Condenser assembly and clothes treating equipment
By designing the liquid inlet and spray hole of the spray assembly in the condenser assembly and setting them on different structural parts respectively, efficient heat exchange of the condenser assembly is achieved, the problem of low heat exchange efficiency of the condenser assembly is solved, and the drying performance of the clothing processing equipment is improved.
Patent Information
- Application Number
- CN202422644753.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-10-30
AI Technical Summary
The heat exchange efficiency of existing condenser assemblies is low.
A condenser assembly is designed, comprising a condenser shell and a spray assembly. The spray assembly is provided with a accommodating cavity and a spray hole. The liquid inlet and the spray hole are respectively arranged on different structural parts. The spray hole is connected with the heat exchange cavity. The water outlet from the spray hole has good uniformity, which increases the water volume and water pressure and expands the design space.
The heat exchange efficiency of the condenser assembly is improved, the uniformity of water spraying from the spray holes is ensured, the cooling effect of the condenser assembly is enhanced, and the drying performance of the clothing processing equipment is improved.
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Figure CN223397949U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of clothing processing, in particular to a condenser component and clothing processing equipment. Background Art
[0002] This section merely provides background information related to the present disclosure and is not necessarily prior art.
[0003] Currently, clothing processing equipment, such as drum-type washer-dryers, are usually equipped with a condenser assembly. The drying principle is generally to heat the air in the drying channel through a heater and send it into the drum; under the action of the hot air, the water on the clothes evaporates to form hot and humid air, which then enters the condenser assembly. The hot and humid air is condensed into water and dry gas after being acted upon by a cooling medium in the condenser assembly. The dry gas is then heated by the heater and enters the drum, and the purpose of drying the clothes is achieved through this cycle.
[0004] The condenser assembly generally includes a condenser shell, and a heat exchange cavity is formed inside the condenser shell. The heat exchange efficiency of the condenser assembly is low. Utility Model Content
[0005] The purpose of the present invention is to at least solve the problem of low heat exchange efficiency of the condenser assembly in the prior art. This purpose is achieved through the following technical solutions:
[0006] A first aspect of an embodiment of the present invention provides a condenser assembly, comprising:
[0007] A condenser shell, wherein a cleaning inlet is formed on one side of the condenser shell, and a heat exchange cavity is formed inside the condenser shell;
[0008] A spray assembly, the spray assembly includes a cover body and a spray part, the cover body is covered on the cleaning inlet, and the cover body is provided with a liquid inlet; the spray part is arranged in the heat exchange chamber, and a accommodating chamber is formed in the spray part, the accommodating chamber is connected with the liquid inlet, and the spray part is provided with a spray hole, the spray hole is connected with the heat exchange chamber, so as to spray liquid into the heat exchange chamber through the spray hole.
[0009] According to the condenser assembly of the present invention, a condenser shell and a spray assembly are set, wherein a cover body is covered on the cleaning inlet, and a liquid inlet is provided on the cover body, and an accommodating cavity is formed in the spray part, the accommodating cavity is communicated with the liquid inlet, and a spray hole is provided on the spray assembly, the spray hole is communicated with the heat exchange cavity to spray liquid into the heat exchange cavity through the spray hole, the liquid inlet and the spray hole are arranged on different structural parts, the setting positions of the liquid inlet and the spray hole are relatively flexible, and the design space is large, and the setting of the accommodating cavity can ensure that there is sufficient water volume and water pressure between the liquid inlet and the spray hole, which can ensure the uniformity of water spraying from the spray hole and improve the heat exchange efficiency of the condenser assembly.
[0010] In addition, the condenser assembly according to the present invention may also have the following additional technical features:
[0011] In some embodiments of the present invention, one end of the spraying member is disposed at the cleaning inlet, and the other end extends downward from the cleaning inlet.
[0012] In some embodiments of the present invention, the spraying element is sealed to the cover.
[0013] In some embodiments of the present invention, an orthographic projection of the liquid inlet toward the accommodating cavity is located inside the accommodating cavity, and at least part of the spray holes are disposed at the bottom of the accommodating cavity.
[0014] In some embodiments of the present invention, the spray part includes a first side plate and a first bottom plate connected to each other, the first side plate is a first annular structure, one end of the first annular structure is connected to the first bottom plate, and the first side plate and the first bottom plate enclose the accommodating cavity.
[0015] In some embodiments of the present invention, the accommodating chamber includes a first chamber and a second chamber independently spaced apart, and the spray hole includes a first spray hole and a second spray hole, the first spray hole is arranged in the first chamber for spraying the fluid in the first chamber, and the second spray hole is arranged in the second chamber for spraying the fluid in the second chamber.
