An air conditioner floor-standing unit

The dual rotating outflow structure in air conditioners adjusts airflow direction to prevent direct blowing, enhancing user comfort by allowing for customizable airflow patterns and quantities.

CN110671748BActive Publication Date: 2025-07-15NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN201910940089.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-09-30
Publication Date
2025-07-15
Estimated Expiration
2039-09-30

AI Technical Summary

Technical Problem

The air conditioners have poor air comfort, especially when it is difficult to land hot air during heating and the problem of wind blowing people during cooling affects the user experience.

Method used

An air conditioning cabinet is designed, and a first air outlet structure and a second air outlet structure are arranged in sequence in the vertical direction. The first air outlet structure can be rotatable with respect to the second air outlet structure with the axis as the center. Combined with a rotatable rotating shell and a sweeping blade, a flexible adjustment of the air outlet direction is achieved.

Benefits of technology

By rotating and adjusting the air outlet structure, avoiding the air outlet directly blowing people, improving user comfort, increasing the floor area of hot air, realizing the adjustment of multiple air outlet modes, and improving the use experience of air conditioning.

✦ Generated by Eureka AI based on patent content.

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    Figure CN110671748B_ABST
Patent Text Reader

Abstract

The present invention provides an air conditioner cabinet, wherein the air conditioner cabinet includes an air outlet structure, and the air outlet structure includes a first air outlet structure and a second air outlet structure; the first air outlet structure and the second air outlet structure are sequentially arranged in the vertical direction, and the axes of the first air outlet and the second air outlet are located on the same straight line, and the first air outlet structure can rotate relative to the second air outlet structure with the axis as the center. The present invention arranges the first air outlet structure to be rotatable relative to the second air outlet structure. When it is necessary to adjust to the mode where the air outlet does not blow on people, it can be achieved by rotating the first air outlet structure. At this time, the air outlet direction of the first air outlet structure is different from that of the second air outlet structure.
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Description

Technical Field

[0001] The present invention relates to an air conditioner structure, and specifically to a floor-standing air conditioner. Background Art

[0002] An air conditioner is a household appliance commonly used in daily life. It utilizes the principle of heat absorption and release during the phase change of the refrigerant to achieve the purpose of cooling the indoor air. In the prior art, the air outlet comfort of the air conditioner affects the user experience. To solve the problems of difficult hot air landing during heating and blowing on people during cooling of the air conditioner, and to make the indoor air flow more in line with human comfort. In the prior art, generally, the same air duct is used for both cooling and heating. Although this structure can control the temperature of the air, the comfort is poor, which affects the user experience. Summary of the Invention

[0003] To solve at least one of the above problems, the object of the present invention is to provide a floor-standing air conditioner that can avoid the phenomenon of the air outlet blowing on people, which can effectively improve the comfort of users. Specifically, a floor-standing air conditioner provided by the present invention includes an air outlet structure, and the air outlet structure includes a first air outlet structure and a second air outlet structure;

[0004] The first air outlet structure and the second air outlet structure are sequentially arranged in the vertical direction, and the axes of the first air outlet and the second air outlet are on the same straight line. The first air outlet structure can rotate relative to the second air outlet structure with the axis as the center.

[0005] Adopting the above technical solution, the first air outlet structure is set to be rotatable relative to the second air outlet structure. Specifically, the first air outlet structure can rotate relative to the second air outlet structure with the axis as the center. When it is necessary to adjust to the mode where the air outlet does not blow on people, it can be achieved by rotating the first air outlet structure. At this time, the air outlet direction of the first air outlet structure is different from that of the second air outlet structure.

[0006] Optionally, the first air outlet structure is located above the second air outlet structure. This structure is convenient for operation and processing, and at the same time is convenient for adjusting different air outlet modes.

[0007] Optionally, the number of the first air outlet structures and the second air outlet structures is more than one; when the number of both the first air outlet structures and the second air outlet structures is more than two, the two or more first air outlet structures are sequentially arranged in the vertical direction, and the two or more second air outlet structures are sequentially arranged in the vertical direction. In this structure, when the number of both the first air outlet structures and the second air outlet structures is more than two, the air volume of each first air outlet structure can be different, and the air volume of each second air outlet structure can be different, which is convenient for adjusting the air volume and realizing various ways of adjusting the air volume.

