Wet film support, humidifier and air conditioner
The wet membrane support structure addresses the issue of rapid water overflow in air conditioners by redirecting excess water through an overflow opening and collection channel, preventing short circuits and bacterial growth.
Patent Information
- Application Number
- CN202422375458.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-27
AI Technical Summary
In the prior art, the water replenishment rate of the humidification module is too fast, causing excessive water overflow, causing short circuits in the internal lines of the air conditioner and bacterial breeding problems.
A wet film bracket is designed, including a mounting body, a water replenishing body and a current collecting body. An overflow gap is provided on the top of the side wall of the water replenishing tank. The overflow gap leads to the excess water to the current collecting body and is discharged centrally to avoid overflowing to other components.
Effectively prevent line short circuits and bacterial growth caused by water overflow, improve the water replenishment control of the humidification module, and reduce the difficulty and cost of production.
Smart Images

Figure CN223106208U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air conditioners, and more particularly, to a wet film bracket, a humidifier and an air conditioner. Background Art
[0002] In the prior art, in order to ensure that the humidification module has enough moisture for humidification, the water replenishment rate is usually relatively fast, which sometimes leads to the situation of excessive water overflow. The overflowed water will drip onto the internal components of the air conditioner, which may cause a short circuit in the internal circuit of the air conditioner and also lead to a humid internal environment of the air conditioner, thereby breeding bacteria and affecting the air output of the air conditioner. Summary of the Utility Model
[0003] The problem solved by the utility model is how to improve the problem that the water replenishment rate of the humidification module in the prior art is too fast, resulting in excessive water overflow, which in turn easily causes short circuits in the circuit and the breeding of bacteria.
[0004] To solve the above problems, the utility model provides a wet film bracket, comprising:
[0005] An installation main body for installing a wet film;
[0006] A water replenishment main body disposed above the installation main body; a water replenishment tank is formed on the water replenishment main body, and a water replenishment hole is formed in the bottom wall of the water replenishment tank to replenish water to the wet film; an overflow gap is formed in one of the side walls of the water replenishment tank, and the overflow gap is disposed at the top of the side wall of the water replenishment tank;
[0007] A water collection main body is disposed on the same side of the water replenishment tank as the overflow gap; the water collection main body is used for receiving the water flowing out of the overflow gap.
[0008] The beneficial effects of the wet film bracket provided by the utility model compared with the prior art include:
[0009] In this wet film bracket, an overflow gap is formed in one of the side walls of the water replenishment tank. When too much water is added to the water replenishment tank, it can be discharged from the overflow gap. The water discharged from the overflow gap can directly flow into the water collection main body for collection, and then the excess water is discharged centrally. Based on this, it can prevent the excess water in the water replenishment tank from overflowing onto other components, avoiding the problem of short circuits in other components; at the same time, it can also avoid the humid internal environment of the electrical appliance using this wet film bracket, thereby avoiding the breeding of bacteria. Therefore, this wet film bracket can improve the problem that the water replenishment rate of the humidification module in the prior art is too fast, resulting in excessive water overflow, which in turn easily causes short circuits in the circuit and the breeding of bacteria.
[0010] Optionally, the overflow gap is a groove formed at the top of the side wall of the water replenishment tank.
[0011] The overflow notch is set as a groove opened at the top of the side wall of the water replenishing tank, which can reduce the difficulty of opening the overflow notch, thereby facilitating the fabrication and molding of the wet film support, reducing the manufacturing difficulty and cost.
[0012] Optionally, the width of the overflow notch gradually decreases from top to bottom.
[0013] Setting the width of the bottom of the overflow notch to be smaller can facilitate the water discharged from the overflow notch to be more concentrated, facilitating the collection of the overflowing water and avoiding the problem that the water overflowing at the overflow opening scatters and is likely to splash onto other components.
[0014] Optionally, the overflow notch is opened on one of the side walls in the length direction of the water replenishing tank. Thus, it can facilitate the setting of the position of the water collection main body, making the overall shape of the wet film support relatively simple and compact, and facilitating the layout of the wet film support.
