Air guide component and air conditioning equipment

By designing air guide parts with rotatable guide vane structure, the problem of limited air guidance angle of existing air conditioning equipment is solved, and better air guidance effect and a wider scope of application are achieved.

CN222911920UActive Publication Date: 2025-05-27GD MIDEA AIR CONDITIONING EQUIP CO LTD
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Patent Information

Application Number
CN202420873921.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-24
Publication Date
2025-05-27
Estimated Expiration
2034-04-24

AI Technical Summary

Technical Problem

The air guide plate structure of existing air conditioning equipment has limited air guide angles in the left and right and upper and lower directions, resulting in poor air guide effect and room for improvement.

Method used

A wind guide component is designed, which includes a component body and a rotatable guide vane structure. The rotatable angle of the guide vane structure relative to the component body is greater than or equal to 360°, forming a wind guide curved surface to increase the wind guide angle and area.

Benefits of technology

By increasing the air guide angle and area, the air guide effect is improved, ensuring better use of the air guide effect and wider application range.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an air guide component and air conditioning equipment, and the air guide component comprises a component main body which is suitable for being installed at an air outlet of the air conditioning equipment; the guide vane structure is rotatably mounted on the component body, the rotatable angle of the guide vane structure relative to the component body is larger than or equal to 360 degrees, and an air guide curved surface is formed on the guide vane structure. According to the air guide component, the rotatable angle of the guide vane structure relative to the component body is set to be 360 degrees, the air guide angle of the air guide component can be increased, the air guide area of the air guide component can be increased, the air guide effect of the air guide component can be improved, the air guide component is provided with the air guide curved surface, the air guide effect of the air guide component can be guaranteed, and the air guide effect of the air guide component is improved. The use effect is better, and the application range is wider.
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Description

Technical Field

[0001] The utility model relates to the technical field of air conditioning, and in particular to an air guide component and air conditioning equipment having the air guide component. Background Art

[0002] As people's quality of life improves, air conditioning equipment has become an indispensable appliance in people's daily life. When manufacturing air conditioning equipment, the user experience is an issue that needs to be considered. At present, the air guide plate structure of air conditioning equipment is usually a combination of upper and lower air guide plates and left and right air guide plates, but the air guide angles in the left and right directions and the upper and lower directions are limited, and the air guide area is small, resulting in poor left and right and upper and lower air guide effects and small air guide angles, and there is room for improvement. Utility Model Content

[0003] The utility model aims to solve at least one of the technical problems existing in the prior art. To this end, the utility model proposes an air guide component, which can increase the air guide angle of the air guide component, thereby increasing the air guide area of ​​the air guide component and improving the air guide effect of the air guide component.

[0004] According to the embodiment of the utility model, the air guide component includes: a component body, which is suitable for being installed at the air outlet of an air-conditioning device; a guide vane structure, which is rotatably installed on the component body, and the rotatable angle of the guide vane structure relative to the component body is greater than or equal to 360°, and the guide vane structure forms an air guide curved surface.

[0005] According to the wind guide component of the embodiment of the utility model, the wind guide angle of the wind guide component can be increased by setting the rotatable angle of the guide vane structure relative to the component body to 360°, thereby increasing the wind guide area of ​​the wind guide component and improving the wind guide effect of the wind guide component. In addition, the wind guide component is provided with an air guide curved surface, which can also ensure the wind guide effect of the air guide component, thereby achieving better use effect and a wider range of application.

[0006] According to the wind guide component of some embodiments of the utility model, the guide blade structure includes an wind guide swing blade and a mounting member, the wind guide swing blade is installed in the mounting member, the mounting member is rotatably connected to the component body, and the wind guide curved surface is formed on the wind guide swing blade.

[0007] According to some embodiments of the utility model, the wind guide component further includes a driving member, the mounting member is configured as a gear ring, and the output end of the driving member is coupled with the gear ring via a gear set to drive the gear ring to rotate around a central axis.

[0008] According to the wind guide component of some embodiments of the present invention, the gear set includes a driving gear and a driven gear, the driving gear is connected to the output end of the driving member, and the driving gear and the ring gear are respectively meshed with the driven gear.

[0009] According to the wind guide components of some embodiments of the utility model, there are multiple guide vane structures. Among the multiple guide vane structures, the ring gear corresponding to one of the guide vane structures is meshed with the gear set, and two adjacent ring gears in the remaining guide vane structures are matched through the transmission gear.

[0010] According to the wind guide component of some embodiments of the utility model, the guide vane structure is a plurality of groups, and each group of the guide vane structures is a plurality;

[0011] There are multiple gear sets and they correspond one-to-one to the multiple guide vane structures, and the multiple guide vane structures in each group are driven by the same gear set.

[0012] According to the wind guide components of some embodiments of the utility model, the multiple sets of gear sets are independently driven by the multiple driving members.

[0013] According to the wind guide component of some embodiments of the utility model, the wind guide blade includes a windward blade and an air outlet blade, the windward blade is relatively fixed to the air outlet blade, and the windward blade extends to the windward side of the component body, and the air outlet blade extends to the air outlet side of the component body.

[0014] According to the wind guide component of some embodiments of the utility model, the windward blade and / or the wind outlet blade is formed with the wind guide curved surface.