[0008] Optionally, the angle range within which the first air outlet structure can rotate relative to the second air outlet structure is 0° - 360°. With this kind of structure, the rotatable angle range is wide and the application range is large.

[0009] Optionally, the first air outlet structure includes a first rotating housing and a first air outlet;

[0010] The first rotating housing includes a first rotating outer housing and a first rotating inner housing. The first rotating outer housing is arranged outside the first rotating inner housing, and the first rotating outer housing is rotatable relative to the first rotating inner housing;

[0011] The first rotating outer housing is provided with a first rotating outer housing air outlet;

[0012] The first rotating inner housing is provided with a first rotating inner housing air outlet, and a first air sweeping blade is arranged at the first rotating inner housing air outlet;

[0013] The first air outlet is formed when the first rotating outer housing air outlet and the first rotating inner housing air outlet overlap.

[0014] With this kind of structure, the first rotating outer housing is rotatable relative to the first rotating inner housing. The first rotating outer housing air outlet and the first rotating inner housing air outlet can be on the same axis. At this time, the first rotating outer housing air outlet and the first rotating inner housing air outlet completely overlap, and the first air outlet structure can blow air; the first rotating outer housing air outlet and the first rotating inner housing air outlet can also not be on the same axis. At this time, the first rotating outer housing will block the first rotating inner housing air outlet. When the first rotating outer housing completely blocks the first rotating inner housing air outlet, the first air outlet structure does not blow air. When the first rotating outer housing partially blocks the first rotating inner housing air outlet, the first rotating outer housing air outlet and the first rotating inner housing air outlet partially overlap, and the first air outlet structure can also blow air, but the air outlet area is smaller than the situation where the first rotating outer housing air outlet and the first rotating inner housing air outlet completely overlap; the first air sweeping blade arranged at the first rotating inner housing air outlet can adjust the air outlet direction of the blown air.

[0015] Optionally, the first air sweeping blade includes a first outer air sweeping blade and a first inner air sweeping blade. The first outer air sweeping blade is arranged outside the first inner air sweeping blade, and the swinging directions of the first outer air sweeping blade and the first inner air sweeping blade are different. With this kind of structure, the adjustment of different air outlet directions can be realized.

[0016] Optionally, the first outer air sweeping blade is a vertical air sweeping blade, and the first inner air sweeping blade is a horizontal air sweeping blade. With this kind of structure, the adjustment of the air outlet directions in the vertical and horizontal directions can be realized, and the air sweeping area can be enlarged.

[0017] Optionally, the second air outlet structure includes a second rotating housing and a second air outlet;

[0018] The second rotating housing includes a second rotating outer housing and a second rotating inner housing. The second rotating outer housing is disposed outside the second rotating inner housing, and the second rotating outer housing is rotatable relative to the second rotating inner housing;

[0019] A second rotating outer housing air outlet is provided on the second rotating outer housing;

[0020] A second rotating inner housing air outlet is provided on the second rotating inner housing, and second air sweeping blades are provided at the second rotating inner housing air outlet;

[0021] The second air outlet is formed when the second rotating outer housing air outlet and the second rotating inner housing air outlet overlap.

[0022] In this structure, the second rotating outer housing is rotatable relative to the second rotating inner housing. The second rotating outer housing air outlet and the second rotating inner housing air outlet can be on the same axis. At this time, the second rotating outer housing air outlet and the second rotating inner housing air outlet completely overlap, and the second air outlet structure can blow air. The second rotating outer housing air outlet and the second rotating inner housing air outlet can also not be on the same axis. At this time, the second rotating outer housing will block the second rotating inner housing air outlet. When the second rotating outer housing completely blocks the second rotating inner housing air outlet, the second air outlet structure does not blow air. When the second rotating outer housing partially blocks the second rotating inner housing air outlet, the second rotating outer housing air outlet and the second rotating inner housing air outlet partially overlap, and the second air outlet structure can also blow air, but the air outlet area is smaller than the case where the second rotating outer housing air outlet and the second rotating inner housing air outlet completely overlap; the second air sweeping blades provided at the second rotating inner housing air outlet can switch the air outlet direction of the blown air.

