Air outlet structure and air conditioner

By designing movable guide plates and multiple air outlets on the air outlet panel of the air conditioner, the problem of item drop is solved, the reliability and user experience of the air outlet structure are improved, and the air outlet adjustment capability and cooling and heating effect of the air conditioner are enhanced.

CN223121557UActive Publication Date: 2025-07-18QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +1
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Patent Information

Application Number
CN202421873968.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-07-18
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

The air outlet height of the existing integrated air conditioner is relatively low, which causes items on the countertop to fall into the air outlet, affecting the normal use of the air conditioner.

Method used

A air outlet structure is designed, including a air outlet panel and a first movable guide plate. The first guide plate can move between opening and closing the air outlet, and does not protrude from the air outlet panel when closed, so as to prevent items from falling; at the same time, multiple air outlets are provided on the air outlet panel, and the air outlet direction and air volume are adjusted through the guide plate.

Benefits of technology

Effectively prevent items from falling into the air outlet, improve the reliability and user experience of the air conditioner, enhance the adjustment ability of air outlet, and improve the cooling or heating effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of air conditioners, and discloses an air outlet structure and an air conditioner. The air outlet structure comprises an air outlet panel provided with a first air outlet and an air inlet, and the air inlet is located below the first air outlet; the first guide plate is movably arranged at the first air outlet, the first guide plate can move between a first position and a second position, and when the first guide plate is located at the first position, the first guide plate opens the first air outlet; when the first guide plate is located at the second position, the first guide plate closes the first air outlet; when the first guide plate is located at the first position, the outer end of the first guide plate does not protrude out of the air outlet panel. The outer end of the first guide plate does not protrude out of the air outlet panel, so that the first guide plate cannot be exposed, articles on the table top cannot fall on the first guide plate when falling off, the first guide plate can be hidden, the articles can be prevented from falling off, the use reliability of the air conditioner is guaranteed, and the use experience of a user is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of air conditioners, for example, to an air outlet structure and an air conditioner. Background Art

[0002] At present, the application scenarios of air conditioners are becoming more and more diverse. Air conditioners can be divided into wall-mounted, floor-standing, window-type or integrated mobile air conditioners. Different usage scenarios of air conditioners have different requirements for the installation space of air conditioners.

[0003] For existing integrated air conditioners, especially kitchen air conditioners, the air outlet of the kitchen air conditioner is generally near the stove or sink, which can ensure that the kitchen is comfortable and safe when using the kitchen air conditioner.

[0004] In the process of implementing the embodiments of the present disclosure, it is found that at least the following problems exist in the related art:

[0005] When the integrated air conditioner in the related art blows air, due to the relatively low height of the air outlet, items on the tabletop are likely to fall into the air outlet, affecting the normal use of the air conditioner.

[0006] It should be noted that the information disclosed in the above background art section is only used to enhance the understanding of the background of the present application, and thus may include information that does not constitute the prior art known to those of ordinary skill in the art. Summary of the Utility Model

[0007] To have a basic understanding of some aspects of the disclosed embodiments, a simple summary is given below. This summary is not a general review, nor is it intended to identify key / important elements or delineate the protection scope of these embodiments, but rather serves as a preface to the subsequent detailed description.

[0008] The embodiments of the present disclosure provide an air outlet structure and an air conditioner to prevent items from falling into the air outlet and ensure the reliability and normal use of the air conditioner.

[0009] The embodiments of the present disclosure provide an air outlet structure, which includes: an air outlet panel configured with a first air outlet and an air inlet, the air inlet being located below the first air outlet; a first guide plate movably disposed at the first air outlet, the first guide plate being capable of moving between a first position and a second position, when the first guide plate is in the first position, the first guide plate opens the first air outlet; when the first guide plate is in the second position, the first guide plate closes the first air outlet; wherein, when the first guide plate is in the first position, the outer end of the first guide plate does not protrude from the air outlet panel.

[0010] Optionally, when the first guide plate is in the first position, the outermost edge of the lower end portion of the first guide plate is in contact with the lower side wall of the first air outlet; and / or, when the first guide plate is in the first position, the upper wall surface of the first guide plate is tilted upward from the inside to the outside to guide the first air outlet to discharge air upward.

[0011] Optionally, the first guide plate includes: an outer guide plate; an inner guide plate located on one side of the outer guide plate; wherein, when the first guide plate is in the first position, the inner guide plate is located above the outer guide plate, and along the direction from the inside to the outside, the inner guide plate is inclined upward; when the first guide plate is in the second position, the inner guide plate is located on the inner side of the outer guide plate; the upper wall surface of the first guide plate when it is in the first position includes the upper wall surface of the inner guide plate.

[0012] Optionally, when the first guide plate is located at the first position, the distance between the inner guide plate and the outer guide plate gradually decreases from the outside to the inside.

