CN219083267U - Vertical air conditioner - Google Patents

Vertical air conditioner Download PDF

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Publication number
CN219083267U
CN219083267U CN202223250628.6U CN202223250628U CN219083267U CN 219083267 U CN219083267 U CN 219083267U CN 202223250628 U CN202223250628 U CN 202223250628U CN 219083267 U CN219083267 U CN 219083267U
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CN
China
Prior art keywords
water
groove
air conditioner
top cover
floor air
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CN202223250628.6U
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Chinese (zh)
Inventor
逯斌
朱天宏
彭代杰
何忠桦
唐东林
孙瑞松
房魏彬
陈志磊
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Midea Group Co Ltd
GD Midea Air Conditioning Equipment Co Ltd
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Midea Group Co Ltd
GD Midea Air Conditioning Equipment Co Ltd
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Priority to CN202223250628.6U priority Critical patent/CN219083267U/en
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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

The utility model discloses a vertical air conditioner, which comprises a top cover and a front shell, wherein the front shell comprises a front shell main body and a top plate arranged at the top end of the front shell main body, the top plate is provided with a mounting position for mounting the top cover, the mounting position is provided with a first water retaining part at least partially encircling the top cover, the edge of the top cover is provided with a second water retaining part corresponding to the first water retaining part, and the second water retaining part is in embedded and biting connection with the first water retaining part to form a roundabout water retaining structure. According to the technical scheme, the water retaining structure is arranged between the top cover and the front shell, so that the problem of circuit short circuit caused by water flow flowing into the air conditioner from a gap between the top cover and the front shell is avoided, and the waterproof capability of the vertical air conditioner is improved.

