Air conditioner indoor unit
A dual linearly movable wind guide mechanism in air conditioners adjusts airflow direction to prevent direct blowing, addressing user discomfort and health issues, while maintaining a sleek design.
Patent Information
- Application Number
- CN201910415082.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-05-17
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2039-05-17
AI Technical Summary
The cold/hot air of existing ceiling air conditioners can easily blow directly, causing discomfort to users and may cause air conditioning diseases.
An air guide assembly including a first air guide plate and a second air guide plate is adopted, and both move linearly along the air flow to the initial air outlet direction to form different air outlet passages to adjust the air supply direction and avoid direct blowing. The air guide plate realizes linear motion through the driving mechanism and the guide structure, combining the L-shaped structure and overlapping surface design to ensure flexible adjustment of the coverage and air supply direction.
Effectively avoid cold/hot air blowing directly, improve user comfort, prevent dust from entering the interior of the air conditioner, and keep the appearance of the air conditioner flat.
Smart Images

Figure CN110145800B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioners, and particularly provides an indoor air conditioner. Background Art
[0002] With the development of air conditioner technology and the improvement of residents' living needs, ceiling-mounted air conditioners are more and more widely used in the field of air conditioners due to their advantages such as compact structure, small occupied space, and uniform air supply. Currently, after the installation of a ceiling-mounted air conditioner indoor unit, its air outlet is usually located at the bottom of the body. Usually, a deflector is arranged at the air outlet of the ceiling-mounted air conditioner to send the cold air / hot air cooled / heated by the air conditioner into the indoor space, so as to adjust the temperature in the indoor space.
[0003] However, during the refrigeration / heating process, the deflector in such an air guiding manner swings back and forth within the range of 0-90° with respect to the horizontal direction to adjust the air supply direction. In this way, the cold air / hot air is very likely to directly blow on the people below the air conditioner. Taking the refrigeration process as an example, if the user is in a state of being directly blown by cold air for a long time, they will feel very uncomfortable and are prone to problems such as air-conditioning diseases.
[0004] Correspondingly, a new technical solution is needed in this field to solve the above problems. Summary of the Invention
[0005] In order to solve the above problems in the prior art, that is, to solve the problem of the existing cold air / hot air directly blowing on people, the present invention provides an indoor air conditioner, which includes a housing having an opening, a fan and at least one air guiding component are arranged in the housing, and air enters the indoor space from the opening through the fan and the air guiding component in sequence, wherein the air guiding component includes a first deflector and a second deflector, and the first deflector and the second deflector are arranged to be linearly movable relative to each other along the initial air outlet direction of the air flowing from the fan to the opening.
[0006] In the preferred technical solution of the above indoor air conditioner, each of the first deflector and the second deflector includes a first part and a second part perpendicular to each other, the first part is parallel to the initial air outlet direction, the second part is perpendicular to the initial air outlet direction, and in the closed state, the second parts of the first deflector and the second deflector jointly cover the opening.
[0007] In the preferred technical solution of the above indoor air conditioner, the second parts of the first deflector and the second deflector have an overlapping surface, and in the assembled state, at least a part of the second part of the first deflector is located at the downstream end of the second part of the second deflector along the initial air outlet direction.
[0008] In the preferred technical solution of the above air conditioner indoor unit, the width of the second part of the first air deflector is greater than or equal to the width of the second part of the second air deflector.
[0009] In the preferred technical solution of the above air conditioner indoor unit, the air deflector assembly further includes a first driving mechanism disposed in the housing, the first air deflector is connected to the first driving mechanism in a matching manner, and the first air deflector linearly moves along the initial air outlet direction by means of the first driving mechanism.
[0010] In the preferred technical solution of the above air conditioner indoor unit, a first mounting structure is provided in the housing, the first driving mechanism includes a first driving motor, a first gear fixedly connected to the first driving motor, and a first rack engaged with the first gear, the first driving motor is disposed on the first mounting structure, and the second part of the first air deflector is connected to the first rack in a matching manner.
[0011] In the preferred technical solution of the above air conditioner indoor unit, a first guiding structure is further provided in the housing, the first rack is connected to the first guiding structure in a matching manner and can linearly move along the initial air outlet direction.
[0012] In the preferred technical solution of the above air conditioner indoor unit, the air deflector assembly further includes a second driving mechanism disposed in the housing, the second air deflector is connected to the second driving mechanism in a matching manner, and the second air deflector linearly moves along the initial air outlet direction by means of the second driving mechanism.
