Air conditioner hanging machine base

By designing the first drainage surface and drainage channel inclined above the air duct of the air conditioner hanger base, and using a water barrier strip to prevent condensate from contacting the side wall of the air duct, the short circuit and leakage problems caused by the accumulation and flow of condensate at the air conditioner base are solved, and a safer and more reliable air conditioning operation is achieved.

CN222951192UActive Publication Date: 2025-06-06GUANGZHOU ZHENGLI AUTO PARTS CO LTD
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Patent Information

Application Number
CN202422081001.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-06-06
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The existing air conditioning base is prone to short-circuiting and leakage of electrical components during the accumulation and flow of condensate water, and the decrease in the temperature of the condensate water will increase the external humidity of the base, affecting the normal operation of the air conditioner.

Method used

An air conditioner hanging base is designed, including an integrated base body and a drain pipe. An air duct is provided on the base body. A first drainage surface is arranged inclined above the air duct, and both ends are provided with drainage channels. The drainage pipes are connected to the drainage channels. The connecting plate extends to form a water barrier strip to prevent condensate water from contacting the side wall of the air duct.

Benefits of technology

Effectively discharge condensate above the air duct to avoid the accumulation of condensate and flow through the air duct, which significantly reduces the risk of short circuit and leakage of air conditioning electrical components, and reduces the risk of lowering the temperature of the air duct sidewall and the risk of condensate.

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Abstract

The utility model discloses an air conditioner hanging machine base which comprises an integrally-formed base body and a drainage pipe connected with the base body, an air channel is formed in the base body, a first drainage face is obliquely arranged above the air channel, a baffle is vertically arranged at the bottom end of the first drainage face, and a partition plate parallel to the baffle is arranged in the middle of the first drainage face. The two ends of the first drainage face are provided with drainage channels respectively, the drainage pipe is connected with the two drainage channels respectively, the two ends of the baffle are perpendicularly provided with connecting plates respectively, the ends, close to the air flue, of the two connecting plates extend to form water retaining strips respectively, the bottoms of the water retaining strips are arcs, and the arcs are consistent with the radian of the arc face of the air flue. According to the utility model, condensate water above the air duct can be effectively discharged through the first water discharge surface, the two water discharge channels and the water discharge pipe, so that the condensate water is prevented from being accumulated above the base, and the risks of short circuit and electric leakage of electric appliance elements are greatly reduced. Condensate water is prevented from flowing to the two sides of the air duct through the water retaining strips, and short circuit and electric leakage are prevented.
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Description

Technical Field

[0001] The utility model relates to the technical field of air conditioners, in particular to an air conditioner hanging base. Background Art

[0002] During the operation of the air conditioner, condensation water will be generated. If the condensation water enters the inside of the air conditioner, leakage and short circuit will occur, which will seriously affect the normal operation of the air conditioner. Therefore, it is necessary to make a good water collection and drainage design on the base of the air conditioner.

[0003] Common air conditioner bases generally receive condensed water by setting a water tank on the base, and are provided with a drain port connected to the water tank to drain the condensed water. However, in actual operation, since the water tank is recessed, when condensed water drips into the water tank, it will accumulate in the water tank, the temperature of the condensed water will decrease, and the surface temperature of the water tank will also decrease accordingly. The relative humidity inside the base is high. Therefore, during the air conditioning cooling process, a large amount of condensed water will be generated outside the water tank, greatly increasing the risk of short circuit and leakage of the air conditioning electrical components. In addition, multiple drain ports are set on the air conditioner base to directly drain the condensed water from the bottom of the base. However, such a setting will cause the condensed water above the base to flow to the bottom before it can be discharged. During the flow process, there is a risk of short circuit and leakage due to contact with circuit components. Utility Model Content

[0004] The utility model discloses an air-conditioner hanging base, which is studied and improved in view of the existing structure and defects, and provides an air-conditioner hanging base to achieve the purpose of better practical value.

[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0006] An air conditioner hanging base comprises an integrally formed base body and a drainage pipe connected to the base body, an air duct is arranged on the base body, a first drainage surface is obliquely arranged above the air duct, a baffle is vertically arranged at the bottom end of the first drainage surface, a partition parallel to the baffle is arranged in the middle, the baffle and the air duct are spaced apart, drainage channels are respectively arranged at both ends of the first drainage surface, the drainage pipe is respectively connected to the two drainage channels, connecting plates are vertically arranged at both ends of the baffle, two ends of the connecting plates close to the air duct are respectively extended to form water retaining strips, the bottom of the water retaining strip is a circular arc, and the arc is consistent with the curvature of the arc surface of the air duct.

