Condensing device, drying device and washing equipment
The limiting wall and clamping wall design of the bottom shell and the top shell solves the problem of inconvenient installation of the condensing device in the shell assembly, and achieves stable installation and efficient condensation.
Patent Information
- Application Number
- CN202422168698.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The existing condensing device is inconvenient to install and remove in the shell assembly and requires special tools.
The bottom shell and top shell design are adopted, and the combined structure of the limiting wall and the clamping wall allows the condenser to be stably installed in the installation space, simplifying the installation process and avoiding the need for special tools.
The stable installation and convenient disassembly of the condensing device are achieved, the operation process is simplified, and the condensing efficiency is improved.
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Figure CN223373466U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of condensation technology, and in particular to a condensation device, a drying device and a washing device. Background Art
[0002] Condensing devices are generally used in dryers, washing equipment and other equipment. As a component in the equipment, when installing the condensing device, it is usually necessary to position and fix it in the shell assembly. When the condensing device needs to be installed in the shell assembly, it is inconvenient to position, fix, disassemble and install it. Utility Model Content
[0003] In view of this, embodiments of the present application hope to provide a condensing device, a drying device and a washing device.
[0004] To achieve the above objectives, the technical solution of the embodiment of the present application is implemented as follows:
[0005] The present invention provides a condensing device, comprising:
[0006] Bottom case, including:
[0007] bottom wall;
[0008] Two first limiting walls are spaced apart on the bottom wall in a first direction;
[0009] Two second limiting walls are spaced apart from each other on the bottom wall in a second direction; a first installation space is defined between the two second limiting walls and the two first limiting walls; the two second limiting walls and the two first limiting walls define a first right-angle slot at four corners of the first installation space; the second direction is perpendicular to the first direction;
[0010] The condenser includes:
[0011] a condensing body, at least partially located in the first installation space;
[0012] Four clamping walls are arranged on four edges of the condensing body along a third direction and are respectively inserted into the four first right-angled clamping slots; the third direction is perpendicular to the second direction and the first direction respectively;
[0013] The top shell is connected to the bottom shell; at least a portion of the condenser is located in a space defined by the top shell and the bottom shell.
[0014] In some optional implementations, the top shell includes:
[0015] top wall;
[0016] Two third limiting walls are spaced apart on the top wall in the first direction and correspond to the positions of the two first limiting walls;
[0017] Two fourth third limiting walls are spaced apart from each other on the top wall in the second direction and correspond to the positions of the two second limiting walls;
[0018] A second installation space is defined between the two third limiting walls and the two fourth limiting walls; the first part of the condensing body is located in the installation space, the second part of the condensing body is located between the two third limiting walls, the first parts of the four clamping walls are respectively inserted into the four right-angle slots, and the second parts of the four clamping walls are limited between the two third limiting walls. The two fourth limiting walls and the two third limiting walls define a second right-angle slot at the four corners of the second installation space; the first parts of the four clamping walls are respectively inserted into the four first right-angle slots, and the second parts of the four clamping walls are respectively inserted into the four second right-angle slots.
[0019] In some optional implementations, the two second limiting walls, the two fourth limiting walls, and the third limiting wall are in corresponding contact.
[0020] An air guide inlet is provided on one of the second limiting walls and one of the fourth limiting walls and the third limiting wall that are in contact; an air guide outlet is provided on another of the second limiting walls and another of the fourth limiting walls and the third limiting wall that are in contact.
[0021] In some optional implementations, the profile of the surface of the condensing body in the second direction matches the shapes of the air guide inlet and the air guide outlet respectively.
[0022] In some optional implementations, the condenser further includes: a first baffle and a second baffle spaced apart along the first direction; the first baffle and the second baffle are located on opposite sides of the condensing body;
[0023] The two ends of the first baffle in the second direction correspond to the wall on one side of the air inlet and the wall on one side of the air outlet respectively; the two ends of the second baffle in the second direction correspond to the wall on the other side of the air inlet and the wall on the other side of the air outlet respectively.
[0024] In some optional implementations, the condenser further includes:
[0025] Two first mounting walls are correspondingly arranged at the top and bottom ends of the first baffle along the second direction and are limited between the bottom shell and the top shell;
[0026] Two second mounting walls are correspondingly arranged at the top and bottom ends of the second baffle along the second direction and are limited between the bottom shell and the top shell.
[0027] In some optional implementations, the bottom shell further includes:
[0028] at least one fourth limiting wall, disposed on the bottom wall and respectively in contact with the two first mounting walls and the two second mounting walls;
[0029] The top shell also includes:
[0030] at least one fifth limiting wall, disposed on the bottom wall and adjacent to the two first mounting walls and the two second mounting walls respectively;
[0031] The two first installation walls are located between at least one fourth limiting wall and at least one fifth limiting wall, and the two second installation walls are located between at least one fourth limiting wall and at least one fifth limiting wall.