[0015] According to the wind guiding component of some embodiments of the utility model, the windward blades are constructed of at least two layers; and / or the wind outlet blades are constructed of at least two layers.

[0016] According to the air guide component of some embodiments of the utility model, the guide vane structure is multiple, and the multiple guide vane structures are distributed in sequence along the length direction of the air outlet;

[0017] Among the plurality of guide vane structures, the number of layers of air outlet blades of the guide vane structures located at the two ends is greater than the number of layers of air outlet blades of the remaining guide vane structures.

[0018] According to the air guide component of some embodiments of the utility model, the component body is formed with an installation space and an air guide hole connected to the installation space, the installation part is located in the installation space, and the air guide swing blade is distributed opposite to the air guide hole.

[0019] According to the wind guide components of some embodiments of the utility model, the air guide hole is provided with a mounting plate, the mounting plate is formed with a first clamping portion, the air guide swing blade is provided with a second clamping portion, the second clamping portion is clamped with the first clamping portion, and the air guide swing blade is suitable for rotating relative to the mounting plate at the second clamping portion.

[0020] According to the wind guide component of some embodiments of the utility model, the wind guide swing blade is formed with an avoidance groove, and the avoidance groove is suitable for avoiding the mounting plate when the wind guide swing blade rotates.

[0021] The utility model also provides an air conditioning device.

[0022] According to an embodiment of the utility model, the air conditioning equipment includes a face frame, a chassis and an air guide component as described in any one of the above items, the face frame is connected to the chassis and defines an air outlet cavity and the air outlet, the air outlet is connected to the air cavity, and the air guide component is installed at the air outlet.

[0023] According to some embodiments of the utility model, the air conditioning equipment further includes: an air guide plate, which is located on the outside of the air guide component and is rotatably connected to the air outlet, and the air guide plate is suitable for opening or closing the air outlet.

[0024] According to the air conditioning equipment of some embodiments of the utility model, the air guide plate is provided with a first rotation angle a1 and a second rotation angle a2, and satisfies: 55°≤a1≤65°, 90°≤a2≤100°.

[0025] The advantages of the air conditioning device and the above-mentioned air guide component compared with the prior art are the same, which will not be repeated here.

[0026] Additional aspects and advantages of the present invention will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0028] Figure 1 It is a partial structural schematic diagram of the air guide component according to an embodiment of the utility model;

[0029] Figure 2 The structure of the air conditioning device according to the embodiment of the utility model is shown in FIG. Figure 1 ;

[0030] Figure 3 The structure of the air conditioning device according to the embodiment of the utility model is shown in FIG. Figure 2 ;

[0031] Figure 4 The structure of the air conditioning device according to the embodiment of the utility model is shown in FIG. Figure 3 ;

[0032] Figure 5The structure of the air conditioning device according to the embodiment of the utility model is shown in FIG. Figure 4 ;

[0033] Figure 6 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 1 ;

[0034] Figure 7 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 2 ;

[0035] Figure 8 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 3 ;

[0036] Fig. 9 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 4 ;

[0037] Fig.10 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 5 ;

[0038] Fig.11 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 6 ;

[0039] Fig.12 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 7 ;

[0040] Fig.13 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 8 ;

[0041] Fig.14 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 9 ;

[0042] Fig.15 The structure of the wind guide component according to the embodiment of the utility model is shown in FIG. Figure 10 ;

[0043] Fig.16 This is a schematic diagram of the structure of the guide vane structure according to an embodiment of the utility model. Figure 1 ;

[0044] Fig.17 This is a schematic diagram of the structure of the guide vane structure according to an embodiment of the utility model. Figure 2 ;

[0045] Fig.18 This is a schematic diagram of the structure of the guide vane structure according to an embodiment of the utility model. Figure 3 ;

[0046] Fig.19 This is a schematic diagram of the structure of the guide vane structure according to an embodiment of the utility model. Figure 4 ;

[0047] Fig. 20 This is a schematic diagram of the structure of the guide vane structure according to an embodiment of the utility model. Figure 5 ;

[0048] Fig.21 This is a schematic diagram of the structure of the guide vane structure according to an embodiment of the utility model. Figure 6 ;

[0049] Fig. 22 This is a schematic diagram of the structure of the guide vane structure according to an embodiment of the utility model. Figure 7 ;

[0050] Fig.23 This is a schematic diagram of the structure of the guide vane structure according to an embodiment of the utility model. Figure 8 ;

[0051] Fig.24 The structure of the air conditioning device according to the embodiment of the utility model is shown in FIG. Figure 5 .

[0052] Reference numerals:

[0053] Air conditioning equipment 100,

[0054] Surface frame 1, chassis 2, air outlet 3, air guide plate 4,

[0055] Wind guide component 5, component body 51, cover plate 511, bottom plate 512, installation space 513, wind guide hole 514, installation plate 515, first clamping portion 516, guide blade structure 52, wind guide swing blade 521, windward blade 5211, wind outlet blade 5212, wind guide curved surface 5213, second clamping portion 5214, avoidance groove 5215, installation part 522, gear set 523, driving gear 5231, driven gear 5232, transmission gear 524. DETAILED DESCRIPTION

[0056] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.

[0057] In the description of the present utility model, it is necessary to understand that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present utility model. In addition, features defined as "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, unless otherwise specified, "multiple" means two or more.