[0007] In some embodiments, a drainage board is disposed on the top of the first drainage surface, the drainage board has a width comparable to that of the partition, and a first drainage channel is formed between the drainage board and the partition.

[0008] In some embodiments, the width of the partition is smaller than the width of the baffle, a second drainage channel is formed between the partition and the baffle, and the first drainage channel is connected to the second drainage channel.

[0009] In some embodiments, gaps are respectively formed between the two connecting plates and the drainage plate, and the gaps enable the drainage channel to communicate with the first drainage channel and the second drainage channel.

[0010] In some embodiments, the partition plate and the baffle plate are both arranged to be inclined along a direction close to the notch, that is, the partition plate and the baffle plate are both arranged to be inclined along a flow direction of the condensed water.

[0011] In some embodiments, two ends of the first drainage surface extend away from the connecting plate to form two second drainage surfaces, the second drainage surfaces are arc-shaped, and water collecting platforms are connected to the bottom of the two second drainage surfaces respectively. The drainage channel is arranged between the second drainage surfaces and the water collecting platforms.

[0012] In some embodiments, a plurality of drainage grooves are provided on the drainage channel.

[0013] In some embodiments, a first mounting structure and a second mounting structure are respectively disposed on both sides of the air duct, and a third mounting structure is further disposed on a side of the first mounting structure away from the air duct.

[0014] The utility model provides an air conditioner hanging base with the following advantages:

[0015] The utility model provides an air conditioner hanging base, which has a first drainage surface inclined above the air duct, and drainage channels are respectively provided at both ends of the first drainage surface. The drainage pipes are respectively connected with two drainage channels, which can effectively discharge the condensed water above the air duct, avoid the accumulation of condensed water above the base air duct, and avoid the condensed water flowing through the air duct, which greatly reduces the risk of short circuit and leakage of the air conditioner electrical components. Two connecting plates are respectively extended to form water retaining strips at one end close to the air duct, and the bottom of the water retaining strips is a circular arc. The water retaining strips can prevent the condensed water from contacting the side wall of the air duct, thereby effectively preventing the side wall of the air duct from lowering its temperature due to contact with the condensed water, and further reducing or avoiding the phenomenon that condensed water is generated on the inner side of the side wall of the air duct and is even blown out with the wind. Condensed water is prevented from flowing to the electrical components on both sides of the air duct, further preventing short circuit and leakage. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 The utility model is a three-dimensional schematic diagram of an air conditioner hanging base.

[0017] Figure 2 yes Figure 1 A partial enlarged view of middle A.

[0018] Figure 3 The utility model is a bottom view of an air conditioner hanging base.

[0019] Figure 4 The utility model is a structural schematic diagram of a cover plate of an air conditioner hanging base.

[0020] In the accompanying drawings: 10 base body, 11 air duct, 12 first drainage surface, 121 first drainage channel, 122 second drainage channel, 123 connecting channel, 13 baffle, 14 partition, 15 drainage channel, 16 connecting plate, 17 water retaining strip, 18 drainage plate, 19 notch, 20 drainage pipe, 201 outlet, 202 first drainage pipe, 203 second drainage pipe, 204 third drainage pipe, 21 second drainage surface, 22 water collecting platform, 26 first mounting structure, 27 second mounting structure, 28 third mounting structure, support rod 30, cover plate 31, through groove 311. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application usually described and marked in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the application claimed for protection, but merely represents the selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without making creative work belong to the scope of protection of the present application.

[0022] Reference Figures 1 to 4The utility model provides an air conditioner hanging base, which includes an integrally formed base body 10 and a drainage pipe 20 connected to the base body 10. The base body 10 is provided with an air duct 11, which may be arc-shaped in some embodiments and is used to install the heat exchange component of the air conditioner indoor unit. A first drainage surface 12 is obliquely provided above the air duct 11. A baffle 13 is vertically provided at the bottom end of the first drainage surface 12, and a partition 14 parallel to the baffle 13 is provided in the middle. The baffle 13 and the air duct 11 are spaced apart, and a support rod 30 is provided between the baffle 13 and the air duct 11. Drainage channels 15 are respectively provided at both ends of the first drainage surface 12, and the drainage pipe 20 is respectively connected to the two drainage channels 15. Connecting plates 16 are vertically provided at both ends of the baffle 13. The two connecting plates 16 are respectively extended to form a water retaining strip 17 at one end close to the air duct 11. The bottom of the water retaining strip 17 is an arc, and the arc of the water retaining strip 17 is consistent with the arc of the arc surface of the air duct 11. The water retaining strip 17 can prevent the condensed water from contacting the side wall of the air duct, thereby effectively preventing the side wall of the air duct 11 from lowering its temperature due to contact with the condensed water, and further reducing or avoiding the phenomenon that the condensed water is generated on the inner side of the side wall of the air duct 11 and is even blown out with the wind. Prevent the condensed water from flowing to the electrical components on both sides of the air duct 11, and further prevent short circuits and leakage. The base body 10 is formed with an installation space, which is used for the installation of the air conditioner hanging parts. One of the outlets 201 of the drain pipe 20 extends out of the outside of the base body 10, and it is used to discharge the condensed water inside the base body 10.