[0032] In some optional implementations, two first clamping walls among the four clamping walls are provided at opposite ends of the first baffle in the second direction, and two second clamping walls among the four clamping walls are provided at opposite ends of the second baffle in the second direction;
[0033] The two first clamping walls, the two first mounting walls and the first baffle are a structural component; the two second clamping walls, the two second mounting walls and the second baffle are a structural component.
[0034] In some optional implementations, the two first clamping walls and the two first mounting walls are located on a side of the first baffle facing away from the condensing body, and the two first clamping walls and the two first mounting walls are correspondingly located at four edges of the first baffle; a first opening is formed at one end of the two first clamping walls adjacent to the two first mounting walls; or a second opening is formed at one end of the two first mounting walls adjacent to the two first clamping walls;
[0035] The two second clamping walls and the two second mounting walls are located on the side of the second baffle facing away from the condensing body, and the two second clamping walls and the two second mounting walls are correspondingly located on the four edges of the second baffle; a third opening is provided at one end of the two second clamping walls adjacent to the two second mounting walls; or, a fourth opening is provided at one end of the two second mounting walls adjacent to the two second clamping walls.
[0036] In some optional implementations, the condensing body includes: at least two condensing sheets arranged at intervals along the second direction; at least two condensing sheets arranged at intervals along the first direction; and air channels are defined between adjacent condensing sheets.
[0037] In some optional implementations, at least two condensing sheets are provided with at least two mounting through holes along the second direction, and at least two condensing sheets are provided with at least two mounting through holes along the first direction;
[0038] The condenser further comprises:
[0039] The first portion of the tube body is inserted into at least two mounting openings, and the second portion of the tube body is located outside the condensing body.
[0040] In some optional implementations, the two first limiting walls are provided with installation notches.
[0041] The second portion of the tube body passes through the installation notch and is located outside the installation space.
[0042] The embodiment of the present application further provides a drying device, comprising: a condensing device, a moisture absorbing component and a driving component according to the embodiment of the present application;
[0043] The top shell and the bottom shell define a moisture absorption space and a regeneration space, and the condenser is located in the regeneration space;
[0044] The moisture absorption component is rotatably disposed in the space defined by the top shell and the bottom shell and periodically passes through the moisture absorption space and the regeneration space, and is spaced apart from the condenser; a portion of the moisture absorption component is located in the moisture absorption space and the regeneration space, and is spaced apart from the condenser;
[0045] The moisture absorption component is used to absorb moisture in the moisture absorption space and release the absorbed moisture in the regeneration space, thereby forming humid air in the regeneration space, and the condenser is used to condense moisture in the humid air;
[0046] The driving component is used to drive the moisture absorption component to rotate.
[0047] The embodiment of the present application further provides a washing device, comprising: a device frame, a washing drum and the drying device of the embodiment of the present application;
[0048] The equipment frame defines a accommodating space, the washing drum is rotatably arranged in the accommodating space, the drying device is fixed on the equipment frame and is located on the top side or bottom side of the washing drum; the air inlet and the air outlet of the drying device are respectively connected to different areas of the washing drum.
[0049] When installing the condenser of the condensing device in the embodiment of the present application, it is only necessary to insert the condenser into the installation space along the third direction. At this time, since the four clamping walls are respectively inserted into the four right-angled slots, the condenser can be stably confined in the installation space. The structure is simple, and no special tools are required, making it easy to disassemble and assemble. BRIEF DESCRIPTION OF THE DRAWINGS
[0050] Figure 1 This is a schematic diagram of an optional partial structure of a condensing device in an embodiment of the present application, wherein the top shell is hidden;
[0051] Figure 2 This is a schematic diagram of an optional partial structure of the bottom shell in the embodiment of the present application;
[0052] Figure 3 This is a schematic diagram of an optional partial structure of the top shell in the embodiment of the present application;
[0053] Figure 4 This is another optional partial structural cross-sectional view of the condensing device in the embodiment of the present application;
[0054] Figure 5 This is another optional partial structural cross-sectional view of the condensing device in the embodiment of the present application;
[0055] Figure 6 This is a schematic diagram of an optional partial structure of a condensing device in an embodiment of the present application, wherein the top shell is hidden;
[0056] Figure 7 This is an optional structural diagram of a condenser in an embodiment of the present application;
[0057] Figure 8 for Figure 7 Another perspective view of;
[0058] Figure 9 This is another optional structural diagram of the condenser in the embodiment of the present application;
[0059] Figure 10 for Figure 9 Another perspective view of .
