Condensation apparatus, drying apparatus, and washing device
By adopting a bottom shell and top shell design in the condensing unit, and utilizing the cooperation of the snap-fit wall and the right-angle slot, the problem of inconvenient installation of the condensing unit in the shell assembly is solved, realizing stable installation and convenient disassembly of the condenser, and improving condensing efficiency.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-08-28
- Publication Date
- 2026-03-12
AI Technical Summary
The existing condenser unit is inconvenient to install and remove from the shell assembly, requiring specialized tools and is not simple to operate.
The design features a bottom and top shell, and the condenser is installed by inserting four snap-fit walls into right-angle slots, simplifying the installation process and avoiding reliance on special tools.
It achieves stable installation and convenient disassembly of the condenser, has a simple structure, and improves condensation efficiency and installation stability.
Smart Images

Figure CN2025117484_12032026_PF_FP_ABST
Abstract
Description
Condensing device, drying device and washing equipment Cross-reference to related applications
[0001] The present disclosure is based on the Chinese patent application No. 202422168698.X, filed on September 4, 2024, entitled "Condensing device, drying device and washing equipment", and claims priority to the Chinese patent application, the content of which is incorporated herein by reference. TECHNICAL FIELD
[0002] The present disclosure relates to the technical field of condensing, and particularly relates to a condensing device, a drying device and a washing equipment. BACKGROUND
[0003] The condensing device is generally used in equipment such as dryers and washing equipment. As a component in the equipment, when the condensing device is installed, 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 assemble it. SUMMARY
[0004] Therefore, the present disclosure provides a condensing device, a drying device and a washing equipment.
[0005] To achieve the above-mentioned purpose, the technical scheme of the present disclosure is as follows:
[0006] The present disclosure provides a condensing device, comprising:
[0007] A bottom shell, comprising:
[0008] A bottom wall;
[0009] Two first limiting walls are arranged on the bottom wall in a first direction;
[0010] Two second limiting walls are arranged 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-angled clamping groove at four corners of the first installation space; and the second direction is perpendicular to the first direction.
[0011] A condenser, comprising:
[0012] A condensing body, at least partially located in the first installation space;
[0013] Four clamping walls are arranged on four edges of the condensing body in a third direction and correspondingly inserted into the four first right-angled clamping grooves; and the third direction is perpendicular to the second direction and the first direction.
[0014] a top shell connected with the bottom shell; at least part of the condenser is located in a space defined by the top shell and the bottom shell.
[0015] In some implementations, the top shell comprises:
[0016] a top wall;
[0017] two third limiting walls, which are arranged in the first direction and correspond to the positions of the two first limiting walls;
[0018] two fourth limiting walls, which are arranged in the second direction and correspond to the positions of the two second limiting walls;
[0019] 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 part of the four clamping walls is respectively inserted into the four right-angled clamping grooves, the second part of the four clamping walls is limited between the two third limiting walls, the two fourth limiting walls, and the two third limiting walls at the four corners of the second installation space define second right-angled clamping grooves; the first part of the four clamping walls is respectively inserted into the four first right-angled clamping grooves, and the second part of the four clamping walls is respectively inserted into the four second right-angled clamping grooves.
[0020] In some implementations, the two second limiting walls and the two fourth limiting walls correspondingly contact the third limiting walls,
[0021] an air guide inlet is formed on one of the contacting second limiting walls and one of the contacting fourth limiting walls; an air guide outlet is formed on the other of the contacting second limiting walls and the other of the contacting fourth limiting walls.
[0022] In some implementations, the cross-sectional profile of the condensing body in the second direction respectively matches the shape of the air guide inlet and the air guide outlet.
[0023] In some implementations, the condenser further comprises: a first baffle and a second baffle arranged in the first direction; the first baffle and the second baffle are located on opposite sides of the condensing body.
[0024] The two ends of the first baffle in the second direction respectively correspond to the positions of the wall body on one side of the air guide inlet and the wall body on one side of the air guide outlet; the two ends of the second baffle in the second direction respectively correspond to the positions of the wall body on the other side of the air guide inlet and the wall body on the other side of the air guide outlet.
[0025] In some implementations, the condenser further comprises:
[0026] two first installation walls, corresponding to the top end and the bottom end of the first baffle plate in the second direction, and being limited between the bottom shell and the top shell;
[0027] two second installation walls, corresponding to the top end and the bottom end of the second baffle plate in the second direction, and being limited between the bottom shell and the top shell.