[0013] Optionally, when the first guide plate is located at the first position, the outer end of the outer guide plate is located outside the outer end of the inner guide plate; and / or, when the first guide plate is located at the first position, the inner end of the inner guide plate abuts against the inner end of the outer guide plate.

[0014] Optionally, the first guide plate is rotatably connected to the air outlet panel, and the air outlet structure further includes: a first driving mechanism, which is drivably connected to the first guide plate, and the first driving mechanism can drive the first guide plate to move between a first position and a second position.

[0015] Optionally, the air outlet panel includes: a panel body, which is configured with a first air outlet and a second air outlet; an air duct enclosure plate, which is located on the inner side of the first air outlet and extends circumferentially along the first air outlet to enclose an air outlet cavity, and a first guide plate is rotatably located in the air outlet cavity; the first driving mechanism includes: a first motor, which is located on the side of the air duct enclosure plate away from the air outlet cavity, and the output shaft of the first motor passes through the air outlet enclosure plate and is rotatably connected to the first guide plate.

[0016] Optionally, the air outlet panel is also constructed with a second air outlet, and the air outlet structure also includes: a second guide plate, movably located at the second air outlet, and the second guide plate can guide the second air outlet to discharge air upward or downward; wherein the outer end of the second guide plate does not protrude from the air outlet panel.

[0017] An embodiment of the present disclosure further provides an air conditioner, which includes an air outlet structure as described in any one of the above embodiments.

[0018] Optionally, the air conditioner includes: a shell defining a accommodating chamber, the shell including an air outlet panel; a partition located in the accommodating chamber, dividing the accommodating chamber into a first chamber and a second chamber; an evaporator and a fan located in the first chamber, and the air outlet panel located in the first chamber; a compressor and a condenser located in the second chamber.

[0019] The air outlet structure and air conditioner provided by the embodiments of the present disclosure can achieve the following technical effects:

[0020] For the air outlet structure of the embodiments of the present disclosure, the air outlet panel is configured with a first air outlet, and a first guide plate is used to adjust the air volume and air outlet direction of the first air outlet. The first guide plate can open or close the first air outlet, so as to ensure that the air outlet direction is towards the indoor area, ensuring the temperature adjustment effect. The air inlet is located below the first air outlet, and the air conditioner can intake and exhaust air on the same side, which is convenient for installation. When the first guide plate is in the first position, the first guide plate opens the first air outlet. At the same time, the outer end of the first guide plate does not protrude from the air outlet panel, so that the first guide plate will not be exposed outside. When an item on the tabletop falls, it will not fall on the first guide plate, and thus will not slide into the air conditioner along the first guide plate. In this way, the first guide plate can be hidden, preventing items from falling, ensuring the reliability of the air conditioner in use, and improving the user experience.

[0021] The above general description and the following description are only exemplary and explanatory, and are not used to limit the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] One or more embodiments are exemplarily illustrated by corresponding drawings. These exemplary illustrations and the drawings do not constitute limitations on the embodiments. Elements with the same reference numerals in the drawings are shown as similar elements. The drawings do not constitute a scale limitation, and among them:

[0023] Figure 1 is a schematic structural diagram of an air conditioner provided by an embodiment of the present disclosure;

[0024] Figure 2 is a schematic cross-sectional structural diagram of an air conditioner provided by an embodiment of the present disclosure;

[0025] Figure 3 is a schematic cross-sectional structural diagram of another air conditioner provided by an embodiment of the present disclosure;

[0026] Figure 4 is a schematic diagram of an air outlet structure provided by an embodiment of the present disclosure;

[0027] Figure 5 is a schematic structural diagram of an air outlet panel provided by an embodiment of the present disclosure;

[0028] Figure 6 is a schematic structural diagram of a first guide plate provided by an embodiment of the present disclosure;

[0029] Figure 7 is a schematic structural diagram of a second guide plate provided by an embodiment of the present disclosure;

[0030] Figure 8 is a schematic partial structural diagram of an air outlet panel provided by an embodiment of the present disclosure.

[0031] Reference numerals:

[0032] 10. Housing; 101. First chamber; 1011. Fan chamber; 1012. Evaporator chamber; 102. Second chamber; 103. Partition; 104. Air outlet panel; 105. First air outlet; 1051. Air duct enclosure; 1052. Air outlet chamber; 1053. First motor; 106. Second air outlet; 107. Air inlet; 20. First guide plate; 201. Outer guide plate; 202. Inner guide plate; 203. Connecting arm; 204. Avoidance groove; 30. Second guide plate; 301. Connecting plate; 302. Second motor; 40. Evaporator; 401. Fan; 402. Condenser. Detailed implementation manners

[0033] In order to understand the features and technical content of the embodiments of the present disclosure in more detail, the implementation of the embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings. The attached drawings are only for reference and explanation, and are not used to limit the embodiments of the present disclosure. In the following technical description, for the convenience of explanation, a plurality of details are provided to provide a full understanding of the disclosed embodiments. However, one or more embodiments can still be implemented without these details. In other cases, well-known structures and devices can be shown in a simplified manner to simplify the drawings.