[0060] 1. The bottom shell; 101. The installation space; 102. The right-angle slot; 110. The bottom wall; 120. The first limiting wall; 121. The installation notch; 130. The second limiting wall; 140. The fourth limiting wall; 200. The top shell; 210. The top wall; 220. The third limiting wall; 230. The fifth limiting wall; 300. The condenser; 310. The first clamping wall; 311. The first opening; 320. The second clamping wall; 321. The third opening; 330. The condenser body; 331. The condenser sheet; 332. The air channel; 340. The first baffle; 350. The second baffle; 360. The first installation wall; 361. The second opening; 370. The second installation wall; 371. The fourth opening; 380. The tube body; 381. The cooling medium inlet; 382. The cooling medium outlet; 410. The air inlet; 420. The air outlet. DETAILED DESCRIPTION
[0061] The technical solutions of the embodiments of the present application are further elaborated in detail below in conjunction with the accompanying drawings and specific embodiments.
[0062] In the description of the embodiments of this application, it should be noted that, unless otherwise specified and limited, the term "connection" should be understood in a broad sense. For example, it can be an electrical connection, or it can be the internal connection between two components. It can be a direct connection or an indirect connection through an intermediate medium. For ordinary technicians in this field, the specific meaning of the above terms can be understood according to the specific circumstances.
[0063] It should be noted that the terms "first, second, and third" in the embodiments of the present application are merely used to distinguish similar objects and do not represent a specific ordering of the objects. It is understood that the specific order or precedence of "first, second, and third" can be interchanged where appropriate. It should be understood that the objects distinguished by "first, second, and third" can be interchanged where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.
[0064] The following combination Figures 1 to 10 The condensing device described in the embodiments of the present application is described in detail.
[0065] like Figure 1 and Figure 2 As shown, the condensing device includes: a bottom shell 100, a condenser 300, and a top shell 200. The bottom shell 100 includes: a bottom wall 110, two first limiting walls 120, and two second limiting walls 130. The two first limiting walls 120 are spaced apart from the bottom wall 110 in the first direction; the two second limiting walls 130 are spaced apart from the bottom wall 110 in the second direction; an installation space 101 is defined between the two second limiting walls 130 and the two first limiting walls 120; the two second limiting walls 130 and the two first limiting walls 120 define right-angled slots 102 at the four corners of the installation space 101; the second direction is perpendicular to the first direction. The condenser 300 includes: a condensing body 330 and four connecting walls. The condenser body 330 is at least partially located in the installation space 101; four snap-in walls are arranged on the four edges of the condenser body 330 along the third direction and are respectively inserted into the four right-angle slots 102; the third direction is perpendicular to the second direction and the first direction respectively; the top shell 200 is connected to the bottom shell 100; at least part of the condenser 300 is located in the space defined by the top shell 200 and the bottom shell 100.
[0066] In the related art, the condensing structure is generally fixed to the shell structure by bolts, so that the disassembly and assembly of the condensing structure requires special tools, which is inconvenient. However, when installing the condenser 300 of the condensing device of the embodiment of the present application, it is only necessary to insert the condenser 300 into the installation space 101 along the third direction. At this time, because the four engaging walls are respectively inserted into the four right-angled slots 102, the condenser 300 can be stably restrained in the installation space 101. The structure is simple, and no special tools are required, making it easy to disassemble and assemble.
[0067] In the embodiment of the present application, the first direction F1, the second direction F2, and the third direction F3 are merely used to determine the relative positional relationship of related structures in the condensing device. Any two of the first, second, and third directions are perpendicular to each other. For example, the first direction may be a horizontal direction, the second direction may be a vertical direction, and the third direction may be a height direction.
[0068] In the embodiment of the present application, the bottom wall 110, the two first limiting walls 120, and the two second limiting walls 130 can be a single structural member. In this case, the bottom wall 110, the two first limiting walls 120, and the two second limiting walls 130 can be integrally formed by injection molding. Alternatively, the bottom wall 110, the two first limiting walls 120, and the two second limiting walls 130 can be connected to form an integral structure by bonding, welding, or the like.
[0069] In the embodiment of the present application, the condensing body 330 can be entirely located within the installation space 101. In this case, the top case 200 can be a cover-like structure. Of course, the condensing body 330 can also be partially located within the installation space 101, and part of the condensing body 330 can also be located within the space defined by the top case 200.
[0070] like Figure 1 As shown, the condensing body 330 may include at least two condensing plates 331 spaced apart along a first direction; an air channel 332 is defined between adjacent condensing plates 331 ; so that the air flowing through the air channel 332 can be cooled by the condensing plates 331 on both sides of the air channel 332 .
[0071] Here, at least two condensing sheets 331 are provided with at least two mounting through holes along the first direction; Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 10 As shown, the condenser 300 may also include: a tube body 380, the first part of the tube body 380 is passed through at least two installation openings, and the second part of the tube body 380 is located outside the condensing body 330; so that the heat of the condensing body 330 can be taken away by the tube body 380, so that the condensing body 330 is continuously kept in a lower temperature state.
