally formed with the mounting member 60. In this way, the integration of the first guiding portion 410 and the mounting member 60 can realize modular assembly with the air guiding mechanism 20, and the process difficulty can be reduced.

[0131] In some embodiments, as Figure 6As shown, the driving part 310, the first guiding part 410 and the mounting part 60 are integrally formed, which can realize the modular installation of the three, and further reduce the process difficulty.

[0132] In some embodiments, as Figure 5 shown, both the first guiding part 410 and the second guiding part 420 are two. The two first guiding parts 410 are arranged at opposite ends of the mounting part 60 and on opposite sides of the driving part 310. By arranging the first guiding parts 410 at opposite ends of the mounting part 60 respectively, balanced guiding effects can be provided for the up and down movement of the air guiding mechanism 20 on both sides, ensuring a stable and reliable guiding process.

[0133] Specifically, as Figure 5 shown, the first guiding parts 410 are respectively arranged at the left end and the right end of the mounting part 60, and the two first guiding parts 410 are located on the left side and the right side of the driving part 310, so as to provide balanced guiding effects for the movement of the driving part 310.

[0134] In some embodiments, as Figure 4 shown, the first guiding part 410 includes a plurality of ribs 4101 extending in the up and down direction, and the protruding directions of the plurality of ribs 4101 are different. The second guiding part 420 includes a plurality of grooves 4201 extending in the up and down direction. The number of the grooves 4201 is the same as and corresponds to the number of the ribs 4101 one by one. Each rib 4101 is movably arranged up and down in the corresponding groove 4201. By using the cooperation of the ribs 4101 and the grooves 4201 to provide guiding effects for the up and down movement of the air guiding mechanism 20, and the protruding directions of the plurality of ribs 4101 are different, it can not only perform guiding and limiting in multiple directions, but also increase the guiding contact surface, provide a more stable guiding effect, and enhance the reliability of the guiding.

[0135] Optionally, as Figure 4 shown, the ribs 4101 are three arranged in sequence and connected in sequence, and the adjacent two ribs 4101 are arranged substantially perpendicular to each other. The grooves 4201 are three and communicate with each other. For example, the three ribs 4101 can form a structure similar to a T shape, and the three grooves 4201 can correspondingly form a cross shape. Taking the front side as the orientation of the middle rib 4101 among the three ribs 4101, the other two ribs 4101 are located on the left and right sides. The three ribs 4101 can realize guiding and limiting in the front-back direction and the left-right direction, and the guiding effect is better. Of course, the above is only an example and is not limited thereto. For example, the ribs 4101 can also be four or five arranged and connected in sequence, etc., which will not be elaborated here.

[0136] In some examples, as Figure 7As shown, the air handling device 200 includes a limiting structure for limiting the air guiding mechanism 20 in the up and down directions. The limiting structure includes a first limiting protrusion 510, a second limiting protrusion 520, and a third limiting protrusion 530. The first limiting protrusion 510 and the second limiting protrusion 520 are provided on the air guiding mechanism 20, and the first limiting protrusion 510 and the second limiting protrusion 520 are respectively located on the upper and lower sides of the driving part 310; the third limiting protrusion 530 is provided on the driving mechanism 320, and the third limiting protrusion 530 is adapted to abut against the first limiting protrusion 510 and the second limiting protrusion 520 in the up and down directions. The limiting structure can enable the air guiding mechanism 20 to move within a set height range. The air guiding mechanism 20 can stop moving down when it returns to the starting position and stop moving up when it reaches the preset height position.

[0137] Specifically, when the driving mechanism 320 drives the driving part 310 to move upward, the driving part 310 drives the air guiding mechanism 20 to move upward and open the first air outlet 101. As the driving part 310 continues to move upward, after the second limiting protrusion 520 on the lower side of the driving part 310 abuts against the third limiting protrusion 530 on the driving mechanism 320, the driving part 310 cannot continue to move upward, and the driving mechanism 320 stops driving. At this time, the air guiding mechanism 20 reaches the preset height. When the driving mechanism 320 drives the driving part 310 to move downward, the driving part 310 drives the air guiding mechanism 20 to move downward and gradually closes the first air outlet 101. When the first limiting protrusion 510 on the upper side of the driving part 310 abuts against the third limiting protrusion 530 on the driving mechanism 320, the driving part 310 cannot continue to move downward, and the driving mechanism 320 stops driving. At this time, the air guiding mechanism 20 returns to the starting position and stops, and completely closes the first air outlet 101. The above-mentioned method has a simple structure. Only by correspondingly setting the distances between the first limiting protrusion 510, the second limiting protrusion 520, and the third limiting protrusion 530 according to the set height range, it is easy to realize the limit of the lifting height of the air guiding mechanism 20.

[0138] In some embodiments, as Figure 7 shown, there are two third limiting protrusions 530, and the two third limiting protrusions 530 are located on the opposite sides in the horizontal direction of the avoidance opening 301. The two third limiting protrusions 530 are arranged in this way relatively close to the gear 3201. The lower limit position and the upper limit position of the air guiding mechanism 20 occur at the avoidance opening 301. Under the condition of meeting the up and down limiting requirements, the length of the rack can be reduced, and the size of the air guiding mechanism 20 in the up and down directions can be made smaller. At the same time, the two third limiting protrusions 530 can also increase the contact surface with the first limiting protrusion 510 or the second limiting protrusion 520, enhancing the reliability of the limit.

[0139] In another embodiment, as Figure 6 and Figure 7As shown, the drive box 3203 includes a first box body 32031 and a second box body 32032. A box body clamping convex part 303 is provided on the first box body 32031, and a box body clamping hole 304 is provided on the second box body 32032. Through the mutual cooperation of the box body clamping convex part 303 and the box body clamping hole 304, the detachable installation of the first box body 32031 and the second box body 32032 is realized, and the operation is simple and convenient.