Description

Vertical air conditioner
Technical Field
The utility model relates to the technical field of air conditioners, in particular to a vertical air conditioner.
Background
In the related art, a user may place a device with a water storage function such as a flowerpot at the upper end of an indoor cabinet, and because a gap is formed between the top cover and the front shell of the cabinet, when the water storage device is knocked over, water flows from the gap between the top cover and the front shell to the controller easily to cause a circuit short circuit, which affects the service life of the controller and the normal operation of the air conditioner.
Disclosure of Invention
The utility model mainly aims to provide a vertical air conditioner, and aims to provide a water retaining structure between a top cover and a front shell, so that the waterproof capability of the vertical air conditioner is improved.
In order to achieve the above object, the present utility model provides a floor air conditioner, comprising:
a top cover; and
the front shell comprises a front shell main body and a top plate arranged at the top end of the front shell main body, wherein the top plate is provided with a mounting position for mounting the top cover, and the mounting position is provided with a first water retaining part at least partially encircling the top cover;
the edge of the top cover is provided with a second water retaining part corresponding to the first water retaining part, and the second water retaining part is in embedded connection with the first water retaining part to form a roundabout water retaining structure.
Optionally, the second water retaining part is set to a water retaining rib, the first water retaining part is set to a water-proof tank, and the water retaining rib is embedded in the water-proof tank.
Optionally, the depth range of the water blocking ribs in the waterproof groove is 0.6mm-0.7mm.
Optionally, the width of the water blocking rib ranges from 0.3mm to 1.5mm, and the height of the water blocking rib ranges from 0.5mm to 1mm.
Optionally, the width of the waterproof groove ranges from 0.9mm to 2.1mm, and the depth of the waterproof groove ranges from 0.6mm to 1mm.
Optionally, the installation position is further provided with a water guiding groove, both ends of the water guiding groove are respectively provided with a water outlet, and the water guiding groove is used for collecting water entering a gap between the top cover and the installation position through the water retaining structure and discharging through the water outlets.
Optionally, the water guiding groove includes middle tank section and divides locates two end tank sections at middle tank section both ends, the cross-sectional area of middle tank section is greater than the cross-sectional area of end tank section, the outlet is located end tank section.
Optionally, the installation position is further provided with a reinforcing rib, and the reinforcing rib is arranged on the side wall of the middle groove section, which is far away from the first water retaining part.
Optionally, a drainage abrupt slope is arranged at the bottom of the water guide groove near the water outlet, and the drainage abrupt slope is inclined towards the water outlet.
Optionally, the width of the water guiding groove ranges from 5mm to 9mm, and/or the depth of the water guiding groove ranges from 4mm to 8mm.
Optionally, the bottom wall of the water guiding groove is further provided with a water guiding structure, and the water guiding structure is used for guiding water in the water guiding groove to the water outlet.
Optionally, the water diversion structure is a plurality of water diversion ribs arranged on the bottom wall of the water diversion groove, the water diversion ribs are arranged along the extending direction of the water diversion groove, and a plurality of water diversion ribs are arranged in the water diversion groove at intervals in a staggered manner.
Optionally, the length of the water diversion ribs ranges from 5mm to 20mm.
Optionally, the width of the water diversion ribs ranges from 0.05mm to 0.2mm.
Optionally, the height of the water diversion ribs ranges from 0.01mm to 0.1mm.
According to the technical scheme, the front shell comprises a front shell body and a top plate arranged at the top end of the front shell body, the top plate is provided with a mounting position for mounting the top cover, the mounting position is provided with a first water blocking part at least partially encircling the top cover, the edge of the top cover is provided with a second water blocking part corresponding to the first water blocking part, and the second water blocking part is in embedded and biting connection with the first water blocking part to form a roundabout water blocking structure. Compared with the prior art, the waterproof is realized through the pressing of the top cover and the front shell, or the waterproof is realized by arranging sealing materials such as sponge and the like on the electrical components in the air conditioner, so that the structure of the vertical air conditioner is simplified, the production time of the vertical air conditioner is shortened, the production efficiency of the vertical air conditioner is improved, the production cost of the vertical air conditioner is reduced, the waterproof effect of the vertical air conditioner can be improved, the electrical components are protected, the maintenance frequency of the vertical air conditioner is reduced, and the working reliability and stability of the vertical air conditioner are improved. Through changing the waterproof design between current top cap and the preceding shell, by the first manger plate portion of roof and the cooperation of the second manger plate portion of top cap form manger plate structure, effectively avoid when water storage device turns over rivers and easily flow to the electrical components in the fuselage from the gap between top cap and the preceding shell and arouse the circuit short circuit, influence the life of controller, influence the problem of the normal work of air conditioner.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and other drawings may be obtained according to the structures shown in these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of a top cover and a front case of a floor air conditioner according to an embodiment of the present utility model;
FIG. 2 is an enlarged view of the front housing body at the top end of FIG. 1;
