Air deflector structure of air conditioner and air conditioner
By setting up a drainage groove and a water collecting groove on the air conditioner air shield, combined with the stopper and removable connection, the problem of condensate dripping is solved, improving user comfort and cleaning convenience.
Patent Information
- Application Number
- CN202211057437.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-31
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2042-08-31
AI Technical Summary
Condensed water on the existing air conditioner windshield affects user comfort and increases the frequency of cleaning, and the existing design is difficult to effectively collect and prevent condensate dripping.
The drainage trough and the water collecting tank are arranged on the windshield, and the condensate water flows into the water collecting tank along the drainage trough for collection. The water flow velocity is adjusted by setting the stopper. The windshield and the water collecting tank can be detachably connected, and the driving part adjusts the position of the windshield.
Effectively collect condensate water, avoid dripping affecting user experience, reduce the frequency of cleaning, and improve user comfort and convenience.
Smart Images

Figure CN115540329B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of household electrical appliances, and particularly to a wind deflector structure and an air conditioner of an air conditioner. Background Art
[0002] In summer, it is hot, and users have a high frequency of using air conditioners for a long time and at a relatively low cooling temperature. The traditional air guiding and sweeping designs of air conditioners can effectively guide the air flow at the air outlet. In the hot summer, after the cooling mode is turned on, users stay in the area where the cold air from the air conditioner outlet can reach for a long time for activities or rest. The direct blowing of cold air will cause discomfort to the user's body, while turning off or raising the cooling temperature cannot reach the comfortable temperature of the room.
[0003] In the prior art, the design of the air conditioner outlet generally realizes the flow direction of the air flow at the air conditioner outlet through a large deflector, a small deflector and a swing blade. However, when the user turns on strong cooling in the hot summer, the structure of the air conditioner itself is not sufficient to completely prevent the direct blowing of cold air. Most users will choose to install a wind deflector structure. However, when the air conditioner is turned on for cooling for a long time, condensed water will appear on the wind deflector, affecting the user's comfort and increasing the cleaning frequency of the air conditioner wind deflector.
[0004] In view of this, the present invention is provided. Summary of the Invention
[0005] The present invention provides a wind deflector structure and an air conditioner of an air conditioner to solve the defects in the prior art that condensed water appears on the wind deflector, affecting the user's comfort and increasing the cleaning frequency of the air conditioner wind deflector.
[0006] A wind deflector structure of an air conditioner according to a first aspect of the present invention includes: a wind deflector, a connecting arm, a water collecting tank and a plurality of drainage grooves;
[0007] The wind deflector is arranged corresponding to the air outlet of the air conditioner;
[0008] One end of the connecting arm is connected to the wind deflector, and the other end of the connecting arm is connected to the air conditioner;
[0009] The water collecting tank is arranged at the bottom of the wind deflector for collecting the condensed water on the surface of the wind deflector;
[0010] A plurality of the drainage grooves are arranged at intervals on the surface of the wind deflector, and one side outlet of the drainage groove extends to the water collecting tank for guiding the condensed water on the surface of the wind deflector to the water collecting tank.
[0011] According to an embodiment of the present invention, the drainage grooves are arranged on the windward side and / or the leeward side of the wind deflector.
[0012] Specifically, this embodiment provides an implementation manner of a drainage groove. By providing a drainage groove on the windshield, when condensed water appears on the windshield, the condensed water can flow into the water collecting tank along the drainage groove on the windward side or the leeward side, collecting the condensed water to avoid the problem that the condensed water drips and causes environmental impact, thereby leading to a decline in user experience.
[0013] According to an implementation manner of the present invention, the windshield is an arc-shaped plate-like structure, and the axial direction of the arc shape of the windshield is parallel to the extending direction of the air outlet;
[0014] Alternatively, the windshield is a flat plate-like structure.
[0015] Specifically, this embodiment provides an implementation manner of a windshield. The windshield can be arc-shaped or a flat plate-like structure, which can adapt to different working scenarios.
[0016] In a possible implementation manner, when the windshield is arc-shaped, the condensed water can enter the water collecting tank along the drainage groove more quickly.
[0017] In a possible implementation manner, when the windshield is flat, the windshield structure of this shape is simple and convenient to manufacture.
