Air outlet frame, air outlet assembly and air conditioner

The design of the flow collecting member and the first drainage member solves the problem of condensation water on the air outlet frame of the air conditioner, achieves dryness and cleanliness of the air outlet frame, reduces costs and improves durability and production efficiency.

CN223388712UActive Publication Date: 2025-09-26MIDEA GROUP WUHAN REFRIGERATION EQUIPMENT CO LTD +1
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Patent Information

Application Number
CN202422818157.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-09-26
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

The air outlet frame of the air conditioner is prone to condensation during the air inlet and outlet process, causing damage to components. The existing sponge-based solution is costly, has low assembly efficiency, and is prone to failure.

Method used

The collecting piece and the first drain piece are designed to collect and discharge condensed water on the air duct plate. The collecting piece and the first drain piece are constructed as one piece with the air duct plate and other components, which simplifies the assembly process and improves durability and reliability.

Benefits of technology

The dryness and cleanliness of the interior of the air outlet frame are achieved, the working performance and life of the components are guaranteed, the material cost is reduced, and the production efficiency and assembly efficiency are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an air outlet frame, an air outlet assembly and an air conditioner, the air outlet frame comprises a top plate, a bottom plate, an air duct plate, a flow collecting piece and a first drainage piece, the air duct plate is arranged between the top plate and the bottom plate, and an air outlet duct is defined; the air outlet frame is provided with an air outlet side and an air inlet side, the flow collecting piece is located on the air outlet side and arranged on the side, away from the air outlet duct, of the air duct plate so as to collect condensation water generated on the air duct plate, and the first drainage piece is arranged on the air inlet side, communicates with the flow collecting piece and is used for discharging the condensation water. According to the air outlet frame, condensation water generated on the air duct plate can be collected and discharged in time through the flow collecting piece and the first water discharging piece, so that the dryness and cleanliness of the interior of the air outlet frame are guaranteed, additional sponge does not need to be pasted, the material cost can be saved, the production efficiency is improved, and meanwhile, the production efficiency is improved. The flow collecting piece and the first drainage piece are constituent parts of the air outlet frame and are stably connected with the air duct plate and other parts, durability can be effectively improved, and water collecting and drainage reliability is guaranteed.
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Description

Technical Field

[0001] The present application relates to the technical field of air conditioners, and in particular to an air outlet frame, an air outlet assembly, and an air conditioner. Background Art

[0002] In the related art, the air outlet frame of the air conditioner is in contact with hot and cold air during the air inlet and outlet process, and condensation is easily generated on the surface of the components. For example, if the condensation is not effectively and promptly drained away from the back of the air duct of the air outlet frame, it may damage the internal components of the air conditioner, especially the electrical components, thereby reducing the service life of the air conditioner and even posing a quality and safety hazard. To solve this problem, the traditional method is to stick a sponge on the back of the air duct for insulation, thereby preventing the generation of condensation. However, the cost of sponges is relatively high, which increases the overall manufacturing cost of the air conditioner. In addition, the process of sticking sponges is cumbersome and time-consuming, which reduces assembly efficiency and is not conducive to large-scale production. In addition, if the sponge is not firmly stuck, or after long-term operation and long-term soaking, it is easy to mold, deform and age, causing the sponge to lose its insulation effect and causing the condensation problem to reappear. Utility Model Content

[0003] The present application aims to solve at least one of the technical problems existing in the prior art. To this end, one purpose of the present application is to propose an air outlet frame, which can collect and discharge condensation water generated on the air duct plate in a timely manner through a flow collecting member and a first drainage member to ensure the dryness and cleanliness of the interior of the air outlet frame without the need for additional sponge pasting, which can save material costs and improve production efficiency. At the same time, the flow collecting member and the first drainage member are components of the air outlet frame, and they are firmly connected to the air duct plate and other components, which can effectively improve durability and ensure the reliability of water collection and drainage.

[0004] The present application also proposes an air outlet assembly having the above-mentioned air outlet frame.

[0005] The present application also proposes an air conditioner having the above-mentioned air outlet assembly.

[0006] According to the air outlet frame of the first aspect embodiment of the present application, the air outlet frame includes: a top plate, a bottom plate, an air duct plate, a collecting piece and a first drainage piece, the air duct plate is arranged between the top plate and the bottom plate, and defines an air outlet duct; the air outlet frame has an air outlet side and an air inlet side, the collecting piece is located on the air outlet side, and is arranged on the side of the air duct plate away from the air outlet duct to collect condensation water generated on the air duct plate, and the first drainage piece is arranged on the air inlet side and is connected to the collecting piece for discharging the condensation water.