[0140] In other examples, such as Figure 6 and Figure 7 As shown, a screw post 305 is provided on the first box body 32031, and a screw hole (not shown in the figure) is provided on the second box body 32032. When the first box body 32031 and the second box body 32032 are assembled, the mutual cooperation of the screw post 305 and the screw hole can realize positioning, ensuring that the first box body 32031 and the second box body 32032 can be accurately assembled.

[0141] In other embodiments, the drive assembly 30 can also be a lead screw-nut lifting mechanism, that is, the drive assembly 30 includes a drive part 310 and a drive mechanism 320. The drive part 310 is a connecting block, and the drive mechanism 320 is a motor (not shown in the figure), a lead screw (not shown in the figure) connected to the motor, and a nut (not shown in the figure) installed on the lead screw. Among them, the nut is rotatably installed on the connecting block. Specifically, when working, the motor drives the lead screw to rotate, the lead screw drives the nut to move up or down, and then drives the connecting block to move, realizing the up and down movement of the air guiding mechanism 20. Of course, the drive assembly 30 can also be other lifting or moving mechanisms, not limited to this. For example, the drive assembly 30 can be driven by an electric push rod for lifting, which will not be elaborated here.

[0142] Specifically, as Figure 1 and Figure 3 As shown, the air outlet box body 10 further includes: a guiding member 130. The guiding member 130 is provided on the air outlet member 120, and a second guiding portion 420 is formed on the guiding member 130. Both the guiding member 130 and the air outlet member 120 are independently formed parts. By setting the guiding member 130 and the air outlet member 120 as independently formed parts, it is convenient for the disassembly, repair, and replacement of the guiding member 130, and modular assembly can be realized, reducing the process difficulty.

[0143] Furthermore, as Figure 5 shown, the guiding member 130 is provided in the accommodating cavity 1203. A guiding cavity 1301 is defined in the guiding member 130. The mounting seat 220 is movably arranged up and down in the guiding cavity 1301. One side of the guiding cavity 1301 facing the drive mechanism 320 is open to form a second open opening 1302 corresponding to the first open opening 1204. The first open opening 1204 and the second open opening 1302 are used to provide an avoidance space to realize the transmission cooperation between the drive part 310 and the drive mechanism 320.

[0144] In some alternative embodiments of the present invention, at least one second air outlet 102 is formed on the circumferential side wall of the air outlet box body 10. For example, there may be two second air outlets 102, and the two second air outlets 102 may be located on the left and right sides of the air outlet box body 10. A second air outlet 809 that is opposite to and communicates with the second air outlet 102 is formed on the casing. When the air guiding mechanism 20 opens the first air outlet 101, the air flow processed by the air treatment unit 2 flows into the air outlet cavity 103 of the air outlet box body 10. The air flow in the air outlet cavity 103 can blow out air from the first air outlet 101 at the top and the second air outlets 102 on the left and right sides. The air flowing in from the first air outlet 101 at the top flows into the air outlet cavity 818 and then into the room from the first air outlet 808. The air flow blown out from the second air outlet 102 flows into the room through the second air outlet 809. The air outlet range is larger and the air outlet is more three-dimensional. The air outlet effect can be changed by controlling whether the air guiding mechanism 20 opens the first air outlet 101. When the air guiding mechanism 20 closes the first air outlet 101, the air can be blown out from the second air outlet 102 to achieve air outlet on the left and right sides. When the user needs to blow air from the first air outlet 808, the air guiding mechanism 20 is controlled to open the first air outlet 101 to achieve simultaneous air outlet on the left and right sides and at the top of the air treatment device 200.

[0145] Optionally, referring to Figures 11 - 14 , a wind deflector 810 for opening and closing the second air outlet 809 is provided at the second air outlet 809. By providing the wind deflector 810 at the second air outlet 809, the opening and closing of the second air outlet 809 can be conveniently achieved, so that the air outlet mode is more diversified and the air outlet effect is more diversified. For example, when only the first air outlet 808 needs to blow out air, the air guiding mechanism 20 opens the first air outlet 101 and the wind deflector 810 closes the second air outlet 809; when only the second air outlet 809 needs to blow out air, the air guiding mechanism 20 closes the first air outlet 101 and the wind deflector 810 opens the second air outlet 809; when the first air outlet 808 and the second air outlet 809 need to blow out air simultaneously, the air guiding mechanism 20 opens the first air outlet 101 and the wind deflector 810 opens the second air outlet 809.

[0146] In some embodiments of the present invention, referring to Figure 11 and Figure 12, the air handling unit 2 includes: a first fan component 21, a humidifying component 22, and a purifying component 23. The first fan component 21 is configured to drive air flow to enter the air handling device 200 from the air inlet 201. The first fan component 21 is configured to drive air flow to enter the air handling unit 2 from the air inlet 201. The humidifying component 22 is disposed in the air outlet box body 10. An air outlet cavity 103 is defined between the humidifying component 22 and the air outlet box body 10. The purifying component 23 is disposed between the air outlet box body 10 and the first fan component 21. The purifying cavity of the purifying component 23 communicates with the air outlet cavity 103. By arranging the air handling unit 2 as the humidifying component 22 and the purifying component 23, the air handling unit 2 can humidify and purify the air flow. And by disposing the humidifying component 22 in the air outlet box body 10, the structure of the air handling device 200 can be made compact. When the air handling device 200 is operating, the first fan component 21 drives air flow to enter the first fan component 21 from the air inlet 201, and then the air flow passes through the purifying component 23 for purification. The purified air flow flows into the air outlet cavity 103 of the air outlet box body 10. The air flow can flow to the first air outlet 101 after being humidified by the humidifying component 22, or the air flow can directly flow to the first air outlet 101 without being humidified by the humidifying component 22.