[0034] The terms "first", "second", etc. in the description and claims of the embodiments of the present disclosure and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances so as to describe the embodiments of the present disclosure here. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion.

[0035] In the embodiments of the present disclosure, the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "middle", "outer", "front", "rear", etc. is based on the orientation or positional relationship shown in the accompanying drawings. These terms are mainly used to better describe the embodiments of the present disclosure and their embodiments, and are not used to limit that the indicated devices, elements or components must have a specific orientation or be constructed and operated in a specific orientation. And, in addition to being able to represent an orientation or positional relationship, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in the embodiments of the present disclosure can be understood according to specific circumstances.

[0036] In addition, the terms "arranged", "connected", and "fixed" should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be a direct connection, or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present disclosure can be understood according to specific circumstances.

[0037] Unless otherwise specified, the term "plurality" means two or more.

[0038] The term "and / or" is a description of the associated relationship of an object, indicating that there can be three relationships. For example, A and / or B means: A or B, or, the three relationships of A and B.

[0039] It should be noted that, without conflict, the embodiments in the embodiments of the present disclosure and the features in the embodiments can be combined with each other.

[0040] For the convenience of description, the up-down, inside-outside directions of the present application are as Figure 2 shown, where the height direction refers to the up-down direction.

[0041] Combined with Figures 1 to 8 shown, the embodiments of the present disclosure provide an air conditioner, which includes a housing 10 that defines an accommodation cavity. The accommodation cavity has an air outlet and an air inlet 107. The air conditioner further includes an evaporator 40 and a fan 401. The evaporator 40 and the fan 401 are located in the accommodation cavity. The fan 401 can drive the air flow inhaled from the air inlet 107 to flow through the evaporator 40 for heat exchange and then flow out of the accommodation cavity from the air outlet.

[0042] Optionally, the air conditioner is an integrated air conditioner, and the air conditioner further includes a condenser 402 and a compressor. The condenser 402 and the compressor are located in the accommodation cavity.

[0043] Combined with Figure 2 and Figure 3 shown, the embodiments of the present disclosure provide an air outlet structure, which includes an air outlet panel 104, a first guide plate 20, and a second guide plate 30. The air outlet panel 104 is configured with a first air outlet 105 and a second air outlet 106. The second air outlet 106 is located below the first air outlet 105. The first guide plate 20 is movably arranged at the first air outlet 105 for adjusting the air outlet of the first air outlet 105. The second guide plate 30 is movably arranged at the second air outlet 106 for adjusting the air outlet of the second air outlet 106. Among them, the first guide plate 20 can guide the first air outlet 105 to blow air upward, and the second guide plate 30 can guide the second air outlet 106 to blow air upward or downward. Among them, the air outlet includes the first air outlet 105 and the second air outlet 106.

[0044] In the embodiments of the present disclosure, the air outlet panel 104 is configured with a first air outlet 105 and a second air outlet 106, so that both the first air outlet 105 and the second air outlet 106 can discharge air. The first air outlet 105 is located above the second air outlet 106, so that the first air outlet 105 and the second air outlet 106 can increase the air outlet area of the air outlet panel 104 in the height direction. The first guide plate 20 is movably arranged at the first air outlet 105, and the first guide plate 20 can guide the first air outlet 105 to discharge air upward, so as to ensure that the air discharged from the first air outlet 105 can flow into the room for temperature adjustment. The second guide plate 30 can guide the second air outlet 106 to discharge air upward or downward. When the first guide plate 20 controls the first air outlet 105 to discharge air upward and the second guide plate 30 also guides the second air outlet 106 to discharge air upward, not only can the upward air outlet area be increased, but also the air discharged from the second air outlet 106 can disturb the air flow of the first air outlet 105, improve the diffusion range of the air flow, slow down the wind speed at the same time, avoid the strong wind blowing directly at the user, and improve the user experience. When the first guide plate 20 controls the first air outlet 105 to discharge air upward and controls the second air outlet 106 to discharge air downward, the air conditioner can discharge air upward or downward, which can improve the circulating flow speed of the indoor air and improve the refrigeration or heating effect.

[0045] In addition, the settings of the first air outlet 105 and the second air outlet 106 can reduce the air volume loss, increase the air volume, and can adjust the wind speed to improve the softness of the air outlet.

[0046] Optionally, the length direction of the first air outlet 105 extends along the width direction of the air outlet panel 104, and the length direction of the second air outlet 106 extends along the height direction.

[0047] In the embodiments of the present disclosure, the size of the first air outlet 105 in the width direction of the air outlet panel 104 is relatively large, which can ensure the air outlet range of the air outlet panel 104 in the width direction. The length direction of the second air outlet 106 extends along the height direction, so as to increase the air outlet area of the air outlet panel 104 in the height direction.