[0028] In some implementations, the bottom shell further comprises:
[0029] at least one fourth limiting wall, being arranged at the bottom wall and being in contact with one first installation wall and one second installation wall respectively;
[0030] the top shell further comprises:
[0031] at least one fifth limiting wall, being arranged at the top wall and being adjacent to another first installation wall and another second installation wall respectively;
[0032] the two first installation walls are limited between the at least one fourth limiting wall and the at least one fifth limiting wall, and the two second installation walls are limited between the at least one fourth limiting wall and the at least one fifth limiting wall.
[0033] In some implementations, two first clamping walls of the four clamping walls are arranged at opposite ends of the first baffle plate in the second direction, and two second clamping walls of the four clamping walls are arranged at opposite ends of the second baffle plate in the second direction.
[0034] The two first clamping walls, the two first installation walls and the first baffle plate are a structural member, and the two second clamping walls, the two second installation walls and the second baffle plate are a structural member.
[0035] In some implementations, the two first clamping walls and the two first installation walls are located on a side of the first baffle plate opposite to the condensing body, and the two first clamping walls and the two first installation walls are located at four edges of the first baffle plate correspondingly; a first opening is arranged at an end of the two first clamping walls adjacent to the two first installation walls; or, a second opening is arranged at an end of the two first installation walls adjacent to the two first clamping walls.
[0036] The two second clamping walls and the two second installation walls are located on a side of the second baffle plate opposite to the condensing body, and the two second clamping walls and the two second installation walls are located at four edges of the second baffle plate correspondingly; a third opening is arranged at an end of the two second clamping walls adjacent to the two second installation walls; or, a fourth opening is arranged at an end of the two second installation walls adjacent to the two second clamping walls.
[0037] In some implementations, the condensing body comprises: at least two condensing pieces spaced apart along the second direction; and at least two condensing pieces spaced apart along the first direction; and the air passage is defined between adjacent condensing pieces.
[0038] In some implementations, the at least two condensing pieces are provided with at least two mounting through holes along the second direction, and the at least two condensing pieces are provided with at least two mounting through holes along the first direction.
[0039] The condenser further comprises:
[0040] The pipe body is provided with a first portion penetrating the at least two mounting openings and a second portion located outside the condensing body.
[0041] In some implementations, the two first limiting walls are provided with a mounting gap,
[0042] The second portion of the pipe body penetrates the mounting gap and is located outside the mounting space.
[0043] The disclosure further provides a drying device comprising the condensing device, a moisture absorbing assembly, and a driving assembly.
[0044] The top shell and the bottom shell define a moisture absorbing space and a regeneration space, and the condenser is located in the regeneration space.
[0045] The moisture absorbing assembly is rotatably arranged in the space defined by the top shell and the bottom shell, periodically passes through the moisture absorbing space and the regeneration space, and is spaced apart from the condenser; a portion of the moisture absorbing assembly is located in the moisture absorbing space and the regeneration space and is spaced apart from the condenser.
[0046] The moisture absorbing assembly is used for absorbing moisture in the moisture absorbing space and releasing the absorbed moisture in the regeneration space, so as to form humid air in the regeneration space, and the condenser is used for condensing the moisture in the humid air.
[0047] The driving assembly is used for driving the moisture absorbing assembly to rotate.
[0048] The disclosure further provides a washing device comprising a device frame, a washing drum, and the drying device.
[0049] The device frame defines a containing space, the washing drum is rotatably arranged in the containing space, the drying device is fixed on the device frame and located at a top side or a bottom side of the washing drum, and an air inlet of the drying device and an air outlet of the drying device are respectively in communication with different regions of the washing drum.
[0050] The condensing device of the embodiment of the present disclosure, when installing the condenser, only needs to insert the condenser into the installation space along the third direction, and here, since the four clamping walls are respectively inserted into the four right-angle clamping grooves, the condenser can be stably limited in the installation space, the structure is simple, and the special tool is not needed, and the condenser is convenient to disassemble and assemble. BRIEF DESCRIPTION OF DRAWINGS
[0051] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present disclosure, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0052] Fig. 1 is a partial structural schematic view of the condensing device in the embodiment of the present disclosure, wherein the top shell is hidden;
[0053] Fig. 2 is a partial structural schematic view of the bottom shell in the embodiment of the present disclosure;
[0054] Fig. 3 is a partial structural schematic view of the top shell in the embodiment of the present disclosure;
[0055] Fig. 4 is another partial structural sectional view of the condensing device in the embodiment of the present disclosure;
[0056] Fig. 5 is still another partial structural sectional view of the condensing device in the embodiment of the present disclosure;
[0057] Fig. 6 is a partial structural schematic view of the condensing device in the embodiment of the present disclosure, wherein the top shell is hidden;
[0058] Fig. 7 is a structural schematic view of the condenser in the embodiment of the present disclosure;
[0059] Fig. 8 is another perspective view of Fig. 7;
[0060] Fig. 9 is another structural schematic view of the condenser in the embodiment of the present disclosure;
[0061] Fig. 10 is another perspective view of Fig. 9.