[0072] Here, as Figure 6 As shown, the two first limiting walls 120 may be provided with an installation notch 121 , and the second portion of the tube body 380 passes through the installation notch 121 and is located outside the installation space 101 to prevent the two first limiting walls 120 from damaging the second portion of the tube body 380 .
[0073] Here, the first part of the tube body 380 can be roughly Z-shaped and passed through at least two installation openings. At this time, the second part of the tube body 380 is located at both ends of at least two condensing plates 331 in the first direction, and a part of the second part of the tube body 380 can pass through the installation notch 121 of a first limiting wall 120 and be located outside the installation space 101, and the other part of the second part of the tube body 380 can pass through the installation notch 121 of another first limiting wall 120 and be located outside the installation space 101.
[0074] Here, the tube body 380 can be used to accommodate a cooling medium, and the cooling medium can circulate in the tube body 380 so that the tube body 380 can continuously remove heat from the condenser body 330. The form of the cooling medium is not limited. For example, the cooling medium can be water or refrigerant.
[0075] like Figure 7 、 Figure 8 、 Figure 9 and Figure 10 As shown, the pipe body 380 may further include a cooling medium inlet 381 and a cooling medium outlet 382 , so that the pipe body 380 can be connected to an external cooling device that can provide a circulating cooling medium through the cooling medium inlet 381 and the cooling medium outlet 382 .
[0076] Of course, in other examples, the condenser 300 may not include the tube 380. In this case, the condenser body 330 may be cooled by other structures, such as a fan.
[0077] like Figure 1 As shown, the four snap-in walls are respectively inserted into the four right-angle slots 102, which means that each snap-in wall is inserted into a right-angle slot 102, so as to limit the condenser 300 in the first direction and the second direction to prevent the condenser 300 from shaking in the first direction and the second direction.
[0078] In the embodiment of the present application, the top shell 200 and the bottom shell 100 can be connected by a threaded structure, a clamping structure, a welding structure, etc.
[0079] The condenser 300 may be entirely located within the space defined by the top shell 200 and the bottom shell 100. For example, the condensing body 330 and the tube body 380 of the condenser 300 may be entirely located within the space defined by the top shell 200 and the bottom shell 100. Of course, the condenser 300 may also be partially located within the space defined by the top shell 200 and the bottom shell 100. For example, the condensing body 330 of the condenser 300 may be entirely located within the space defined by the top shell 200 and the bottom shell 100, a portion of the tube body 380 of the condenser 300 may be located within the space defined by the top shell 200 and the bottom shell 100, and a portion of the tube body 380 of the condenser 300 may be located outside the space defined by the top shell 200 and the bottom shell 100.
[0080] In some optional implementations of the embodiments of the present application, such as Figure 3 As shown, the top shell 200 may include: a top wall 210 and two third limiting walls 220. The two third limiting walls 220 are spaced apart from each other in the second direction on the top wall 210 and correspond to the positions of the two second limiting walls 130; the first portion of the condensing body 330 is located in the installation space 101, and the second portion of the condensing body 330 is located between the two third limiting walls 220. The first portions of the four clamping walls are respectively inserted into the four right-angled slots 102, and the second portions of the four clamping walls are limited between the two third limiting walls 220. Therefore, the condenser 300 can be limited in the second direction by the two third limiting walls 220, thereby ensuring the positional stability of the condenser 300.
[0081] In this embodiment, the top wall 210 and the two third limiting walls 220 can be a single structural member. In this case, the top wall 210 and the two third limiting walls 220 can be integrally formed by injection molding. Alternatively, the top wall 210 and the two third limiting walls 220 can be connected to form an integral structure by bonding, welding, or the like.
[0082] In this implementation, the two second limiting walls 130 and the two third limiting walls 220 are in contact with each other, and an air guide inlet 410 is provided on one of the second limiting walls 130 and the third limiting wall 220 in contact. Figure 4 As shown; an air guide outlet 420 is provided on another second limiting wall 130 and another third limiting wall 220 that are in contact, so as to limit the position of the condenser 300 by the two second limiting walls 130 and the two third limiting walls 220, and guide the air for the condenser 300 by the two second limiting walls 130 and the two third limiting walls 220, that is, the limiting structure and the air guide structure are realized at the same time by the two second limiting walls 130 and the two third limiting walls 220, which greatly simplifies the structure of the condensing device; at the same time, the air guide inlet 410 and the air guide outlet 420 formed by the two second limiting walls 130 and the two third limiting walls 220 can also make the wind flow directly to the condensing body 330, thereby greatly improving the condensation efficiency of the condenser 300.