[0007] According to the air outlet frame of the present application, the condensation water generated on the air duct plate can be collected and discharged in time through the collecting member and the first drainage member, thereby preventing the condensation water from being retained in the air outlet frame, effectively improving the dryness and cleanliness inside the air outlet frame, and ensuring the working performance, safety and life of the components. Compared with the related art that adopts the sponge gluing method, which leads to high cost, low assembly efficiency and high risk of failure, the collecting member and the first drainage member in the present application are part of the upper component of the air outlet frame, and the collecting member and the first drainage member can be constructed as an integral part with the air duct plate and other components, thereby simplifying the assembly process and improving production efficiency. In addition, no additional sponge and gluing materials are required, which can save material costs. At the same time, the collecting member and the first drainage member are components of the air outlet frame, and they are firmly connected to the air duct plate and other components, which can effectively improve durability and ensure the long-term reliability of water collection and drainage.

[0008] According to some embodiments of the present application, there are multiple current collecting members, and the multiple current collecting members are arranged at intervals between the top plate and the bottom plate.

[0009] Furthermore, the current collecting member has a drain port, and the current collecting member located below is suitable for receiving the condensed water discharged from the current collecting member above.

[0010] In some embodiments, the first drainage member is disposed adjacent to the bottom plate and is in communication with the current collecting member located at the lowermost end.

[0011] According to some embodiments of the present application, there are multiple air outlet ducts, and the air outlet frame also includes: a connecting plate, which is located between adjacent air outlet ducts and is suitable for connecting adjacent air duct plates, and the connecting plate has a connecting channel, the collecting part and the first drainage part are located on both sides of the connecting plate and are connected through the connecting channel, and the first drainage part is located below the collecting part.

[0012] Furthermore, the first drainage member extends away from the connecting plate on the air inlet side, is connected to the air duct plate on one side in the width direction, and defines a first drainage groove for draining the condensation water.

[0013] Furthermore, the air outlet frame also includes: a second drainage member, which is arranged around the air duct plate and defines a second drainage groove with the air duct plate, the second drainage groove is connected to the first drainage groove, and at least one of the second drainage groove and the first drainage groove extends above the collecting plate.

[0014] According to some embodiments of the present application, the collecting part includes a base plate and a side plate. The base plate is arranged around the part of the air duct plate located on the air outlet side. The side plate is connected to the peripheral side of the base plate. The drain outlet is formed at one end of the base plate adjacent to the air inlet side.

[0015] According to the air outlet assembly of the second embodiment of the present application, the air outlet assembly includes: the air outlet frame described in any one of the above embodiments.

[0016] According to the air conditioner of the third embodiment of the present application, the air conditioner includes: the air outlet assembly described in the above embodiment.

[0017] Additional aspects and advantages of the present application will be given in part in the description below, and in part will become obvious from the description below, or will be learned through practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The above and / or additional aspects and advantages of the present application will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0019] Figure 1 is a schematic diagram of an air conditioner according to an embodiment of the present application;

[0020] Figure 2 is an exploded view of an air conditioner according to an embodiment of the present application;

[0021] Figure 3 is an exploded view of an air outlet assembly according to an embodiment of the present application;

[0022] Figure 4 The air outlet frame is measured according to the embodiment of the present application. Figure 1 ;

[0023] Figure 5 yes Figure 4 A partial enlarged view of the middle part;

[0024] Figure 6 yes Figure 4 A partial enlarged view of point B in the middle;

[0025] Figure 7 yes Figure 4 A partial enlarged view of point C in the middle;

[0026] Figure 8 The air outlet frame is measured according to the embodiment of the present application. Figure 2 ;

[0027] Figure 9 yes Figure 8 A partial enlarged view of point D in the middle;

[0028] Figure 10 This is a front view of an air outlet frame according to an embodiment of the present application;

[0029] Figure 11 yes Figure 10 Cross-sectional view at EE;

[0030] Figure 12 yes Figure 10 Cross-sectional view at FF in the middle;

[0031] Figure 13 yes Figure 10 Cross-sectional view at GG;

[0032] Figure 14 yes Figure 13 A partial enlarged view of point H in the middle;

[0033] Figure 15 This is a back view of the air outlet frame according to an embodiment of the present application;

[0034] Figure 16 yes Figure 15 A partial enlarged view of point I in the middle.