[0058] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0059] Reference below Figure 1-Figure 24 The wind guide component 5 according to the embodiment of the utility model can increase the wind guide angle of the wind guide component 5, thereby increasing the wind guide area of ​​the wind guide component 5 and improving the wind guide effect of the wind guide component 5.

[0060] like Figure 1-Figure 24 As shown, the wind guide component 5 according to an embodiment of the utility model includes: a component body 51 and a guide vane structure 52.

[0061] The component body 51 is suitable for installation at the air outlet 3 of the air-conditioning equipment 100. The guide vane structure 52 is rotatably installed on the component body 51. The rotatable angle of the guide vane structure 52 relative to the component body 51 is greater than or equal to 360°. The guide vane structure 52 forms an air guiding curved surface 5213.

[0062] The air guide component 5 is used for the air conditioning device 100, and the air conditioning device 100 can be set as an air conditioner, which is an air conditioner, which is a unit used to provide a space area (generally closed) with air temperature changes. The function of the air conditioner is to adjust the parameters such as the temperature, humidity, cleanliness and air flow rate of the air in the room (or closed space, area) by producing cold air or hot air, so as to meet the requirements of human comfort or process.

[0063] Specifically, the air-conditioning device 100 is provided with an air outlet 3. The airflow after cooling or heating in the air-conditioning device 100 can be discharged from the air-conditioning device 100 to the outside through the air outlet 3, and then the outside environment can be cooled or heated to meet the needs of the user. In addition, an air guide component 5 is provided at the air outlet 3 of the air-conditioning device 100. The air guide component 5 is provided with a component body 51. The component body 51 can be set to a plate-like structure, etc. The component body 51 can be fixedly connected to the air outlet 3 of the air-conditioning device 100 through a connecting piece. The connecting piece can be set to a bolt, etc., so that the air guide component 5 can be fixedly installed at the air outlet 3 of the air-conditioning device 100 to guide the airflow flowing to the air outlet 3 of the air-conditioning device 100, so that the airflow can flow to the direction required by the user through the air guide component 5, thereby improving the user's comfort.

[0064] Furthermore, the air guide component 5 is also provided with a guide vane structure 52, which is installed on the component body 51 and is rotatable relative to the component body 51, and the component body 51 is fixedly installed at the air outlet 3, that is, the guide vane structure 52 is rotatable relative to the air outlet 3, and the rotatable angle of the guide vane structure 52 relative to the component body 51 is greater than or equal to 360°, that is, the rotatable angle of the guide vane structure 52 relative to the component body 51 is at least 360°, so that the guide vane structure 52 can rotate toward various angles relative to the component body 51, thereby increasing the air guide angle of the air guide component 5, expanding the air guide area of ​​the air guide component 5, and meeting the various usage needs of users, and the air guide component 5 is formed with an air guide curved surface 5213, and the wind flow can be transported through the wind guide curved surface 5213 when flowing through the air guide component 5, thereby reducing the energy loss of the wind flow and improving the air guide effect of the air guide component 5.

[0065] According to the wind guide component 5 of the embodiment of the utility model, by setting the rotatable angle of the guide vane structure 52 relative to the component body 51 to 360°, the wind guide angle of the wind guide component 5 can be increased, and then the wind guide area of ​​the wind guide component 5 can be increased, and the wind guide effect of the wind guide component 5 is improved. The wind guide component 5 is provided with a wind guide curved surface 5213, which can also ensure the wind guide effect of the wind guide component 5, and the use effect is better and the application range is wider.

[0066] In some embodiments, the guide vane structure 52 includes an air guide blade 521 and a mounting member 522 . The air guide blade 521 is mounted in the mounting member 522 . The mounting member 522 is rotatably connected to the component body 51 . The air guide curved surface 5213 is formed on the air guide blade 521 .

[0067] Specifically, the guide vane structure 52 is installed at the air outlet 3 of the air conditioning device 100, and the rotatable angle relative to the component body 51 is greater than or equal to 360°, so that the guide vane structure 52 can guide air in multiple angles, and the guide vane structure 52 is provided with an air guide swing vane 521 and a mounting member 522, and as shown in FIG. Figure 1 as well as Figure 16-Figure 23 As shown, the wind guide blade 521 and the mounting member 522 are fixedly connected and the wind guide blade 521 is installed in the mounting member 522. The mounting member 522 is rotatably connected to the component body 51, that is, the mounting member 522 can drive the wind guide blade 521 to rotate relative to the component body 51.

[0068] Furthermore, the guide vane structure 52 is rotatable at an angle greater than or equal to 360° relative to the component body 51, and the guide vane structure 52 is rotated relative to the component body 51 through the mounting member 522, that is, the mounting member 522 is rotatable at an angle greater than or equal to 360° relative to the component body 51, so that the mounting member 522 drives the wind guide blade 521 to be rotatable at an angle greater than or equal to 360° relative to the component body 51, and the wind guide blade 521 can guide the wind flow, so that the wind flow can flow to different directions outside the air outlet 3 through the wind guide blade 521, and the rotatable angle of the wind guide blade 521 is greater than or equal to 360°, thereby increasing the circulation area of ​​the wind flow and improving the wind guiding range, and the wind guide curved surface 5213 is formed on the wind guide blade 521, which can reduce the energy loss of the wind flow and ensure the wind guiding effect.