[0015] Optionally, the water collection main body includes an overflow main body and a discharge main body;
[0016] The overflow main body is arranged on one side of the water replenishing tank. An overflow channel is opened on the overflow main body, and the overflow channel is used to receive the water flowing out of the overflow notch; the overflow channel forms an overflow outlet on the side of the overflow main body away from the water replenishing tank;
[0017] The discharge main body is arranged on the side of the overflow main body away from the water replenishing tank, and a collection cavity is provided on the discharge main body. The collection cavity is used to receive the water discharged from the overflow outlet; a discharge pipe is further provided on the discharge main body. The internal channel of the discharge pipe is communicated with the collection cavity and is used to discharge the water in the collection cavity.
[0018] When the excess water in the water replenishing tank flows out from the overflow notch, the flowing water is received by the overflow channel, and then discharged from the overflow outlet under the guidance of the overflow channel. The water discharged from the overflow outlet is received by the collection cavity, and then uniformly discharged by the discharge pipe. Through the setting of the overflow channel, the problem of water splashing everywhere when the water directly falls into the collection cavity can be avoided, so as to ensure that the excess water flows stably into the collection cavity for unified discharge.
[0019] Optionally, the overflow channel is vertically arranged, the overflow notch is located at the top of the overflow channel; the overflow outlet is located at the bottom of the overflow channel.
[0020] Vertically arranging the overflow channel can reduce the occupied volume of the overflow main body, thereby facilitating the reduction of the overall volume of the wet film support.
[0021] Optionally, the bottom wall of the overflow channel is inclined, and the overflow outlet is located at the lower part of the bottom wall of the overflow channel.
[0022] The inclined bottom wall can provide a guiding function for water, facilitating the discharge of water from the overflow outlet and improving the discharge efficiency. Additionally, it can prevent water from accumulating in the overflow channel and avoid the growth of bacteria inside the overflow channel.
[0023] Optionally, a partial side wall of the overflow channel near the bottom wall of the overflow channel is inclined to form a guiding slope, and the overflow outlet is located at the lower position of the guiding slope.
[0024] Forming a guiding slope on one side wall of the overflow channel, the guiding slope and the bottom wall of the overflow channel jointly provide a guiding function for water, enabling the water to be efficiently discharged from the overflow outlet and improving the discharge efficiency.
[0025] A humidifier includes the above-mentioned wet film bracket.
[0026] An air conditioner includes the above-mentioned humidifier.
[0027] Both the humidifier and the air conditioner provided by the present utility model adopt the above-mentioned wet film bracket. The beneficial effects of the humidifier and the air conditioner relative to the prior art are the same as those of the above-mentioned wet film bracket relative to the prior art, which will not be elaborated here. Description of the Drawings
[0028] Figure 1 It is a schematic structural diagram of the wet film bracket provided in the embodiment of the present application;
[0029] Figure 2 It is Figure 1 An enlarged structural diagram at position A in
[0030] Figure 3 It is a partial view of the cross-sectional view of the wet film bracket provided in the embodiment of the present application.
[0031] Description of the Reference Numerals:
[0032] 10 - Wet film bracket; 100 - Installation main body; 200 - Water replenishing main body; 210 - Water replenishing tank; 211 - Water replenishing hole; 212 - Overflow notch; 300 - Flow collecting main body; 310 - Overflow main body; 311 - Overflow channel; 312 - Overflow outlet; 313 - Guiding slope; 320 - Discharge main body; 321 - Collection cavity; 322 - Discharge pipe. Detailed Embodiments
[0033] To make the above-mentioned objects, features, and advantages of the present utility model more obvious and understandable, the following detailed description of the specific embodiments of the present utility model will be given with reference to the accompanying drawings.
[0034] Please refer to Figure 1, in the embodiments of the present application, a wet film support 10 is provided. The wet film support 10 is used to install a wet film and can supply water to the wet film. It should be noted that the wet film support 10 can be applied to a humidifier, and the humidifier can guide air flow through the wet film on the wet film support 10 to humidify the air flow, and then humidify a specified area through the humidified air flow. In other words, the humidifier realizes the humidification function by means of humidification with water. Based on this, in this embodiment, a humidifier is also provided, and the humidifier adopts the above-mentioned wet film support 10; further, in this embodiment, an air conditioner is also provided, and the air conditioner adopts the above-mentioned humidifier, which means that the air conditioner adopts the above-mentioned wet film support 10.
