Air conditioner

By setting the flow guide surface of the adjustment component on the air outlet side of the air conditioner fan assembly, the problem of the overall size of the air conditioner is solved, and flexible adjustment of the air outlet direction and effective utilization of the space are achieved.

CN223271349UActive Publication Date: 2025-08-26HANDAN MIDEA REFRIGERATION EQUIP +1
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Patent Information

Application Number
CN202422042052.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-08-26
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

The existing air conditioners adjust the air outlet direction through the external adjustment panel, resulting in an increase in overall size and occupying a large space.

Method used

The adjustment component is provided on the air outlet side of the fan assembly of the air conditioner. The adjustment component has a flow guide surface protruding relative to the air flow direction, changing the air flow direction and realizing the air outlet direction adjustment without increasing the overall size of the air conditioner.

Benefits of technology

Without increasing the overall size of the air conditioner, flexible adjustment of the air outlet direction is achieved, reducing space occupied.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides an air conditioner. The air conditioner comprises a shell, a fan assembly, a heat exchanger and an adjusting assembly. The shell is provided with a containing cavity and an air outlet communicating with the containing cavity. The fan assembly and the heat exchanger are installed in the containing cavity. The adjusting assembly is installed in the containing cavity and located on the air outlet side of the fan assembly, the adjusting assembly is provided with a flow guide face protruding relative to the airflow direction, and the flow guide face can change the flowing direction of airflow blown out of the fan assembly.
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Description

Technical Field

[0001] The present application belongs to the technical field of household appliances, and in particular to an air conditioner. Background Art

[0002] With the development of society, electrical appliances such as air conditioners have become increasingly widespread. To improve the cooling and heating effects of air conditioners, the air outlet direction of the air conditioner needs to be adjusted according to demand. In the related art, an adjustment panel is provided at the air outlet to adjust the air outlet direction of the air conditioner. However, the installation of the adjustment panel increases the overall size of the air conditioner, resulting in a larger space occupied by the air conditioner. Utility Model Content

[0003] The present application aims to at least to some extent solve the technical problem of the large overall size of the air conditioner. To this end, the present application provides an air conditioner.

[0004] In a first aspect, an embodiment of the present application provides an air conditioner, comprising:

[0005] a housing, the housing comprising a receiving cavity and an air outlet communicating with the receiving cavity;

[0006] The fan assembly and the heat exchanger are installed in the accommodating cavity;

[0007] The regulating component is installed in the accommodating cavity and is located on the air outlet side of the fan component. The regulating component has a guide surface protruding relative to the air flow direction, and the guide surface can change the flow direction of the air flow blown out from the fan component.

[0008] In the air conditioner proposed in the embodiment of the present application, since an adjustment component is arranged on the air outlet side of the fan assembly, the adjustment component has a guide surface protruding relative to the air flow direction, and the guide surface can change the flow direction of the air flow blown out from the fan assembly. Therefore, when the air flow blown out by the fan assembly passes through the guide surface, the guide surface can change the flow direction of the air flow to achieve the adjustment of the air flow direction. Since the adjustment component is installed in the accommodating cavity, the setting of the adjustment component will not increase the overall size of the air conditioner, thereby reducing the occupied space of the air conditioner.

[0009] In some embodiments, the adjustment assembly is located at the lower portion of the accommodating cavity.

[0010] In some embodiments, the air conditioner further includes a water receiving tray, the heat exchanger is located on the air outlet side of the fan assembly, the water receiving tray is installed in the accommodating cavity and is located below the heat exchanger, and the regulating assembly is arranged in the water receiving tray.

[0011] In some embodiments, the air conditioner further includes a drain pipe, the water receiving tray is connected to the drain pipe, and the regulating assembly is disposed on a side of the water receiving tray away from the drain pipe.

[0012] In some embodiments, the adjustment assembly further comprises a guide slope, and the guide slope can extend to the water receiving tray.

[0013] In some embodiments, the guide slope is disposed opposite to the guide surface, and the guide surface is disposed close to the air outlet.

[0014] In some embodiments, the guide surface is a curved surface or a flat surface.

