Dehumidification equipment

By placing the water tank and control components above the dehumidification equipment and optimizing the shell structure, the problem of inconvenient disassembly and assembly of the water tank is solved, and convenient operation and efficient dehumidification are achieved.

CN223425369UActive Publication Date: 2025-10-10WUHU MATY AIR CONDITIONING EQUIP CO LTD
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Patent Information

Application Number
CN202422946473.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-10
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

In existing dehumidification equipment, the water tank is located at the bottom, and users need to bend down at a large angle when disassembling and assembling it. The water tank is heavy and the operation is inconvenient.

Method used

The water tank is placed above the dehumidification equipment, and the control component is set on the upper end surface, so that the user can hold the water tank and operate the control component from a higher position. The shell is designed into upper and lower parts to optimize space utilization and airflow path.

Benefits of technology

When users disassemble and install the water tank, they need to bend at a smaller angle, which makes the operation more convenient. The operating posture of the control components is easier, the equipment space utilization rate is high, the dehumidification efficiency is improved, and the noise is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dehumidification device which is provided with an upper end face and comprises a shell, a dehumidification assembly, a control assembly and a water tank. A containing cavity is formed in the shell, and the shell is provided with a first side wall located at the upper end. The dehumidification assembly is arranged in the containing cavity and used for separating water in the air. The control assembly is arranged in the containing cavity, the control assembly is at least used for controlling the dehumidification assembly, the control assembly comprises an operation part, and at least part of the operation part is exposed out of the first side wall or the operation part receives a control signal at the first side wall. The water tank is detachably connected to the shell and provided with a second side wall located at the upper end, and the water tank is used for receiving water separated by the dehumidification assembly. The upper end face comprises a first side wall and a second side wall. According to the dehumidification equipment, the convenience can be improved when a user disassembles and assembles the water tank.
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Description

Technical Field

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

[0002] The dehumidification device is used to separate and collect moisture in the air to reduce the humidity of the environment. The dehumidification device includes a dehumidification component, a water receiving tray and a water tank. The dehumidification component is used to separate and collect water mist or water vapor in the air. The water receiving tray is located below the dehumidification component. The water collected by the dehumidification component falls into the water receiving chamber of the water receiving tray. The water in the water receiving chamber is introduced into the water tank for storage. In the related art, the water tank is located below the dehumidification device. The user removes the water stored in the water tank by pulling the water tank horizontally. Since the water tank is arranged at a low position, the user has to bend at a large angle when disassembling the water tank, and the overall weight is heavier when the amount of water stored in the water tank is large, which makes it inconvenient for the user to operate when disassembling the water tank. Utility Model Content

[0003] The main purpose of the utility model is to provide a dehumidification device that can improve the convenience of users when disassembling and assembling a water tank.

[0004] To achieve the above-mentioned purpose, the present invention provides a dehumidification device, the dehumidification device having an upper end surface, and the dehumidification device comprising:

[0005] A shell having a receiving chamber therein and a first side wall located at an upper end;

[0006] A dehumidification component is provided in the receiving chamber and is used to separate water from the air;

[0007] A control assembly is disposed in the accommodating chamber, the control assembly is used to control at least the dehumidification assembly, and the control assembly includes an operating portion, the operating portion is at least partially exposed on the first side wall or the operating portion receives a control signal on the first side wall;

[0008] A water tank is detachably connected to the housing, the water tank having a second side wall located at the upper end, and the water tank is used to receive water separated by the dehumidification component;

[0009] The upper end surface includes a first side wall and a second side wall.

[0010] In some embodiments, the operating portion includes an operating button, the housing is provided with a first through hole communicating with the accommodating chamber and penetrating the first side wall, and the operating button is passed through the first through hole;

[0011] or,

[0012] The operating portion includes a touch module, the first side wall includes a touch area, the touch module is disposed in the accommodating chamber and is attached to an inner wall surface of the housing opposite to the touch area, and the touch module is used to receive a touch signal from the touch area;

[0013] or,

[0014] The control component also includes a display unit, the display unit includes a display screen, the operating unit includes a touch module that cooperates with the display screen, the display unit and the operating unit together form a touch display module, the shell is provided with a second through hole that connects to the accommodating chamber and passes through the first side wall, and the touch display module is passed through the second through hole.

[0015] In some embodiments, the housing includes a first housing portion located at the top and a second housing portion located at the bottom, the first housing portion is provided with a first cavity, the second housing portion is provided with a second cavity communicating with the first cavity, and the accommodating chamber includes the first cavity and the second cavity;

[0016] The upper end of the second shell portion includes a first side and a second side that are oppositely arranged in the transverse direction. The first shell portion is connected to the first side. The water tank is located above the second side and connected to the second side and the first shell portion.

[0017] In some embodiments, the dehumidification assembly is disposed in the second chamber and connected to the second shell;

[0018] and / or,

[0019] The second cavity includes a first area located below the first side and a second area located below the second side. The dehumidification component is arranged in the second area and connected to the second shell. The dehumidification equipment also includes an air supply component, which is arranged in the first area and connected to the second shell. The air supply component and the dehumidification component are arranged relative to each other in a direction from the first area to the second area.

[0020] In some embodiments, the control assembly further includes an electric control box disposed in the first cavity and connected to the first shell;

[0021] and / or,

[0022] The second chamber includes a first area located below the first side and a second area located below the second side; the dehumidification device also includes a compressor connected to the dehumidification assembly, the compressor is connected to the second shell and is partially located in the first area and partially located in the second area.

[0023] In some embodiments, the first shell portion includes a first main shell and a first side panel, the first side panel is located on the side of the first main shell that is laterally away from the second side, the second shell portion includes a second main shell and a second side panel, the second main shell and the first main shell are integrally arranged to form a shell body, the second side panel is located below the first side panel and is integrally arranged to form a side cover panel with the first side panel, the side cover panel and the shell body together enclose a accommodating chamber, and the side cover panel and the shell body are detachably connected.

[0024] In some embodiments, the dehumidification device also includes a water guide component, one end of which is arranged in the accommodating chamber and is used to receive water separated by the dehumidification component, and the other end of the water guide component is passed through the side panel of the first shell facing the second side and is detachably connected to the water tank.

[0025] In some embodiments, the side plate of the water tank facing the first shell portion includes a recessed portion concave toward the inner side of the water tank, the recess having a cavity opening toward the first shell portion, and one end of the water guide component located outside the first shell portion extends into the cavity and is connected to the water tank.