[0062] 100, bottom shell; 101, mounting space; 102, right-angle clamping groove; 110, bottom wall; 120, first limiting wall; 121, mounting gap; 130, second limiting wall; 140, fourth limiting wall; 200, top shell; 210, top wall; 220, third limiting wall; 230, fifth limiting wall; 300, condenser; 310, first clamping wall; 311, first opening; 320, second clamping wall; 321, third opening; 330, condenser body; 331, condensing piece; 332, air passage; 340, first baffle; 350, second baffle; 360, first mounting wall; 361, second opening; 370, second mounting wall; 371, fourth opening; 380, pipe body; 381, cooling medium inlet; 382, cooling medium outlet; 410, air guide inlet; 420, air guide outlet. DETAILED DESCRIPTION
[0063] The technical solutions of the present disclosure are described in further detail below in combination with the accompanying drawings and some embodiments. In the description of the embodiments of the present disclosure, it should be noted that unless otherwise stated and limited, the term "connection" should be understood broadly, for example, it can be an electrical connection, or a connection between two elements, it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above-mentioned term can be understood according to the specific circumstances.
[0064] It should be noted that the terms "first", "second", "third" involved in the embodiments of the present disclosure are only to distinguish similar objects, and do not represent a specific order of the objects. Understandably, "first", "second", "third" can be interchanged in a specific order or sequence as allowed. It should be understood that the objects distinguished by "first", "second", "third" can be interchanged under appropriate circumstances, so that the embodiments of the present disclosure described herein can be implemented in an order other than those illustrated or described herein.
[0065] The condensing device described in the embodiments of the present disclosure is described in detail below in combination with FIGS. 1 to 10.
[0066] As shown in FIG. 1 and FIG. 2, the condensing device comprises a bottom shell 100, a condenser 300 and a top shell 200. The bottom shell 100 comprises a bottom wall 110, two first limiting walls 120 and two second limiting walls 130. The two first limiting walls 120 are arranged at the bottom wall 110 in a first direction; the two second limiting walls 130 are arranged at the bottom wall 110 in a 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 clamping grooves 102 at four corners of the installation space 101; the second direction is perpendicular to the first direction; the condenser 300 comprises a condenser body 330 and four clamping walls. The condenser body 330 is at least partially located in the installation space 101; the four clamping walls are arranged at four edges of the condenser body 330 in a third direction and correspondingly inserted into the four right-angled clamping grooves 102; the third direction is perpendicular to the second direction and the first direction; the top shell 200 is connected with the bottom shell 100; at least part of the condenser 300 is located in a space defined by the top shell 200 and the bottom shell 100.
[0067] In the related art, the condensing structure is generally fixed in the shell structure by bolts, so that the condensing structure needs to be disassembled with special tools and is not convenient to disassemble. However, in the condensing device of the embodiment of the present disclosure, when the condenser 300 is installed, it only needs to be inserted into the installation space 101 in the third direction. Here, since the four clamping walls are correspondingly inserted into the four right-angled clamping grooves 102, the condenser 300 can be stably limited in the installation space 101, the structure is simple, and special tools are not needed, so it is convenient to disassemble.
[0068] In the embodiment of the present disclosure, the first direction F1, the second direction F2 and the third direction F3 are only used to determine the relative position relationship of the related structures in the condensing device, and any two of the first direction, the second direction and the third direction are perpendicular to each other. As an example, the first direction can be a horizontal direction, the second direction can be a vertical direction, and the third direction can be a height direction.
[0069] In the embodiment of the present disclosure, the bottom wall 110, the two first limiting walls 120 and the two second limiting walls 130 can be one structural member, and here, 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 also be connected to form an integral structure by bonding, welding or the like.
[0070] In the embodiments of the present disclosure, the condensing body 330 can be located entirely in the installation space 101, and the top cover 200 can be in the form of a cover. Of course, the condensing body 330 can also be partially located in the installation space 101, and a part of the condensing body 330 can also be located in the space defined by the top cover 200.