[0015] In some embodiments, the adjustment component also includes a suction component, the adjustment component has an installation cavity, and the two sides of the adjustment component are respectively provided with a suction port and a return air port connected to the installation cavity, the suction component is located in the installation cavity, and the guide surface is located outside the installation cavity.

[0016] In some embodiments, the adjustment assembly includes an upper cover plate and a lower cover plate, the upper cover plate and the lower cover plate together form the installation cavity, the guide surface and the air intake port are arranged on the upper cover plate, and the return air port is arranged on the lower cover plate.

[0017] In some embodiments, the air suction port passes through the guide surface.

[0018] In some embodiments, the air suction assembly is connected to a side of the upper cover plate close to the fan assembly.

[0019] In some embodiments, the lower cover plate is close to a side wall of the fan assembly and is tilted toward the fan assembly, and the air suction assembly abuts against the side wall. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, a brief introduction will be given below to the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0021] Figure 1 Shows a structural schematic diagram of an air conditioner.

[0022] Figure 2 Shown Figure 1 sectional view of .

[0023] Figure 3 Shown Figure 2 The local structure diagram of .

[0024] Figure 4 Shown Figure 1 Cross-sectional view of the middle adjustment assembly.

[0025] Figure 5 Shown Figure 1 Schematic diagram of the structure of the middle adjustment component Figure 1 .

[0026] Figure 6 Shown Figure 1 Schematic diagram of the structure of the middle adjustment component Figure 2 .

[0027] Figure 7 Shown Figure 1 Exploded view of the regulating component.

[0028] Reference numerals:

[0029] 10-air conditioner, 100-housing, 110-accommodating chamber, 120-air outlet, 200-fan assembly, 300-heat exchanger, 400-adjustment assembly, 410-air suction assembly, 411-centrifugal fan, 420-upper cover, 421-guide surface, 422-air suction port, 423-guide slope, 430-lower cover, 431-return air outlet, 440-installation chamber, 500-water tray, 600-drain pipe. DETAILED DESCRIPTION

[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0031] It should be noted that all directional indications in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the various components in a certain specific posture. If the specific posture changes, the directional indication will also change accordingly.

[0032] In this utility model, unless otherwise specified or limited, the terms "connection" and "fixation" should be understood in a broad sense. For example, "fixation" can mean fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.

[0033] In addition, in this utility model, the descriptions of "first" and "second" are for descriptive purposes only and should not be understood as indicating or implying their relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features specified as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by this utility model.

[0034] With the development of society, electrical appliances such as air conditioners have gradually been widely used. In order to improve the cooling / heating effect of the air conditioner, the air outlet direction of the air conditioner needs to be adjusted according to demand. In the related art, the air outlet direction of the air conditioner is adjusted by setting a panel at the air outlet. However, the external panel with an air guide plate increases the overall size of the air conditioner, resulting in a larger space occupied by the air conditioner. In addition, the air conditioner provided in the embodiment of the present application can improve the above-mentioned problem. The air conditioner provided in the embodiment of the present application can reduce the space occupied by the air conditioner without increasing the overall size of the air conditioner while being able to adjust the airflow direction.

[0035] The present application is described below with reference to specific embodiments and with reference to the accompanying drawings:

[0036] See also Figure 1 and Figure 2 The embodiment of the present application provides an air conditioner 10. The air conditioner 10 provided by the embodiment of the present application can reduce the occupied space of the air conditioner 10 without increasing the overall size of the air conditioner 10 while adjusting the air flow direction.

[0037] See also Figure 1 and Figure 2 An embodiment of the present application provides an air conditioner 10, comprising: a housing 100, a fan assembly 200, a heat exchanger 300, and a regulating assembly 400. The housing 100 has a housing chamber 110 and an air outlet 120 communicating with the housing chamber 110; the fan assembly 200 and the heat exchanger 300 are installed in the housing chamber 110; the regulating assembly 400 is installed in the housing chamber 110 and is located on the air outlet side of the fan assembly 200. The regulating assembly 400 has a guide surface 421 protruding relative to the direction of airflow, and the guide surface 421 can change the flow direction of the airflow blown out from the fan assembly 200.

