Filtering device and clothes treating device with same
Through the modular design of the filter device, the filter component and the care component are integrated together, which solves the problems of many parts, high cost and poor air filtration effect in the existing clothing processing device, achieves efficient air filtration and care effects, reduces the cost of the device and simplifies the installation process.
Patent Information
- Application Number
- CN202410256983.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-06
- Publication Date
- 2025-09-16
AI Technical Summary
Existing clothing processing devices have many parts and components, are expensive, and are difficult to effectively filter lint and dust in the air. They also lack air care functions.
A modular filtration device is designed to achieve air filtration and care by integrating the filtration component and the care component, thereby reducing the overall cost of the device and simplifying component installation.
Effectively filters lint and dust from the air while imparting air care effects such as fragrance or cleaning functions, reducing the cost of laundry treatment devices and simplifying component installation.
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Figure CN120643987A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clothing processing, and in particular to a filtering device and a clothing processing device having the filtering device. Background Art
[0002] The clothes processing device in the related art can dry clothes, but the number of parts in the clothes processing device is large and the cost is high. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention provides a filter device that, through a modular design of a filter component and a care component, can filter lint, dust, etc. from the air and provide an air care effect, thereby utilizing air to care for clothes. This filter device also facilitates reducing the cost of the clothing treatment device and facilitating the installation of the filter component and the care component together within the clothing treatment device.
[0004] The present invention also provides a clothes treating device having the filtering device.
[0005] According to the first aspect of the present invention, the filtering device includes: a filtering component, which defines a filtering cavity and has an inlet and a first outlet, and the inlet and the first outlet are both connected to the inside and outside of the filtering cavity; and a care component, which is arranged in the filtering component and is connected to the filtering cavity.
[0006] The filter device according to an embodiment of the present invention can filter dander, dust, etc. in the air and provide an air care effect by modularizing the filter component and the care component, so as to use air to care for clothes. At the same time, it is convenient to reduce the cost of the clothing processing device and facilitate the installation of the filter component and the care component together in the clothing processing device.
[0007] In addition, the filter device according to the above embodiment of the present invention may also have the following additional technical features:
[0008] According to some embodiments of the present invention, the filter assembly includes: a shell, the shell defines the filter cavity, the inlet and the first outlet are arranged in the shell; wherein, the shell has an installation port connected to the filter cavity, and the care assembly is arranged at the installation port.
[0009] According to some optional embodiments of the present invention, the installation opening is located on the top wall, side wall or bottom wall of the housing.
[0010] According to some optional embodiments of the present invention, the housing includes: a box body, the top of the box body having an open opening; a cover body, the cover body is arranged to cover the open opening of the box body, the filter cavity is defined between the cover body and the box body, and the installation port is arranged on the cover body.
[0011] According to some optional embodiments of the present invention, the housing further defines a placement cavity, which communicates with the installation port and the filter cavity, and the care component is adapted to be detachably disposed in the placement cavity from the installation port.
[0012] According to some specific embodiments of the present invention, one of the outer wall of the care component and the inner side of the cavity wall of the placement cavity has a snap-fit portion, and the other has a snap-fitting portion that cooperates with the snap-fit portion.
[0013] According to some specific embodiments of the present invention, the peripheral wall of the care component has a stop protrusion, the peripheral wall of the placement cavity has a avoidance opening for avoiding the stop protrusion, and the avoidance opening has a first edge and a second edge arranged opposite to each other; the care component is rotatable between a first position and a second position, and when the care component is in the first position, the stop protrusion cooperates with the first edge, and when the care component is in the second position, the stop protrusion cooperates with the second edge.
[0014] In some embodiments, the peripheral wall of the placement cavity further has an insertion hole, the insertion hole is connected between the installation port and the avoidance port, and the stop protrusion is suitable for being inserted into the avoidance port from the insertion hole.
[0015] In some examples, a size of the insertion hole in the circumferential direction of the placement cavity is smaller than a size of the avoidance opening in the circumferential direction of the placement cavity.
[0016] In some embodiments, the care component includes: a shell, the shell having a accommodating cavity and a through hole, the through hole being connected to the accommodating cavity; a care part, the care part being arranged in the accommodating cavity; wherein, when the care component is in the first position, the through hole is arranged opposite to the avoidance port and the avoidance port is connected to the through hole and the filter cavity, and when the care component is in the second position, the peripheral wall of the placement cavity covers the through hole.
[0017] In some examples, a drain port is provided at a position of the placement cavity opposite to the installation port, and a drain hole is provided at a position of the shell opposite to the bottom wall of the placement cavity, and the drain hole connects the drain port and the accommodating cavity.
[0018] According to some specific embodiments of the present invention, one of the care component and the cavity wall of the placement cavity is provided with a magnetic component, and the other is provided with a magnetic matching component that matches the magnetic component.
[0019] According to some specific embodiments of the present invention, a force-applying portion is provided at a position of the care component facing away from the bottom wall of the placement cavity.
[0020] According to some optional embodiments of the present invention, the filter assembly further includes: a first filter screen, which is arranged in the filter cavity, and in the gas flow direction, the inlet is located upstream of the first filter screen, and the first outlet is located downstream of the first filter screen.
[0021] According to some specific embodiments of the present invention, in the gas flow direction, the care component is located downstream of the first filter.
[0022] According to some optional embodiments of the present invention, the filter assembly further includes: a second filter screen, wherein the second filter screen is arranged between the first filter screen and the first outlet, or at the first outlet.
[0023] According to some embodiments of the present invention, the filter assembly further has a second outlet, and the second outlet is connected to the inside and outside of the filter cavity.
[0024] According to some optional embodiments of the present invention, the filter assembly includes: a third filter screen, and the third filter screen is arranged between the care assembly and the second outlet, or at the second outlet.
[0025] According to some embodiments of the present invention, the filter device further includes: a first decorative cover connected to one end of the filter assembly, and a gripping portion is provided on a side of the first decorative cover facing away from the filter assembly so that the filter device can be pushed and pulled.
[0026] According to some optional embodiments of the present invention, the care component is arranged close to the first decorative cover.
[0027] According to some optional embodiments of the present invention, the first decorative cover is provided with an exhaust port, which connects the second outlet and the outside of the filter device; the second outlet is provided on the wall of the filter assembly opposite to the first decorative cover, or the second outlet is provided on the top wall, side wall or bottom wall of the filter assembly close to the first decorative cover.
[0028] According to some specific embodiments of the present invention, the holding portion forms a cavity with an open opening, so as to be suitable for reaching into the cavity from the open opening for holding; wherein, the exhaust port is arranged on the cavity wall of the cavity, and the first decorative cover has a shielding portion, which is used to shield the exhaust port.
[0029] According to some optional embodiments of the present invention, the air outlet comprises a plurality of air outlets, and the plurality of air outlets are arranged at intervals on the first decorative cover.
[0030] According to an embodiment of the second aspect of the present invention, a clothing processing device is provided, which includes a device body; a filter device, which is push-pullable on the device body along the horizontal direction, and the filter device is the filter device according to the embodiment of the first aspect of the present invention.
[0031] According to the clothing processing device of the embodiment of the present invention, by utilizing the filtering device described in the embodiment of the first aspect of the present invention, and by modularly designing the filtering component and the care component, it is possible to filter dander, dust, etc. in the air and give the air care effect, so as to utilize the air to care for the clothes, while facilitating the reduction of the cost of the clothing processing device and facilitating the installation of the filtering component and the care component together into the clothing processing device.
[0032] According to some embodiments of the present invention, the device body includes: a clothing processing drum assembly, the clothing processing drum assembly having a clothing processing chamber, a first air inlet and a first air outlet connected to the clothing processing chamber; an air duct assembly, the air duct assembly defines an air outlet chamber, the air duct chamber has a second air inlet connected to the first air outlet, and a second air outlet connected to the first air inlet, and the filter device is at least partially arranged in the air duct chamber; wherein the inlet is connected to the second air inlet, the first outlet is connected to the air duct chamber, and the air duct chamber also has an air flow inlet, and the air flow inlet connects the inside and outside of the air duct chamber.
[0033] According to some optional embodiments of the present invention, the device body also includes a casing, the casing has a first opening, the first opening is connected to the air duct cavity, and the filter device can be pushed and pulled in the air duct cavity along the horizontal direction from the first opening to open and close the first opening.
[0034] According to some specific embodiments of the present invention, the filter assembly has a second outlet at one end along the horizontal direction, and when the filter device closes the first opening, the second outlet communicates with the filter cavity and the outside of the casing.
[0035] According to some optional embodiments of the present invention, the air duct assembly includes a heat exchange assembly, and the heat exchange assembly is disposed in the air duct cavity.
[0036] According to some specific embodiments of the present invention, the heat exchange assembly includes an evaporator and a condenser, and the evaporator and the condenser are arranged in the air duct cavity, wherein in the gas flow direction of the air duct cavity, the air flow inlet is located upstream of the condenser.
[0037] According to some specific embodiments of the present invention, the air duct assembly is arranged above the clothing processing drum assembly and the air duct cavity includes a first installation area and a second installation area arranged in a horizontal direction, the filtering device is arranged in the first installation area and the heat exchange assembly is arranged in the second installation area.
[0038] According to some embodiments of the present invention, the clothing processing device further includes: a fan, which is arranged between the second air outlet and the first air inlet, and is used to drive the airflow entering the air duct cavity to flow toward the first air inlet.