[0083] Here, when the condensing body 330 includes: at least two condensing plates 331 arranged at intervals along the first direction, the air passing through the air guide inlet 410 directly passes through the air channel 332 and flows out through the air guide outlet 420, which can also increase the flow speed of the air, thereby further improving the condensation efficiency of the condenser 300.
[0084] Here, the surface profile of the condensing body 330 in the second direction can match the shapes of the air guide inlet 410 and the air guide outlet 420 respectively. Figure 4As shown, the surface profile of the condensing body 330 in the second direction is substantially the same as the shape of the air guide inlet 410, so that the air passing through the air guide inlet 410 passes through the entire area of the condensing body 330. The surface profile of the condensing body 330 in the second direction is substantially the same as the shape of the air guide outlet 420, so that the air in the entire area of the condensing body 330 can be directly discharged through the air guide outlet 420, thereby greatly increasing the contact area between the air and the condensing body 330 and improving the condensation efficiency of the condenser 300.
[0085] Of course, in other examples, the profile of the condensing body 330 in the second direction may also be larger than the shapes of the air inlet 410 and the air outlet 420. Here, the shapes of the air inlet 410 and the air outlet 420 include the shapes and sizes of the air inlet 410 and the air outlet 420.
[0086] In this implementation, if Figure 1 As shown, the condenser 300 may further include: a first baffle 340 and a second baffle 350 spaced apart along the first direction; the first baffle 340 and the second baffle 350 are located on opposite sides of the condenser body 330; the two ends of the first baffle 340 in the second direction correspond to the positions of the wall on one side of the air guide inlet 410 and the wall on one side of the air guide outlet 420; the two ends of the second baffle 350 in the second direction correspond to the positions of the wall on the other side of the air guide inlet 410 and the wall on the other side of the air guide outlet 420. The baffle 340 and the second baffle 350 are located on opposite sides of the condensing body 330, that is, the condensing body 330 is located in the space defined by the first baffle 340 and the second baffle 350, so that the first baffle 340 and the second baffle 350 can further provide a guiding effect for the air. The first baffle 340 and the second baffle 350 can make all the air flow through the condensing body 330, preventing the air from flowing away from the two ends of the condensing body 330 in the first direction, thereby further improving the condensing efficiency of the condenser 300.
[0087] Of course, in other implementations, the condenser 300 may not include the first baffle 340 and the second baffle 350 , or the condenser 300 may include only one of the first baffle 340 and the second baffle 350 .
[0088] In this implementation, if Figure 1As shown, the condenser 300 may further include two first mounting walls 360 and two second mounting walls 370. The two first mounting walls 360 are correspondingly disposed at the top and bottom ends of the first baffle 340 along the second direction and are confined between the bottom case 100 and the top case 200; the two second mounting walls 370 are correspondingly disposed at the top and bottom ends of the second baffle 350 along the second direction and are confined between the bottom case 100 and the top case 200, so that the position of the condenser 300 in the third direction is defined by the two first mounting walls 360 and the two second mounting walls 370.
[0089] Here, one of the two first installation walls 360 is disposed at the top end of the first baffle 340 , and the other of the two first installation walls 360 is disposed at the bottom end of the first baffle 340 .
[0090] Here, one of the two second mounting walls 370 is disposed at the top end of the second baffle 350 , and the other of the two second mounting walls 370 is disposed at the bottom end of the second baffle 350 .
[0091] When the condenser 300 is installed and inserted into the bottom shell 100, the first mounting wall 360 located at the bottom end of the first baffle 340 and the second mounting wall 370 located at the bottom end of the second baffle 350 are in contact with the bottom shell 100, and the first mounting wall 360 located at the top end of the first baffle 340 and the second mounting wall 370 located at the top end of the second baffle 350 are in contact with the top shell 200 or are spaced apart, thereby limiting the position of the condenser 300 in the third direction by the two first mounting walls 360 and the two second mounting walls 370.
[0092] Here, the first mounting wall 360 at the bottom end of the first baffle 340 and the second mounting wall 370 at the bottom end of the second baffle 350 may directly contact the bottom wall 110 of the bottom case 100 or may contact other structures on the bottom wall 110 .
[0093] Here, the first mounting wall 360 at the top of the first baffle 340 and the second mounting wall 370 at the top of the second baffle 350 can directly contact or be spaced apart from the top wall 210 of the top shell 200 , or can contact or be spaced apart from other structures on the top wall 210 .
[0094] As an example, Figure 5As shown, the bottom shell 100 may further include: at least one fourth limiting wall 140, at least one fourth limiting wall 140 is arranged on the bottom wall 110, and is respectively in contact with the two first mounting walls 360 and the two second mounting walls 370; the top shell 200 may further include: at least one fifth limiting wall 230, at least one fifth limiting wall 230 is arranged on the bottom wall 110, and is respectively arranged adjacent to the two first mounting walls 360 and the two second mounting walls 370; the two first mounting walls 360 are limited between at least one fourth limiting wall 140 and at least one fifth limiting wall 230, and the two second mounting walls 370 are limited between at least one fourth limiting wall 140 and at least one fifth limiting wall 230.
