CN223165716U - Air conditioning drainage structure and air conditioner - Google Patents

Air conditioning drainage structure and air conditioner

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Publication number
CN223165716U
CN223165716U CN202422154850.9U CN202422154850U CN223165716U CN 223165716 U CN223165716 U CN 223165716U CN 202422154850 U CN202422154850 U CN 202422154850U CN 223165716 U CN223165716 U CN 223165716U
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CN
China
Prior art keywords
water
base
air conditioner
water diversion
bearing seat
Prior art date
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Application number
CN202422154850.9U
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Chinese (zh)
Inventor
沐原
郑黎明
熊本文
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xiaomi Intelligent Home Appliances Wuhan Co ltd
Beijing Xiaomi Mobile Software Co Ltd
Xiaomi Technology Wuhan Co Ltd
Original Assignee
Xiaomi Intelligent Home Appliances Wuhan Co ltd
Beijing Xiaomi Mobile Software Co Ltd
Xiaomi Technology Wuhan Co Ltd
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Publication date
Application filed by Xiaomi Intelligent Home Appliances Wuhan Co ltd, Beijing Xiaomi Mobile Software Co Ltd, Xiaomi Technology Wuhan Co Ltd filed Critical Xiaomi Intelligent Home Appliances Wuhan Co ltd
Priority to CN202422154850.9U priority Critical patent/CN223165716U/en
Application granted granted Critical
Publication of CN223165716U publication Critical patent/CN223165716U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Abstract

本实用新型公开一种空调排水结构和空调器,空调排水结构包括底座和引水组件,底座在第一方向的第一端设有轴承座安装槽,第一方向与底座的高度方向垂直,轴承座安装槽的内壁面设有沿第一方向贯通底座的第一排水孔,第一排水孔用于将轴承座安装槽内的冷凝水导引至底座在第一方向的第二端,引水组件设在底座在第一方向的第二端,引水组件与第一排水孔衔接并用于将第一排水孔内的冷凝水导引至接水盘内。本实用新型提供的空调排水结构具有便于将轴承座上的冷凝水排至接水盘,避免出现滴水现象的优点。

The utility model discloses an air conditioner drainage structure and an air conditioner. The air conditioner drainage structure includes a base and a water diversion assembly. The base is provided with a bearing seat mounting groove at a first end in a first direction, the first direction being perpendicular to the height direction of the base. The inner wall surface of the bearing seat mounting groove is provided with a first drainage hole that penetrates the base along the first direction. The first drainage hole is used to guide condensed water in the bearing seat mounting groove to a second end of the base in the first direction. The water diversion assembly is provided at the second end of the base in the first direction. The water diversion assembly is connected to the first drainage hole and is used to guide the condensed water in the first drainage hole to a water receiving pan. The air conditioner drainage structure provided by the utility model has the advantage of facilitating the drainage of condensed water from the bearing seat to the water receiving pan, thus avoiding dripping.