[0038] The housing 100 is the main body of the air conditioner 10 and provides a mounting base for the other components of the air conditioner 10. The other components of the air conditioner 10 are installed in the accommodating cavity 110 of the housing 100. The housing 100 protects the other components of the air conditioner 10, reduces the risk of external impurities entering the accommodating cavity 110, and protects other internal structures. Placing all other components within the housing 100 allows the air conditioner 10 to form a single unit, facilitating installation and transportation of the air conditioner 10.

[0039] Fan assembly 200 is used to circulate air. By rotating, fan assembly 200 generates wind, drawing indoor air into air conditioner 10. After cooling or heating, the treated air is returned to the room through air outlet 120. Heat exchanger 300 is used to cool or heat the air drawn into air conditioner 10. Heat exchanger 300 can be located on either the air inlet or outlet side of fan assembly 200, without limitation.

[0040] When a fluid (liquid or gas) encounters a protruding surface during its flow, the flow direction of the fluid will tend to move along the protruding surface. Since the regulating component 400 is located on the air outlet side of the fan component 200, and the regulating component 400 has a guide surface 421 that protrudes relative to the airflow direction, the airflow will inevitably pass through the guide surface 421 during the process of being blown out to the air outlet 120. The guide surface 421 is a surface on the flow path of the airflow blown out by the fan component 200, or it can also be understood that the guide surface 421 is a surface protruding from the air duct inside the air conditioner 10. Therefore, when the airflow flows through the guide surface 421, it will move along the guide surface 421, thereby changing the flow direction, and finally achieving the adjustment of the air outlet direction of the air conditioner 10.

[0041] That is, in the embodiment of the present application, a regulating module is provided on the air outlet side of the fan assembly 200, so that the airflow blown out by the fan assembly 200 flows along the guide surface 421 of the regulating module, thereby changing the flow direction of the airflow and adjusting the air outlet direction of the air conditioner 10. Because the regulating module is installed in the installation cavity 440 of the housing 100, the provision of the regulating module does not increase the overall size of the air conditioner 10, thereby reducing the space occupied by the air conditioner 10.

[0042] Of course, since what ultimately needs to be changed is the flow direction of the airflow after it flows out through the air outlet 120, if the adjustment module is too far away from the air outlet 120, the airflow will change its flow direction in advance, which may affect the final direction-changing effect of the airflow. Therefore, the adjustment module can be set close to the air outlet 120. In this way, after the airflow changes its flow direction through the guide surface 421, it will be blown out of the air outlet 120 immediately, thereby ensuring the best wind direction adjustment effect.

[0043] It should be noted that the air conditioner 10 includes an indoor unit and an outdoor unit. The indoor unit is installed indoors, and the outdoor unit is installed indoors. The adjustment component 400 is installed in the accommodating cavity 110 of the shell 100 of the air conditioner 10, which means that the adjustment component 400 is installed in the accommodating cavity 110 of the shell 100 of the indoor unit of the air conditioner 10. This part is common knowledge in the field and will not be repeated here.

[0044] In some embodiments, the adjustment assembly 400 is located at the lower portion of the accommodating cavity 110 .

[0045] To reduce the space occupied during installation, the air conditioner 10 can be installed in a room's ceiling, that is, the indoor unit of the air conditioner 10 can be installed in the ceiling. Since the air conditioner 10 is installed at a higher position indoors, in order to improve the user experience, the airflow blown by the fan assembly 200 needs to flow downward. Therefore, the adjustment assembly 400 is disposed at the lower portion of the accommodating chamber 110. Since the airflow blown by the fan assembly 200 flows along the guide surface 421, and the adjustment assembly 400 is located at the lower portion of the accommodating chamber 110, that is, the guide surface 421 is located at the lower portion of the accommodating chamber 110, the airflow will flow downward after passing through the guide surface 421, thereby adjusting the air outlet direction of the air conditioner 10 downward.