[0035] Among them, the wet film support 10, the humidifier and the air conditioner provided in this embodiment can improve the problem in the prior art that the water replenishment rate of the humidification module is too fast, resulting in excessive water overflow, which is likely to cause short circuits in the circuit and the growth of bacteria.
[0036] In this embodiment, please refer to Figure 1 and Figure 2 , the wet film support 10 includes an installation main body 100, a water replenishment main body 200 and a current collection main body 300. The installation main body 100 is used to install the wet film. The water replenishment main body 200 is arranged above the installation main body 100; a water replenishment groove 210 is formed on the water replenishment main body 200, and a water replenishment hole 211 is formed on the bottom wall of the water replenishment groove 210 to supply water to the wet film; an overflow notch 212 is formed on one of the side walls of the water replenishment groove 210, and the overflow notch 212 is arranged at the top of the side wall of the water replenishment groove 210. The current collection main body 300 and the overflow notch 212 are arranged on the same side of the water replenishment groove 210; the current collection main body 300 is used to receive the water flowing out of the overflow notch 212.
[0037] Among them, in this embodiment, the installation main body 100 and the water replenishment main body 200 jointly form a square structure, and the central area thereof is used to install the wet film. When the wet film support 10 is applied to a humidifier, the humidifier can guide the air flow through the central area of the square structure, so that the air flow flows through the wet film.
[0038] When the moisture on the wet film is insufficient, the water in the water replenishment groove 210 on the water replenishment main body 200 can flow to the wet film through the water replenishment hole 211 to increase the moisture contained in the wet film, so as to ensure that the wet film can effectively complete the humidification of the air flow.
[0039] It should be noted that in the prior art, the problem is that when the rate of replenishing water into the water replenishing tank 210 is too high or the amount of replenished water is large, the water in the water replenishing tank 210 will overflow from the periphery of the water replenishing tank 210, resulting in the internal components of the humidifier or air conditioner using this wet film holder being short-circuited due to the influence of water, and also causing the internal environment to be humid and prone to bacteria growth.
[0040] In this wet film holder 10, an overflow notch 212 is provided on one of the side walls of the water replenishing tank 210. When too much water is added to the water replenishing tank 210, it can be discharged from the overflow notch 212. The water discharged from the overflow notch 212 can directly flow into the flow collecting main body 300 for collection, and then the excess water is centrally discharged. Based on this, it can prevent the excess water in the water replenishing tank 210 from overflowing onto other components and avoid the problem of short circuit of other components. At the same time, it can also avoid the situation that the internal environment of the electrical appliance using this wet film holder 10 is humid, thereby avoiding the growth of bacteria. Therefore, this wet film holder 10 can improve the problem in the prior art that the water replenishing rate of the humidification module is too fast, resulting in too much water overflowing, which is likely to cause short circuit of the circuit and the growth of bacteria.
[0041] Optionally, the overflow notch 212 is a groove opened at the top of the side wall of the water replenishing tank 210. That is to say, the overflow notch 212 has an opening at the top of the side wall of the water replenishing tank 210, presenting an open area, which can reduce the difficulty of opening the overflow notch 212. In other words, setting the overflow notch 212 as a groove opened at the top of the side wall of the water replenishing tank 210 can reduce the difficulty of opening the overflow notch 212, thereby facilitating the manufacturing and forming of the wet film holder 10, reducing the manufacturing difficulty and cost.
[0042] It should be understood that in other embodiments of the present application, the overflow notch 212 can also be a through hole opened on the side wall of the water replenishing tank 210. In other words, the overflow notch 212 does not have an opening at the top of the side wall of the water replenishing tank 210, but is a through hole near the top of the side wall. At this time, the overflow of the excess water can also be guided through the through hole.
[0043] Furthermore, in this embodiment, the width of the overflow notch 212 gradually decreases from top to bottom. Among them, the overflow notch 212 is a V-shaped groove. Setting the width of the bottom of the overflow notch 212 to be smaller can facilitate the concentration of the water discharged from the overflow notch 212, facilitate the collection of the overflowing water, and avoid the problem that the water overflowing at the overflow port scatters and is likely to splash onto other components.