Description

Air conditioner drainage structure and air conditioner
Technical Field
The utility model relates to the technical field of air conditioners, in particular to an air conditioner drainage structure and an air conditioner.
Background
A bearing seat is usually arranged on a base in the air conditioner, and a bearing on the bearing seat is matched with one end of the through-flow impeller, which is away from the motor, so that the rotation stability and labor saving of the through-flow impeller are ensured. Wherein, the bearing frame is through the joint in the mounting groove on the base, and because the terminal surface of bearing frame is adjacent through-flow impeller, the temperature is lower, produces the comdenstion water easily on its terminal surface, and the comdenstion water can drip in the mounting groove and outside the air conditioner was dripped along the medial surface of base under the action of gravity, caused the drip, influences user experience.
Disclosure of utility model
The present utility model aims to solve at least one of the technical problems in the related art to some extent.
Therefore, the embodiment of the utility model provides an air conditioner drainage structure, which has the advantages of being convenient for draining condensed water on a bearing seat to a water receiving disc and avoiding the phenomenon of dripping.
The embodiment of the utility model also provides an air conditioner.
The air conditioner drainage structure comprises a base and a water diversion assembly, wherein a bearing seat installation groove is formed in the first end of the base in the first direction, the first direction is perpendicular to the height direction of the base, a first drainage hole penetrating through the base along the first direction is formed in the inner wall surface of the bearing seat installation groove, the first drainage hole is used for guiding condensate water in the bearing seat installation groove to the second end of the base in the first direction, the water diversion assembly is arranged at the second end of the base in the first direction, and the water diversion assembly is connected with the first drainage hole and used for guiding condensate water in the first drainage hole to a water receiving disc.
According to the air conditioner drainage structure provided by the embodiment of the utility model, the bearing seat mounting groove is formed in the first end of the base in the first direction, the first drainage hole extending to the second end of the base in the first direction is formed in the inner wall surface of the bearing seat mounting groove, when condensate water generated on the bearing seat mounted in the bearing seat mounting groove slides into the bearing seat mounting groove, the condensate water can be guided to the first drainage hole and is guided to the second end of the base in the first direction through the first drainage hole, and finally guided into the water receiving disc through the water diversion assembly, so that the air conditioner is prevented from dripping caused by direct overflow of the condensate water in the bearing seat mounting groove, and the user experience is good.
In some embodiments, a water blocking rib is arranged on a surface, opposite to the end surface of the bearing seat, of the inner wall surface of the bearing seat mounting groove, the water blocking rib is located on one side, facing the first water drain hole, of the bearing seat in the height direction, the extending direction of the water blocking rib forms an angle with the height direction, and one end, far away from the bearing seat, of the water blocking rib in the height direction is connected with the first water drain hole.
In some embodiments, the water diversion assembly comprises a water receiving plate connected to the second end of the base in the first direction, the water receiving plate and the base surround a water receiving tank with an upward forming opening, the base is provided with a second water discharging hole communicated with the water receiving tank and the water receiving disc, and the water receiving tank is located below the first water discharging hole and can receive condensed water from the first water discharging hole.
In some embodiments, the water diversion assembly further comprises two first water diversion ribs, the two first water diversion ribs are respectively arranged on two sides of the first water discharge hole in a second direction, the second direction is perpendicular to the first direction and the height direction, the two side surfaces of the two first water diversion ribs, which are opposite to each other, are connected with the surface of the base at the second end of the first direction and form a diversion channel around the surface, and the diversion channel is connected with the first water discharge hole and the water receiving groove.
In some embodiments, the top surface of the base is provided with an accommodating groove with an upward opening, the inner wall surface of the accommodating groove is provided with a third water drain hole extending to the surface of the second end of the base in the first direction, and the water receiving groove is positioned below the third water drain hole and can receive condensed water from the third water drain hole.
In some embodiments, the third drain holes are plural and spaced apart along a second direction, the second direction being perpendicular to the first direction and the height direction.
In some embodiments, the water diversion assembly further comprises a second water diversion rib extending in the height direction and located above the water receiving tank, the second water diversion rib adapted to direct condensed water in the third drain hole into the water receiving tank.
In some embodiments, the second water diversion ribs are multiple and are arranged at intervals along a second direction, the second direction is perpendicular to the first direction and the height direction, and the third water drainage holes and the second water diversion ribs are arranged at intervals along the second direction.
In some embodiments, the water diversion assembly further comprises a third water diversion rib, the extending direction of the third water diversion rib forms an acute angle with the second direction, at least part of the lower end of the second water diversion rib is connected with the third water diversion rib, and the third water diversion rib is located above the water receiving plate.