[0023] Optionally, the second air sweeping blades include second outer air sweeping blades and second inner air sweeping blades. The second outer air sweeping blades are disposed outside the second inner air sweeping blades, and the swinging directions of the second outer air sweeping blades and the second inner air sweeping blades are different. In this structure, the adjustment of different air outlet directions can be achieved.

[0024] Optionally, the second outer air sweeping blades are vertical air sweeping blades, and the second inner air sweeping blades are horizontal air sweeping blades. In this structure, the adjustment of the air outlet directions in the vertical direction and the horizontal direction can be achieved, and the air sweeping area can be expanded.

[0025] Optionally, the air outlet mode of the air conditioner cabinet includes a gentle breeze mode. When the air outlet mode is the gentle breeze mode, the first air outlet structure blows air, the second air outlet structure does not blow air, and the first air outlet structure rotates a certain angle relative to the second air outlet structure, and the first air outlet and the second air outlet are not located on the same axis. In this structure, the air outlet direction is not directly facing people, the blown air blows in the opposite direction, and when the blown air is cold air, the cold air does not blow on people.

[0026] Optionally, the air outlet mode of the air conditioner cabinet includes a cooling mode and / or a heating mode. When the air outlet mode is the cooling mode or the heating mode, both the first air outlet structure and the second air outlet structure discharge air. With this structure, the cooling or heating effect can be achieved quickly.

[0027] Optionally, when the air outlet mode is the heating mode, the first internal air-sweeping blade inclines towards the second air outlet structure; the second internal air-sweeping blade inclines towards the first air outlet structure or faces the horizontal direction. With this structure, the air discharged from the first air outlet structure suppresses the air discharged from the second air outlet structure, which can effectively increase the area where the hot air lands and enhance the comfort during air conditioner heating.

[0028] Optionally, when the air outlet mode of the air conditioner cabinet is the heating mode, the length L1 of the first air outlet in the vertical direction is greater than the length L2 of the second air outlet in the vertical direction. With this structure, the air volume discharged from the first air outlet structure is greater than that from the second air outlet structure.

[0029] The present invention also provides an air conditioner, which includes the air conditioner cabinet described in any one of the above, and an outdoor unit connected to the air conditioner cabinet. Description of the Drawings

[0030] Figure 1 It is the front view of the gentle breeze mode of the air conditioner cabinet of the present invention;

[0031] Figure 2 It is Figure 1 the sectional view taken along A-A in

[0032] Figure 3 It is Figure 1 the sectional view taken along B-B in

[0033] Figure 4 It is the left view of the gentle breeze mode of the air conditioner cabinet of the present invention;

[0034] Figure 5 It is Figure 4 the sectional view taken along C-C in

[0035] Figure 6 It is the front view of the cooling mode or heating mode of the air conditioner cabinet of the present invention;

[0036] Figure 7 It is Figure 6 the sectional view taken along D-D in

[0037] Figure 8 It is Figure 6 the sectional view taken along E-E in

[0038] Figure 9 It isFigure 6 Right view Figure 1 (Heating mode);

[0039] Figure 10 is Figure 6 Right view Figure 2 (Cooling mode or heating mode);

[0040] Figure 11 is Figure 6 Rear view of

[0041] Explanation of reference numerals:

[0042] 100 - Air outlet structure; 110 - First air outlet structure; 111 - First rotating housing; 1111 - First rotating outer shell; 1112 - First rotating inner shell; 112 - First air outlet; 1121 - First rotating outer shell air outlet; 1122 - First rotating inner shell air outlet; 113 - First air sweeping blade; 1131 - First outer air sweeping blade; 1132 - First inner air sweeping blade; 120 - Second air outlet structure; 121 - Second rotating housing; 1211 - Second rotating outer shell; 1212 - Second rotating inner shell; 122 - Second air outlet; 1221 - Second rotating outer shell air outlet; 1222 - Second rotating inner shell air outlet; 123 - Second air sweeping blade; 1231 - Second outer air sweeping blade; 1232 - Second inner air sweeping blade; 200 - Air inlet structure. Detailed implementation manners

[0043] It should be noted that, without conflict, the embodiments in the present invention and the features in the embodiments can be combined with each other.