[0069] In some embodiments, the air guide component 5 also includes a driving member, the mounting member 522 is configured as a gear ring, and the output end of the driving member is coupled with the gear ring via a gear set 523 to drive the gear ring to rotate around the central axis.

[0070] Specifically, the guide vane structure 52 is installed on the component body 51, and the guide vane structure 52 is provided with a mounting member 522 and a wind guide swing vane 521, and the wind guide swing vane 521 is arranged in the mounting member 522, and Figure 1 as well as Figure 16-Figure 23 As shown, the mounting member 522 is constructed as a gear ring, that is, the wind guide swing blade 521 is arranged in the gear ring and fixedly connected to the inner wall of the gear ring, the wind guide component 5 is provided with a driving member, the driving member can be set as a driving motor, etc., and the wind guide component 5 is also provided with a gear set 523, the output end of the driving member is connected to the gear set 523, and then power can be output to the gear set 523, and the gear set 523 is meshingly connected with the gear ring, so that the power output by the driving member can be transmitted to the gear ring through the gear set 523, so that the gear ring can rotate around the central axis, and the wind guide swing blade 521 is fixedly connected to the gear ring, so that the wind guide swing blade 521 can rotate, and then the guide blade structure 52 can rotate relative to the component body 51, and the operating reliability of the wind guide component 5 can be improved through gear transmission.

[0071] In some embodiments, the gear set 523 includes a driving gear 5231 and a driven gear 5232 , the driving gear 5231 is connected to the output end of the driving member, and the driving gear 5231 and the ring gear are respectively meshed with the driven gear 5232 .

[0072] Specifically, the gear set 523 and the gear ring are meshed for transmission, and the gear set 523 is connected to the driving member, so that the driving member can drive the gear set 523 to drive the gear ring to rotate relative to the component body 51, and as Figure 1 As shown, the gear set 523 is provided with a driving gear 5231 and a driven gear 5232. The output end of the driving member is connected to the driving gear 5231, so that the driving member can directly drive the driving gear 5231 to rotate, and the driving gear 5231 and the driven gear 5232 are meshed and connected. When the driving gear 5231 rotates under the drive of the driving member, the driving gear 5231 can drive the driven gear 5232 to rotate, and the driven gear 5232 and the ring gear are meshed and transmitted, so that when the driven gear 5232 rotates, it can drive the ring gear to rotate, and the wind guide swing blade 521 is fixedly connected to the ring gear, so that the wind guide swing blade 521 can rotate, and then the guide vane structure 52 can rotate relative to the component body 51, and the operating reliability of the wind guide component 5 can be improved through gear transmission.

[0073] In some embodiments, there are multiple guide vane structures 52 . Among the multiple guide vane structures 52 , the ring gear corresponding to one guide vane structure 52 is meshed with the gear set 523 , and two adjacent ring gears in the remaining guide vane structures 52 are matched through the transmission gear 524 .

[0074] Specifically, Figure 6-Figure 15 As shown, the guide vane structure 52 is installed at the air outlet 3 of the air-conditioning equipment 100 through the component body 51, and the wind flow to the air outlet 3 can flow to the outside through the guide vane structure 52. A plurality of guide vane structures 52 can be provided, and the plurality of guide vane structures 52 can be located at the air outlet 3 of the air-conditioning equipment 100, so that the wind flow can be guided by the plurality of guide vane structures 52 respectively, and the rotatable angles of the plurality of guide vane structures 52 relative to the component body 51 are all greater than or equal to 360°, thereby expanding the air guiding range.

[0075] Furthermore, the guide vane structure 52 and the gear set 523 are meshed, so that the driving member can drive the gear set 523 to transmit power to the guide vane structure 52, thereby allowing the guide vane structure 52 to rotate relative to the component body 51, and the ring gear corresponding to one of the multiple guide vane structures 52 can be set to mesh with the gear set 523, and the two adjacent ring gears in the remaining guide vane structures 52 can be matched through the transmission gear 524, so that the gear set 523 can drive one of the multiple ring gears to rotate, and when the ring gear rotates, it can drive the transmission gear 524 meshed with it to rotate, thereby allowing the remaining ring gears to rotate successively, so that the gear set 523 can drive multiple ring gears to rotate, thereby reducing the setting of the driving member and the gear set 523, reducing the setting cost, and improving the lightweight setting of the air-conditioning equipment 100.

[0076] In some embodiments, there are multiple groups of guide vane structures 52 , and each group has multiple guide vane structures 52 ; there are multiple groups of gear sets 523 corresponding one-to-one to the multiple groups of guide vane structures 52 , and the multiple guide vane structures 52 in each group are driven by the same group of gear sets 523 .

[0077] Specifically, the guide vane structure 52 can be set to multiple groups, that is, the guide vane structure 52 can be set to two groups, three groups, etc., and each group of guide vane structures 52 can be set to multiple, multiple groups of guide vane structures 52 are all set at the air outlet 3, and the windflow flowing to the air outlet 3 can flow to the outside through the guide vane structure 52. The guide vane structure 52 can be set to multiple groups, so that the windflow can be guided by multiple groups of guide vane structures 52 respectively, and the rotatable angles of multiple guide vane structures 52 in the multiple groups of guide vane structures 52 relative to the component main body 51 are all greater than or equal to 360°, thereby expanding the wind guiding range.