An air conditioner according to an embodiment of the present utility model includes the air conditioner drain structure as described in any one of the above embodiments.
The technical advantages of the air conditioner according to the embodiment of the present utility model are the same as those of the air conditioner drainage structure of the above embodiment, and will not be described here again.
Drawings
Fig. 1 is a schematic front side view of an air conditioner drainage structure according to an embodiment of the present utility model.
Fig. 2 is an enlarged view of fig. 1 at a.
Fig. 3 is another front side schematic view of an air conditioner drain structure according to an embodiment of the present utility model.
Fig. 4 is a rear side schematic view of an air conditioner drainage structure according to an embodiment of the present utility model.
Fig. 5 is another rear side schematic view of an air conditioner drain structure according to an embodiment of the present utility model.
Fig. 6 is a schematic rear view of still another air conditioner drain structure according to an embodiment of the present utility model.
Fig. 7 is an enlarged view of fig. 6 at B.
Reference numerals:
1. The water diversion device comprises a base, a bearing seat mounting groove, 12, water blocking ribs, 13, a first water drainage hole, 14, a second water drainage hole, 15, a third water drainage hole, 16, a containing groove, 17, a diversion channel, 2, a water receiving plate, 3, a first water diversion rib, 4, a second water diversion rib and 5, a third water diversion rib.
Detailed Description
Reference will now be made in detail to embodiments of the present utility model, examples of which are illustrated in the accompanying drawings. The embodiments described below by referring to the drawings are illustrative and intended to explain the present utility model and should not be construed as limiting the utility model.
An air conditioner drain structure according to an embodiment of the present utility model is described below with reference to fig. 1 to 6.
The air conditioner drainage structure provided by the embodiment of the utility model comprises a base 1 and a water diversion assembly. The base 1 is provided with a bearing seat mounting groove 11 at a first end of a first direction, the first direction is perpendicular to the height direction of the base 1, the inner wall surface of the bearing seat mounting groove 11 is provided with a first drain hole 13 penetrating through the base 1 along the first direction, and the first drain hole 13 is used for guiding condensed water in the bearing seat mounting groove 11 to a second end of the base 1 in the first direction. The diversion component is arranged at the second end of the base 1 in the first direction, is connected with the first water discharge hole 13 and is used for guiding condensed water in the first water discharge hole 13 into the water receiving disc.
According to the air conditioner drainage structure provided by the embodiment of the utility model, the first end of the base 1 in the first direction is provided with the bearing seat installation groove 11, the inner wall surface of the bearing seat installation groove 11 is provided with the first drainage hole 13 extending to the second end of the base 1 in the first direction, when condensed water generated on the bearing seat installed in the bearing seat installation groove 11 slides into the bearing seat installation groove 11, the condensed water can be guided to the first drainage hole 13, guided to the second end of the base 1 in the first direction by the first drainage hole 13 and finally guided into the water receiving disc by the water diversion assembly, so that the phenomenon that the condensed water in the bearing seat installation groove 11 directly overflows to cause the air conditioner to drip is effectively avoided, and the user experience is good.
The bearing seat mounting groove 11 is provided with a clamping piece, and at least part of the bearing seat extends into the bearing seat mounting groove 11 and is clamped with the clamping piece. The first direction is the front-back direction of the installed air conditioner, the second direction is the left-right direction of the installed air conditioner, and the height direction of the base 1 is the up-down direction of the installed air conditioner. And the first end and the second end of the base 1 in the first direction are respectively the front end and the rear end of the base 1.
In some embodiments, as shown in fig. 2, a water blocking rib 12 is disposed on a surface opposite to an end surface of the bearing seat in the inner wall surface of the bearing seat mounting groove 11, the water blocking rib 12 is located on a side of the bearing seat facing the first drain hole 13 in the height direction, the extending direction of the water blocking rib 12 is angled to the height direction, and one end of the water blocking rib 12 away from the bearing seat in the height direction is engaged with the first drain hole 13.
After at least part of the bearing seat is clamped with the clamping piece in the bearing seat mounting groove 11, the bearing seat, the water retaining rib 12 and the inner wall surface of the bearing seat mounting groove 11 surround to form a guide channel, the extending direction of the guide channel forms an angle with the height direction and the front-back direction, the upper end of the guide channel is connected with the lower edge of the bearing seat, the lower end of the guide channel is connected with the first drain hole 13, and then condensed water can be better prevented from sliding out of the bearing seat mounting groove 11, and the condensed water is guided into the first drain hole 13 more quickly.
Specifically, the inner wall surface of the bearing housing mounting groove 11 opposite to the end surface of the bearing housing is a vertical surface, and the water deflector rib 12 extends obliquely downward rearward.
In some embodiments, as shown in fig. 4-6, the water diversion assembly comprises a water receiving plate 2, the water receiving plate 2 is connected to the second end of the base 1 in the first direction, the water receiving plate 2 and the base 1 surround a water receiving groove with an upward forming opening, the base 1 is provided with a second water discharging hole 14 communicated with the water receiving groove and the water receiving disc, and the water receiving groove is positioned below the first water discharging hole 13 and can receive condensed water from the first water discharging hole 13.