[0048] Optionally, along the width direction of the air outlet panel 104, the length of the first air outlet 105 is greater than the width of the second air outlet 106.

[0049] Optionally, the length of the first air outlet 105 matches the width of the air outlet panel 104, that is, the length of the first air outlet 105 is the same as or close to the width of the air outlet panel 104. This can ensure the area of the first air outlet 105 and increase the air outlet area of the first air outlet 105 as much as possible.

[0050] Optionally, the number of the second air outlets 106 is one or more. When there are multiple second air outlets 106, the multiple second air outlets 106 are arranged at intervals in the width direction of the air outlet panel 104.

[0051] In the embodiments of the present disclosure, one or more second air outlets 106 can be provided. When there are multiple second air outlets 106, the multiple second air outlets 106 are arranged in the width direction of the air outlet panel 104, which can increase the air outlet area of the second air outlets 106, improve the flow disturbance effect of the second air outlets 106 on the first air outlet 105, and also ensure the air volume when the second air outlets 106 blow air downward.

[0052] In a specific embodiment, the number of the second air outlets 106 is two, and the two second air outlets 106 are respectively arranged on both sides of the width direction of the air outlet panel 104 and close to the outer edge of the air outlet panel 104.

[0053] Optionally, the second air outlets 106 are arranged at intervals below the first air outlet 105.

[0054] Optionally, the first guide plate 20 moves between a first position and a second position. When the first guide plate 20 is in the first position, the first guide plate 20 opens the first air outlet 105; when the first guide plate 20 is in the second position, the first guide plate 20 closes the first air outlet 105.

[0055] In the embodiments of the present disclosure, the first guide plate can open or close the first air outlet 105, so that the first air outlet 105 can be closed when not in use, avoiding dust from falling into the first air outlet.

[0056] Optionally, the first guide plate 20 is rotatably connected to the air outlet panel 104. The air outlet structure further includes a first driving mechanism, and the first driving mechanism is drivingly connected to the first guide plate 20. The first driving mechanism can drive the first guide plate 20 to move between the first position and the second position. When the first guide plate 20 is in the first position, the wall surface of the first guide plate 20 facing the air outlet slopes upward in the direction from the inside to the outside to guide the first air outlet 105 to blow air upward; when the first guide plate 20 is in the second position, the first guide plate 20 closes the first air outlet 105.

[0057] In the embodiments of the present disclosure, the first guide plate 20 can move between a first position and a second position through a first driving mechanism, so that the automatic rotation of the first guide plate 20 can be realized. When the first guide plate 20 is in the first position, the upper wall surface of the first guide plate 20 is inclined, so that the airflow at the first air outlet 105 can be guided by the first guide plate 20 to blow upward. When the first guide plate 20 moves to the second position, the first guide plate 20 can cover the first air outlet 105, so that the first air outlet 105 can be closed. In this way, when the air outlet panel 104 does not need to blow air, the components inside the air outlet panel 104 can be protected, and dust accumulation at the first air outlet 105 can be avoided.

[0058] Optionally, as Figure 2 and Figure 3 shown, when the first guide plate 20 is in the first position, the outer end of the first guide plate 20 does not protrude from the air outlet panel 104.

[0059] In the embodiments of the present disclosure, when the first guide plate 20 is in the first position, the first air outlet 105 blows air, and the outer end of the first guide plate 20 does not protrude from the air outlet panel 104. In this way, after the first guide plate 20 is opened, it will not leak out, so that the first guide plate 20 can be hidden inside the first air outlet 105. When the first air outlet 105 blows air, objects will not fall to the first guide plate 20 or slide along the first guide plate 20 into the air conditioner, improving the reliability of the air conditioner.

[0060] It should be noted that when the first guide plate is in the first position, the first guide plate can also be inclined downward from inside to outside or extend horizontally. That is to say, when the first guide plate opens the first air outlet to blow air, the outer end of the first guide plate does not protrude from the air outlet panel, so that the first guide plate can be hidden and foreign objects can be prevented from falling into the air conditioner.

[0061] Optionally, when the first guide plate 20 is in the first position, the outermost edge of the lower end of the first guide plate 20 abuts (fits or is close to) against the lower side wall of the first air outlet 105.

[0062] In the embodiments of the present disclosure, the outermost edge of the lower end of the first guide plate 20 abuts against the lower side wall of the first air outlet 105, so that the first guide plate 20 can cover the lower part of the first air outlet 105, and objects can be prevented from falling into the first air outlet 105 through the gap between the first guide plate 20 and the lower side wall of the first air outlet 105.