[0035] Reference numerals:

[0036] 10000, air conditioner;

[0037] 1000, air outlet assembly; 2000, air duct assembly; 3000, fresh air assembly; 4000, rear box assembly; 5000, electric control box assembly; 6000, top cover; 7000, chassis;

[0038] 100, air outlet frame; 200, panel; 300, microporous plate; 400, grille; 500, louver connecting rod; 600, drive assembly; 700, side panel;

[0039] 100a, air inlet side; 100b, air outlet side;

[0040] 1. Top plate;

[0041] 2. Bottom plate;

[0042] 3. Air duct plate; 3a. Air outlet duct;

[0043] 4. Current collecting piece; 4a. First current collecting piece; 4b. Second current collecting piece; 4c. Third current collecting piece;

[0044] 41. Base plate; 41a. Drainage outlet;

[0045] 42. Side panels;

[0046] 5. First drainage member; 5a. First drainage trough; 51. First main body plate; 52. First baffle plate;

[0047] 6. Connecting plate; 6a. Connecting channel;

[0048] 7. Second drainage member; 7a. Second drainage trough; 71. Second main body plate; 72. Second baffle. DETAILED DESCRIPTION

[0049] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0050] Unless otherwise defined, all technical and scientific terms used in this application have the same meanings as commonly understood by those skilled in the art to which this application belongs. The terms used in the specification of this application are for the purpose of describing specific embodiments only and are not intended to limit this application. The terms "including" and "having" and any variations thereof in the specification and claims of this application and the above-mentioned drawings are intended to cover non-exclusive inclusions. The terms "first" and "second" in the specification and claims of this application or the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order or a primary-secondary relationship.

[0051] References to "embodiments" in this application mean that a particular feature, structure, or characteristic described in connection with the embodiment may be included in at least one embodiment of the application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments.

[0052] In the description of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," "connected," and "attached" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to direct connections, indirect connections through an intermediate medium, or internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on specific circumstances.

[0053] The term "and / or" in this application simply describes an association between related objects, indicating that three possible relationships exist. For example, A and / or B can represent: A exists alone, A and B exist simultaneously, and B exists alone. In addition, the character " / " in this application generally indicates that the related objects are in an "or" relationship.

[0054] In the embodiments of this application, the same reference numerals represent the same components, and for the sake of brevity, detailed descriptions of the same components in different embodiments are omitted. It should be understood that the thickness, length, width, and other dimensions of the various components in the embodiments of this application, as well as the overall thickness, length, width, and other dimensions of the integrated device shown in the drawings are merely illustrative and should not constitute any limitation on this application.

[0055] In the description of the present application, it should be understood 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 orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.

[0056] In the description of the present application, a first feature being “on” or “under” a second feature may include the first and second features being in direct contact with each other, or the first and second features being in contact with each other not directly but via another feature therebetween.

[0057] In the description of this application, a first feature “on”, “above” and “above” a second feature includes the first feature being directly above and obliquely above the second feature, or simply means that the first feature is horizontally higher than the second feature.

[0058] The term "plurality" used in this application refers to two or more (including two).

[0059] Reference below Figures 1-16 An air outlet frame 100 , an air outlet assembly 1000 , and an air conditioner 10000 according to an embodiment of the present application are described.

[0060] like Figure 4 、 Figure 9 as well as Figure 10 As shown, according to the air outlet frame 100 of the embodiment of the first aspect of the present application, the air outlet frame 100 includes: a top plate 1, a bottom plate 2, an air duct plate 3, a flow collecting member 4 and a first drainage member 5.

[0061] Among them, the air duct plate 3 is arranged between the top plate 1 and the bottom plate 2, and defines the air outlet duct 3a; the air outlet frame 100 has an air outlet side 100b and an air inlet side 100a, the collecting part 4 is located on the air outlet side 100b, and is arranged on the side of the air duct plate 3 away from the air outlet duct 3a to collect the condensation water generated on the air duct plate 3, and the first drainage part 5 is arranged on the air inlet side 100a and is connected to the collecting part 4 for discharging the condensation water.