[0018] According to an implementation manner of the present invention, the connection between the water collecting tank and the windshield is a detachable connection.
[0019] Specifically, this embodiment provides an implementation manner of the connection between the water collecting tank and the windshield. A water collecting tank is provided at the bottom of the windshield, and the connection between the water collecting tank and the windshield is detachable, which is convenient for users to clean the collected condensed water.
[0020] According to an implementation manner of the present invention, a chute is provided on the side of the windshield that cooperates with the water collecting tank;
[0021] The water collecting tank is provided with a sliding portion that is inserted and cooperated with the chute;
[0022] Among them, the detachable connection between the water collecting tank and the windshield is realized through the sliding portion and the chute.
[0023] Specifically, this embodiment provides an implementation manner of the windshield and the water collecting tank. A water collecting tank is provided at the bottom of the windshield, and the connection between the water collecting tank and the windshield is detachable. The detachable connection between the water collecting tank and the windshield is realized through the sliding portion, which is convenient for users to clean the collected condensed water.
[0024] In a possible implementation manner, the sliding portion can be magnetic. The detachable connection between the water collecting tank and the windshield is realized by magnetic attraction. The magnetic attraction method has the effects of convenient disassembly and avoiding wear of the chute.
[0025] In a possible implementation, the connection between the sliding part and the water collecting tank can be hinged. Since users often adjust the air direction of the air conditioner, the angle and position of the wind deflector will also change. By using the hinged method, the water collecting tank can always be kept in a horizontal state, avoiding the backflow and leakage of water in the water collecting tank due to the change of the angle and position of the wind deflector.
[0026] According to an embodiment of the present invention, it further includes: a plurality of flow-stopping parts, and the plurality of flow-stopping parts are arranged at intervals along the extending direction of each drainage groove for stopping the condensed water flowing through the corresponding drainage groove.
[0027] Specifically, this embodiment provides an implementation of the flow-stopping part. In the drainage groove on the wind deflector, a plurality of flow-stopping parts are provided. When the condensed water slides down along the drainage groove towards the water collecting tank, it will pass through the plurality of flow-stopping parts, avoiding the situation of too fast water flow speed.
[0028] According to an embodiment of the present invention, the flow-stopping part includes: a first flow-stopping section and a second flow-stopping section;
[0029] The first flow-stopping section and the second flow-stopping section are connected to each other to form an inverted tooth-shaped structure protruding from the bottom wall of the drainage groove;
[0030] The first flow-stopping section forms a first included angle with the bottom wall of the drainage groove;
[0031] The second flow-stopping section forms a second included angle with the bottom wall of the drainage groove;
[0032] Wherein, the angle of the first included angle is greater than the angle of the second included angle.
[0033] Specifically, this embodiment provides an implementation of the first flow-stopping section and the second flow-stopping section. In the drainage groove on the wind deflector, a plurality of flow-stopping parts are provided. When the condensed water slides down along the drainage groove towards the water collecting tank, it will pass through the plurality of flow-stopping parts. Since the first included angle is greater than the second included angle, the slope of the first flow-stopping section is smaller and is almost perpendicular to the direction of the water flow falling. The water flow will stay on the first flow-stopping section for a period of time and then enter the second flow-stopping section with a larger slope. This makes the overall flow rate of the condensed water slower, preventing the condensed water from detaching from the drainage groove due to too fast a flow rate, resulting in inconvenient collection and affecting the user experience, etc.
[0034] According to an embodiment of the present invention, the first flow-stopping section is smoothly connected to the second flow-stopping section of the adjacent flow-stopping part.
[0035] Specifically, this embodiment provides an implementation of the connection structure between the first flow-stopping section and the adjacent second flow-stopping section. By smoothly connecting the first flow-stopping section and the second direct flow section, the situation where the water flow detaches from the drainage groove and causes inconvenient collection can be avoided.
[0036] According to an embodiment of the present invention, the surfaces of the windshields on both sides of the extending direction of the drainage groove are inclined towards the drainage groove, for draining the condensed water on the surfaces of the windshields into the drainage groove.
[0037] Specifically, this embodiment provides another implementation manner of the drainage groove. The surface of the windshield in the middle of the drainage groove is inclined towards the drainage groove, presenting an inverted V shape. After the condensed water condenses on the surface of the windshield, due to the inclination of the surface of the windshield towards the drainage groove, it is easier to drain the condensed water into the drainage groove, and the drainage effect is better.