[0095] In this implementation, two first clamping walls 310 among the four clamping walls are arranged at opposite ends of the first baffle 340 in the second direction, and two second clamping walls 320 among the four clamping walls are arranged at opposite ends of the second baffle 350 in the second direction; the two first clamping walls 310, the two first mounting walls 360 and the first baffle 340 are a structural component; the two second clamping walls 320, the two second mounting walls 370 and the second baffle 350 are a structural component, so as to simplify the structure of the condensing device.
[0096] Here, the two first clamping walls 310, the two first mounting walls 360 and the first baffle 340 can be formed by bending or stamping the same substrate, and the two second clamping walls 320, the two second mounting walls 370 and the second baffle 350 can be formed by bending or stamping the same substrate.
[0097] Of course, in other examples, the two first clamping walls 310, the two first mounting walls 360, and the first baffle 340 may not be a single structural component. In this case, the two first clamping walls 310, the two first mounting walls 360, and the first baffle 340 may be connected by welding or bonding. The two second clamping walls 320, the two second mounting walls 370, and the second baffle 350 may not be a single structural component. In this case, the two second clamping walls 320, the two second mounting walls 370, and the second baffle 350 may be connected by welding or bonding.
[0098] Here, as Figure 7 and Figure 9 As shown, the two first clamping walls 310 and the two first mounting walls 360 can be located on the side of the first baffle 340 facing away from the condensing body 330 , and the two first clamping walls 310 and the two first mounting walls 360 can be located correspondingly at the four edges of the first baffle 340 .
[0099] Here, as Figure 9As shown, the two first clamping walls 310 are provided with a first opening 311 at one end adjacent to the two first mounting walls 360, so as to ensure that the two first mounting walls 360 are in contact with the bottom shell 100 or the top shell 200 through a larger area, thereby ensuring the stability and reliability of the installation of the condenser 300. Alternatively, as Figure 7 As shown, a second opening 361 is provided at one end of the two first mounting walls 360 adjacent to the two first clamping walls 310, so that the positions of the air guide inlet 410 and the air guide outlet 420 can be corresponded through the two first clamping walls 310 with larger areas. If there is an error in installation or manufacturing, when part of the air guide inlet 410 or the air guide outlet 420 is facing the two first clamping walls 310, the two first clamping walls 310 can also block the air from flowing out from both sides of the condensation body 330, thereby ensuring that all the air flows through the condensation body 330, thereby improving the condensation efficiency of the condensation body 330.
[0100] A first opening 311 is provided at one end of the two first clamping walls 310 adjacent to the two first mounting walls 360, which means that a first opening 311 is provided at one end of each of the two first clamping walls 310 adjacent to the two first mounting walls 360. At this time, each first clamping wall 310 is provided with a first opening 311 at both ends in the third direction.
[0101] The second opening 361 is opened at one end of the two first mounting walls 360 adjacent to the two first clamping walls 310, which means that the second opening 361 is opened at one end of each first mounting wall 360 adjacent to the two first clamping walls 310. At this time, each first mounting wall 360 has a first opening 311 at both ends of the second direction.
[0102] Of course, in other examples, the two first engaging walls 310 may not be provided with the first openings 311 , and the two first mounting walls 360 may not be provided with the second openings 361 .
[0103] Here, as Figure 8 and Figure 10 As shown, the two second clamping walls 320 and the two second mounting walls 370 can be located on the side of the second baffle 350 facing away from the condensing body 330 , and the two second clamping walls 320 and the two second mounting walls 370 can be correspondingly located at the four edges of the second baffle 350 .
[0104] Here, as Figure 10 As shown, one end of the two second clamping walls 320 adjacent to the two second mounting walls 370 may be provided with a third opening 321 to ensure that the two second mounting walls 370 are in contact with the bottom shell 100 or the top shell 200 through a larger area, thereby ensuring the stability and reliability of the installation of the condenser 300. Alternatively, as Figure 8As shown, a fourth opening 371 is provided at one end of the two second mounting walls 370 adjacent to the two second clamping walls 320 so that the positions of the air guide inlet 410 and the air guide outlet 420 can be corresponded through the two second clamping walls 320 with larger areas. If there is an error in installation or manufacturing, when part of the air guide inlet 410 or the air guide outlet 420 is facing the two second clamping walls 320, the two second clamping walls 320 can also block the air from flowing out from both sides of the condensation body 330, thereby ensuring that all the air flows through the condensation body 330 and improving the condensation efficiency of the condensation body 330.