[0026] In some embodiments, the concave portion includes an upper plate body located above the concave cavity, the upper plate body is provided with a water guide hole connecting the concave cavity and the inner cavity of the water tank, and the water guide assembly is connected to the water guide hole;

[0027] and / or,

[0028] The concave portion is provided with a water guide hole communicating with the concave cavity and the inner cavity of the water tank. A connecting pipe is provided in the concave cavity. The connecting pipe is connected to the concave portion and communicates with the water guide hole. The connecting pipe is inserted into the end of the water guide component extending into the concave cavity.

[0029] In some embodiments, along the vertical direction, the vertical height dimension of the first shell portion is substantially equal to the vertical height dimension of the water tank;

[0030] and / or,

[0031] In the vertical direction, the vertical height dimension of the second shell portion is greater than or equal to the vertical height dimension of the water tank;

[0032] and / or,

[0033] Along the direction from the first side to the second side, the thickness of the first shell portion is less than or equal to the thickness of the water tank;

[0034] and / or,

[0035] Along a transverse direction perpendicular to a direction from the first side to the second side, a width dimension of the first shell portion, a width dimension of the second shell portion, and a width dimension of the water tank are substantially equal.

[0036] In some embodiments, the first side wall and the second side wall are both arranged horizontally;

[0037] and / or,

[0038] The first side wall and the second side wall are arranged coplanarly.

[0039] In some embodiments, the second side wall is recessed with a first handle groove, and the water tank includes a handle disposed above the first handle groove;

[0040] and / or,

[0041] The direction from the first side wall to the second side wall is the first direction, and the direction perpendicular to the first direction is the second direction. The upper ends of the two side walls of the shell opposite to each other along the second direction are both recessed with second handle grooves.

[0042] In some embodiments, the water tank is configured to move from top to bottom to be connected to the housing, and to move from bottom to top to be detached from the housing.

[0043] Compared with the prior art, the beneficial effects of the present invention are:

[0044] In the technical solution of the present invention, the dehumidification device includes a shell, a dehumidification component, a control component and a water tank. The dehumidification component and the control component are arranged in the shell, and the water tank is detachably connected to the shell. The first side wall of the upper end of the shell and the second side wall of the upper end of the water tank together constitute the upper end surface of the dehumidification device, or together constitute a part of the upper end surface. In this solution, at least part of the water tank is located at the upper end of the dehumidification device, so that the user can hold the water tank from a relatively higher position to disassemble the water tank. Compared with the solution in which the water tank is located at the lower end of the dehumidification device, the user of this solution has to bend at a smaller angle when disassembling the water tank, and the operation is more convenient.

[0045] Furthermore, in this embodiment, the control assembly includes an operating unit, which is at least partially exposed on the first side wall or receives control signals on the first side wall. In this embodiment, the operating unit is located at the upper end of the dehumidifier, allowing the user to operate the operating unit from a higher position. Compared to an embodiment in which the water tank occupies the entire upper end of the dehumidifier and the operating unit is located relatively lower, the user can bend down less when operating the operating unit, making the posture more relaxed. BRIEF DESCRIPTION OF THE DRAWINGS

[0046] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0047] Figure 1 This is a schematic diagram of the three-dimensional structure of a dehumidification device in one embodiment of the present utility model;

[0048] Figure 2 for Figure 1 Schematic diagram of the top view of the dehumidification equipment;

[0049] Figure 3 for Figure 2 Schematic diagram of the cross-sectional structure of the dehumidification equipment cut by plane AA;

[0050] Figure 4 for Figure 3 Enlarged view of point A in the middle;

[0051] Figure 5 This is a schematic diagram of the three-dimensional structure of the dehumidification device after the side cover is hidden in one embodiment of the utility model;

[0052] Figure 6 This is a schematic diagram of the three-dimensional structure of the dehumidification device behind the hidden portion of the housing in one embodiment of the present invention, viewed from a first viewing angle;

[0053] Figure 7 This is a schematic diagram of the three-dimensional structure of the dehumidification device behind the hidden portion of the housing, viewed from a second viewing angle, in one embodiment of the present invention;

[0054] Figure 8 It is a schematic diagram of the three-dimensional structure of the base in one embodiment of the present utility model.

[0055] Description of Figure Numbers:

[0056] Dehumidification equipment 10;

[0057] Housing 100; accommodating chamber 110; first cavity 111; second cavity 112; first area 1121; second area 1122; first shell 120; first side wall 121; second shell 130; first side 131; second side 132; cover 140; first side plate 141; second side plate 142; second handle groove 150;

[0058] Dehumidification component 200; compressor 210; evaporator 220; condenser 230;

[0059] Control assembly 300; operating unit 310; operating button 311; electric control box 320;

[0060] Water tank 400; second side wall 410; first handle groove 411; handle 412;

[0061] Air supply assembly 500; side air outlet 510; centrifugal air duct 520

[0062] Water guide assembly 600; water pump 610; connecting water pipe 620; water guide hole 630;

[0063] Base 700; water receiving tray 710; water collecting trough 711; water diversion trough 720; filter screen 730.

[0064] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0065] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.

[0066] In the related art, the water tank is located below the dehumidification device, and the user removes the water tank by pulling it horizontally to facilitate the removal of the water stored in the water tank. Since the water tank is arranged at a low position, the user has to bend at a large angle when removing and assembling the water tank, and the overall weight is heavier when the amount of water stored in the water tank is large, which makes it inconvenient for the user to remove the water tank. In the applicant's initial improvement plan, the water tank is set above the dehumidification device, and in order to increase the water storage capacity of the water tank, the water tank occupies the entire upper end of the dehumidification device. At this time, the user bends at a smaller angle when removing and assembling the water tank, and the operation is more convenient. However, in this solution, the buttons for controlling the dehumidification device are located below the water tank, and the buttons are set at a low height. When the user needs to turn the dehumidification device on or off or adjust the parameters, he needs to bend at a larger angle to operate the buttons, which makes it inconvenient for the user to control the dehumidification device.

[0067] In view of this, refer to Figure 1 、 Figure 3 and Figure 5 The present application provides a dehumidification device 10. The dehumidification device 10 can be any device with a dehumidification function. For example, the dehumidification device 10 can be a dehumidifier that only has a dehumidification function, or it can be a device such as an air conditioner that also has a dehumidification function. For ease of description, the following example uses the dehumidification device 1010 as a household dehumidifier that only has a dehumidification function. The dehumidification device 10 includes a housing 100, a dehumidification component 200, a control component 300, and a water tank 400.