[0038] An air conditioner according to a second aspect of the present invention includes: the windshield structure of the above-mentioned air conditioner.
[0039] According to an embodiment of the present invention, it further includes: a driving part; the driving part is arranged on the side of the air conditioner body, and the driving part is connected to the end of the connecting arm far away from the windshield.
[0040] Wherein, the driving part drives the windshield to reciprocate at the air outlet through the connecting arm.
[0041] Specifically, this embodiment provides an air conditioner. By setting a driving part, the connecting arm is driven to adjust the position of the windshield. The user can adjust the position of the windshield according to the needs, and the user experience is better.
[0042] One or more of the above technical solutions in the present invention have at least one of the following technical effects: The windshield structure and the air conditioner of the air conditioner provided by the present invention, by setting a drainage groove on the windshield, when there is condensed water on the windshield, the condensed water can flow into the water collecting tank along the drainage groove on the windward surface or the leeward surface to collect the condensed water; by setting windshields of different shapes, different working scenarios can be adapted; the water collecting tank and the windshield are detachable, and the water collecting tank and the windshield are detachably connected through a sliding part, which is convenient for the user to clean the collected condensed water; by setting a plurality of flow-stopping parts, when the condensed water slides down along the drainage groove to the water collecting tank, it will pass through a plurality of flow-stopping parts, avoiding the situation that the water flow speed is too fast and inconvenient for collection; by setting the surface of the windshield to be inclined towards the drainage groove, it is easier to drain the condensed water into the drainage groove, and the drainage effect is better; by setting a driving part, the connecting arm is driven to adjust the position of the windshield. The user can adjust the position of the windshield according to the needs, and the user experience is better. Description of the Drawings
[0043] To more clearly illustrate the technical solutions in the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0044] Figure 1 is one of the schematic structural diagrams of the air conditioner provided by the present invention;
[0045] Figure 2 is the second schematic structural diagram of the air conditioner provided by the present invention;
[0046] Figure 3 is one of the schematic structural diagrams of the wind deflector structure of the air conditioner provided by the present invention;
[0047] Figure 4 is the second schematic structural diagram of the wind deflector structure of the air conditioner provided by the present invention;
[0048] Figure 5 is the third schematic structural diagram of the wind deflector structure of the air conditioner provided by the present invention;
[0049] Figure 6 is the fourth schematic structural diagram of the wind deflector structure of the air conditioner provided by the present invention.
[0050] Figure 7 is the fifth schematic structural diagram of the wind deflector structure of the air conditioner provided by the present invention;
[0051] Figure 8 is the sixth schematic structural diagram of the wind deflector structure of the air conditioner provided by the present invention.
[0052] Reference numerals:
[0053] 10. Wind deflector 11. Slide groove;
[0054] 20. Connecting arm;
[0055] 30. Water collecting trough; 31. Sliding part;
[0056] 40. Drainage groove;
[0057] 50. Flow stopping part; 51. First flow stopping section; 52. Second flow stopping section 53. First included angle;
[0058] 54. Second included angle;
[0059] 60. Driving part. Detailed implementation manners
[0060] To make the objectives, technical solutions and advantages of the present invention clearer, the technical solutions in the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the present invention. Apparently, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present invention without creative efforts shall fall within the protection scope of the present invention.
[0061] In the description of the embodiments of the present invention, it should be noted that the orientation or positional relationships indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the embodiments of the present invention 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. Therefore, it should not be construed as a limitation to the embodiments of the present invention. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.
[0062] According to Figure 1 and Figure 2 As shown, the air deflector of the air conditioner is arranged corresponding to the air outlet of the air conditioner. The driving part is connected to one end of the connecting arm away from the air deflector. By adjusting the connecting arm through the driving part, the air deflector can be adjusted, and operations such as wind blocking and condensate collection can be performed.
[0063] According to Figure 3 , Figure 4 , Figure 5 , Figure 6 As shown, drainage grooves are provided on the windward side and the leeward side of the air deflector, and a water collecting groove is provided at the bottom of the air deflector. The water collecting groove and the air deflector are detachably connected through a sliding groove.