[0039] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned by practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments with reference to the accompanying drawings, in which:
[0041] Figure 1 1 is a partial structural diagram of a filtering device according to an embodiment of the present invention.
[0042] Figure 2 2 is a schematic structural diagram of a box body according to an embodiment of the present invention.
[0043] Figure 3 2 is a schematic structural diagram of a cover and a care component according to an embodiment of the present invention.
[0044] Figure 4 1 is a top view of a cover and a care component according to one embodiment of the present invention.
[0045] Figure 5 Schematic diagram of the structure of a care component according to one embodiment of the present invention.
[0046] Figure 6 4 is a top view of a cover and a care component according to another embodiment of the present invention.
[0047] Figure 7 It is a structural diagram of a care component according to another embodiment of the present invention.
[0048] Figure 8 It is a structural diagram of a care component according to another embodiment of the present invention.
[0049] Figure 9 2 is a schematic structural diagram of a cover and a care component according to an embodiment of the present invention.
[0050] Figure 10 yes Figure 9Cross-sectional view at DD in the middle.
[0051] Figure 11 3 is a schematic structural diagram of a first decorative cover in one direction according to an embodiment of the present invention.
[0052] Figure 12 FIG. 1 is a schematic structural diagram of the first decorative cover in another direction according to an embodiment of the present invention.
[0053] Figure 13 2 is a schematic structural diagram of a clothes treating apparatus according to an embodiment of the present invention.
[0054] Figure 14 3 is a structural diagram of a clothes processing apparatus according to an embodiment of the present invention, in which the clothes processing apparatus is not provided with a first decorative cover.
[0055] Figure 15 yes Figure 14 Enlarged view of point A in the middle.
[0056] Figure 16 FIG. 1 is a schematic diagram of an air flow path of a clothes treating apparatus according to an embodiment of the present invention.
[0057] Reference numerals: laundry treatment device 1000,
[0058] Housing 1, front panel 11, first opening 111, second decorative cover 13,
[0059] Clothes processing chamber 201, first air inlet 21, first air outlet 22,
[0060] The second installation area 3012, the second air inlet 31, the second air outlet 32, the air flow inlet 33,
[0061] Filter assembly 40, filter chamber 401, first chamber 4011, second chamber 4012, inlet 4111, second outlet 4121, first outlet 4131, box body 416, cover body 417, installation opening 418, placement chamber 419, avoidance opening 4191, first edge 4192, second edge 4193, first filter screen 42, first decorative cover 43, exhaust port 431, shielding portion 432, recessed cavity 433, jack 44,
[0062] Nursing component 5, shell 501, nursing piece 502, accommodating cavity 503, through hole 504, snap-fit protrusion 51, force-applying portion 52, stopping protrusion 53, magnetic piece 61, magnetic matching piece 62. DETAILED DESCRIPTION
[0063] The following describes embodiments of the present invention in detail, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and are not to be construed as limiting the present invention.
[0064] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.
[0065] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, "plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.
[0066] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Furthermore, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.
[0067] The following describes a filtering device according to an embodiment of the present invention with reference to the accompanying drawings.
[0068] like Figures 1-12 、 Figure 16 As shown, the filtering device according to an embodiment of the present invention includes a filtering component 40 and a care component 5 .
[0069] The filter assembly 40 defines a filter cavity 401 and has an inlet 4111 and a first outlet 4131 . The inlet 4111 and the first outlet 4131 are connected to the inside and outside of the filter cavity 401 , thereby enabling gas to flow in the filter cavity 401 .
[0070] When the gas flows through the filter cavity 401, the filter assembly 40 can filter the hair, dust, etc. in the gas. In this way, after the gas passes through the filter cavity 401, the hair and dust in the gas will remain in the filter cavity 401 to remove the hair and dust in the gas.
[0071] Among them, the care component 5 is arranged in the filter component 40 and is connected to the filter cavity 401. The care component 5 is used to give the air a care effect, so as to achieve a care effect on the clothes when the air flows to the clothes. By arranging the care component 5 in the filter component 40, the care component 5 and the filter component 40 are modularly arranged to facilitate the installation of the care component 5 and the filter component 40 together in the clothing processing device 1000. This design is convenient for reducing the number of parts in the clothing processing device 1000, simplifying the structure of the clothing processing device 1000, and reducing costs.
[0072] Therefore, the filtering device according to an embodiment of the present invention can filter dander, dust, etc. in the air and provide an air care effect by modularizing the filtering component 40 and the care component 5, so as to utilize air to care for clothes. At the same time, it is convenient to reduce the cost of the clothing processing device 1000 and facilitate the installation of the filtering component and the care component into the clothing processing device 1000 together.
[0073] The following describes a filtering device according to a specific embodiment of the present invention with reference to the accompanying drawings.
[0074] In some specific embodiments of the present invention, Figures 1-12 、 Figure 16 As shown, the filtering device includes a filtering component 40 and a care component 5 .
[0075] In some embodiments, the care component 5 is a fragrance component, which can emit fragrance into the filter cavity 401, so that the gas flowing through the filter cavity 401 has fragrance to remove odor in the gas. In this way, when the gas in the filter cavity 401 flows through the clothes, the fragrance can be left on the clothes to provide fragrance care for the clothes.
[0076] In other embodiments, the care component 5 is activated carbon or a cleaning component, which can release cleaning ions. When the air flows through the filter chamber 401, the care component 5 can absorb the odor in the air or use the cleaning ions to clean the air to remove the odor in the air, prevent the smell of the humid and hot gas itself from irritating the user or polluting the environment outside the filter chamber 401, and prevent the odor of the humid and hot gas itself from contaminating clothes.
[0077] Specifically, when the filtering device is applied to the clothing processing device 1000, the clothing processing device 1000 has a clothing processing chamber 201. The clothing processing device 1000 performs drying treatment on the clothing in the clothing processing chamber 201. When the gas circulates in the clothing processing chamber 201 and the filter chamber 401, the humid and hot gas in the clothing processing chamber 201 enters the filter chamber 401 from the inlet 4111. The humid and hot gas itself is prone to have an odor. The care component 5 is arranged in the filter chamber 401 to use the care component 5 to remove the odor in the gas. The cleaned gas in the filter chamber 401 can flow out of the filter chamber 401 from the first outlet 4131.
[0078] In some other embodiments, the care component 5 is a sterilization component, which can release sterilization factors. The air flowing through the filter cavity 401 can bring the sterilization factors into the clothing processing cavity 201, and can perform sterilization care on the clothing processing cavity 201 or the clothing.
[0079] In some embodiments of the present invention, Figure 1 、 Figure 4 As shown, the filter component 40 includes a shell, which defines a filter chamber 401, and the inlet 4111 and the first outlet 4131 are both provided on the shell, wherein the shell has an installation port 418 connected to the filter chamber 401, and the care component 5 is provided at the installation port 418 to connect the care component 5 with the filter chamber 401, so that the air flowing through the filter chamber 401 can be given a care effect to achieve care for the clothes.
[0080] In some optional embodiments of the present invention, the installation port 418 is located on the top wall, side wall or bottom wall of the shell, and the care component 5 can be arranged on the top wall, side wall or bottom wall of the shell, so that a part of the care component 5 extends into the filter cavity 401, thereby realizing communication between the care component 5 and the filter cavity 401, so that the air flowing through the filter cavity 401 can be given a care effect to achieve care for the clothes.
[0081] In some optional embodiments of the present invention, Figure 1 、 Figure 3 As shown, the shell includes a box body 416 and a cover body 417, the top of the box body 416 has an open opening, the cover body 417 is covered at the open opening of the box body 416, and a filter chamber 401 is defined between the cover body 417 and the box body 416, wherein the installation opening 418 is provided on the cover body 417. Since the care component 5 is provided at the installation opening 418, the care component 5 is provided on the cover body 417, which makes it convenient to keep the care component 5 away from the side wall and bottom wall of the box body 417, thereby increasing the contact area between the care component 5 and the air in the filter chamber 401, and avoiding that the side wall and bottom wall of the box body 417 hinder the care component 5 from processing the air.
[0082] In some embodiments, the care component 5 is detachably provided on the cover body 417 to facilitate the user to replace the care component 5. Specifically, the user can install or remove the care component 5 from the installation port 418, thereby simplifying the operating steps when replacing the care component 5.
[0083] In some embodiments, the cover 417 is disposed on the opening of the box body 416 and is integral with the box body 416. In other embodiments, the cover 417 is disposed on the opening of the box body 416 and is detachably connected to the box body 416. When the cover 417 is removed from the box body 416, the cover 417 opens the opening of the box body 416, making it convenient for the user to clean or perform other operations on the components in the filter cavity 401 through the opening of the box body 416. At the same time, when the cover 417 is removed, the care component 5 is removed together to prevent the care component 5 from interfering with the user's operation.
[0084] In some optional embodiments of the present invention, Figure 3 、 Figure 4 As shown, the shell further defines a placement cavity 419, which connects the installation port 418 and the filter cavity 401. The care component 5 is suitable for being detachably arranged in the placement cavity 419 from the installation port 418. When the care component 5 is located in the placement cavity 419, the care component 5 can process the gas in the filter cavity 401 so that the air flowing through the filter cavity 401 can be given a care effect to achieve care for the clothes.