[0071] As shown in FIG. 1, the condensing body 330 can include at least two condensing pieces 331 spaced apart along a first direction; and an air passage 332 defined between adjacent condensing pieces 331; so that air flowing through the air passage 332 can be cooled by the condensing pieces 331 on both sides of the air passage 332.
[0072] Here, the at least two condensing pieces 331 are provided with at least two installation through holes along the first direction; and as shown in FIGS. 6, 7, 8, 9 and 10, the condenser 300 can further include a pipe body 380, a first part of the pipe body 380 penetrating the at least two installation through holes, and a second part of the pipe body 380 located outside the condensing body 330; so that the heat of the condensing body 330 can be taken away by the pipe body 380, so that the condensing body 330 can be kept in a lower temperature state.
[0073] Here, as shown in FIG. 6, the two first limiting walls 120 can be provided with installation notches 121, and the second part of the pipe body 380 penetrates the installation notches 121 and is located outside the installation space 101, so as to prevent the second part of the pipe body 380 from being damaged by the two first limiting walls 120.
[0074] Here, the first part of the pipe body 380 can penetrate the at least two installation through holes in the form of a Z-shaped structure, and the second part of the pipe body 380 can be located at both ends of the at least two condensing pieces 331 along the first direction, and a part of the second part of the pipe body 380 can penetrate the installation notches 121 of one of the first limiting walls 120 and be located outside the installation space 101, and another part of the second part of the pipe body 380 can penetrate the installation notches 121 of the other first limiting wall 120 and be located outside the installation space 101.
[0075] Here, the pipe body 380 can be used to contain a cooling medium, and the cooling medium can circulate in the pipe body 380 to continuously take away the heat of the condensing body 330. The form of the cooling medium is not limited. For example, the cooling medium can be water or refrigerant.
[0076] As shown in FIGS. 7, 8, 9 and 10, the pipe body 380 can 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 which can provide a circulating cooling medium through the cooling medium inlet 381 and the cooling medium outlet 382.
[0077] Of course, in other examples, the condenser 300 can also not include the pipe body 380, and here, the condensing body 330 can be cooled by other structures. For example, the condensing body 330 can also be cooled by a fan.
[0078] As shown in FIG. 1, the four clamping walls correspondingly inserted into the four right-angled clamping slots 102 means that each clamping wall is inserted into a right-angled clamping slot 102, so as to limit the condenser 300 in the first direction and the second direction, and prevent the condenser 300 from shaking in the first direction and the second direction.
[0079] In the embodiments of the present disclosure, the top shell 200 and the bottom shell 100 can be connected by a threaded structure, a clamping structure, a welding structure, etc.
[0080] The condenser 300 can be located entirely within the space defined by the top shell 200 and the bottom shell 100. For example, the condensing body 330 and the pipe body 380 of the condenser 300 are located entirely within the space defined by the top shell 200 and the bottom shell 100. Of course, the condenser 300 can 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 is located entirely within the space defined by the top shell 200 and the bottom shell 100, part of the pipe body 380 of the condenser 300 is located within the space defined by the top shell 200 and the bottom shell 100, and part of the pipe body 380 of the condenser 300 is located outside the space defined by the top shell 200 and the bottom shell 100.
[0081] In some implementations of the embodiments of the present disclosure, as shown in FIG. 3, the top shell 200 can include a top wall 210 and two third limiting walls 220. The two third limiting walls 220 are spaced apart from the top wall 210 in the second direction and correspond to the positions of the two second limiting walls 130; the first part of the condensing body 330 is located in the mounting space 101, the second part of the condensing body 330 can be located between the two third limiting walls 220, and the first part of the four clamping walls is correspondingly inserted into the four right-angled clamping slots 102, and the second part of the four clamping walls is limited between the two third limiting walls 220, so that the two third limiting walls 220 can limit the condenser 300 in the second direction, thereby improving the positional stability of the condenser 300.
[0082] In the present implementation, the top wall 210 and the two third limiting walls 220 can be one structural member, and here, 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 also be connected to form an integral structure by bonding, welding, etc.
[0083] In the present implementation, the two second limiting walls 130 and the two third limiting walls 220 can correspondingly contact, and the air guide inlet 410 is formed on one second limiting wall 130 and one third limiting wall 220 in contact, and the air guide outlet 420 is formed on the other second limiting wall 130 and the other third limiting wall 220 in contact, so as to limit the position of the condenser 300 through the two second limiting walls 130 and the two third limiting walls 220, and guide air for the condenser 300 through the two second limiting walls 130 and the two third limiting walls 220, in other words, the limiting structure and the air guiding structure are simultaneously realized through the two second limiting walls 130 and the two third limiting walls 220, greatly reducing 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 air directly flow to the condensing body 330, thereby greatly improving the condensing efficiency of the condenser 300.
