A wall-mounted air conditioner indoor unit and air conditioner

CN224635532UActive Publication Date: 2026-08-14GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0004]为克服相关现有技术中在空调室内机的进风口设置挡板会导致空调开机时挡板上的灰尘落入到空调内部的问题、以及同时设置过滤网和挡板会占用空调内部空间的问题

Benefits of technology

本申请实施例中通过将过滤网和挡板通过储尘构件连接成一个整体件,一方面连接而成的整体件能够沿着同一个轨道移动,从而在能够实现过滤网遮挡进风口或挡板遮挡进风口效果的同时,避免了过滤网和挡板分层设计占用空调内部较多尺寸,另一方面通过储尘构件的设置,还能够在该整体件沿不同方向移动时分别对挡板和过滤网进行清理,从而避免灰尘掉落到空调内。

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Abstract

This application provides a wall-mounted air conditioner indoor unit and air conditioner, belonging to the field of air supply equipment. The indoor unit includes: a body with an air inlet formed on the top side; a heat exchanger, with a top space defined between the top side of the heat exchanger and the top side of the body; a filter and a baffle connected by a dust storage component to form an integral part disposed in the top space, a first cleaning component for cleaning the baffle surface and a second cleaning component for cleaning the filter surface; the dust storage component has a dust storage chamber inside and a first opening communicating with the dust storage chamber and facing the first cleaning component and a second opening facing the second cleaning component on its surface; when the integral part moves along a first direction to a first moving position where the filter blocks the air inlet and the baffle avoids the air inlet, the first opening approaches the first cleaning component; when the integral part moves along a second direction to a second moving position where the baffle blocks the air inlet and the filter avoids the air inlet, the second opening approaches the second cleaning component.
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Description

Technical Field

[0001] This application relates to the field of air supply equipment technology, and more specifically, to a wall-mounted air conditioner indoor unit and an air conditioner. Background Technology

[0002] Wall-mounted air conditioners typically have a filter installed at the air inlet of the indoor unit. During daily use, this filter inevitably accumulates a lot of dust, clogging it. This not only affects the airflow, reduces the air conditioning's cooling and heating performance, and increases energy consumption, but also breeds harmful microorganisms, polluting the air and endangering human health. Therefore, frequent cleaning of the filter is necessary, causing significant inconvenience to users.

[0003] In existing technology, an air intake baffle is installed on the top of the air conditioner to prevent dust from accumulating on the filter. Although this method can prevent dust from accumulating on the filter when the air conditioner is off, dust will accumulate on the air intake baffle if the air conditioner is not used for a long time. When the air conditioner is turned on, the dust will fall into the air conditioner and cause pollution. At the same time, installing both a filter and a baffle at the air inlet of the indoor unit will occupy a lot of space inside the indoor unit, resulting in an excessively large size of the indoor unit. Utility Model Content

[0004] To overcome the problems in existing technologies where placing a baffle at the air inlet of an air conditioner indoor unit causes dust on the baffle to fall into the air conditioner when it is turned on, and the problem that simultaneously installing a filter and a baffle occupies internal space, this application provides a wall-mounted air conditioner indoor unit and air conditioner. This unit connects the filter and baffle into a single unit via a dust collection component. This single unit can move along the same track, achieving the effect of either the filter or the baffle blocking the air inlet, while avoiding the need for separate designs that would occupy significant internal space. Furthermore, the dust collection component allows for separate cleaning of the baffle and filter as the unit moves in different directions, preventing dust from falling into the air conditioner. Specifically: The first aspect of this application provides a wall-mounted air conditioner indoor unit, including: The body has an air inlet on its top side; The heat exchanger is located inside the machine body, and a top space is defined between the top side of the heat exchanger and the top side of the machine body; The filter screen and the baffle are connected as a whole by a dust storage component, and the whole is movably disposed in the top space. When the whole moves along a first direction, it has a first moving position in which the filter screen blocks the air inlet and the baffle avoids the air inlet. When it moves along a second direction opposite to the first direction, it has a second moving position in which the baffle blocks the air inlet and the filter screen avoids the air inlet. The filter screen has a filter screen surface facing the air inlet side when blocking the air inlet, and the baffle has a baffle surface facing the air inlet side when blocking the air inlet. The cleaning component includes a first cleaning component and a second cleaning component. The first cleaning component is used to clean the baffle surface of the baffle when the integral part moves along the first direction, and the second cleaning component is used to clean the filter screen surface of the filter screen when the integral part moves along the second direction. The dust storage component has a dust storage chamber inside and a first opening and a second opening communicating with the dust storage chamber on its surface. The first opening faces the first cleaning component and the second opening faces the second cleaning component. When the entire component moves along the first direction to the first moving position, the filter screen blocks the air inlet, the baffle avoids the air inlet, and the first opening of the dust storage component is close to the first cleaning component, so that dust accumulated between the dust storage component and the first cleaning component can be collected through the first opening. When the entire component moves along the second direction to the second moving position, the baffle blocks the air inlet, the filter screen avoids the air inlet, and the second opening of the dust storage component is close to the second cleaning component, so that dust accumulated between the dust storage component and the second cleaning component can be collected through the second opening.

[0005] In the above technical solution, the first direction is from the front side of the fuselage to the rear side of the fuselage, and the second direction is from the rear side of the fuselage to the front side of the fuselage; or The first direction is from the rear side of the fuselage to the front side of the fuselage, and the second direction is from the front side of the fuselage to the rear side of the fuselage; One of the first cleaning component and the second cleaning component is located near the front of the machine body, and the other is located near the rear of the machine body.

[0006] In the above technical solution, the first cleaning component includes a first brush that can be controlled to move, and the second cleaning component includes a second brush that can be controlled to move. in When the entire component moves along the first direction, the first brush can be controlled to be in a first contact position that contacts the baffle surface, and the second brush can be controlled to be in a second separation position that separates from the filter screen surface. When the entire component moves along the second direction, the first brush can be controlled to be in a first separation position separate from the baffle surface, and the second brush can be controlled to be in a second contact position contacting the filter screen surface.

[0007] In the above technical solution, the dust storage component further includes a first baffle and a second baffle. The first baffle is controllably movable and disposed at the first opening position of the dust storage component to open or close the first opening. The second baffle is controllably movable and disposed at the second opening position of the dust storage component to open or close the second opening. in When the integral component moves along the first direction, the first stop is controlled to be in the first open position where the first opening is open, and the second stop is controlled to be in the second closed position where the second opening is closed; When the integral component moves along the second direction, the first stop is controlled to be in the first closed position that closes the first opening, and the second stop is controlled to be in the second open position that opens the second opening.

