Air conditioner indoor unit and air conditioner
By movably installing the purification module in the air guide structure within the indoor unit of the air conditioner, the switching between purification mode and regular air supply mode can be achieved, solving the problems of poor purification effect and wind resistance, improving purification effect and air volume, while reducing the space occupied by the unit.
Patent Information
- Application Number
- CN202010782605.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-08-06
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2040-08-06
AI Technical Summary
The existing air conditioner indoor unit purification module design results in poor purification effect, and the purification module occupies space, affecting the air conditioner's air volume and body size.
The purification module can be movably installed on the air guide structure, allowing for a first position to be set at the air outlet for purification or a second position to be avoided. Combined with the mobility of the air guide structure and multiple air diffusers, it enables switching between purification mode, regular air supply mode, and windless/gentle breeze mode.
It improves the purification effect, reduces wind resistance in the conventional air supply mode, increases the size of the purification module, reduces the impact of the body size, and enhances users' trust in the purification function.
Smart Images

Figure CN114060918B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the air conditioning technical field, and particularly relates to an air conditioner indoor unit and an air conditioner. BACKGROUND
[0002] The purification function attached to the existing air conditioner indoor unit is placed in the main air duct or the air inlet of the main air duct. In this way, the purification module has a greater impact on the air volume of the air conditioner cooling and heating. Therefore, the purification module cannot be designed too large, which makes the air conditioner indoor unit unable to cover a large area of the purification and sterilization module, resulting in poor health function effect.
[0003] The above content is only used to assist in understanding the technical solutions of the application and does not represent the acknowledgement of the above content as prior art. SUMMARY
[0004] The main purpose of the present application is to provide an air conditioner indoor unit, which aims to solve the technical problem of poor purification effect of the air conditioner indoor unit.
[0005] To achieve the above purpose, the air conditioner indoor unit provided by the present application comprises a shell, an air guide structure and a purification module.
[0006] The shell is provided with an air outlet.
[0007] The air guide structure is movably installed on the shell to open or close the air outlet.
[0008] The purification module is movably installed on the air guide structure to have a first position corresponding to the air outlet and a second position avoiding the air outlet.
[0009] In an embodiment, the air guide structure is provided with a plurality of air dispersing holes, and when the air guide structure closes the air outlet, the purification module can be switched between the first position and the second position.
[0010] In an embodiment, the air guide structure comprises an outer air guide plate, the outer air guide plate is provided with a plurality of air dispersing holes, and the purification module is movably installed on the windward side of the outer air guide plate.
[0011] In an embodiment, the purification module is slidably installed on the outer air guide plate along the width direction of the outer air guide plate.
[0012] In an embodiment, the purifying module has a first side close to the outer air deflector and a second side away from the outer air deflector, the first side is attached to the windward side of the outer air deflector, and the second side is provided with a rack structure extending along the width direction of the outer air deflector, the shell is provided with a driving member and a gear in transmission connection, when the air deflector structure closes the air outlet, the gear is engaged with the rack structure, and the driving member drives the gear to drive the purifying module to switch between the first position and the second position.
[0013] In an embodiment, the air deflector structure further comprises an air deflector frame, one side of the air deflector frame is open, the purifying module is installed in the air deflector frame, and the first position and the second position are switched by the opening, the outer air deflector is installed on the outer side of the air deflector frame, and the middle part of the inner side of the air deflector frame is open.
[0014] In an embodiment, the shell comprises a front panel and a lower bottom plate connected to each other, the air outlet is arranged at the connection between the front panel and the lower bottom plate, and the opening is arranged towards the back and downwards.
[0015] In an embodiment, the air deflector frame and / or the outer air deflector is provided with a buckling member, when the purifying module is in the first position, the buckling member buckles the purifying module to limit the purifying module from being separated from the air deflector frame.
[0016] In an embodiment, the air deflector frame and the outer air deflector are integrally arranged.
[0017] In an embodiment, the purifying module extends along the length direction of the outer air deflector, the rack structure is arranged on both sides of the purifying module, and the driving member and the gear are correspondingly arranged on both sides of the shell.
[0018] In an embodiment, one of the air deflector frame and the purifying module is provided with a protruding strip extending along the width direction of the outer air deflector, and the other is provided with a groove, the protruding strip is adapted to be installed in the groove to limit the movement of the purifying module along the length direction of the outer air deflector.