[0013] In the preferred technical solution of the above air conditioner indoor unit, a second mounting structure is provided in the housing, the second driving mechanism includes a second driving motor, a second gear fixedly connected to the second driving motor, and a second rack engaged with the second gear, the second driving motor is disposed on the second mounting structure, and the second part of the second air deflector is connected to the second rack in a matching manner.
[0014] In the preferred technical solution of the above air conditioner indoor unit, a second guiding structure is further provided in the housing, the second rack is connected to the second guiding structure in a matching manner and can linearly move along the initial air outlet direction.
[0015] Those skilled in the art can understand that in the technical solution of the present invention, a fan and at least one air guiding component are arranged in the housing of the air conditioner indoor unit, and the air in the housing sequentially passes through the fan and the air guiding component and enters the indoor space from the opening on the housing. Among them, the air guiding component includes a first air guiding plate and a second air guiding plate, and the first air guiding plate and the second air guiding plate are arranged to be linearly movable relative to each other along the initial air outlet direction in which the air flows from the fan to the opening. Through such an arrangement, different air outlet channels are formed at the opening by the first air guiding plate and the second air guiding plate, and the air can enter the indoor space in different directions through different air outlet channels, so as to achieve the purpose of adjusting the air supply direction and not directly blowing on people. For example, in the operating state, the first air guiding plate and the second air guiding plate linearly move to different positions along the initial air outlet direction respectively, changing the distance between the first air guiding plate and the second air guiding plate to form different air outlet channels.
[0016] In the preferred technical solution of the present invention, each of the first air guiding plate and the second air guiding plate includes a first part and a second part that are perpendicular to each other, wherein the first part is parallel to the initial air outlet direction, and the second part is perpendicular to the initial air outlet direction. And in the closed state, the second parts of the first air guiding plate and the second air guiding plate can jointly cover the opening so as to block dust from entering the housing through the opening. For example, the second parts of the first air guiding plate and the second air guiding plate exactly cover the opening at the air outlet, that is to say, one end of the second part of the first air guiding plate along the width direction of the opening is connected to the housing, and one end just abuts against the second part of the second air guiding plate.
[0017] Furthermore, the second parts of the first air guiding plate and the second air guiding plate have a lapping surface, so that the opening can be better covered in the closed state. In the assembled state, at least a part of the second part of the first air guiding plate is located at the downstream end of the second part of the second air guiding plate along the initial air outlet direction. For example, the lapping surface of the second part of the first air guiding plate is located on the inner surface of the first air guiding plate, and the lapping surface of the second part of the second air guiding plate is located on the outer surface of the second air guiding plate. In the state where the second parts of the first air guiding plate and the second air guiding plate are lapped and matched well, the outer surfaces of the second parts of the first air guiding plate and the second air guiding plate are flush, ensuring the flat appearance of the air conditioner.
[0018] Furthermore, the width of the second part of the first air guiding plate is greater than or equal to the width of the second part of the second air guiding plate, so as to be able to better change the air supply direction. For example, taking a ceiling-mounted air conditioner as an example, the first air guiding plate is arranged on the side close to the air inlet grille, the second air guiding plate is arranged on the side far from the air inlet grille, and the air outlet channel formed by the second parts of the first air guiding plate and the second air guiding plate sends the air to the side where the second air guiding plate is located.
[0019] Further, the air guiding assembly further includes a first driving mechanism and a second driving mechanism disposed inside the housing. The first air guiding plate is connected to the first driving mechanism in a matching manner, and the second air guiding plate is connected to the second driving mechanism in a matching manner. With such an arrangement, the first air guiding plate can linearly move along the initial air outlet direction by means of the first driving mechanism, and the second air guiding plate can linearly move along the initial air outlet direction by means of the second driving mechanism.