[0008] In the above technical solution, the air conditioner indoor unit also includes: The dust collection box is located in the top space and on one side of the overall component's moving direction. The dust collection box has a dust collection chamber inside and a dust collection port on its surface. The surface of the dust storage component also has a first dust discharge port that communicates with the dust storage chamber; in When the entire component moves along the first direction to the first moving position where the filter screen blocks the air inlet and the baffle avoids the air inlet, the first dust discharge port of the dust storage component is connected to the dust collection port of the dust collection box; or When the entire component moves along the second direction to the second moving position where the baffle blocks the air inlet and the filter screen avoids the air inlet, the first dust discharge port of the dust storage component is connected to the dust collection port of the dust collection box.

[0009] In the above technical solution, a dust collection device is provided inside the dust collection box; When the dust storage component moves to the position where the first dust outlet communicates with the dust collection outlet of the dust collection box, the dust collection device is activated so that the dust in the dust storage chamber can be sucked into the dust collection chamber of the dust collection box by the suction of the dust collection device.

[0010] In the above technical solution, the dust collection box is equipped with a limiting structure; When the dust storage component moves to the position where the first dust outlet communicates with the dust collection outlet of the dust collection box, the dust storage component is limited by the limiting structure.

[0011] In the above technical solution, the dust collection chamber of the dust collection box extends from top to bottom in the height direction of the machine body, and the dust collection port is set near the top of the dust collection chamber; The surface of the dust collection box is also provided with a connecting port located below the dust collection port, and a second dust outlet located below the connecting port; The connecting port is connected to the dust collection port and is used to guide the dust entering the dust collection port into the dust collection chamber. The second dust discharge port is used to discharge the dust in the dust collection chamber into the outside of the machine.

[0012] In the above technical solution, the air conditioner indoor unit also includes: The drive mechanism includes a first drive mechanism and a second drive mechanism, wherein one of the first drive mechanism and the second drive mechanism is located on one side of the overall component's movement direction and the other is located on the other side of the overall component's movement direction. The filter and baffle are constructed to be flexible; The first drive mechanism is used to wind the baffle while driving the whole component to move in the first direction, and the second drive mechanism is used to wind the filter screen while driving the whole component to move in the second direction.

[0013] In the above technical solution, the integral component can move along the front and rear direction of the body. When the integral component moves from the front side to the rear side of the body, it has a first moving position where the filter screen blocks the air inlet and the baffle avoids the air inlet. When the integral component moves from the rear side to the front side of the body, it has a second moving position where the baffle blocks the air inlet and the filter screen avoids the air inlet. The first cleaning component includes a first brush located on the rear side of the machine body, and the second cleaning component includes a second brush located on the front side of the machine body. The first brush is used to clean the baffle surface of the baffle when the whole component moves from the front side of the machine body to the rear side of the machine body, and the second brush is used to clean the filter screen surface of the filter screen when the whole component moves from the rear side of the machine body to the front side of the machine body. The air conditioner indoor unit also includes a drive mechanism located in the top space. The drive mechanism includes a first drive mechanism located at the rear of the unit and a second drive mechanism located at the front of the unit. The first drive mechanism can drive the integral component to move from the front of the unit to the rear of the unit while winding the baffle. The second drive mechanism can drive the integral component to move from the rear of the unit to the front of the unit while winding the filter.

[0014] In the above technical solution, the indoor unit of the air conditioner also includes a dust collection box, which has a drive mechanism mounting cavity, a running track and a dust collection chamber; The drive mechanism mounting cavity includes a first drive mechanism mounting cavity located at the rear of the body and a second drive mechanism mounting cavity located at the front of the body. The first drive mechanism is installed in the first drive mechanism mounting cavity, and the second drive mechanism is installed in the second drive mechanism mounting cavity. The filter screen, baffle and dust collection component that form an integral part are located in the running track and can move along the front and rear direction of the machine body under the drive of the first drive mechanism and / or the second drive mechanism. The dust collection chamber of the dust collection box is located on the front side of the machine body, and the dust collection box is provided with a dust collection port that connects to the dust collection chamber. The dust storage component is provided with a first dust discharge port. When the whole component is in the second moving position where the baffle blocks the air inlet and the filter screen avoids the air inlet, the dust storage component in the whole component is limited and the first dust discharge port in the dust storage component is connected to the dust collection port of the dust collection box.

[0015] In the above technical solution, when the indoor unit of the air conditioner is turned off, the filter, baffle and dust collection component that constitute an integral part are in the second moving position where the baffle blocks the air inlet and the filter avoids the air inlet. When the indoor unit of the air conditioner switches from the off state to the on state, the filter, baffle and dust collection component that make up the whole unit switch from the second moving position to the first moving position where the filter blocks the air inlet and the baffle avoids the air inlet, so as to control the filter to block the air inlet while the baffle rolls up. When the indoor unit of the air conditioner switches from the on state to the off state, the filter, baffle and dust collection component that make up the whole unit switch from the first moving position to the second moving position, so as to control the baffle to block the air inlet while rolling up the filter. in If the entire component is switched from the off state to the on state, the first brush is controlled to contact the baffle surface of the baffle, and the second brush is controlled to separate from the filter screen surface of the filter screen. If the entire assembly switches from the power-on state to the power-off state, the first brush is controlled to separate from the baffle surface, and the second brush is controlled to contact the filter screen surface.

[0016] Furthermore, a second aspect of the present application also provides an air conditioner, which includes an outdoor unit and a wall-mounted indoor unit as provided in the first aspect of the present application.

[0017] By adopting the above technical solution, this utility model has the following beneficial effects compared with the prior art: In this embodiment, the filter and baffle are connected into a single unit via a dust storage component. This allows the unit to move along the same track, achieving the effect of either the filter or the baffle blocking the air inlet while avoiding the need for separate filter and baffle designs that would take up too much space inside the air conditioner. Furthermore, the dust storage component allows for the separate cleaning of the baffle and filter as the unit moves in different directions, preventing dust from falling into the air conditioner. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of an embodiment of the wall-mounted air conditioner indoor unit of this utility model. Figure 1 The indoor unit in the picture is in the off state with the air inlet blocked by a baffle. Figure 2 for Figure 1 An enlarged structural diagram at point A in the embodiment shows the structure when the filter screen, dust storage component, and baffle are connected. In the diagram, the first baffle on the dust storage component closes the first opening, and the second baffle closes the second opening. Figure 3 This is a schematic diagram of the structure of an embodiment of the wall-mounted air conditioner indoor unit of this utility model. Figure 2 The figure shows a schematic diagram of the indoor unit cleaning the baffle when it is turned on; Figure 4 for Figure 3 The enlarged structural diagram at point B in the embodiment shows the structural diagram when the filter screen, dust storage component and baffle are connected, and the first baffle on the dust storage component opens the first opening and the second baffle closes the second opening. Figure 5 This is a schematic diagram of the structure of an embodiment of the wall-mounted air conditioner indoor unit of this utility model. Figure 3 The diagram shows the structure of the indoor unit cleaning the filter when it is turned off; Figure 6 for Figure 5 An enlarged structural diagram at point C in the embodiment shows a structural diagram of the connection between the filter screen, the dust storage component, and the baffle. In the diagram, the first baffle on the dust storage component closes the first opening, and the second baffle opens the second opening. Figure 7 This is a three-dimensional structural diagram of the dust collection box in an embodiment of the wall-mounted air conditioner indoor unit of this utility model; Figure 8 This is a three-dimensional structural schematic diagram of the dust storage component in an embodiment of the wall-mounted air conditioner indoor unit of this utility model; Figure 9 for Figure 8 An enlarged structural diagram at point D in the embodiment.