[0084] Here, when the condensing body 330 includes at least two condensing pieces 331 arranged in the first direction, the air passing through the air guide inlet 410 directly passes through the air passage 332 and flows out through the air guide outlet 420, which can also improve the flow speed of the air, thereby further improving the condensing efficiency of the condenser 300.
[0085] Here, the cross-sectional profile of the condensing body 330 in the second direction can match the shape of the air guide inlet 410 and the air guide outlet 420 respectively, and here, as shown in FIG. 4, the cross-sectional 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, and the cross-sectional 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 guided out through the air guide outlet 420, thereby greatly increasing the contact area of the air and the condensing body 330 and improving the condensing efficiency of the condenser 300.
[0086] Of course, in other examples, the cross-sectional profile of the condensing body 330 in the second direction can also be larger than the shape of the air guide inlet 410 and the air guide outlet 420 respectively. Here, the shape of the air guide inlet 410 and the air guide outlet 420 includes the shape and size of the air guide inlet 410 and the air guide outlet 420.
[0087] In the present implementation, as shown in FIG. 1, the condenser 300 can further include a first baffle 340 and a second baffle 350 which are arranged at intervals in the first direction, and the first baffle 340 and the second baffle 350 are located at opposite sides of the condensing body 330. The first baffle 340 corresponds to the positions of the wall body on one side of the air guide inlet 410 and the wall body on one side of the air guide outlet 420 at both ends of the second direction respectively. The second baffle 350 corresponds to the positions of the wall body on the other side of the air guide inlet 410 and the wall body on the other side of the air guide outlet 420 at both ends of the second direction respectively. Since the first baffle 340 and the second baffle 350 are located at opposite sides of the condensing body 330, in other words, the condensing body 330 is located in the space defined by the first baffle 340 and the second baffle 350, the air is further guided by the first baffle 340 and the second baffle 350, and the air can flow through the condensing body 330 completely by the first baffle 340 and the second baffle 350, preventing the air from flowing away from the condensing body 330 at both ends of the first direction, so that the condensing efficiency of the condenser 300 can be further improved.
[0088] Of course, in other implementations, the condenser 300 can not include the first baffle 340 and the second baffle 350, or the condenser 300 can include only one of the first baffle 340 and the second baffle 350.
[0089] In the present implementation, as shown in FIG. 1, the condenser 300 can further include two first mounting walls 360 and two second mounting walls 370. The two first mounting walls 360 are arranged at the top end and the bottom end of the first baffle 340 in the second direction and are limited between the bottom shell 100 and the top shell 200. The two second mounting walls 370 are arranged at the top end and the bottom end of the second baffle 350 in the second direction and are limited between the bottom shell 100 and the top shell 200, so as to limit the position of the condenser 300 in the third direction by the two first mounting walls 360 and the two second mounting walls 370.
[0090] Here, one of the two first mounting walls 360 is arranged at the top end of the first baffle 340, and the other of the two first mounting walls 360 is arranged at the bottom end of the first baffle 340.
[0091] Here, one of the two second mounting walls 370 is arranged at the top end of the second baffle 350, and the other of the two second mounting walls 370 is arranged at the bottom end of the second baffle 350.
[0092] When the installation condenser 300 is inserted into the bottom shell 100, the first installation wall 360 at the bottom end of the first baffle 340 and the second installation wall 370 at the bottom end of the second baffle 350 are in contact with the bottom shell 100, and the first installation wall 360 at the top end of the first baffle 340 and the second installation wall 370 at the top end of the second baffle 350 are in contact with or spaced apart from the top shell 200, thereby defining the position of the condenser 300 in the third direction by the two first installation walls 360 and the two second installation walls 370.
[0093] Here, the first installation wall 360 at the bottom end of the first baffle 340 and the second installation wall 370 at the bottom end of the second baffle 350 can be in direct contact with the bottom wall 110 of the bottom shell 100, or in contact with other structures on the bottom wall 110.
[0094] Here, the first installation wall 360 at the top end of the first baffle 340 and the second installation wall 370 at the top end of the second baffle 350 can be in direct contact with or spaced apart from the top wall 210 of the top shell 200, or in contact with or spaced apart from other structures on the top wall 210.