[0063] Optionally, as Figure 6As shown, the first guide plate 20 includes an outer guide plate 201 and an inner guide plate 202. The inner guide plate 202 is located on one side of the outer guide plate 201, and the inner guide plate 202 is spaced apart from the outer guide plate 201, and the inner guide plate 202 and the outer guide plate 201 define a cavity. When the first guide plate 20 is in the first position, the inner guide plate 202 is located above the outer guide plate 201, and along the direction from inside to outside, the inner guide plate 202 is inclined upward. When the first guide plate 20 is in the second position, the inner guide plate 202 is located inside the outer guide plate 201. The upper wall surface of the first guide plate 20 includes the wall surface of the inner guide plate 202 facing the first air outlet 105.

[0064] In an embodiment of the present disclosure, the first guide plate 20 includes two layers of guide plates. When the first guide plate 20 is in the first position, the inner guide plate 202 is located above the outer guide plate 201, the inner guide plate 202 faces the outer guide plate 201, and the inner guide plate 202 is inclined so that the inner guide plate 202 can guide the first air outlet 105 to blow air upward. When the first guide plate 20 is in the second position, the first guide plate 20 closes the first air outlet 105, the outer guide plate 201 is located outside the inner guide plate 202, and the outer guide plate 201 can be in contact with the peripheral wall of the first air outlet 105, thereby closing the first air outlet 105.

[0065] Optionally, when the first guide plate 20 is in the first position, the distance between the inner guide plate 202 and the outer guide plate 201 gradually decreases along the direction from outside to inside.

[0066] In an embodiment of the present disclosure, when the first guide plate 20 opens the first air outlet 105 and guides the first air outlet 105 to blow air, the inner guide plate 202 is inclined upward along the direction from inside to outside, and along the direction from outside to inside, the distance between the inner guide plate 202 and the outer guide plate 201 gradually decreases. That is to say, the outer guide plate 201 can extend horizontally or be slightly inclined, as long as the stable setting of the inner guide plate 202 can be ensured.

[0067] Optionally, when the first guide plate 20 is in the first position, the outer guide plate 201 extends along the horizontal direction.

[0068] Optionally, when the first guide plate 20 is in the first position, the outer end of the outer guide plate 201 is located outside the outer end of the inner guide plate 202.

[0069] In an embodiment of the present disclosure, the outer end of the outer guide plate 201 is located outside the outer end of the inner guide plate 202. That is to say, the cavity has an opening. The outer end of the inner guide plate 202 is located at the upper end of the opening of the cavity, and the outer end of the outer guide plate 20 is located at the lower end of the opening of the cavity. The lower end of the opening is located outside the upper end. In this way, the opening can face upward. When an item drops, part of the item can fall into the cavity through the opening of the cavity. In this way, the cavity can play a role in temporarily storing and blocking, and prevent the item from falling into the first air outlet 105.

[0070] Optionally, when the first guide plate 20 is in the first position, the inner end of the inner guide plate 202 abuts against the inner end of the outer guide plate 201, so that the outer side of the cavity is open and the inner side is closed, which can prevent objects from falling into the first air outlet 105 through the cavity.

[0071] Alternatively, if Figure 4 As shown, the air outlet panel 104 includes a panel body and an air duct enclosure 1051, and the panel body is constructed with a first air outlet 105 and a second air outlet 106; the air duct enclosure 1051 is located on the inner side of the first air outlet 105, and extends along the circumference of the first air outlet 105 to enclose an air outlet cavity 1052, and the first guide plate 20 is rotatably located in the air outlet cavity 1052; the first driving mechanism includes a first motor 1053, and the first motor 1053 is located on the side of the air duct enclosure 1051 away from the air outlet cavity 1052, and the output shaft of the first motor 1053 passes through the air outlet enclosure 1051 and is rotatably connected to the first guide plate 20.

[0072] In the disclosed embodiment, the air duct enclosure 1051 is convexly disposed on the inner side of the first air outlet 105 and extends along the circumference of the first air outlet 105, so that the air duct enclosure 1051 can not only enclose the air outlet cavity 1052, but also facilitate the arrangement of the first guide plate 20 and the first driving mechanism. When the first driving mechanism is the first motor 1053, the first motor 1053 is located on the side of the air outlet enclosure 1051 away from the air outlet cavity 1052, so that the first motor 1053 does not affect the rotation of the first guide plate 20, and the output shaft of the first motor 1053 passes through the air outlet enclosure 1051 and is drivingly connected to the first guide plate 20, so that the first guide plate 20 can be driven to rotate in the air outlet cavity 1052.

[0073] Optionally, the air outlet baffle 1051 extends in a ring shape.

[0074] Optionally, the outer guide plate 201 protrudes from the inner guide plate 202 in the width direction of the air outlet panel 104, and the outer guide plate 201 is constructed with a connecting arm 203, which is drivingly connected to the output shaft of the first motor 1053 to enable the first guide plate 20 to rotate relative to the first air outlet 105.