[0044] To make the above - mentioned objects, features and advantages of the present invention more obvious and understandable, the following will describe the specific embodiments of the present invention in detail with reference to the accompanying drawings.

[0045] As Figure 1-11 shown in one of the

[0046] figures, an air - conditioner cabinet provided by the present invention includes an air outlet structure 100, and the air outlet structure 100 includes a first air outlet structure 110 and a second air outlet structure 120;

[0047] In this embodiment, the first air outlet structure 110 is arranged to be rotatable relative to the second air outlet structure 120. Specifically, the axes of the first air outlet 112 and the second air outlet 122 are on the same straight line, and the first air outlet structure 110 can rotate relative to the second air outlet structure 120 with the axis as the center. When it is necessary to adjust to the mode where the air does not blow on people, it can be achieved by rotating the first air outlet structure 110. At this time, the air outlet direction of the first air outlet structure 110 is different from that of the second air outlet structure 120. As a preferred embodiment, the air outlet direction of the first air outlet structure 110 can be adjusted to be opposite to that of the second air outlet structure 120. For example, if the air outlet direction of the second air outlet structure 120 is forward (i.e., the direction of the air outlet towards people), then by rotating the first air outlet structure 110, the air outlet direction can be the opposite direction, that is, backward (i.e., the direction where the air inlet structure 200 of the air conditioner cabinet is set, and also the direction where the air outlet is away from people), and it will not directly blow on people. In addition, the structure where the axes of the first air outlet 112 and the second air outlet 122 are on the same straight line has a relatively large air outlet area.

[0048] The first air outlet structure 110 is rotatable relative to the second air outlet structure 120. It can be that the first air outlet structure 110 rotates and the second air outlet structure 120 does not rotate, or it can be that the first air outlet structure 110 does not rotate and the second air outlet structure 120 rotates. In this embodiment, the first air outlet structure 110 is preferably located above the second air outlet structure 120. At this time, the first air outlet structure 110 is arranged to be rotatable and the second air outlet structure 120 is arranged not to rotate. This structure is convenient for operation and processing, and at the same time is convenient for adjusting different air outlet modes.

[0049] In this embodiment, the number of both the first air outlet structure 110 and the second air outlet structure 120 is more than one; when the number of both the first air outlet structure 110 and the second air outlet structure 120 is more than two, the two or more first air outlet structures 110 are arranged sequentially in the vertical direction, and the two or more second air outlet structures 120 are arranged sequentially in the vertical direction. In order to adjust the air outlet volume, the number of both the first air outlet structure 110 and the second air outlet structure 120 can be multiple. However, as a preferred method, the number of both the first air outlet structure 110 and the second air outlet structure 120 is one. At this time, it can not only meet the requirements of the air outlet volume in different air outlet modes, but also be convenient for adjusting the air outlet direction in different air outlet modes. When the number of both the first air outlet structure 110 and the second air outlet structure 120 is more than two, the two or more first air outlet structures 110 are arranged sequentially in the vertical direction, and the two or more second air outlet structures 120 are arranged sequentially in the vertical direction. At this time, the air outlet volume of each first air outlet structure 110 can be different, and the air outlet volume of each second air outlet structure 120 can be different, which is convenient for adjusting the air outlet volume and realizing various ways of adjusting the air outlet volume.

[0050] In this embodiment, the angle range within which the first air outlet structure 110 can rotate relative to the second air outlet structure 120 is 0° - 360°. This wide rotatable angle range offers a large application scope. Preferably, the rotatable angle range is 0° - 180°. This rotatable angle range can meet the switching of the air outlet direction between the forward and backward directions.