[0078] Furthermore, the gear set 523 may also be provided as a plurality of sets, that is, the gear set 523 may be provided as two sets, three sets, etc., and the plurality of gear sets 523 are provided in one-to-one correspondence with the plurality of guide vane structures 52. In this embodiment, as shown in FIG. Figure 1 As shown, the guide vane structure 52 is provided as two groups, and the gear set 523 is also provided as two groups. The two groups of gear sets 523 and the two groups of guide vane structures 52 are provided in one-to-one correspondence, and the multiple guide vane structures 52 of each group can be driven by the same group of corresponding gear sets 523, that is, the power source of each group of guide vane structures 52 is different, so that each group of guide vane structures 52 can rotate at different angles, and thus each group of guide vane structures 52 guides the wind flow in a different direction, thereby realizing zoned air supply to meet different user needs.

[0079] In some embodiments, multiple gear sets 523 are independently driven by multiple driving members. The gear sets 523 are provided with a driving gear 5231 and a driven gear 5232. The driving gear 5231 is connected to the driving member, and the driving member can drive the driving gear 5231 to drive the driven gear 5232 to output power to the ring gear. The gear sets 523 are provided in multiple groups, and the driving members are also provided in multiple groups. The multiple gear sets 523 and the multiple driving members are provided in a one-to-one correspondence, that is, one driving member can drive one gear set 523, and one gear set 523 has a corresponding drive group of guide vane structures 52, that is, one driving member can drive one group of guide vane structures 52 to rotate relative to the component body 51, so that each group of guide vane structures 52 can perform asynchronous movement, and the rotation speed, rotation angle, etc. of each group of guide vane structures 52 can be controlled by the driving member corresponding to the guide vane structure 52 of this group, so as to meet different needs and improve the flexibility of the air-conditioning equipment 100.

[0080] In some embodiments, the wind guide blade 521 includes a windward blade 5211 and an outlet blade 5212 , the windward blade 5211 and the outlet blade 5212 are relatively fixed, and the windward blade 5211 extends to the windward side of the component body 51 , and the outlet blade 5212 extends to the outlet side of the component body 51 .

[0081] Specifically, the guide vane structure 52 is provided with an air guide swing vane 521 and a mounting member 522. The air guide swing vane 521 is arranged in the mounting member 522 and is fixedly connected to the mounting member 522. The air guide swing vane 521 is provided with a windward blade 5211 and an air outlet blade 5212. The windward blade 5211 and the air outlet blade 5212 can be fixedly connected by a connecting column, etc., and the two sides of the windward blade 5211 can be fixedly connected to the gear ring, and the two sides of the air outlet blade 5212 can also be fixedly connected to the gear ring, thereby fixing the air guide swing vane 521 and the gear ring.

[0082] Furthermore, if Figure 6-Figure 23 As shown, when the guide vane structure 52 is installed on the component body 51, the windward blade 5211 of the wind guide swing blade 521 can be extended to the windward side of the component body 51, and the outlet blade 5212 of the wind guide swing blade 521 can be extended to the outlet side of the component body 51, that is, when the windflow flows to the air outlet 3, it can first contact the windward blade 5211 of the wind guide swing blade 521, and then flow to the outlet blade 5212 of the wind guide swing blade 521 through the guidance of the windward blade 5211. The windflow can be guided by the outlet blade 5212 and then flow to the outside of the air-conditioning equipment 100, so that the guide vane structure 52 can extend from the inside of the air outlet 3 to the outside, thereby ensuring the wind flow rate and improving the wind guiding effect.

[0083] In some embodiments, the windward blade 5211 and / or the outlet blade 5212 are formed with a wind-guiding curved surface 5213, that is, only the windward blade 5211 is formed with a wind-guiding curved surface 5213, or only the outlet blade 5212 is formed with a wind-guiding curved surface 5213, or both the windward blade 5211 and the outlet blade 5212 are formed with a wind-guiding curved surface 5213. In this embodiment, Fig. 20 and Fig.23 As shown, an air-guiding curved surface 5213 can be formed on the air-outlet blade 5212, that is, the windward blade 5211 is set as a straight blade and extends to the windward side of the component body 51, and the air-outlet blade 5212 is set as a blade with an arc and extends to the air-outlet side of the component body 51. The windflow can flow through the windward blade 5211 to the air-outlet blade 5212, and then flow to the outside of the air-conditioning equipment 100 after passing through the outlet blade, thereby ensuring the windflow rate and improving the wind-guiding effect.

[0084] In some embodiments, the windward blades 5211 are constructed of at least two layers, and / or the wind outlet blades 5212 are constructed of at least two layers.