FIG. 3 is an enlarged view of a portion of FIG. 2 at A;
fig. 4 is a schematic structural view of the top cover of fig. 1 toward the top end of the front case.
Reference numerals illustrate:
reference numerals Name of the name Reference numerals Name of the name
100 Front shell 300 Reinforcing rib
110 Front shell main body 400 Water guide tank
120 Top plate 410 Intermediate trough section
130 Mounting position 420 End groove section
140 First water blocking part 430 Water outlet
200 Top cover 440 Drainage abrupt slope
210 Second water blocking part 450 Mounting stud
220 Mounting hole 500 Water diversion rib
The achievement of the objects, functional features and advantages of the present utility model will be further described with reference to the accompanying drawings, in conjunction with the embodiments.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that all directional indicators (such as up, down, left, right, front, and rear … …) in the embodiments of the present utility model are merely used to explain the relative positional relationship, movement, etc. between the components in a particular posture (as shown in the drawings), and if the particular posture is changed, the directional indicator is changed accordingly.
Furthermore, the description of "first," "second," etc. in this disclosure is for descriptive purposes only and is 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 addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present utility model.
In the related art, a user may place a device with a water storage function such as a flowerpot at the upper end of an indoor cabinet, and because a gap is formed between the top cover and the front shell of the cabinet, when the water storage device is knocked over, water flows from the gap between the top cover and the front shell to the controller easily to cause a circuit short circuit, which affects the service life of the controller and the normal operation of the air conditioner.
Therefore, the utility model provides the vertical air conditioner, and the water retaining structure is arranged between the top cover and the front shell, so that the waterproof capability of the vertical air conditioner is improved.
Referring to fig. 1, in an embodiment of the present utility model, the stand air conditioner may be an integrated stand cabinet machine, or may be a split stand cabinet machine (the air conditioner includes an inner machine and an outer machine), and the stand air conditioner includes a top cover 200 and a front case 100, the front case 100 includes a front case main body 110 and a top plate 120 disposed at a top end of the front case main body 110, the top plate 120 is provided with a mounting position 130 for mounting the top cover 200, referring to fig. 2 to 4, the mounting position 130 is provided with a first water blocking portion 140 at least partially surrounding the top cover 200, and a second water blocking portion 210 is disposed at an edge of the top cover 200 corresponding to the first water blocking portion 140, and the second water blocking portion 210 is engaged with the first water blocking portion 140 to form a roundabout water blocking structure.
The front case main body 110 includes a side plate and a top plate 120 connected to the side plate, the side plate extends in a vertical direction, the side plate is divided into a left side plate, a front side plate and a right side plate (the front and rear sides refer to the azimuth in fig. 1, the top end is the uppermost position), the front side plate is provided with a position for installing a display panel, a controller can be arranged on the left side plate or the right side plate, the front case 100 and a rear case (not shown) are assembled to form a body of the vertical air conditioner, and a required component part, such as a heat exchanger, a capillary tube, a condensate water receiving device, a refrigerant pipe joint hole, a drain hole, a centrifugal fan, an electric box, a panel, a base and the like, is arranged in a containing cavity formed by enclosing the front case 100 and the rear case.
The top cover 200 is mounted on the top plate 120 of the front case 100, the upper end (top end in the direction shown in the drawing) of the top plate 120 is provided with a mounting location 130 for mounting the top cover 200, and the mounting location 130 may be defined by screw holes, or may be formed by depressions as shown in fig. 2, so that the top cover 200 is flush with the surface of the top end of the front case 100, ensuring the appearance integrity, however, the scheme is not limited thereto, and the mounting location 130 may be defined by scores or the like formed by protruding the surface of the top plate 120.
The mounting position 130 is provided with a first water blocking portion 140, and the second water blocking portion 210 and the first water blocking portion 140 are embedded and bitten to form a water blocking structure. In an embodiment, the second water blocking portion 210 and the first water blocking portion 140 may be ribs and ribs, and the water flow is better blocked from entering the air conditioner by increasing the travel of the water flow. In another embodiment, the second water blocking portion 210 and the first water blocking portion 140 may be engaged with each other by a rib and a groove, and the protrusions are embedded into the grooves, so that the cross section of the water blocking portion forms a "mountain" structure, i.e. a roundabout water blocking structure, thereby increasing the travel of the water flow and blocking the water flow from entering the air conditioner.