[0016] In some embodiments of the present invention, the condenser shell includes a first side wall and a second side wall arranged opposite to each other, the first injection hole is arranged on a side of the first cavity close to the first side wall, and the second injection hole is arranged on a side of the second cavity close to the second side wall.
[0017] In some embodiments of the present invention, the first spray hole is arranged to be tilted downward toward the direction close to the first side wall, and the second spray hole is arranged to be tilted downward toward the direction close to the second side wall.
[0018] In some embodiments of the present invention, a guide structure is provided on the surface of the first side wall facing the heat exchange cavity; the guide structure extends along the extension direction of the first side wall and is used to guide the liquid flowing out of the first injection hole to flow in the heat exchange cavity.
[0019] In some embodiments of the present invention, the spray assembly further includes a water stopper, which is arranged around the outer wall surface of the spray member and is arranged at an end of the spray member away from the cover body.
[0020] A second aspect of the embodiments of the present invention provides a clothes treating device, which includes the condenser assembly described in the above embodiments.
[0021] In addition, the clothes processing device according to the present invention may also have the following additional technical features:
[0022] In some embodiments of the present invention, the clothing processing device includes a washing tub, the condenser assembly is arranged at the bottom of the washing tub, and part of the bottom of the washing tub constitutes the condenser shell, and the heat exchange chamber is arranged on the side of the bottom facing the washing chamber of the washing tub.
[0023] In some embodiments of the present invention, the clothes processing device further includes a fan assembly, the fan assembly includes a volute, and a portion of the volute forms a cover of the spray assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present invention. The same reference numerals are used throughout the accompanying drawings to denote the same components. In the accompanying drawings:
[0025] Figure 1 Schematically shows a partial structural diagram of a clothes processing device according to an embodiment of the present utility model;
[0026] Figure 2 for Figure 1 A partial enlarged structural diagram of the laundry processing device at point A shown in FIG;
[0027] Figure 3 for Figure 1 Schematic diagram of the structure of the clothes processing device shown in the second viewing angle (the cover is not shown);
[0028] Figure 4 for Figure 3 A partial enlarged structural diagram of the clothes processing device at position B shown in FIG;
[0029] Figure 5 for Figure 3 Schematic diagram of the structure of the clothes processing device shown in the second perspective (the spray assembly is not shown);
[0030] Figure 6 for Figure 1 A structural diagram of a cover body of a clothes processing device shown in FIG;
[0031] Figure 7 for Figure 4 A schematic structural diagram of a spray assembly of a clothes treating apparatus shown in FIG;
[0032] Figure 8 for Figure 7 Schematic diagram of the structure of the spray assembly of the clothes processing equipment shown in the second viewing angle;
[0033] Figure 9 for Figure 7 Schematic diagram of the structure of the spray assembly of the clothes processing equipment shown in FIG.
[0034] Figure 10 for Figure 1 A complete structural diagram of a washing tub of a clothes processing device shown in FIG;
[0035] Figure 11 for Figure 10 A schematic structural diagram of a washing tub of a clothes processing apparatus shown in FIG. 1 is shown in a second viewing angle;
[0036] Figure 12 Schematically shows a partial structural diagram of a clothes processing device according to an embodiment of the present utility model;
[0037] Figure 13 for Figure 1 Schematic diagram of the structure of the clothes processing device shown in the third perspective;
[0038] Figure 14 for Figure 13 FIG. 1 is a cross-sectional structural diagram of the clothes treating apparatus along the BB section.
[0039] The reference numerals are as follows:
[0040] 100. Clothing processing equipment;
[0041] 10. Condenser assembly; 11. Condenser shell; 111. Heat exchange chamber; 112. Cleaning inlet; 113. First side wall; 114. Second side wall; 115. Flow guide structure; 13. Spray assembly; 131. Spray element; 1311. First side panel; 13111. First plate; 13112. Second plate; 13113. Third plate; 13114. Fourth plate; 13115. Fifth plate; 13116. Sixth plate; 1312. First bottom plate; 13121. First horizontal plate; 1312 2. Second horizontal plate; 1313. Accommodating chamber; 1314. First chamber; 1315. Second chamber; 1316. Partition plate; 1317. Positioning hole; 1318. First injection hole; 1319. Second injection hole; 1320. Flanged edge; 132. Cover; 1321. First inlet; 1322. Second inlet; 1323. Positioning post; 133. Water retaining member; 1331. First baffle; 1332. Second baffle; 1333. Third baffle; 14. Fin assembly; 15. First pipeline; 16. Second pipeline;
[0042] 20. Fan assembly; 21. Volute;
[0043] 30. Drying components;
[0044] 40. Washing tub; 41. Bottom of tub; 42. Drain port;
[0045] 50. First arrow;
[0046] 60. Second arrow;
[0047] XX, axial direction;
[0048] YY, height direction. DETAILED DESCRIPTION
[0049] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.