[0147] In some alternative embodiments of the present invention, referring to Figure 11 and Figure 12 , the first fan component 21, the purifying component 23, and the air outlet box body 10 are arranged in sequence in the up-down direction. By arranging the first fan component 21, the purifying component 23, and the air outlet box body 10 in sequence in the up-down direction, the structure of the air handling device 200 is reasonably and compactly arranged, and the air flow entering the first fan component 21 from the air inlet 201 sequentially flows upward through the purifying component 23 for purification and then flows into the air outlet cavity 103 of the air outlet box body 10, making the air flow path shorter and the air flow smoother.

[0148] In some alternative embodiments of the present invention, referring to Figure 11 and Figure 12, the humidifying component 22 includes: a humidifying bracket 222, a wet film bracket 223, a humidifying film, and a humidifying water tank 221. The humidifying bracket 222 has a humidifying water trough inside. The humidifying bracket 222 is slidably disposed in the air outlet box body 10. The wet film bracket 223 is disposed on the humidifying bracket 222. The humidifying film is disposed on the wet film bracket 223 and a part of the humidifying film is located in the humidifying water trough. The water in the humidifying water trough can penetrate into the humidifying film. The humidifying water tank 221 is disposed on the humidifying bracket 222 and is located on the side of the wet film bracket 223 away from the air outlet cavity 103. The humidifying water tank 221 is used to supply water to the humidifying water trough. The air flow flowing into the air outlet cavity 103 can be humidified by passing through the humidifying film. By disposing the humidifying water tank 221 on the side of the humidifying bracket 222 away from the air outlet cavity 103, the component layout is reasonable and the influence on the air outlet is reduced. Moreover, since the humidifying bracket 222 is slidably disposed in the air outlet box body 10 and the humidifying water tank 221 is disposed on the humidifying bracket 222, when water needs to be added, the humidifying bracket 222 can be pulled out from the air outlet box body 10, which is convenient for adding water to the humidifying water tank 221. For example, the humidifying water tank 221 can be located at the front side part of the air outlet box body 10, and the humidifying bracket 222 is slidably disposed on the air outlet box body 10 in the front-back direction. When the lower panel 8012 opens the disassembly opening 8021, by pulling the humidifying bracket 222, it is convenient to add water to the humidifying water tank 221. Among them, the humidifying water tank 221 can be taken out from the humidifying bracket 222. For example, the humidifying water tank 221 can be taken out from the humidifying bracket 222 by lifting it upward, which further facilitates adding water to the humidifying water tank 221.

[0149] Further, the air outlet box body 10 is located below the air outlet cavity 811. A first air outlet 101 is formed at the top of the air outlet box body 10. The air guiding mechanism 20 is slidably disposed on the air outlet box body 10. At least one second air outlet 102 is formed on the circumferential side wall of the air outlet box body 10. A second air outlet 809 opposite to and communicating with the second air outlet 102 is formed on the housing 800. The humidifying film is adjacent to the second air outlet 102 and is disposed opposite to the second air outlet 102. Thus, the air flow flowing into the air outlet cavity 103 can be blown out through the second air outlet 102 and the second air outlet 809 after being humidified by the humidifying film, while the air flow blown out from the first air outlet 101 is not humidified by the humidifying film, so that the air flow can be selectively humidified as needed.

[0150] For example, when the above-mentioned air deflector 810 is provided at the second air outlet 809, it is possible to select whether to humidify the air flow as needed. When it is necessary to humidify the air flow, the second air outlet 809 can be opened, and the air flow entering the air outlet cavity 103 is humidified by the humidification film and then blown out through the second air outlet 102 and the second air outlet 809, so that the humidification of the air flow can be achieved. At this time, if the first air outlet 101 is closed, the air flow purified by the purification component 23 flows into the air outlet cavity 103 and is humidified by the humidification film, and then is blown out through the second air outlet 102 and the second air outlet 809; if the first air outlet 101 is opened, after the air flow purified by the purification component 23 flows into the air outlet cavity 103, a part of it is humidified by the humidification film and then blown out through the second air outlet 102 and the second air outlet 809, and the other part is blown out directly through the first air outlet 101 and the first air outlet 808 without passing through humidification. When it is not necessary to humidify the air flow, the second air outlet 809 is closed, and the air flow purified by the purification component 23 flows into the air outlet cavity 103 and is blown out directly through the first air outlet 101 and the first air outlet 808 without passing through humidification.

[0151] In some alternative embodiments of the present invention, referring to Figure 11 and Figure 12 , the purification component 23 includes multiple purification elements 231 stacked along the flow direction of the air flow. For example, the multiple stacked purification elements 231 can be arranged in the up-down direction, and each purification element 231 is slidably disposed in the purification cavity. Thus, by including multiple purification elements 231 stacked along the flow direction of the air flow in the purification component 23, the purification effect can be improved, and each purification element 231 is slidably disposed in the purification cavity, which facilitates the replacement of each purification element 231. For example, each purification element 231 can be slid back and forth in the purification cavity, so that the lower panel 8012 can open the front space of the air treatment device 200, and by sliding the purification element 231, the replacement of the purification element 231 can be facilitated.

[0152] According to some embodiments of the present invention, referring to Figures 11 - 14 , there are multiple air inlets 201, and at least one of the air inlets 201 is adapted to communicate with outdoor air, and the remaining air inlets 201 are adapted to communicate with indoor air. For example, there are three air inlets 201, one of which communicates with outdoor air, and the other two air inlets 201 communicate with indoor air. Thus, the air treatment device 200 can process at least one of the introduced fresh air and indoor air. For example, the opening and closing of each air inlet 201 can be controlled. When it is necessary to introduce fresh air, the air inlet 201 communicating with outdoor air can be opened; when it is necessary to process indoor air, the air inlet 201 communicating with indoor air can be opened.