[0019] In an embodiment, the purifying module comprises one or more of a filter screen module, a plasma module, an electrostatic dust removal module, or a negative ion module.
[0020] In an embodiment, the air conditioner indoor unit further comprises an inner air deflector arranged on the inner side of the air deflector structure, and the inner air deflector is rotatably installed at the air outlet of the shell.
[0021] In an embodiment, the air conditioner indoor unit is a wall-mounted air conditioner indoor unit.
[0022] The application further provides an air conditioner, comprising an air conditioner outdoor unit and an air conditioner indoor unit connected by a refrigerant pipe.
[0023] The shell is provided with an air outlet.
[0024] The air guide structure is movably installed on the shell to open or close the air outlet.
[0025] The purification module is movably installed on the air guide structure to have a first position corresponding to the air outlet and a second position avoiding the air outlet.
[0026] The air conditioner indoor unit has a purification mode and a conventional air supply mode, and when indoor purification is needed, the user can start the purification mode, and when purification is not needed, the user can start the conventional air supply mode. Compared with setting the purification module in the heat exchange air duct or at the air inlet, the air resistance in the conventional air supply mode can be reduced, the overall air volume can be improved, and the purification module is set on the air guide structure, so that the volume of the purification module can be increased, the purification effect can be improved, the air guide structure can be fully utilized, and the influence of the space occupied by the purification module on the size of the machine body can be reduced as much as possible. In addition, the purification module is placed at the air outlet, so that the user can more intuitively see the purification module, and the user's trust in the purification function of the product can be improved. BRIEF DESCRIPTION OF DRAWINGS
[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description only show some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings shown.
[0028] Figure 1 FIG. 1 is a structural schematic diagram of an embodiment of the air conditioner indoor unit of the present application;
[0029] Figure 2 FIG. 2 is a structural schematic diagram of another state of the air conditioner indoor unit of the present application, wherein the air guide structure is in an open state; Figure 1
[0030] Figure 3 Figure 2
[0031] Figure 4 Structure schematic view of another embodiment of the indoor unit of the air conditioner of the present application;
[0032] Figure 5 Structure schematic view of the indoor unit of the air conditioner of the present application; Figure 4 Structure schematic view of the indoor unit of the air conditioner of the present application in the purification mode;
[0033] Figure 6 Structure schematic view of the indoor unit of the air conditioner of the present application in the purification mode; Figure 5 Structure schematic view of the indoor unit of the air conditioner of the present application in the conventional air supply mode;
[0034] Figure 7 Structure schematic view of the indoor unit of the air conditioner of the present application in the conventional air supply mode; Figure 5 Structure schematic view of the indoor unit of the air conditioner of the present application in the windless mode;
[0035] Figure 8 Structure schematic view of the assembly of the air guiding structure and the purification module of the present application in one embodiment;
[0036] Figure 9 Structure schematic view of the air guiding structure of the present application in another embodiment;
[0037] Figure 10 Structure schematic view of the assembly of the air guiding structure and the purification module of the present application in another embodiment, wherein the purification module is in the first position;
[0038] Figure 11 Structure schematic view of the air guiding structure of the present application in another embodiment; Figure 10 Structure schematic view of the air guiding structure of the present application in another embodiment;
[0039] Figure 12 Structure schematic view of the air guiding structure of the present application in another embodiment; Figure 10 Structure schematic view of the purification module of the present application in the second position;
[0040] Figure 13 Structure schematic view of the purification module of the present application in the second position; Figure 12 Structure schematic view of the purification module of the present application in the second position;
[0041] Explanation of the reference signs:
[0042] Reference Name Reference Name Reference Name 100 Housing 230 Air guide frame 330 Rack structure 110 Air outlet 231 Open mouth 340 Ridge 120 Front panel 232 Groove 400 Driving member 130 Lower bottom plate 240 Locking part 500 Gear 200 Air guide structure 300 Purification module 600 Inner air guide plate 210 Air diffusion hole 310 First side 220 Outer air guide plate 320 Second side
[0043] The realization of the object, the functional features and the advantages of the present application will be further explained with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0044] It should be noted that if the embodiments of the present invention involve descriptions such as "first" and "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" and "second" may explicitly or implicitly include at least one of those features. Furthermore, the meaning of "and / or" throughout the text is to include three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or a solution that simultaneously satisfies A and B.