[0050] It should be understood that the terms used herein are for the purpose of describing specific example embodiments only and are not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms "one", "an" and "said" as used herein may also be meant to include plural forms. The terms "comprise", "include", "contain" and "have" are inclusive and therefore specify the presence of stated features, steps, operations, elements and / or parts, but do not exclude the presence or addition of one or more other features, steps, operations, elements, parts, and / or combinations thereof. The method steps, processes, and operations described herein are not to be construed as necessarily requiring them to be performed in the specific order described or illustrated, unless the order of execution is clearly indicated. It should also be understood that additional or alternative steps may be used.
[0051] Although the terms first, second, third, etc. can be used in the text to describe multiple elements, components, regions, layers and / or sections, these elements, components, regions, layers and / or sections should not be limited by these terms. These terms can only be used to distinguish an element, component, region, layer or section from another region, layer or section. Unless the context clearly indicates otherwise, terms such as "first", "second" and other numerical terms do not imply order or sequence when used in the text. Therefore, the first element, component, region, layer or section discussed below can be referred to as the second element, component, region, layer or section without departing from the teaching of the example embodiments.
[0052] For ease of description, spatially relative terms may be used herein to describe the relationship of one element or feature relative to another element or feature as shown in the figures, such as "inside," "outside," "inside," "outside," "below," "beneath," "above," and the like. Such spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the figures. For example, if the device in the figures is flipped over, an element described as "below" or "beneath" another element or feature would then be oriented "above" or "above" the other element or feature. Thus, the example term "below" can encompass both above and below orientations.
[0053] like Figures 1 to 11 As shown, according to the first aspect of the embodiment of the present utility model, a condenser assembly 10 for a clothes processing device 100 is proposed. Figure 1 Schematically shows a partial structural diagram of a clothes processing device 100 according to an embodiment of the present invention. Figure 2 for Figure 1 The partially enlarged structural diagram of the laundry processing apparatus 100 at point A is shown in FIG. Figure 3for Figure 1 , which is a structural diagram of the laundry processing apparatus 100 at a second viewing angle (the cover 12 is not shown). Figure 4 for Figure 3 The partially enlarged structural diagram of the laundry processing apparatus 100 at position B is shown in FIG. Figure 5 for Figure 3 The foreign matter handling device shown in the figure is a structural schematic diagram of a second perspective (the spray assembly 13 is not shown in the figure), the condenser assembly 10 includes a condenser shell 11 and a spray assembly 13, a cleaning inlet 112 is formed on one side of the condenser shell 11, and a heat exchange chamber 111 is formed inside the condenser shell 11, the spray assembly 13 includes a cover body 132 and a spray part 131, the cover body 132 is connected to one end of the condenser shell 11 provided with the cleaning inlet 112, and the cover body 12 is provided with a liquid inlet; the spray assembly 13 is arranged in the heat exchange chamber 111, and a accommodating chamber 1313 is formed in the spray assembly 13, the accommodating chamber 1313 is connected to the liquid inlet, and a spray hole is provided on the spray assembly 13, the spray hole is connected to the accommodating chamber 1313, and the spray hole is connected to the heat exchange chamber 111, so as to spray the liquid in the accommodating chamber 1313 into the heat exchange chamber 111 through the spray hole.
[0054] It should be noted that the liquid here is usually water, but an organic solvent can also be used.
[0055] The condenser assembly 10 of the clothing processing device 100 of the present invention is provided with a condenser shell 11 and a spray assembly 13, wherein the cover body 12 is provided on the cleaning inlet 112, and a accommodating chamber 1313 is formed in the spray assembly 13, the accommodating chamber 1313 is communicated with the liquid inlet, and a spray hole is provided on the spray assembly 13, the spray hole is communicated with the heat exchange chamber 111, so as to spray liquid into the heat exchange chamber 111 through the spray hole, wherein the liquid inlet is provided on the cover body 132 of the spray assembly 13, and the spray hole is provided on the spray part 131 of the spray assembly 13, the liquid inlet and the spray hole can be provided on different structural parts, the setting positions of the liquid inlet and the spray hole are relatively flexible, the design space is large, and the setting of the accommodating chamber 1313 can ensure that there is sufficient water volume and water pressure between the liquid inlet and the spray hole, can ensure the uniformity of water spraying from the spray hole, and improve the heat exchange efficiency of the condenser assembly 10.
