Dehumidification module

By designing a dehumidification module with clamping and mounting a dehumidification film with a clamping body with electrode pins, the existing dehumidification module has solved the problem of complex structure and large space occupancy, and the dehumidification function has been simplified and automated, which is suitable for various containers that need to be dried.

CN222887470UActive Publication Date: 2025-05-20GUANG DONG MO DUO WEI LAI KE JI YOU XIAN GONG SI
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Patent Information

Application Number
CN202421749905.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-05-20
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The existing dehumidification module has a complex structure, large space occupies, irreversible chemical dehumidification, and physical dehumidification require manual operation and large volume.

Method used

A dehumidification module including a first clamping body, a second clamping body and a dehumidification film is designed, and the dehumidification film is activated through the electrical connection between the first clamping body and the second clamping body to realize the dehumidification function. The module can be adapted to a variety of containers that require drying, with only power supply and assembly locations required.

Benefits of technology

It has achieved simplification and automation of dehumidification functions, strong adaptability, small space, and the dehumidification film can be reused on and reused.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dehumidification, in particular to a dehumidification module. Comprising a first clamping body, a second clamping body and a dehumidification film, the first clamping body is provided with a first ventilation part, the second clamping body is provided with a second ventilation part, the first clamping body and the second clamping body are oppositely arranged, and the dehumidification film is fixed between the first ventilation part and the second ventilation part. The first clamping body is provided with a first conductive pin, and the second clamping body is provided with a second conductive pin. The scheme can be adapted to various containers needing to be dried, and only a power supply and a position for assembling the dehumidification module need to be provided.
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Description

Technical Field

[0001] The utility model relates to the technical field of dehumidification, in particular to a dehumidification module. Background Art

[0002] In existing storage containers such as lockers, wardrobes, cabinets, and medicine cabinets, in order to ensure the dryness inside, physical dehumidification or chemical dehumidification methods are generally adopted. Physical dehumidification mainly uses disposable or recyclable dehumidification particles, such as physical dehumidifiers on the market. Chemical dehumidification mainly uses chemical substances that can react with water, such as dehumidification bags and desiccants on the market. However, at present, whether it is a physical dehumidification module or a chemical dehumidification module, its structure is complex, and setting a larger amount according to the dehumidification requirement results in a large occupied space. Moreover, chemical dehumidification is generally non-recyclable due to irreversible reactions, while physical dehumidification can mostly be recycled after heating and drying, but it requires manual removal and separate operation, which is very troublesome and generally has a large volume. Content of the Utility Model

[0003] In order to solve the above technical problems, the utility model provides a dehumidification module, which can be adapted to various containers that need to be dried, and only needs to provide a power supply and a position for assembling the dehumidification module.

[0004] The utility model proposes the following scheme:

[0005] A dehumidification module includes a first clamping body, a second clamping body, and a dehumidification film. The first clamping body is provided with a first ventilation part, the second clamping body is provided with a second ventilation part. The first clamping body and the second clamping body are oppositely arranged and fix the dehumidification film between the first ventilation part and the second ventilation part. The first clamping body is provided with a first conductive pin, and the second clamping body is provided with a second conductive pin.

[0006] For a dehumidification module as described above, the first conductive pin and the first clamping body are of an integral structure, and the second conductive pin and the second clamping body are of an integral structure.

[0007] For a dehumidification module as described above, both the first conductive pin and the second conductive pin extend outward from the same side, and the first conductive pin and the second conductive pin are respectively located at opposite ends of this side.

[0008] For a dehumidification module as described above, the first conductive pin extends outward from one side of the first clamping body, and the second conductive pin extends outward from a side different from the first conductive pin.

[0009] A dehumidification module as described above, wherein a plurality of first partition bars are provided on the first ventilation part to divide the first ventilation part into a plurality of ventilation holes, and a plurality of second partition bars are provided on the second ventilation part to divide the second ventilation part into a plurality of ventilation holes.

[0010] A dehumidification module as described above, wherein the first partition bar and the second partition bar are in a "rice" - shaped structure.