The top surface of the water receiving plate 2 and the rear end surface of the base 1 extend to the left and right ends of the base 1 along the left and right directions around the formed water receiving grooves, and the water receiving grooves are used for receiving all condensed water from the rear end surface of the base 1. At this time, the condensed water discharged through the first drain hole 13 also flows into the water receiving tank and flows from the second drain hole 14 to the water receiving tray, and a structure for guiding part of the condensed water to the water receiving tray is not required to be additionally arranged, so that the air-conditioning drain structure is simple in structure and low in manufacturing cost.
Specifically, the water receiving plate 2 has a V-shaped plate structure with a downward opening, that is, the height of the water receiving plate 2 at the center of the water receiving plate in the left-right direction is higher than the heights of the two ends, and the second water discharge holes 14 are two and are respectively located at the two ends of the water receiving plate 2 in the left-right direction.
In some embodiments, as shown in fig. 4-7, the water diversion assembly further includes two first water diversion ribs 3, the two first water diversion ribs 3 are respectively disposed on two sides of the first water drainage hole 13 in the second direction, the second direction is perpendicular to the first direction and the height direction, the sides of the two first water diversion ribs 3 opposite to each other are engaged with the surface of the second end of the base 1 in the first direction and form a diversion channel 17 around the surface, and the diversion channel 17 is engaged with the first water drainage hole 13 and the water reception groove.
When the condensed water flowing to the rear end surface of the base 1 from the first water drain hole 13 flows downwards under the action of gravity, the two first water diversion ribs 3 effectively change the flow track of the condensed water, so that the phenomenon that the flow track of the condensed water is excessively inclined to deviate from the position right above the water receiving groove, and then cannot flow to the water receiving groove to cause water dripping phenomenon is avoided.
Specifically, the two first water diversion ribs 3 are located above the water receiving groove, the two first water diversion ribs 3 extend in the height direction, the upper end of the first water diversion rib 3 is higher than the first water drainage hole 13, and the lower end of the first water diversion rib 3 is adjacent to the water receiving groove but not in contact with the water receiving plate 2.
In some embodiments, as shown in fig. 3, the top surface of the base 1 is provided with an accommodating groove 16 with an upward opening, the inner wall surface of the accommodating groove 16 is provided with a third drain hole 15 extending to the surface of the second end of the base 1 in the first direction, and the water receiving groove is located below the third drain hole 15 and is capable of receiving condensed water from the third drain hole 15.
The upper end of the base 1 is close to the air duct, so that the temperature is low, condensed water is easy to form on the top surface of the base 1, and at the moment, the condensed water can be effectively accumulated by arranging the accommodating groove 16 on the top surface of the base 1, so that the phenomenon that the condensed water drops due to random flowing in the horizontal direction is avoided. And through setting up with holding tank 16 intercommunication and extend to the third wash port 15 of the rear end face of base 1 for condensate water in the holding tank 16 can be guided to the rear end face of base 1 by third wash port 15, and finally guide to in the water collector by the diversion subassembly, when effectively avoiding dripping phenomenon to produce, also avoid the comdenstion water to gather in holding tank 16 and can't discharge.
Specifically, the lower edge of the opening of the third drain hole 15 at the receiving groove 16 is at the same height as the lowest position of the receiving groove 16, thereby effectively ensuring thorough drainage of the condensed water in the receiving groove 16.
In some embodiments, as shown in fig. 3, 5 and 6, the third drain holes 15 are plural and spaced apart in a second direction perpendicular to the first direction and the height direction.
The arrangement of the plurality of third drain holes 15 at intervals in the left-right direction can drain a plurality of condensed water in the accommodating groove 16 to the rear end face of the base 1 through different third drain holes 15, so that the condensed water draining efficiency is improved, and meanwhile, the phenomenon that condensed water cannot be drained due to unexpected blocking of a certain third drain hole 15 is effectively avoided.
The plurality of third drain holes 15 are arranged at equal intervals in the left-right direction, and the number of the third drain holes 15 may be five, six, and seven. The top plate part of the base 1 protrudes out of the rear end surface of the base 1, the third drain hole 15 is positioned below the top plate, and the inner wall surface of the third drain hole 15 is connected with the bottom surface of the part of the top plate protruding out of the rear end surface of the base 1.
In some embodiments, as shown in fig. 4-6, the water diversion assembly further comprises a second water diversion rib 4, the second water diversion rib 4 extending in the height direction and being located above the water receiving tank, the second water diversion rib 4 being adapted to direct condensed water in the third drain hole 15 into the water receiving tank.
When the condensed water flowing out from the third drain hole 15 to the rear end surface of the base 1 flows downwards under the action of gravity, when the condensed water flows obliquely leftwards and rightwards due to the blocking of dust or tiny bulges on the rear end surface of the base 1, the second water diversion ribs 4 can prevent the condensed water from continuously flowing obliquely, and can flow downwards along the extending direction of the second water diversion ribs 4 so as to more reliably drop in the water receiving tank, and the risk of the water dripping phenomenon of the air conditioner is smaller.