[0056] Optionally, one end of the spray member 131 is provided at the cleaning inlet 112, and the other end of the spray member 131 extends downward from the cleaning inlet 112, that is, the spray member 131 is connected to the cover body 12 in a vertical arrangement, so that the liquid flowing out of the spray member 131 can be easily transferred vertically into the interior of the heat exchange chamber 111. In conventional arrangements, the spray member 131 is usually arranged horizontally inside the heat exchange chamber 111. In order to be able to provide more spray holes, the spray member 131 is relatively long in the horizontal direction. Because the vertical dimension of the heat exchange chamber 111 is much larger than the horizontal dimension, in the present invention, the spray member 131 is arranged vertically inside the heat exchange chamber 111, and a sufficient number of spray holes can be provided by utilizing the vertical space of the heat exchange chamber 111, thereby providing a sufficient amount of spray water.
[0057] It should be pointed out that the spray piece 131 in conventional technology is usually in the form of a nozzle. In order to ensure the water spraying effect, the nozzle needs to be provided with multiple small water outlet holes to ensure the water outlet pressure. In order to ensure sufficient heat exchange efficiency, the nozzle is usually arranged horizontally in the heat exchange chamber 111, and is arranged to be relatively long so that there are enough water outlets on the spray piece 131, which will affect the size and space of the condenser assembly 10 in the heat exchange chamber 111.
[0058] In the present invention, a cover body 132 is used to set a liquid inlet, and a spray part 131 with a accommodating cavity 1313 is used to ensure the uniformity of water output from the spray part 131, without affecting the size and space of the condenser assembly 10 in the heat exchange cavity 111, and reducing the difficulty of installing the spray assembly 13. In addition, compared with setting the liquid inlet on the condenser shell 11, the flow distance of the liquid is longer, and sufficient heat exchange can be carried out with the humid and hot gas, thereby achieving sufficient heat exchange and improving the cooling effect of the humid and hot gas, thereby improving the heat exchange efficiency of the condenser assembly 10 and improving the drying performance of the clothing processing device 100.
[0059] Optionally, the spray piece 131 and the cover body 132 are sealed together, and the sealing connection can be achieved by bonding or welding, without the need for sealing rings or gaskets, so that the spray piece 131 and the cover body 132 can achieve a more stable sealing effect.
[0060] It should be noted that the spray element 131 is connected to the lower surface of the cover body 132, that is, the spray element 131 is connected to the surface of the cover body 132 facing the accommodating cavity 1313, so that the spray element 131 can be located at the top of the heat exchange cavity 111, thereby increasing the flow distance of the liquid sprayed by the spray element 131 along the heat exchange cavity 111.
[0061] Optionally, the positive projection of the liquid inlet toward the accommodating chamber 1313 is located in the accommodating chamber 1313, and at least part of the spray holes are arranged at the bottom of the accommodating chamber 1313. That is to say, the liquid flowing through the liquid inlet can flow directly into the accommodating chamber 1313. Since at least part of the spray holes are arranged at the bottom of the accommodating chamber 1313, when there is less liquid in the accommodating chamber 1313, it can still be sprayed into the heat exchange chamber 111 through the spray holes, thereby avoiding liquid residue in the accommodating chamber 1313.
[0062] The specific structure of the spray element 131 will be described below.
[0063] Alternatively, as Figures 7 to 9 As shown, Figure 7 for Figure 4 The structural diagram of the spray assembly 13 of the clothes processing device 100 is shown in FIG. Figure 8 for Figure 7 FIG2 is a structural diagram of the spray assembly 13 of the laundry processing apparatus 100 at a second viewing angle, Figure 9 for Figure 7 Schematic diagram of the structure of the spray assembly 13 of the laundry processing device 100 at a third viewing angle. Figure 7 and Figure 8 As shown, the spray element 131 includes a first side plate 1311 and a first bottom plate 1312 connected to each other. The first side plate 1311 is a first annular structure, one end of the first annular structure is connected to the first bottom plate 1312, and the first side plate 1311 and the first bottom plate 1312 form an accommodating cavity 1313.
[0064] It should be noted that the first side plate 1311 here is composed of multiple plate bodies. Specifically, the first side plate 1311 includes a first plate body 13111, a second plate body 13112, a third plate body 13113, a fourth plate body 13114, a fifth plate body 13115 and a sixth plate body 13116. The first plate body 13111, the second plate body 13112, the third plate body 13113, the fourth plate body 13114, the fifth plate body 13115 and the sixth plate body 13116 form a first annular structure. The first bottom plate 1312 here includes a first horizontal plate 13121 and a second horizontal plate 13122. The first horizontal plate 13121 and the second horizontal plate 13122 can be located in the same horizontal plane. At this time, the first horizontal plate 13121 and the second horizontal plate 13122 are an integral flat plate structure. The first horizontal plate 13121 and the second horizontal plate 13122 can also be arranged in different horizontal planes. At this time, the first horizontal plate 13121 and the second horizontal plate 13122 adopt a two-plate structure.