[0095] As an example, as shown in FIG. 5, the bottom shell 100 can further include at least one fourth limiting wall 140 disposed on the bottom wall 110 and in contact with one first installation wall 360 and one second installation wall 370, respectively; and the top shell 200 can further include at least one fifth limiting wall 230 disposed on the top wall 210 and adjacent to the other first installation wall 360 and the other second installation wall 370, respectively; the two first installation walls 360 are limited between the at least one fourth limiting wall 140 and the at least one fifth limiting wall 230, and the two second installation walls 370 are limited between the at least one fourth limiting wall 140 and the at least one fifth limiting wall 230.
[0096] In the present implementation, two first clamping walls 310 of the four clamping walls can be disposed at opposite ends of the first baffle 340 in the second direction, and two second clamping walls 320 of the four clamping walls are disposed at opposite ends of the second baffle 350 in the second direction; the two first clamping walls 310, the two first installation walls 360 and the first baffle 340 can be one structural member; and the two second clamping walls 320, the two second installation walls 370 and the second baffle 350 can be one structural member, so as to simplify the structure of the condensing device.
[0097] Here, the two first clamping walls 310, the two first installation walls 360 and the first baffle 340 can be formed by bending or stamping the same base plate, and the two second clamping walls 320, the two second installation walls 370 and the second baffle 350 can be formed by bending or stamping the same base plate.
[0098] Of course, in other examples, the two first clamping walls 310, the two first mounting walls 360 and the first baffle 340 can also not be one structural member, and here the two first clamping walls 310, the two first mounting walls 360 and the first baffle 340 can be connected by welding, bonding or the like. The two second clamping walls 320, the two second mounting walls 370 and the second baffle 350 can also not be one structural member, and here the two second clamping walls 320, the two second mounting walls 370 and the second baffle 350 can be connected by welding, bonding or the like.
[0099] Here, as shown in FIGS. 7 and 9, 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 correspond to the four edges of the first baffle 340.
[0100] Here, as shown in FIG. 9, one end of the two first clamping walls 310 adjacent to the two first mounting walls 360 can be provided with a first opening 311; so that the two first mounting walls 360 are in contact with the bottom shell 100 or the top shell 200 through a larger area, so as to improve the stability and reliability of the installation of the condenser 300. Alternatively, as shown in FIG. 7, one end of the two first mounting walls 360 adjacent to the two first clamping walls 310 can be provided with a second opening 361, so that the two first clamping walls 310 correspond to the positions of the air guide inlet 410 and the air guide outlet 420 through a larger area, and if there is an error in installation or manufacturing, when the air guide inlet 410 or the air guide outlet 420 is directly opposite 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 condensing body 330, so that all the air flows through the condensing body 330, thereby improving the condensing efficiency of the condensing body 330.
[0101] The two first clamping walls 310 and the two first mounting walls 360 adjacent to one end of the first opening 311 means that each of the two first clamping walls 310 and the two first mounting walls 360 adjacent to one end of the first opening 311, and here each of the two first clamping walls 310 can be provided with a first opening 311 at both ends in the third direction.
[0102] The two first mounting walls 360 and the two first clamping walls 310 adjacent to one end of the second opening 361 means that each of the two first mounting walls 360 and the two first clamping walls 310 adjacent to one end of the second opening 361, and here each of the two first mounting walls 360 can be provided with a second opening 361 at both ends in the second direction.
[0103] Of course, in other examples, the two first clamping walls 310 can also not be provided with the first openings 311, and the two first mounting walls 360 can also not be provided with the second openings 361.
[0104] Here, as shown in FIGS. 8 and 10, the two second clamping walls 320 and the two second mounting walls 370 can be located on the side of the second baffle 350 opposite the condensing body 330, and the two second clamping walls 320 and the two second mounting walls 370 can correspond to the four edges of the second baffle 350.
[0105] Here, as shown in FIG. 10, one end of the two second clamping walls 320 adjacent to the two second mounting walls 370 can be provided with third openings 321; so that the two second mounting walls 370 are in contact with the bottom shell 100 or the top shell 200 through a larger area, so as to improve the stability and reliability of the installation of the condenser 300. Alternatively, as shown in FIG. 8, one end of the two second mounting walls 370 adjacent to the two second clamping walls 320 can be provided with fourth openings 371, so that the two second clamping walls 320 correspond to the positions of the air guide inlet 410 and the air guide outlet 420 through a larger area, and if there is an error in installation or manufacturing, when the air guide inlet 410 or the air guide outlet 420 is directly opposite 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 condensing body 330, so that all the air flows through the condensing body 330, thereby improving the condensing efficiency of the condensing body 330.