[0068] The housing 100 has a receiving chamber 110 therein for receiving the dehumidification component 200 and the control component 300 . The dehumidification component 200 and the control component 300 are both disposed in the receiving chamber 110 of the housing 100 .

[0069] The dehumidification component 200 is used to separate water from the air in order to reduce the humidity of the environment. The dehumidification component 200 can separate water mist or water vapor from the air in a variety of ways. In this embodiment, the dehumidification component 200 includes an evaporator 220 and a condenser 230 connected to each other. The water mist or water vapor in the air is attached to the outer wall of the evaporator 220 at a low temperature lower than the ambient temperature, thereby achieving water separation. The control component 300 is located in the accommodating chamber 110 and can be responsible for at least monitoring and adjusting the working state of the dehumidification component 200 to ensure stable operation of the equipment. In some embodiments, the dehumidification device 10 may also include a compressor 210 and an air supply component 500. In this case, the control component 300 can also control the operation of the compressor 210 and the air supply component 500.

[0070] The control assembly 300 includes an operating portion 310. In some embodiments, a portion of the operating portion 310 is exposed on the first sidewall 121, allowing a user to operate the operating portion 310 exposed on the first sidewall 121 from outside the housing 100. In other embodiments, the operating portion 310 can receive user control signals on the first sidewall 121, or can also allow a user to operate the operating portion 310 exposed on the first sidewall 121 from outside the housing 100. The operating portion 310 can be composed of one part or multiple parts. When the operating portion 310 includes multiple parts, at least one part of the operating portion 310 can be exposed on the first sidewall 121 or can receive control signals from the first sidewall 121. For example, when the operating portion 310 includes multiple buttons, only a few commonly used buttons need to be exposed on the first sidewall 121, and the specific locations of the other buttons can be arranged at will.

[0071] The water tank 400 is detachably connected to the housing 100 and is used to collect moisture separated by the dehumidification assembly 200. When the amount of water stored in the water tank 400 is excessive, the water tank 400 can be removed and the stored water can be removed.

[0072] In this embodiment, the dehumidifier 10 has an upper end surface, the housing 100 has a first side wall 121 located at the upper end, and the water tank 400 has a second side wall 410 located at the upper end. The upper end surface includes the first side wall 121 and the second side wall 410. That is, the first side wall 121 at the upper end of the housing 100 and the second side wall 410 at the upper end of the water tank 400 together constitute the upper end surface of the dehumidifier 10, or together constitute a portion of the upper end surface. In this solution, at least a portion of the water tank 400 is located at the upper end of the dehumidifier 10, so that the user can hold the water tank 400 from a relatively higher position to disassemble the water tank 400. Compared with the solution in which the water tank 400 is located at the lower end of the dehumidifier 10, the user of this solution has to bend at a smaller angle when disassembling the water tank 400, making the operation more convenient. Furthermore, in this embodiment, the control assembly 300 includes an operating unit 310, which is at least partially exposed on the first side wall 121 or receives control signals at the first side wall 121. In this embodiment, the operating unit 310 is located at the upper end of the dehumidifier 10, allowing the user to operate the operating unit 310 from a higher position. Compared to an embodiment in which the water tank 400 occupies the entire upper end of the dehumidifier 10 and the operating unit 310 is located relatively lower, the user can bend down less when operating the operating unit 310, making the posture more relaxed.

[0073] The specific shapes of the first side wall 121 and the second side wall 410 and their relative positions depend on actual needs. The first side wall 121 and the second side wall 410 can be either plane walls or curved walls. When both are plane walls, they can be arranged in the same plane or in a stepped manner. When both are arranged in the same plane, they can be arranged in the same horizontal plane or in the same inclined plane inclined to the horizontal plane. When both the first side wall 121 and the second side wall 410 are curved walls, they can be arranged continuously or disconnected from each other. When they are arranged continuously, the curvature at the junction of the two is continuous.

[0074] On the basis of the above embodiment, in order to adapt to different usage scenarios, the operating unit 310 can be designed in various forms. Figure 1 and Figure 5In some embodiments, the operating unit 310 can be an operating button 311. The housing 100 is provided with a first through-hole that connects to the accommodating chamber 110 and extends through the first side wall 121. The operating button 311 passes through this through-hole and connects to the internal circuit board, realizing basic switching and mode selection functions. In other embodiments, the operating unit 310 uses a touch module. There is a designated touch area on the first side wall 121. The touch module is located within the accommodating chamber 110 and is closely attached to the inner wall surface of the housing 100. When a user touches the touch area on the first side wall 121, the touch module located within the housing 100 can receive the touch signal, and the dehumidification device 10 controls the dehumidification assembly 200 accordingly based on the received touch signal. In this embodiment, the touch module is hidden within the housing 100 to keep the dehumidification device 10 simple in appearance and prevent interference with user operation. In yet other embodiments, the control assembly 300 also includes a display unit, which includes a display screen. The operating unit 310 includes a touch module that cooperates with the display screen. The display unit and the operating unit 310 together form a touch display module. The shell 100 is provided with a second through hole connected to the accommodating chamber 110 and passing through the first side wall 121. The touch display module is passed through the second through hole. The user can control the dehumidification component 200 by touching the touch display module, and the user can also receive control feedback through the touch display module.

[0075] Reference Figure 1 and Figure 5 In some embodiments, the housing 100 of the dehumidification device 10 has a housing 110 therein. The housing 100 includes a first housing portion 120 located at the top and a second housing portion 130 located at the bottom. The first housing portion 120 has a first cavity 111, and the second housing portion 130 has a second cavity 112 connected to the first cavity 111. The housing 110 includes the first cavity 111 and the second cavity 112. The upper end of the second housing portion 130 includes a first side 131 and a second side 132 arranged laterally opposite each other. The first housing portion 120 is connected to the first side 131. The water tank 400 is located above the second side 132 and is connected to the first housing portion 120. In this embodiment, the lower end of the water tank 400 is supported by the second side 132 of the second housing portion 130, and the sides of the water tank 400 are supported by the sidewalls of the first housing portion 120 that are laterally adjacent to the second side 132, thereby improving the positioning of the water tank 400. Moreover, compared with the solution in which the water tank 400 and the shell 100 are arranged horizontally relative to each other and the lower end of the water tank 400 extends to the lower end of the dehumidification device 10, in this solution, the water tank 400 only occupies the corner end position of the upper part of the dehumidification device 10, the layout space of the shell 100 is larger, and the water tank 400 is also easier for users to disassemble and assemble.