[0065] It should be noted that the first bottom plate 1312 here can also be an inclined plate, that is, the first horizontal plate 13121 and the second horizontal plate 13122 do not have to be set horizontally, but can also be set inclined, as long as they can cooperate with the first side plate 1311 to form the accommodating cavity 1313.
[0066] Optionally, the accommodating chamber 1313 includes a first chamber 1314 and a second chamber 1315 that are independently spaced apart, and the spray hole includes a first spray hole 1318 and a second spray hole 1319. The first spray hole 1318 is arranged in the first chamber 1314 for spraying the fluid in the first chamber 1314, and the second spray hole 1319 is arranged in the second chamber 1315 for spraying the fluid in the second chamber 1315.
[0067] Specifically, the condensed liquid enters the first cavity 1314 through the first inlet 1321 of the cover body 132, and is then sprayed into the heat exchange cavity 111 through the first spray hole 1318 of the first cavity 1314. The cleaning liquid enters the second cavity 1315 through the second inlet 1322 of the cover body 132, and then enters the heat exchange cavity 111 through the second spray hole 1319 of the second cavity 1315, thereby flushing the debris on the surface of the fin assembly 14 and the debris in the heat exchange cavity 111.
[0068] It should be noted that the first cavity 1314 and the second cavity 1315 can be isolated by a partition 1316. The accommodating cavity 1313 can be separated into the first cavity 1314 and the second cavity 1315 by placing the partition 1316 in the accommodating cavity 1313, so that the first cavity 1314 and the second cavity 1315 can be independent of each other.
[0069] Specifically, refer to Figure 7 As shown, the first plate 13111, the second plate 13112, the third plate 13113, the partition 1316, and the first horizontal plate 13121 form a first cavity 1314. The first cavity 1314 can be a box-shaped structure with an open top. Specifically, the first cavity 1314 can be a rectangular box-shaped structure or a box-shaped structure similar to a rectangular box-shaped structure, and the top of the rectangular cuboid is provided with a rectangular opening, and the rectangular opening is closed by the cover 132. The fourth plate 13114, the fifth plate 13115, the sixth plate 13116, the partition 1316, and the second horizontal plate 13122 form a second cavity 1315. The second cavity 1315 can be a box-shaped structure with an open top. Specifically, the second cavity 1315 can be a rectangular box-shaped structure or a box-shaped structure similar to a rectangular cuboid, and the top of the cuboid is provided with a rectangular opening, and the rectangular opening is closed by the cover 132.
[0070] It should be noted that the number of the cover body 132 can be one, which can simultaneously close the opening of the first cavity 1314 and the opening of the second cavity 1315, thereby reducing the number of the cover bodies 132 and the number of parts of the condenser assembly 10.
[0071] It should be noted that the first chamber 1314 and the second chamber 1315 are arranged side by side, wherein the first chamber 1314 is used to accommodate condensed water. The condensed water in the first chamber 1314 is sprayed into the heat exchange chamber 111 through the first spray hole 1318 to achieve heat exchange with the hot and humid air. The liquid in the second chamber 1315 can be used to rinse lint and the like from the condenser assembly 10.
[0072] The embodiment of the present invention integrates the spray structure for removing lint and the spray structure for condensation into one spray part 131 , thereby making the structure of the spray part 131 simpler and reducing the space occupied by the spray part 131 in the heat exchange chamber 111 .
[0073] Alternatively, as Figure 2 and Figure 6 As shown, Figure 6 for Figure 1 , a structural schematic diagram of the cover body 12 of the clothing processing device 100 is shown in the figure, the number of liquid inlets is two, and the two liquid inlets are respectively a first inlet 1321 and a second inlet 1322, wherein the first inlet 1321 and the second inlet 1322 are respectively arranged on the cover body 12, wherein the first inlet 1321 is installed with a first pipeline 15, and the second inlet 1322 is installed with a second pipeline 16, and liquid can be provided to the first inlet 1321 through the first pipeline 15, and liquid can be provided to the second inlet 1322 through the second pipeline 16.
[0074] It should be noted that the first inlet 1321 and the second inlet 1322 here can be connected to the water inlet valve of the clothing processing device 100 through a pipeline. The clothing processing device 100 is connected to an external water source, and can provide liquid water to the first inlet 1321 or the second inlet 1322. When it is necessary to clean the hair debris in the heat exchange chamber 111, the external water source provides cleaning liquid to the second inlet 1322, and sprays it out through the second spray hole 1319 of the second chamber 1315 to achieve flushing of the surface of the fin assembly 14 in the heat exchange chamber 111 and the inside of the heat exchange chamber 111, thereby removing the hair debris on the surface of the fin assembly 14 and the hair debris in the heat exchange chamber 111.