According to the technical scheme of the utility model, the top cover 200 and the front shell are adopted, the front shell 100 comprises a front shell main body 110 and a top plate 120 arranged at the top end of the front shell main body 110, the top plate 120 is provided with a mounting position 130 for mounting the top cover 200, the mounting position 130 is provided with a first water blocking part 140 at least partially surrounding the top cover 200, the edge of the top cover 200 is provided with a second water blocking part 210 corresponding to the first water blocking part 140, and the second water blocking part 210 is in embedded and biting connection with the first water blocking part 140 so as to form a roundabout water blocking structure. Compared with the prior art, the waterproof is realized through the pressing of the top cover 200 and the front shell 100, or the waterproof is realized in a mode of arranging sealing materials such as sponge on an electric element in an air conditioner, so that the structure of the vertical air conditioner is simplified, the production time of the vertical air conditioner is shortened, the production efficiency of the vertical air conditioner is improved, the production cost of the vertical air conditioner is reduced, the waterproof effect of the vertical air conditioner can be improved, the electric element is protected, the maintenance frequency of the vertical air conditioner is reduced, and the working reliability and stability of the vertical air conditioner are improved. Through changing the waterproof design between current top cap 200 and the preceding shell 100, by the cooperation of the first manger plate portion 140 of roof 120 and the second manger plate portion 210 of top cap 200 form the manger plate structure, effectively avoid when water storage device turns over rivers and easily flow to the electrical components in the fuselage from the gap between top cap 200 and the preceding shell 100 and cause circuit short circuit, influence the life of controller, influence the problem of the normal work of air conditioner.
Further, the mounting position 130 forms a mounting groove, so that the top cover 200 is flush with the surface of the front case 100, the appearance integrity is improved, the second water blocking portion 210 is provided with water blocking ribs, the first water blocking portion 140 is provided with a water blocking groove, the water blocking groove at least partially surrounds the edge of the top cover 200, and the water blocking ribs are arranged in the water blocking groove. A water-proof groove is further arranged in the installation groove of the installation position 130, the water-proof groove is inserted through the water-proof rib, and two groove walls of the water-proof rib and the water-proof groove form a U-shaped channel, so that water flow can be effectively prevented from flowing into the vertical air conditioner from a gap between the top cover 200 and the front shell.
The mounting location 130 is provided with a first water blocking portion 140 at least partially surrounding the top cover 200, and the first water blocking portion 140 is at least provided that it can block water from entering the front housing portion where the electrical components are mounted, and it is preferable to provide the first water blocking portion around the entire edge of the top cover 200.
Further, the water blocking ribs are disposed at the edge of the top cover 200, at least part of the water blocking ribs are disposed in the waterproof groove and cooperate with the groove wall of the waterproof groove to form a water blocking structure, and the surface of the top cover 200 facing the waterproof groove contacts with the groove edge of the waterproof groove. The water retaining ribs are arranged at the edge of the top cover 200, so that the top cover 200 is convenient to assemble and the top cover 200 is not easy to misplace after being assembled.
Specifically, the length that the manger plate muscle was arranged in the water-proof groove is 0.6mm-0.7mm, the cooperation of manger plate muscle and the water-proof groove of being convenient for on the one hand, on the other hand better realizes the blocking to rivers.
Specifically, the width of the water blocking rib is 0.3mm-1.5mm, and the height of the water blocking rib is 0.5mm-1mm. The width of the waterproof groove is 0.9mm-2.1mm, and the depth of the waterproof groove is 0.6mm-1mm. Thereby being convenient for the matching of the water retaining ribs and the water-proof grooves, the depth and the width of the water-proof grooves and the water retaining ribs are too small, the installation is inconvenient, and the water-proof effect is weak; the depth and the width of the waterproof groove and the water retaining ribs are too large, so that the assembly effect can be influenced, and the production cost is increased.
In this embodiment, the width of the water blocking rib is 0.8mm, the height is 0.9mm, the width of the water blocking groove is 1.5mm, the depth is 0.8mm, the water blocking groove is downward along the matching edge of the top plate 120 and the top cover 200, and is matched with the water blocking rib of the top cover 200 after being assembled, so that the inflow water quantity is reduced.
Further, the installation site 130 is further provided with a water guiding groove 400, both ends of the water guiding groove 400 are provided with a water outlet 430, and the water guiding groove 400 is used for collecting water entering the gap between the top cover 200 and the installation site 130 through the water blocking structure and discharging the water through the water outlet 430.
The vertical air conditioner further comprises an electrical component (such as a display panel, an electric control box and the like) mounted on at least one side plate, and a water guide groove 400 arranged at the mounting position 130, wherein the water guide groove is close to the edge of the top cover 200 relative to the water guide groove 400, two ends of the water guide groove 400 are respectively provided with a water outlet 430 in the direction that the side plate is far away from the electrical component, and the water guide groove 400 is used for collecting water entering a gap between the top cover 200 and the mounting position 130 and discharging the water through the water outlet 430. Through setting up the guiding gutter 400 that is used for collecting the water that gets into the gap between top cap 200 and the preceding shell 100, can utilize guiding gutter 400 to collect water to store water in specific region, for example can store water in the both sides of curb plate, or directly discharge the fuselage through the outlet 430 of guiding gutter 400, can protect the middle part region of fuselage like this, avoid water to get into the electric appliance structures such as the controller that sets up at the fuselage middle part and cause electric appliance structures's damage, can prevent that the potential safety hazard from taking place for the vertical air conditioner, the life of the electric appliance structures of being convenient for is prolonged, be convenient for improve vertical air conditioner's operational reliability and stability, be convenient for improve user's safety in utilization and travelling comfort. The vertical air conditioner has the advantages of better waterproof effect, high reliability and the like.