[0045] This invention proposes an indoor air conditioner unit, and the following description uses a wall-mounted indoor air conditioner unit as an example.
[0046] In embodiments of the present invention, such as Figures 1-7 As shown, the indoor unit of the air conditioner includes a housing 100, an air guide structure 200, and a purification module 300. An air outlet 110 is provided on the housing 100; the air guide structure 200 is movably mounted on the housing 100 to open or close the air outlet 110. The purification module 300 is movably mounted on the air guide structure 200, having a first position corresponding to the air outlet 110 and a second position avoiding the air outlet 110.
[0047] In this embodiment, the housing 100 is generally elongated, and the air outlet 110 extends approximately along the length of the housing 100 to increase the airflow. The housing 100 also has an air inlet and a heat exchange duct connecting the air inlet and the air outlet 110. A heat exchanger and a heat exchange fan are installed in the heat exchange duct. The heat exchange fan drives the airflow from the air inlet into the heat exchange duct, and after heat exchange by the heat exchanger, it is blown out from the air outlet 110 to achieve indoor heat exchange. The air guide structure 200 can be a guide plate structure or a frame structure, etc., as long as it can open or close the air outlet 110 and guide the airflow out from the air outlet 110. Typically, the air guide structure 200 is rotatably mounted on the housing 100 to open or close the air outlet 110 by rotating it up and down, and to guide the airflow in the vertical direction. Specifically, the purification module 300 includes one or more of a filter module, a plasma module, an electrostatic dust removal module, or a negative ion module. The filter module can include one or more of the following: pre-filter, HEPA filter, activated carbon filter, plasma integrated filter, photocatalytic filter, and formaldehyde filter. The electrostatic dust removal module can specifically be an IFD module, HFA module, etc. The type and quantity of the purification module 300 can be selected and designed according to usage requirements, and are not specifically limited here. The purification module 300 can sterilize, remove dust, and filter gaseous pollutants in indoor air, thereby achieving air purification.
[0048] The purification module 300 is movably installed on the air guiding structure 200, so that the purification module 300 can be slidably installed on the air guiding structure 200 or rotatably installed on the air guiding structure 200. It can be understood that the purification module 300 has a first position corresponding to the air outlet 110, that is, the purification module 300 covers the air outlet 110 or is arranged on the air flow path of the air outlet 110 when the purification module 300 is in the first position, so that the air flow blown out of the air outlet 110 can pass through the purification module 300 for purification. While the purification module 300 has a second position away from the air outlet 110, that is, the purification module 300 is not arranged on the air flow path of the air outlet 110 when the purification module 300 is in the second position, so that the air flow blown out of the air outlet 110 does not pass through the purification module 300. Specifically, the purification module 300 is movably installed on the air guiding structure 200, so as to have the first position corresponding to the air outlet 110 and the second position away from the air outlet 110 when the air guiding structure 200 opens or closes the air outlet 110. It can be understood that the purification module 300 can switch between the first position and the second position when the air guiding structure 200 opens the air outlet 110, and the purification module 300 can also switch between the first position and the second position when the air guiding structure 200 closes the air outlet 110.
[0049] In this way, the air conditioner indoor unit has a purification mode and a conventional air supply mode. When the air conditioner indoor unit is in the purification mode, the purification module 300 moves to the first position, that is, the purification module 300 is arranged corresponding to the air outlet 110, so that the air flow blown out of the air outlet 110 passes through the purification module 300 for purification. At this time, the air guiding structure 200 can be in a position where the air outlet 110 is opened or in a position where the air outlet 110 is closed. When the air guiding structure 200 is in a position where the air outlet 110 is closed, the air guiding structure 200 is provided with a ventilation hole, so that the air flow can pass through the health module and the air guiding structure 200 and be blown out. When the air conditioner indoor unit is in the conventional air supply mode, the purification module 300 moves to the second position, that is, the purification module 300 is arranged away from the air outlet 110, and at this time the air guiding structure 200 opens the air outlet 110, so that the air flow is directly blown out of the air outlet 110, realizing conventional refrigeration and heating air supply.