[0011] A dehumidification module as described above, further comprising a housing having a ventilation channel. The first clamping body and the second clamping body are installed in the housing, and the first ventilation part, the dehumidification film, and the second ventilation part are all opposite to the ventilation channel. And dust - proof nets are provided at the side channel openings of the ventilation channel.

[0012] A dehumidification module as described above, further comprising a first partition net connected between the first clamping body and the dehumidification film and opposite to the first ventilation part. A plurality of grid holes are provided on the first partition net.

[0013] A dehumidification module as described above, further comprising a second partition net connected between the second clamping body and the dehumidification film and opposite to the second ventilation part. A plurality of grid holes are provided on the second partition net.

[0014] A dehumidification module as described above, wherein the first clamping body, the second clamping body and the dehumidification film are connected by adhesion.

[0015] In the embodiment of the present utility model, the dehumidification film is clamped and installed by the first clamping body and the second clamping body with electrode pins, and after the first clamping body and the second clamping body are electrically connected to the outside, the dehumidification film can be activated to realize the dehumidification function. This dehumidification module can be adapted to various containers in need of drying and dehumidification appliances, especially some intelligent storage containers, only requiring a power supply and a position for assembling this dehumidification module. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0017] Figure 1 It is a schematic diagram of the dehumidification module of the present utility model;

[0018] Figure 2 It is an exploded view of the dehumidification module of the present utility model;

[0019] Figure 3 It is a schematic diagram of the dehumidification module with a housing;

[0020] Figure 4 Schematic diagram of a dehumidification module with a single partition net;

[0021] Figure 5 Schematic diagram of a dehumidification module with a double partition net; Detailed implementation manners

[0022] In order to make the technical problems, technical solutions and beneficial effects solved by the present utility model more clear and understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0023] When the embodiments of the present utility model mention ordinal numbers such as "first" and "second", unless they actually express an order meaning according to the context, they should be understood as merely for distinction.

[0024] In the description of the present utility model, it should be noted that unless otherwise clearly defined and limited, the terms "installed", "connected" and "connected" should be understood in a broad sense. For example, they can be fixedly connected, detachably connected or integrally connected; they can be mechanically connected or electrically connected; they can be directly connected or indirectly connected through an intermediate medium, and can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0025] As Figures 1 to 5 shown, a dehumidification module includes a first clamping body 1, a second clamping body 2 and a dehumidification film 3. A first ventilation part 101 is provided on the first clamping body 1, and a second ventilation part 201 is provided on the second clamping body 2. The first clamping body 1 and the second clamping body 2 are arranged oppositely and fix the dehumidification film 3 between the first ventilation part 101 and the second ventilation part 201. A first conductive pin 11 is provided on the first clamping body 1, and a second conductive pin 21 is provided on the second clamping body 2. In the embodiments of the present utility model, the dehumidification film is clamped and installed by the first clamping body and the second clamping body with electrode pins. It can be understood that when in use, the dehumidification module is installed at the ventilation opening, so that the external air must pass through the first ventilation part 101, the dehumidification film 3 and the second ventilation part 201. At this time, after being electrically connected to the outside through the first clamping body and the second clamping body, the dehumidification film can be activated to isolate the moisture in the air or prevent the moisture in the air from entering the interior, realizing the dehumidification function. This dehumidification module can be adapted to various containers and dehumidifying appliances that need to be dried, especially some intelligent storage containers, and only need to provide power and a position for assembling this dehumidification module.

[0026] Specifically, in the embodiments of the present utility model, the dehumidification film 3 that is energized can be implemented by using a proton exchange membrane, an electrolyte membrane, or a graphene intelligent membrane, etc. It can be energized to carry out reaction dehumidification or isolate the passage of moisture. For example, graphene can form a barrier when treating liquids and gases. The graphene membrane is developed from inexpensive graphene (graphene oxide) and can precisely control the water flow by using an electric current. Therefore, when needed, the graphene membrane can even be used to completely prevent the passage of water.

[0027] In the embodiments of the present utility model, since the first clamping body 1 and the second clamping body 2 are mainly used for clamping and installing the dehumidification film 3, and ensuring that both the first conductive pin 11 and the second conductive pin 21 are connected to the dehumidification film 3 after installing the dehumidification film 3, the dehumidification film 3 can have pins extending to be respectively docked with the first conductive pin 11 and the second conductive pin 21.