[0051] In this embodiment, the first air outlet structure 110 includes a first rotating housing 111 and a first air outlet 112;

[0052] The first rotating housing 111 includes a first rotating outer housing 1111 and a first rotating inner housing 1112. The first rotating outer housing 1111 is disposed outside the first rotating inner housing 1112, and the first rotating outer housing 1111 is rotatable relative to the first rotating inner housing 1112;

[0053] The first rotating outer housing 1111 is provided with a first rotating outer housing air outlet 1121;

[0054] The first rotating inner housing 1112 is provided with a first rotating inner housing air outlet 1122, and a first air sweeping blade 113 is provided at the first rotating inner housing air outlet 1122;

[0055] The first air outlet 112 is formed when the first rotating outer housing air outlet 1121 and the first rotating inner housing air outlet 1122 overlap.

[0056] In this embodiment, the first rotating outer housing 1111 is rotatable relative to the first rotating inner housing 1112. The first rotating outer housing air outlet 1121 and the first rotating inner housing air outlet 1122 can be on the same axis. At this time, the first rotating outer housing air outlet 1121 and the first rotating inner housing air outlet 1122 completely overlap, and the first air outlet structure 110 can blow air; the first rotating outer housing air outlet 1121 and the first rotating inner housing air outlet 1122 can also not be on the same axis. At this time, the first rotating outer housing 1111 will block the first rotating inner housing air outlet 1122. When the first rotating outer housing 1111 completely blocks the first rotating inner housing air outlet 1122, the first air outlet structure 110 does not blow air. When the first rotating outer housing 1111 partially blocks the first rotating inner housing air outlet 1122, the first rotating outer housing air outlet 1121 and the first rotating inner housing air outlet 1122 partially overlap, and the first air outlet structure 110 can also blow air, but the air outlet area is smaller than the case where the first rotating outer housing air outlet 1121 and the first rotating inner housing air outlet 1122 completely overlap; the first air sweeping blade 113 provided at the first rotating inner housing air outlet 1122 can adjust the air outlet direction of the blown air.

[0057] In this embodiment, the first air-sweeping blade 113 includes a first outer air-sweeping blade 1131 and a first inner air-sweeping blade 1132. The first outer air-sweeping blade 1131 is disposed outside the first inner air-sweeping blade, and the swinging directions of the first outer air-sweeping blade 1131 and the first inner air-sweeping blade 1132 are different. By providing the first outer air-sweeping blade 1131 and the first inner air-sweeping blade 1132 and having different swinging directions for the first outer air-sweeping blade 1131 and the first inner air-sweeping blade 1132, adjustment of different air outlet directions can be achieved. The swinging directions of the first outer air-sweeping blade 1131 and the first inner air-sweeping blade 1132 are different. Specifically, the swinging direction of the first outer air-sweeping blade 1131 is left-right swinging, and the swinging direction of the first inner air-sweeping blade 1132 is up-down swinging; or the first outer air-sweeping blade 1131 and the first inner air-sweeping blade 1132 are arranged in a structure with a certain included angle, and this included angle can be selected from 0° to 90°. At this time, the swinging directions of the first outer air-sweeping blade 1131 and the first inner air-sweeping blade 1132 are also different.

[0058] As a preferred embodiment of this embodiment, the implementation manner in which the swinging directions of the first outer air-sweeping blade 1131 and the first inner air-sweeping blade 1132 are different can be specifically set as follows: The first outer air-sweeping blade 1131 is a vertical air-sweeping blade, and the first inner air-sweeping blade 1132 is a horizontal air-sweeping blade. In this structure, the first outer air-sweeping blade 1131 is a vertical air-sweeping blade with a left-right swinging direction, and the first inner air-sweeping blade 1132 is a horizontal air-sweeping blade with an up-down swinging direction. Through the above structure of providing a vertical air-sweeping blade and a horizontal air-sweeping blade, adjustment of the air outlet directions in the vertical and horizontal directions can be achieved, and the air-sweeping area can be expanded.

[0059] In this embodiment, the second air outlet structure 120 includes a second rotating housing 121 and a second air outlet 122;

[0060] The second rotating housing 121 includes a second rotating outer housing 1211 and a second rotating inner housing 1212. The second rotating outer housing 1211 is disposed outside the second rotating inner housing 1212, and the second rotating outer housing 1211 is rotatable relative to the second rotating inner housing 1212;

[0061] The second rotating outer housing 1211 is provided with a second rotating outer housing air outlet 1221;

[0062] The second rotating inner housing 1212 is provided with a second rotating inner housing air outlet 1222, and a second air-sweeping blade 123 is provided at the second rotating inner housing air outlet 1222;

[0063] The second air outlet 122 is formed when the second rotating outer housing air outlet 1221 and the second rotating inner housing air outlet 1222 overlap.