[0076] For ease of understanding, the following is an example of the appearance of the dehumidification device 10. Figure 1Specifically, the dehumidifier 10 has a box-like structure. For example, the box-like structure can be divided into four evenly sized blocks along a "田" (field) shape. The two lower blocks form the second shell 130, which has a second cavity 112. One of the upper blocks is configured as the first shell 120, and the other upper block is configured as the water tank 400. This design is compact and space-efficient. The water tank 400 is supported by the two lower blocks and the adjacent block, ensuring a secure installation.

[0077] The design of the housing 100 being divided into two parts, the upper and lower parts, is not only convenient for manufacturing and assembly, but also effectively isolates different functional areas. The first shell 120 and the second shell 130 are connected through the first cavity 111 and the second cavity 112, which realizes the effective utilization of the internal space and improves the overall performance of the device. The design of placing the water tank 400 above the second side 132 allows the user to easily see the position of the water tank 400, making it easier to drain or disassemble the water tank 400. In addition, the connection design of the water tank 400 with the second shell 130 and the first shell 120 ensures the stability of the water tank 400 during use and reduces the risk of the water tank 400 loosening due to vibration or movement of the equipment.

[0078] In some embodiments, the first shell portion 120 and the second shell portion 130 of the housing 100 can be integrally injection molded. Alternatively, the first shell portion 120 and the second shell portion 130 can be independently molded and then joined together by welding, bolting, snapping, etc. The connection between the first shell portion 120 and the second shell portion 130 can also be designed to be detachable for easy maintenance and cleaning.

[0079] It is understandable that in some embodiments, the first shell 120 and the second shell 130 can be made of different materials. For example, the first shell 120 can be made of metal material to enhance structural strength, while the second shell 130 can be made of plastic material to reduce weight.

[0080] In some embodiments, the connection method between the water tank 400 and the second shell 130 and the first shell 120 can also be diversified, for example, magnetic attraction, snap fasteners or slide rails can be used to meet the usage habits and safety requirements of different users.

[0081] Reference Figure 1 and Figure 5In some embodiments, the dehumidification device 10 comprises a dehumidification assembly 200 arranged in the second cavity 112, which is connected to the second shell part 130. The second cavity 112 comprises a first area 1121 below the first side 131 and a second area 1122 below the second side 132, and the dehumidification assembly 200 is arranged in the second area 1122 and connected to the second shell part 130. The dehumidification device 10 further comprises an air supply assembly 500 arranged in the first area 1121, which is connected to the second shell part 130. The air supply assembly 500 and the dehumidification assembly 200 are oppositely arranged in the direction from the first area 1121 to the second area 1122. This layout design helps to optimize the airflow path and improve the dehumidification efficiency.

[0082] The dehumidification assembly 200 is arranged in the second area 1122, and the air supply assembly 500 is arranged in the first area 1121, oppositely arranged in the direction from the first area 1121 to the second area 1122. This layout design enables the air supply assembly 500 to effectively introduce air into the device and dehumidify it through the dehumidification assembly 200. The dehumidification assembly 200 is arranged in the second area 1122, which makes full use of the space of the second shell part 130, reduces the overall volume of the device, and ensures sufficient dehumidification capacity. The opposite arrangement of the air supply assembly 500 and the dehumidification assembly 200 ensures smooth airflow and avoids airflow dead angles, improving dehumidification efficiency.

[0083] This layout design not only optimizes the airflow path and improves the dehumidification efficiency, but also reduces the volume of the device and saves space. In addition, by reasonably arranging the positions of the air supply assembly 500 and the dehumidification assembly 200, the noise during device operation can be reduced, and the user experience can be improved.

[0084] It can be understood that in some embodiments, the dehumidification assembly 200 can adopt various types, such as a condensation type dehumidification assembly 200, an adsorption type dehumidification assembly 200, or a hybrid type dehumidification assembly 200. Different types of dehumidification assemblies 200 can be selected according to different use environments and requirements to achieve the best dehumidification effect. The air supply assembly 500 can also adopt different designs, such as using a centrifugal fan, an axial fan, or a cross-flow fan to adapt to different airflow requirements. In addition, the distance and angle between the air supply assembly 500 and the dehumidification assembly 200 can be adjusted to further optimize the airflow path and improve the dehumidification efficiency. The opposite arrangement of the air supply assembly 500 and the dehumidification assembly 200 can also be further optimized by adding a wind deflector or a flow guide tube to ensure uniform airflow distribution throughout the device.

[0085] Referring to Figure 5In some embodiments, the control assembly 300 further includes an electrical control box 320, which is located within the first cavity 111 and connected to the first housing 120. This design positions the electrical control box 320 away from heat-generating components such as the dehumidification assembly 200 and the compressor 210, reducing the impact of heat on the electrical control box 320 and improving its stability and lifespan. Furthermore, the location of the electrical control box 320 within the first housing 120 facilitates the routing of individual sections of wiring, whether to buttons or to components such as the air supply assembly 500 and the compressor 210. This streamlined wiring layout facilitates user operation and maintenance. This structural design not only optimizes internal space utilization and reduces the size of the device, but also improves the stability of the electrical control box 320 and the heat dissipation performance of the compressor 210, extending the device's lifespan.

[0086] It will be appreciated that in some embodiments, the electrical control box 320 can be mounted in a variety of ways, such as using clips, screws, or other fixing methods, to accommodate different production and usage requirements. The housing of the electrical control box 320 can be made of a heat-dissipating material, such as aluminum alloy, to improve heat dissipation performance. The installation position of the compressor 210 can also be adjusted, for example, by placing it entirely in the second area 1122 to further optimize the airflow path and improve dehumidification efficiency.

[0087] In some embodiments, the second cavity 112 includes a first area 1121 located below the first side 131 and a second area 1122 located below the second side 132. The dehumidification device 10 also includes a compressor 210 connected to the dehumidification component 200. The compressor 210 is connected to the second shell 130 and is partially located in the first area 1121 and partially located in the second area 1122. This layout design allows the compressor 210 to fully utilize the space in the second shell 130, reducing the overall volume of the device while ensuring the heat dissipation performance of the compressor 210. A portion of the compressor 210 is located in the first area 1121, which can better cooperate with the air supply component 500 to improve the dehumidification efficiency. In addition, by rationally arranging the positions of the electrical control box 320 and the compressor 210, the noise during operation of the device can be reduced, thereby improving the user experience.