[0050] The air conditioner indoor unit of the present application has the air guide structure 200 movably installed on the shell 100 to open or close the air outlet 110, and the purification module 300 movably installed on the air guide structure 200 to have a first position corresponding to the air outlet 110 and a second position away from the air outlet 110. Thus, the air conditioner indoor unit has a purification mode and a conventional air supply mode. When indoor purification is needed, the user can turn on the purification mode, and when purification is not needed, the user can turn on the conventional air supply mode. Compared with setting the purification module 300 in the heat exchange air duct or at the air inlet, the air resistance in the conventional air supply mode can be reduced, the overall air volume can be improved, and the purification module 300 is set on the air guide structure 200, which can increase the volume of the purification module 300 and improve the purification effect, while fully utilizing the air guide structure 200 and minimizing the impact of the space occupied by the purification module 300 on the size of the machine body. In addition, placing the purification module 300 at the air outlet 110 allows the user to more intuitively see the purification module 300, improving the user's trust in the product's purification function.
[0051] Further, please refer to Figures 4-7 , the air guide structure 200 is provided with a plurality of air dispersing holes 210, and the purification module 300 can be switched between the first position and the second position when the air guide structure 200 closes the air outlet 110.
[0052] In this embodiment, the diameter and number of the plurality of air dispersing holes 210 can be selected according to actual use requirements, and generally the airflow is fully dispersed when blown out of the air dispersing holes 210 to achieve a breeze or no wind feeling. When the air guide structure 200 closes the air outlet 110, the purification module 300 is switched between the first position and the second position. That is, when the air guide structure 200 closes the air outlet 110, the purification module 300 can be moved on the air guide structure 200 to correspond to the air outlet 110 and to avoid the air outlet 110. It can be understood that when the air guide structure 200 closes the air outlet 110 and the purification module 300 is in the first position, the purification module 300 corresponds to the air guide structure 200, and when the air guide structure 200 closes the air outlet 110 and the purification module 300 is in the second position, the purification module 300 is offset from the air guide structure 200.
[0053] Thus, when the air guiding structure 200 closes the air outlet 110 and the purification module 300 moves to the first position corresponding to the air outlet 110, the air flow blown from the heat exchange air duct is blown out through the plurality of air diffusing holes 210 after being purified by the purification module 300, realizing the purification mode of the air conditioner. When the air guiding structure 200 closes the air outlet 110 and the purification module 300 moves to the second position away from the air outlet 110, the air flow blown from the heat exchange air duct is directly blown out through the air diffusing holes 210 of the air guiding structure 200, realizing the breezeless or slight breeze mode of the air conditioner. In the conventional air supply mode of the air conditioner, the purification module 300 can open the air outlet 110 together with the air guiding structure 200. In order to make the overall structure more compact, the purification module 300 is moved to the position corresponding to the air guiding structure 200 at this time, that is, the purification module 300 is accommodated in the air guiding structure 200. By providing the plurality of air diffusing holes 210 on the air guiding structure 200, the air conditioner indoor unit has the breezeless or slight breeze mode in addition to the purification mode and the conventional air supply mode, improving the product performance of the air conditioner indoor unit.
[0054] In fact, as shown in Figures 5-12 , the air guiding structure 200 includes an outer air guiding plate 220, and the outer air guiding plate 220 is provided with the plurality of air diffusing holes 210, and the purification module 300 is movably installed on the windward side of the outer air guiding plate 220.
[0055] In the embodiment, the outer air guiding plate 220 is used to open or close the air outlet 110, the purification module 300 is movably installed on the windward side of the outer air guiding plate 220, and the plurality of air diffusing holes 210 are provided on the outer air guiding plate 220. Thus, when the air guiding structure 200 closes the air outlet 110 and the purification module 300 is in the first position, the air flow of the air outlet 110 is blown out through the purification module 300 and then through the air diffusing holes 210, which can effectively improve the purification effect of the purification module 300 and hide the purification module 300 inside the outer air guiding plate 220, thereby maintaining the overall consistency. The purification module 300 can be in the shape of a cuboid, and the length of the purification module 300 is consistent with the length of the outer air guiding plate 220, or the length of the purification module 300 is slightly smaller than the length of the outer air guiding plate 220, so that the air flow blown out from the air outlet 110 can be purified by the purification module 300 and then blown out through the air diffusing holes 210. Of course, in other embodiments, the purification module 300 can be movably installed on the leeward side of the outer air guiding plate 220.