[0028] To make the structure simpler, in the present solution, the first conductive pin 11 and the first clamping body 1 are of an integrated structure, and the second conductive pin 21 and the second clamping body 2 are of an integrated structure. It can be understood that the first clamping body 1 and the second clamping body 2 are conductive as a whole. After the first clamping body 1 and the second clamping body 2 clamp and install the dehumidification film 3, the first clamping body 1 and the second clamping body 2 respectively contact both sides of the dehumidification film 3 to realize energization of the dehumidification film 3.

[0029] In addition, to make the subsequent connection with wires or electrical connections more convenient, in the present solution, both the first conductive pin 11 and the second conductive pin 21 extend outward from the same side, and the first conductive pin 11 and the second conductive pin 21 are respectively located at opposite ends of this side. For example, the setting method where both the first conductive pin 11 and the second conductive pin 21 extend downward from the lower side. At this time, the first conductive pin 11 and the second conductive pin 21 are respectively located at the left end and the right end of the lower side, which makes there be enough space between the first conductive pin 11 and the second conductive pin 21 to facilitate connecting electric wires or directly plugging into electrical pins.

[0030] Of course, there are also simpler setting methods. For example, the first conductive pin 11 extends outward from one side of the first clamping body 1, and the second conductive pin 21 extends outward from a side different from the first conductive pin 11.

[0031] In the embodiment of the present utility model, a plurality of first partition bars 12 are provided on the first ventilation part 101 to divide the first ventilation part 101 into a plurality of ventilation holes, and a plurality of second partition bars 22 are provided on the second ventilation part 201 to divide the second ventilation part 201 into a plurality of ventilation holes. The function of the first partition bar 12 is to enhance the overall strength of the entire first clamping body 1. Since the dehumidification film 3 in this solution can be a thin film structure with a small thickness, and the size and thickness of the corresponding first clamping body 1 are also relatively small, while the first ventilation 101 needs to be set as large as possible to ensure the passing effect. Therefore, the strength of the first clamping body 1 can be effectively enhanced through the first partition bar 12. In addition, the first partition bar 12 is also beneficial to maintaining the internal dehumidification film 3, so that it is not easily displaced or the connection fails due to the resistance of the air flow during use. In this solution, the effect of the second partition bar 22 is the same.

[0032] Specifically, the first partition bar 12 and the second partition bar 22 are in a "rice" - shaped structure. Its structure is simple. Of course, it can also be a "three" - shaped or "field" - shaped structure.

[0033] In the embodiment of the present utility model, in order to improve the overall service life of the dehumidification module, considering that there are dust particles in the air during actual use, so as Figure 3 shown, the dehumidification module further includes a housing 4. The housing 4 has a ventilation channel 401. The first clamping body 1 and the second clamping body 2 are installed in the housing 4, and the first ventilation part 101, the dehumidification film 3, and the second ventilation part 201 are all opposite to the ventilation channel 401, and dust - proof nets are provided at the channel openings on one side of the ventilation channel 401. It is equivalent to blocking large - particle dust and sundries through the outer dust - proof net, thereby improving the service life of the dehumidification film 3 and the entire dehumidification module 3. Moreover, the outer dust - proof net is also convenient for removal, cleaning, and replacement.

[0034] As another way to improve the service life, as Figure 4 shown, the dehumidification module in this solution may further include a first partition net 41. The first partition net 41 is connected between the first clamping body 1 and the dehumidification film 3 and is opposite to the first ventilation part 101. A plurality of mesh holes are provided on the first partition net 41. That is, a partition net structure for blocking dust particles is formed inside, and normal ventilation can be achieved.

[0035] For better effect, as Figure 5 shown, this solution further includes a second partition net 42. The second partition net 42 is connected between the second clamping body 2 and the dehumidification film 3 and is opposite to the second ventilation part 201. A plurality of mesh holes are provided on the second partition net 42.

[0036] Of course, a structure with multiple mesh holes can also be formed by the first partition strip and the second partition strip, which is equivalent to an integral structure of the first partition net 41 and the first clamping body 1, and an integral structure of the second partition net 42 and the second clamping body 2, making the structure simpler.