[0088] It can be understood that in some embodiments, the internal space of the shell 100 is larger and the volume of the compressor 210 is smaller, and the compressor 210 can be arranged only in the first area 1121 or the compressor 210 can be arranged only in the second area 1122; in some embodiments, the internal space of the shell 100 is smaller and the volume of the compressor 210 is larger. At this time, only the first area 1121 or the second area 1122 is not enough to accommodate the compressor 210. In this case, the compressor 210 arranged not only occupies a part of the first area 1121, but also occupies a part of the second area 1122.

[0089] In some embodiments, the compressor 210 can be connected to the second housing 130 using a shock-absorbing pad or a shock-absorbing spring to reduce vibration and noise during operation. Furthermore, the compressor 210 can be cooled using various methods, such as air cooling, water cooling, or oil cooling, to suit different operating environments and requirements.

[0090] Reference Figure 1 and Figure 5 In some embodiments, the first housing portion 120 includes a first main housing and a first side panel 141. The first side panel 141 is located on a side of the first main housing that is laterally away from the second side 132. The second housing portion 130 includes a second main housing and a second side panel 142. The second main housing is integrally formed with the first main housing to form the housing body. The second side panel 142 is located below the first side panel 141 and is integrally formed with the first side panel 141 to form a side cover 140. The side cover 140 and the housing body together enclose the accommodating chamber 110. The side cover 140 is detachably connected to the housing body.

[0091] The first shell portion 120 includes a first main shell and a first side plate 141. The first side plate 141 is located on the side of the first main shell that is laterally away from the second side 132. The second shell portion 130 includes a second main shell and a second side plate 142. The second main shell is integrally arranged with the first main shell to form the shell body. The second side plate 142 is located below the first side plate 141 and is integrally arranged with the first side plate 141 to form a side cover plate 140. The side cover plate 140 and the shell body together enclose a storage chamber 110, and the side cover plate 140 is detachably connected to the shell body. The side cover plate 140 is composed of the first side plate 141 and the second side plate 142. The side cover plate 140 has a larger area and is used to define the storage chamber 110. After the side cover is removed, the storage chamber 110 has a larger open area, which facilitates the maintenance and replacement of its internal components.

[0092] To further illustrate the position of the side cover 140, the following is an example of the shape of the dehumidifier 10. Specifically, the housing 100 is a box-shaped structure, evenly divided into four blocks in a "田" (field) pattern. The two lower blocks are the second housing 130, and the two upper blocks are the first housing 120 and the water tank 400, respectively. The side wall of the first housing 120 facing away from the water tank 400 and the corresponding side wall of the lower block together form the side cover 140. When the side cover 140 is separated from the main body of the housing 100, the exposed area is larger, making it easier to inspect and repair the components within the accommodating chamber 110.

[0093] It is understood that in some embodiments, the first main body shell and the first side panel 141 can be made of different materials. For example, the first main body shell can be made of metal to enhance structural strength, while the first side panel 141 can be made of plastic to reduce weight. The connection between the first main body shell and the first side panel 141 can be made of snaps, screws, or other fixing methods to meet different production and usage requirements.

[0094] The second main shell and the second side panel 142 can be connected in a variety of ways, such as welding, bonding, or snap fastening, to meet the usage habits and safety requirements of different users. The side cover 140 can be removably connected to the shell body using snap fasteners, screws, or magnetic fastening to facilitate user maintenance and cleaning. In addition, the surface of the shell 100 can be treated with rust prevention or spray-painted to improve its corrosion resistance and aesthetics.

[0095] Reference Figures 2 to 4 In some embodiments, the dehumidification device 10 further includes a water guide assembly. One end of the water guide assembly is disposed within the receiving chamber 110 and is configured to receive water separated by the dehumidification assembly 200. The other end of the water guide assembly extends through a side panel of the first housing 120 facing the second side 132 and is detachably connected to the water tank 400. This design allows water generated during the dehumidification process to be smoothly directed into the water tank 400. Furthermore, the detachable connection of the water tank 400 facilitates cleaning and replacement by the user.

[0096] Specifically, one end of the water guide component is arranged in the accommodating chamber 110 and is connected to the dehumidification component 200 for collecting the water separated during the dehumidification process. The other end of the water guide component passes through the side panel of the first shell 120 toward the second side 132 and is detachably connected to the water tank 400. Specifically, the water separated by the dehumidification component 200 can be collected in a container first, and then one end of the water pipe of the water guide component is connected to the container and the other end is connected to the water tank 400. The height of the water tank 400 is higher than the container storing the dehumidification component 200 to prevent siphoning or water diversion. The water in the container is pumped into the water tank 400 by the water pump 610. This design allows water to flow smoothly from the dehumidification component 200 to the water tank 400, avoiding water leakage and overflow. The detachable connection design of the water tank 400 allows the user to easily remove the water tank 400 from the device for cleaning or replacement, thereby keeping the device clean and running efficiently.

[0097] In some embodiments, the water guide component can be made of a variety of materials and structural designs, for example, a flexible hose or a rigid pipe, to adapt to different usage environments and needs.

[0098] The water guide assembly can be connected to the water tank 400 in a variety of ways, such as using quick connectors, snap-fit ​​connections, or threaded connections to facilitate user disassembly and installation. Furthermore, the length and diameter of the water guide assembly can be adjusted as needed to ensure unimpeded water flow. The water guide assembly can also be equipped with a filter screen 730 or other filter to filter out impurities in the water and prevent clogging of the water tank 400. To further improve device reliability, a flow sensor or liquid level sensor can be installed on the water guide assembly to monitor the water flow rate and the liquid level in the water tank 400 in real time, prompting the user to clean or replace the water tank 400.

[0099] Reference Figures 2 to 4 In some embodiments, the side panel of the water tank 400 facing the first shell 120 includes a recessed portion recessed toward the inside of the water tank 400, with the recessed portion having a cavity opening toward the first shell 120. The end of the water guide assembly located outside the first shell 120 extends into the cavity and is connected to the water tank 400. This design enables the water guide assembly to accurately guide water into the water tank 400, preventing water leakage and overflow. The recessed design provides a stable connection point for the water guide assembly, ensuring smooth water flow. In addition, the recessed design also makes the structure of the water tank 400 more compact, reducing the overall volume of the device.

[0100] In some embodiments, the shape and size of the recess can be adjusted according to actual needs. For example, it can be designed to be circular, square or other shapes to adapt to different water tank 400 structures and usage requirements.