[0085] Among them, the care component 5 is suitable for being detachably arranged in the placement cavity 419 from the installation port 418, which is convenient for cleaning or replacing the care component 5. In the embodiment where the care component 5 is a fragrance component, it is convenient for the user to replace the fragrance component with different scents according to needs.
[0086] In some optional embodiments of the present invention, Figure 3 、 Figure 4 As shown, one of the outer wall of the care component 5 and the inner side of the cavity wall of the placement cavity 419 has a snap-fitting portion, and the other of the outer wall of the care component 5 and the inner side of the cavity wall of the placement cavity 419 has a snap-fitting portion that cooperates with the snap-fitting portion. When the care component 5 is located in the placement cavity 419 and the snap-fitting portion is snap-fitted with the snap-fitting portion, the care component 5 can be fixed in the placement cavity 419 to prevent the care component 5 from falling off the outer shell when the filtering device is moved.
[0087] In some embodiments, the care component 5 can be rotatably disposed in the placement cavity 419. When the care component 5 is rotated and installed in place in the placement cavity 419, the snap-fit portion cooperates with the snap-fit portion to facilitate the installation or disassembly of the care component 5, thereby facilitating the replacement of the care component 5.
[0088] In some examples, when the care component 5 is located in the placement cavity 419, the care component 5 can be rotated in the forward direction to engage the snap-fit portion with the snap-fit portion, thereby securing the care component 5 in the placement cavity 419. To remove the care component 5 from the placement cavity 419, the care component 5 can be rotated in the reverse direction to disengage the snap-fit portion from the snap-fit portion, thereby allowing the care component 5 to be removed from the placement cavity 419. It should be noted that the terms forward and reverse are relative and do not refer to specific directions.
[0089] In some embodiments, the snap-fitting portion includes a snap-fitting protrusion 51, and the snap-fitting portion includes a snap-fitting groove. The snap-fitting groove cooperates with the snap-fitting protrusion 51 to facilitate the detachable cooperation between the care component 5 and the inner side of the wall of the placement cavity 419, thereby facilitating the replacement of the care component 5.
[0090] like Figure 5 As shown, in this embodiment, the outer wall of the care component 5 is provided with a snap-fitting protrusion 51, and the inner side of the cavity wall of the placement cavity 419 is provided with a snap-fitting groove and an avoidance groove. The avoidance groove is connected to the snap-fitting groove and the avoidance groove is located on one side of the width direction of the snap-fitting groove. When the care component 5 is placed in the placement cavity 419, the snap-fitting protrusion 51 is made to penetrate into the avoidance groove. After the care component 5 is installed in place in the placement cavity 419, the care component 5 is rotated in the forward direction. At this time, the snap-fitting protrusion 51 rotates and enters the snap-fitting groove. The snap-fitting protrusion 51 is snapped into engagement with the snap-fitting groove to fix the care component 5 in the placement cavity 419.
[0091] When the care component 5 needs to be removed from the placement cavity 419, the care component 5 is rotated in the reverse direction. At this time, the locking protrusion 51 rotates and moves out of the locking groove and into the avoidance groove. At this time, the care component 5 can be removed from the placement cavity 419, and the locking protrusion 51 is moved out of the avoidance groove.
[0092] In some examples, the snap-fit protrusion 51 is located at the lower part of the periphery of the care component 5, the avoidance groove extends in the up-down direction, the snap-fit groove extends in the forward direction, and one end of the snap-fit groove in the length direction is connected to the bottom of the avoidance groove. When the care component 5 is placed downward in the placement cavity 419, the snap-fit protrusion 51 moves downward in the avoidance groove. When the care component 5 is placed in place, when the care component 5 is rotated in the forward direction, the snap-fit protrusion 51 rotates into the snap-fit groove, and the top wall of the snap-fit groove is stopped and matched with the top of the snap-fit protrusion 51, and the bottom wall of the snap-fit groove is stopped and matched with the bottom of the snap-fit protrusion 51 to limit the movement of the snap-fit protrusion 51 in the up-down direction, thereby limiting the movement of the care component 5 in the up-down direction to fix the care component 5 in the placement cavity 419.
[0093] When the care component 5 needs to be removed from the placement cavity 419, the care component 5 is rotated in the reverse direction. At this time, the snap-fit protrusion 51 is disengaged from the snap-fit groove, and the snap-fit protrusion 51 enters the avoidance groove. The care component 5 is moved upward, and the care component 5 can be removed from the placement cavity 419.
[0094] In some optional embodiments of the present invention, Figure 6-Figure 9 As shown, the peripheral wall of the care component 5 has a stop protrusion 53, and the peripheral wall of the placement cavity 419 has an avoidance opening 4191 for avoiding the stop protrusion 53, and the avoidance opening 4191 has a first edge 4192 and a second edge 4193 arranged opposite to each other.
[0095] The care component 5 is rotatable between a first position and a second position. When the care component 5 is in the first position, the stop protrusion 53 cooperates with the first edge 4192. When the care component 5 is in the second position, the stop protrusion 53 cooperates with the second edge 4193 to limit the range of rotation of the stop protrusion 53 in the avoidance opening 4191, thereby realizing the rotation of the care component 5 between the first position and the second position.
[0096] In some specific embodiments of the present invention, Figure 6 As shown, the peripheral wall of the placement cavity 419 also has an insertion hole 44, which is connected between the installation port 418 and the avoidance port 4191, and the stop protrusion 53 is suitable for being inserted into the avoidance port 4191 from the insertion hole 44, so that the care component 5 can be placed in the placement cavity 419 from the installation port 418, so that the stop protrusion 53 is located in the avoidance port 4191 and can be rotated between the first position and the second position.
[0097] In some embodiments, as Figure 6 As shown, the circumferential dimension of the insertion hole 44 in the placement cavity 419 is smaller than the circumferential dimension of the avoidance opening 4191 in the placement cavity 419. Thus, the nursing component 5 can be placed in or removed from the placement cavity 419 only when the stop protrusion 53 is aligned with the insertion hole 44. When the stop protrusion 53 is misaligned with the insertion hole 44, the wall of the avoidance opening 4191 can limit the axial position of the stop protrusion 53 along the placement cavity 419, thereby preventing the nursing component 5 from falling out of the placement cavity 419.
[0098] like Figure 6As shown, in this embodiment, the installation port 418 is an upward opening of the placement cavity 419. When the care component 5 is placed in the placement cavity 419, the stop protrusion 53 and the socket 44 should be arranged relative to each other in the up and down directions, so that the stop protrusion 53 passes through the socket 44 in the up and down directions and enters the avoidance port 4191. At this time, the care component 5 can be rotated so that the stop protrusion 53 and the socket 44 are staggered in the up and down directions. At this time, the top wall of the avoidance port 4191 is engaged with the top of the stop protrusion 53 to limit the position of the stop protrusion 53 in the up and down directions, and then limit the position of the care component 5 in the up and down directions, so that the care component 5 will not fall off from the placement cavity 419.
[0099] In some specific embodiments of the present invention, Figure 9 、 Figure 10 As shown, the care component 5 includes a shell 501 and a care piece 502 . The shell 501 has a receiving cavity 503 and a through hole 504 . The through hole 504 is connected to the receiving cavity 503 . The care piece 502 is arranged in the receiving cavity 503 .
[0100] When the care component 5 is in the first position, the through hole 504 and the avoidance opening 4191 are positioned opposite each other, and the avoidance opening 4191 connects the through hole 504 and the filter chamber 401. At this point, the care component 502 is in communication with the filter chamber 401, and the care component 502 can process the air within the filter chamber 401, imparting a care effect to the air flowing through the filter chamber 401, thereby achieving clothing care. In an embodiment where the care component 502 is a fragrance component, the fragrance emitted by the care component 502 can enter the filter chamber 401 through the through hole 504 and the avoidance opening 4191, imparting the fragrance to the air passing through the filter chamber 401 and removing odors from the air. When the care component 5 is in the second position, the peripheral wall of the placement chamber 419 covers the through hole 504, thereby closing the through hole 504 with the peripheral wall of the placement chamber 419, thereby disconnecting the accommodating chamber 503 and the filter chamber 401. At this point, the care component 5 no longer processes the air within the filter chamber 401.
[0101] like Figure 9 As shown, in this embodiment, when the care component 5 is in the first position, the stopper protrusion 53 abuts the first edge 4192. At this time, the through hole 504 and the avoidance opening 4191 are arranged opposite each other, and the avoidance opening 4191 connects the through hole 504 and the filter cavity 401. When the care component 5 is in the second position, the stopper protrusion 53 abuts the second edge 4193. At this time, the through hole 504 and the avoidance opening 4191 are staggered, and the through hole 504 is closed by the peripheral wall of the placement cavity 419.
[0102] In some embodiments, a drain outlet is provided at a position opposite to the placement cavity 419 and the installation port 418, and a drain hole is provided at a position opposite to the bottom wall of the shell 501 and the placement cavity 419. The drain hole connects the drain outlet and the accommodating cavity 503 so that water in the accommodating cavity 503 can be discharged through the drain outlet and the drain hole, thereby preventing water from accumulating in the accommodating cavity 503 and the placement cavity 419.
[0103] Specifically, when the humid and hot air enters the accommodating cavity 503 through the through hole 504, the humid and hot air is cooled and liquefied, and water will accumulate in the accommodating cavity 503. If the water accumulates in the accommodating cavity 503 for a long time, it is easy to breed bacteria and pollute the environment in the accommodating cavity 503.