[0019] in Figures 1-9 middle: 100 - Body; 101 - Air inlet; 200 - Heat exchanger; 300-top space; 400-Filter Screen; 500-baffle; 600 - Dust storage component; 601 - First opening; 602 - Second opening; 603 - Dust storage chamber; 604 - First baffle; 605 - Second baffle; 606 - First dust discharge port; 701 - First cleaning component; 702 - Second cleaning component; 800-Dust collection box; 801-Dust collection chamber; 802-Dust collection port; 803-Limiting structure; 804-Connecting port; 805-Second dust discharge port; 806-Drive mechanism mounting cavity; 807-Running track; 8061-First drive mechanism mounting cavity; 8062-Second drive mechanism mounting cavity; 901 - First drive mechanism; 902 - Second drive mechanism. Detailed Implementation

[0020] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein 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 intended to explain this utility model, and should not be construed as limiting this utility model.

[0021] Throughout the specification and claims, the following terms will have at least the meaning explicitly associated herein, unless the context otherwise requires. The meanings defined below are not intended to limit the terms, but are merely illustrative examples. In the description of this utility model, the phrase "in one embodiment" does not necessarily refer to the same embodiment, although it may refer to the same embodiment. Similarly, the phrase "in some embodiments" as used herein, when used multiple times, does not necessarily refer to the same embodiment, although it may refer to the same embodiment. As used herein, the term "or" is an inclusive "or" operator and is equivalent to the term "and / or" unless the context clearly specifies otherwise. The term "based on" is not exclusive and allows for reliance on additional factors not described, unless the context clearly specifies otherwise. The word "exemplary" herein means "serving as an example, instance, or illustration." Any embodiment described herein as "exemplary" is not necessarily to be construed as superior to or better than other embodiments. The scope of this utility model is limited only by the scope of the appended claims, and any examples set forth in this specification are not intended to be limiting, but merely to illustrate some of the many possible embodiments of the claimed utility model. The various embodiments provided by this utility model should not be construed as limiting the scope of protection of this utility model.

[0022] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0023] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0024] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0025] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0026] Background Introduction Wall-mounted air conditioners typically have a filter installed at the air inlet of the indoor unit. During daily use, this filter inevitably accumulates a lot of dust, clogging it. This not only affects the airflow, reduces the air conditioning's cooling and heating performance, and increases energy consumption, but also breeds harmful microorganisms, polluting the air and endangering human health. Therefore, frequent cleaning of the filter is necessary, causing significant inconvenience to users.

[0027] In existing technology, an air intake baffle is installed on the top of the air conditioner to prevent dust from accumulating on the filter. While this method can prevent dust from accumulating on the filter when the air conditioner is off, dust will accumulate on the air intake baffle if the air conditioner is not used for a long time. When the air conditioner is turned on, the dust will fall into the air conditioner, causing pollution. At the same time, installing both a filter and a baffle at the air inlet of the indoor unit will occupy a lot of space inside the indoor unit, resulting in an excessively large indoor unit size. Based on this, such as Figures 1-9 As shown, the first aspect of this application provides a wall-mounted air conditioner indoor unit, which includes: The unit 100 has an air inlet 101 formed on its top side; that is, the air inlet is located at the upper part of the indoor unit. A heat exchanger 200 is disposed inside the body 100, and a top space 300 is defined between the top side of the heat exchanger 200 and the top side of the body 100; for example Figure 1 As shown, preferably, the heat exchanger 200 is a V-shaped heat exchange component located inside the body 100 and with its opening facing downwards. The width of the heat exchanger 200 in the front-back direction of the body 100 is approximately the same as the width of the air inlet 101 in the front-back direction of the body 100, and the two are vertically aligned at their ends in the width direction. The definition of "approximately the same and vertically aligned" can be understood as follows: when the difference between the two is within 5mm-2cm, they can be considered as approximately the same and vertically aligned. The filter screen 400 and the baffle 500 are connected as a whole by a dust storage component 600, and the whole component is movably disposed within the top space 300. When the whole component moves along a first direction, it has a first moving position in which the filter screen 400 blocks the air inlet 101 and the baffle 500 avoids the air inlet 101. When it moves along a second direction opposite to the first direction, it has a second moving position in which the baffle 500 blocks the air inlet 101 and the filter screen 400 avoids the air inlet 101. The filter screen 400 has a filter screen surface facing the air inlet 101 when blocking the air inlet 101, and the baffle 500 has a baffle surface facing the air inlet 101 when blocking the air inlet 101. Preferably, both the filter screen 400 and the baffle 500 are flexible rollable components, and when the filter screen 400 and / or the baffle 500 are unfolded, they form a plate-shaped component. Preferably, the dust removal component 600 is a dust collection box connected between the filter screen 400 and the end of the baffle 500. These three components, as a whole, can be driven to move as a whole in a certain direction within the indoor unit. Preferably, the aforementioned integral component can be driven to move along the front-rear direction of the unit body, such as... Figure 3 and Figure 5 As shown; To enable cleaning of the moving assembly, the indoor unit in this embodiment further includes a cleaning component, comprising a first cleaning component 701 and a second cleaning component 702. The first cleaning component 701 cleans the baffle surface of the baffle 500 when the assembly moves along a first direction, and the second cleaning component 702 cleans the filter surface of the filter screen 400 when the assembly moves along a second direction. Preferably, the first cleaning component 701 is located at the rear of the unit, and the second cleaning component 702 is located at the front of the unit. Figure 3 As shown, when the aforementioned integral component is driven to move from the front side to the rear side of the machine body, the first cleaning component 701 located on the rear side of the machine body can clean the baffle surface of the moving baffle 500. When the aforementioned integral component is driven to move from the front side to the rear side of the machine body, the second cleaning component 702 located on the front side of the machine body can clean the filter surface of the moving filter screen 400, thereby enabling the cleaning of different gas treatment components in the integral component when it moves in different directions. Preferably, the aforementioned second cleaning component 702 and first cleaning component 701 can be brushes provided on the front and rear sides of the machine body 100. More preferably, the aforementioned brushes can be driven to extend or rotate, thereby enabling selective cleaning of the filter screen and / or baffle.