[0085] Specifically, the windward blade 5211 is constructed as at least two layers, and / or the windward blade 5212 is constructed as at least two layers, that is, only the windward blade 5211 is constructed as at least two layers, or only the windward blade 5212 is constructed as at least two layers, or both the windward blade 5211 and the windward blade 5212 are constructed as at least two layers. In this embodiment, Figure 15-19 As shown, only the air outlet blades 5212 are constructed into at least two layers, and the air outlet blades 5212 are constructed into at least two layers, that is, the air outlet blades 5212 can be constructed into two layers, three layers, etc. In the present embodiment, the air outlet blades 5212 are constructed into two layers, and the two layers of air outlet blades 5212 are arranged in parallel and spaced apart, and the windward blades 5211 are constructed into one layer, that is, the windflow can flow through the windward blades 5211 to the air outlet blades 5212, and can be guided by the two layers of air outlet blades 5212 respectively, which can expand the air guiding range while ensuring the windflow flow and ensuring the user experience.

[0086] In some embodiments, there are multiple guide vane structures 52, and the multiple guide vane structures 52 are distributed in sequence along the length direction of the air outlet 3; wherein, among the multiple guide vane structures 52, the number of layers of air outlet blades 5212 of the guide vane structures 52 located at both ends is greater than the number of layers of air outlet blades 5212 of the remaining guide vane structures 52.

[0087] Specifically, Figure 6-Figure 15 As shown, the guide vane structure 52 is installed at the air outlet 3 of the air-conditioning equipment 100 through the component body 51, and the windflow flowing to the air outlet 3 can flow to the outside through the guide vane structure 52. A plurality of guide vane structures 52 can be provided, and the plurality of guide vane structures 52 can be located at the air outlet 3 of the air-conditioning equipment 100, and the plurality of guide vane structures 52 are distributed in sequence along the length direction of the air outlet 3, so that the windflow can be guided by the plurality of guide vane structures 52 respectively, and the rotatable angles of the plurality of guide vane structures 52 relative to the component body 51 are all greater than or equal to 360°, thereby expanding the air guiding range.

[0088] Furthermore, the wind guide blade 521 of the guide blade structure 52 is provided with a connected windward blade 5211 and an air outlet blade 5212, the windward blade 5211 can extend to the windward side of the component body 51, and the air outlet blade 5212 can extend to the air outlet side of the component body 51, and among the multiple guide blade structures 52, the number of layers of the air outlet blades 5212 of the guide blade structures 52 located at the two ends is greater than the number of layers of the air outlet blades 5212 of the remaining guide blade structures 52, that is, the number of layers of the air outlet blades 5212 of the guide blade structures 52 located at the two ends in the length direction of the air outlet 3 is set to the largest number, and when the number of layers of the remaining air outlet blades 5212 is set to one layer, the number of layers of the air outlet blades 5212 of the guide vane structures 52 at the two ends can be set to two layers, three layers, etc.

[0089] In this embodiment, the number of layers of the air outlet blades 5212 at both ends is set to two layers. When the wind flows to the air outlet 3, the wind flow rate at both ends along the length direction of the air outlet 3 is relatively small. The number of layers of the air outlet blades 5212 of the guide vane structure 52 at both ends is set to be more than the number of layers of the air outlet blades 5212 of the remaining guide vane structures 52. This can improve the wind guiding effect of the guide vane structures 52 at both ends, thereby ensuring that the wind flow size at each location of the air outlet 3 is consistent, thereby improving the wind guiding effect.

[0090] In some embodiments, the component body 51 is formed with an installation space 513 and an air guide hole 514 connected to the installation space 513 , the installation member 522 is located in the installation space 513 , and the air guide blade 521 is arranged opposite to the air guide hole 514 .

[0091] Specifically, Figure 1-Figure 2 As shown, the component body 51 is installed at the air outlet 3 of the air-conditioning equipment 100, and the component body 51 is set as a shell structure. The component body 51 is provided with a cover plate 511 and a bottom plate 512. The bottom plate 512 is fixedly connected to the air outlet 3 of the air-conditioning equipment 100, and the cover plate 511 and the bottom plate 512 are fixedly connected to form an installation space 513 together. The gear set 523 and the transmission gear 524 can be arranged in the installation space 513, and the component body 51 is formed with an air guide hole 514, which can be communicated with the installation space 513. Thereby, the wind flow in the air-conditioning device 100 can flow to the outside of the air-conditioning device 100 through the air guide hole 514. The air guide blade 521 is arranged in the mounting member 522 and is fixedly connected to the mounting member 522. The mounting member 522 is arranged in the mounting space 513, and the air guide blade 521 is directly opposite to the air guide hole 514. That is, the wind flow flowing into the air guide hole 514 can be guided by the air guide blade 521, so that the wind flow can flow in the desired direction. The air guide hole 514 can converge the wind flow, thereby ensuring the wind flow rate and improving the user experience.

[0092] In some embodiments, the air guide hole 514 is provided with a mounting plate 515, the mounting plate 515 is formed with a first clamping portion 516, the air guide swing blade 521 is provided with a second clamping portion 5214, the second clamping portion 5214 is clamped with the first clamping portion 516, and the air guide swing blade 521 is suitable for rotating relative to the mounting plate 515 at the second clamping portion 5214.

[0093] Specifically, the component body 51 is provided with an installation space 513 and an air guide hole 514, the air guide hole 514 is connected to the installation space 513, the air guide blade 521 and the air guide hole 514 are arranged opposite to each other, and the air guide hole 514 is provided with a mounting plate 515, the air guide blade 521 can be connected to the mounting plate 515, so that the air guide blade 521 can rotate relative to the air guide hole 514.