[0020] Further, the first driving mechanism includes a first driving motor, a first gear fixedly connected to the first driving motor, and a first rack engaged with the first gear. The second driving mechanism includes a second driving motor, a second gear fixedly connected to the second driving motor, and a second rack engaged with the second gear. The second part of the first air guiding plate is connected to the first rack in a matching manner, and the second part of the second air guiding plate is connected to the second rack in a matching manner. With such an arrangement, under the action of the first driving motor, the first gear and the first rack, as well as the second driving motor, the second gear and the second rack, the first air guiding plate and the second air guiding plate linearly move along the initial air outlet direction. Description of the Drawings
[0021] The air conditioner indoor unit of the present invention will be described below with reference to the drawings and in combination with a ceiling-mounted air conditioner indoor unit. In the drawings:
[0022] Figure 1 is a schematic structural view of an air conditioner indoor unit in an embodiment of the present invention Figure 1 ;
[0023] Figure 2 is Figure 1 an enlarged schematic view of a partial area A in
[0024] Figure 3 is a schematic sectional view of an air conditioner indoor unit in an embodiment of the present invention Figure 1 ;
[0025] Figure 4 is Figure 3 an enlarged schematic view of a partial area B in
[0026] Figure 5 is a schematic sectional view of an air conditioner indoor unit in an embodiment of the present invention Figure 2 ;
[0027] Figure 6 is Figure 5 an enlarged schematic view of a partial area C in
[0028] Figure 7 is a schematic sectional view of an air conditioner indoor unit in an embodiment of the present invention Figure 3 ;
[0029] Figure 8Schematic diagram of the structure of an indoor unit of an air conditioner according to an embodiment of the present invention Figure 2 ;
[0030] Fig. 9 is Figure 8 An enlarged schematic diagram of the partial D in
[0031] List of reference numerals:
[0032] 1. Housing; 11. Panel frame; 12. Air inlet grille;
[0033] 2. Air guiding assembly; 21. First air guiding plate; 211. First part of the first air guiding plate; 212. Second part of the first air guiding plate; 2121. First concave structure; 22. Second air guiding plate; 221. First part of the second air guiding plate; 222. Second part of the second air guiding plate; 2221. Second concave structure;
[0034] 3. Driving mechanism; 31. First driving mechanism; 311. First rack; 312. First mounting bracket; 32. Second driving mechanism; 321. Second rack; 322. Second mounting bracket. Detailed implementation manners
[0035] The following describes the preferred implementation manners of the present invention with reference to the accompanying drawings. Those skilled in the art should understand that these implementation manners are only used to explain the technical principle of the present invention and are not intended to limit the protection scope of the present invention. For example, although this embodiment is described by taking a ceiling-mounted indoor unit of an air conditioner as an example, it can also be applied to other types of indoor units of air conditioners such as wall-mounted indoor units of air conditioners.
[0036] It should be noted that in the description of the present invention, terms indicating directions or positional relationships such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0037] Refer to Figure 1 and Figure 2 , Figure 1 Schematic diagram of the structure of an indoor unit of an air conditioner according to an embodiment of the present invention Figure 1 , Figure 2 is Figure 1 An enlarged schematic diagram of the partial A in Figure 1 and Figure 2As shown in the figure, the ceiling-mounted air conditioner indoor unit includes a housing 1. The housing 1 includes a panel frame 11 and an air inlet grille 12 provided at the center of the bottom of the housing. In the installed state, the panel frame 11 and the air inlet grille 12 are located outside the ceiling. There is an opening on the panel frame 11. A fan and four air guide components 2 are provided inside the housing 1. The air entering the housing 1 from the air inlet grille 12 sequentially passes through the fan and the air guide components 2 and enters the indoor space from the opening, so as to achieve the purpose of adjusting the temperature of the indoor space. In the assembled state, one air guide component 2 blocks one opening. The air guide component 2 of the present invention includes a first air guide plate 21 and a second air guide plate 22 provided on the side close to the air inlet grille. The first air guide plate 21 and the second air guide plate 22 are arranged to be linearly movable relative to each other along the initial air outlet direction of the air flowing from the fan to the opening. Through such an arrangement, the first air guide plate 21 and the second air guide plate 22 form different air outlet channels at the opening, and the air can enter the indoor space in different directions through different air outlet channels, so as to achieve the purpose of adjusting the air supply direction and not blowing directly at people.
[0038] For example, in the operating state, the first air guide plate linearly moves towards the downstream end of the initial air outlet direction. At this time, the first air guide plate is located downstream of the second air guide plate along the initial air outlet direction, and an air outlet channel is formed between the first air guide plate and the second air guide plate. The air in the housing enters the indoor space through this air outlet channel. If the distance between the first air guide plate and the second air guide plate is different, the formed air outlet channels are also different, and the air in the housing can enter the indoor space from different directions, so that the air supply direction can be adjusted.