[0062] Specifically, the top plate 1 and the bottom plate 2 of the air outlet frame 100 can be arranged relative to each other in the height direction, and the two can be used to enclose and protect at least part of the internal components of the air outlet frame 100; the air duct plate 3 can be arranged between the top plate 1 and the bottom plate 2, and define one or more air outlet ducts 3a for guiding and distributing air flow; the air outlet side 100b of the air outlet frame 100 is the side where the air flows out of the air outlet frame 100, and the air inlet side 100a of the air outlet frame 100 is the side where the air enters the air outlet frame 100, and the flow collecting member 4 is located on the air outlet side 100b , and is arranged on the side of the air duct plate 3 away from the air outlet duct 3a. For example, the air outlet duct 3a is constructed as two that are spaced apart in the horizontal direction and at least partially away from each other, then the collecting member 4 can be arranged on the air duct plate 3 in a side area between the two air outlet ducts 3a away from each other, and the collecting member 4 is used to collect the condensation water generated on the air duct plate 3; the first drainage member 5 is arranged on the air inlet side 100a and is connected to the collecting member 4. The condensation water collected by the collecting member 4 can flow into the first drainage member 5 and be discharged to the designated discharge position through the first drainage member 5.

[0063] According to the air outlet frame 100 of the present application, the condensation water generated on the air duct plate 3 can be collected and discharged in a timely manner through the collecting member 4 and the first drainage member 5, thereby preventing the condensation water from being retained in the air outlet frame 100, effectively improving the dryness and cleanliness of the interior of the air outlet frame 100, and ensuring the working performance, safety and life of the components. Compared with the related art that adopts the sponge gluing method, which leads to high cost, low assembly efficiency and high risk of failure, the collecting member 4 and the first drainage member 5 in the present application are part of the components on the air outlet frame 100, and the collecting member 4 and the first drainage member 5 can be constructed as an integral part with the air duct plate 3 and other components, thereby simplifying the assembly process and improving production efficiency. In addition, no additional sponge and adhesive materials are required, which can save material costs. At the same time, the collecting member 4 and the first drainage member 5 are components of the air outlet frame 100, and they are firmly connected to the air duct plate 3 and other components, which can effectively improve durability and ensure the long-term reliability of water collection and drainage.

[0064] like Figure 4 and Figure 10 As shown, according to some embodiments of the present application, there are multiple current collecting members 4, and the multiple current collecting members 4 are arranged at intervals between the top plate 1 and the bottom plate 2.

[0065] Specifically, the current collecting members 4 are constructed to be arranged in a plurality between the top plate 1 and the bottom plate 2 at intervals, and the plurality of current collecting members 4 are sequentially located in different areas between the top plate 1 and the bottom plate 2. When air passes through the air outlet duct 3a, the condensation water generated on the duct plate 3 can be evenly collected by these spaced current collecting members 4, and the condensation water in different areas can be promptly and quickly collected by the current collecting members 4 in the corresponding areas, thus improving the uniformity, efficiency and effect of collecting the condensation water generated on the duct plate 3. The plurality of current collecting members 4 can be arranged at equal intervals or at different distances. The specific layout position and number of the current collecting members 4 can be reasonably arranged according to factors such as the height, width and amount of condensation water generated of the duct plate 3, so as to improve the adaptability of the current collecting members 4 to the water collection of the duct plate 3, to ensure that each current collecting member 4 can effectively collect the condensation water, and to improve the condensation water treatment efficiency. In addition, the provision of multiple current collecting members 4 can also support and strengthen the air duct plate 3, thereby enhancing the structural strength and stability of the air outlet frame 100, which is beneficial to improving its anti-deformation ability and extending its service life.

[0066] In addition, in some specific embodiments of the present application, Figure 4-Figure 7 As shown, the current collecting members 4 are constructed as three, spaced apart in sequence from the top plate 1 toward the bottom plate 2, and are respectively a first current collecting member 4a, a second current collecting member 4b, and a third current collecting member 4c. The first current collecting member 4a is disposed adjacent to the top plate 1, the second current collecting member 4b is located in the middle region between the top plate 1 and the bottom plate 2, and the third current collecting member 4c is disposed adjacent to the bottom plate 2. The first current collecting member 4a, the second current collecting member 4b, and the third current collecting member 4c can respectively collect condensation water from the top, middle, and lower regions of the air duct plate 3 between the top plate 1 and the bottom plate 2, ensuring comprehensive coverage of the condensation water collection area of ​​the air duct plate 3 and good collection uniformity, thereby ensuring that the current collecting members 4 have good water collection effects.

[0067] like Figure 4-Figure 7 As shown, according to some embodiments of the present application, the current collecting member 4 has a drain port 41 a , and the current collecting member 4 located below is suitable for receiving condensed water discharged from the current collecting member 4 above.