[0064] According to Figure 7 and Figure 8 As shown, the shape of the air deflector can be arc-shaped and planar. A flow stopping part is provided on the drainage groove. The flow stopping part includes a first flow stopping section and a second flow stopping section. Among them, the first flow stopping section forms a first included angle with the bottom wall of the drainage groove, and the second flow stopping section forms a second included angle with the bottom wall of the drainage groove. The first included angle is greater than the second included angle, and the first flow stopping section and the second flow stopping section are smoothly connected to avoid situations such as too fast water flow speed.
[0065] A wind deflector structure for an air conditioner according to the first aspect of the present invention includes: a wind deflector 10, a connecting arm 20, a water collecting tank 30, and a plurality of drainage grooves 40; the wind deflector 10 is disposed corresponding to the air outlet of the air conditioner; one end of the connecting arm 20 is connected to the wind deflector 10, and the other end of the connecting arm 20 is connected to the air conditioner; the water collecting tank 30 is disposed at the bottom of the wind deflector 10 for collecting condensed water on the surface of the wind deflector 10; a plurality of drainage grooves 40 are spaced apart on the surface of the wind deflector 10, and one side outlet of the drainage groove 40 extends to the water collecting tank 30 for guiding the condensed water on the surface of the wind deflector 10 to the water collecting tank 30.
[0066] According to an embodiment of the present invention, the drainage groove 40 is disposed on the windward side and / or the leeward side of the wind deflector 10.
[0067] Specifically, this embodiment provides an implementation manner of the drainage groove 40. By providing the drainage groove 40 on the wind deflector 10, when condensed water appears on the wind deflector 10, the condensed water can flow into the water collecting tank 30 along the drainage groove 40 on the windward side or the leeward side, collecting the condensed water, avoiding the problem that the condensed water drips and causes environmental impact, and further resulting in a decline in user experience.
[0068] According to an embodiment of the present invention, the wind deflector 10 is an arc-shaped plate structure, and the axial direction of the arc shape of the wind deflector 10 is parallel to the extension direction of the air outlet.
[0069] Alternatively, the wind deflector 10 is a planar plate structure.
[0070] Specifically, this embodiment provides an implementation manner of the wind deflector 10. The wind deflector 10 can be arc-shaped or a planar plate structure, which can adapt to different working scenarios.
[0071] In a possible implementation manner, the wind deflector 10 is arc-shaped, and the condensed water can enter the water collecting tank 30 more quickly along the drainage groove 40.
[0072] In a possible implementation manner, the wind deflector 10 is planar. This shape of the wind deflector 10 has a simple structure and is convenient to manufacture.
[0073] According to an embodiment of the present invention, the water collecting tank 30 and the wind deflector 10 are detachably connected.
[0074] Specifically, this embodiment provides an implementation manner of the connection between the water collecting tank 30 and the wind deflector 10. The water collecting tank 30 is disposed at the bottom of the wind deflector 10, and the water collecting tank 30 and the wind deflector 10 are detachable, which is convenient for users to clean the collected condensed water.
[0075] According to an embodiment of the present invention, a chute 11 is provided on the mating side of the wind deflector 10 and the water collecting trough 30; the water collecting trough 30 is provided with a sliding portion 31 that is inserted and matched with the chute 11; wherein, the water collecting trough 30 and the wind deflector 10 are detachably connected through the sliding portion 31 and the chute 11.
[0076] Specifically, this embodiment provides an implementation manner of the wind deflector 10 and the water collecting trough 30. The water collecting trough 30 is provided at the bottom of the wind deflector 10. The water collecting trough 30 and the wind deflector 10 are detachable, and the water collecting trough 30 and the wind deflector 10 are detachably connected through the sliding portion 31, which is convenient for users to clean the collected condensed water.
[0077] In a possible implementation manner, the sliding portion 31 can be magnetic, and the water collecting trough 30 and the wind deflector 10 are detachably connected by a magnetic attraction method. The magnetic attraction method has the effects of being convenient for disassembly and avoiding wear of the chute 11.
[0078] In a possible implementation manner, the connection mode between the sliding portion 31 and the water collecting trough 30 can be hinged. Since users often adjust the air direction of the air conditioner, the angle and position of the wind deflector 10 will also change. By using the hinged method, it can always ensure that the water collecting trough 30 is in a horizontal state, avoiding the situation of backflow and leakage of the water in the water collecting trough 30 due to the change of the angle and position of the wind deflector 10.