[0039] Referring to Figure 3 、 Figure 4 、 Figure 5 and Figure 6 , Figure 3 is a schematic cross-sectional structure of an air conditioner indoor unit in an embodiment of the present invention Figure 1 , Figure 4 is Figure 3 the enlarged schematic diagram of the partial B in Figure 5 is a schematic cross-sectional structure of an air conditioner indoor unit in an embodiment of the present invention Figure 2 , Figure 6 is Figure 5 the enlarged schematic diagram of the partial C in
[0040] Such as Figure 3 、 Figure 4 、 Figure 5 and Figure 6As shown, both the first air deflector 21 and the second air deflector 22 are arranged in an L-shaped structure. Each of the two air deflectors includes a first part (211, 221) and a second part (212, 222) that are perpendicular to and connected to each other. Among them, the first part (211, 221) is parallel to the initial air outlet direction, and the second part (212, 222) is perpendicular to the initial air outlet direction. Through such an arrangement, in the operating state, the first parts (211, 221) and the second parts (212, 222) of the first air deflector 21 and the second air deflector 22 all move along the initial air outlet direction, thereby realizing the movement of the first air deflector 21 and the second air deflector 22 along the initial air outlet direction; in the closed state, the second parts (212, 222) of the two air deflectors can jointly cover the opening, so that dust can be blocked from entering the housing through the opening.
[0041] It can be understood that the first part and the second part can also be only part of the first air deflector and the second air deflector. For example, a connecting part is provided between the first part and the second part, and the connecting part can be arranged as a corrugated structure, a curved surface structure, etc. Those skilled in the art can flexibly select the setting methods of the first part and the second part according to the specific application scenarios to adapt to more specific application occasions.
[0042] It can be understood that the first air deflector and the second air deflector can be the same (for example, both air deflectors are arranged in an L-shaped structure), or different (for example, the first air deflector is arranged in an L-shaped structure composed of a first part and a second part that are perpendicular to each other, and the second air deflector is composed of a first part, a connecting part, and a second part, and the connecting part is arranged as a curved surface). Those skilled in the art can flexibly select the setting methods of the first air deflector and the second air deflector according to the specific application scenarios to be able to adapt to more specific application occasions.
[0043] Refer to Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 and Fig. 9 , Figure 7 is a schematic cross-sectional structure of an indoor unit of an air conditioner in an embodiment of the present invention Figure 3 , Figure 8 is a schematic structure of an indoor unit of an air conditioner in an embodiment of the present invention Figure 2 , Fig. 9 is Figure 8 an enlarged schematic view of the partial D in
[0044] Such as Figure 5 and Figure 6As shown, the second parts (212, 222) of the first air guide plate 21 and the second air guide plate 22 have overlapping surfaces so that the second parts (212, 222) of the two air guide plates can better cover the opening in the closed state. In the assembled state, at least a part of the second part 212 of the first air guide plate is located at the downstream end of the second part 222 of the second air guide plate along the initial air outlet direction, so that in the operating state, part of the air enters the indoor space through the inner surface of the second part 222 of the second air guide plate and the inner surface of the second part 212 of the first air guide plate in sequence.
[0045] Preferably, if Figure 7 As shown, a first recessed structure 2121 recessed downward is provided on the inner surface of the second part 212 of the first air guide plate, and a second recessed structure 2221 recessed upward is provided on the outer surface of the second part 222 of the second air guide plate. In the assembled state, the first recessed structure 2121 and the second recessed structure 2221 are exactly matched and docked. At this time, the outer surfaces of the second parts (212, 222) of the first air guide plate and the second air guide plate are flush, ensuring the smooth appearance of the air conditioner.
[0046] It is understandable that the overlapping surfaces of the second parts of the two air guide plates can also be coordinated in other settings, such as curved surfaces, concave and convex surfaces, etc. Technical personnel in this field can flexibly select the setting method of the overlapping surfaces according to the specific application scenarios, as long as it can ensure that the second parts of the first air guide plate and the second air guide plate can cover the opening.
[0047] Obviously, the second parts (212, 222) of the first air guide plate 21 and the second air guide plate 22 may not have overlapping surfaces. When the air conditioner is in the off state, the second parts (212, 222) of the two air guide plates just abut at the opening, that is, in the off state, the second parts of the two air guide plates can just cover the opening.