[0068] Specifically, each current collecting member 4 has a drain port 41a for draining the collected condensation water. Utilizing the spatial relationship of the multiple current collecting members 4 arranged sequentially in the height direction, the current collecting member 4 located below, in addition to being responsible for collecting the condensation water in its own area, also has the function of receiving the condensation water discharged by the current collecting member 4 above. After the condensation water collected by the current collecting member 4 located above flows out of the drain port 41a, it can flow downward to the current collecting member 4 below under the action of its own gravity. The condensation water collected by the current collecting member 4 below and the condensation water discharged by the current collecting member 4 above can continue to flow downward automatically to the next current collecting member 4 under the action of gravity. Condensation water from different areas can eventually flow into the first drain member 5 through the same current collecting member 4 and be smoothly discharged from the first drain member 5. The form of receiving and discharging between the current collecting members 4 can achieve continuous collection and efficient discharge of condensation water, and no additional components such as drainage pipes are required between the current collecting members 4, saving production costs.

[0069] It can be understood that the process of each current collecting component 4 collecting the condensation water in its own area and the process of receiving the condensation water discharged by the upper current collecting component 4 can be carried out simultaneously. Multiple current collecting components 4 can jointly improve the efficiency and effect of condensation water treatment.

[0070] like Figure 8 、 Figure 9 、 Figure 13 as well as Figure 14 As shown, according to some embodiments of the present application, the first drainage member 5 is disposed adjacent to the bottom plate 2 and is connected to the current collecting member 4 located at the lowermost end.

[0071] Specifically, the first drainage member 5 can be arranged at a position adjacent to the base plate 2. When condensation water is generated on the air duct plate 3, the condensation water is collected by the collecting member 4 in the corresponding area, and flows to the collecting member 4 below through the drainage port 41a of the collecting member 4, and then flows downward through the discharge port of the collecting member 4 below to the next collecting member 4, and so on, until it flows to the lowermost collecting member 4, and the lowermost collecting member 4 is connected to the first drainage member 5. Therefore, after the condensation water reaches the lowermost collecting member 4, it can flow into the first drainage member 5 to be discharged from the air outlet frame 100. The entire drainage process is natural and smooth, and no additional power or equipment support is required.

[0072] It should be pointed out that the above-mentioned first drainage member 5 is arranged adjacent to the bottom plate 2, which not only facilitates the smooth discharge of condensation water, but also avoids drainage blockage or backflow, and can improve the drainage smoothness and reliability of the first drainage member 5.

[0073] like Figure 13-16As shown, according to some embodiments of the present application, there are multiple air outlet ducts 3a, and the air outlet frame 100 also includes: a connecting plate 6, the connecting plate 6 is located between adjacent air outlet ducts 3a, and is suitable for connecting adjacent air duct plates 3, the connecting plate 6 has a connecting channel 6a, the collecting member 4 and the first drainage member 5 are located on both sides of the connecting plate 6, and are connected through the connecting channel 6a, and the first drainage member 5 is located below the collecting member 4.

[0074] Specifically, the air outlet frame 100 includes multiple air outlet ducts 3a, which can be arranged horizontally at intervals and together constitute the air circulation system of the air outlet frame 100. The connecting plate 6 is located between adjacent air outlet ducts 3a and connects the adjacent air duct plates 3 to ensure the stability and integrity of the entire air outlet frame 100 structure. The connecting plate 6 has a through-going communication channel 6a. One end of the communication channel 6a can communicate with the drain port 41a of the flow collector 4 located on the air outlet side 100b, and the other end can communicate with the first drain member 5 located on the air inlet side 100a. Thus, the communication channel 6a connects the flow collector 4 and the first drain member 5 located on both sides of the connecting plate 6, ensuring that condensation water can flow smoothly from the flow collector 4 to the first drain member 5. Among them, the first drainage member 5 is located below the collecting member 4. It can be understood that the height of the first drainage member 5 is lower than the height of the collecting member 4, and the inlet of the first drainage member 5 is lower than the drain port 41a of the collecting member 4. In this way, the condensation water can automatically flow from the drain port 41a of the collecting member 4 to the inlet of the first drainage member 5 under the action of gravity, so as to be discharged from the air outlet frame 100 naturally and smoothly, thereby ensuring the drainage reliability and efficiency.

[0075] In addition, in some specific embodiments of the present application, the bottom of the current collecting part 4 located at the lowest end among the multiple current collecting parts 4 is directly connected to the top of the first drainage part 5, and the drainage port 41a of the current collecting part 4 located at the lowest end is directly connected to the first drainage part 5 to achieve rapid discharge of condensation water collected by the current collecting part 4.