[0153] The following describes a specific embodiment of the air conditioner according to the present invention with reference to the accompanying drawings.

[0154] In this embodiment, the air conditioner is a split floor-standing air conditioner, which includes an air conditioner indoor unit 1000 and an air conditioner outdoor unit. The air conditioner indoor unit 1000 includes a casing 800, an air treatment device 200, and an air heat exchange device 700.

[0155] Among them, a first installation cavity and a second installation cavity are defined in the casing 800 and are separated up and down. An air outlet cavity 811 is also defined in the casing 800. The air outlet cavity 811 is located between the first installation cavity and the second installation cavity, and the air outlet cavity 811 is partitioned from the first installation cavity and is in communication with the second installation cavity. The air heat exchange device 700 is accommodated in the first installation cavity, and the air treatment device 200 is accommodated in the second installation cavity. The casing 800 includes a front panel 801, an air outlet frame member 802, a rear box member 803, a top cover 804, and a chassis 805. The air outlet frame member 802 and the rear box member 803 are connected front and back. The front panel 801 is connected to the front side of the air outlet frame member 802. A heat exchange air inlet 806 is formed in a part of the rear box member 802 corresponding to the first installation cavity, and the heat exchange air inlet 806 communicates with the interior.

[0156] The air treatment device has three air inlets 201. One of the air inlets 201 communicates with the indoor air, and the other two air inlets 201 communicate with the outdoor air. The air inlets 201 communicating with the outdoor air extend out of the casing 800 through the rear box member 803 and communicate with the outdoor air. Two indoor air inlets 812 corresponding to the other two air inlets 201 (the two air inlets 201 communicate with the indoor air) are formed on the rear box member 803. The front panel 801 includes an upper panel 8011 and a lower panel 8012 arranged at intervals up and down. A first air outlet 808 is defined between the upper panel 8011 and the lower panel 8012. Second air outlets 809 are respectively formed on the left and right sides of the air outlet frame member 802. Among them, a wind deflector 810 for opening and closing the second air outlet 809 is provided at the second air outlet 809. The top cover 804 is connected to the tops of the rear box member 803 and the air outlet frame member 802, and the chassis 805 is connected to the bottoms of the rear box member 803 and the air outlet frame member 802.

[0157] The air heat exchange device 700 includes a heat exchanger component 730 and a second fan component 720. The heat exchanger component 730 is arranged at the rear side of the second fan component 720. The second fan component 720 may include two cross-flow fans arranged at intervals left and right, and the two cross-flow fans respectively correspond to two heat exchange air outlets 807.

[0158] The air handling device 200 includes the above-mentioned air handling unit 2, the air outlet box body 10, and the air guiding cover 70. The air guiding cover 70 is arranged on the top of the air outlet box body 10. The air handling unit 2 includes a first fan component 21, a humidifying component 22, and a purification component 23. The first fan component 21 has the above-mentioned three air inlets 201. Among them, the purification component 23 is arranged on the air outlet side of the first fan component 21 and the purification component 23 is located above the first fan component 21, and the humidifying component 22 is arranged in the air outlet box body 10. The humidifying component 22 includes the above-mentioned humidifying support 222, wet film support 223, humidifying film, and humidifying water tank 221. The humidifying support 222 can be slidably arranged in the air outlet box body 10. An air outlet cavity 103 is defined between the humidifying component 22 and the inner wall of the air outlet box body 10. Among them, the first air outlet 101 and the second air outlet 102 are both communicated with the air outlet cavity 103. The humidifying film of the humidifying component 22 is located in the air outlet cavity 103. The humidifying film of the humidifying component 22 is respectively adjacent to the two second air outlets 102 and is arranged opposite to the two second air outlets 102. The air outlet member 120 of the air outlet box body 10 and the humidifying component 22 are arranged in the front-back direction of the box body main body 110. For example, the humidifying component 22 is located in the front part of the box body main body 110, and the air outlet member 120 is located in the rear part of the box body main body 110.

[0159] The first fan component 21 includes: a volute and a centrifugal impeller. The volute is communicated with the air inlet 201. The centrifugal impeller is arranged in the volute. The volute is communicated with the purification cavity of the purification component 23. The purification cavity is communicated with the air outlet cavity 103 of the air outlet box body 10. The air guiding cover 70 is arranged on the top of the air outlet box body 10. An air guiding cavity 701 is defined between the top of the air outlet box body 10 and the air guiding cover 70. The air guiding cavity 701 has an air guiding outlet. The air guiding outlet of the air guiding cavity 701 is opposite to and communicated with the first air outlet 808. When the air guiding mechanism 20 moves up and down, a part of the air guiding mechanism 20 can be accommodated in the air guiding cavity 701.

[0160] The air handling device 200 may further include: a driving assembly 30, a guiding structure 40, a limiting structure, and a mounting member 60.

[0161] The air outlet box body 10 may include: a box body main body 110, an air outlet member 120, and a guiding member 130.

[0162] An installation opening 1101 may be formed on the top of the box body main body 110. Second air outlets 102 are respectively formed on the left and right side walls of the box body main body 110. The air outlet member 120 is detachably arranged in the installation opening 1101. A first air outlet 101 may be formed on the air outlet member 120. The guiding member 130 is arranged on the air outlet member 120. The guiding member 130 and the air outlet member 120 are both independently formed parts.

[0163] The air outlet member 120 may include: an air outlet portion 1201 and a mounting portion 1202. The air outlet portion 1201 may be disposed at the mounting opening 1101, and a first air outlet 101 may be formed on the air outlet portion 1201. The mounting portion 1202 may be connected below the air outlet portion 1201, and a receiving cavity 1203 may be defined within the mounting portion 1202. The guiding member 130 may be disposed within the receiving cavity 1203 so as to be movable up and down.