[0075] Optionally, when the clothing processing device 100 is in the drying process, an external water source provides liquid water to the first inlet 1321, and the liquid water is sprayed out through the first spray hole 1318 of the first chamber 1314, and performs heat exchange with the hot and humid air in the heat exchange chamber 111 to achieve condensation of the hot and humid air, thereby enabling the clothing processing device 100 to dry the clothes.
[0076] The first injection hole 1318 here can be a rectangular hole, a circular hole, or a hole of other shapes. After the liquid enters the first cavity 1314 from the first inlet 1321 , it can flow out from the first injection hole 1318 .
[0077] Continue to refer to Figure 7 As shown, at least one of the fourth plate 13114, the fifth plate 13115 and the sixth plate 13116 has a flange 1320 formed on its top. Figure 7 In the figure, the tops of the fourth plate 13114, the fifth plate 13115 and the sixth plate 13116 are all formed with flanges 1320, and positioning holes 1317 are provided on the flanges 1320, wherein the number of the positioning holes 1317 can be two, and the two positioning holes 1317 are spaced apart on the flanges 1320.
[0078] Correspondingly, the surface of the cover 132 facing the accommodating cavity 1313 is provided with a positioning post 1323, which is plugged into the positioning hole 1317 to facilitate positioning of the spray element 131 relative to the cover 132 and installation of the spray element 131 on the cover 132. The installation method can be welding or bonding as mentioned above.
[0079] In some embodiments of the present invention, Figure 4 As shown, the condenser shell 11 includes a first side wall 113 and a second side wall 114 that are arranged opposite to each other. The first side wall 113 and the second side wall 114 form a heat exchange chamber 111. The inner surface of the first side wall 113 is provided with a guide structure 115. The guide structure 115 extends along the extension direction of the first side wall 113 and is used to guide the liquid flowing out of the first injection hole 1318 to flow in the heat exchange chamber 111.
[0080] Optionally, the first spray hole 1318 is arranged on the side of the first cavity 1314 close to the first side wall 113, and the second spray hole 1319 is arranged on the side of the second side wall 114 of the second cavity 1315, so that the liquid flowing out of the first spray hole 1318 is sprayed toward the first side wall 113 and can flow downward along the guide structure 115, and the liquid flowing out of the second spray hole 1319 can flow downward to the surface of the fin assembly 14, thereby flushing the hair debris on the surface of the fin assembly 14.
[0081] Optionally, the first spray hole 1318 is arranged to be tilted downward toward the direction close to the first side wall 113, and the second spray hole 1319 is arranged to be tilted downward toward the direction close to the second side wall 114. Such an arrangement can make it easier for the water sprayed from the first spray hole 1318 to be sprayed toward the first side wall 113, and the liquid sprayed from the second spray hole 1319 can flow obliquely toward the second side wall 114 and flow toward the surface of the fin assembly 14.
[0082] It should be noted that if Figure 4 As shown, the guide structure 115 can be a guide groove structure, which is arranged on the inner surface of the first side wall 113, wherein the inner surface of the first side wall 113 is arranged toward the second side wall 114. A plurality of protrusions can be arranged on the first side wall 113, wherein a guide groove is formed between two adjacent protrusions to facilitate the diversion of the liquid.
[0083] The protrusions extend in the vertical direction and may be rectangular protrusions or hemispherical protrusions. The liquid can flow along the guide structure 115 between two adjacent protrusions.
[0084] The number of the first injection holes 1318 can be one or more, so as to facilitate the outflow of the liquid from the first cavity 1314. The first injection holes 1318 can be provided at the connection position between the second plate 13112 and the first horizontal plate 13121.
[0085] Optionally, the number of the second injection holes 1319 can also be multiple. Figure 7 and Figure 8 In the embodiment, the second injection hole 1319 is provided at the lower portion of the fifth plate body 13115 and on the surface of the second horizontal plate 13122, so that the liquid in the second cavity 1315 can flow out from multiple locations.
[0086] In some embodiments of the present invention, Figures 7 to 9 As shown, the spray assembly 13 also includes a water blocking member 133, which is connected to the first bottom plate 1312 to block the liquid flowing out of the first spray hole 1318. The water blocking member 133 is arranged around the outer wall surface of the spray member 131 and is located at one end of the spray member 131 away from the cover body 132.
[0087] Specifically, the water stop 133 is used to block the liquid flowing out of the first spray hole 1318 near the first side wall 113, preventing the liquid from moving from the bottom of the first bottom plate 1312 away from the first side wall 113, so that the liquid flowing out of the first spray hole 1318 is between the water stop 133 and the first side wall 113, thereby preventing the liquid from entering the drying component 30 of the clothing processing device 100.