[0046] Of course, in other embodiments, the adjustment component 400 may also be disposed on the upper portion or side portion of the accommodating cavity 110 , etc. The location of the adjustment component 400 may be selected according to actual needs, and there is no limitation to this.

[0047] See also Figure 2 and Figure 3 In some embodiments, the air conditioner 10 further includes a water receiving tray 500, the heat exchanger 300 is located on the air outlet side of the fan assembly 200, the water receiving tray 500 is installed in the accommodating cavity 110 and is located below the heat exchanger 300, and the regulating assembly 400 is disposed in the water receiving tray 500.

[0048] To improve the cooling / heating performance of the air conditioner 10 and better control the indoor temperature, the heat exchanger 300 can be located on the outlet side of the fan assembly 200. During the cooling process, the surface temperature of the heat exchanger 300 decreases, causing water vapor in the indoor air to condense into water droplets. To prevent the water droplets from dripping directly onto the indoor floor or furniture, a water tray 500 is provided in the receiving chamber 110 to collect the condensed water and then drain it away.

[0049] The water tray 500 must be located at least below the heat exchanger 300, and can also be located below the entire accommodating chamber 110. That is, all components within the accommodating chamber 110 are located above the water tray 500 to receive condensed water formed on the surface of the heat exchanger 300. Since the regulating assembly 400 must also be located below the accommodating chamber 110, the water tray 500 can serve as a mounting component for the regulating assembly 400. That is, the water tray 500 is used to both receive condensed water and to mount the regulating assembly 400. Therefore, there is no need to provide additional mounting components for the regulating assembly 400; the regulating assembly 400 can be mounted using the structure of the air conditioner 10 itself.

[0050] Specifically, since the adjustment component 400 and the water receiving tray 500 are two functionally independent components and need to be repaired or replaced separately, the adjustment component 400 and the water receiving tray 500 can be detachably connected by screwing, snapping, etc. to facilitate installation or separation.

[0051] In some embodiments, the adjustment assembly 400 further has a guide slope 423 , and the guide slope 423 can extend to the water receiving tray 500 .

[0052] The bottom wall of the water receiving tray 500 is used to carry condensed water, and the guide slope 423 can extend to the water receiving tray 500, that is, the guide slope 423 extends toward the bottom wall of the water receiving tray 500 and can intersect with the bottom wall of the water receiving tray 500. The guide slope 423 can be in contact with the bottom wall of the water receiving tray 500, or a gap can be left between the guide slope 423 and the bottom wall of the water receiving tray 500, without limitation.

[0053] Since the regulating component 400 is installed in the water receiving pan 500, the condensed water on the heat exchanger 300 may fall onto the regulating component 400, so that the condensed water cannot flow into the water receiving pan 500 in time, thereby affecting the collection rate of the condensed water. Therefore, a guide slope 423 that can extend to the water receiving pan 500 is provided on the regulating component 400. In this way, when the condensed water falls onto the guide slope 423, it can flow along the guide slope 423 until it falls into the water receiving pan 500. That is, the setting of the guide slope 423 provides guidance for the flow of condensed water, which speeds up the flow of condensed water from the regulating component 400 to the water receiving pan 500, thereby improving the collection rate of the condensed water.

[0054] In some embodiments, the air conditioner 10 further includes a drain pipe 600 , the water receiving tray 500 is in communication with the drain pipe 600 , and the regulating assembly 400 is disposed on a side of the water receiving tray 500 away from the drain pipe 600 .

[0055] The condensed water in the water receiving tray 500 will flow into the drain pipe 600 , which is used to guide the collected condensed water to the outside or a designated drainage location to ensure that water will not accumulate indoors due to the use of the air conditioner 10 .

[0056] In order to minimize the interference of the adjustment component 400 on the discharge of condensed water, the adjustment component 400 is set on the side of the water receiving tray 500 away from the drain pipe 600. In this way, a water receiving chamber is formed between the adjustment component 400 and the side of the water receiving tray 500 close to the drain pipe 600. Under the limitation of the adjustment component 400, the condensed water will accumulate in the water receiving chamber. Since the water receiving chamber is set close to the drain pipe 600, the discharge of the condensed water can be facilitated.

