Multi-channel dehumidification device

Through the design of a multi-channel dehumidification device, combined with refrigeration dehumidification semiconductors and adsorption layer purification, the problems of high noise, large size and poor dehumidification effect of traditional dehumidification devices are solved, and efficient dehumidification and air purification are achieved.

CN223399858UActive Publication Date: 2025-09-30SHENZHEN YIPIN SHIDAI TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422593896.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-30
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

Traditional dehumidification devices are noisy, bulky, have poor dehumidification effects, and produce poor exhaust air quality.

Method used

A multi-channel dehumidification device is designed, which includes multiple dehumidification mechanisms and filtering mechanisms. It uses refrigeration and dehumidification semiconductors and cooling devices to dehumidify and purify the air through the adsorption layer.

Benefits of technology

Achieves optimal dehumidification effect and improves exhaust air quality, reducing noise and volume.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223399858U_ABST
    Figure CN223399858U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of dehumidification devices, in particular to a multi-channel dehumidification device which comprises a machine body, a power button is mounted on the surface of the machine body, a plurality of air inlet grids are mounted on the machine body, an air outlet grid is further mounted on the machine body, a collecting box is placed at the bottom of the machine body, and a fan is mounted in the machine body. The input end of the draught fan is electrically connected with the output end of the power button, the draught fan is located between the air outlet grid and the collecting box, dehumidification mechanisms with the same number as the air inlet grids are arranged in the machine body, and each dehumidification mechanism is arranged at the position opposite to the corresponding air inlet grid. The air inlet grid, the dehumidification mechanism opposite to the air inlet grid and the air outlet grid jointly form a complete dehumidification channel allowing air to pass through and conducting dehumidification. The dehumidification device is provided with a plurality of dehumidification channels. On the basis of a limited structure, a plurality of dehumidification channels are arranged, and the dehumidification effect is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of dehumidification devices, in particular to a multi-channel dehumidification device. Background Art

[0002] A dehumidifier uses a fan to draw moist air into the machine, which then passes through a heat exchanger to condense the moisture in the air into water droplets, which are then discharged as dry air. This cycle is repeated to reduce indoor humidity.

[0003] Due to the characteristics of commonly used dehumidifiers, dehumidification itself involves alternating hot and cold, and heat needs to be dissipated. The traditional heat dissipation method is unified fan processing, which is noisy, bulky, and has poor dehumidification effect. Dehumidification devices can generally only dehumidify the air and are not easy to filter the incoming air, thereby reducing the quality of the air discharged by the dehumidification device. Utility Model Content

[0004] The purpose of the present invention is to provide a multi-channel dehumidification device to solve the problems of high noise, large volume, poor dehumidification effect and poor quality of discharged air proposed in the above background technology.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a multi-channel dehumidification device, comprising a body, a power button being installed on the surface of the body, the body being installed with multiple air inlet grilles, the body being also installed with an air outlet grille, a collecting box being placed at the bottom of the body, a fan being installed inside the body, the input end of the fan being electrically connected to the output end of the power button, the fan being located below the air outlet grille, a dehumidification mechanism being arranged inside the body with the same number as the air inlet grilles, each dehumidification mechanism being arranged at a position opposite to each of the air inlet grilles, the air inlet grille, the dehumidification mechanism opposite to the air inlet grille and the air outlet grille together constituting a complete dehumidification channel for air to pass through and be dehumidified, the dehumidification device having multiple dehumidification channels; the interior of the dehumidification mechanism comprising a heat dissipation aluminum member, a dehumidification aluminum body, a refrigeration and dehumidification semiconductor, a cooling device volume body and a cooling circulation device, the interior of the body being provided with a filtering mechanism, the filtering mechanism being composed of an adsorption layer and a disassembly and assembly component.

[0006] Furthermore, a refrigeration and dehumidification semiconductor is provided on one side of the heat dissipation aluminum member, the input end of the refrigeration and dehumidification semiconductor is electrically connected to the output end of the power button, and a dehumidification aluminum body is fixed to one side of the refrigeration and dehumidification semiconductor by screws.