[0101] In some embodiments, the inner wall of the recess may be provided with anti-slip grooves or protrusions to increase the friction between the water guide component and the recess and ensure the stability of the connection.

[0102] In some embodiments, a sealing ring or a sealing gasket may be provided at the opening of the recess to prevent water leakage.

[0103] In some embodiments, a filter or a filter may be provided inside the recess to filter out impurities in the water and prevent the water tank 400 from being clogged.

[0104] In order to further improve the reliability of the device, in some embodiments, a liquid level sensor may be provided in the recess to monitor the liquid level of the water tank 400 in real time and promptly remind the user to clean or replace the water tank 400.

[0105] Reference Figures 2 to 4In some embodiments, the recess includes an upper plate body located above the recess cavity, the upper plate body is provided with a water guide hole 630 communicating the recess cavity with the inner cavity of the water tank 400, and one end of the water guide assembly extends into the recess cavity and communicates with the inner cavity of the water tank 400 through the water guide hole 630. Such design enables the water guide assembly to accurately guide water into the water tank 400, avoiding water leakage and overflow. The design of the water guide hole 630 not only provides a stable connection point, but also ensures smooth water flow. In addition, the design of the water guide hole 630 can also reduce air bubbles in the water tank 400, improving the use efficiency of the water tank 400.

[0106] In some embodiments, the shape and size of the water guide hole 630 can be adjusted according to actual needs, for example, it can be designed as a circle, a square or other shapes to adapt to different water tank 400 structures and use requirements.

[0107] In some embodiments, the edges of the water guide hole 630 can be chamfered or rounded to reduce water turbulence and air bubble generation. The number of water guide holes 630 can also be adjusted according to actual needs, for example, multiple water guide holes 630 can be provided to increase the inflow speed of water.

[0108] In some embodiments, the connection method of the water guide assembly and the water guide hole 630 can also be diversified, for example, quick connectors, buckles or threaded connections can be used to facilitate user disassembly and installation.

[0109] Of course, the upper plate body can be provided with protruding water guide holes 630 to directly extend into the water tank 400 for water guiding, or can be in the form of a connecting pipe to communicate with the water tank 400. Specifically, the recess is provided with a water guide hole 630 communicating the recess cavity with the inner cavity of the water tank 400, a connecting pipe is arranged in the recess cavity, the connecting pipe is connected to the recess and communicates with the water guide hole 630, and the connecting pipe is inserted into the end of the water guide assembly extending into the recess cavity. The present application only needs to guide the water generated by the dehumidification assembly 200 into the water tank 400 for collection, and does not limit the way to guide the water into the water tank 400.

[0110] According to the design of the water guide hole 630, the connecting pipe can also be configured to have one end sleeved on the protruding water guide hole 630 and the other end communicating with other water collecting devices, pipes, etc., not limited to the water tank 400, to achieve the purpose of drainage.

[0111] Reference Figures 1 to 5In some embodiments, the vertical height of the first shell 120 is approximately equal to the vertical height of the water tank 400. In some embodiments, the vertical height of the second shell 130 is greater than or equal to the vertical height of the water tank 400. In some embodiments, the thickness of the first shell 120 along the direction from the first side 131 to the second side 132 is less than or equal to the thickness of the water tank 400. In some embodiments, the width of the first shell 120, the width of the second shell 130, and the width of the water tank 400 are approximately equal in a direction perpendicular to the direction from the first side 131 to the second side 132. This design makes the overall structure of the device more compact, reduces the device's footprint, and improves the device's portability and aesthetics.

[0112] Specifically, the vertical height of the first shell 120 is approximately equal to the vertical height of the water tank 400. This design coordinates the heights of the first shell 120 and the water tank 400, reduces the overall height of the device, and improves the stability of the device. The vertical height of the second shell 130 is greater than or equal to the vertical height of the water tank 400. This design ensures that the second shell 130 has sufficient space to accommodate the dehumidification component 200, the air supply component 500, and other internal components, while ensuring the stability and reliability of the device. The thickness of the first shell 120 is less than or equal to the thickness of the water tank 400. This design makes the overall structure of the device more compact and reduces the device's footprint. The widths of the first shell 120, the second shell 130, and the water tank 400 are approximately equal. This design makes the overall appearance of the device more coordinated and improves the device's aesthetics.

[0113] It is understood that in some embodiments, the vertical height dimensions of the first housing 120 and the water tank 400 can be fine-tuned as needed to accommodate different usage environments and requirements. For example, the vertical height dimension of the first housing 120 can be slightly smaller than the vertical height dimension of the water tank 400 to reduce the overall height of the device.

[0114] In some embodiments, the vertical height of the second housing 130 can be adjusted based on the actual needs of the internal components. For example, the height can be appropriately increased to accommodate more internal components. The thickness of the first housing 120 and the thickness of the water tank 400 can also be adjusted based on actual needs. For example, the thickness of the first housing 120 can be appropriately reduced to reduce the footprint of the device.

[0115] In some embodiments, the widths of the first shell 120, the second shell 130, and the water tank 400 can be fine-tuned as needed to accommodate different usage environments and requirements. To further enhance the aesthetics of the device, the surface of the housing 100 can be painted or coated to enhance the visual effect of the device.

[0116] Reference Figures 1 to 5 In some embodiments, the first side wall 121 and the second side wall 410 are both arranged horizontally. The first side wall 121 can be coplanar with the second side wall 410. This design makes the upper end surface of the device flat, making it easier for users to operate and clean. Furthermore, the coplanar arrangement helps reduce the overall height of the device and improve its stability.

[0117] Regarding the design of the first side wall 121 and the second side wall 410, the first side wall 121 and the second side wall 410 can be stepped to fit different device layouts; the first side wall 121 and the second side wall 410 can be coplanar with horizontal planes or coplanar with inclined planes, and the specific design method is flexibly adjusted according to the internal device layout; the first side wall 121 and the second side wall 410 can also be irregular shapes such as curved surfaces, so as to fit the internal device layout while reducing the occupied space, and the curved surface design can prevent accidental bumps by the elderly and children, thereby improving the safety attributes of the equipment.

[0118] It is understood that in some embodiments, the first side wall 121 and the second side wall 410 can be made of different materials. For example, the first side wall 121 can be made of metal to enhance structural strength, while the second side wall 410 can be made of plastic to reduce weight. To further improve the stability and safety of the device, reinforcing ribs or support structures can be provided at the connection between the first side wall 121 and the second side wall 410 to ensure the structural strength of the device.