[0028] In order to collect the cleaned dust, the dust storage component is structurally designed in this embodiment, specifically, as follows: Figure 2 , Figure 4 and Figure 6As shown, the dust storage component 600 has a dust storage chamber 603 inside and a first opening 601 and a second opening 602 communicating with the dust storage chamber 603 on its surface. The first opening 601 faces the first cleaning component 701 and the second opening 602 faces the second cleaning component 702. When the entire component moves to the first moving position along the first direction, the filter 400 blocks the air inlet 101, the baffle 500 avoids the air inlet 101, and the first opening 601 of the dust storage component 600 approaches the first cleaning component 701 so that dust accumulated between the dust storage component 600 and the first cleaning component 701 can be collected through the first opening 601. When the entire component moves to the second moving position along the second direction, the baffle 500 blocks the air inlet 101, the filter 400 avoids the air inlet 101, and the second opening 602 of the dust storage component 600 approaches the second cleaning component 702 so that dust accumulated between the dust storage component 600 and the second cleaning component 702 can be collected through the second opening 602.

[0029] This combination Figure 3 and Figure 5 , Figure 3 The filter 400 is positioned to block the air inlet 101, the baffle is positioned to avoid the air inlet 101, and the dust collection component 600 is located at the rear of the body 100. Figure 5 The baffle 500 is positioned to block the air inlet 101, the filter 400 is positioned to avoid the air inlet 101, and the dust collection component 600 is located at the front of the body 100. When the filter 400, dust collection component 600, and baffle 500, which together form a whole, are... Figure 3 The position is moved towards the front of the machine body 100 and switched to Figure 5 When the filter 400 moves to a position that avoids the air inlet 101, the second cleaning component 702 located at the front of the body 100 can clean the filter screen surface that moves towards the front of the body 100 and accumulate dust between the second cleaning component 702 and the left side of the dust storage component 600. When the filter screen 400 moves to a position that avoids the air inlet 101, the dust storage component 600 moves to the front of the body 100 and approaches the second cleaning component 702 at the front of the body 100. In this way, the dust accumulated between the second cleaning component 702 and the left side of the dust storage component 600 can be squeezed into the dust storage chamber 603 inside the dust storage component 600 through the second opening 602 on the left side of the dust storage component 600. Figure 6 As shown. Similarly, when the filter screen 400, dust collection component 600, and baffle 500 that constitute a whole are made of... Figure 5 The position is moved to the rear of the machine body 100 and switched to Figure 3When the baffle 500 is in the position of moving towards the rear of the body 100, the first cleaning component 701 can clean the baffle surface that moves towards the rear of the body 100 and accumulate dust between the first cleaning component 701 and the right side of the dust storage component 600. When the baffle 500 moves to the position of avoiding the air inlet 101, the dust storage component 600 moves to the rear of the body 100 and approaches the first cleaning component 701 at the rear of the body 100. In this way, the dust accumulated between the first cleaning component 702 and the right side of the dust storage component 600 can be squeezed into the dust storage chamber 603 of the dust storage component 600 through the first opening on the right side of the dust storage component 600. Figure 4 As shown.

[0030] In this embodiment, the filter 400 and the baffle 500 are connected into a single unit via the dust storage component 600. This allows the unit to move along the same track, achieving the effect of either the filter 400 or the baffle 500 blocking the air inlet 101, while avoiding the need for a layered design (where the filter and baffle are distributed along the height of the unit and run on their respective tracks) that would occupy significant space inside the air conditioner. Furthermore, the dust storage component 600 allows for separate cleaning of the baffle 500 and filter 400 as the unit moves in different directions, preventing dust from falling into the air conditioner.

[0031] It is worth noting that, in describing the specific moving directions of the filter 400, baffle 500, and dust collection component 600, the entire component moves from the front to the rear of the body 100 when cleaning the baffle 500, and from the rear to the front of the body 100 when cleaning the filter 400. Of course, in some alternative embodiments, the entire component may move from the rear to the front of the body 100 when cleaning the baffle 500, and from the front to the rear of the body 100 when cleaning the filter 400.

[0032] That is, the first direction mentioned above can be the direction from the front side of the body 100 to the rear side of the body 100, and the second direction is the direction from the rear side of the body 100 to the front side of the body 100; or The first direction mentioned above is the direction from the rear side of the body 100 to the front side of the body 100, and the second direction is the direction from the front side of the body 100 to the rear side of the body 100; One of the first cleaning component 701 and the second cleaning component 702 is located near the front side of the body 100, and the other is located near the rear side of the body 100.

[0033] Preferred, such as Figure 1 , Figure 3and Figure 5 As shown, the first direction is from the front side of the body 100 to the rear side of the body 100, the second direction is from the rear side of the body 100 to the front side of the body 100, the first cleaning component 701 is disposed on the rear side of the body 100, and the second cleaning component 702 is disposed on the front side of the body 100.

[0034] It should be noted that the front side of the aforementioned body 100 is the side of the body 100 with the air outlet, and correspondingly, the side of the body 100 with the air outlet is the rear side of the body 100.

[0035] In some implementations, such as Figure 1 , Figure 3 and Figure 5 As shown, the first cleaning component 701 includes a first brush that can be controlled to move, and the second cleaning component 702 includes a second brush that can be controlled to move. in When the entire component moves along the first direction, the first brush can be controlled to be in a first contact position that contacts the baffle surface, and the second brush can be controlled to be in a second separation position that separates from the filter screen surface. When the entire component moves along the second direction, the first brush can be controlled to be in a first separation position separate from the baffle surface, and the second brush can be controlled to be in a second contact position contacting the filter screen surface.

[0036] Preferably, the first brush and the second brush can be driven to move individually or simultaneously, and the first brush and / or the second brush can adopt the same movement mode or different movement modes. Preferably, the first brush and the second brush can be controlled to extend and retract independently. When the first brush and the second brush are controlled to extend, they can contact the corresponding gas treatment component (filter screen or baffle) to perform a cleaning operation. When the first brush and the second brush are controlled to retract, they can separate from the corresponding gas treatment component (filter screen or baffle).

[0037] In some implementations, such as Figure 8 and Figure 9 As shown, the dust storage component 600 also includes a first stop 604 and a second stop 605. The first stop 604 is controllably movable and disposed at the first opening 601 position of the dust storage component 600 to open or close the first opening 601. The second stop 605 is controllably movable and disposed at the second opening 602 position of the dust storage component 600 to open or close the second opening 602. Preferably, the first stop 604 and the second stop 605 are sliding plates slidably disposed at the corresponding opening positions. Among them, such as Figure 2 , Figure 4 and Figure 6 As shown: When the entire component moves along the first direction, the first stop 604 is controlled to be in the first open position where the first opening 601 is open, and the second stop 605 is controlled to be in the second closed position where the second opening 602 is closed. When the entire component moves along the second direction, the first stop 604 is controlled to be in the first closed position of closing the first opening 601, and the second stop 605 is controlled to be in the second open position of opening the second opening 602.