[0164] The air outlet portion 1201 may include an air outlet grille located at the first air outlet 101. The air outlet grille may include four obliquely arranged sub-air outlet grilles 12011. The obliquely arranged sub-air outlet grilles 12011 may extend obliquely upward in a direction from the center of the air outlet portion 1201 to the outer edge of the air outlet portion 1201. Two of the sub-air outlet grilles 12011 may be provided at the left and right ends of the first air outlet 101, and the remaining two sub-air outlet grilles 12011 may be provided at the front and rear ends of the first air outlet 101. Moreover, the sub-air outlet grille 12011 at the rear end of the first air outlet 101 has the largest inclination angle. The driving mechanism 320 may be located below the sub-air outlet grille 12011 with the largest inclination angle. The inclination angle is the angle between the sub-air outlet grille 12011 and the horizontal plane.

[0165] On one side of the air guiding member 210 close to the air outlet portion 1201, four air guiding inclined surfaces 2101 adapted to fit with the sub-air outlet grilles 12011 may be formed.

[0166] The air guiding mechanism 20 may be disposed within the air outlet box body 10 so as to be movable up and down to open and close the first air outlet 101.

[0167] The air guiding mechanism 20 may include: an air guiding member 210 and a mounting seat 220. The air guiding member 210 may be used to open and close the first air outlet 101. The mounting seat 220 may be connected below the air guiding member 210, and the mounting seat 220 may be disposed within the receiving cavity 1203 so as to be movable up and down.

[0168] A mounting notch 202 may be formed on the mounting seat 220, and the mounting member 60 may be disposed within the mounting notch 202.

[0169] A positioning groove (not shown in the figure) may be formed on the mounting seat 220, and a positioning protrusion 601 may be formed on the mounting member 60. The positioning protrusion 601 may be adapted to be received within the positioning groove. The positioning protrusion 601 may be two spaced apart vertically, and the two positioning protrusions 601 may protrude in directions away from each other.

[0170] Three threaded holes may be provided on the mounting seat 220 in the up and down direction, and three first mounting holes 602 may be provided on the mounting member 60 in the up and down direction. The three first mounting holes 602 are sequentially provided at the upper end, middle portion, and lower end of the mounting member 60.

[0171] The driving assembly 30 can be used to drive the air guiding mechanism 20 to move up and down.

[0172] The driving assembly 30 can include: a driving part 310 and a driving mechanism 320.

[0173] The driving part 310 can be a rack, and the rack can be arranged on the mounting member 60. The driving mechanism 320 can include: a gear 3201, a driving motor 3202, and a driving box 3203. The gear 3201 can be meshed with the rack, the driving motor 3202 can be connected to the gear 3201 to drive the gear 3201 to move. An avoidance opening 301 can be formed on the driving box 3203, and the tooth part of the gear 3201 can extend out of the driving box 3203 through the avoidance opening 301. The driving box 3203 is detachably arranged on the mounting part 1202. The accommodating cavity 1203 of the mounting part 1202 can be open towards one side of the driving mechanism 320 to form a first opening 1204, and the guiding cavity 1301 is open towards one side of the driving mechanism 320 to form a second opening 1302 corresponding to the first opening 1204, and the driving part 310 can be located at the second opening 1302.

[0174] The projection of the mounting part 1202 on the horizontal plane and the projection of the driving mechanism 320 on the horizontal plane are both located within the outer contour line of the projection of the air outlet part 1201 on the horizontal plane.

[0175] The driving box 3203 can be provided with a second mounting hole 302, the air outlet member 120 can be provided with a threaded hole, and the fastener can pass through the second mounting hole 302 and be fitted in the threaded hole.

[0176] The driving box 3203 can include: a first box body 32031 and a second box body 32032. A box body clamping convex part 303 can be arranged on the first box body 32031, and a box body clamping hole 304 can be arranged on the second box body 32032. A screw post 305 can be arranged on the first box body 32031, and a screw hole can be arranged on the second box body 32032.

[0177] The guiding structure 40 can include a mutually cooperating first guiding part 410 and a second guiding part 420. The first guiding part 410 can extend in the up and down direction, and the second guiding part 420 can extend in the up and down direction.

[0178] The first guiding part 410 can be arranged on the mounting member 60. The left and right ends of the mounting member 60 can be provided with the first guiding part 410. The driving part 310, the first guiding part 410 and the mounting member 60 are integrally formed. The second guiding part 420 can be arranged on the guiding member 130.

[0179] The first guiding part 410 may include: three convex ribs 4101 extending in the vertical direction, and the protruding directions of the three convex ribs 4101 may be different. The second guiding part 420 may include three grooves 4201 extending in the vertical direction. The number of the grooves 4201 may be the same as that of the convex ribs 4101 and they may correspond one by one. Each convex rib 4101 is movably arranged up and down in the corresponding groove 4201.

[0180] The three convex ribs 4101 may be arranged in sequence and connected in sequence. The adjacent two convex ribs 4101 are arranged substantially perpendicular to each other. The number of the grooves 4201 is three and they communicate with each other.

[0181] The limiting structure may include: a first limiting convex block 510, a second limiting convex block 520 and a third limiting convex block 530.

[0182] The first limiting convex block 510 and the second limiting convex block 520 may be arranged at the upper and lower ends of the mounting member 60. The first limiting convex block 510 and the second limiting convex block 520 may be respectively located on the upper and lower sides of the driving part 310. The number of the third limiting convex blocks 530 is two, and the two third limiting convex blocks 530 may be located on the opposite sides in the horizontal direction of the avoidance opening 301.

[0183] Two second air outlets 102 may be formed on the left and right side walls of the air outlet box body 10. The two second air outlets 102 are opposite to and communicate with the second air outlet 13.