[0104] In some embodiments, the bottom wall of the shell 501 fits with the bottom wall of the placement cavity 419. When the care component 5 is rotated to a specified position, the drain port corresponds to the position of the drain hole. At this time, the drain hole connects the drain port and the accommodating cavity 503, and the water in the accommodating cavity 503 can be discharged through the drain port and the drain hole. When the care component 5 is rotated to other positions, the drain port and the drain hole are staggered. At this time, the bottom wall of the shell 501 covers the drain port, and the bottom wall of the placement cavity 419 covers the drain hole.
[0105] For example, when the care component 5 is rotated to the first position, the through hole 504 is arranged opposite the avoidance opening 4191, and the avoidance opening 4191 connects the through hole 504 and the filter chamber 401. At this time, the drain port corresponds to the position of the drain hole, and the drain hole connects the drain port and the accommodating chamber 503. The hot and humid air in the accommodating chamber 401 will enter the accommodating chamber 503 through the through hole 504, and liquefy into water when the accommodating chamber 503 is cooled. The water in the accommodating chamber 503 can be discharged from the drain port and the drain hole. When the care component 5 is rotated to the second position, the through hole 504 and the avoidance opening 4191 are staggered. At this time, the side wall of the placement chamber 419 closes the through hole 504, the bottom wall of the housing 501 covers the drain port, and the bottom wall of the placement chamber 419 also covers the drain port.
[0106] In other embodiments, there is a gap between the bottom wall of the shell 501 and the bottom wall of the placement cavity 419 so that the drainage hole is always connected to the drainage port and the accommodating cavity 503. Specifically, the water in the accommodating cavity 503 can enter the placement cavity 419 through the drainage hole, and the water in the placement cavity 419 is discharged from the drainage port.
[0107] In some embodiments, the drain outlet is located on the bottom wall of the placement cavity 419, and the avoidance port 4191 is located on the side wall of the placement cavity 419, wherein, in some examples, the avoidance port 4191 is connected to the drain outlet and forms an L-shaped hole; in other examples, the avoidance port 4191 is not connected to the drain outlet.
[0108] In some specific embodiments of the present invention, Figure 9 、 Figure 10As shown, one of the care component 5 and the cavity wall of the placement cavity 419 is provided with a magnetic component 61, and the other of the care component 5 and the cavity wall of the placement cavity 419 is provided with a magnetic matching component 62. The magnetic component 61 and the magnetic matching component 62 are magnetically matched, so that when the care component 5 is placed in the placement cavity 419 from the installation port 418, the position of the care component 5 can be fixed by the suction force between the magnetic component 61 and the magnetic matching component 62, thereby preventing the care component 5 from falling out of the placement cavity 419 when the filtering device moves.
[0109] In some embodiments, as Figure 10 As shown, a magnetic component 61 is provided at the bottom of the care component 5, and a magnetic fitting component 62 is provided on the lower cavity wall of the placement cavity 419, so that when the care component 5 is installed in the placement cavity 419, the position of the care component 5 is fixed by utilizing the suction force between the magnetic component 61 and the magnetic fitting component 62.
[0110] In some embodiments, at least one of the magnetic component 61 and the magnetic matching component 62 is a permanent magnet, and the other is a permanent magnet or a magnet or a metal sheet, so that there is attraction between the magnetic component 61 and the magnetic matching component 62.
[0111] In some specific embodiments of the present invention, Figure 5 As shown, a force-applying portion 52 is provided at a position of the care component 5 facing away from the bottom wall of the placement cavity 419. The user can operate the care component 5 through the force-applying portion 52, and use the force-applying portion 52 to rotate the care component 5, lift the care component 5 upward, or place the care component 5 downward to facilitate the user to install the care component 5 into the placement cavity 419 or remove the care component 5 from the placement cavity 419.
[0112] In some specific embodiments of the present invention, Figure 3 、 Figure 4 As shown, a plurality of mounting openings 418 are provided on the cover body 417 , and the filtering device includes a plurality of care components 5 , which are mounted one by one at the mounting openings 418 and at least partially extend into the filter cavity 401 .
[0113] In some optional embodiments of the present invention, the filter assembly 40 also includes a first filter screen 42, which is arranged in the filter cavity 401. In the gas flow direction, the inlet 4111 is located upstream of the first filter screen 42, and the first outlet 4131 is downstream of the first filter screen 42.
[0114] In an embodiment of the filtering device applied to the clothing processing device 1000, the gas in the clothing processing chamber 201 enters the filter chamber 401 from the inlet 4111, and the gas in the filter chamber 401 is filtered by the first filter 42 and then flows out of the filter chamber 401 through the first outlet 4131. The gas flowing out of the first outlet 4131 flows to the clothing processing chamber 201, and the inlet 4111 is set upstream of the first filter 42, and the first outlet 4131 is set downstream of the first filter 42 to filter the gas flowing out of the clothing processing chamber 201. The first filter 42 can retain hair, dust, etc. in the gas in the filter chamber 401, so as to prevent hair and dust from flowing into the clothing processing chamber 201 through the first outlet 4131 again.
[0115] In some specific embodiments of the present invention, Figure 1 As shown, in the direction of gas flow, the care component 5 is located downstream of the first filter 42. The first filter 42 can filter the hair, dust, etc. in the gas, so that the gas in the filter cavity 401 flows through the first filter 42 and then flows to the care component 5, so as to avoid hair and dust in the air from adhering to the care component 5, thereby increasing the service life of the care component 5.
[0116] In some embodiments, as Figure 1 As shown, the first filter screen 42 forms an arc structure and separates the filter cavity 401 into a first chamber 4011 and a second chamber 4012. The gas can fully contact the first filter screen 42. The first chamber 4011 can provide space for storing hair and dust. The second chamber 4012 provides space for the opening of the first outlet 4131, which facilitates the distribution of airflow.
[0117] In an embodiment of the filtering device applied to the clothing processing device 1000, part of the airflow in the filter chamber 401 can be discharged to the outside of the filtering device, and part of the airflow is returned to the clothing processing chamber 201 after being processed by the care component 5. Specifically, the care component 5 is arranged in the second chamber 4012, and the gas enters the first chamber 4011 from the inlet 4111, and enters the second chamber 4012 after being filtered and processed by the first filter 42. After being processed by the care component 5 in the second chamber 4012, it can flow from the first outlet 4131 to the clothing processing chamber 201.
[0118] In some optional embodiments of the present invention, the filter assembly 40 also includes a second filter, which is arranged between the first filter 42 and the first outlet 4131, or the second filter is arranged at the first outlet 4131 to filter the gas passing through the first filter 42 again, thereby fully filtering out the hair, dust, etc. in the gas and leaving the hair and dust in the filter chamber 401, so as to ensure the cleanliness of the gas flowing out of the first outlet 4131 and prevent the hair and dust in the gas from flowing from the first outlet 4131 to the clothing processing chamber 201.
[0119] In some embodiments of the present invention, the filter assembly further has a second outlet 4121, which connects the inside and outside of the filter chamber 401. The gas in the filter chamber 401 is discharged to the outside of the filter device through the second outlet 4121. For example, when the filter device is applied to a clothing processing device 1000, the clothing processing device 1000 has a clothing processing chamber 201. When the clothing processing device 1000 performs drying treatment on the clothes in the clothing processing chamber 201, the humid and hot gas in the clothing processing chamber 201 enters the filter chamber 401 from the inlet 4111, and is discharged to the outside of the filter device from the second outlet 4121 after filtering treatment in the filter chamber 401, so as to discharge the humid and hot gas out of the clothing processing chamber 201.
[0120] When the care component 5 is a fragrance component, the gas flowing through the filter cavity 401 will be stained with fragrance. When the gas in the filter cavity 401 is discharged through the second outlet 4121, the fragrant gas can be discharged to the outside of the filter device, avoiding the smell of the humid and hot gas itself from irritating the user or polluting the environment outside the filter device.
[0121] When the care component 5 is activated carbon or a cleaning component, the care component 5 can absorb odors in the air or use cleaning ions to clean the air to remove odors in the air. When the gas in the filter chamber 401 is discharged through the second outlet 4121, it can avoid the smell of the humid and hot gas itself from irritating the user or polluting the environment outside the filter device.
[0122] When the care component 5 is a sterilization component, the sterilization component can release sterilization factors to sterilize the air in the filter cavity 401 to prevent bacteria in the hot and humid gas from contaminating the environment outside the filter device.
[0123] In some optional embodiments of the present invention, the filter assembly 40 also includes a third filter, which is arranged between the care assembly and the second outlet 4121, or the third filter is arranged at the second outlet 4121 to filter the gas passing through the first filter 42 again, thereby fully filtering out the hair, dust, etc. in the gas and leaving the hair and dust in the filter cavity 401, so as to ensure the cleanliness of the gas flowing out of the second outlet 4121 and prevent the hair and dust in the gas from being discharged from the second outlet 4121 to the outside of the filter device.
[0124] In some embodiments of the present invention, Figure 11-13 As shown, the filter device also includes a first decorative cover 43, which is connected to one end of the filter assembly 40 to decorate the appearance of the filter assembly 40. A grip is provided on the side of the first decorative cover 43 facing away from the filter assembly 40 so that the filter device can be pushed and pulled.
[0125] Among them, the filter component 40 is connected to the first decorative cover 43 and can move synchronously to facilitate pushing and pulling the filter device through the gripping part. When the filter device is pulled out, it is convenient to operate the care component 5, such as installing the care component 5 into the filter cavity 401 or removing the care component 5 from the filter cavity 401.