Specifically, the lower end of the second water diversion rib 4 is adjacent to the water receiving plate 2 and is spaced apart from the water receiving plate 2, so that condensed water on the second water diversion rib 4 can be ensured to more reliably drop into the water receiving groove, and meanwhile, the influence of the second water diversion rib 4 on the flow passage of the condensed water in the water receiving groove towards the second drain hole 14 is avoided.
In some embodiments, the second water diversion ribs 4 are plural and spaced apart along a second direction, the second direction is perpendicular to the first direction and the height direction, and the third water drainage holes 15 are spaced apart from the second water diversion ribs 4 along the second direction.
The arrangement of a plurality of second water diversion ribs 4, when the comdenstion water on the terminal surface flows down behind the base 1, more easily flow to second water diversion rib 4 to in the water receiving tank more fast under the guide of second water diversion rib 4. And the arrangement of the second water diversion ribs 4 and the third water discharge holes 15 at intervals in the left-right direction can also play a good guiding effect on the condensate water positioned on the left side and the right side of the third water discharge holes 15 on the rear end face of the base 1, so that the condensate water is further prevented from flowing randomly and the sputtering risk is increased.
As shown in fig. 4 to 6, a plurality of short water diversion ribs are further provided on the rear end face of the base 1, the short water diversion ribs extend in the height direction and are provided at the upper end of the base 1, and any one of the side faces opposite to the left-right direction in the inner wall face of each third drain hole 15 is engaged with the side face of one short water diversion rib.
In some embodiments, as shown in fig. 4-6, the water diversion assembly further comprises a third water diversion rib 5, the extending direction of the third water diversion rib 5 forms an acute angle with the second direction, at least part of the lower ends of the second water diversion ribs 4 are connected with the third water diversion rib 5, and the third water diversion rib 5 is located above the water receiving plate 2.
When the second water diversion ribs 4 are multiple, the condensed water on at least two second water diversion ribs 4 can be received and guided only by one third water diversion rib 5, so that the condensed water finally enters the water receiving tank and enters the water receiving disc through the second water draining holes 14, and therefore the structure of the air conditioner water draining structure is simpler and the cost is lower. Meanwhile, the extending direction of the third water diversion ribs 5 forms an acute angle with the left-right direction, so that condensed water on the third water diversion ribs 5 can flow towards the set direction more conveniently, and the condensed water can enter the water receiving disc more reliably.
Specifically, the two ends of the third water diversion rib 5 in the left-right direction are adjacent to the two ends of the base 1 in the left-right direction respectively, and the lower end of the second water diversion rib 4 protrudes out of the bottom surface of the third water diversion rib 5. In addition, the third water diversion ribs 5 can also incline obliquely upwards so as to better restrict the flow of the condensed water along the front-back direction.
An air conditioner according to an embodiment of the present utility model includes the air conditioner drain structure of any of the above embodiments.
The technical advantages of the air conditioner according to the embodiment of the present utility model are the same as those of the air conditioner drainage structure of the above embodiment, and will not be described here again.
In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings are merely for convenience in describing the present utility model and simplifying the description, and do not indicate or imply that the device or element being referred to must have a specific orientation, be configured and operated in a specific orientation, and therefore should not be construed as limiting the present utility model.
Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In the description of the present utility model, the meaning of "plurality" means at least two, for example, two, three, etc., unless specifically defined otherwise.
In the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally formed, mechanically connected, electrically connected, or communicable with each other, directly connected, indirectly connected through an intervening medium, or in communication between two elements or in an interactive relationship between two elements, unless otherwise explicitly specified. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
In the present utility model, unless expressly stated or limited otherwise, a first feature "up" or "down" a second feature may be the first and second features in direct contact, or the first and second features in indirect contact via an intervening medium. Moreover, a first feature being "above," "over" and "on" a second feature may be a first feature being directly above or obliquely above the second feature, or simply indicating that the first feature is level higher than the second feature. The first feature being "under", "below" and "beneath" the second feature may be the first feature being directly under or obliquely below the second feature, or simply indicating that the first feature is less level than the second feature.
For purposes of this disclosure, the terms "one embodiment," "some embodiments," "example," "a particular example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, schematic representations of the above terms are not necessarily directed to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, the different embodiments or examples described in this specification and the features of the different embodiments or examples may be combined and combined by those skilled in the art without contradiction.
While the above embodiments have been shown and described, it should be understood that the above embodiments are illustrative and not to be construed as limiting the utility model, and that variations, modifications, alternatives, and variations of the above embodiments may be made by those of ordinary skill in the art without departing from the scope of the utility model.