[0119] Reference Figure 1 In some embodiments, the second side wall 410 is recessed with a first handle groove 411 , and the water tank 400 includes a handle 412 disposed above the first handle groove 411 . This design allows the user to conveniently lift and carry the water tank 400 .

[0120] Reference Figure 1 In some embodiments, the direction from the first side wall 121 to the second side wall 410 is defined as a first direction, and the direction perpendicular to the first direction is defined as a second direction. The upper ends of the two opposing walls of the housing 100 along the second direction are each recessed with a second handle recess 150. This design facilitates user transport of the entire device, improving its portability. The first handle recess 411 and the second handle recess 150 provide convenient gripping points, making it easier for the user to remove the water tank 400 or move the entire device.

[0121] It is understood that in some embodiments, the shape and size of the first handle groove 411 and the second handle groove 150 can be adjusted according to actual needs. For example, they can be designed into a circular, oval, or other shape to accommodate different hand shapes and usage habits. The surfaces of the first handle groove 411 and the second handle groove 150 can be provided with anti-slip grooves or protrusions to enhance the user's grip and prevent slipping.

[0122] In some embodiments, in order to further improve the aesthetics of the device, the surfaces of the first handle groove 411 and the second handle groove 150 may be sprayed or coated to enhance the visual effect of the device.

[0123] In some embodiments, the depth and width of the first handle groove 411 and the second handle groove 150 can be adjusted according to actual needs to ensure the comfort of the user when lifting and carrying the device.

[0124] In order to further improve the safety of the device, in some embodiments, chamfers or rounded corners may be provided at the edges of the first handle groove 411 and the second handle groove 150 to reduce the risk of scratches to the user during use.

[0125] Reference Figure 1 In some embodiments, the water tank 400 is configured to move from top to bottom to connect to the housing 100, and to move from bottom to top to be removed from the housing 100. This design makes the installation and removal process of the water tank 400 simple and intuitive. The user only needs to align the water tank 400 with the connection position of the housing 100 from above and then push it downward to complete the installation. Similarly, when removing, the user only needs to lift the water tank 400 upward to easily remove it. This design not only reduces the user's operating difficulty, but also improves the ease of use and maintainability of the device. In addition, this up and down movement design also ensures the sealing between the water tank 400 and the housing 100, preventing water leakage.

[0126] It is understood that in some embodiments, the connection method between the water tank 400 and the housing 100 can be diversified, such as using a buckle, a slot, or a magnetic connection, to adapt to different usage environments and needs. The buckle or slot design can ensure a secure connection between the water tank 400 and the housing 100, preventing accidental detachment during use. The magnetic design can provide additional fixing force while facilitating quick installation and removal by the user.

[0127] In order to further improve the sealing performance of the water tank 400, in some embodiments, a sealing ring or a sealing gasket may be provided at the connection between the water tank 400 and the housing 100 to prevent water leakage.

[0128] In some embodiments, a guide structure can be set for the up and down movement path of the water tank 400, such as a guide groove or guide column is set on the shell 100, to ensure that the water tank 400 moves smoothly during installation and disassembly, reducing jamming and shaking.

[0129] In order to further improve the user experience, in some embodiments, an anti-skid pad or anti-skid grooves can be provided on the bottom of the water tank 400 to prevent the water tank 400 from sliding when placed.

[0130] In some embodiments, the material of the water tank 400 can be transparent or translucent, so that the user can check the water level of the water tank 400 at any time and clean or replace the water tank 400 in time.

[0131] Reference Figures 1 to 8 , the dehumidification device 10 of the present application is systematically explained below using a specific embodiment. The purpose of the present application is to propose a device that is easy for users to operate, wherein the dehumidification device 10 of the present application includes a shell 100, a dehumidification component 200, a control component 300 and a water tank 400. The dehumidification device 10 of the present application is box-shaped. For the convenience of description, the box structure is divided into four pieces in a field shape. The two lower pieces are configured as the second shell 130, and the two upper pieces are configured as the first shell 120 and the water tank 400 respectively. The water tank 400 and the shell 100 are detachably connected by pulling. Furthermore, the upper end of the first shell 120 is a first side wall 121, and the first side wall 121 is provided with a control component 300. Specifically, the first side wall 121 has a first through hole, and the operation button 311 is exposed to the outside through the first through hole, and the electric control box 320 is hidden inside, that is, hidden in the accommodating chamber 110. Such a setting has a simple appearance and is convenient for users to operate.

[0132] Reference Figure 5 and Figure 6 The second shell 130 is equipped with an air supply assembly 500, such as a side air outlet 510 formed on the sidewall of the second shell 130. Furthermore, the second shell 130 is equipped with a condenser 230, an evaporator 220, a compressor 210, and a centrifugal air duct 520 water guide assembly 600. According to the first area 1121 and the second area 1122 defined above, the first area 1121 is used to accommodate the compressor 210 and the centrifugal air duct 520 water guide assembly 600, while the second area 1122 is used to accommodate the evaporator 220 and the condenser 230. The evaporator 220 and the condenser 230 are arranged side by side with intervals. This arrangement optimizes space utilization and achieves a compact device structure.

[0133] Reference Figures 2 to 4 as well as Figure 7 and Figure 8, about the waterway structure of the device, the second shell part of the shell 100 comprises a base 700, the base 700 is provided with a water receiving tray 710, the water receiving tray 710 has a water collecting groove 711 and a water guiding groove 720, water generated by the evaporator 220 first falls into the water collecting groove 711, and then flows into the water guiding groove 720 from the water collecting groove 711 by a filter screen 730, the water guiding groove 720 is provided with a connecting water pipe 620, the connecting water pipe 620 is used to guide water in the water guiding groove 720 into the water tank 400. Since the application is used to prevent the water in the water tank 400 from flowing back, the water inlet of the water tank 400 is relatively high, therefore, the water pump 610 is arranged, water in the water guiding groove 720 is pumped into the connecting water pipe 620, the other end of the connecting water pipe 620 is connected to the water guiding hole 630 extending into the concave cavity of the water tank 400, so that water in the water guiding groove 720 is pumped into the water tank 400 through the connecting water pipe 620 and the water pump 610. Then, the user can take the water tank 400 away by the handle 412 on the water tank 400, and drain the water in the water tank 400.

[0134] Through the above series of designs, the dehumidification device 10 of the application has compact structure, can realize high-quality dehumidification, and the control assembly 300 is reasonably arranged, facilitating user operation and observation.