[0038] Combination Figure 1 , Figure 3 and Figure 5 As shown, when the filter screen 400, dust collection component 600 and baffle 500 that constitute a whole are made of Figure 3 The position is moved towards the front of the machine body 100 and switched to Figure 5 When the filter 400 moves to a position that avoids the air inlet 101, the second cleaning component 702 can clean the filter screen that moves towards the front of the body 100 and accumulate dust between the second cleaning component 702 and the left side of the dust storage component 600. When the filter 400 moves to a position that avoids the air inlet 101, the dust storage component 600 moves to the front of the body 100 and approaches the second cleaning component 702. Since the second opening 602 on the left side of the dust storage component 600 is open, the dust accumulated between the second cleaning component 702 and the left side of the dust storage component 600 can be squeezed into the dust storage chamber 603 inside the dust storage component 600 through the second opening 602 on the left side of the dust storage component 600. At the same time, since the first opening 601 on the right side of the dust storage component 600 is closed, the dust squeezed into the dust storage component 600 will not leak out through the first opening 601. Figure 6 As shown.

[0039] Similarly, when the filter screen 400, dust collection component 600, and baffle 500 that constitute a whole are made of Figure 5 The position is moved to the rear of the machine body 100 and switched to Figure 3When the baffle 500 moves to a position that avoids the air inlet 101, the first cleaning component 701 can clean the baffle surface that moves towards the rear of the body 100 and accumulate dust between the first cleaning component 701 and the right side of the dust storage component 600. When the baffle 500 moves to a position that avoids the air inlet 101, the dust storage component 600 moves to the rear of the body 100 and approaches the first cleaning component 701. Since the first opening 601 on the right side of the dust storage component 600 is open, the dust accumulated between the first cleaning component 702 and the right side of the dust storage component 600 can be squeezed into the dust storage chamber 603 of the dust storage component 600 through the first opening 601 on the right side of the dust storage component 600. At the same time, since the second opening 602 on the left side of the dust storage component 600 is closed, the dust squeezed into the dust storage component 600 will not leak out through the second opening 602. Figure 4 As shown.

[0040] In some embodiments, to facilitate the collection and cleaning of dust within the dust storage component 600, the indoor unit of the air conditioner in this application embodiment further includes: The dust collection box 800 is located in the top space 300 and is on one side of the moving direction of the whole component. The dust collection box 800 has a dust collection chamber 801 inside and a dust collection port 802 on its surface. The surface of the dust storage component 600 also has a first dust discharge port 606 that communicates with the dust storage chamber 603; in When the entire component moves along the first direction to the first moving position where the filter screen 400 blocks the air inlet 101 and the baffle 500 avoids the air inlet 101, the first dust discharge port 606 of the dust storage component 600 is connected to the dust collection port 802 of the dust collection box 800. or When the entire component moves along the second direction to the second moving position where the baffle 500 blocks the air inlet 101 and the filter screen 400 avoids the air inlet 101, the first dust discharge port 606 of the dust storage component 600 is connected to the dust collection port 802 of the dust collection box 800.

[0041] Preferred, such as Figure 1 , Figure 3 and Figure 5 As shown, the dust collection box 800 is located on the front side of the body 100. When the dust storage component 600 moves to the front side of the body 100, the first dust outlet 606 of the dust storage component 600 can communicate with the dust collection outlet 802 of the dust collection box 800, and the dust in the dust storage component 600 can be collected in the dust collection box 800.

[0042] In some embodiments not shown, a dust collection device may be provided in the dust collection box 800 to improve the dust removal effect in the dust storage component 600. When the dust storage component 600 moves to the position where the first dust outlet 606 communicates with the dust collection outlet 802 of the dust collection box 800, the dust collection device is controlled to be turned on so that the dust in the dust storage chamber 603 can be sucked into the dust collection chamber 801 of the dust collection box 800 by the suction of the dust collection device.

[0043] In some implementations, such as Figure 7 As shown, the dust collection box 800 is provided with a limiting structure 803; When the dust storage component 600 moves to the position where the first dust discharge port 606 communicates with the dust collection port 802 of the dust collection box 800, the dust storage component 600 is limited by the limiting structure 803.

[0044] In some implementations, such as Figure 1 , Figure 3 and Figure 5 As shown, the dust collection chamber 801 of the dust collection box 800 extends from top to bottom in the height direction of the body 100, and the dust collection port 802 is located near the top of the dust collection chamber 801; so that the dust in the dust storage component 600 can fall into the dust collection chamber 801 of the dust collection box 800 under the action of gravity. The surface of the dust collection box 800 is also provided with a connecting port 804 located below the dust collection port 802, and a second row of dust ports 805 located below the connecting port 804; The connecting port 804 is connected to the dust collection port 802 and is used to guide the dust entering the dust collection port 802 into the dust collection chamber 801. Preferably, the dust collection port 802 and the connecting port 804 are connected by a connecting pipe (not shown). The second dust discharge port 805 is used to discharge the dust in the dust collection chamber 801 to the outside of the machine body 100. Preferably, the second dust discharge port 805 is connected to the drainage channel of the machine body 100, so that the dust falling into the drainage channel through the second dust discharge port 805 can be discharged to the outside of the machine body 100 by the water flow.

[0045] In some implementations, such as Figure 1 , Figure 3 and Figure 5 As shown, the indoor unit of the air conditioner also includes: The drive mechanism includes a first drive mechanism 901 and a second drive mechanism 902, wherein one of the first drive mechanism 901 and the second drive mechanism 902 is located on one side of the overall component's movement direction and the other is located on the other side of the overall component's movement direction. The filter 400 and the baffle 500 are constructed to be flexible; The first drive mechanism 901 is used to wind the baffle 500 while driving the whole component to move in the first direction, and the second drive mechanism 902 is used to wind the filter screen 400 while driving the whole component to move in the second direction.

[0046] In this embodiment of the application, to avoid affecting the internal space of the air conditioner, both the filter 400 and the baffle 500 are made flexible, and two corresponding drive mechanisms are provided. This allows the other gas handling component (filter or baffle) to be wound onto the corresponding drive mechanism when one of the gas handling components (filter or baffle) is blocking the air inlet 101 of the unit, thus not occupying the internal space of the air conditioner. Preferably, both the first and second drive mechanisms are driven to rotate drums.