[0023] Specifically, Figure 2As shown, the air conditioner mounting base provided by the utility model has a drain plate 18 disposed on the top of the first drainage surface 12, the width of the drain plate 18 is equivalent to that of the partition 14, and a first drainage channel 121 is formed between the drain plate 18 and the partition 14. The width of the partition 14 is smaller than the width of the baffle 13, which can prevent the condensed water on the first drainage surface 12 from dripping onto the air duct 11, and when there is too much condensed water, it will first be drained through the first drainage channel 121, which can prevent the condensed water from overflowing the baffle 13 or accumulating on the second drainage channel 122. A second drainage channel 122 is formed between the partition 14 and the baffle 13, and a connecting channel 123 is provided between the first drainage channel 121 and the second drainage channel 122, and the connecting channel 123 connects the first drainage channel 121 with the second drainage channel 122. Notches 19 are formed between the two connecting plates 16 and the drain plate 18, respectively, and the notches 19 connect the drainage channel 15 with the first drainage channel 121 and the second drainage channel 122. The partition 14 and the baffle 13 are both inclined in the direction close to the notch 19, that is, the partition 14 and the baffle 13 are both inclined in the direction of the flow of the condensed water. The two ends of the first drainage surface 12 extend in the direction away from the connecting plate 16 to form two second drainage surfaces 21, the second drainage surfaces 21 are arc-shaped, and the lower parts of the two second drainage surfaces 21 are respectively connected to water collecting platforms 22, and the drainage channel 15 is arranged between the second drainage surfaces 21 and the water collecting platforms 22. When the condensed water on the drainage plate 18 flows to the first drainage channel 121 through the first drainage surface 12, the condensed water will flow into the second drainage surface 21 along the notch. Since the second drainage surface 21 is arc-shaped and inclined, the condensed water on the second drainage surface 21 will flow into the drainage channel 15, and the drainage channel 15 is connected to the drainage pipe 20. Therefore, the condensed water on the drainage channel 15 is finally discharged from the inside of the base body 10 through the drainage pipe 20. When the condensed water on the drain plate 18 flows to the first drain channel 121 and the second drain channel 122 via the first drain surface 12, since the baffle 13 is arranged at an angle, when the condensed water flows onto the baffle 13, the condensed water on the baffle 13 changes its flow direction and then flows out of the base body 10 through the connecting channel 123, the notch 19, the second drain surface 21, the drain channel 15 and the drain pipe 20 in sequence. Preferably, in some embodiments, a plurality of drainage grooves 151 are provided on the drain channel 15. The drainage grooves 151 can be used to drain the condensed water on the second drain surface 21 into the drain channel 15.

[0024] like Figure 3As shown, in some embodiments, the drain pipe 20 may include a first drain pipe 202 and a second drain pipe 203, one end of the first drain pipe 202 is connected to one of the drain channels 15, and the other end thereof is connected to the second drain pipe 203. One end of the second drain pipe 203 is connected to another drain channel 15, and the other end thereof is connected to the second drain pipe 203, and the second drain pipe 203 is also integrally formed with a third drain pipe 204, the third drain pipe 204 is perpendicular to the second drain pipe 203, and the third drain pipe 204 extends out of the bottom of the base body 10.

[0025] It is understandable that in some other embodiments, drainage ribs may be provided between the second drainage surface 21 and the connecting plate 16, and the condensed water may be effectively discharged from the interior of the base body 10 by providing the drainage ribs. In this embodiment, the purpose of the arc shape of the second drainage surface 21 is to slow down the flow rate, thereby effectively avoiding the splashing of the condensed water due to the excessive flow rate, and reducing the impact of the condensed water on the bottom of the second drainage surface 21.