[0126] In the embodiment where the filter device is used in the laundry processing apparatus 1000, the filter device is push-pull mounted on the housing 1 of the laundry processing apparatus 1000. When the filter device is not required to be operated, the filter device can be hidden in the housing 1, thereby reducing the space occupied by the laundry processing apparatus 1000. When the filter device needs to be operated, such as when the care component 5 needs to be installed or removed, the user can pull the filter device horizontally using the handle to expose the filter device to the outside of the housing 1, thereby facilitating the installation or removal of the care component 5.
[0127] In some embodiments, the first decorative cover 43 is located at the front end of the filter assembly 40 to decorate the side of the filter device facing the user, thereby improving the appearance of the clothing treatment device 1000.
[0128] In some embodiments, the care component 5 is arranged close to the first decorative cover 43, so that when the care component 5 needs to be replaced, the care component 5 can be leaked out by simply moving the filter device forward a small displacement, thereby facilitating the replacement of the care component 5.
[0129] In some optional embodiments of the present invention, Figure 11 、 Figure 12 As shown, the first decorative cover 43 is provided with an exhaust port 431, which connects the second outlet 4121 and the outside of the filter device. The second outlet 4121 is provided on the wall of the filter assembly 40 opposite to the first decorative cover 43, so that the exhaust port 431 is used to connect the second outlet 4121 and the outside of the filter device, so that the airflow discharged from the second outlet 4121 in the filter cavity 401 is discharged to the outside of the filter device through the exhaust port 431, thereby preventing the first decorative cover 43 from blocking the second outlet 4121.
[0130] Specifically, since the second outlet 4121 is arranged on the wall opposite to the filter assembly 40 and the first decorative cover 43, the first decorative cover 43 will block the second outlet 4121. Therefore, an exhaust port 431 is provided on the first decorative cover 43 to connect the outside of the filter device and the second outlet 4121 through the exhaust port 431.
[0131] It needs to be explained here that the outside of the filter device refers to the space outside the filter cavity 401. In the embodiment where the filter device is applied to the clothing processing device 1000 and the clothing processing device 1000 includes a casing 1, the outside of the filter device can be the space inside the casing 1 or the space outside the casing 1. No excessive restrictions are imposed here.
[0132] In other optional embodiments of the present invention, the second outlet 4121 is arranged on the top wall, side wall or bottom wall of the filter assembly 40 near the first decorative cover 43. At this time, the first decorative cover 43 will not block the second outlet 4121, and the airflow in the filter cavity 401 can be directly discharged to the outside of the filter device through the second outlet 4121.
[0133] Among them, in an embodiment in which the filter device is applied to a clothing processing device 1000, when the filter device is located on the casing 1 of the clothing processing device 1000, the specific setting position of the second outlet 4121 on the filter assembly 40 can be designed differently according to the position in the internal space of the casing 1. Since there is a gap between the top wall, side wall or bottom wall of the filter device and the casing 1, the airflow in the filter cavity 401 can be discharged from the gap between the filter device and the casing 1 through the second outlet 4121 to the outside of the filter device.
[0134] In some embodiments, as Figure 13 As shown, the first decorative cover 43 is arranged at the front end of the filter assembly 40, the second outlet 4121 is arranged at the front end of the filter assembly 40, the exhaust port 431 and the second outlet 4121 are arranged opposite each other in the front-to-back direction, and the gas in the filter cavity 401 flows out from the second outlet 4121 and flows to the exhaust port 431, and is discharged to the outside of the filter device from the exhaust port 431.
[0135] In some specific embodiments of the present invention, Figure 11 As shown, the gripping portion forms a cavity 433 with an open opening, so as to be suitable for reaching into the cavity 433 from the open opening for gripping. The user can apply force to the filter assembly 40 through the cavity 433. Specifically, the user's hand can reach into the cavity 433 from the open opening to push and pull the filter assembly 40, thereby improving the user's operating comfort and facilitating improving the user's usage experience.
[0136] The exhaust port 431 is provided on the wall of the concave cavity 433. The first decorative cover 43 has a shielding portion 432, which is used to shield the exhaust port 431. The shielding portion 432 can guide the exhaust airflow, changing its direction and preventing the hot and humid airflow from blowing directly towards the user. The shielding portion 432 can also shield the exhaust port 431, improving the appearance integrity and enhancing the aesthetics of the filter device. The shielding portion 432 can also prevent dust and other particles in the external environment of the filter device from entering the air duct cavity through the exhaust port 431, thereby increasing the service life of the internal structure of the filter device.
[0137] When the filter device is applied to the clothing processing device 1000, the gripping portion can be located on the front or side of the filter device, which can be specifically determined according to the placement position of the clothing processing device 1000 and the space around the clothing processing device 1000, so as to facilitate the user to apply force to the filter device through the cavity 433 to push and pull the filter device in the horizontal direction.
[0138] In some specific embodiments of the present invention, Figure 11 As shown, the exhaust port 431 includes multiple exhaust ports 431, which are arranged at intervals on the first decorative cover 43 to reduce the size of each exhaust port 431 while ensuring the exhaust flow rate. This helps reduce the probability of dust in the external environment of the filter device entering the interior of the filter device through the exhaust port 431, thereby improving the service life of the filter device.
[0139] The following describes a laundry treating apparatus 1000 according to an embodiment of the present invention.
[0140] like Figure 13-16 As shown, the clothing processing device 1000 according to an embodiment of the present invention includes a device body and a filter device according to the above-mentioned embodiment of the present invention. The filter device is arranged on the device body in a push-pull manner in the horizontal direction to facilitate the operation of the filter device on the device body. The filter device is movable in a push-pull manner in the horizontal direction, which reduces the difficulty of operation and facilitates the replacement or cleaning of the filter component 40 and the care component 5 of the filter device.
[0141] According to the clothing processing device 1000 of the embodiment of the present invention, by utilizing the filtering device according to the above-mentioned embodiment of the present invention and by modularly designing the filtering component 40 and the care component 5, it is possible to filter dander, dust, etc. in the air and impart an air care effect so as to utilize air to care for clothing. At the same time, it is convenient to reduce the cost of the clothing processing device 1000 and facilitate the installation of the filtering component and the care component together into the clothing processing device 1000.
[0142] In some embodiments of the present invention, Figure 16 As shown, the device body includes a clothes processing drum assembly and an air duct assembly.
[0143] The clothing processing drum assembly has a clothing processing chamber 201, a first air inlet 21 and a first air outlet 22. The first air inlet 21 and the first air outlet 22 are connected to the clothing processing chamber 201. The clothing processing device 1000 can use the air duct assembly, etc. to process the clothes placed in the clothing processing chamber 201, such as drying clothes.
[0144] The air duct assembly defines an air outlet duct cavity, and the air duct cavity has a second air inlet 31 connected to the first air outlet 22, and a second air outlet 32 connected to the first air inlet 21. That is to say, the airflow in the clothing processing cavity 201 flows out of the clothing processing cavity 201 through the first air outlet 22, and then enters the air duct cavity through the second air inlet 31. After being processed in the air duct cavity, it flows out of the air duct cavity through the second air outlet 32, and then enters the clothing processing cavity 201 through the first air inlet 21, thereby realizing the circulation of gas in the air duct cavity and the clothing processing cavity 201, so as to utilize the circulation of gas to process the clothes in the clothing processing cavity 201.
[0145] The filter device is at least partially arranged in the air duct cavity to realize filtering treatment of the airflow in the air duct cavity. Specifically, when the airflow in the air duct cavity passes through the filter cavity 401, the filter structure in the filter cavity 401 can filter the airflow during the passage of the airflow to block the hair, dust and other impurities carried in the airflow, and keep the hair, dust and other impurities in the airflow in the filter cavity 401, so as to prevent the hair, dust and other impurities from polluting the structure downstream of the filter component 40, thereby increasing the service life of other structures inside the air duct component of the clothing processing device 1000 and realizing hair removal treatment of the clothes.
[0146] The inlet 4111 of the filter assembly 40 is connected to the second air inlet 31, and the first outlet 4131 of the filter assembly 40 is connected to the air duct cavity. That is, the gas in the clothing processing chamber 201 enters the filter chamber 401 from the inlet 4111 through the first air outlet 22 and the second air inlet 31. After being filtered in the filter chamber 401, the gas is discharged from the filter chamber 401 through the first outlet 4131 and enters the downstream of the filter assembly 40 in the air duct cavity. After further processing downstream of the filter assembly 40, it flows out of the air duct cavity through the second air outlet 32. The structure downstream of the filter assembly 40 in the air duct cavity does not need to come into contact with the airflow containing hair debris, thereby improving the service life of the structure downstream of the filter assembly 40. The filtered airflow then enters the clothing processing chamber 201 through the first air inlet 21, realizing the circulation of the gas in the air duct cavity and the clothing processing chamber 201. The airflow can remove some hair debris in the process of passing through the clothes, thus achieving the hair removal treatment of the clothes.
[0147] Among them, the air duct cavity also has an air flow inlet 33, and the air flow inlet 33 connects the inside and outside of the air duct cavity to introduce cold and dry air into the air duct cavity. Since at least part of the filter component 40 is arranged in the air duct cavity, the filter cavity 401 is connected to the air duct cavity through the first outlet 4131, and the care component 5 can process the gas entering the air duct cavity from the air flow inlet 33.