[0079] According to an embodiment of the present invention, it further includes: a plurality of flow stopping portions 50, and the plurality of flow stopping portions 50 are arranged at intervals along the extending direction of each drainage trough 40 for stopping the condensed water flowing through the corresponding drainage trough 40.
[0080] Specifically, this embodiment provides an implementation manner of the flow stopping portion 50. In the drainage trough 40 on the wind deflector 10, a plurality of flow stopping portions 50 are provided. When the condensed water slides down along the drainage trough 40 to the water collecting trough 30, it will pass through the plurality of flow stopping portions 50, avoiding the situation of too fast water flow speed.
[0081] According to an embodiment of the present invention, the flow stopping portion 50 includes: a first flow stopping section 51 and a second flow stopping section 52; the first flow stopping section 51 and the second flow stopping section 52 are connected to each other to form an inverted tooth-shaped structure protruding from the bottom wall of the drainage trough 40; the first flow stopping section 51 forms a first included angle 53 with the bottom wall of the drainage trough 40; the second flow stopping section 52 forms a second included angle 54 with the bottom wall of the drainage trough 40; wherein, the angle of the first included angle 53 is greater than the angle of the second included angle 54.
[0082] Specifically, this embodiment provides an implementation manner of a first water-stop section 51 and a second water-stop section 52. In the drainage groove 40 on the wind deflector 10, a plurality of water-stop portions 50 are provided. When the condensed water slides down along the drainage groove 40 to the water collection groove 30 from top to bottom, it will pass through a plurality of water-stop portions 50. Since the first angle 53 is greater than the second angle 54, the slope of the first water-stop section 51 is smaller and is almost perpendicular to the direction of the water flow falling. The water flow will stay on the first water-stop section 51 for a period of time and then enter the second water-stop section 52 with a larger slope. This slows down the overall flow rate of the condensed water and prevents the condensed water from detaching from the drainage groove 40 due to too fast a flow rate, resulting in inconvenient collection and affecting the user experience, etc.
[0083] According to an embodiment of the present invention, the first water-stop section 51 and the second water-stop section 52 of the adjacent water-stop portion 50 are smoothly connected.
[0084] Specifically, this embodiment provides an implementation manner of the connection structure between the first water-stop section 51 and the adjacent second water-stop section 52. By smoothly connecting the first water-stop section 51 and the second direct-current section, the situation where the water flow detaches from the drainage groove 40 and causes inconvenient collection can be avoided.
[0085] According to an embodiment of the present invention, the surfaces of the wind deflector 10 on both sides of the extending direction of the drainage groove 40 are inclined toward the drainage groove 40 to drain the condensed water on the surface of the wind deflector 10 into the drainage groove 40.
[0086] Specifically, this embodiment provides another implementation manner of the drainage groove 40. The surface of the wind deflector 10 in the middle of the drainage groove 40 is inclined toward the drainage groove 40 and is in an inverted V shape. After the condensed water condenses on the surface of the wind deflector 10, due to the surface of the wind deflector 10 being inclined toward the drainage groove 40, it is easier to drain the condensed water into the drainage groove 40, and the drainage effect is better.
[0087] According to an air conditioner provided in the second aspect of the present invention, it includes: the wind deflector structure of the above-mentioned air conditioner.
[0088] According to an embodiment of the present invention, it further includes: a driving part 60; the driving part 60 is arranged on the side of the air conditioner body, and the driving part 60 is connected to the end of the connecting arm 20 away from the wind deflector 10; wherein, the driving part 60 drives the wind deflector 10 to reciprocate at the air outlet through the connecting arm 20.
[0089] Specifically, this embodiment provides an air conditioner. By setting the driving part 60, the connecting arm 20 is driven to adjust the position of the wind deflector 10. The user can adjust the position of the wind deflector 10 according to needs, and the user experience is better.