[0075] In the disclosed embodiment, the outer guide plate 201 is relatively large in size, and a connecting arm 203 is provided on the outer guide plate 201, and is driven and connected to the first motor 1053 through the connecting arm 203, so that the inner guide plate 202 will not be occupied, and the smoothness of the wall surface of the inner guide plate 202 can be ensured, and the smoothness of the inner guide plate 202 in guiding the air outlet can be ensured.

[0076] Optionally, the connecting arm 203 is connected to the middle of the outer guide plate 201 , so that the first motor 1053 can drive the first guide plate 20 to rotate more effortlessly.

[0077] Optionally, one end of the air outlet shroud 1051 is connected to the first motor 1053, and the other end of the air outlet shroud 1051 is provided with a rotating shaft. Connecting arms 203 are respectively provided at both ends of the outer guide plate 201 along the width direction of the air outlet panel 104. One connecting arm 203 is drivingly connected to the first motor 1053, and the other connecting arm 203 is rotatably connected to the rotating shaft. In this way, the entire first guide plate 20 can be driven by one first motor 1053.

[0078] Optionally, as Figure 8 shown, the air outlet shroud 1051 is configured with a motor cavity, the first motor 1053 is located in the motor cavity, and the motor cavity corresponds to a part of the first air outlet 105. Wherein, an avoidance groove 204 is configured on the side wall of the air outlet cavity 1052. When the first guide plate 20 is in the second position, a part of the outer guide plate 201 is located in the avoidance groove 204, and when the first guide plate 20 is in the first position, the outer guide plate 201 rotates out of the avoidance groove 204.

[0079] In the embodiment of the present disclosure, the motor cavity corresponds to a part of the first air outlet 105, that is to say, the size of the air outlet cavity 1052 is smaller than the size of the first air outlet 105, but the outer guide plate 201 matches the first air outlet 105. Therefore, the size of the outer guide plate 201 along the width direction of the air outlet panel 104 is larger than the size of the air outlet cavity 1052. The avoidance groove 204 is configured on the side wall of the air outlet cavity 1052, and the avoidance groove 204 facilitates providing sufficient rotation space when the outer guide plate 201 rotates, so that the size of the outer guide plate 201 can be increased and the air outlet area of the first air outlet 105 can be increased.

[0080] Optionally, the number of the second guide plates 30 is multiple, and the multiple second guide plates are sequentially arranged along the height direction of the second air outlet 106 at the second air outlet 106.

[0081] In the embodiment of the present disclosure, since the width of the second air outlet 106 is smaller than the width of the first air outlet 105, therefore, the multiple second guide plates 30 are sequentially arranged along the height direction of the second air outlet 106, so that the multiple second guide plates 30 can guide the air outlet of the second air outlet 106.

[0082] Optionally, the second guide plate 30 is rotatably connected to the air outlet panel 104, and the air outlet structure further includes a second driving mechanism. The second driving mechanism is drivingly connected to the second guide plate 30, and the second driving mechanism can drive the second guide plate 30 to move between a third position and a fourth position. When the second guide plate 30 is in the third position, the second guide plate 30 is inclined upward along the direction from inside to outside to guide the second air outlet 106 to blow air upward; when the second guide plate 30 is in the fourth position, the second guide plate 30 is inclined downward along the direction from inside to outside to guide the second air outlet 106 to blow air downward.

[0083] In the embodiments of the present disclosure, the second guide plate 30 is also rotatably connected to the second air outlet 106. When the second guide plate 30 is in the third position, the second guide plate 30 can guide the second air outlet 106 to blow air upward. In this way, the air flow from the second air outlet 106 can turbulently mix with the air flow from the first air outlet 105, accelerating the diffusion of the air flow, slowing down the wind speed, and improving the air supply feeling. When the second guide plate 30 is in the fourth position, the second air outlet 106 blows air downward under the guidance of the second guide plate 30. In this way, the air outlet panel 104 can blow air upward through the first air outlet 105 and also blow air downward through the second air outlet 106, which can accelerate the indoor air circulation and thus improve the cooling or heating effect.

[0084] Optionally, the second driving mechanism includes a second motor 302 and a connecting plate 301. The connecting plate 301 extends along the height direction of the second air outlet 106. A plurality of second guide plates 30 are sequentially arranged along the height direction of the connecting plate 301. The connecting plate 301 is drivingly connected to the second motor 302. The second motor 302 drives a plurality of second guide plates 30 to rotate between the third position and the fourth position through the connecting plate 301.

[0085] In the embodiments of the present disclosure, a plurality of second guide plates 30 are connected together through the connecting plate 301. The connecting plate 301 is drivingly connected to the second motor 302. In this way, the second motor 302 drives the connecting plate 301 to move, and then the connecting plate 301 can drive a plurality of second guide plates 30 to rotate synchronously.

[0086] Optionally, when the number of the second air outlets 106 is multiple, each second air outlet 106 is correspondingly provided with a second driving mechanism so that the air flow from each second air outlet 106 can be independently controlled.

[0087] Optionally, the second motor 302 is located below a plurality of second guide plates 30.