[0007] Furthermore, a cooling device volume body is provided on the other side of the refrigeration and dehumidification semiconductor, and the cooling device volume body is installed on the surface of the heat dissipation aluminum part. A cooling circulation device is installed on the surface of the heat dissipation aluminum part, and the cooling circulation device is controlled by a power button.

[0008] Furthermore, an adsorption layer is provided inside the body, the adsorption layer is located inside the heat dissipation aluminum part and slides with the heat dissipation aluminum part, the adsorption layer is located below the fan, and a disassembly assembly is provided on the surface of the adsorption layer.

[0009] Furthermore, the interior of the disassembly and assembly component includes a clamping block, a pull plate, a take-and-place opening, and a clamping port. The surface of the body is provided with a take-and-place opening for placing the adsorption layer, and the pull plate is fixed to the surface of the adsorption layer.

[0010] Furthermore, clamping blocks are fixed at the corner positions of the pull plate surface, and the surface of the body is provided with bayonet holes, and the bayonet holes and the clamping blocks are engaged with each other.

[0011] Compared with the prior art, the beneficial effects of the present invention are: the multi-channel dehumidification device can not only achieve the best dehumidification effect, but also improve the quality of the air discharged when the dehumidification device is in use;

[0012] 1. By setting up a dehumidification mechanism, operate the power button to control the fan to work, and under the action of the fan, exhaust is carried out. At this time, the outside air enters the bottom position of the body through the air inlet grilles on multiple sides. At this time, the refrigeration and dehumidification semiconductor generates cold on one side and heat on the other side. The surface of the refrigeration and dehumidification semiconductor in contact with the dehumidification aluminum body generates cold, and the surface of the refrigeration and dehumidification semiconductor in contact with the cooling device volume body generates heat. One end of the cold surface is conducted to the dehumidification aluminum body, condensing water molecules in the air. When a certain accumulation is reached, it drips into the collection box. At the same time, the heat generated by the refrigeration and dehumidification semiconductor is dissipated under the action of the cooling device volume body, and the cooling circulation device facilitates the circulation of heat in the cooling device volume body. The dehumidification device uses multi-channel suction and dehumidification to absorb moisture in the air for dehumidification within a 360-degree range without dead angles. At the same time, at least one fan is used for air cavity heat dissipation and air duct processing to achieve the best dehumidification effect.

[0013] 2. By setting up a filtering mechanism, the adsorption layer is placed on one side of the body, and the adsorption layer is inserted into the inside of the access port. Then, the pull plate is pushed to insert the adsorption layer into the heat dissipation aluminum part, so that the adsorption layer is located below the fan. At this time, the card block is stuck to the inside of the card port, thereby fixing the adsorption layer. When in use, the incoming air can be purified under the action of the adsorption layer to realize the filtering function of the dehumidifier on the air, thereby improving the quality of the air discharged when the dehumidifier is in use. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the front three-dimensional appearance structure of the utility model;

[0015] Figure 2This is a schematic diagram of the rear-view three-dimensional cross-sectional structure of the utility model;

[0016] Figure 3 This is a schematic diagram of the explosion structure of the utility model;

[0017] Figure 4 This is an enlarged structural diagram of the dehumidification mechanism of the utility model;

[0018] Figure 5 It is a schematic diagram of an enlarged side cross-sectional structure of the filtering mechanism of the present invention.