[0148] When the care component 5 is a fragrance component, the fragrance can reach the air duct cavity through the first outlet 4131, and the gas entering the air duct cavity from the air inlet 33 can also be tainted with the fragrance, thereby increasing the fragrance of the air in the air duct cavity. When the care component 5 is a cleaning component, the cleaning component can emit cleaning ions, which can reach the air duct cavity through the first outlet 4131 to clean the gas entering the air duct cavity from the air inlet 33 and remove odors in the air duct cavity. When the care component 5 is a sterilization component, the sterilization component can release sterilization factors. The air flowing through the filter cavity 401 can carry the sterilization factors into the clothing treatment cavity 201, thereby sterilizing the clothing treatment cavity 201 or the clothing.
[0149] It should be explained here that the outside of the filter device refers to the space outside the filter cavity 401. In the embodiment where the clothing processing device 1000 includes a casing 1, the outside of the filter device can be the space inside the casing 1 or the space outside the casing 1. No excessive restrictions are imposed here.
[0150] The cold and dry air refers to the humid air in the clothing processing chamber 201. In the embodiment where the clothing processing device 1000 has a casing 1, the cold and dry air in the casing 1 can enter the air duct cavity from the air flow inlet 33, or the cold and dry air outside the casing 1 can enter the air duct cavity from the air flow inlet 33. No excessive restrictions are imposed here.
[0151] In some optional embodiments of the present invention, Figure 13 、 Figure 14 As shown, the device body also includes a housing 1, which defines a space for accommodating the internal structure of the clothing treatment device 1000. The clothing treatment drum assembly and the air duct assembly are both disposed within the housing 1, that is, within the space defined by the housing 1. The housing 1 has a first opening 111. The filter device is horizontally push-pullable from the first opening 111 within the air duct cavity to open and close the first opening 111, thereby positioning at least a portion of the filter device within the air duct cavity. The filter device filters the air within the air duct cavity, and the care component 5 within the filter cavity 401 processes the air within the filter cavity 401, so that the air flowing through the filter cavity 401 can be given a care effect, thereby achieving clothing care.
[0152] Among them, the filter device is arranged in the air duct cavity in a push-pull manner in the horizontal direction to facilitate the operation of the filter device. For example, the filter device can be pulled out of the casing 1 in the horizontal direction so that at least a part of the filter device leaks out of the casing 1, thereby facilitating the cleaning or replacement of the filter component 40 and the care component 5 of the filter device.
[0153] like Figure 13 As shown, in some embodiments, the front panel 11 further has a second opening, and the clothing processing device 1000 further includes: a detergent box, which is push-pullable in the housing 1 from the second opening, and is used to put detergent into the clothing processing chamber 201. The front end of the detergent box has a second decorative cover 13, and the second decorative cover 13 is used to open and close the second opening.
[0154] Among them, the detergent box is arranged below the filter device, the first decorative cover 43 has a cavity 433 with an opening facing downward, and the second decorative cover 13 has a groove with an opening facing upward. The cavity 433 is connected to the groove to leave space for the user's hands, thereby facilitating the improvement of the user's operating comfort.
[0155] Specifically, when the filter device needs to be pulled out, the user's hand can be inserted into the groove and cavity 433 and apply force to the first decorative cover 43 to pull out the filter assembly 40. When the washing box needs to be pulled out, the user's hand can be inserted into the groove and cavity 433 and apply force to the second decorative cover 13 to pull out the detergent box.
[0156] In some specific embodiments of the present invention, the filter assembly 40 has a second outlet 4121 at one end along the horizontal direction. When the filter device closes the first opening 111, the second outlet 4121 connects the filter chamber 401 and the outside of the casing 1, so that the air in the filter chamber 401 can be discharged through the second outlet 4121.
[0157] In some embodiments, the casing 1 includes a front panel 11, a first opening 111 is provided on the front panel 11, the filter device includes a first decorative cover 43, the first decorative cover 43 is connected to the front end of the filter assembly 40, the filter device can be pushed and pulled in the air duct cavity along the horizontal direction, the filter assembly 40 and the first decorative cover 43 can move synchronously so that the filter device can be pushed and pulled in the air duct cavity along the horizontal direction from the first opening 111, and the first decorative cover 43 is used to open and close the first opening 111, so that the integrity of the front panel 11 is better and the appearance of the clothing processing device 1000 is more beautiful.
[0158] In some embodiments, an exhaust port 431 is provided on the first decorative cover 43, and the exhaust port 431 connects the second outlet 4121 and the outside of the casing 1. The second outlet 4121 is provided on the wall of the filter assembly 40 opposite to the first decorative cover 43, so that the exhaust port 431 is used to connect the second outlet 4121 and the outside of the casing 1, so that the air flow discharged from the second outlet 4121 in the filter cavity 401 is discharged to the outside of the casing 1 through the exhaust port 431, thereby preventing the first decorative cover 43 from closing the second outlet 4121.
[0159] In embodiments where the care component 5 is a fragrance component, activated carbon, or a cleaning component, when the gas within the filter cavity 401 is discharged through the second outlet 4121, the care component 5 can remove odors from the air, preventing the odor of the hot and humid gas from irritating the user or polluting the environment outside the housing 1. In embodiments where the care component 5 is a sterilization component, the sterilization component can release a sterilization factor to sterilize the air, preventing bacteria in the hot and humid gas from contaminating the environment outside the housing 1. When the care component 5 is a sterilization component, the sterilization component can release a sterilization factor to sterilize the air within the filter cavity 401, preventing bacteria in the hot and humid gas from contaminating the environment outside the housing 1.
[0160] Specifically, in the air flow circulation inside the clothing processing device 1000, part of the gas can be discharged to the outside of the casing 1 from the second outlet 4121 of the filter component 40. In order to achieve a balance between the air intake flow and the air outlet flow of the clothing processing chamber 201, the cold and dry air entering the air duct cavity from the air inlet 33 and part of the circulating air flow returning to the air duct cavity from the clothing processing chamber 201 are discharged from the air duct cavity through the second air outlet 32 and enter the clothing processing chamber 201 through the first air inlet 21.
[0161] That is to say, when the gas circulates in the clothing processing chamber 201 and the air duct chamber, a part of the gas can be discharged to the outside of the casing 1 from the second outlet 4121. This part of the gas leaves the clothing processing chamber 201 and the air duct chamber, and the cold and dry air enters the air duct chamber from the air flow inlet 33, participating in the circulation of the gas in the clothing processing chamber 201 and the air duct chamber.
[0162] In some embodiments, reference Figure 16 The air inlet 33 is opened on the rear side of the casing 1, and the second outlet 4121 is arranged in front of the air inlet 33, which can prevent the high-temperature and humid air from re-entering the air duct cavity through the air inlet 33, ensuring the effect of introducing cold and dry air into the clothing processing device 1000.
[0163] In some optional embodiments of the present invention, the clothing processing device 1000 further includes a heat exchange component, which is disposed in the air duct cavity. The heat exchange component is used to heat and dehumidify the gas in the air duct cavity to form high-temperature dry gas. The high-temperature dry gas enters the clothing processing cavity 201 from the first air inlet 21 to dry the clothes in the clothing processing cavity 201.
[0164] In some specific embodiments of the present invention, the heat exchange component includes an evaporator and a condenser, which are arranged in the air duct cavity for heating and dehumidifying the gas in the air duct cavity, thereby forming high-temperature dry gas. The high-temperature dry gas enters the clothing processing cavity 201 from the first air inlet 21 to dry the clothes in the clothing processing cavity 201.
[0165] Among them, in the gas flow direction of the air duct cavity, the air flow inlet 33 is located upstream of the condenser. The gas entering the air duct cavity from the air flow inlet 33 is converted into high-temperature dry gas after being processed by the condenser. The high-temperature dry gas is discharged from the air duct cavity from the second air outlet 32 and enters the clothing processing cavity 201 from the first air inlet 21 to dry the clothes in the clothing processing cavity 201.
[0166] In the gas flow direction of the air duct cavity, the evaporator and the condenser are located downstream of the first outlet 4131, and the humid gas in the clothing processing cavity 201 is discharged from the clothing processing cavity 201 from the first air outlet 22, enters the air duct cavity from the second air inlet 31, and enters the filter cavity 401 from the inlet 4111. The humid gas in the filter cavity 401 flows from the first outlet 4131 to the heat exchange component, and the cold and dry air enters the air duct cavity from the air flow inlet 33 and merges with the humid gas. After being processed by the evaporator and the condenser, the gas becomes high-temperature dry gas. The high-temperature dry gas is discharged from the air duct cavity from the second air outlet 32, and enters the clothing processing cavity 201 from the first air inlet 21 to dry the clothes in the clothing processing cavity 201.
[0167] In some specific embodiments of the present invention, Figure 16 As shown, the air duct assembly is arranged above the clothing processing drum assembly and the air duct cavity includes a first installation area and a second installation area 3012 arranged in a horizontal direction. The filter device is arranged in the first installation area and the heat exchange assembly is arranged in the second installation area 3012. Thus, the air flow in the air duct assembly can flow smoothly in the horizontal direction so that the air flow in the second installation area 3012 is evenly distributed, which is beneficial to improving the heat exchange efficiency of the heat exchange assembly. The internal structure of the air duct assembly is more reasonably arranged, which is beneficial to reducing the volume of the air duct assembly and realizing the miniaturization and lightweight of the clothing processing device 1000.