[0076] like Figure 9 and Figure 12 As shown, according to some embodiments of the present application, the first drainage member 5 extends away from the connecting plate 6 on the air inlet side 100a, and the first drainage member 5 is connected to the air duct plate 3 on one side in the width direction, and defines a first drainage groove 5a for draining condensation water.

[0077] Specifically, the first drain member 5 extends away from the connecting plate 6 on the air inlet side 100a, allowing the end of the first drain member 5 facing away from the connecting plate 6 to more conveniently cooperate with an internal or external drainage system, thereby allowing condensation to be smoothly discharged to a designated location, thereby ensuring the accuracy and reliability of drainage by the first drain member 5. One side of the first drain member 5 in the width direction can be connected to the air duct plate 3 to provide support for the first drainage groove 5a. The first drainage groove 5a is defined between the first drain member 5 and the air duct plate 3, and the first drainage groove 5a receives and guides the condensation to be discharged toward a predetermined discharge location.

[0078] It should be noted that, while the first drainage member 5 has a drainage function, it can also collect condensation generated on at least a portion of the air duct plate 3 on the air inlet side 100a. Specifically, when condensation is generated on at least a portion of the air duct plate 3 on the air inlet side 100a, the condensation can flow downward along the surface of the air duct plate 3 under the action of its own gravity and enter the first drainage groove 5a along one side of the first drainage member 5 in the width direction. As a result, the condensation generated on at least a portion of the air duct plate 3 on the air inlet side 100a can also be collected and discharged through the first drainage groove 5a, thereby further improving the dryness and cleanliness of the interior of the air outlet frame 100.

[0079] like Figures 8-16 As shown, according to some embodiments of the present application, the air outlet frame 100 also includes: a second drainage member 7, the second drainage member 7 is arranged around the air duct plate 3, and defines a second drainage groove 7a with the air duct plate 3, the second drainage groove 7a is connected to the first drainage groove 5a, and at least one of the second drainage groove 7a and the first drainage groove 5a extends above the collecting plate.

[0080] Specifically, the second drainage member 7 is located on the air inlet side 100a of the air outlet frame 100. The second drainage member 7 is arranged around the air duct plate 3 and defines a second drainage groove 7a with the air duct plate 3. The second discharge groove can collect and discharge the condensation water generated on at least another part of the air inlet side 100a of the air duct plate 3. The process is that when the second drainage member 7 surrounds the corresponding air inlet side 100a area of ​​the air duct plate 3 to generate condensation water, the condensation water flows downward along the surface of the air duct plate 3 under the action of its own gravity, and flows into the second drainage groove 7a, thereby being naturally and smoothly collected and discharged by the second drainage member 7, thereby realizing the comprehensive collection of the condensation water generated on the air inlet side 100a and the air outlet side 100b of the air duct plate 3.

[0081] In the embodiment of the present application, the second drainage groove 7a is connected to the first drainage groove 5a, and at least one of the second drainage groove 7a and the first drainage groove 5a extends above the collecting plate, so that the condensation water in the second drainage groove 7a and the first drainage groove 5a can be smoothly discharged to the collecting plate, so as to be uniformly discharged at the collecting plate. The second drainage groove 7a is connected to the first drainage groove 5a to form an efficient drainage network. Through the coordinated action of the second drainage member 7 and the first drainage member 5, the condensation water on both sides of the air duct plate 3 is discharged simultaneously. The condensation water on both sides of the air duct plate 3 is collected and discharged into a common drainage network, which is conducive to reducing the number of components and improving the structural compactness of the air outlet frame 100. At the same time, it can also optimize the space occupied by the collection and discharge of condensation water, which helps to keep more areas in the air outlet frame 100 dry.

[0082] In addition, in some specific embodiments of the present application, Figure 8 and Figure 9 As shown, the first drain member 5 includes a first main plate 51 and a first baffle 52 disposed on the side of the first main plate 51 facing away from the air duct plate 3 in the width direction. The first main plate 51, the first baffle 52, and the air duct plate 3 collectively define a first drain groove 5a. The second drain member 7 includes a second main plate 71 and a second baffle 72 disposed on the side of the second main plate 71 facing away from the air duct plate 3 in the width direction. The second main plate 71, the second baffle 72, and the air duct plate 3 collectively define a second drain groove 7a. At least a portion of the length edge of the first main plate 51 is connected to the top of at least a portion of the baffle, so that the first drain groove 5a and the second drain groove 7a are connected. The first baffle 52 and the second baffle 72 both have a certain length in the height direction, which can block condensation water in the first drain groove 5a and the second drain groove 7a, effectively preventing it from overflowing. At least part of the length edge of the first main body plate 51 is connected to the top of at least part of the baffle, so that the first drainage groove 5a is connected to the second drainage groove 7a. At the same time, the height of the first drainage groove 5a is higher than the height of the second drainage groove 7a. Due to the height difference, the condensation water in the first drainage groove 5a can naturally flow into the second drainage groove 7a to achieve uniform discharge in the second drainage groove 7a.