[0056] In an embodiment, please refer to Figures 5-13 , the purification module 300 is slidably installed on the outer air guiding plate 220 along the width direction of the outer air guiding plate 220.
[0057] In the embodiment, the purification module 300 and the air guiding structure 200 can be connected through a sliding groove sliding rail, a gear 500 and a rack, etc. It can be understood that the outer air guiding plate 220 is generally in a strip shape, and the purification module 300 is also generally in a strip shape. If the purification module 300 slides along the length direction of the outer air guiding plate 220, the stroke of the purification module 300 is too long, and the purification module 300 needs to be moved to one side of the outer air guiding plate 220 to avoid the air outlet 110, which makes the occupied space of the purification module 300 and the outer air guiding plate 220 too large. If the purification module 300 slides along the width direction of the outer air guiding plate 220, since the width of the outer air guiding plate 220 is much smaller than the length, when the purification module 300 is moved to the position to avoid the air outlet 110, i.e., is moved to one side of the outer air guiding plate 220 in the width direction, the occupied space of the purification module 300 and the outer air guiding plate 220 is small, and the overall structure is more compact. By slidably mounting the purification module 300 on the outer air guiding plate 220, compared with rotatably mounting the purification module 300 on the outer air guiding plate 220, the connection between the purification module 300 and the outer air guiding plate 220 is more stable.
[0058] In an embodiment, referring again to Figures 5-13 , the purification module 300 has a first side 310 close to the outer air guiding plate 220 and a second side 320 away from the outer air guiding plate 220. The first side 310 is attached to the windward surface of the outer air guiding plate 220, and the second side 320 is provided with a rack structure 330 extending along the width direction of the outer air guiding plate 220. The housing 100 is provided with a driving member 400 and a gear 500 in transmission connection. When the air guiding structure 200 closes the air outlet 110, the gear 500 is engaged with the rack structure 330, and the driving member 400 drives the gear 500 to drive the purification module 300 to switch between the first position and the second position.
[0059] In the embodiment, the purification module 300 is generally in a cuboid shape. The driving member 400 can be a driving motor. When the air guiding structure 200 closes the air outlet 110, the first side 310 of the purification module 300 is attached to the windward surface of the outer air guiding plate 220, and the driving motor drives the gear 500 to drive the rack structure 330 to move along the width direction of the outer air guiding plate 220, thereby driving the entire purification module 300 to move along the width direction of the outer air guiding plate 220. The gear 500 and the rack structure 330 drive the purification module 300 to slide on the outer air guiding plate 220 to switch between the first position and the second position, and the transmission structure is simple, reliable and easy to implement. When the air guiding structure 200 opens the air outlet 110, the gear 500 is disengaged from the rack structure 330, so that the purification module 300 is fixed on the outer air guiding plate 220 and opens the air outlet 110 together with the air guiding structure 200.
[0060] In an embodiment, as shown in Figures 5-13 The air guide structure 200 further comprises an air guide frame 230, one side of the air guide frame 230 is provided with an opening 231, the purification module 300 is installed in the air guide frame 230, and the first position and the second position are switched by the opening 231, the outer air guide plate 220 is installed on the outer side of the air guide frame 230, and the middle part of the inner side of the air guide frame 230 is provided with an opening.