[0037] In this solution, the first clamping body 1, the second clamping body 2 and the dehumidification film 3 are connected by adhesion. Its structure is simple and convenient for manufacturing. Moreover, in this solution, the first clamping body 1 and the second clamping body 2 can be formed by stamping, directly stamping out the corresponding first conductive pin 11, the second conductive pin 21 and a plurality of ventilation holes. Its structure is simple, making manufacturing more convenient.

[0038] In the embodiment of the present invention, the dehumidification film is clamped and installed by the first clamping body and the second clamping body with electrode pins. It can be understood that, during use, the dehumidification module is installed at the ventilation opening, so that the external air must pass through the first ventilation part 101, the dehumidification film 3 and the second ventilation part 201. At this time, after being electrically connected to the outside through the first clamping body and the second clamping body, the dehumidification film can be activated to isolate the moisture in the air or prevent the moisture in the air from entering the interior, realizing the dehumidification function. This dehumidification module can be adapted to various containers and dehumidification appliances that need to be dried, especially some intelligent storage containers, and only a power supply and a position for assembling this dehumidification module are required.

[0039] The above embodiments only represent several implementation manners of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the utility model patent shall be subject to the appended claims.

Claims

1. A dehumidification module, characterized in that: The invention comprises a first clamping body (1), a second clamping body (2) and a dehumidification film (3); the first clamping body (1) is provided with a first ventilation portion (101), the second clamping body (2) is provided with a second ventilation portion (201), the first clamping body (1) and the second clamping body (2) are arranged opposite to each other and the dehumidification film (3) is fixed between the first ventilation portion (101) and the second ventilation portion (201); the first clamping body (1) is provided with a first conductive pin (11), and the second clamping body (2) is provided with a second conductive pin (21).

2. A dehumidification module according to claim 1, characterized in that: The first conductive pin (11) and the first clamping body (1) are an integrated structure, and the second conductive pin (21) and the second clamping body (2) are an integrated structure.

3. A dehumidification module according to claim 1 or 2, characterized in that: The first conductive pin (11) and the second conductive pin (21) both extend outwards from the same side, and the first conductive pin (11) and the second conductive pin (21) are respectively located at two opposite ends of the side.

4. A dehumidification module according to claim 1 or 2, characterized in that: The first conductive pin (11) extends outwards from one side of the first clamping body (1), and the second conductive pin (21) extends outwards from a side different from the first conductive pin (11).

5. A dehumidification module according to claim 1 or 2, characterized in that: The first ventilation portion (101) is provided with a plurality of first partition bars (12) for dividing the first ventilation portion (101) into a plurality of ventilation holes, and the second ventilation portion (201) is provided with a plurality of second partition bars (22) for dividing the second ventilation portion (201) into a plurality of ventilation holes.

6. A dehumidification module according to claim 5, characterized in that: The first spacer bar (12) and the second spacer bar (22) are in a "M"-shaped structure.

7. A dehumidification module according to claim 1, characterized in that: The invention also comprises a shell (4), wherein the shell (4) has a ventilation channel (401), the first clamping body (1) and the second clamping body (2) are installed in the shell (4), and the first ventilation part (101), the dehumidification membrane (3), and the second ventilation part (201) are all opposite to the ventilation channel (401), and a dustproof net is provided at one side of the channel opening of the ventilation channel (401).

8. The dehumidification module according to claim 1, characterized in that: It also comprises a first partition net (41), the first partition net (41) being connected between the first clamping body (1) and the dehumidification membrane (3) and opposite to the first ventilation portion (101), and a plurality of mesh holes being provided on the first partition net (41).

9. A dehumidification module according to claim 8, characterized in that: It also comprises a second partition net (42), the second partition net (42) being connected between the second clamping body (2) and the dehumidification membrane (3) and opposite to the second ventilation portion (201), and the second partition net (42) being provided with a plurality of mesh holes.

10. The dehumidification module according to claim 1, characterized in that: The first clamping body (1), the second clamping body (2) and the dehumidification film (3) are connected by bonding.