[0088] In some embodiments of the present invention, Figures 7 to 9As shown, the water retaining member 133 includes a first baffle 1331, a second baffle 1332 and a third baffle 1333 connected in sequence, wherein the first baffle 1331 and the third baffle 1333 are respectively arranged at an angle to the second baffle 1332, wherein the second baffle 1332 is spaced apart from the first side wall 113. Specifically, the second baffle 1332 and the first side wall 113 can be relatively spaced apart, and can be arranged in a parallel or approximately parallel manner.
[0089] It should be noted that the first baffle 1331 and the second baffle 1332 can be perpendicular to each other, and the second baffle 1332 and the third baffle 1333 can be perpendicular to each other, wherein the third baffle 1333 is arranged relatively parallel to the second baffle 1332. The second baffle 1332 and the first baffle 1331 are smoothly connected, and the second baffle 1332 and the third baffle 1333 are smoothly connected, so that water can be blocked from multiple positions.
[0090] In this embodiment, the first baffle 1331 , the second baffle 1332 and the third baffle 1333 of the water blocking member 133 form an approximately C-shaped blocking structure, which can block water.
[0091] Specifically, the first baffle 1331 , the second baffle 1332 and the third baffle 1333 here can be connected to the first horizontal plate 13121 , thereby forming a water-retaining structure to block the condensed water inside the heat exchange chamber 111 .
[0092] In some embodiments of the present invention, the condenser assembly 10 further includes a fin assembly 14 . The fin assembly 14 is disposed on the first side wall 113 and on the downstream side where the liquid flows along the guide structure 115 .
[0093] It should be noted that the fin assembly 14 here can increase the heat exchange area of the liquid, thereby improving the heat exchange efficiency. The fin assembly 14 here can be arranged on the inner surface of the first side wall 113. After the liquid flows out of the guide structure 115, it flows through the fin assembly 14 to achieve the heat exchange effect.
[0094] The second aspect of the embodiment of the present invention provides a clothes processing device 100, such as Figure 10 and Figure 11 As shown, Figure 10 for Figure 1 The complete structural diagram of the washing tub 40 of the laundry processing apparatus 100 is shown in FIG. Figure 11 for Figure 10, the washing tub 40 of the clothing processing device 100 is shown in the structural schematic diagram at a second perspective, the clothing processing device 100 includes the condenser assembly 10 and the washing tub 40 in the above embodiment, the washing tub 40 is the outer tub of the clothing processing device 100, the condenser assembly 10 is arranged on the barrel bottom 41 of the washing tub 40, and part of the barrel bottom 41 of the washing tub 40 constitutes the condenser shell 11, and the heat exchange chamber 111 is arranged on the side of the barrel bottom 41 facing the washing chamber of the washing tub 40, that is, the heat exchange chamber 111 is arranged on one side of the inner surface of the barrel bottom 41.
[0095] The condenser assembly 10 is located inside the washing tub 40, and the condensed liquid can flow along the Figure 11 The liquid flows in the direction indicated by the first arrow 50 and is discharged from the drain port 42 of the washing tub 40 .
[0096] Optionally, the clothes processing device 100 further includes a drying assembly 30 and a fan assembly 20. The drying assembly 30 is provided with a drying tunnel, and the drying tunnel is provided with a heating element for further heating the airflow after condensation.
[0097] It should be noted that after the liquid flowing out of the first spray hole 1318 enters the heat exchange chamber 111 , the water blocking member 133 can prevent the liquid from entering the drying channel of the drying assembly 30 under the action of the fan assembly 20 .
[0098] In some embodiments of the present invention, Figure 1 As shown, the water retaining member 133 of the spray assembly 13 is disposed in the heat exchange chamber 111 and can prevent water from entering the fan assembly 20. The fan assembly 20 is located at the inlet of the drying assembly 30. The fan assembly 20 is provided with a fan wheel. The rotation of the fan wheel can generate negative pressure at the inlet of the drying tunnel, thereby sucking the airflow in the heat exchange chamber 111 into the drying tunnel, providing power for the flow of air.
[0099] Optionally, the fan assembly 20 includes a volute 21, and the cover 12 is a portion of the volute 21 of the fan assembly 20, thereby allowing the cover 12 to be integrated with the volute 21 of the fan assembly 20, thereby reducing the number of parts. In addition, the cover 12 and the condenser housing 11 can be sealed, for example, using a sealing ring or a sealing surface for sealing.
[0100] The clothing processing device 100 of the present invention adopts the above-mentioned condenser assembly 10, so that the water sprayed by the spray assembly 13 can more easily exchange heat with the hot and humid air entering the heat exchange chamber 111, thereby improving the cooling effect of the condenser assembly 10, thereby helping to improve the drying performance of the clothing processing device 100.