[0044] Of course, in other embodiments of the present application, the setting form of the overflow notch 212 can also adopt other forms. For example, the overflow notch 212 can be set as a U-shaped groove or a square groove, etc.
[0045] In addition, in some other embodiments, a serrated overflow notch 212 may also be formed on the side wall of the water replenishing tank 210. At this time, it can also be regarded as having a plurality of notches opened on the side wall of the water replenishing tank 210 for overflow.
[0046] In this embodiment, the overflow notch 212 is opened on one of the side walls in the length direction of the water replenishing tank 210. Thereby, the position setting of the current collecting main body 300 can be facilitated, so that the overall shape of the wet film bracket 10 is relatively simple and compact, which is convenient for the layout of the wet film bracket 10.
[0047] Please refer to Figure 2 and Figure 3 , the current collecting main body 300 includes an overflow main body 310 and a discharge main body 320. The overflow main body 310 is arranged on one side of the water replenishing tank 210. An overflow channel 311 is opened on the overflow main body 310, and the overflow channel 311 is used to receive the water flowing out of the overflow notch 212; the overflow channel 311 forms an overflow outlet 312 on the side of the overflow main body 310 away from the water replenishing tank 210. The discharge main body 320 is arranged on the side of the overflow main body 310 away from the water replenishing tank 210, and a collecting cavity 321 is provided on the discharge main body 320, and the collecting cavity 321 is used to receive the water discharged from the overflow outlet 312; a discharge pipe 322 is further provided on the discharge main body 320, and the internal channel of the discharge pipe 322 is communicated with the collecting cavity 321 and is used to discharge the water in the collecting cavity 321.
[0048] Among them, when the excess water in the water replenishing tank 210 flows out from the overflow notch 212, the flowing water is received by the overflow channel 311, and then discharged from the overflow outlet 312 under the guidance of the overflow channel 311. The water discharged from the overflow outlet 312 is received by the collecting cavity 321, and then uniformly discharged by the discharge pipe 322. Through the arrangement of the overflow channel 311, the problem of splashing caused by water directly falling into the collecting cavity 321 can be avoided, so as to ensure that the excess water flows stably into the collecting cavity 321 for unified discharge.
[0049] Furthermore, in this embodiment, the overflow channel 311 is vertically arranged, the overflow notch 212 is located at the top of the overflow channel 311; the overflow outlet 312 is located at the bottom of the overflow channel 311. Arranging the overflow channel 311 vertically can reduce the occupied volume of the overflow main body 310, thereby facilitating the reduction of the overall volume of the wet film bracket 10.
[0050] It should be noted that when the water is led out from the overflow notch 212, the water can flow along the side wall of the overflow channel 311, which can prevent the water from splashing directly when falling, and can ensure the stable overflow of the water.
[0051] In this embodiment, since the overflow outlet 312 is formed on the side of the overflow main body 310 away from the water replenishing tank 210, it can be regarded as being formed on the side wall of the overflow channel 311. On this basis, the bottom wall of the overflow channel 311 is inclined, and the overflow outlet 312 is located at the lower position of the bottom wall of the overflow channel 311. The inclined bottom wall can provide a guiding effect on the water, facilitating the discharge of water from the overflow outlet 312 and improving the discharge efficiency. In addition, it can also prevent water from accumulating in the overflow channel 311 and prevent bacteria from growing inside the overflow channel 311.
[0052] Further, a part of one side wall of the overflow channel 311 near the bottom wall of the overflow channel 311 is inclined to form a guiding slope 313, and the overflow outlet 312 is located at the lower position of the guiding slope 313. Among them, the side wall forming the guiding channel is located between the side wall forming the overflow outlet 312 and the side wall close to the water replenishing tank 210. By forming the guiding slope 313 on one side wall of the overflow channel 311, the guiding slope 313 and the bottom wall of the overflow channel 311 jointly provide a guiding effect on the water, enabling the water to be efficiently discharged from the overflow outlet 312 and improving the discharge efficiency.