[0064] In this embodiment, the second rotating outer shell 1211 is rotatable relative to the second rotating inner shell 1212. The air outlet 1221 of the second rotating outer shell and the air outlet 1222 of the second rotating inner shell can be on the same axis. At this time, the air outlet 1221 of the second rotating outer shell and the air outlet 1222 of the second rotating inner shell completely overlap, and the second air outlet structure 120 can blow air. The air outlet 1221 of the second rotating outer shell and the air outlet 1222 of the second rotating inner shell can also not be on the same axis. At this time, the second rotating outer shell 1211 will block the air outlet 1222 of the second rotating inner shell. When the second rotating outer shell 1211 completely blocks the air outlet 1222 of the second rotating inner shell, the second air outlet structure 120 does not blow air. When the second rotating outer shell 1211 partially blocks the air outlet 1222 of the second rotating inner shell, the air outlet 1221 of the second rotating outer shell and the air outlet 1222 of the second rotating inner shell partially overlap, and the second air outlet structure 120 can also blow air, but the air outlet area is smaller than the case where the air outlet 1221 of the second rotating outer shell and the air outlet 1222 of the second rotating inner shell completely overlap; the second air-sweeping blade 123 provided at the air outlet 1222 of the second rotating inner shell can switch the air outlet direction of the blown air.

[0065] In this embodiment, the second air-sweeping blade 123 includes a second outer air-sweeping blade 1231 and a second inner air-sweeping blade 1232. The second outer air-sweeping blade 1231 is provided outside the second inner air-sweeping blade, and the swinging directions of the second outer air-sweeping blade 1231 and the second inner air-sweeping blade 1232 are different. By providing the second outer air-sweeping blade 1231 and the second inner air-sweeping blade 1232, and the swinging directions of the second outer air-sweeping blade 1231 and the second inner air-sweeping blade 1232 are different, the adjustment of different air outlet directions can be achieved. The swinging directions of the second outer air-sweeping blade 1231 and the second inner air-sweeping blade 1232 are different. Specifically, the swinging direction of the second outer air-sweeping blade 1231 is left-right swinging, and the swinging direction of the second inner air-sweeping blade 1232 is up-down swinging; or the second outer air-sweeping blade 1231 and the second inner air-sweeping blade 1232 are arranged in a structure with a certain included angle, and this included angle can be selected from 0° to 90°. At this time, the swinging directions of the second outer air-sweeping blade 1231 and the second inner air-sweeping blade 1232 are also different.

[0066] As a preferred mode of this embodiment, the implementation method of the different swinging directions of the second outer air-sweeping blade 1231 and the second inner air-sweeping blade 1232 can be specifically set as follows: the second outer air-sweeping blade 1231 is a vertical air-sweeping blade, and the second inner air-sweeping blade 1232 is a horizontal air-sweeping blade. In this structure, the second outer air-sweeping blade 1231 is a vertical air-sweeping blade, and the swinging direction is left-right swinging. The second inner air-sweeping blade 1232 is a horizontal air-sweeping blade, and the swinging direction is up-down swinging. Through the above structure of setting a vertical air-sweeping blade and a horizontal air-sweeping blade, the adjustment of the air outlet directions in the vertical direction and the horizontal direction can be achieved, and the air-sweeping area can be expanded.

[0067] In some embodiments, the air outlet mode of the air conditioner cabinet includes a gentle breeze mode. When the air outlet mode is the gentle breeze mode, the first air outlet structure 110 blows air, the second air outlet structure 120 does not blow air, and the first air outlet structure 110 rotates a certain angle relative to the second air outlet structure 120. The first air outlet 112 and the second air outlet 122 are not located on the same axis. At this time, the air outlet direction is not directly facing people, the air blows in the reverse direction, and when the blown air is cold air, the cold air does not blow on people.