[0094] Furthermore, the mounting plate 515 is formed with a first clamping portion 516, which can be set as a clamping groove, etc., and the air guide blade 521 is provided with a second clamping portion 5214, which can be set as a clamping column, etc. When the air guide blade 521 is installed in the air guide hole 514, the second clamping portion 5214 can be clamped and cooperated with the first clamping portion 516, the first clamping portion 516 can be set as a circular clamping groove, and the second clamping portion 5214 can be set as a cylindrical clamping column, so that when the second clamping portion 5214 is clamped with the first clamping portion 516, the second clamping portion 5214 can rotate in the first clamping portion 516, and then the air guide blade 521 can rotate relative to the mounting plate 515 at the second clamping portion 5214, so that the air guide blade 521 can guide the air at an angle to meet different usage requirements.

[0095] In some embodiments, the wind guide blade 521 is formed with an avoidance groove 5215, and the avoidance groove 5215 is suitable for avoiding the mounting plate 515 when the wind guide blade 521 rotates.

[0096] Specifically, the wind guide blade 521 is provided with a windward blade 5211 and an air outlet blade 5212 which are fixedly connected by structures such as clamping columns, and there is a gap between the windward blade 5211 and the air outlet blade 5212, that is, the wind guide blade 521 is formed with a avoidance groove 5215. The wind guide blade 521 can be clamped and connected to the mounting plate 515 by the clamping column, so that the wind guide blade 521 can rotate relative to the air guide hole 514. When the wind guide blade 521 rotates, the avoidance groove 5215 of the wind guide blade 521 can avoid the mounting plate 515, so as to ensure the wind guiding effect while also ensuring the rotation angle of the wind guide blade 521, thereby increasing the wind guiding range and meeting more usage requirements.

[0097] The utility model also provides an air conditioning device 100 .

[0098] According to the embodiment of the utility model, the air conditioning device 100 includes a face frame 1, a chassis 2 and an air guide component 5 of any one of the above items, the face frame 1 is connected to the chassis 2 and defines an air outlet cavity and an air outlet 3, the air outlet 3 is connected to the air cavity, and the air guide component 5 is installed at the air outlet 3.

[0099] Specifically, Figure 2-Figure 5 and Fig.24As shown, the air-conditioning device 100 is provided with a face frame 1, a chassis 2 and an air-guiding component 5, etc., and the face frame 1 and the chassis 2 can be connected by a connecting piece, etc., and can jointly define an installation cavity, an air outlet cavity and an air outlet 3, etc. The installation cavity can be used to install components required for the operation of the air-conditioning device 100, support and protect internal parts, etc., and the air outlet 3 can be connected with the air cavity, and the airflow in the air cavity can flow to the air outlet 3, and the air outlet 3 is connected to the wind cavity and the outside world, so that the windflow flowing from the wind cavity to the air outlet 3 can flow to the outside world through the air outlet 3, and the air-guiding component 5 is arranged at the air outlet 3, so that the windflow flowing to the air outlet 3 can be guided by the air-guiding component 5, and then flow to the desired direction according to the air-guiding component 5, thereby improving the comfort of use.

[0100] According to the air-conditioning equipment 100 of the embodiment of the utility model, by setting the rotatable angle of the guide vane structure 52 relative to the component body 51 to 360°, the wind guiding angle of the wind guide component 5 can be increased, and then the wind guiding area of ​​the wind guide component 5 can be increased, and the wind guiding effect of the wind guide component 5 is improved. The wind guide component 5 is provided with an air guiding curved surface 5213, which can also ensure the wind guiding effect of the wind guide component 5, and has a better use effect and a wider range of applications.

[0101] In some embodiments, the air conditioning device 100 further includes: an air guide plate 4 , which is located outside the air guide component 5 and is rotatably connected to the air outlet 3 , and the air guide plate 4 is suitable for opening or closing the air outlet 3 .

[0102] Specifically, Figure 2-Figure 5 and Fig.24 As shown, the air-conditioning device 100 is also provided with an air guide plate 4, which is arranged at the air outlet 3, and the air guide plate 4 is located on the outside of the air guide component 5, the air guide plate 4 and the air outlet 3 can be rotatably connected by a rack and other structures, so that the air guide plate 4 can open or close the air outlet 3, the air guide plate 4 is connected to a driving member, and the driving member can be set to a driving motor, etc., when the air-conditioning device 100 is in operation, the driving member can drive the air guide plate 4 away from the air outlet 3, and then open the air outlet 3, so that the air flow can flow from the air outlet 3 to the outside of the air-conditioning device 100, and after the air flow is guided by the air guide component 5, it can be guided again by the air guide plate 4, so that the flow direction of the air flow is more accurate, and when the air-conditioning device 100 is turned off, the driving member can drive the air guide plate 4 to approach the air outlet 3 until the air outlet 3 is closed, so that the air guide plate 4 and the surface frame 1 and other structures together close the air-conditioning device 100, so as to support and protect the internal parts of the air-conditioning device 100.

[0103] In some embodiments, the air guide plate 4 is provided with a first rotation angle a1 and a second rotation angle a2, and the following conditions are satisfied: 55°≤a1≤65°, 90°≤a2≤100°.