[0026] It can be understood that in some other embodiments, the second drainage surface 21 is at least partially inclined downward; and is inclined along the flow direction of the condensed water, and the portion of the second drainage surface 21 that is inclined downward can be provided with a first-level slow-flow step. In this arrangement, the condensed water flowing along the second drainage surface 21 will change its flow direction and slow down its flow rate after flowing to the slow-flow step, thereby effectively avoiding the splashing phenomenon of the condensed water due to the excessive flow rate, and reducing the impact of the condensed water on the bottom of the second drainage surface 21. It should be noted here that the number of slow-flow steps is not limited to one level, but can also be two levels, three levels, etc. The specific number can be set according to the slope of the second drainage surface 21: if the slope of the second drainage surface 21 is relatively large, several more slow-flow steps can be set on the second drainage surface 21, such as two or three levels; and if the slope of the second drainage surface 21 is relatively small, a few fewer slow-flow steps can be set on the second drainage surface 21, such as one level.

[0027] In some embodiments, a first mounting structure 26 and a second mounting structure 27 are respectively disposed on both sides of the air duct 11, and a third mounting structure 28 is further disposed on the side of the first mounting structure 26 away from the air duct 11. The first mounting structure 26, the second mounting structure 27 and the third mounting structure 28 are respectively used to mount components of the air conditioner indoor unit.

[0028] like Figure 4 As shown, in some embodiments, a cover plate 31 is also included, and the cover plate 31 is in contact with part of the bottom wall of the base body 10. A through groove 311 is provided on the cover plate 31, and the first drain pipe 202 and the second drain pipe 203 are partially embedded in the through groove, which enables the first drain pipe 202 and the second drain pipe 203 to be stably installed to avoid leakage.

[0029] The contents not described in detail in this specification belong to the prior art known to professional and technical personnel in this field.

[0030] The above is only a preferred specific implementation of the utility model, but the protection scope of the utility model is not limited to this. The replacement can be a replacement of part of the structure, device, method step, or a complete technical solution. Equivalent replacement or change based on the technical solution of the utility model and its utility model concept should be included in the protection scope of the utility model.

Claims

1. An air conditioner mounting base, comprising an integrally formed base body (10) and a drainage pipe (20) connected to the base body (10), characterized in that: The base body (10) is provided with an air duct (11), a first drainage surface (12) is obliquely provided above the air duct (11), a baffle (13) is vertically provided at the bottom end of the first drainage surface (12), a partition (14) parallel to the baffle (13) is provided in the middle, the baffle (13) and the air duct (11) are spaced apart, drainage channels (15) are respectively provided at both ends of the first drainage surface (12), the drainage pipe (20) is respectively connected to the two drainage channels (15), connecting plates (16) are respectively vertically provided at both ends of the baffle (13), and water retaining strips (17) are respectively extended from one end of the two connecting plates (16) close to the air duct (11), the bottom of the water retaining strip (17) is an arc, and the arc is consistent with the arc surface of the air duct (11).

2. The air conditioner mounting base according to claim 1, characterized in that: A drainage board (18) is provided on the top of the first drainage surface (12); the drainage board (18) has a width equivalent to that of the partition (14); and a first drainage channel (121) is formed between the drainage board (18) and the partition (14).

3. The air conditioner mounting base according to claim 2, characterized in that: The width of the partition (14) is smaller than the width of the baffle (13); a second drainage channel (122) is formed between the partition (14) and the baffle (13); and the first drainage channel (121) is connected to the second drainage channel (122).

4. The air conditioner mounting base according to claim 3, characterized in that: A notch (19) is formed between the two connecting plates (16) and the drainage plate (18), respectively, and the notch (19) enables the drainage channel (15) to communicate with the first drainage channel (121) and the second drainage channel (122).

5. The air conditioner mounting base according to claim 4, characterized in that: The partition plate (14) and the baffle plate (13) are both arranged to be inclined along a direction close to the notch (19), that is, the partition plate (14) and the baffle plate (13) are both arranged to be inclined along a flow direction of condensed water.

6. The air conditioner mounting base according to claim 1, characterized in that: Two ends of the first drainage surface (12) extend in a direction away from the connecting plate (16) to form two second drainage surfaces (21), the second drainage surfaces (21) are arc-shaped, and water collecting platforms (22) are connected below the two second drainage surfaces (21), respectively. The drainage channel (15) is arranged between the second drainage surfaces (21) and the water collecting platforms (22).

7. The air conditioner mounting base according to claim 1, characterized in that: The drainage channel (15) is provided with a plurality of drainage grooves (151).

8. The air conditioner mounting base according to claim 1, characterized in that: A first mounting structure (26) and a second mounting structure (27) are respectively provided on both sides of the air duct (11), and a third mounting structure (28) is also provided on a side of the first mounting structure (26) away from the air duct (11).