Specifically, the groove depth of the water guide groove 400 is greater than the groove depth of the water prevention groove, and/or the groove width of the water guide groove 400 is greater than the groove width of the water prevention groove. Not only is it convenient to improve the water collecting and guiding effect of the water guiding groove 400, but also it is further convenient to protect electrical components such as the display panel and the controller, and further improve the waterproof effect.
Specifically, the width of the water guiding groove 400 is 5mm-9mm, and the depth of the water guiding groove 400 is 4mm-8mm. In this embodiment, the width of the water guide groove 400 is 7mm and the depth thereof is 6mm.
Referring to fig. 2 and 3, further, the water guiding groove 400 includes a middle groove section 410 and two end groove sections 420 respectively disposed at two ends of the middle groove section 410, the cross-sectional area of the middle groove section 410 is larger than that of the end groove sections 420, and the water draining opening 430 is disposed at the end groove sections 420. I.e. the volume of the middle tank section 410 is larger than the volumes of the two end tank sections 420, more water can be stored at the middle tank section 410, said middle tank section 410 being close to the electrical element. The protection of electrical components such as the display panel and the controller is further facilitated, and the waterproof effect is further improved. The water guiding groove 400 is adapted to the shape of the front housing 100, and two ends of the water guiding groove are respectively flush with the rear end of the front housing, for example, when the cross section of the front housing 100 is semicircular, the water guiding groove 400 is also a semicircular groove. The volumes of the two end tank sections 420 of the middle tank section 410 facilitate water flow to avoid the middle area of the front housing 100, thereby not only facilitating improvement of water collection and water guiding effects of the water guiding tank 400, but also facilitating ensuring that the middle area of the front housing 100 has enough installation space, thereby facilitating the arrangement of electrical structures such as a controller.
Referring to fig. 2 and 3, further, the middle groove section 410 is further provided with a mounting stud 450, the top cover 200 is provided with a mounting hole 220 corresponding to the mounting stud 450, and the mounting hole 220 corresponds to the mounting stud 450. The installation stud 450 is arranged in the middle groove section 410, so that the top cover 200 is convenient to install and fix on one hand, the surface of the top cover 200 is convenient to be flush with the surface of the front shell 100 on the other hand, the appearance integrity is guaranteed, a certain locking force can be given, and the water retaining ribs and the waterproof grooves are convenient to be matched in an embedded manner.
Referring to fig. 2 and 3, further, a reinforcing rib 300 is further disposed on the mounting location 130, and the reinforcing rib 300 is disposed at the middle groove section 410. Specifically, the reinforcing rib 300 is disposed on a groove sidewall of the middle groove section 410, which is far from the first water blocking portion 140. This facilitates improvement of structural strength and reliability of the water guide 400, and prevents deformation of the water guide 400.
Referring to fig. 2 and 3, further, the bottom of the water guiding groove 400 is provided with a drainage abrupt slope 440 near the water outlet 430, and the drainage abrupt slope 440 is inclined toward the water outlet 430. The drainage steep slopes 440 are formed at the tail ends of the two end tank sections 420 through the water guide tank 400, so that water can smoothly flow out of the discharge outlet, the water guide effect of the water guide tank 400 is further improved, and the electric appliance structure arranged in the vertical air conditioner is protected.
Referring to fig. 2 and 3, further, a water diversion structure is further provided on the bottom wall of the water guiding tank 400, and the water diversion structure is used for guiding the water in the water guiding tank 400 to the water outlet 430. The water diversion structure can prevent water drops in the water diversion groove 400 from gathering, improve the water diversion efficiency of the water diversion groove 400 and reduce the water flow residue.
In this embodiment, the water diversion structure is a plurality of water diversion ribs 500 disposed on the bottom wall of the water diversion tank 400, the water diversion ribs 500 are disposed along the extending direction of the water diversion tank 400, and the water diversion ribs 500 are disposed in the water diversion tank 400 at intervals in a staggered manner. The adjacent water diversion ribs 500 are staggered to form water diversion grooves, so that water flow entering the water diversion groove 400 is diverted to the water diversion grooves between the water diversion ribs 500 and is led to the water outlet 430, and the water flow is accelerated to flow out through the drainage abrupt slope 440.
In other embodiments, the water diverting structure is a plurality of water diverting ribs 500 concavely formed on the bottom wall of the water diverting tank 400 to adapt to the shape of the water diverting tank 400.
Specifically, the length of the water diversion rib 500 is 5mm-20mm, the width of the water diversion rib 500 is 0.05mm-0.2mm, and the height of the water diversion rib 500 is 0.01mm-0.1mm. In this embodiment, the length of the water diversion rib 500 is 13mm, the width is 0.15mm, and the height is 0.05mm, so that the water drop aggregation can be prevented, and the water diversion efficiency can be improved.
Further, the thickness of the wall of the water guiding groove 400 is 2mm-3mm. Too small a groove wall thickness has lower structural strength and too thick a groove wall has increased processing cost. In this embodiment, the wall thickness of the panel water guiding groove 400 is 2.5mm, the overall strength is high, and the mold is more smooth.
The foregoing description is only of the preferred embodiments of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structural changes made by the description of the present utility model and the accompanying drawings or direct/indirect application in other related technical fields are included in the scope of the utility model.