[0019] In the figure: 1. Machine body; 11. Power button; 12. Air outlet grille; 13. Air inlet grille; 14. Collection box; 15. Fan; 2. Dehumidification mechanism; 21. Heat dissipation aluminum part; 22. Dehumidification aluminum body; 23. Refrigeration and dehumidification semiconductor; 24. Cooling device volume body; 25. Cooling cycle device; 3. Filter mechanism; 31. Adsorption layer; 32. Disassembly and assembly components; 321. Block; 322. Pull plate; 323. Access port; 324. Clamp. DETAILED DESCRIPTION

[0020] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, not all of the embodiments. In addition, the terms "first", "second", "third", "upper, lower, left, right", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. At the same time, in the description of the present invention, unless otherwise clearly stipulated and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0021] The utility model provides a multi-channel dehumidification device with a structure as follows Figure 1 and Figure 2As shown, it includes a body 1, a power button 11 is installed on the surface of the body 1, and a lithium battery and a processor are embedded in the power button 11. The processor includes an amplifier tube, a protection resistor Rm, a filter, an A / D converter and a single-chip microcomputer. The sensor and the protection resistor Rm are connected in parallel to the amplifier tube and in series with the filter, and the signal is converted by the A / D converter and sent to the single-chip microcomputer. The display screen receives the processed signal sent by the single-chip microcomputer. Air inlet grilles 13 are installed on multiple sides of the body 1, an air outlet grille 12 is installed at the top position of the body 1, and a collection box 14 is placed at the bottom position of the body 1. A fan 15 is installed inside the body 1. The model of the fan 15 can be selected from the Y series. The input end of the fan 15 is electrically connected to the output end of the power button 11, and the fan 15 is located below the air outlet grille 12.

[0022] Furthermore, if Figure 3 and Figure 4 As shown, the body 1 is provided with a dehumidification mechanism 2, and the interior of the dehumidification mechanism 2 includes a heat dissipation aluminum part 21, a dehumidification aluminum body 22, a refrigeration and dehumidification semiconductor 23, a cooling device volume body 24 and a cooling circulation device 25. The heat dissipation aluminum part 21 is fixed on multiple sides of the body 1. The heat dissipation aluminum part 21 is located on the inner side of the air intake grille 13. The structure of the heat dissipation aluminum part 21 is an L-shaped structure. A refrigeration and dehumidification semiconductor 23 is provided on one side of the heat dissipation aluminum part 21. The input end of the refrigeration and dehumidification semiconductor 23 is electrically connected to the output end of the power button 11. The dehumidification aluminum body 22 is fixed to one side of the refrigeration and dehumidification semiconductor 23 by screws. The cooling device volume body 24 is provided on the other side of the refrigeration and dehumidification semiconductor 23. The cooling device volume body 24 is installed on the surface of the heat dissipation aluminum part 21. The cooling circulation device 25 is installed on the surface of the heat dissipation aluminum part 21. The cooling circulation device 25 is controlled by the power button 11.

[0023] The number of the dehumidification mechanisms 2 is consistent with the number of the air inlet grilles. Each dehumidification mechanism 2 is respectively arranged at a position opposite to each of the air inlet grilles 13. The air inlet grilles 13, the dehumidification mechanism 2 opposite to the air inlet grille 13, and the air outlet grille 12 together constitute a complete dehumidification channel for air to pass through and be dehumidified. The dehumidification device has multiple dehumidification channels.

[0024] When in use, operate the power button 11 to control the fan 15 to work. Under the action of the fan 15, the outside air enters the bottom position of the body 1 through the air inlet grilles 13 on multiple sides. At this time, the refrigeration and dehumidification semiconductor 23 generates cold on one side and heat on the other side. The surface of the refrigeration and dehumidification semiconductor 23 in contact with the dehumidification aluminum body 22 generates cold, and the surface of the refrigeration and dehumidification semiconductor 23 in contact with the cooling device volume body 24 generates heat. The end of the cold surface is conducted to the dehumidification aluminum body 22, and the air is The water molecules condense and drip into the collection box 14 when a certain accumulation is reached. At the same time, the heat generated by the refrigeration and dehumidification semiconductor 23 is dissipated under the action of the cooling device volume 24, and the cooling circulation device 25 facilitates the circulation of heat in the cooling device volume 24. The dehumidification device performs air suction and dehumidification through multiple channels, and absorbs moisture in the air for dehumidification within the 360-degree range of the machine without dead angles. At the same time, at least one fan is used for air cavity heat dissipation and air duct processing to achieve the best dehumidification effect.