[0061] In the embodiment, the air guide frame 230 is roughly in the shape of a cuboid, and specifically, the upper side or the lower side of the air guide frame 230 in the width direction is provided with the opening 231, so that the purification module 300 can be installed in the air guide frame 230 through the opening 231 and the first position and the second position can be switched by the opening 231. It should be noted that the outer air guide plate 220 is installed on the outer side of the air guide frame 230, and the outer side of the air guide frame 230 is also provided with an opening, so that the airflow in the air guide frame 230 can be blown out from the micropores of the outer air guide plate 220. Therefore, the outer air guide plate 220 and the air guide frame 230 can be separately provided, so that the outer air guide plate 220 is fixed on the air guide frame 230 by buckling, screwing or the like. Alternatively, the outer air guide plate 220 and the air guide frame 230 are integrally provided. In this way, the sealing consistency of the air guide structure 200 can be ensured, air leakage at the connection between the outer air guide plate 220 and the air guide frame 230 can be avoided, and the overall air guiding effect of the air guide structure 200 can be improved. The middle part of the inner side of the air guide frame 230 is provided with an opening, so that the purification module 300 can be fixed in the air guide frame 230. When the air guide structure 200 closes the air outlet 110 and the purification module 300 is in the second position, the airflow blown out from the heat exchange air duct first enters the air guide frame 230 through the opening of the inner side of the air guide frame 230, flows through the purification module 300, and is blown out through the air diffusing holes 210 of the outer air guide plate 220, so as to realize the purification mode of the air conditioner. When the air guide structure 200 closes the air outlet 110 and the purification module 300 is in the first position, the airflow blown out from the heat exchange air duct enters the air guide frame 230 through the opening of the inner side of the air guide frame 230, and is blown out through the air diffusing holes 210 of the outer air guide plate 220, so as to realize the windless or slight wind mode of the air conditioner. By providing the air guide frame 230, installing the outer air guide plate 220 on the outer side of the air guide frame 230, and installing the purification module 300 in the air guide frame 230, compared with only installing the purification module 300 on the outer air guide plate 220, the installation of the purification module 300 on the air guide structure 200 is more stable, and accidental falling of the purification module 300 when switching between the first position and the second position can be avoided.
[0062] Further, please refer to Figures 1-7The shell 100 comprises a front panel 120 and a lower bottom plate 130 connected to each other, the air outlet 110 is arranged at the connection between the front panel 120 and the lower bottom plate 130, and the opening 231 is arranged rearward and downward. The air outlet 110 is arranged at the connection between the front panel 120 and the lower bottom plate 130, so that the air flow blown out of the air outlet 110 blows forward and downward. The opening 231 of the air guide frame 230 is arranged rearward and downward, so that when the air purification module 300 is switched from the first position to the second position while the air guide structure 200 closes the air outlet 110, the air purification module 300 moves out of the air guide frame 230 rearward and downward through the opening 231. In this way, the space below and behind the shell 100 is fully utilized, and the space occupied by the entire air conditioner indoor unit in the windless or slight wind mode is reduced.
[0063] In an embodiment, as shown in Figures 2-13 The air guide frame 230 and / or the outer air guide plate 220 are provided with a buckling part 240. When the air purification module 300 is in the first position, the buckling part 240 buckles the air purification module 300 to limit the air purification module 300 from being separated from the air guide frame 230.
[0064] In this embodiment, the buckling part 240 can be a buckle. When the air purification module 300 is in the first position, the buckling part 240 buckles the air purification module 300, so that the buckling part 240 buckles the air purification module 300 close to the end of the opening 231 to prevent the air purification module 300 from being separated. Of course, a cooperating part that matches the buckling part 240 can also be arranged on the middle or end of the air purification module 300 to limit the air purification module 300 from being separated from the air guide frame 230. The number of buckling parts 240 can be one, two or more. In order to ensure the stability of the installation of the air purification module 300, at least two buckling parts 240 are arranged in the length direction of the air guide frame 230 and / or the outer air guide plate 220, and the at least two buckling parts 240 are arranged on both sides of the length direction. It can be understood that when the air purification module 300 is switched from the first position to the second position, i.e. moves out of the air guide frame 230 to the outside of the air guide frame 230, the force with which the driving part 400 drives the gear 500 to drive the rack structure 330 to move should be greater than the force with which the buckling part 240 buckles the air purification module 300, so that the air purification module 300 can be separated from the buckling part 240, and then the air purification module 300 can be smoothly switched from the first position to the second position. Since the rack structure 330 is arranged on the second side 320 of the air purification module 300, and the outer air guide plate 220 is arranged corresponding to the first side 310 of the air purification module 300, in order to make the switching of the air purification module 300 between the first position and the second position more smooth, it is preferred that the buckling part 240 is arranged at a position corresponding to the second side 320 of the air purification module 300 on the air guide frame 230. In this way, the gear 500 and the rack structure 330 are close to the buckling part 240, which makes it more convenient for the buckling part 240 and the air purification module 300 to be separated from each other.