[0101] It should be noted that the process of removing debris from the heat exchange chamber 111 is independent of the operation of the condenser assembly 10 and does not interfere with each other. That is, when the condenser assembly 10 is drying, the first spray hole 1318 of the first chamber 1314 of the spray element 131 will spray liquid. When the condenser assembly 10 is not drying and the heat exchange chamber 111 of the condenser assembly 10 needs to be flushed, the second spray hole 1319 of the second chamber 1315 of the spray element 131 will spray liquid to flush the fin assembly 14 and other parts, removing debris from the surface of the fin assembly 14 and debris from the heat exchange chamber 111.
[0102] Continue to refer to Figure 11 、 Figure 12 、 Figure 13 and Figure 14 As shown, the flow of moist hot air is as follows Figure 11 and Figure 12 As shown by the second arrow 60 in the drawing, the hot and humid air flows out of the washing chamber of the inner barrel and enters the interior of the washing barrel 40, and then enters the heat exchange chamber 111, wherein the inner barrel is located inside the washing barrel 40, and the washing chamber of the inner barrel is connected to the interior of the washing barrel 40. It undergoes sufficient heat exchange with the condensed water in the heat exchange chamber 111, and under the action of the fan assembly 20, enters the drying assembly 30 for heating, and the heated airflow enters the washing chamber, thereby realizing the circulation of the airflow.
[0103] For the structures of other parts of this application, please refer to the prior art and will not be described in detail in this application.
[0104] The above description is merely a preferred 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 the present invention 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 condenser assembly, characterized in that: include: A condenser shell, wherein a cleaning inlet is formed on one side of the condenser shell, and a heat exchange cavity is formed inside the condenser shell; A spray assembly, the spray assembly includes a cover body and a spray part, the cover body is covered on the cleaning inlet, and the cover body is provided with a liquid inlet; the spray part is arranged in the heat exchange chamber, and a accommodating chamber is formed in the spray part, the accommodating chamber is connected with the liquid inlet, and a spray hole is provided on the spray part, the spray hole is connected with the accommodating chamber, so as to spray the liquid in the accommodating chamber into the heat exchange chamber through the spray hole.
2. The condenser assembly according to claim 1, wherein One end of the spraying member is arranged at the cleaning inlet, and the other end extends downward from the cleaning inlet.
3. The condenser assembly according to claim 1, wherein The spraying element is sealed to the cover body.
4. The condenser assembly according to claim 1, wherein The orthographic projection of the liquid inlet toward the accommodating cavity is located in the accommodating cavity, and at least part of the spray holes are arranged at the bottom of the accommodating cavity.
5. The condenser assembly according to claim 1, wherein The spraying element includes a first side plate and a first bottom plate connected to each other. The first side plate is a first annular structure. One end of the first annular structure is connected to the first bottom plate. The first side plate and the first bottom plate enclose the accommodating cavity.
6. The condenser assembly according to claim 5, wherein: The accommodating chamber includes a first chamber and a second chamber that are independently spaced apart, and the spray hole includes a first spray hole and a second spray hole. The first spray hole is arranged in the first chamber for spraying the fluid in the first chamber, and the second spray hole is arranged in the second chamber for spraying the fluid in the second chamber.
7. The condenser assembly according to claim 6, wherein: The condenser shell includes a first side wall and a second side wall that are oppositely arranged. The first spray hole is arranged on a side of the first cavity close to the first side wall, and the second spray hole is arranged on a side of the second cavity close to the second side wall.
8. The condenser assembly according to claim 7, wherein: The first spray hole is arranged to be inclined downward toward a direction close to the first side wall, and the second spray hole is arranged to be inclined downward toward a direction close to the second side wall.
9. The condenser assembly according to claim 6, wherein: A flow guide structure is provided on the surface of the first side wall facing the heat exchange cavity; The guide structure extends along the extension direction of the first side wall and is used to guide the liquid flowing out of the first injection hole to flow in the heat exchange cavity.
10. The condenser assembly according to claim 5, wherein The spray assembly further includes a water retaining member, which is arranged around the outer wall surface of the spray member and is arranged at an end of the spray member away from the cover body.
11. A clothes processing device, characterized in that: Comprising the condenser assembly according to any one of claims 1 to 10.
12. The clothes processing device according to claim 11, wherein: The laundry processing device includes a washing tub, the condenser assembly is arranged at the bottom of the washing tub, and part of the bottom of the washing tub constitutes the condenser shell, and the heat exchange cavity is arranged on a side of the bottom facing the washing cavity of the washing tub.
13. The clothes processing device according to claim 11, wherein: The laundry treatment device further includes a fan assembly, wherein the fan assembly includes a volute, and a portion of the volute forms a cover of the spray assembly.