[0025] Furthermore, if Figure 3 and Figure 5 As shown, the interior of the body 1 is provided with a filter mechanism 3, which consists of an adsorption layer 31 and a disassembly assembly 32. The interior of the body 1 is provided with an adsorption layer 31, which is located inside the heat dissipation aluminum part 21 and slides with the heat dissipation aluminum part 21. The adsorption layer 31 is located below the fan 15. The surface of the adsorption layer 31 is provided with a disassembly assembly 32, and the interior of the disassembly assembly 32 includes a card block 321, a pull plate 322, a take-and-put port 323 and a bayonet 324. The surface of the body 1 is provided with a take-and-put port 323 for placing the adsorption layer 31, and the surface of the adsorption layer 31 is fixed with a pull plate 322, and the corner positions of the surface of the pull plate 322 are fixed with card blocks 321. The surface of the body 1 is provided with bayonet 324, and the bayonet 324 is engaged with the card block 321.

[0026] It should be noted that the adsorption layer 31 is used to purify the air. The adsorption layer 31 can be made of materials used to purify the air, such as activated carbon, zeolite, diatom mud, etc., and can also be made of composite materials commonly used in the prior art for purifying the air. This application is not limited to this comparison.

[0027] It should be noted that the fan of the present application has three functions. The first is the heat dissipation function, which facilitates the heat dissipation of the heat generated by the contact surface between the refrigeration and dehumidification semiconductor 23 and the cooling device volume body 24. The second is the air suction function, which draws in the external wind for dehumidification. The third is the high wind force and large air volume. The external air is first filtered and purified by the adsorption layer before dehumidification.

[0028] When in use, place the adsorption layer 31 to one side of the body 1, insert the adsorption layer 31 into the inside of the take-out port 323, and then push the pull plate 322 to insert the adsorption layer 31 into the inside of the heat dissipation aluminum part 21, so that the adsorption layer 31 is located below the fan 15. At this time, the block 321 is stuck to the inside of the bayonet 324, thereby fixing the adsorption layer 31. When in use, the incoming air can be purified under the action of the adsorption layer 31 to realize the filtering function of the dehumidification device on the air.

[0029] At the same time, a PTC ceramic heating element is installed on the inner wall of the body 1 by screws. The input end of the PTC ceramic heating element is electrically connected to the output end of the power button 11. The PTC ceramic heating element is located below the air outlet grille 12.

[0030] When in use, the PTC ceramic heating element can be controlled to turn on through the power button 11 to heat the exhaust air, so that the hot air is discharged through the air intake grille 13 and then used to dry clothes to achieve the effect of drying clothes.

[0031] Working principle: When in use, first place the adsorption layer 31 to one side of the body 1, insert the adsorption layer 31 into the inside of the take-in and put-out port 323, then push the pull plate 322 to insert the adsorption layer 31 into the inside of the heat dissipation aluminum part 21, so that the adsorption layer 31 is located below the fan 15. At this time, the block 321 is stuck to the inside of the bayonet 324, thereby fixing the adsorption layer 31. When in use, the incoming air can be purified under the action of the adsorption layer 31 to realize the filtering function of the dehumidifier on the air, thereby improving the quality of the air discharged when the dehumidifier is in use.