[0106] The two second clamping walls 320 and the two second mounting walls 370 adjacent to one end of the third opening 321 means that one end of each of the two second clamping walls 320 adjacent to the two second mounting walls 370 can be provided with the third opening 321, and here, both ends of each of the two second clamping walls 320 in the third direction can be provided with the third opening 321.
[0107] The two second mounting walls 370 and the two second clamping walls 320 adjacent to one end of the fourth opening 371 means that one end of each of the two second mounting walls 370 adjacent to the two second clamping walls 320 can be provided with the fourth opening 371, and here, both ends of each of the two second mounting walls 370 in the second direction can be provided with the fourth opening 371.
[0108] The drying device according to the embodiments of the present disclosure comprises a condenser, a moisture absorbing assembly and a driving assembly.
[0109] In the embodiments of the present disclosure, the drying device can be used for drying objects. For example, the drying device can be used for a washing machine, or can be used for a dryer.
[0110] In the embodiments of the present disclosure, the structure of the moisture absorbing assembly is not limited, as long as it can absorb moisture in the air. For example, the moisture absorbing assembly can comprise a moisture absorbing agent, which can be in a solid state or a liquid state. As an example, the moisture absorbing agent can comprise solid silica gel and / or calcium chloride. For another example, the moisture absorbing assembly can comprise molecular sieve.
[0111] In the embodiments of the present disclosure, the way in which the moisture absorbing assembly releases the absorbed moisture in the regeneration space is not limited. For example, the drying device can also comprise a heating assembly, which heats the part of the moisture absorbing assembly located in the regeneration space, so that the moisture absorbing assembly releases the absorbed moisture in the regeneration space to form humid air in the regeneration space.
[0112] During operation, the moisture absorbing assembly rotates, and periodically passes through the moisture absorbing space and the regeneration space. The moisture absorbing assembly absorbs moisture in the moisture absorbing space, releases the absorbed moisture in the regeneration space to form humid air in the regeneration space, and condenses the moisture in the humid air through the condenser 300, thereby periodically removing the moisture in the air. The humid air enters through the air inlet of the drying device, and the dry air flows out from the air outlet of the drying device, so as to achieve the drying effect.
[0113] In the embodiments of the present disclosure, the structure of the driving assembly is not limited. For example, the driving assembly can comprise a motor, and the output shaft of the motor can be directly connected with the moisture absorbing assembly to drive the moisture absorbing assembly to rotate. For another example, the driving assembly can comprise a motor and a gear structure, which can be arranged between the output shaft of the motor and the moisture absorbing assembly, so that the motor drives the moisture absorbing assembly to rotate through the gear structure. Here, the moisture absorbing assembly can be provided with a tooth portion matched with the gear structure.
[0114] The embodiments of the present disclosure also disclose a washing device, which comprises a device frame, a washing drum and the drying device according to the embodiments of the present disclosure.
[0115] The equipment frame defines a containing space, the washing drum is rotatably arranged in the containing space, and the drying device is fixed on the equipment frame and located at the top side or the bottom side of the washing drum; an air inlet of the drying device and an air outlet of the drying device respectively communicate with different areas of the washing drum, so as to dry the clothes of the washing equipment through the drying device.
[0116] In the specific embodiments, various specific technical features described can be combined in any suitable manner without contradiction, for example, different embodiments and technical solutions can be formed by combining different specific technical features. In order to avoid unnecessary repetition, various possible combinations of various specific technical features in the utility model are not described again.
[0117] The above only describes some embodiments of the present disclosure, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A condensing device, comprising: a bottom shell, comprising: a bottom wall; two first limiting walls, spaced apart from each other in a first direction on the bottom wall; two second limiting walls, spaced apart from each other in a second direction on the bottom wall; 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 a right-angled clamping slot at four corners of the installation space; the second direction is perpendicular to the first direction; a condenser, comprising: a condenser body, at least partially located in the installation space; four clamping walls, arranged along a third direction on four edges of the condenser body, and respectively inserted into the four right-angled clamping slots; the third direction is perpendicular to the second direction and the first direction respectively; a top shell connected with the bottom shell; at least part of the condenser is located in a space defined by the top shell and the bottom shell.
2. The condensing apparatus of claim 1, wherein, the top shell, comprising: a top wall; two third limiting walls, spaced apart from each other in the second direction on the top wall, and corresponding to the positions of the two second limiting walls; a first part of the condenser body is located in the installation space, a second part of the condenser body is located between the two third limiting walls, a first part of the four clamping walls is respectively inserted into the four right-angled clamping slots, and a second part of the four clamping walls is limited between the two third limiting walls.