[0184] When the air conditioner is working, one of the air treatment device 200 and the air heat exchange device 700 may be controlled to work, or both the air treatment device 200 and the air heat exchange device 700 may be controlled to work.

[0185] When only the air heat exchange device 700 is working, the second fan component 720 operates. The indoor air enters the first installation cavity from the heat exchange air inlet 806, exchanges heat with the heat exchanger component 730, and then flows out to the indoor from the heat exchange air outlets 807 on both sides, so that the indoor temperature can be adjusted.

[0186] The working of the air treatment device 200 may include the following situations: only the air inlet 201 communicating with the outdoor air among the three air inlets 210 is opened; only the air inlet 201 communicating with the outdoor air among the three air inlets 210 is opened; all the three air inlets 210 are opened.

[0187] The first situation: only the air inlet 201 communicating with the outdoor air among the three air inlets 210 is opened. The working of the air treatment device 200 may include the following situations:

[0188] When only the air handling device 200 is operating, the first fan component 21 operates. When only air needs to be discharged from the first air outlet 808, the air deflector 810 closes the second air outlet 809, and the air guiding mechanism 20 opens the first air outlet 101. At this time, the first air outlet 101 is communicated with the first air outlet 808 through the air guiding cavity 701. The air introduced from the outside is purified by the purification component 23 and then flows upward into the air outlet cavity 103 of the air outlet box body 10 without being humidified by the humidification component 22. Then it flows into the air guiding cavity 701 from the first air outlet 101 and finally flows out to the room from the first air outlet 808, so that the outdoor air can be introduced into the room. At this time, it can realize that the outdoor air introduced from the air inlet 201 is purified and then flows into the room, improving the indoor air quality.

[0189] When only the second air outlet 809 needs to discharge air, the air deflector 810 opens the second air outlet 809, and the air guiding mechanism 20 closes the first air outlet 101. The air introduced from the outside is purified by the purification component 23 and then flows upward into the air outlet cavity 103 of the air outlet box body 10. Then it is humidified by the humidification component 22 and then blown out to the room through the two second air outlets 102 and the two second air outlets 809 in sequence. The air introduced from the outside no longer flows out from the first air outlet 808, but flows out to the room from the second air outlets 102 on both sides through the second air outlets 809, so that the outdoor air can be introduced into the room. At this time, it can realize that the outdoor air introduced from the air inlet 201 is purified and humidified and then flows into the room, improving the indoor air quality.

[0190] When air needs to be discharged from the first air outlet 808 and the second air outlet 809 simultaneously, the air guiding mechanism 20 opens the first air outlet 101, and the air deflector 810 opens the second air outlet 809. After the first fan component 21 drives the air flow to enter the first fan component 21 from the air inlet 201, the air flow flows upward. First, it is purified by the purification component 23. The purified air flow flows upward into the air outlet cavity 103. For the air flow entering the air outlet cavity 103, a part of the air flow is not humidified by the humidification component 22 and is blown upward through the first air outlet 101 into the air guiding cavity 701 and then blown out to the room through the first air outlet 808. Another part is humidified by the humidification component 22 and then blown out from the two second air outlets 102 and the second air outlet 809 in sequence. The fresh air introduced from the outside is discharged from the first air outlet 808 and the second air outlet 809 simultaneously, increasing the air outlet range and realizing multi-dimensional three-dimensional air outlet. At this time, it can realize that the outdoor air introduced from the air inlet 201 is purified, partially humidified and then flows into the room, which can quickly and effectively improve the indoor air quality.

[0191] Optionally, when the air handling device 700 is operating, the first air outlet 201 can be in a normally open state. For example, when the first fan component 21 is powered on and running, the first air outlet 201 opens, and when the first fan component 21 stops operating, the first air outlet 201 also closes accordingly. It can be determined whether to open the second air outlet 809 based on whether there is a humidification requirement. When there is a humidification requirement, the second air outlet 809 can be opened, and when there is no humidification requirement, the second air outlet 809 can be closed.

[0192] Second case: Only the air inlet 201 that is in communication with the indoor air among the three air inlets 210 is open. The operation of the air handling device 200 can include the following situations:

[0193] When only the air handling device 200 is operating, the first fan component 21 is operating. When only air needs to be discharged from the first air outlet 808, the air deflector 810 closes the second air outlet 809, and the air guiding mechanism 20 opens the first air outlet 101. At this time, the first air outlet 101 is in communication with the first air outlet 808 through the air guiding cavity 701. The air introduced from the indoor is purified by the purification component 23 and then flows upward into the air outlet cavity 103 of the air outlet box 10 without being humidified by the humidification component 22. Then it flows into the air guiding cavity 701 from the first air outlet 101 and finally flows out to the indoor from the first air outlet 808, so that the indoor air can be purified and the indoor air quality can be improved.

[0194] When only air needs to be discharged from the second air outlet 809, the air deflector 810 opens the second air outlet 809, and the air guiding mechanism 20 closes the first air outlet 101. The air introduced from the indoor is purified by the purification component 23 and then flows upward into the air outlet cavity 103 of the air outlet box 10. Then it is humidified by the humidification component 22 and then blown out to the indoor through the two second air outlets 102 and the two second air outlets 809 in sequence. The air introduced from the indoor no longer flows out from the first air outlet 808, but flows out to the indoor from the second air outlets 102 on both sides through the second air outlets 809, so that the indoor air can be purified and humidified, and the indoor air quality can be improved.