[0105] A third opening 321 is provided at one end of the two second clamping walls 320 adjacent to the two second mounting walls 370, which means that a third opening 321 is provided at one end of each of the two second clamping walls 320 adjacent to the two second mounting walls 370. At this time, each second clamping wall 320 is provided with a third opening 321 at both ends in the third direction.
[0106] A fourth opening 371 is provided at one end of the two second mounting walls 370 adjacent to the two second clamping walls 320, which means that a fourth opening 371 is provided at one end of each second mounting wall 370 adjacent to the two second clamping walls 320. At this time, each second mounting wall 370 has a fourth opening 371 at both ends of the second direction.
[0107] The embodiment of the present application also describes a drying device, which includes a condensing device, a desiccant assembly and a driving assembly of the embodiment of the present application; the top shell 200 and the bottom shell 100 define a desiccant space and a regeneration space, and the condenser 300 is located in the regeneration space; the desiccant assembly is rotatably arranged in the space defined by the top shell 200 and the bottom shell 100; part of the desiccant assembly is located in the desiccant space and the regeneration space, and is spaced apart from the condenser 300; the desiccant assembly is used to absorb moisture in the desiccant space, and is also used to release the absorbed moisture in the regeneration space to form humid air in the regeneration space, and the condenser 300 is used to condense moisture in the humid air; the driving assembly is used to drive the desiccant assembly to rotate.
[0108] In the embodiment of the present application, the drying device can be used to dry objects. For example, the drying device can be used in a washing machine or a dryer.
[0109] In the embodiments of the present application, the structure of the moisture absorbing component is not limited, as long as it can absorb moisture from the air. For example, the moisture absorbing component may include a moisture absorbent, which may be solid or liquid. As an example, the moisture absorbent may include solid silica gel and / or calcium chloride. For another example, the moisture absorbing component may include a molecular sieve.
[0110] In the embodiments of the present application, the manner in which the moisture absorbing component releases the absorbed moisture in the regeneration space is not limited. For example, the drying device may also include a heating component that heats the portion of the moisture absorbing component located in the regeneration space, thereby causing the moisture absorbing component to release the absorbed moisture in the regeneration space, thereby forming humid air in the regeneration space.
[0111] During operation, the desiccant component rotates and periodically passes through the desiccant space and the regeneration space. The desiccant component absorbs moisture in the desiccant space and releases the absorbed moisture in the regeneration space to form humid air in the regeneration space. The moisture in the humid air is condensed by the condenser 300, thereby achieving periodic removal of moisture in the air, allowing the humid air to enter through the air inlet of the drying device, and the dry air to flow out from the air outlet of the drying device to achieve the drying effect.
[0112] In the embodiments of the present application, the structure of the drive assembly is not limited. For example, the drive assembly may include a motor; the output shaft of the motor may be directly connected to the moisture absorbent assembly to drive the moisture absorbent assembly to rotate. In another example, the drive assembly may include a motor and a gear structure. The gear structure may be disposed between the output shaft of the motor and the moisture absorbent assembly, so that the motor drives the moisture absorbent assembly to rotate via the gear structure. In this case, the moisture absorbent assembly may be provided with teeth that mate with the gear structure.
[0113] The embodiment of the present application also describes a washing device, comprising: a device frame, a washing drum and a drying device of the embodiment of the present application;
[0114] The equipment frame defines a accommodating space, the washing drum is rotatably arranged in the accommodating space, and the drying device is fixed on the equipment frame and is located on the top side or bottom side of the washing drum; the air inlet and the air outlet of the drying device are respectively connected to different areas of the washing drum, so that the clothes for the washing device can be dried by the drying device.
[0115] The various specific technical features described in the specific embodiments may be combined in any suitable manner, unless they are inconsistent. For example, different embodiments and technical solutions may be formed by combining different specific technical features. To avoid unnecessary repetition, the various possible combinations of the specific technical features in this utility model will not be described separately.
[0116] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.
Claims
1. A condensing device, characterized in that: include: Bottom shell, including: bottom wall; Two first limiting walls are spaced apart on the bottom wall in a first direction; Two second limiting walls are spaced apart from each other on the bottom wall in a second direction; an installation space is defined between the two second limiting walls and the two first limiting walls; the two second limiting walls and the two first limiting walls define right-angle slots at four corners of the installation space; the second direction is perpendicular to the first direction; The condenser includes: a condensing body, at least partially located in the installation space; Four clamping walls are arranged on four edges of the condensing body along a third direction and are respectively inserted into four right-angled clamping slots; the third direction is perpendicular to the second direction and the first direction respectively; The top shell is connected to the bottom shell; at least a portion of the condenser is located in a space defined by the top shell and the bottom shell.