[0047] In some implementations, combined with, for example Figures 1-9 The preferred embodiment of the air conditioner indoor unit in this application is described below: like Figures 1-9 As shown, the integral component consisting of filter 400, dust collection component 600 and baffle 500 can move along the front and rear direction of the body 100. When the integral component moves from the front side to the rear side of the body 100, it has a first moving position in which filter 400 blocks air inlet 101 and baffle 500 avoids air inlet 101. When the integral component moves from the rear side to the front side of the body 100, it has a second moving position in which baffle 500 blocks air inlet 101 and filter 400 avoids air inlet 101. The first cleaning component 701 includes a first brush located at the rear of the body 100, and the second cleaning component 702 includes a second brush located at the front of the body 100. The first brush is used to clean the baffle surface of the baffle 500 when the entire component moves from the front to the rear of the body 100, and the second brush is used to clean the filter surface of the filter screen 400 when the entire component moves from the rear to the front of the body 100. The indoor unit of the air conditioner also includes a drive mechanism located in the top space 300. The drive mechanism includes a first drive mechanism 901 located at the rear of the unit 100 and a second drive mechanism 902 located at the front of the unit 100. The first drive mechanism 901 can drive the entire component to move from the front of the unit 100 to the rear of the unit 100 while winding the baffle 500. The second drive mechanism 902 can drive the entire component to move from the rear of the unit 100 to the front of the unit 100 while winding the filter screen 400.

[0048] In other words, by connecting the filter 400 and the baffle 500 into a single unit via the dust collection component 600, the connected unit can move along the same track. This allows the filter 400 or the baffle 500 to effectively block the air inlet 101 while avoiding the need for a layered design of the filter 400 and baffle 500 (where the layered design refers to the filter and baffle being distributed along the height of the unit and running on their respective tracks), which would occupy more space inside the air conditioner. Furthermore, the dust collection component 600 allows for the separate cleaning of the baffle 500 and filter 400 as the unit moves in different directions, preventing dust from falling into the air conditioner.

[0049] Furthermore, the indoor unit of the air conditioner also includes a dust collection box 800, which forms a drive mechanism mounting cavity 806, a running track 807, and a dust collection chamber 801; The drive mechanism mounting cavity 806 includes a first drive mechanism mounting cavity 8061 located at the rear side of the body 100 and a second drive mechanism mounting cavity 8062 located at the front side of the body. A first drive mechanism 901 is installed in the first drive mechanism mounting cavity 8061 and a second drive mechanism 902 is installed in the second drive mechanism mounting cavity 8062. The filter screen 400, baffle 500 and dust storage component 600, which constitute an integral part, are located in the running track 807 and can move along the front and rear direction of the body 100 under the drive of the first drive mechanism 901 and / or the second drive mechanism 902. The dust collection chamber 801 of the dust collection box 800 is located on the front side of the body 100, and the dust collection box 800 is provided with a dust collection port 802 that communicates with the dust collection chamber 801. The dust storage component 600 is provided with a first dust discharge port 606. When the whole component is in the second moving position where the baffle 500 blocks the air inlet 101 and the filter screen 400 avoids the air inlet 101, the dust storage component 600 in the whole component is limited and the first dust discharge port 606 in the dust storage component 600 communicates with the dust collection port 802 of the dust collection box 800.

[0050] By integrating the drive mechanism mounting cavity 806, the running track 807, and the dust collection cavity 801 into the dust collection box 800, the installation of the indoor unit is simplified, and subsequent maintenance of components such as the filter 400, baffle 500, dust storage component 600, and drive mechanism is facilitated.

[0051] In some embodiments, when the indoor unit of the air conditioner is in the off state, the filter 400, baffle 500 and dust collection component 600, which are integral components, are in a second movable position where the baffle 500 blocks the air inlet and the filter 400 avoids the air inlet 101. When the indoor unit of the air conditioner switches from the off state to the on state, the filter 400, baffle 500 and dust collection component 600, which are integral components, switch from the second moving position to the first moving position where the filter 400 blocks the air inlet 101 and the baffle 500 avoids the air inlet 101, so as to control the filter 400 to block the air inlet 101 while the baffle 500 is rolled up. When the indoor unit of the air conditioner switches from the on state to the off state, the filter screen 400, baffle 500 and dust collection component 600, which are integral components, switch from the first moving position to the second moving position, so as to control the baffle 500 to block the air inlet 101 while rolling up the filter screen. in If the entire assembly switches from the off state to the on state, the first brush is controlled to contact the baffle surface of the baffle 500, and the second brush is controlled to separate from the filter screen surface of the filter screen 400.

[0052] Specifically, such as Figure 1 As shown, the indoor unit is in the off state, the baffle 500 covers the air inlet 101, the filter 400 is in the rolled-up state, the two brushes are not in contact with the filter or the baffle in the initial state, the dust collection box is located at the limiting structure 803 at the left end of the running track, and the baffles on the left and right sides of the dust collection box are kept in the position of tightly closed corresponding openings.

[0053] like Figure 3 As shown, when the machine is turned on, the brush located on the rear side of the machine body 100 extends downward and contacts the baffle surface of the baffle 500. The sliding plate at the first opening 601 on the right side of the dust collection box opens, and the two rollers located on the front and rear sides of the machine body rotate clockwise. The brush located on the rear side of the machine body sweeps the dust on the baffle 500 into the dust collection box. That is, when the dust collection box moves to the position of the brush on the rear side of the machine body, the dust accumulated at the brush on the rear side of the machine body can be squeezed into the dust collection box by the squeezing action of the dust collection box and the brush, thereby achieving the cleaning and collection of dust on the baffle.

[0054] like Figure 3 As shown, when the machine is turned off, the brush located on the front side of the machine extends downward and contacts the filter screen 400. The sliding plate at the second opening 602 on the left side of the dust collection box opens, and the two rollers located on the front and rear sides of the machine rotate counterclockwise. The brush located on the front side of the machine sweeps the dust on the filter screen 400 into the dust collection box. When the machine is turned off, the rollers located on the front and rear sides of the machine stop rotating. The first dust outlet 606 on the dust collection box is connected to the dust collection outlet 802 on the dust collection box 800. The dust is discharged into the dust collection chamber 800 inside the dust collection box 800 through the connecting pipe between the dust collection outlet 802 and the connecting port 804. After that, the dust is discharged into the drain pipe of the machine through the second dust outlet 805.