3. The condensing apparatus of claim 2 wherein, the two second limiting walls and the two third limiting walls correspondingly contact each other, an air guide inlet is arranged on one of the contacting second limiting walls and one of the contacting third limiting walls; an air guide outlet is arranged on the other of the contacting second limiting walls and the other of the contacting third limiting walls.
4. The condensing apparatus of claim 3 wherein, a cross-sectional profile of the condenser body in the second direction matches the shape of the air guide inlet and the air guide outlet respectively.
5. The condensing apparatus of claim 3 wherein, the condenser further comprises: a first baffle and a second baffle, spaced apart from each other in the first direction; the first baffle and the second baffle are located on opposite sides of the condenser body; two ends of the first baffle in the second direction respectively correspond to the positions of the wall body on one side of the air guide inlet and the wall body on one side of the air guide outlet; two ends of the second baffle in the second direction respectively correspond to the positions of the wall body on the other side of the air guide inlet and the wall body on the other side of the air guide outlet.
6. The condensing apparatus of claim 5 wherein, the condenser further comprises: two first installation walls, corresponding to the top end and the bottom end of the first baffle in the second direction, and limited between the bottom shell and the top shell; two second installation walls, corresponding to the top end and the bottom end of the second baffle in the second direction, and limited between the bottom shell and the top shell.
7. The condensing apparatus of claim 6 wherein, the bottom shell further comprises: at least one fourth limiting wall, arranged on the bottom wall, and respectively contacting one of the first installation walls and one of the second installation walls; the top shell further comprises: at least one fifth limiting wall, arranged on the top wall, and respectively adjacent to the other of the first installation walls and the other of the second installation walls; the two first installation walls are limited between the at least one fourth limiting wall and the at least one fifth limiting wall, and the two second installation walls are limited between the at least one fourth limiting wall and the at least one fifth limiting wall.
8. The condensing apparatus of claim 6 wherein, Two first clamping walls are arranged at opposite ends of the first baffle in the second direction, and two second 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 member; and the two second clamping walls, the two second mounting walls, and the second baffle are a structural member.
9. The condensing apparatus of claim 8 wherein, The two first clamping walls and the two first mounting walls are located on a side of the first baffle that faces away from the condensing body, and the two first clamping walls and the two first mounting walls are located at four edges of the first baffle correspondingly; a first opening is arranged at one end of the two first clamping walls adjacent to the two first mounting walls; or a second opening is arranged 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 a side of the second baffle that faces away from the condensing body, and the two second clamping walls and the two second mounting walls are located at four edges of the second baffle correspondingly; a third opening is arranged at one end of the two second clamping walls adjacent to the two second mounting walls; or a fourth opening is arranged at one end of the two second mounting walls adjacent to the two second clamping walls.
10. The condensing apparatus of claim 1 wherein, The condensing body comprises at least two condensing pieces arranged at intervals in the first direction, and an air passage is defined between adjacent condensing pieces.
11. The condensing apparatus of claim 10, wherein, The at least two condensing pieces are provided with at least two mounting through holes in the first direction. The condenser further comprises: A pipe body, a first part of the pipe body penetrating through the at least two mounting openings, and a second part of the pipe body located outside the condensing body.
12. The condensing apparatus of claim 11, wherein, The two first limiting walls are provided with a mounting gap, The second part of the pipe body penetrates through the mounting gap and is located outside the mounting space.
13. A drying apparatus wherein, The condensing device, the moisture absorption assembly, and the driving assembly according to any one of claims 1 to 12 are provided. 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 assembly is rotatably arranged in the space defined by the top shell and the bottom shell, and a part of the moisture absorption assembly is located in the moisture absorption space and the regeneration space and is arranged at intervals from the condenser. The moisture absorption assembly is used for absorbing moisture in the moisture absorption space and releasing the absorbed moisture in the regeneration space to form humid air in the regeneration space, and the condenser is used for condensing the moisture in the humid air. The driving assembly is used for driving the moisture absorption assembly to rotate.
14. A washing apparatus wherein, The device frame, the washing drum, and the drying device according to claim 13 are provided. The device frame defines an accommodation space, the washing drum is rotatably arranged in the accommodation space, the drying device is fixed on the device frame and located on a top side or a bottom side of the washing drum, and an air inlet of the drying device and an air outlet of the drying device are in communication with different regions of the washing drum, respectively.
Citation Information
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