Claims (10)

1. An air conditioner drainage structure, comprising:
The base (1), a bearing seat mounting groove (11) is formed in a first end of the base (1) in a first direction, the first direction is perpendicular to the height direction of the base (1), a first water drain hole (13) penetrating through the base (1) along the first direction is formed in the inner wall surface of the bearing seat mounting groove (11), and the first water drain hole (13) is used for guiding condensed water in the bearing seat mounting groove (11) to a second end of the base (1) in the first direction;
The water diversion assembly is arranged at the second end of the base (1) in the first direction, is connected with the first water drain hole (13) and is used for guiding condensed water in the first water drain hole (13) into the water receiving disc.
2. The air conditioner drainage structure according to claim 1, wherein a water blocking rib (12) is arranged on a surface, opposite to an end surface of the bearing seat, of an inner wall surface of the bearing seat mounting groove (11), the water blocking rib (12) is located on one side, facing the first drainage hole (13), of the bearing seat in the height direction, an extending direction of the water blocking rib (12) is angled to the height direction, and one end, away from the bearing seat in the height direction, of the water blocking rib (12) is connected with the first drainage hole (13).
3. The air conditioner drainage structure according to claim 1, wherein the water diversion assembly comprises a water receiving plate (2), the water receiving plate (2) is connected to the second end of the base (1) in the first direction, the water receiving plate (2) and the base (1) surround a water receiving tank with an upward forming opening, the base (1) is provided with a second drainage hole (14) communicated with the water receiving tank and the water receiving disc, and the water receiving tank is located below the first drainage hole (13) and can receive condensed water from the first drainage hole (13).
4. An air conditioner drainage structure according to claim 3, wherein the water diversion assembly further comprises two first water diversion ribs (3), the two first water diversion ribs (3) are respectively arranged on two sides of the first water drainage hole (13) in a second direction, the second direction is perpendicular to the first direction and the height direction, the side surfaces of the two first water diversion ribs (3) opposite to each other are connected with the surface of the base (1) at the second end of the first direction and form a diversion channel (17) around the surface, and the diversion channel (17) is connected with the first water drainage hole (13) and the water receiving groove.
5. An air conditioner drain structure according to claim 3, wherein the top surface of the base (1) is provided with an accommodating groove (16) with an upward opening, the inner wall surface of the accommodating groove (16) is provided with a third drain hole (15) extending to the surface of the second end of the base (1) in the first direction, and the water receiving groove is positioned below the third drain hole (15) and can receive condensed water from the third drain hole (15).
6. The air conditioner drain structure according to claim 5, wherein the third drain holes (15) are plural and arranged at intervals along a second direction perpendicular to the first direction and the height direction.
7. An air conditioner drain structure according to claim 5, wherein the water diversion assembly further comprises a second water diversion rib (4), the second water diversion rib (4) extending in a height direction and being located above the water receiving tank, the second water diversion rib (4) being adapted to guide condensed water in the third drain hole (15) into the water receiving tank.
8. The air conditioner drainage structure according to claim 7, wherein the second water diversion ribs (4) are arranged in a plurality of and spaced apart manner along a second direction, the second direction is perpendicular to the first direction and the height direction, and the third drainage holes (15) and the second water diversion ribs (4) are arranged in a spaced apart manner along the second direction.
9. The air conditioner drainage structure according to claim 8, wherein the water diversion assembly further comprises a third water diversion rib (5), the extending direction of the third water diversion rib (5) forms an acute angle with the second direction, at least part of the lower ends of the second water diversion ribs (4) are connected with the third water diversion rib (5), and the third water diversion rib (5) is located above the water receiving plate (2).
10. An air conditioner comprising the air conditioner drain structure according to any one of claims 1 to 9.
CN202422154850.9U 2024-09-02 2024-09-02 Air conditioning drainage structure and air conditioner Active CN223165716U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422154850.9U CN223165716U (en) 2024-09-02 2024-09-02 Air conditioning drainage structure and air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422154850.9U CN223165716U (en) 2024-09-02 2024-09-02 Air conditioning drainage structure and air conditioner

Publications (1)

Publication Number Publication Date
CN223165716U true CN223165716U (en) 2025-07-29

Family

ID=96482179

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422154850.9U Active CN223165716U (en) 2024-09-02 2024-09-02 Air conditioning drainage structure and air conditioner

Country Status (1)

Country Link
CN (1) CN223165716U (en)

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