[0195] When it is necessary to discharge air from the first air outlet 808 and the second air outlet 809 simultaneously, the air guiding mechanism 20 opens the first air outlet 101, and the air guiding plate 810 opens the second air outlet 809. After the first fan component 21 drives the air flow to enter the first fan component 21 from the air inlet 201, the air flow flows upward, first passes through the purification component 23 for purification, and the purified air flow flows upward into the air outlet cavity 103. For the air flow entering the air outlet cavity 103, a part of the air flow does not pass through the humidification component 22 for humidification and is blown upward through the first air outlet 101 into the air guiding cavity 701 and then blown out of the room through the first air outlet 808, and the other part is humidified by the humidification component 22 and then blown out from the two second air outlets 102 and the second air outlet 809 in sequence. The air introduced from the room is discharged from the first air outlet 808 and the second air outlet 809 simultaneously, increasing the air outlet range and realizing multi-dimensional three-dimensional air outlet. At this time, the indoor air introduced from the air inlet 201 can be purified, partially humidified and then flow into the room, which can quickly and effectively improve the indoor air quality.

[0196] Optionally, when the air treatment device 700 is operating, the first air outlet 201 can be in a normally open state. For example, when the first fan component 21 is powered on and running, the first air outlet 201 is opened, and when the first fan component 21 stops operating, the first air outlet 201 is also closed accordingly. It is possible to judge whether to open the second air outlet 809 according to whether there is a humidification requirement. When there is a humidification requirement, the second air outlet 809 can be opened, and when there is no humidification requirement, the second air outlet 809 can be closed.

[0197] The third case: all three air inlets 210 are opened, and the operation of the air treatment device 200 can include the following situations:

[0198] When only the air treatment device 200 is operating, the first fan component 21 is operating. When it is only necessary to discharge air from the first air outlet 808, the air guiding plate 810 closes the second air outlet 809, and the air guiding mechanism 20 opens the first air outlet 101. At this time, the first air outlet 101 is communicated with the first air outlet 808 through the air guiding cavity 701. The air introduced from the room and the air introduced from the outside are purified by the purification component 23 and then flow upward into the air outlet cavity 103 of the air outlet box body 10. Without passing through the humidification component 22 for humidification, it then flows into the air guiding cavity 701 from the first air outlet 101, and finally flows out of the room through the first air outlet 808. Thus, the indoor air can be purified, the indoor air quality can be improved, fresh air can be introduced, and the introduced fresh air can be purified.

[0199] When only the second air outlet 809 needs to supply air, the air deflector 810 opens the second air outlet 809, and the air guiding mechanism 20 closes the first air outlet 101. The air introduced from the indoor and the air introduced from the outdoor are purified by the purification component 23 and then flow upward into the air outlet cavity 103 of the air outlet box 10. Then, after being humidified by the humidification component 22, the air is blown out into the room successively through the two second air outlets 102 and the two second air outlets 809. The air introduced from the indoor and the air introduced from the outdoor no longer flow out from the first air outlet 808, but flow out into the room through the second air outlets 102 on both sides and the second air outlets 809, so that the indoor air can be purified and humidified, the indoor air quality can be improved, fresh air can be introduced, and the introduced fresh air can be purified and humidified.

[0200] When the first air outlet 808 and the second air outlet 809 need to supply air simultaneously, the air guiding mechanism 20 opens the first air outlet 101, and the air deflector 810 opens the second air outlet 809. After the first fan component 21 drives the air flow to enter the first fan component 21 from the air inlet 201, the air flow flows upward, first passes through the purification component 23 for purification, and the purified air flow flows upward into the air outlet cavity 103. For the air flow entering the air outlet cavity 103, a part of the air flow does not pass through the humidification component 22 for humidification and is blown upward through the first air outlet 101 into the air guiding cavity 701 and then blown out into the room through the first air outlet 808, and the other part is humidified by the humidification component 22 and then blown out successively from the two second air outlets 102 and the second air outlet 809. The air introduced from the indoor and the air introduced from the outdoor are simultaneously blown out from the first air outlet 808 and the second air outlet 809, increasing the air outlet range and realizing multi-dimensional three-dimensional air outlet. At this time, it can realize the purification and partial humidification of the indoor air introduced from the air inlet 201 and then flow into the room, quickly and effectively improve the indoor air quality, introduce fresh air, and purify and partially humidify the introduced fresh air.

[0201] Optionally, when the air treatment device 700 is working, the first air outlet 201 can be in a normally open state. For example, when the first fan component 21 is powered on and running, the first air outlet 201 is opened, and when the first fan component 21 stops running, the first air outlet 201 is also correspondingly closed. It can be judged whether to open the second air outlet 809 according to whether there is a humidification requirement. When there is a humidification requirement, the second air outlet 809 can be opened, and when there is no humidification requirement, the second air outlet 809 can be closed.

[0202] When both the air treatment device 200 and the air heat exchange device 700 are working, while the indoor temperature can be adjusted, the indoor air quality can also be improved, and the working state of the air treatment device 200 can refer to the above description.

[0203] In the description of this specification, the descriptions referring to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples", etc., mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0204] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the claims and their equivalents.

Claims

1. An air conditioner, It is characterized in that include: A casing, wherein an air outlet cavity is provided in the casing, and a first air outlet connecting the air outlet cavity and the outside is formed on a side wall of the air outlet cavity; An air handling device, the air handling device is arranged in the housing, the air handling device comprises an air handling unit, and the air handling device has an air inlet; An air guide mechanism is movably disposed in the casing to connect or isolate the inner cavity of the air treatment unit from the outside. When the inner cavity of the air treatment unit is connected with the outside, the air entering from the air inlet flows into the air outlet cavity after passing through the air treatment unit and is blown out through the first air outlet. The air guide mechanism is movably disposed in the air treatment device. The air treatment device also includes a driving component, which is used to drive the air guide mechanism to move up and down.

2. The air conditioner according to claim 1, It is characterized in that The air outlet cavity is located in the middle of the casing in the height direction or adjacent to the middle of the casing in the height direction.