[0053] In summary, in the wet film bracket 10, the humidifier and the air conditioner provided in the embodiment of the present application, an overflow notch 212 is formed on one side wall of the water replenishing tank 210. When too much water is added to the water replenishing tank 210, it can be discharged from the overflow notch 212. The water discharged from the overflow notch 212 can directly flow into the current collecting main body 300 for collection, and then the excess water is discharged centrally. Based on this, it is possible to prevent the excess water in the water replenishing tank 210 from overflowing onto other components and avoid the problem of short circuits in other components. At the same time, it can also avoid the humid environment inside the electrical appliance using the wet film bracket 10, thereby avoiding the growth of bacteria. Therefore, the wet film bracket 10 can improve the problem in the prior art that the water replenishing rate of the humidifying module is too fast, resulting in excessive water overflow, which is likely to cause circuit short circuits and the growth of bacteria. Setting the overflow notch 212 as a groove formed at the top of the side wall of the water replenishing tank 210 can reduce the difficulty of forming the overflow notch 212, thereby facilitating the molding of the wet film bracket 10, reducing the manufacturing difficulty and cost. Setting the width of the bottom of the overflow notch 212 to be smaller can facilitate the concentration of the water discharged from the overflow notch 212, facilitating the collection of the overflowing water and avoiding the problem that the water overflowing at the overflow opening scatters and is likely to splash onto other components. The guiding slope 313 and the bottom wall of the overflow channel 311 jointly provide a guiding effect on the water, enabling the water to be efficiently discharged from the overflow outlet 312 and improving the discharge efficiency.
[0054] Although the present utility model is disclosed as above, the present utility model is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present utility model. Therefore, the protection scope of the present utility model shall be subject to the scope defined by the claims.
Claims
1. A wet film support, characterized in that, Comprising: An installation main body (100) for installing a wet film; A water replenishment main body (200) disposed above the installation main body (100); a water replenishment tank (210) is formed on the water replenishment main body (200), and a water replenishment hole (211) is formed in the bottom wall of the water replenishment tank (210) to replenish water to the wet film; an overflow notch (212) is formed in one of the side walls of the water replenishment tank (210), and the overflow notch (212) is disposed at the top of the side wall of the water replenishment tank (210); A water collection main body (300) disposed on the same side of the water replenishment tank (210) as the overflow notch (212); the water collection main body (300) is used for receiving the water flowing out of the overflow notch (212).
2. The wet film bracket according to claim 1, wherein The overflow notch (212) is a groove formed in the top of the side wall of the water replenishment tank (210).
3. The wet film support according to claim 2, wherein, The width of the overflow notch (212) gradually decreases from top to bottom.
4. The wet film support according to claim 1, wherein The overflow notch (212) is formed in one of the side walls in the length direction of the water replenishment tank (210).
5. The wet film support according to claim 1, characterized in that, The water collection main body (300) includes an overflow main body (310) and a discharge main body (320); The overflow main body (310) is disposed on one side of the water replenishment tank (210), and an overflow channel (311) is formed on the overflow main body (310), and the overflow channel (311) is used for receiving the water flowing out of the overflow notch (212); an overflow outlet (312) is formed on the side of the overflow main body (310) away from the water replenishment tank (210) at the overflow channel (311); The discharge main body (320) is disposed on the side of the overflow main body (310) away from the water replenishment tank (210), and a collection cavity (321) is provided on the discharge main body (320), and the collection cavity (321) is used for receiving the water discharged from the overflow outlet (312); a discharge pipe (322) is further provided on the discharge main body (320), and the internal channel of the discharge pipe (322) is communicated with the collection cavity (321) and is used for discharging the water in the collection cavity (321).
6. The wet film support according to claim 5, wherein The overflow channel (311) is vertically disposed, the overflow notch (212) is located at the top of the overflow channel (311); the overflow outlet (312) is located at the bottom of the overflow channel (311).
7. The wet film bracket according to claim 6, characterized in that, The bottom wall of the overflow channel (311) is inclined, and the overflow outlet (312) is located at the lower position of the bottom wall of the overflow channel (311).
8. The wet film support according to claim 7, characterized in that, One of the side walls of the overflow channel (311) is partially inclined near the bottom wall of the overflow channel (311) to form a diversion inclined surface (313), and the overflow outlet (312) is located at the lower position of the diversion inclined surface (313).
9. A humidifier, characterized in that, Including the wet film bracket (10) according to any one of claims 1-8.
10. An air conditioner, characterized in that, Including the humidifier according to claim 9.