[0055] The specific method is as follows: 1. Turn on the air conditioner; 2. The brush located on the right side of the machine extends out and contacts the baffle, and the sliding plate at the first opening on the right side of the dust collection box opens; 3. The drums located on the front and rear sides of the machine rotate clockwise, the filter screen unfolds, the baffle rewinds, and the brush located on the rear side of the machine cleans the dust on the baffle; 4. When the dust collection box moves to the right end of the track limit structure, the brush located on the rear side of the unit sweeps the dust on the baffle into the dust collection box. The two rollers stop rotating, the sliding plate on the right side of the dust collection box closes, the brush on the rear side of the unit returns to its initial state, and the air conditioner starts to run. 5. Check if there is dust accumulation on the filter screen. 1 is → ① The brush located on the front side of the machine extends out and contacts the filter screen, and the sliding plate at the second opening 602 on the left side of the dust collection box opens; ② The two drums rotate counterclockwise, the baffle unfolds, the filter screen is rolled up, and the brush located on the front of the machine body sweeps the dust off the filter screen; ③ When the dust collection box moves to the left end of the track limit structure, the first dust outlet 606 on the dust collection box is connected to the dust collection outlet 802 of the dust collection box 800. The brush located on the front side of the machine body sweeps the dust on the filter screen into the dust collection box. The two rollers stop rotating, the sliding plate at the second opening 602 closes, and the brush located on the front side of the machine body returns to its initial state. The dust is discharged from the first dust outlet 606 of the dust collection box through the dust collection outlet 802 and the connecting port 804 on the dust collection box 800 into the dust collection chamber 801 of the dust collection box 800, and then discharged through the second dust outlet 805 to the drain pipe of the machine body. ④ The two rollers rotate clockwise, the filter screen unfolds, the baffle rewinds, the dust collection box moves to the limit structure at the right end of the track, the two rollers stop rotating, and the air conditioner operates normally.

[0056] 2 No → Air conditioner is operating normally 6. Is the device turned off? 1 is → Repeat step 5 of the process. 2 No → Air conditioner off It is worth noting that the brush located on the front side of the machine body is the second cleaning component 702, the brush located on the front side of the machine body is the first cleaning component 701, the sliding plate at the first opening 601 is the first stop 604, the sliding plate at the second opening 602 is the second stop 605, and the two rollers are the first drive mechanism 901 and the second drive mechanism 902.

[0057] In the above embodiments of this application, the descriptions of each embodiment have their own emphasis. Parts not described in detail in a certain embodiment can be referred to in the relevant descriptions of other embodiments. The steps illustrated in the related flowcharts can be executed in a computer system such as a set of computer-executable instructions. Furthermore, although a logical order is shown in the flowcharts, in some cases, the steps shown or described may be performed in a different order than that shown here. In other words, the order of steps described in the foregoing embodiments is merely an example. Reasonable adjustments to the order of steps based on the content of the embodiments of this application are also within the protection scope of the embodiments of this application.

[0058] The sequence numbers or order of description of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.

[0059] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. In addition, those skilled in the art can combine and integrate the different embodiments or examples described in this specification.

[0060] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A wall-mounted air conditioner indoor unit, characterized by comprising: The air conditioner indoor unit comprises: a machine body (100), a top side of the machine body (100) being formed with an air inlet (101); a heat exchanger (200), the heat exchanger (200) being arranged inside the machine body (100), and a top side of the heat exchanger (200) and the top side of the machine body (100) defining a top space (300) therebetween; a filter screen (400) and a baffle (500), the filter screen (400) and the baffle (500) being connected into an integral piece through a dust storage member (600), and the integral piece being movably arranged in the top space (300), wherein the integral piece has a first moving position when moving along a first direction, in which the filter screen (400) shields the air inlet (101) and the baffle (500) avoids the air inlet (101), and has a second moving position when moving along a second direction opposite to the first direction, in which the baffle (500) shields the air inlet (101) and the filter screen (400) avoids the air inlet (101), the filter screen (400) has a filter screen surface facing the air inlet (101) when shielding the air inlet (101), and the baffle (500) has a baffle surface facing the air inlet (101) when shielding the air inlet (101); a cleaning member, the cleaning member comprising a first cleaning member (701) for cleaning the baffle surface of the baffle (500) when the integral piece moves along the first direction, and a second cleaning member (702) for cleaning the filter screen surface of the filter screen (400) when the integral piece moves along the second direction; the dust storage member (600) is internally formed with a dust storage cavity (603), and a surface of the dust storage member (600) is formed with a first opening (601) and a second opening (602) communicating with the dust storage cavity (603), the first opening (601) facing the first cleaning member (701), and the second opening (602) facing the second cleaning member (702); when the integral piece moves along the first direction to the first moving position, the filter screen (400) shields the air inlet (101), the baffle (500) avoids the air inlet (101), and the first opening (601) of the dust storage member (600) is close to the first cleaning member (701), so that dust accumulated between the dust storage member (600) and the first cleaning member (701) can be collected through the first opening (601), and when the integral piece moves along the second direction to the second moving position, the baffle (500) shields the air inlet (101), the filter screen (400) avoids the air inlet (101), and the second opening (602) of the dust storage member (600) is close to the second cleaning member (702), so that dust accumulated between the dust storage member (600) and the second cleaning member (702) can be collected through the second opening (602).