[0048] It can be understood that the abutment mode of the two second parts at the opening can be Figure 2 The method shown in , that is, the abutting surfaces of the two second parts are parallel to the length direction of the opening, or it can be Fig. 9 The manner shown in the figure is that the two second parts are abutted in a concave-convex matching manner. Obviously, the second parts of the two air guide plates can also be abutted in other manners.
[0049] It is understandable that those skilled in the art can flexibly select the arrangement of the second parts of the two air guide plates at the openings according to specific application scenarios, as long as the second parts of the two air guide plates can cover the openings.
[0050] Continue to refer to Figure 5 and Figure 6 , and follow Figure 5In the orientation shown, the width of the second part 212 of the first air deflector is greater than or equal to the width of the second part 222 of the second air deflector, so as to be able to better change the air supply direction. Specifically, in the operating state, the first air deflector 21 moves downward, and the second air deflector 22 remains stationary at the opening. At this time, the air in the housing enters the indoor space to the left or right through the channel formed by the first air deflector 21 and the second air deflector 22. If the distance between the first air deflector 21 and the second air deflector 22 is small at this time, the air enters the indoor space to the left or right in an approximately horizontal direction, so as not to directly blow on the user located below the ceiling-mounted air conditioner.
[0051] Continue to refer to Figure 5 、 Figure 6 、 Figure 8 and Fig. 9 The air deflector assembly 2 further includes a first driving mechanism 31 provided in the housing 1 to drive the first air deflector 21 to move linearly along the initial air outlet direction. Specifically, a first mounting bracket 312 is provided in the housing 1. The first driving mechanism 31 includes a first driving motor (not shown in the figure), a first gear (not shown in the figure) fixedly connected to the first driving motor, and a first rack 311 engaged with the first gear. The first driving motor is provided on the first mounting bracket 312. The second part of the first air deflector 21 is connected to the first rack 311 in a matching manner. In this way, the first gear rotates driven by the first driving motor, and the first rack moves driven by the rotating first gear engaged with it, thereby driving the first air deflector 21 to perform a linear motion.
[0052] Correspondingly, the air deflector assembly 2 further includes a second driving mechanism 32 provided in the housing 1 to drive the second air deflector 22 to move linearly along the initial air outlet direction. Specifically, a second mounting bracket 322 is provided in the housing 1. The second driving mechanism 32 includes a second driving motor (not shown in the figure), a second gear (not shown in the figure) fixedly connected to the second driving motor, and a second rack 321 engaged with the second gear. The second driving motor is provided on the second mounting bracket 322. The second part of the second air deflector 22 is connected to the second rack 321 in a matching manner. In this way, the second gear rotates driven by the second driving motor, and the second rack moves driven by the rotating second gear engaged with it, thereby driving the second air deflector 22 to perform a linear motion.
[0053] Obviously, the first rack can also be connected to the first part of the first air deflector in a matching manner, and the second rack can also be connected to the first part of the second air deflector in a matching manner. Those skilled in the art can flexibly select the matching connection positions of the first rack and the first air deflector, and the second rack and the second air deflector according to the specific application scenarios, as long as the first rack can drive the first air deflector and the second rack can drive the second air deflector to perform linear motions.
[0054] It can be understood that the first rack and the second rack can be integrally formed with the first air deflector and the second air deflector, or can be fixedly connected. Those skilled in the art can flexibly select the matching connection method of the rack and the air deflector according to the specific application scenario for convenient installation.
[0055] It can be understood that the first driving mechanism and the second driving mechanism can also be other setting methods. For example, both the first driving mechanism and the second driving mechanism adopt reciprocating motors, etc. Those skilled in the art can flexibly select the setting methods of the first driving mechanism and the second driving mechanism according to the specific application scenario, as long as the first air deflector and the second air deflector can achieve linear motion.
[0056] In a possible implementation manner, a first guiding structure is further provided in the housing. The first rack is matched and connected with the first guiding structure (for example, the first guiding structure is set as a sliding groove, and the first rack moves along the sliding groove). On the one hand, the first rack can be stably arranged in the housing with the help of the first guiding structure and drive the first air deflector to perform linear motion. On the other hand, under the guiding action of the first guiding structure, it moves along the initial air outlet direction, and then drives the first air deflector to perform linear motion along the initial air outlet direction.