[0088] Optionally, the second guide plate 30 is arc-shaped, and when the second guide plate 30 is in the third position and the fourth position, the second guide plate 30 is bent downward.

[0089] In the embodiments of the present disclosure, the second guide plate 30 is arc-shaped, which can guide the air flow from the second air outlet 106 to flow out more smoothly. Moreover, the air flow can flow along the second guide plate 30 for a certain distance, so that the air flow from the second air outlet 106 can flow close to the air outlet panel 104 for a certain distance and then flow into the room. This can improve the temperature adjustment range and avoid dead corners. The second guide plate 30 is bent downward, that is, the arc opening of the second guide plate 30 faces upward. In this way, when the second guide plate 30 moves to the third position, the second guide plate 30 can guide the air flow to the first air outlet 105, preventing the air flow from the second air outlet 106 from flowing too far outward and being unable to turbulently mix with the air flow from the first air outlet 105.

[0090] Optionally, the included angle between the tangent line at one end of the second guide plate 30 and the connecting plate 301 is 52°, and the included angle between the tangent line at the other end of the second guide plate 30 and the connecting plate 301 is 17°.

[0091] Optionally, when the second guide plate 30 is located at the third position or the fourth position, the outer end portion of the second guide plate 30 does not protrude from the air outlet panel 104.

[0092] In the embodiment of the present disclosure, the second guide plate 30 can also be hidden inside the air outlet panel 104, which can also prevent the second guide plate 30 from protruding from the air outlet panel 104, so that objects falling on the second guide plate 30 will slide along the second guide plate 30 into the air conditioner, improving the safety of using the air conditioner.

[0093] Optionally, the air outlet panel 104 is further configured with an air inlet 107, and the air inlet 107 is located below the second air outlet.

[0094] In the embodiment of the present disclosure, a first air outlet 105 is provided at the upper part of the air outlet panel 104, a second air outlet 106 is provided at the upper middle part, and an air inlet 107 is provided at the bottom of the air outlet panel 104. In this way, the air conditioner can achieve air inlet and outlet on the same side, so that only the air inlet and outlet spaces of the air outlet panel 104 need to be arranged during installation, greatly improving the flexibility of using the air conditioner.

[0095] The embodiment of the present disclosure further provides an air conditioner, which includes the air outlet structure according to any one of the above embodiments.

[0096] The air conditioner provided by the embodiment of the present disclosure includes the air outlet structure according to any one of the above embodiments, and thus has the beneficial effects of the air outlet structure according to any one of the above embodiments, which will not be elaborated here.

[0097] Optionally, the air conditioner is an integrated air conditioner, a wall-mounted air conditioner or a cabinet air conditioner. When the air conditioner is an integrated air conditioner, the integrated air conditioner includes a kitchen air conditioner.

[0098] Optionally, when the air conditioner is an integrated air conditioner, the air conditioner includes a housing 10, an evaporator 40, a blower 401, a condenser 402 and a compressor. The housing 10 defines a receiving cavity. The evaporator 40, the blower 401, the condenser 402 and the compressor are all located in the receiving cavity.

[0099] Optionally, the air conditioner includes a partition 103 that divides the accommodation chamber into a first chamber 101 and a second chamber 102. The evaporator 40 and the blower 401 are located in the first chamber 101, and the compressor and the condenser 402 are located in the second chamber 102. Among them, the chamber wall of the first chamber 101 includes an air outlet panel 104. The upper part of the air outlet panel 104 is provided with a first air outlet 105, and the second air outlet 106 is located below the first air outlet 105. The lower part of the air outlet panel 104 is provided with an air inlet 107, that is, the lower part of the first chamber 101 is provided with an air inlet 107. The evaporator 40 and the blower 401 are arranged in sequence from top to bottom. In this way, the air inlet 107 and the air outlet of the first chamber 101 are on the same panel. The blower 401 drives the air flow to flow into the first chamber 101 from the lower air inlet 107, and then flows upward to exchange heat with the evaporator 40, and then flows out from the first air outlet 105 and the second air outlet 106.

[0100] Optionally, the first chamber 101 includes an evaporator chamber 1012 and a blower chamber 1011. The evaporator chamber 1012 is located above the blower chamber 1011. The evaporator 40 is located in the evaporator chamber 1012, and the blower 401 is located in the blower chamber 1011. Among them, both the first air outlet 105 and the second air outlet 106 are connected to and correspond to the evaporator chamber 1012, and the air inlet 107 is connected to and corresponds to the blower chamber 1011.

[0101] Optionally, the first air outlet 105 corresponds to the upper part of the evaporator chamber 1012, and the second air outlet 106 extends downward from below the first air outlet 105, and the lower end of the second air outlet 106 corresponds to the lower part of the evaporator chamber 1012. In this way, air can be discharged in the height direction of the evaporator chamber 1012, increasing the air outlet area and the air volume. Moreover, the air volume originally lost at the lower part of the evaporator 40 can be blown out from the second air outlet 106, increasing the air volume, reducing the air volume loss, and expanding the air supply range.