3. The air conditioner according to claim 1, It is characterized in that The housing comprises: Rear box parts; A front panel is connected to the front side of the rear box body component, and the front panel includes an upper panel and a lower panel spaced apart from each other, and the first air outlet is defined between the upper panel and the lower panel.

4. The air conditioner according to claim 3, It is characterized in that The casing includes an air outlet frame component, the air outlet frame component is arranged on the front side of the rear box body component, the front panel is arranged on the front side of the air outlet frame component, the part of the air outlet frame component opposite to the air handling unit is open to form a disassembly opening, and the lower panel can cover and open the disassembly opening.

5. The air conditioner according to claim 1, It is characterized in that The air treatment device includes an air outlet box body, which is arranged on the air treatment unit. The air outlet box body defines an air outlet cavity connected to the inner cavity of the air treatment unit. The air outlet box body is formed with a first air outlet connected to the air outlet cavity. The air guide mechanism is movably arranged on the air outlet box body to open and close the first air outlet. When the air guide mechanism opens the first air outlet, the first air outlet is connected to the first air outlet through the air outlet cavity.

6. The air conditioner according to claim 5, It is characterized in that The air outlet box is located below the air outlet cavity, the first air outlet is formed on the top of the air outlet box, and the air guide mechanism is movably arranged on the air outlet box.

7. The air conditioner according to claim 6, It is characterized in that When the air guiding mechanism opens the first air outlet, at least a portion of the air guiding mechanism is located in the air outlet cavity.

8. The air conditioner according to claim 6, It is characterized in that The air handling device includes an air guiding hood, the air guiding hood is arranged at the top of the air outlet box body and is located in the air outlet cavity, an air guiding cavity is defined between the top of the air outlet box body and the air guiding hood, at least a part of the air guiding outlet of the air guiding cavity is opposite to and communicated with the first air outlet, and when the air guiding mechanism opens the first air outlet, the first air outlet is communicated with the first air outlet through the air guiding cavity.

9. The air conditioner according to claim 8, characterized in that when the air guiding mechanism opens the first air outlet, a part of the air guiding mechanism is located in the air guiding cavity.

10. The air conditioner according to claim 6, characterized in that the air outlet box body includes a box body main body and an air outlet member, an installation opening is formed at the top of the box body main body, the air outlet member is arranged at the installation opening, the first air outlet is formed on the air outlet member, the air guiding mechanism includes an air guiding member and a mounting seat, the air guiding member is used for opening and closing the first air outlet, the mounting seat is connected below the air guiding member, and the mounting seat is movably arranged through the air outlet member up and down.

11. The air conditioner according to claim 10, characterized in that the air outlet member includes: an air outlet part, the air outlet part is arranged at the installation opening, and the first air outlet is formed on the air outlet part; a mounting part, the mounting part is connected below the air outlet part and is located in the air outlet cavity, a receiving cavity with an open top is defined in the mounting part, and the mounting seat is movably arranged in the receiving cavity up and down.

12. The air conditioner according to claim 11, characterized in that the air outlet part includes an air outlet grille at the first air outlet, the air outlet grille includes at least one obliquely arranged sub-air outlet grille, and the obliquely arranged sub-air outlet grille extends obliquely upward in the direction from the connection part of the air outlet part and the mounting part to the outer edge of the air outlet part.

13. The air conditioner according to claim 11, characterized in that the air outlet part includes an air outlet grille at the first air outlet, and the equivalent diameter of the air dispersion holes on the air outlet grille is 3 mm - 8 mm.

14. The air conditioner according to claim 6, characterized in that at least one second air outlet is formed on the circumferential side wall of the air outlet box body, and a second air outlet opposite to and communicated with the second air outlet is formed on the machine shell.

15. The air conditioner according to claim 14, characterized in that a wind deflector for opening and closing the second air outlet is arranged at the second air outlet.

16. The air conditioner according to claim 5, characterized in that the air treatment unit includes: a first fan component, the first fan component is used for driving air flow to enter the air handling device from the air inlet; a humidifying component, the humidifying component is arranged in the air outlet box body, and the air outlet cavity is defined between the humidifying component and the air outlet box body; a purification component, the purification component is arranged between the air outlet box body and the first fan component, and the purification cavity of the purification component is communicated with the air outlet cavity.

17. The air conditioner according to claim 16, characterized in that the first fan component, the purification component and the air outlet box body are arranged in sequence in the direction from bottom to top.

18. The air conditioner according to claim 16, characterized in that the humidifying component includes: a humidifying bracket with a humidifying water tank therein, and the humidifying bracket is slidably arranged in the air outlet box body; a wet film bracket arranged on the humidifying bracket; a humidifying film arranged on the wet film bracket and a part of the humidifying film is located in the humidifying water tank; a humidifying water tank arranged on the humidifying bracket and on the side of the wet film bracket away from the air outlet cavity, and the humidifying water tank is used to supply water to the humidifying water tank.

19. The air conditioner according to claim 18, characterized in that the air outlet box body is located below the air outlet cavity, a first air outlet is formed at the top of the air outlet box body, the air guiding mechanism is slidably arranged in the air outlet box body, at least one second air outlet is formed on the circumferential side wall of the air outlet box body, a second air outlet is formed on the machine shell opposite to and communicating with the second air outlet, and the humidifying film is adjacent to and opposite to the second air outlet.

20. The air conditioner according to claim 16, characterized in that the purification component includes multiple purification elements stacked along the air flow direction, and each purification element is slidably arranged in the purification cavity.

21. The air conditioner according to any one of claims 1-20, characterized in that there are multiple air inlets, at least one of the air inlets is adapted to communicate with outdoor air, and the remaining air inlets are adapted to communicate with indoor air.

Citation Information

Patent Citations

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    CN111895509A

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