[0135] It should be noted that if the embodiment of the application involves directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between the components in a certain specific posture, and if the specific posture changes, the directional indications also change accordingly. When the direction reference is introduced in the specific embodiment, if the direction is not specially limited to be unidirectional, the direction can be unidirectional or bidirectional (two parallel and opposite directions), and whether it is unidirectional or bidirectional is based on the realization of ordinary personnel in the field. When the direction reference is bidirectional, it is considered that two different embodiments are introduced at the same time.

[0136] In addition, if the embodiment of the application involves descriptions such as "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include at least one of the features. In addition, if "and / or", "and / or", or "and / or" appears in the full text, it means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary personnel in the field, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist and is not within the protection scope required by the application.

[0137] The above are only preferred embodiments of the present invention and do not limit the patent scope of the present invention. All equivalent structural transformations made by using the contents of the present invention specification and drawings under the utility model concept, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. Dehumidification equipment, characterized in that, The dehumidification device has an upper end surface, and the dehumidification device includes: A shell having a receiving chamber therein, wherein the shell has a first side wall located at an upper end; a dehumidification component, disposed in the accommodating chamber and used for separating water from the air; a control assembly disposed in the accommodating chamber, the control assembly being at least used to control the dehumidification assembly, the control assembly comprising an operating portion, the operating portion being at least partially exposed on the first side wall or the operating portion receiving a control signal at the first side wall; a water tank detachably connected to the housing, the water tank having a second side wall at an upper end, the water tank being used to receive the water separated by the dehumidification assembly; Wherein, the upper end surface includes the first side wall and the second side wall.

2. The dehumidification device according to claim 1, characterized in that The operating portion includes an operating button, the housing is provided with a first through hole communicating with the accommodating chamber and penetrating the first side wall, and the operating button is passed through the first through hole; or, The operating portion includes a touch module, the first side wall includes a touch area, the touch module is disposed in the accommodating chamber and adheres to an inner wall surface of the housing opposite to the touch area, and the touch module is used to receive a touch signal from the touch area; or, The control component also includes a display unit, which includes a display screen. The operating unit includes a touch module that cooperates with the display screen. The display unit and the operating unit together form a touch display module. The shell is provided with a second through hole that connects to the accommodating chamber and passes through the first side wall. The touch display module is passed through the second through hole.

3. The dehumidification device according to claim 1, characterized in that The housing includes a first shell portion located at the top and a second shell portion located at the bottom, the first shell portion is provided with a first cavity, the second shell portion is provided with a second cavity communicating with the first cavity, and the accommodating chamber includes the first cavity and the second cavity; The upper end of the second shell portion includes a first side and a second side that are oppositely arranged in a transverse direction. The first shell portion is connected to the first side. The water tank is located above the second side and connected to the second side and the first shell portion.

4. The dehumidification device according to claim 3, characterized in that The dehumidification component is disposed in the second cavity and connected to the second shell; and / or, The second cavity includes a first area located below the first side and a second area located below the second side, and the dehumidification component is arranged in the second area and connected to the second shell; the dehumidification device also includes an air supply component, which is arranged in the first area and connected to the second shell, and the air supply component and the dehumidification component are arranged relative to each other in a direction from the first area to the second area.

5. The dehumidification device according to claim 3, characterized in that The control assembly further includes an electric control box, which is disposed in the first cavity and connected to the first shell; and / or, The second chamber includes a first area located below the first side and a second area located below the second side; the dehumidification equipment also includes a compressor connected to the dehumidification component, the compressor is connected to the second shell and is partially located in the first area and partially located in the second area.

6. The dehumidification device according to claim 3, characterized in that The first shell portion includes a first main shell and a first side plate, the first side plate is located on the side of the first main shell laterally away from the second side, the second shell portion includes a second main shell and a second side plate, the second main shell and the first main shell are integrally arranged to form a shell body, the second side plate is located below the first side plate and is integrally arranged with the first side plate to form a side cover plate, the side cover plate and the shell body together enclose the accommodating chamber, and the side cover plate is detachably connected to the shell body.

7. The dehumidification device according to claim 3, characterized in that The dehumidification device also includes a water guide component, one end of which is arranged in the accommodating chamber and is used to receive the water separated by the dehumidification component, and the other end of the water guide component is passed through the side panel of the first shell facing the second side and is detachably connected to the water tank.

8. The dehumidification device according to claim 7, characterized in that The side plate of the water tank facing the first shell part includes a recessed portion recessed toward the inner side of the water tank, the recess having a cavity opening toward the first shell part, and one end of the water guide component located outside the first shell part extends into the cavity and is connected to the water tank.

9. The dehumidification device according to claim 8, characterized in that The concave portion includes an upper plate body located above the concave cavity, the upper plate body is provided with a water guide hole communicating with the concave cavity and the inner cavity of the water tank, and the water guide assembly is communicated with the water guide hole; and / or, The recess is provided with a water guide hole connecting the concave cavity and the inner cavity of the water tank. A connecting pipe is provided in the concave cavity. The connecting pipe is connected to the recess and connects to the water guide hole. The connecting pipe is inserted into the end of the water guide component extending into the concave cavity.

10. The dehumidification device according to claim 3, characterized in that In the vertical direction, the vertical height dimension of the first shell portion is substantially equal to the vertical height dimension of the water tank; and / or, In the vertical direction, the vertical height of the second shell portion is greater than or equal to the vertical height of the water tank; and / or, Along the direction from the first side to the second side, the thickness of the first shell portion is less than or equal to the thickness of the water tank; and / or, In a transverse direction perpendicular to a direction from the first side to the second side, a width dimension of the first shell portion, a width dimension of the second shell portion, and a width dimension of the water tank are substantially equal.

11. The dehumidification device according to claim 1, wherein The first side wall and the second side wall are both arranged horizontally; and / or, The first side wall and the second side wall are arranged coplanarly.

12. The dehumidification device according to claim 1, wherein The second side wall is recessed with a first handle groove, and the water tank includes a handle provided above the first handle groove; and / or, The direction from the first side wall to the second side wall is the first direction, and the direction perpendicular to the first direction is the second direction. The upper ends of the two side walls of the shell opposite to each other along the second direction are both recessed with second handle grooves.

13. The dehumidification device according to claim 1, wherein The water tank is configured to move from top to bottom to be connected to the shell, and to move from bottom to top to be detached from the shell.

Citation Information

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