Claims (12)

1. A floor air conditioner, comprising:
a top cover; and
the front shell comprises a front shell main body and a top plate arranged at the top end of the front shell main body, wherein the top plate is provided with a mounting position for mounting the top cover, and the mounting position is provided with a first water retaining part at least partially encircling the top cover;
the edge of the top cover is provided with a second water retaining part corresponding to the first water retaining part, and the second water retaining part is in embedded connection with the first water retaining part to form a roundabout water retaining structure.
2. The floor air conditioner according to claim 1, wherein the second water blocking portion is provided as a water blocking rib, the first water blocking portion is provided as a water blocking groove, and the water blocking rib is embedded in the water blocking groove.
3. The floor air conditioner of claim 2, wherein the water blocking rib is disposed in the waterproof groove to a depth ranging from 0.6mm to 0.7mm.
4. The floor air conditioner of claim 2, wherein the water blocking rib has a width ranging from 0.3mm to 1.5mm and a height ranging from 0.5mm to 1mm;
and/or the width range of the waterproof groove is 0.9mm-2.1mm, and the depth range of the waterproof groove is 0.6mm-1mm.
5. The floor air conditioner according to claim 1, wherein the installation site is further provided with a water guide groove, both ends of the water guide groove are provided with water outlets, and the water guide groove is used for collecting water entering a gap between the top cover and the installation site through the water blocking structure and discharging the water through the water outlets.
6. The floor air conditioner according to claim 5, wherein the water guiding groove comprises a middle groove section and two end groove sections which are respectively arranged at two ends of the middle groove section, the cross section area of the middle groove section is larger than that of the end groove sections, and the water draining opening is arranged at the end groove sections.
7. The floor air conditioner according to claim 6, wherein the installation position is further provided with a reinforcing rib, and the reinforcing rib is arranged on a groove side wall of the middle groove section, which is far away from the first water blocking part.
8. The floor air conditioner according to claim 5, wherein a drain steeply inclined toward the drain port is provided at a bottom of the water guide groove near the drain port.
9. The floor air conditioner according to claim 5, wherein the width of the water guide groove ranges from 5mm to 9mm, and/or the depth of the water guide groove ranges from 4mm to 8mm.
10. The floor air conditioner according to claim 5, wherein the bottom wall of the water guide tank is further provided with a water guide structure for guiding water in the water guide tank to the water outlet.
11. The floor air conditioner of claim 10, wherein the water diversion structure is a plurality of water diversion ribs arranged on the bottom wall of the water diversion tank, the water diversion ribs are arranged along the extending direction of the water diversion tank, and the water diversion ribs are arranged in the water diversion tank at intervals in a staggered manner.
12. The floor air conditioner of claim 11, wherein the length of the water diversion ribs ranges from 5mm to 20mm;
and/or the width of the water diversion ribs ranges from 0.05mm to 0.2mm;
and/or the height range of the water diversion ribs is 0.01mm-0.1mm.
CN202223250628.6U 2022-12-02 2022-12-02 Vertical air conditioner Active CN219083267U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223250628.6U CN219083267U (en) 2022-12-02 2022-12-02 Vertical air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223250628.6U CN219083267U (en) 2022-12-02 2022-12-02 Vertical air conditioner

Publications (1)

Publication Number Publication Date
CN219083267U true CN219083267U (en) 2023-05-26

Family

ID=86407749

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223250628.6U Active CN219083267U (en) 2022-12-02 2022-12-02 Vertical air conditioner

Country Status (1)

Country Link
CN (1) CN219083267U (en)

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