2. The condensing device according to claim 1, characterized in that The top shell includes: top wall; two third limiting walls, spaced apart on the top wall in the second direction and corresponding to the positions of the two second limiting walls; The first part of the condensing body is located in the installation space, the second part of the condensing body is located between two third limiting walls, the first parts of the four clamping walls are respectively inserted into four right-angled slots, and the second parts of the four clamping walls are limited between the two third limiting walls.
3. The condensing device according to claim 2, characterized in that The two second limiting walls are in contact with the two third limiting walls. An air guide inlet is provided on one of the second limiting walls and the third limiting wall that are in contact; an air guide outlet is provided on the other second limiting wall and the other third limiting wall that are in contact.
4. The condensing device according to claim 3, characterized in that The profile of the surface of the condensing body in the second direction matches the shapes of the air guide inlet and the air guide outlet respectively.
5. The condensing device according to claim 3, characterized in that The condenser further includes: a first baffle and a second baffle spaced apart along a first direction; the first baffle and the second baffle are located on opposite sides of the condensing body; The two ends of the first baffle in the second direction correspond to the wall on one side of the air inlet and the wall on one side of the air outlet respectively; the two ends of the second baffle in the second direction correspond to the wall on the other side of the air inlet and the wall on the other side of the air outlet respectively.
6. The condensing device according to claim 5, characterized in that The condenser further comprises: Two first mounting walls are correspondingly arranged at the top and bottom ends of the first baffle along the second direction and are limited between the bottom shell and the top shell; Two second mounting walls are correspondingly arranged at the top and bottom ends of the second baffle along the second direction and are limited between the bottom shell and the top shell.
7. The condensing device according to claim 6, characterized in that The bottom shell also includes: at least one fourth limiting wall, disposed on the bottom wall and respectively contacting the two first mounting walls and the two second mounting walls; The top shell also includes: at least one fifth limiting wall, disposed on the bottom wall and adjacent to the two first mounting walls and the two second mounting walls respectively; The two first installation walls are located between at least one fourth limiting wall and at least one fifth limiting wall, and the two second installation walls are located between at least one fourth limiting wall and at least one fifth limiting wall.
8. The condensing device according to claim 6, characterized in that Two first clamping walls among the four clamping walls are arranged at opposite ends of the first baffle in the second direction, and two second clamping walls among the four clamping walls are arranged at opposite ends of the second baffle in the second direction; The two first clamping walls, the two first mounting walls and the first baffle are a structural component; the two second clamping walls, the two second mounting walls and the second baffle are a structural component.
9. The condensing device according to claim 8, characterized in that The two first clamping walls and the two first mounting walls are located on a side of the first baffle facing away from the condensing body, and the two first clamping walls and the two first mounting walls are correspondingly located on four edges of the first baffle; a first opening is formed at one end of the two first clamping walls adjacent to the two first mounting walls; or a second opening is formed at one end of the two first mounting walls adjacent to the two first clamping walls; The two second clamping walls and the two second mounting walls are located on the side of the second baffle facing away from the condensing body, and the two second clamping walls and the two second mounting walls are correspondingly located on the four edges of the second baffle; a third opening is provided at one end of the two second clamping walls adjacent to the two second mounting walls; or, a fourth opening is provided at one end of the two second mounting walls adjacent to the two second clamping walls.
10. The condensing device according to claim 1, characterized in that The condensing body comprises: at least two condensing sheets spaced apart along a first direction; and air channels are defined between adjacent condensing sheets.
11. The condensing device according to claim 10, characterized in that At least two condensing plates are provided with at least two mounting through holes along a first direction; The condenser further comprises: The first portion of the tube body is inserted into at least two mounting openings, and the second portion of the tube body is located outside the condensing body.
12. The condensing device according to claim 11, characterized in that The two first limiting walls are provided with installation notches. The second portion of the tube body passes through the installation notch and is located outside the installation space.
13. A drying device, characterized in that: The condensing device, moisture absorption component and driving component comprised in any one of claims 1 to 12; The top shell and the bottom shell define a moisture absorption space and a regeneration space, and the condenser is located in the regeneration space; The moisture absorption component is rotatably disposed in the space defined by the top shell and the bottom shell; a portion of the moisture absorption component is located in the moisture absorption space and the regeneration space, and is spaced apart from the condenser; The moisture absorption component is used to absorb moisture in the moisture absorption space and release the absorbed moisture in the regeneration space to form humid air in the regeneration space, and the condenser is used to condense moisture in the humid air; The driving component is used to drive the moisture absorption component to rotate.
14. A washing device, characterized in that: include: Equipment frame, washing drum and the drying device of claim 13; The equipment frame defines a accommodating space, the washing drum is rotatably arranged in the accommodating space, the drying device is fixed on the equipment frame and is located on the top side or bottom side of the washing drum; the air inlet and the air outlet of the drying device are respectively connected to different areas of the washing drum.