[0057] Of course, the guide slope 423 is located on the side of the adjustment component 400 close to the drain pipe 600. Therefore, when the condensed water falls on the guide slope 423, it can flow directly along the guide slope 423 into the water receiving chamber to quickly discharge the condensed water.

[0058] See also Figure 3 and Figure 4 In some embodiments, the guide slope 423 is disposed opposite to the guide surface 421 , and the guide surface 421 is disposed close to the air outlet 120 .

[0059] Since the guide surface 421 needs to guide the airflow blown out by the fan assembly 200, and the guide bevel 423 needs to guide the condensed water, in order to ensure the guiding effects of the guide bevel 423 and the guide surface 421 respectively and avoid mutual interference, the guide bevel 423 and the guide surface 421 are arranged back to back, that is, the guide bevel 423 and the guide surface 421 are arranged on both sides of the adjustment assembly 400.

[0060] The guide surface 421 is positioned near the air outlet 120. This means that after the airflow changes direction through the guide surface 421, it is immediately blown out of the air outlet 120, thereby ensuring optimal wind direction adjustment. The guide surface 421 can be located within the air outlet 120 or with a certain gap between it and the air outlet 120. This is not a limitation.

[0061] The guide slope 423 is positioned away from the air outlet 120. Obviously, the drain pipe 600 and the water receiving chamber are both located on the side of the water receiving tray 500 away from the air outlet 120. This can, to a certain extent, prevent condensed water flowing on the guide slope 423 from flowing to the air outlet 120 and dripping onto the indoor floor. The guide slope 423 and the guide surface 421 can be connected or spaced apart, without limitation.

[0062] In some embodiments, the guide surface 421 is a curved surface or a flat surface.

[0063] The flow-guiding effect of a curved surface is better because when a fluid flows on a curved surface, the viscosity causes the fluid to adhere to the surface and change the flow direction. However, even if it is a plane, under certain conditions (such as fluid velocity, pressure difference, etc.), the fluid can adhere to the surface and change the flow direction. For example, when the speed of the airflow blown out by the fan assembly 200 is high enough, the momentum of the airflow can overcome the viscous force, so that when the airflow contacts the plane, it can adhere to the surface and change the flow direction. Alternatively, when the roughness of the guide surface 421 is low, the adhesion of the airflow can be enhanced to produce a flow-guiding effect. Therefore, the guide surface 421 can be a plane or a curved surface, as long as it protrudes from the direction of the airflow, and there is no restriction on this.

[0064] See also Figure 4-Figure 6 In some embodiments, the adjustment component 400 also includes a suction component 410, the adjustment component 400 has an installation cavity 440, and the two sides of the adjustment component 400 are respectively provided with a suction port 422 and a return air port 431 connected to the installation cavity 440, the suction component 410 is located in the installation cavity 440, and the guide surface 421 is located outside the installation cavity 440.

[0065] The strength of the gas-guiding effect of the guide surface 421 is affected by many factors, such as low airflow velocity, high temperature of the guide surface 421 (under heating effect), etc. Therefore, in order to make the adjustment of the airflow direction more stable, the adjustment component 400 also includes a suction component 410. The suction component 410 can generate suction, forming a negative pressure, so that the airflow deviates from the wind direction to the side where the suction component 410 is located. The side where the suction component 410 is located is the side where the guide surface 421 is located, so that the airflow can move along the guide surface 421 to achieve wind direction adjustment. That is, with the support of the suction component 410, the guiding effect of the guide surface 421 can be amplified, thereby improving the wind direction adjustment effect of the airflow.

[0066] Since the two sides of the regulating assembly 400 are respectively provided with an air intake 422 and an air return 431 connected to the installation cavity 440, that is, the air intake assembly 410 generates suction on the airflow through the air intake 422, causing the airflow to bend. Most of the airflow moves along the guide surface 421, and a small amount of airflow is sucked into the accommodating cavity 110 through the air intake 422, and then discharged back to the internal air duct of the air conditioner 10 through the air return 431, thus achieving circulation. Figure 7 The air suction component 410 may include at least one centrifugal fan 411, and each centrifugal fan 411 is correspondingly provided with a return air port 431 to ensure the return air rate of the air flow.