[0068] The way that the second air outlet structure 120 does not blow air can be achieved through the following methods:

[0069] The second rotating outer shell air outlet 1221 and the second rotating inner shell air outlet 1222 do not overlap, and the second rotating outer shell 1211 blocks the second rotating inner shell air outlet 1222. At this time, the above state can be achieved by rotating the second rotating outer shell 1211 relative to the second rotating inner shell 1212. Since the second rotating outer shell air outlet 1221 and the second rotating inner shell air outlet 1222 do not overlap, and the second rotating outer shell 1211 blocks the second rotating inner shell air outlet 1222, the second air outlet cannot be formed, and thus the second air outlet structure 120 does not blow air.

[0070] In some embodiments, the air outlet mode of the air conditioner cabinet includes a cooling mode and / or a heating mode. When the air outlet mode is the cooling mode or the heating mode, both the first air outlet structure 110 and the second air outlet structure 120 blow air. In the cooling mode or the heating mode, a larger air volume is required to achieve the effect of rapid cooling or heating. At this time, both the first air outlet structure 110 and the second air outlet structure 120 blow air. In order to quickly achieve the effect of cooling or heating, preferably, the air outlet directions of the first air outlet structure 110 and the second air outlet structure 120 are the same. Specifically, this can be achieved by the first air outlet structure 110 not rotating relative to the second air outlet structure 120, or the first air outlet structure 110 rotating the same angle relative to the second air outlet structure 120, etc.

[0071] In this embodiment, when the air outlet mode is the heating mode, the first inner air-sweeping blade 1132 inclines towards the second air outlet structure 120; the second inner air-sweeping blade 1232 inclines towards the first air outlet structure 110 or faces the horizontal direction. On the basis that the air volume of the first air outlet structure 110 is greater than that of the second air outlet structure 120, adjusting the directions of the first inner air-sweeping blade 1132 and the second inner air-sweeping blade 1232 is also adjusting the air outlet directions of the first air outlet structure 110 and the second air outlet structure 120. At this time, the air outlet of the first air outlet structure 110 suppresses the air outlet of the second air outlet structure 120, which can effectively increase the area where the hot air lands and improve the comfort when the air conditioner is heating.

[0072] In some embodiments, when the air outlet mode of the air conditioner cabinet is the heating mode, the length L1 of the first air outlet 112 in the vertical direction is greater than the length L2 of the second air outlet 122 in the vertical direction. Since L1 is greater than L2, with this structure, the air volume of the first air outlet structure 110 is greater than that of the second air outlet structure 120, and the large air volume can effectively improve the comfort of the user.

[0073] The present invention also provides an air conditioner, which includes the air conditioner cabinet of any one of the above, and an outdoor unit connected to the air conditioner cabinet.

[0074] In the present invention, the first air outlet structure 110 is rotatable relative to the second air outlet structure 120; the first rotating outer shell 1111 is rotatable relative to the first rotating inner shell 1112; and the second rotating outer shell 1211 is rotatable relative to the second rotating inner shell 1212, and the implementation manner is an existing structure, such as being driven by a motor to rotate.

[0075] Other components of the air conditioner are all existing and will not be elaborated here.

[0076] Although the present invention is disclosed as above, the present invention is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention should be subject to the scope defined by the claims.