[0083] Furthermore, in some other specific embodiments of the present application, the first body plate 51 is tilted in a direction away from the connecting plate 6 and toward the direction away from the top plate 1, and the second body plate 71 is tilted in a direction away from the air duct plate 3 and toward the direction away from the top plate 1. The first body plate 51 and the second body plate 71 are tilted so that both the first body plate 51 and the second body plate 71 form a downward slope. Due to the existence of the slope, the water flow is accelerated by gravity to flow to the lower point, that is, the outlet position of the first drainage groove 5a and the second drainage groove 7a, which helps to improve drainage efficiency and drainage continuity.

[0084] like Figure 5-Figure 7 As shown, according to some embodiments of the present application, the collecting part 4 includes a base plate 41 and a side plate 42. The base plate 41 is arranged around the part of the air duct plate 3 located on the air outlet side 100b. The side plate 42 is connected to the peripheral side of the base plate 41. The drain outlet 41a is formed at one end of the base plate 41 adjacent to the air inlet side 100a.

[0085] Specifically, the flow collecting member 4 can be composed of two parts: a base plate 41 and a side plate 42. The base plate 41 is arranged around the portion of the air duct plate 3 located on the air outlet side 100b, and the side plate 42 is arranged on the circumference of the base plate 41. The side plate 42 has a certain length in the height direction. The side plate 42, the base plate 41 and the air duct plate 3 can jointly define a flow collecting trough. The baffle fixes the position of the base plate 41 and can prevent condensation water in the flow collecting trough from overflowing. The base plate 41 forms a cover for the portion of the air duct plate 3 located on the air outlet side 100b, which can ensure the comprehensive collection of condensation water generated by the portion of the air duct plate 3 located on the air outlet side 100b, while the side plate 42 can fix the position of the base plate 41 and prevent condensation water from overflowing. Among them, the drain port 41a is formed at one end of the base plate 41 adjacent to the air inlet side 100a, so that the condensation water can naturally flow to the drain port 41a during the collection process, so as to flow to the next flow collecting member 4 and be smoothly discharged from the air outlet frame 100.

[0086] like Figure 3 As shown, according to the air outlet component 1000 of the second aspect embodiment of the present application, the air outlet component 1000 includes: the air outlet frame 100 described in the above embodiment. Since the air outlet component 1000 according to the second aspect embodiment of the present application includes the air outlet frame 100 described in the above embodiment, the air outlet frame 100 of the air outlet component 1000 has a collecting part 4, a first drainage part 5 and a second drainage part 7, so as to collect and discharge the condensation water generated on the air duct plate 3 in time, so as to improve the dryness and cleanliness inside the air outlet frame 100, and can ensure the working performance, safety and life of the air outlet frame 100 components, thereby improving the working performance and reliability of the air outlet component 1000.

[0087] In addition, in some specific embodiments of the present application, the air outlet assembly 1000 further includes: a panel 200, a microporous plate 300, a grille 400, a louver connecting rod 500, a driving assembly 600, and a side plate 700. Among them, the panel 200 covers the air outlet side 100b of the air outlet frame 100, and the side plate 700 is arranged on both sides of the air outlet frame 100 in the width direction. The panel 200 and the side plate 700 can decorate, beautify and protect the internal components of the air outlet frame 100; the microporous plate 300 and the grille 400 are sequentially arranged on one side of the air duct plate 3 and cover the air inlet duct. The grille 400 is used to block foreign matter from the outside and protect the interior of the air conditioner 10000 from pollution and damage. A plurality of micropores are provided on the microporous plate 300 to achieve the air conditioner 10000. The air outlet is softer and more uniform, avoiding the discomfort of direct blowing on the human body and improving the comfort of the user; the louver connecting rod 500 is arranged between the grille 400 and the air duct plate 3, and is accommodated in the air outlet duct 3a. The louver connecting rod 500 is connected to the air outlet frame 100 through the driving component 600. The louver connecting rod 500 has multiple louver blades. Driven by the driving component 600, the louver connecting rod 500 can reciprocate relative to the air outlet frame 100 and drive the louver blades to rotate, so as to realize the wind direction adjustment and wind sweeping functions of the air conditioner 10000.