[0067] Specifically, since the guide surface 421 is arranged close to the air outlet 120 of the shell 100, the air intake port 422 is also arranged close to the air outlet 120 of the shell 100. In this way, the air flow changes its flow direction under the combined action of the guide surface 421 and the negative pressure, and is immediately blown out from the air outlet 120, thereby ensuring the best wind direction adjustment effect.

[0068] See also Figure 4-Figure 6 In some embodiments, the adjustment assembly 400 includes an upper cover plate 420 and a lower cover plate 430 , which together form an installation cavity 440 , the guide surface 421 and the air intake 422 are arranged on the upper cover plate 420 , and the return air outlet 431 is arranged on the lower cover plate 430 .

[0069] Since the fan assembly 200 is disposed in the installation cavity 440, in order to facilitate maintenance or replacement of the fan assembly 200, the adjustment assembly 400 has a split structure, that is, a detachable connection between the upper cover plate 420 and the lower cover plate 430. Specifically, the upper cover plate 420 and the lower cover plate 430 are detachably connected by screws or bolts.

[0070] The upper cover plate 420 is above the lower cover plate 430. In other words, the upper cover plate 420 is the upper portion of the adjustment assembly 400, and the lower cover plate 430 is the lower portion of the adjustment assembly 400. Since the adjustment assembly 400 is disposed at the lower portion of the accommodating chamber 110, the airflow flows above the adjustment assembly 400. Therefore, in order to allow the guide surface 421 to protrude relative to the direction of the airflow so as to contact the airflow, the guide surface 421 is disposed on the upper cover plate 420. Furthermore, in order to allow the suction force generated by the fan assembly 200 to act on the airflow, the air inlet 422 is also disposed on the upper cover plate 420.

[0071] The heat exchanger 300 is also located above the regulating assembly 400. Since the guide slope 423 of the regulating assembly 400 needs to guide the condensed water to the water receiving tray 500, in order to allow the condensed water generated on the surface of the heat exchanger 300 to fall onto the guide slope 423, the guide slope 423 is also arranged on the upper cover plate 420. Of course, the guide slope 423 is arranged opposite to the air suction port 422 to prevent the condensed water on the guide slope 423 from flowing into the accommodating cavity 110 through the air suction port 422 to a certain extent. Corrosion of the fan assembly 200.

[0072] Since the guide bevel 423 is arranged on the upper cover plate 420, and the guide bevel 423 is arranged opposite to the air intake port 422, and the air intake port 422 is arranged opposite to the return air port 431, that is, the guide bevel 423 and the return air port 431 need to be arranged on the same side, if the return air port 431 is arranged on the guide bevel 423, the condensed water on the guide bevel 423 will flow into the accommodating cavity 110 through the air intake port 422 and corrode the fan assembly 200. Therefore, the return air port 431 is arranged on the lower cover plate 430.

[0073] See also Figure 4 and Figure 5 In some embodiments, the air suction port 422 passes through the guide surface 421 .

[0074] Since the air suction port 422 and the guide surface 421 are both arranged on the upper cover plate 420 and are both arranged close to the air outlet 120, the air suction port 422 passes through the guide surface 421, that is, the air suction port 422 is opened on the guide surface 421. In this way, the fan assembly 200 generates suction on the airflow through the air suction port 422, causing the airflow direction to be deflected while moving along the guide surface 421. Under the dual superposition of diversion and suction, the best wind direction adjustment effect is achieved.

[0075] See also Figure 4 In some embodiments, the air suction assembly 410 is connected to a side of the upper cover 420 close to the fan assembly 200 .