[0102] Optionally, the compressor and the condenser 402 are arranged side by side in the second chamber 102 in the horizontal direction. Among them, the condenser 402 is a double-pipe heat exchanger. The double-pipe heat exchanger includes an inner pipe and an outer pipe. The outer pipe is sleeved outside the inner pipe. Water flows in the inner pipe, and refrigerant flows between the outer pipe and the inner pipe. In this way, the heat dissipation effect of the refrigerant can be improved. In this way, there is no need to set a heat dissipation air duct in the second chamber 102, which can reduce the influence of the air flow in the second chamber 102 on the air flow flowing out of the first chamber 101 and improve the user experience.

[0103] Optionally, along the front-to-back direction, the evaporator 40 is inclined from bottom to top, which can increase the air flow rate exchanging heat with the evaporator 40, reduce the air outlet temperature at the air outlet, and ensure the refrigeration effect.

[0104] Optionally, the air conditioner is disposed below a pool or a cooking range, and the air outlet panel is arranged facing the user.

[0105] The above description and the drawings sufficiently illustrate the embodiments of the present disclosure so that those skilled in the art can practice them. Other embodiments may include structural and other changes. Embodiments represent only possible variations. Unless explicitly required, individual components and functions are optional, and the order of operations may vary. Parts and features of some embodiments may be included in or substituted for parts and features of other embodiments. The embodiments of the present disclosure are not limited to the structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is limited only by the appended claims.

Claims

1. An air outlet structure, characterized in that, include: The air outlet panel is structured with a first air outlet and an air inlet, and the air inlet is located below the first air outlet; a first guide plate, movably disposed at the first air outlet, the first guide plate being able to move between a first position and a second position, and when the first guide plate is at the first position, the first guide plate opens the first air outlet; when the first guide plate is at the second position, the first guide plate closes the first air outlet; When the first guide plate is located at the first position, the outer end of the first guide plate does not protrude from the air outlet panel.

2. The air outlet structure according to claim 1, characterized in that: When the first guide plate is at the first position, the outermost edge of the lower end portion of the first guide plate abuts against the lower side wall of the first air outlet; and / or, When the first guide plate is located at the first position, the upper wall surface of the first guide plate is inclined upward from the inside to the outside to guide the first air outlet to discharge air upward.

3. The air outlet structure according to claim 1, characterized in that, The first guide plate comprises: Outer guide plate; An inner guide plate, located on one side of the outer guide plate; When the first guide plate is located at the first position, the inner guide plate is located above the outer guide plate and is inclined upward from the inside to the outside; when the first guide plate is located at the second position, the inner guide plate is located inside the outer guide plate.

4. The air outlet structure according to claim 3, characterized in that: When the first guide plate is located at the first position, the distance between the inner guide plate and the outer guide plate gradually decreases from the outside to the inside.

5. The air outlet structure according to claim 3, characterized in that: When the first guide plate is located at the first position, the outer end of the outer guide plate is located outside the outer end of the inner guide plate; and / or, When the first guide plate is located at the first position, the inner end of the inner guide plate abuts against the inner end of the outer guide plate.

6. The air outlet structure according to claim 1, wherein The first guide plate is rotatably connected to the air outlet panel, and the air outlet structure further includes: The first driving mechanism is drivingly connected to the first guide plate, and the first driving mechanism can drive the first guide plate to move between a first position and a second position.

7. The air outlet structure according to claim 6, characterized in that, The air outlet panel includes: The panel body is configured with a first air outlet; The air duct enclosure is located at the inner side of the first air outlet and extends along the circumference of the first air outlet to enclose the air outlet cavity, and the first guide plate is rotatably located in the air outlet cavity; The first driving mechanism comprises: The first motor is located on a side of the air duct enclosure away from the air outlet cavity, and the output shaft of the first motor passes through the air outlet enclosure and is rotatably connected to the first guide plate.

8. The air outlet structure according to any one of claims 1 to 7, characterized in that, The air outlet panel is also configured with a second air outlet, and the air outlet structure further comprises: A second guide plate is movably located at the second air outlet, and the second guide plate can guide the second air outlet to discharge air upward or downward; Wherein, the outer end portion of the second guide plate does not protrude from the air outlet panel.

9. An air conditioner, characterized in that, It comprises the air outlet structure as claimed in any one of claims 1 to 8.

10. The air conditioner according to claim 9, characterized in that, include: A housing defines a receiving cavity, and the housing includes an air outlet panel; A partition, located in the accommodating chamber, divides the accommodating chamber into a first chamber and a second chamber; The evaporator and the fan are located in the first chamber, and the air outlet panel is located in the first chamber; The compressor and the condenser are located in the second chamber.