[0104] Specifically, the air guide plate 4 is arranged at the air outlet 3, and the air guide plate 4 is connected to a driving member, which can drive the air guide plate 4 to rotate relative to the air outlet 3, thereby opening or closing the air outlet 3, and the different rotation angles of the air guide plate 4 relative to the air outlet 3 make the air guide range of the airflow of the air guide plate 4 different.

[0105] Furthermore, if Figure 2-Figure 3 As shown, the air guide plate 4 is provided with a first rotation angle a1, and satisfies: 55°≤a1≤65°, that is, the first rotation angle a1 can be set to 55°, 60° or 65°, etc. In this embodiment, the first rotation angle a1 is set to 60°, thereby preventing the air flow from blowing directly when the air conditioner 100 is in the cooling state, ensuring the user experience, and as Figure 4-Figure 5 As shown, the air guide plate 4 is also provided with a second rotation angle a2, and satisfies: 90°≤a2≤100°, that is, the second rotation angle a2 can be set to 90°, 95° or 100°, etc. In the present embodiment, the second rotation angle a2 is set to 95°, at which time the air guide plate 4 is set downward, so that the air flow can fall to the ground when the air-conditioning equipment 100 is in the heating state, and the air guide plate 4 can also be set to stop at any position to improve the flexibility of use.

[0106] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0107] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.

Claims

1. An air guide component, characterized in that: include: A component body, wherein the component body is suitable for being installed at an air outlet of an air conditioning device; A guide vane structure, wherein the guide vane structure is rotatably mounted on the component body, the rotatable angle of the guide vane structure relative to the component body is greater than or equal to 360°, and the guide vane structure forms a wind guiding curved surface.

2. The air guide component according to claim 1, characterized in that: The guide vane structure comprises an air guide swing vane and a mounting member, wherein the air guide swing vane is mounted in the mounting member, the mounting member is rotatably connected to the component body, and the air guide curved surface is formed on the air guide swing vane.

3. The air guide component according to claim 2, characterized in that: It also includes a driving member, the mounting member is configured as a gear ring, and the output end of the driving member is coupled with the gear ring via a gear set to drive the gear ring to rotate around a central axis.

4. The air guide component according to claim 3, characterized in that: The gear set comprises a driving gear and a driven gear, the driving gear is connected to the output end of the driving member, and the driving gear and the ring gear are respectively meshed with the driven gear.

5. The air guide component according to claim 3, characterized in that: There are multiple guide vane structures. Among the multiple guide vane structures, the toothed ring corresponding to one of the guide vane structures is meshed with the gear set, and two adjacent toothed rings in the remaining guide vane structures are matched through transmission gears.

6. The air guide component according to claim 3, characterized in that: The guide vane structures are multiple groups, and each group has multiple guide vane structures; There are multiple gear sets and they correspond one-to-one to the multiple guide vane structures, and the multiple guide vane structures in each group are driven by the same gear set.

7. The air guide component according to claim 6, characterized in that: The plurality of gear sets are independently driven by the plurality of driving members.

8. The air guide component according to any one of claims 2 to 7, characterized in that: The wind guide blade includes a windward blade and an air outlet blade. The windward blade is relatively fixed to the air outlet blade, and the windward blade extends to the windward side of the component body, and the air outlet blade extends to the air outlet side of the component body.

9. The air guide component according to claim 8, characterized in that: The windward blade and / or the wind outlet blade is formed with the wind guiding curved surface.

10. The air guide component according to claim 8, characterized in that: The windward blade is constructed of at least two layers; And / or, the air outlet blade is constructed of at least two layers.

11. The air guide component according to claim 8, characterized in that: There are multiple guide vane structures, and the multiple guide vane structures are distributed in sequence along the length direction of the air outlet; Among the plurality of guide vane structures, the number of layers of air outlet blades of the guide vane structures located at the two ends is greater than the number of layers of air outlet blades of the remaining guide vane structures.

12. The air guide component according to any one of claims 2 to 7, characterized in that: The component body is formed with an installation space and an air guide hole communicated with the installation space, the installation piece is located in the installation space, and the air guide swing blade is distributed opposite to the air guide hole.

13. The air guide component according to claim 12, characterized in that: The air guide hole is provided with a mounting plate, the mounting plate is formed with a first clamping portion, the air guide swing blade is provided with a second clamping portion, the second clamping portion is clamped and matched with the first clamping portion, and the air guide swing blade is suitable for rotating relative to the mounting plate at the second clamping portion.

14. The air guide component according to claim 13, characterized in that: The wind guide swing blade is formed with an avoidance groove, and the avoidance groove is suitable for avoiding the mounting plate when the wind guide swing blade rotates.

15. An air conditioning device, characterized in that: It comprises a face frame, a chassis and an air guide component according to any one of claims 1 to 14, wherein the face frame is connected to the chassis and defines an air outlet cavity and the air outlet, the air outlet is connected to the air cavity, and the air guide component is installed at the air outlet.

16. The air conditioning device according to claim 15, characterized in that: Also includes: An air guide plate is located outside the air guide component and is rotatably connected to the air outlet, and the air guide plate is suitable for opening or closing the air outlet.

17. The air conditioning device according to claim 16, characterized in that: The air guide plate is provided with a first rotation angle a1 and a second rotation angle a2, and the conditions are as follows: 55°≤a1≤65°, 90°≤a2≤100°.