[0057] Correspondingly, a second guiding structure is further provided in the housing. The second rack is matched and connected with the second guiding structure (for example, the second guiding structure is also set as a sliding groove, and the second rack moves along the sliding groove). On the one hand, the second rack can be stably arranged in the housing with the help of the second guiding structure and drive the second air deflector to perform linear motion. On the other hand, under the guiding action of the second guiding structure, it moves along the initial air outlet direction, and then drives the second air deflector to perform linear motion along the initial air outlet direction.
[0058] It can be understood that the first guiding structure and the second guiding structure can also be other setting methods, such as slide rails, etc. Obviously, the first guiding structure and the second guiding structure can also be set as different structures. For example, the first guiding structure is set as a sliding groove, and the second guiding structure is set as a slide rail. Those skilled in the art can flexibly select the setting methods of the first guiding structure and the second guiding structure according to the specific application scenario to adapt to more specific application occasions.
[0059] In summary, in the preferred technical solution of the present invention, by respectively connecting the second parts of the first air deflector and the second air deflector provided in the housing with the first rack and the second rack, the first air deflector and the second air deflector can perform linear motion relative to each other under the drive of the first driving mechanism and the second driving mechanism. In addition, through the first guiding structure and the second guiding structure, the first air deflector and the second air deflector can perform linear motion along the initial air outlet direction.
[0060] So far, the technical solution of the present invention has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is easily understood by those skilled in the art that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of the present invention.
Claims
1. An air conditioner indoor unit, characterized in that, The indoor air conditioner includes a housing having an opening. A fan and at least one air guiding component are arranged inside the housing. Air enters the indoor space from the opening sequentially through the fan and the air guiding component. Wherein, the air guiding component includes a first air guiding plate and a second air guiding plate, and the first air guiding plate and the second air guiding plate are arranged to be linearly movable relative to each other along the initial air outlet direction in which air flows from the fan to the opening. Wherein, each of the first air guiding plate and the second air guiding plate includes a first part and a second part perpendicular to each other. The first part is parallel to the initial air outlet direction, and the second part is perpendicular to the initial air outlet direction. In the closed state, the second parts of the first air guiding plate and the second air guiding plate jointly cover the opening.
2. The air conditioner indoor unit according to claim 1, characterized in that, The second parts of the first air guiding plate and the second air guiding plate have a lapping surface. In the assembled state, at least a part of the second part of the first air guiding plate is located at the downstream end of the second part of the second air guiding plate along the initial air outlet direction.
3. The air conditioner indoor unit according to claim 1, characterized in that, The width of the second part of the first air guiding plate is greater than or equal to the width of the second part of the second air guiding plate.
4. The air conditioner indoor unit according to claim 1, wherein, The air guiding component further includes a first driving mechanism arranged inside the housing, and the first air guiding plate is connected to the first driving mechanism in a matching manner. The first air guiding plate linearly moves along the initial air outlet direction by means of the first driving mechanism.
5. The air conditioner indoor unit according to claim 4, characterized in that, A first mounting structure is arranged inside the housing. The first driving mechanism includes a first driving motor, a first gear fixedly connected to the first driving motor, and a first rack engaged with the first gear. The first driving motor is arranged on the first mounting structure, and the second part of the first air guiding plate is connected to the first rack in a matching manner.
6. The air conditioner indoor unit according to claim 5, characterized in that, A first guiding structure is further arranged inside the housing. The first rack is connected to the first guiding structure in a matching manner and can linearly move along the initial air outlet direction.
7. The indoor air conditioner according to claim 1, characterized in that, The air guiding component further includes a second driving mechanism arranged inside the housing, and the second air guiding plate is connected to the second driving mechanism in a matching manner. The second air guiding plate linearly moves along the initial air outlet direction by means of the second driving mechanism.
8. The air conditioner indoor unit according to claim 7, characterized in that, A second mounting structure is arranged inside the housing. The second driving mechanism includes a second driving motor, a second gear fixedly connected to the second driving motor, and a second rack engaged with the second gear. The second driving motor is arranged on the second mounting structure, and the second part of the second air guiding plate is connected to the second rack in a matching manner.
9. The air conditioner indoor unit according to claim 8, characterized in that, A second guiding structure is further arranged inside the housing. The second rack is connected to the second guiding structure in a matching manner and can linearly move along the initial air outlet direction.
Citation Information
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