[0168] In some embodiments of the present invention, the clothing processing device 1000 also includes a fan, which is arranged between the second air outlet 32 and the first air inlet 21, and is used to drive the air flow entering the air duct cavity to flow toward the first air inlet 21. The fan provides power for the air flow movement inside the clothing processing device 1000, ensuring that the air flow inlet 33 is a low-pressure environment and the second outlet 4121 is a high-pressure environment, so that the gas in the external environment of the casing 1 can enter the air duct cavity from the air flow inlet 33, and the gas in the filter cavity 401 can be discharged to the outside of the casing 1 from the second outlet 4121.
[0169] The clothing processing device 1000 according to an embodiment of the present invention is a clothing processing device 1000 capable of introducing cold and dry air. In one air flow cycle, the cold and dry air entering the air duct cavity from the air flow inlet 33 and part of the circulating air flow enter the clothing processing cavity 201 together, and part of the air flow in the air duct cavity is discharged from the second outlet 4121 to the outside of the casing 1 to discharge part of the circulating air flow, so that the air intake and exhaust volumes of the clothing processing cavity 201 are balanced and stable.
[0170] Among them, by arranging the second outlet 4121 on the filter assembly 40, the filter assembly 40 is generally arranged in the high-pressure area in the air duct cavity, ensuring that the second outlet 4121 opened on the filter assembly 40 and connected to the outside of the casing 1 can exhaust outward. In this way, there is no need to design an additional air outlet on the casing 1 and the air duct assembly to connect the filter cavity 401 with the outside of the casing 1, thereby reducing the production design cost.
[0171] The filter component 40 is generally arranged upstream of the heat exchange component of the clothing processing chamber 201, and the exhausted air flow does not need to be processed by the heat exchange component, thereby avoiding the waste of electric energy of the clothing processing device 1000 and improving the heat exchange efficiency at the heat exchange component. Furthermore, the air flow exhausted from the second outlet 4121 located at the position of the filter component 40 is filtered by the filter component 40, thereby avoiding the exhaust of lint affecting the user experience, and the setting position of the filter component 40 in the casing 1 is closer to the outside of the casing 1, so that the second outlet 4121 is closer to the outside of the casing 1, which facilitates the second outlet 4121 to exhaust to the outside of the casing 1.
[0172] A specific embodiment of the laundry treating apparatus 1000 will be described below with reference to the accompanying drawings.
[0173] Reference Figures 1-16 The laundry processing device 1000 of the embodiment of the present invention includes: a housing 1, a laundry processing drum assembly, an air duct assembly, a filter assembly 40, a care assembly 5, a heat exchange assembly and a fan.
[0174] The housing 1 defines a space for accommodating the internal structure of the laundry processing device 1000. The laundry processing drum assembly and the air duct assembly are both disposed within the housing 1, i.e., within the space defined by the housing 1. The laundry processing drum assembly has a laundry processing chamber 201, and is provided with a first air inlet 21 and a first air outlet 22 that communicate with the laundry processing chamber 201. The laundry processing device 1000 utilizes the air duct assembly and the like to process, for example, clothes drying, the laundry placed in the laundry processing chamber 201.
[0175] The air duct assembly is arranged above the clothing processing drum assembly (it should be understood here that the above-mentioned direction limitation is only for the convenience of describing the accompanying drawings and will not limit the actual setting position and direction of the clothing processing device 1000). The air duct assembly defines an air duct cavity, and the air duct cavity includes a first installation area and a second installation area 3012 arranged and connected in a horizontal direction. The filter assembly 40 is arranged in the first installation area, and the heat exchange assembly is arranged in the second installation area 3012. The filter assembly 40 is used to filter the airflow, and the heat exchange assembly is used to cool and dehumidify the airflow.
[0176] Among them, the air duct component is provided with a second air inlet 31, and the first air outlet 22 is connected to the first installation area through the second air inlet 31. The air duct component is also provided with a second air outlet 32, and the second installation area 3012 is connected to the first air inlet 21 through the second air outlet 32. That is to say, the air flow in the clothing processing chamber 201 flows out of the clothing processing chamber 201 through the first air outlet 22. The air flow can take away the dander, dust and water vapor on the clothes while flowing. The air flow enters the first installation area through the second air inlet 31. The filter component 40 in the first installation area can filter the dander and dust in the gas. Then the humid air flow enters the second installation area 3012. The heat exchange component in the second installation area 3012 can process the air flow to form a high-temperature dry air flow. The high-temperature dry air flow flows out of the air duct cavity through the second air outlet 32, and then enters the clothing processing chamber 201 through the first air inlet 21. When the gas circulates in the clothing processing chamber 201 and the air duct cavity, the clothes can be dried and the dander and dust on the clothes can be removed at the same time.
[0177] Specifically, the filter assembly 40 defines a filter chamber 401, which has an inlet 4111 and a first outlet 4131. The inlet 4111 is connected to the second air inlet 31 and the filter chamber 401, and the first outlet 4131 is connected to the second installation area 3012 and the filter chamber 401. That is to say, the gas in the clothing processing chamber 201 enters the filter chamber 401 through the second air inlet 31 and the inlet 4111, is filtered in the filter chamber 401, and then is discharged from the filter chamber 401 through the first outlet 4131, enters the second installation area 3012 and flows to the heat exchange assembly, and is dried by the heat exchange assembly and flows out of the second installation area 3012 from the second air outlet 32. The heat exchange assembly in the second installation area 3012 does not need to come into contact with the airflow containing dander, thereby preventing dander and dust from adhering to the heat exchange assembly, thereby improving the service life of the heat exchange assembly.
[0178] In addition, the second installation area 3012 also has an air flow inlet 33 connected to the outside of the casing 1. In the air flow circulation inside the clothing processing device 1000, the cold and dry air entering the second installation area 3012 from the air flow inlet 33 and part of the circulating air flow returning to the air duct cavity from the clothing processing chamber 201 are discharged from the air duct cavity through the second air outlet 32 and enter the clothing processing chamber 201 through the first air inlet 21.
[0179] A second outlet 4121 is provided on the filter assembly 40. The filter cavity 401 is in communication with the second outlet 4121, and the second outlet 4121 is in communication with the exterior of the housing 1. The airflow within the filter cavity 401 can flow to the exterior of the housing 1 from the second outlet 4121. Specifically, the filter assembly 40 is located in the high-pressure area within the air duct cavity. The air pressure within the filter cavity 401 is higher than the air pressure outside the housing 1. This ensures that the second outlet 4121 provided on the filter assembly 40, which is in communication with the exterior of the housing 1, can exhaust air to the exterior of the housing 1. Furthermore, the filter assembly 40 is located upstream of the heat exchange assembly, and the exhausted airflow does not need to be processed by the heat exchange assembly. This avoids wasting electricity in the clothing processing device 1000 and improves the heat exchange efficiency of the heat exchange assembly. Furthermore, the airflow exhausted from the second outlet 4121 provided on the filter assembly 40 can be the airflow filtered by the filter assembly 40, avoiding the exhaust of lint that affects the user experience.
[0180] Among them, a care component 5 is provided in the filter cavity 401, and the care component 5 processes the gas flowing through the filter cavity 401 so that the air flowing through the filter cavity 401 can be given a care effect to achieve care for clothes.
[0181] In the embodiment where the care component 5 is a fragrance component, the fragrance component can emit fragrance, so that the gas flowing through the filter chamber 401 is stained with fragrance. When the gas in the filter chamber 401 enters the second installation area 3012 from the first outlet 4131 and then enters the clothing processing chamber 201 through the second air outlet 32 and the first air inlet 21, the fragrant gas can increase the fragrance of the clothing processing chamber 201 and the clothes inside the clothing processing chamber 201; when the gas in the filter chamber 401 is discharged to the outside of the casing 1 from the second outlet 4121, the fragrant gas can lead the fragrance to the outside of the casing 1, thereby preventing the odorous gas from polluting the external environment of the casing 1.
[0182] The fan is arranged between the second air outlet 32 and the first air inlet 21, and is used to drive the air flow entering the air duct cavity to flow toward the first air inlet 21, providing power for the air flow movement inside the clothing processing device 1000, ensuring that the air flow inlet 33 is a low-pressure environment and the second outlet 4121 is a high-pressure environment.
[0183] The casing 1 includes a front panel 11, which is provided with a first opening 111. The filter assembly 40 can be pushed and pulled at the first opening 111. A first decorative cover 43 is provided at the front end of the filter assembly 40. The first decorative cover 43 is provided with an exhaust port 431 connected to the second outlet 4121. The gas in the filter cavity 401 is discharged from the second outlet 4121 through the exhaust port 431 to the outside of the casing 1. The first decorative cover 43 can be used to open and close the first opening 111 to improve the integrity of the front panel 11 and make the appearance of the clothing processing device 1000 more beautiful.
[0184] In some embodiments, the first decorative cover 43 defines a cavity 433 with an open opening, so that the user can reach into the cavity 433 from the open opening for gripping. The user can apply force to the filter assembly 40 through the cavity 433 to facilitate pushing and pulling the filter assembly 40 in a horizontal direction, thereby improving the user experience.