[0065] In an embodiment, referring to Figures 10-13 , the purification module 300 extends along the length direction of the outer air guide plate 220, and the left and right sides of the purification module 300 are both provided with a rack structure 330, and the left and right sides of the shell 100 are both provided with a driving member 400 and a gear 500. The purification module 300 extends along the length direction of the outer air guide plate 220, so that the volume of the purification module 300 is large, thereby improving the purification effect of the air conditioner indoor unit. The rack structure 330 is arranged on the left and right sides of the purification module 300, and the driving member 400 on the two sides of the shell 100 drives the gear 500 on the two sides to drive the purification module 300 to slide, so that compared with arranging the rack structure 330 on one side of the purification module 300, the position switching of the purification module 300 is more stable, and the inclination of the purification module 300 during movement is prevented.
[0066] Further, as shown in Figures 10-13 , one of the air guide frame 230 and the purification module 300 is provided with a protrusion 340 extending along the width direction of the outer air guide plate 220, and the other is provided with a groove 232, and the protrusion 340 is adapted to be installed in the groove 232 to limit the movement of the purification module 300 along the length direction of the outer air guide plate 220.
[0067] In the embodiment, the number of protrusions 340 can be one, two or more. In order to make the limiting of the purification module 300 in the length direction more accurate and the sliding more smooth, the two sides of the length direction of the purification module 300 are both provided with the protrusion 340 or the groove 232. By arranging the protrusion 340 and the groove 232, the movement of the purification module 300 along the length direction of the outer air guide plate 220 is limited, so that the engagement of the gear 500 and the rack structure 330 is more accurate, and the phenomenon of misalignment that causes the purification module 300 to be stuck can be effectively avoided. Specifically, the two sides of the length direction of the inner side surface of the air guide frame 230 are provided with the protrusion 340, and the two sides of the length direction of the second side surface 320 of the purification module 300 are correspondingly provided with the groove 232.
[0068] In an embodiment, referring to Figure 2 , Figure 6 and Figure 7 , the air conditioner indoor unit further comprises an inner air guide plate 600 arranged in the inner side of the air guide structure 200, and the inner air guide plate 600 is rotatably installed at the air outlet 110 of the shell 100. By arranging the inner air guide plate 600, when the air guide structure 200 opens the air outlet 110, it is in the conventional air supply mode, and the inner air guide plate 600 can be rotated up and down to realize up and down air guide, thereby adjusting the air outlet direction of the air outlet 110 to meet the user's use demand.
[0069] The application further provides an air conditioner, which comprises an air conditioner outdoor unit and an air conditioner indoor unit connected by a refrigerant pipe, and the specific structure of the air conditioner indoor unit is as described in the above embodiments. Since the air conditioner adopts all the technical solutions of the above embodiments, it has all the beneficial effects brought by the technical solutions of the above embodiments, which will not be repeated here.
[0070] The above is only optional embodiments of the application, and does not limit the patent scope of the application. Any equivalent structural transformation, direct / indirect application in other related technical fields, or the like within the inventive concept of the application and the content of the specification and drawings are included in the patent protection scope of the application.
Claims
1. An air conditioner indoor unit characterized by comprising: The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit.
2. The air conditioning indoor unit as claimed in claim 1, wherein, The application relates to an air conditioner indoor unit. 3.The indoor unit of the air conditioner of claim 1, wherein, The application relates to an air conditioner indoor unit.
4. The air conditioning indoor unit as claimed in claim 1, wherein The application relates to an air conditioner indoor unit. 5.The indoor unit of the air conditioner according to claim 1, wherein The application relates to an air conditioner indoor unit. 6.The indoor unit of the air conditioner of claim 5, wherein, The application relates to an air conditioner indoor unit.
7. The air conditioning indoor unit according to any one of claims 1 to 6, characterized by The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. 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The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor unit. The application relates to an air conditioner indoor 8. The air conditioning indoor unit according to any one of claims 1 to 6, characterized by, The air conditioner indoor unit further comprises an inner air guide plate arranged inside the air guide structure, which is rotatably installed at the air outlet of the shell. 9.The indoor unit of the air conditioner of claim 1, wherein, The air conditioner indoor unit is a wall-mounted air conditioner indoor unit.
10. An air conditioner characterized by comprising: The air conditioner indoor unit according to any one of claims 1 to 9, and an air conditioner outdoor unit connected to the air conditioner indoor unit through a refrigerant pipe.
Citation Information
Patent Citations
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