[0076] That is, the air suction assembly 410 is mounted on the upper cover 420. Since both the guide surface 421 and the guide slope 423 are located on the upper cover 420, and the guide surface 421 is convex, making it inconvenient to install components, the air suction assembly 410 can be located on the side of the upper cover 420 away from the guide slope 423. That is, the air suction assembly 410 and the guide slope 423 are located correspondingly. Since the guide slope 423 is located away from the air outlet 120, that is, the guide slope 423 is located close to the fan assembly 200, the air suction assembly 410 is also located close to the fan assembly 200.

[0077] See also Figure 4 In some embodiments, the lower cover plate 430 is close to the side wall of the fan assembly 200 and is tilted toward the fan assembly 200, and the air suction assembly 410 is in contact with the side wall.

[0078] The cross-section of the suction assembly 410 is generally rectangular. Since the suction assembly 410 is arranged corresponding to the guide slope 423 and is close to the suction assembly 410, and since the guide slope 423 is arranged at an angle, in order to better install the suction assembly 410, the side wall of the lower cover 430 close to the suction assembly 410 is inclined toward the suction assembly 410 to leave installation space for the suction assembly 410. The suction assembly 410 abuts against the side wall, that is, the side wall can also provide a certain support for the suction assembly 410, making the installation of the suction assembly 410 more stable.

[0079] Specifically, the guide slope 423 and the side wall of the lower cover 430 close to the suction component 410 can form a right angle. Since the cross-sectional shape of the suction component 410 is roughly rectangular, the suction component 410 can abut against the side wall.

[0080] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in this specification.

[0081] In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the fact that ordinary technicians in this field can implement them. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.

[0082] Although the embodiments of the present application have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions, and variations may be made to the embodiments without departing from the principles and intent of the present application, and that the scope of the present application is defined by the claims and their equivalents.

Claims

1. An air conditioner, characterized in that: include: a housing, the housing comprising a receiving cavity and an air outlet communicating with the receiving cavity; The fan assembly and the heat exchanger are installed in the accommodating cavity; The regulating component is installed in the accommodating cavity and is located on the air outlet side of the fan component. The regulating component has a guide surface protruding relative to the air flow direction, and the guide surface can change the flow direction of the air flow blown out from the fan component.

2. The air conditioner according to claim 1, characterized in that The adjustment assembly is located at the lower part of the accommodating cavity.

3. The air conditioner according to claim 2, characterized in that The air conditioner further includes a water receiving tray. The heat exchanger is located on the air outlet side of the fan assembly. The water receiving tray is installed in the accommodating cavity and is located below the heat exchanger. The regulating assembly is arranged in the water receiving tray.

4. The air conditioner according to claim 3, characterized in that The air conditioner further comprises a drain pipe, the water receiving tray is communicated with the drain pipe, and the regulating assembly is arranged on a side of the water receiving tray away from the drain pipe.

5. The air conditioner according to claim 3, characterized in that The adjustment assembly further comprises a guide slope, and the guide slope can extend to the water receiving tray.

6. The air conditioner according to claim 5, characterized in that The guiding inclined surface is arranged opposite to the flow guiding surface, and the flow guiding surface is arranged close to the air outlet.

7. The air conditioner according to any one of claims 1 to 6, characterized in that: The guide surface is a curved surface or a flat surface.

8. The air conditioner according to any one of claims 1 to 6, characterized in that: The adjustment component also includes an air suction component, the adjustment component has an installation cavity, and the two sides of the adjustment component are respectively provided with an air suction port and an air return port connected to the installation cavity, the air suction component is located in the installation cavity, and the guide surface is located outside the installation cavity.

9. The air conditioner according to claim 8, characterized in that The adjustment assembly includes an upper cover plate and a lower cover plate, the upper cover plate and the lower cover plate together form the installation cavity, the guide surface and the air intake port are arranged on the upper cover plate, and the return air port is arranged on the lower cover plate.

10. The air conditioner according to claim 9, characterized in that The air suction port passes through the guide surface.

11. The air conditioner according to claim 9, characterized in that The air suction component is connected to a side of the upper cover plate close to the fan component.

12. The air conditioner according to claim 11, characterized in that The lower cover plate is close to the side wall of the fan assembly and is tilted toward the fan assembly, and the air suction assembly is in contact with the side wall.