[0185] The exhaust port 431 is provided on the cavity wall of the concave cavity 433, and the first decorative cover 43 has a shielding portion 432, which is located in front of the exhaust port 431 to shield the exhaust port 431. On the one hand, the shielding portion 432 can guide the exhausted airflow to prevent the high-temperature and humid airflow from blowing directly to the user, thereby improving the user experience. On the other hand, the shielding portion 432 can shield the exhaust port 431, thereby improving the integrity of the appearance and improving the aesthetics of the appearance of the clothing processing device 1000. On the other hand, the shielding portion 432 can prevent dust in the external environment of the casing 1 from entering the air duct cavity through the exhaust port 431, thereby improving the service life of the internal structure of the clothing processing device 1000.
[0186] The exhaust ports 431 include multiple exhaust ports 431, which are arranged at intervals on the first decorative cover 43 to reduce the size of each exhaust port 431 while ensuring the exhaust flow rate, so as to reduce the probability of dust in the external environment of the casing 1 entering the interior of the casing 1 through the exhaust ports 431, thereby improving the service life of the clothing processing device 1000.
[0187] Specifically, first opening 111 is provided on the front panel 11 of housing 1, meaning that exhaust vent 431 is located on the front side of clothing processing device 1000. In the application environment of clothing processing device 1000, the front side is typically open. Therefore, the discharged hot, humid airflow does not wet the cavity or cabinet, improving the user experience. Airflow inlet 33 is provided on the rear side of housing 1. Exhaust vent 431 and airflow inlet 33 are arranged in tandem, preventing hot, humid airflow from re-entering the air duct cavity through airflow inlet 33, ensuring that clothing processing device 1000 effectively introduces cool, dry air.
[0188] Other structures and operations of the laundry treating apparatus 1000 according to the embodiment of the present invention are well known to those skilled in the art and will not be described in detail here.
[0189] In the description of this specification, the reference terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" mean that the specific features, structures, materials, or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, those skilled in the art can combine and combine different embodiments or examples described in this specification.
[0190] Although the embodiments of the present invention have been shown and described above, it will be understood that the above embodiments are illustrative and are not to be construed as limitations on the present invention. A person skilled in the art may change, modify, replace and modify the above embodiments within the scope of the present invention.
Claims
1. A filtering device, characterized in that: include: a filter assembly defining a filter cavity and having an inlet and a first outlet, wherein the inlet and the first outlet are both connected to the inside and outside of the filter cavity; A care component is provided on the filter component and is communicated with the filter cavity.
2. The filtering device according to claim 1, characterized in that The filter assembly comprises: a housing, wherein the housing defines the filter cavity, and the inlet and the first outlet are provided in the housing; Wherein, the shell has an installation port connected to the filter cavity, and the care component is arranged at the installation port.
3. The filtering device according to claim 2, characterized in that The installation opening is located on the top wall, side wall or bottom wall of the shell.
4. The filtering device according to claim 2, characterized in that The housing comprises: A box body, wherein the top of the box body has an open opening; A cover body is provided on the open opening of the box body, the filter cavity is defined between the cover body and the box body, and the installation opening is provided on the cover body.
5. The filtering device according to claim 2, characterized in that The housing further defines a placement cavity, which communicates with the installation port and the filter cavity. The care component is adapted to be detachably disposed in the placement cavity from the installation port.
6. The filtering device according to claim 5, characterized in that One of the outer wall of the nursing component and the inner side of the cavity wall of the placement cavity has a clamping portion, and the other has a clamping matching portion matched with the clamping portion.
7. The filtering device according to claim 5, characterized in that The peripheral wall of the nursing component has a stop convex portion, and the peripheral wall of the placement cavity has a avoidance opening for avoiding the stop convex portion, and the avoidance opening has a first edge and a second edge arranged opposite to each other; The care component is rotatable between a first position and a second position. When the care component is in the first position, the stop protrusion cooperates with the first edge. When the care component is in the second position, the stop protrusion cooperates with the second edge.
8. The filtering device according to claim 7, characterized in that The peripheral wall of the placement cavity is further provided with an insertion hole, the insertion hole is connected with the installation opening and the avoidance opening, and the stopping protrusion is suitable for being inserted into the avoidance opening from the insertion hole.
9. The filtering device according to claim 8, characterized in that The size of the insertion hole in the circumferential direction of the placement cavity is smaller than the size of the avoidance opening in the circumferential direction of the placement cavity.
10. The filtering device according to claim 7, characterized in that The care components include: a housing, the housing comprising a housing cavity and a through hole, the through hole being in communication with the housing cavity; a nursing piece, the nursing piece being arranged in the accommodating cavity; Wherein, when the care component is in the first position, the through hole is arranged opposite to the avoidance port and the avoidance port connects the through hole and the filter cavity; when the care component is in the second position, the peripheral wall of the placement cavity covers the through hole.
11. The filtering device according to claim 10, characterized in that A drainage port is provided at a position of the placement cavity opposite to the installation port, and a drainage hole is provided at a position of the shell opposite to the bottom wall of the placement cavity, wherein the drainage hole communicates with the drainage port and the accommodating cavity.
12. The filtering device according to claim 5, characterized in that One of the nursing component and the cavity wall of the placement cavity is provided with a magnetic component, and the other is provided with a magnetic matching component that matches the magnetic component.
13. The filtering device according to claim 5, characterized in that A force-applying portion is provided at a position of the nursing component facing away from the bottom wall of the placement cavity.
14. The filtering device according to claim 2, characterized in that The filter assembly further comprises: The first filter screen is arranged in the filter cavity. In the gas flow direction, the inlet is located upstream of the first filter screen, and the first outlet is located downstream of the first filter screen.
15. The filtering device according to claim 14, characterized in that In the gas flow direction, the care component is located downstream of the first filter.
16. The filtering device according to claim 14, characterized in that The filter assembly further comprises: A second filter screen is provided between the first filter screen and the first outlet, or at the first outlet.
17. The filtering device according to any one of claims 1 to 16, characterized in that: The filter assembly further has a second outlet, which communicates with the inside and outside of the filter cavity.
18. The filtering device according to claim 17, characterized in that The filter assembly comprises: A third filter is provided between the care component and the second outlet, or at the second outlet.
19. The filtering device according to claim 17, characterized in that The filtering device further comprises: A first decorative cover is connected to one end of the filter assembly, and a gripping portion is provided on a side of the first decorative cover facing away from the filter assembly so that the filter device can be pushed and pulled.
20. The filtering device according to claim 19, characterized in that The care component is arranged close to the first decorative cover.
21. The filtering device according to claim 19, characterized in that The first decorative cover is provided with an air outlet, the air outlet being connected to the second outlet and the outside of the filter device; The second outlet is provided on a wall of the filter assembly opposite to the first decorative cover, or the second outlet is provided on a top wall, a side wall or a bottom wall of the filter assembly close to the first decorative cover.
22. The filtering device according to claim 21, characterized in that The gripping portion forms a cavity with an open opening, so as to be suitable for extending into the cavity from the open opening for gripping; Wherein, the air outlet is arranged on the cavity wall of the concave cavity, and the first decorative cover has a shielding portion, and the shielding portion is used to shield the air outlet.
23. The filtering device according to claim 21, characterized in that The air outlet comprises a plurality of air outlets, and the plurality of air outlets are arranged at intervals on the first decorative cover.
24. A clothes processing device, characterized in that: include: device body; A filtering device, wherein the filtering device is arranged on the device body in a push-pull manner along the horizontal direction, and the filtering device is the filtering device according to any one of claims 1-23.
25. The clothes treating apparatus according to claim 24, characterized in that: The device body comprises: a laundry processing drum assembly, the laundry processing drum assembly comprising a laundry processing chamber, a first air inlet and a first air outlet communicating with the laundry processing chamber; an air duct assembly, the air duct assembly defining an air duct cavity, the air duct cavity having a second air inlet communicating with the first air outlet and a second air outlet communicating with the first air inlet, the filter device being at least partially disposed within the air duct cavity; The inlet is connected to the second air inlet, the first outlet is connected to the air duct cavity, and the air duct cavity further has an air flow inlet, which connects the inside and outside of the air duct cavity.
26. The clothes treating apparatus according to claim 25, characterized in that: The device body further includes a housing having a first opening, the first opening being communicated with the air duct cavity, and the filter device is push-pullable in the air duct cavity along the horizontal direction from the first opening to open and close the first opening.
27. The clothes treating apparatus according to claim 26, characterized in that: The filter assembly has a second outlet at one end along the horizontal direction. When the filter device closes the first opening, the second outlet communicates with the filter cavity and the outside of the casing.
28. The clothes treating apparatus according to claim 25, characterized in that: The air duct assembly includes a heat exchange assembly, and the heat exchange assembly is arranged in the air duct cavity.
29. The clothes treating apparatus according to claim 28, characterized in that: The heat exchange assembly includes an evaporator and a condenser, and the evaporator and the condenser are arranged in the air duct cavity, wherein in the gas flow direction of the air duct cavity, the air flow inlet is located upstream of the condenser.
30. The clothes treating apparatus according to claim 28, wherein: The air duct assembly is arranged above the clothes processing drum assembly and the air duct cavity includes a first installation area and a second installation area arranged in a horizontal direction. The filter device is arranged in the first installation area and the heat exchange assembly is arranged in the second installation area.
31. The clothes treating apparatus according to claim 26, wherein: Also includes: A fan is provided between the second air outlet and the first air inlet, and is used to drive the airflow entering the air duct cavity to flow toward the first air inlet.