[0090] An air deflector structure and an air conditioner provided by the present invention. By arranging a drainage groove on the air deflector, when condensate appears on the air deflector, the condensate can flow into the water collecting tank along the drainage groove on the windward side or the leeward side to collect the condensate; by arranging air deflectors with different shapes, it can adapt to working scenarios under different conditions; the water collecting tank and the air deflector are detachable, and the water collecting tank and the air deflector are detachably connected through a sliding part, which is convenient for users to clean the collected condensate; by arranging a plurality of flow stopping parts, the flow stopping part includes a first flow stopping section and a second flow stopping section. When the condensate slides down along the drainage groove to the water collecting tank, it will pass through a plurality of flow stopping parts, and the water flow will stay in the first flow stopping section for a period of time and then enter the second flow stopping section with a larger slope. This makes the overall flow rate of the condensate slower and avoids the situation that the water flow rate is too fast to cause inconvenience in collection; by arranging the surface of the air deflector to be inclined towards the drainage groove, it is easier to drain the condensate into the drainage groove, and the drainage effect is better; by arranging a driving part to drive the connecting arm to adjust the position of the air deflector. Users can adjust the position of the air deflector according to their needs, and the user experience is better.
[0091] In the description of this specification, the description referring to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the embodiments of the present invention. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0092] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A wind deflector structure of an air conditioner, characterized in that, Comprising: A wind deflector (10), a connecting arm (20), a water collecting trough (30) and a plurality of drainage troughs (40); The wind deflector (10) is arranged corresponding to the air outlet of the air conditioner; One end of the connecting arm (20) is connected to the wind deflector (10), and the other end of the connecting arm (20) is connected to the air conditioner; The water collecting trough (30) is arranged at the bottom of the wind deflector (10) for collecting the condensed water on the surface of the wind deflector (10); A plurality of the drainage troughs (40) are arranged at intervals on the surface of the wind deflector (10), and one side outlet of the drainage trough (40) extends to the water collecting trough (30) for guiding the condensed water on the surface of the wind deflector (10) to the water collecting trough (30); The water collecting trough (30) and the wind deflector (10) are detachably connected; A chute (11) is arranged on the matching side of the wind deflector (10) and the water collecting trough (30); The water collecting trough (30) is provided with a sliding part (31) which is in plug-in fit with the chute (11); Wherein, the water collecting trough (30) and the wind deflector (10) are detachably connected through the sliding part (31) and the chute (11); The sliding part (31) and the water collecting trough (30) are hinged; Further comprising: a plurality of flow stopping parts (50), and the plurality of flow stopping parts (50) are arranged at intervals along the extending direction of each drainage trough (40) for stopping the condensed water flowing through the corresponding drainage trough (40); The flow stopping part (50) comprises: a first flow stopping section (51) and a second flow stopping section (52); The first flow stopping section (51) and the second flow stopping section (52) are connected to each other to form an inverted tooth-shaped structure protruding from the bottom wall of the drainage trough (40); A first included angle (53) is formed between the first flow stopping section (51) and the bottom wall of the drainage trough (40); A second included angle (54) is formed between the second flow stopping section (52) and the bottom wall of the drainage trough (40); Wherein, the angle of the first included angle (53) is greater than the angle of the second included angle (54); The surfaces of the wind deflector (10) on both sides in the extending direction of the drainage trough (40) are inclined towards the drainage trough (40) for draining the condensed water on the surface of the wind deflector (10) into the drainage trough (40).
2. The wind deflector structure of the air conditioner according to claim 1, characterized in that, The drainage trough (40) is arranged on the windward side and / or the leeward side of the wind deflector (10).
3. The wind deflector structure of the air conditioner according to claim 1, characterized in that, The wind deflector (10) is an arc-shaped plate structure, and the axial direction of the arc shape of the wind deflector (10) is parallel to the extending direction of the air outlet; Or, the wind deflector (10) is a planar plate structure.
4. The wind deflector structure of the air conditioner according to claim 1, characterized in that, The first flow stopping section (51) and the second flow stopping section (52) of the adjacent flow stopping part (50) are smoothly and transitionally connected.
5. An air conditioner, characterized in that, Comprising: The wind deflector structure of the air conditioner according to any one of claims 1 to 4 above.
6. The air conditioner according to claim 5, characterized in that, Further comprising: A driving part (60), the driving part (60) is arranged on the side of the air conditioner body, and the driving part (60) is connected to the end of the connecting arm (20) far from the wind deflector (10); Among them, the driving part (60) drives the windshield (10) through the connecting arm (20) to reciprocate at the air outlet.
Citation Information
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