[0032] Then operate the power button 11 to control the fan 15 to work. Under the action of the fan 15, the outside air enters the bottom position of the body 1 through the air inlet grilles 13 on multiple sides. At this time, the refrigeration and dehumidification semiconductor 23 generates cold on one side and heat on the other side. The surface of the refrigeration and dehumidification semiconductor 23 in contact with the dehumidification aluminum body 22 generates cold, and the surface of the refrigeration and dehumidification semiconductor 23 in contact with the cooling device volume body 24 generates heat. The end of the cold surface is conducted to the dehumidification aluminum body 22, and the air in the air is heated. Water molecules condense, and when they reach a certain accumulation, they drip into the collection box 14. At the same time, the heat generated by the refrigeration and dehumidification semiconductor 23 is dissipated under the action of the cooling device volume 24, and the cooling circulation device 25 facilitates the circulation of heat dissipation in the cooling device volume 24. The dehumidification device uses multi-channel air suction and dehumidification, and absorbs moisture in the air for dehumidification within the 360-degree range of the machine without dead angles. At the same time, at least one fan is used for air cavity heat dissipation and air duct processing to achieve the best dehumidification effect.

[0033] At the same time, when in use, the PTC ceramic heating element can be controlled to turn on through the power button 11 to heat the exhaust air, so that the hot air is discharged through the air intake grille 13, and then used to dry clothes to achieve the effect of drying clothes, and finally complete the use of the dehumidification device.

[0034] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. A multi-channel dehumidification device, comprising a body (1), characterized in that: The surface of the machine body (1) is provided with a power button (11), the machine body (1) is provided with a plurality of air inlet grilles (13), the machine body (1) is further provided with an air outlet grille (12), a collecting box (14) is placed at the bottom of the machine body (1), a fan (15) is provided inside the machine body (1), the input end of the fan (15) is electrically connected to the output end of the power button (11), the fan (15) is located below the air outlet grille (12), the machine body (1) is provided with dehumidification mechanisms in the same number as the air inlet grilles, and each dehumidification mechanism is provided at the same position as each The relative positions of the air inlet grille, the air inlet grille, the dehumidification mechanism opposite to the air inlet grille and the air outlet grille together constitute a complete dehumidification channel for air to pass through and be dehumidified, and the dehumidification device has multiple dehumidification channels; the interior of the dehumidification mechanism (2) includes a heat dissipation aluminum member (21), a dehumidification aluminum body (22), a refrigeration and dehumidification semiconductor (23), a cooling device volume body (24) and a cooling circulation device (25); the interior of the body (1) is provided with a filter mechanism (3), and the filter mechanism (3) is composed of an adsorption layer (31) and a disassembly and assembly component (32).

2. The multi-channel dehumidification device according to claim 1, characterized in that: A refrigeration and dehumidification semiconductor (23) is provided on one side of the heat dissipation aluminum member (21), an input end of the refrigeration and dehumidification semiconductor (23) is electrically connected to an output end of the power button (11), and a dehumidification aluminum body (22) is fixed to one side of the refrigeration and dehumidification semiconductor (23) by screws.

3. The multi-channel dehumidification device according to claim 2, characterized in that: A cooling device volume body (24) is provided on the other side of the refrigeration and dehumidification semiconductor (23), and the cooling device volume body (24) is installed on the surface of the heat dissipation aluminum member (21). A cooling circulation device (25) is installed on the surface of the heat dissipation aluminum member (21), and the cooling circulation device (25) is controlled by a power button (11).

4. The multi-channel dehumidification device according to claim 1, characterized in that: An adsorption layer (31) is provided inside the machine body (1), the adsorption layer (31) is located inside the heat dissipation aluminum member (21) and is slidably matched with the heat dissipation aluminum member (21), the adsorption layer (31) is located below the fan (15), and a disassembly assembly (32) is provided on the surface of the adsorption layer (31).

5. The multi-channel dehumidification device according to claim 4, characterized in that: The interior of the disassembly and assembly component (32) includes a clamping block (321), a pull plate (322), a take-out opening (323) and a clamping opening (324); the surface of the body (1) is provided with a take-out opening (323) for placing the adsorption layer (31); and the pull plate (322) is fixed to the surface of the adsorption layer (31).

6. The multi-channel dehumidification device according to claim 5, characterized in that: The corner positions of the pull plate (322) are all fixed with clamping blocks (321), and the surface of the machine body (1) is provided with clamping openings (324), and the clamping openings (324) and the clamping blocks (321) are mutually engaged.