Claims

1. An air conditioner console, characterized in that: It includes an air outlet structure (100), and the air outlet structure (100) includes a first air outlet structure (110) and a second air outlet structure (120); The first air outlet structure (110) and the second air outlet structure (120) are sequentially arranged from top to bottom in the vertical direction, and the first air outlet structure (110) can rotate relative to the second air outlet structure (120) with the axis as the center; The first air outlet structure (110) includes a first rotating housing (111) and a first air outlet (112); the first rotating housing (111) includes a first rotating outer shell (1111) and a first rotating inner shell (1112), the first rotating outer shell (1111) is arranged outside the first rotating inner shell (1112), and the first rotating outer shell (1111) can rotate relative to the first rotating inner shell (1112); a first rotating outer shell air outlet (1121) is provided on the first rotating outer shell (1111); a first rotating inner shell air outlet (1122) is provided on the first rotating inner shell (1112), a first air-sweeping blade (113) is provided at the first rotating inner shell air outlet (1122), the first air-sweeping blade (113) includes a first inner air-sweeping blade (1132), and the first inner air-sweeping blade (1132) is a horizontal air-sweeping blade; the first air outlet (112) is formed when the first rotating outer shell air outlet (1121) and the first rotating inner shell air outlet (1122) overlap; The second air outlet structure (120) includes a second rotating housing (121) and a second air outlet (122); the second rotating housing (121) includes a second rotating outer shell (1211) and a second rotating inner shell (1212), the second rotating outer shell (1211) is arranged outside the second rotating inner shell (1212), and the second rotating outer shell (1211) can rotate relative to the second rotating inner shell (1212); a second rotating outer shell air outlet (1221) is provided on the second rotating outer shell (1211); a second rotating inner shell air outlet (1222) is provided on the second rotating inner shell (1212), a second air-sweeping blade (123) is provided at the second rotating inner shell air outlet (1222), the second air-sweeping blade (123) includes a second outer air-sweeping blade (1231) and a second inner air-sweeping blade (1232), and the second inner air-sweeping blade (1232) is a horizontal air-sweeping blade; the second air outlet (122) is formed when the second rotating outer shell air outlet (1221) and the second rotating inner shell air outlet (1222) overlap; The axes of the first air outlet (112) and the second air outlet (122) are located on the same straight line; the length L1 of the first air outlet (112) in the vertical direction is greater than the length L2 of the second air outlet (122) in the vertical direction; When the air outlet mode of the air conditioner cabinet is the heating mode, the first inner air-sweeping blade (1132) inclines towards the second air outlet structure (120); the second inner air-sweeping blade (1232) inclines towards the first air outlet structure (110) or faces the horizontal direction.

2. The air conditioner console according to claim 1, characterized in that: The number of the first air outlet structure (110) and the second air outlet structure (120) is more than one; when the number of both the first air outlet structure (110) and the second air outlet structure (120) is more than two, the more than two first air outlet structures (110) are arranged in sequence in the vertical direction, and the more than two second air outlet structures (120) are arranged in sequence in the vertical direction.

3. The air conditioner console according to claim 1, characterized in that: The first air-sweeping blade (113) includes a first outer air-sweeping blade (1131), the first outer air-sweeping blade (1131) is arranged outside the first inner air-sweeping blade (1132), and the swinging directions of the first outer air-sweeping blade (1131) and the first inner air-sweeping blade (1132) are different.

4. The air conditioner console according to claim 3, characterized in that: The first outer air-sweeping blade (1131) is a vertical air-sweeping blade.

5. The air conditioner cabinet according to claim 4, characterized in that: The second air-sweeping blade (123) includes a second outer air-sweeping blade (1231), the second outer air-sweeping blade (1231) is arranged outside the second inner air-sweeping blade (1232), and the swinging directions of the second outer air-sweeping blade (1231) and the second inner air-sweeping blade (1232) are different.

6. The air conditioner console according to claim 5, wherein: The second outer air-sweeping blade (1231) is a vertical air-sweeping blade.

7. The air conditioner cabinet according to claim 4, characterized in that: The air outlet mode of the air conditioner cabinet includes a gentle breeze mode. When the air outlet mode is the gentle breeze mode, the first air outlet structure (110) blows air, the second air outlet structure (120) does not blow air, and the first air outlet structure (110) rotates a certain angle relative to the second air outlet structure (120), and the first air outlet (112) and the second air outlet (122) are not located on the same axis.

8. The air conditioner cabinet according to claim 5, characterized in that: The air outlet mode of the air conditioner cabinet includes a refrigeration mode and / or a heating mode. When the air outlet mode is the refrigeration mode or the heating mode, both the first air outlet structure (110) and the second air outlet structure (120) blow air.

Citation Information

Patent Citations

  • Cabinet air conditioner and air-out control method of cabinet air conditioner

    CN106322530A

  • Practical air conditioner and temperature control equipment

    CN107606707A

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    CN211575258U