[0088] like Figure 1 and Figure 2 As shown, according to the air conditioner 10000 of the third embodiment of the present application, the air conditioner 10000 includes: the air outlet component 1000 described in the above embodiment, and the technical effect produced is consistent with that in the above embodiment, which will not be repeated here.

[0089] In addition, in some specific embodiments of the present application, the air conditioner 10000 further includes an air duct assembly 2000, a fresh air assembly 3000, a rear box assembly 4000, an electric control box assembly 5000, a top cover 6000, and a chassis 7000. The rear box assembly 4000 is connected to the air outlet assembly 1000 and is arranged opposite to each other, defining a receiving cavity therebetween. The air outlet assembly 1000 and the rear box assembly 4000 can serve to decorate, beautify, and protect the internal components of the air conditioner 10000. Furthermore, the air outlet assembly 1000 can achieve air discharge through the air outlet frame 100. The air duct assembly 2000, the fresh air assembly 3000, and the electric control box assembly 5000 are all housed in the receiving cavity. The air duct assembly 2000 is used to achieve functions such as air intake and air discharge of the air conditioner 10000. The fresh air component 3000 is used to realize the fresh air function of the air conditioner 10000, and the electric control box component 5000 is responsible for controlling the power distribution and logical operation of the entire air conditioner 10000 system; the top cover 6000 and the bottom plate 7000 are respectively arranged at the top and bottom ends of the air outlet component 1000 and the rear box component 4000, and close the accommodating cavity. The top cover 6000 and the bottom plate 7000 can support, fix and protect the internal components of the air conditioner 10000, and increase the aesthetics of the exterior of the air conditioner 10000.

[0090] Throughout this specification, reference to terms such as "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 present application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0091] Although the embodiments of the present application have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions, and variations may be made to the embodiments without departing from the principles and intent of the present application, and that the scope of the present application is defined by the claims and their equivalents.

Claims

1. An air outlet frame, characterized in that: include: Top and bottom plates; an air duct plate, the air duct plate being arranged between the top plate and the bottom plate and defining an air outlet duct; The air outlet frame has an air outlet side and an air inlet side. The air collecting member is located on the air outlet side and is arranged on the side of the air duct plate away from the air outlet duct to collect the condensation water generated on the air duct plate. The first drainage member is arranged on the air inlet side and is connected to the air collecting member to discharge the condensation water.

2. The air outlet frame according to claim 1, characterized in that: There are a plurality of current collecting members, and the plurality of current collecting members are spaced apart and arranged between the top plate and the bottom plate.

3. The air outlet frame according to claim 2, characterized in that: The current collecting member has a drain port, and the current collecting member located at the bottom is suitable for receiving the condensed water discharged by the current collecting member above.

4. The air outlet frame according to claim 2, characterized in that: The first drainage member is disposed adjacent to the bottom plate and is communicated with the current collecting member located at the lowermost end.

5. The air outlet frame according to claim 1, characterized in that: There are multiple air outlet ducts, and the air outlet frame also includes: a connecting plate, which is located between adjacent air outlet ducts and is suitable for connecting adjacent air duct plates. The connecting plate has a connecting channel, and the collecting member and the first drainage member are located on both sides of the connecting plate and are connected through the connecting channel, and the first drainage member is located below the collecting member.

6. The air outlet frame according to claim 5, characterized in that: The first drainage member extends away from the connecting plate on the air inlet side, is connected to the air duct plate on one side in the width direction, and defines a first drainage groove for draining the condensation water.

7. The air outlet frame according to claim 6, characterized in that: The air outlet frame also includes: a second drainage member, which is arranged around the air duct plate and defines a second drainage groove with the air duct plate. The second drainage groove is connected to the first drainage groove, and at least one of the second drainage groove and the first drainage groove extends above the collecting plate.

8. The air outlet frame according to any one of claims 1 to 7, characterized in that: The collecting member includes a base plate and a side plate. The base plate is arranged around the part of the air duct plate located on the air outlet side. The side plate is connected to the peripheral side of the base plate. The drainage port of the collecting member is formed at one end of the base plate adjacent to the air inlet side.

9. An air outlet component, characterized in that: include: The air outlet frame according to any one of claims 1 to 8.

10. An air conditioner, characterized in that: include: The air outlet assembly according to claim 9.