2. The air conditioner indoor unit according to claim 1, characterized in that, The first direction is from the front side of the body (100) to the back side of the body (100), and the second direction is from the back side of the body (100) to the front side of the body (100); Or The first direction is from the back side of the body (100) to the front side of the body (100), and the second direction is from the front side of the body (100) to the back side of the body (100); One of the first cleaning component (701) and the second cleaning component (702) is arranged close to the front side of the body (100), and the other is arranged close to the back side of the body (100). 3.The indoor unit of the air conditioner according to claim 1, characterized by, The first cleaning component (701) comprises a first brush capable of being controlled to move, and the second cleaning component (702) comprises a second brush capable of being controlled to move. Wherein When the whole moves along the first direction, the first brush can be controlled to be in a first contact position in contact with the baffle surface, and the second brush can be controlled to be in a second separation position separated from the filter screen surface; When the whole moves along the second direction, the first brush can be controlled to be in a first separation position separated from the baffle surface, and the second brush can be controlled to be in a second contact position in contact with the filter screen surface. 4.The indoor unit of the air conditioner according to claim 1, characterized by, The dust storage member (600) further comprises a first blocking piece (604) and a second blocking piece (605), the first blocking piece (604) is arranged in the position of the first opening (601) of the dust storage member (600) and can be controlled to move, so as to open or close the first opening (601), and the second blocking piece (605) is arranged in the position of the second opening (602) of the dust storage member (600) and can be controlled to move, so as to opening or closing the second opening (602); Wherein When the whole moves along the first direction, the first blocking piece (604) is controlled to be in a first opening position to open the first opening (601), and the second blocking piece (605) is controlled to be in a second closing position to close the second opening (602); When the whole moves along the second direction, the first blocking piece (604) is controlled to be in a first closing position to close the first opening (601), and the second blocking piece (605) is controlled to be in the second opening position to open the second opening (602). 5.The indoor unit of the air conditioner according to any one of claims 1-4, wherein, The air conditioner indoor unit further comprises: A dust collecting box (800) is arranged in the top space (300) and on one side of the moving direction of the whole, and a dust collecting cavity (801) is formed in the interior of the dust collecting box (800), and a dust collecting port (802) is formed on the surface of the dust collecting box (800); A first dust discharging port (606) is further formed on the surface of the dust storage member (600) and communicates with the dust storage cavity (603); Wherein When the whole piece moves to a first moving position along a first direction, the filter screen (400) blocks the air inlet (101), and the baffle (500) avoids the air inlet (101), the first dust discharging port (606) of the dust storage member (600) is communicated with the dust collecting port (802) of the dust collecting box (800); Or When the whole piece moves to a second moving position along a second direction, the baffle (500) blocks the air inlet (101), and the filter screen (400) avoids the air inlet (101), the first dust discharging port (606) of the dust storage member (600) is communicated with the dust collecting port (802) of the dust collecting box (800). 6.The indoor unit of the air conditioner according to claim 5, characterized in that, The dust collecting box (800) is provided with a dust suction device; When the dust storage member (600) moves to a position where the first dust discharging port (606) is communicated with the dust collecting port (802) of the dust collecting box (800), the dust suction device is controlled to be turned on, so that the dust in the dust storage cavity (603) can be sucked into the dust collecting cavity (801) of the dust collecting box (800) by the suction force of the dust suction device. 7.The indoor unit of the air conditioner according to claim 5, characterized in that, The dust collecting box (800) is provided with a limiting structure (803); When the dust storage member (600) moves to a position where the first dust discharging port (606) is communicated with the dust collecting port (802) of the dust collecting box (800), the dust storage member (600) is limited by the limiting structure (803). 8.The indoor unit of the air conditioner according to claim 5, characterized by, The dust collecting cavity (801) of the dust collecting box (800) extends from top to bottom in the height direction of the machine body (100), and the dust collecting port (802) is arranged close to the top of the dust collecting cavity (801); The surface of the dust collecting box (800) is further provided with a communication port (804) below the dust collecting port (802), and a second dust discharging port (805) below the communication port (804); The communication port (804) is communicated with the dust collecting port (802), and is used for guiding the dust entering the dust collecting port (802) into the dust collecting cavity (801), and the second dust discharging port (805) is used for discharging the dust in the dust collecting cavity (801) out of the machine body (100). 9.The indoor unit of the air conditioner according to any one of claims 1-4, wherein, The air conditioner indoor unit further comprises: The driving mechanism comprises a first driving mechanism (901) and a second driving mechanism (902), one of the first driving mechanism (901) and the second driving mechanism (902) is arranged on one side in the moving direction of the whole piece, and the other is arranged on the other side in the moving direction of the whole piece; The filter screen (400) and the baffle (500) are flexible; The first driving mechanism (901) is used for winding the baffle (500) while driving the whole piece to move in the first direction, and the second driving mechanism (902) is used for winding the filter screen (400) while driving the whole piece to move in the second direction.

10. The air conditioner indoor unit according to claim 1, wherein The whole piece can move along the front-rear direction of the body (100), and has a first moving position in which the filter screen (400) shields the air inlet (101) and the baffle (500) avoids the air inlet (101) when moving from the front side of the body (100) to the rear side of the body (100); the whole piece has a second moving position in which the baffle (500) shields the air inlet (101) and the filter screen (400) avoids the air inlet (101) when moving from the rear side of the body (100) to the front side of the body (100); The first cleaning component (701) comprises a first brush arranged at the rear side of the body (100), and the second cleaning component (702) comprises a second brush arranged at the front side of the body (100), the first brush being used to clean the baffle surface of the baffle (500) when the whole piece moves from the front side of the body (100) to the rear side of the body (100), and the second brush being used to clean the filter screen surface of the filter screen (400) when the whole piece moves from the rear side of the body (100) to the front side of the body (100); The air conditioner indoor unit further comprises a driving mechanism arranged in the top space (300), the driving mechanism comprising a first driving mechanism (901) arranged at the rear side of the body (100) and a second driving mechanism (902) arranged at the front side of the body (100), the first driving mechanism (901) being capable of driving the whole piece to move from the front side of the body (100) to the rear side of the body (100) while winding the baffle (500), and the second driving mechanism (902) being capable of driving the whole piece to move from the rear side of the body (100) to the front side of the body (100) while winding the filter screen (400). 11.The indoor unit of the air conditioner of claim 10, characterized in that, The air conditioner indoor unit further comprises a dust collecting box (800), the dust collecting box (800) being formed with a driving mechanism mounting cavity (806), a running track (807) and a dust collecting cavity (801); The driving mechanism mounting cavity (806) comprises a first driving mechanism mounting cavity (8061) at the rear side of the body (100) and a second driving mechanism mounting cavity (8062) at the front side of the body (100), the first driving mechanism (901) being mounted in the first driving mechanism mounting cavity (8061), and the second driving mechanism (902) being mounted in the second driving mechanism mounting cavity (8062); The filter screen (400), the baffle (500) and the dust storage member (600) constituting a whole piece are arranged in the running track (807) and can move along the front-rear direction of the body (100) under the driving of the first driving mechanism (901) and / or the second driving mechanism (902). The dust collecting cavity (801) of the dust collecting box (800) is located at the front side of the machine body (100), and the dust collecting box (800) is provided with a dust collecting port (802) communicating with the dust collecting cavity (801), and the dust storage member (600) is provided with a first dust discharging port (606), wherein when the overall piece is in the second moving position that the baffle (500) shields the air inlet (101) and the filter screen (400) avoids the air inlet (101), the dust storage member (600) in the overall piece is limited, and the first dust discharging port (606) in the dust storage member (600) is communicated with the dust collecting port (802) of the dust collecting box (800).

12. The indoor unit of an air conditioner according to claim 11, characterized in that, when the indoor unit is in an off state, the filter screen (400), the baffle (500) and the dust storage member (600) constituting an overall piece are in a second moving position that the baffle (500) shields the air inlet and the filter screen (400) avoids the air inlet (101); when the indoor unit is switched from the off state to an on state, the filter screen (400), the baffle (500) and the dust storage member (600) constituting an overall piece are switched from the second moving position to a first moving position that the filter screen (400) shields the air inlet (101) and the baffle (500) avoids the air inlet (101), so as to control the filter screen (400) to shield the air inlet (101) while rolling up the baffle (500); when the indoor unit is switched from the on state to the off state, the filter screen (400), the baffle (500) and the dust storage member (600) constituting an overall piece are switched from the first moving position to the second moving position, so as to control the baffle (500) to shield the air inlet (101) while rolling up the filter screen (400); wherein if the overall piece is switched from the off state to the on state, the first brush is controlled to be in contact with the baffle surface of the baffle (500), and the second brush is controlled to be separated from the filter screen surface of the filter screen (400); if the overall piece is switched from the on state to the off state, the first brush is controlled to be separated from the baffle surface of the baffle (500), and the second brush is controlled to be in contact with the filter screen surface of the filter screen (400).

13. An air conditioner characterized by comprising: The wall-mounted air conditioner indoor unit according to any one of claims 1-12, and an outdoor unit.