WO2024251048A1 - 衣物处理装置 - Google Patents

衣物处理装置 Download PDF

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Publication number
WO2024251048A1
WO2024251048A1 PCT/CN2024/096742 CN2024096742W WO2024251048A1 WO 2024251048 A1 WO2024251048 A1 WO 2024251048A1 CN 2024096742 W CN2024096742 W CN 2024096742W WO 2024251048 A1 WO2024251048 A1 WO 2024251048A1
Authority
WO
WIPO (PCT)
Prior art keywords
air
air duct
air inlet
clothing processing
inlet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2024/096742
Other languages
English (en)
French (fr)
Inventor
马德荣
巫志远
牟秋启
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuxi Little Swan Electric Co Ltd
Original Assignee
Wuxi Little Swan Electric Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202321446056.0U external-priority patent/CN220520913U/zh
Priority claimed from CN202310679255.4A external-priority patent/CN119102084A/zh
Application filed by Wuxi Little Swan Electric Co Ltd filed Critical Wuxi Little Swan Electric Co Ltd
Publication of WO2024251048A1 publication Critical patent/WO2024251048A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/20General details of domestic laundry dryers 

Definitions

  • the present application relates to the technical field of clothing processing, and in particular to a clothing processing device.
  • the air inlet of the clothing processing chamber is only arranged on the bottom wall of the clothing processing barrel, the wind direction in the clothing care chamber is fixed, there are drying dead corners in the clothing processing process, the clothing processing effect of the clothing processing device is uneven, and the drying time is long, which affects the user experience and there is room for improvement.
  • the present application aims to solve at least one of the technical problems existing in the prior art.
  • one purpose of the present application is to provide a clothing processing device, which can avoid the occurrence of drying dead corners during the clothing processing process, ensure the uniformity of the clothing processing process, reduce the time of clothing processing, and improve the user experience.
  • the clothing processing device includes: a clothing processing barrel, the clothing processing barrel defines a clothing processing chamber and the bottom wall has a first air inlet area and a second air inlet area, the first air inlet area is provided with a first air inlet portion, and the second air inlet area is provided with a second air inlet portion connected to the clothing processing chamber; an air guide member, the air guide member is provided in the clothing processing barrel, and is used to connect the clothing processing chamber and the first air inlet portion; a ventilation component, the ventilation component can be selectively connected to at least one of the first air inlet portion and the second air inlet portion.
  • a ventilation component is provided, and an air guide is provided on the clothing processing barrel to connect the clothing processing chamber and the first air inlet.
  • an air guide is provided on the clothing processing barrel to connect the clothing processing chamber and the first air inlet.
  • the air guide member includes: a first air guide portion, which is arranged on the side wall of the clothing processing barrel and is suitable for defining a first ventilation section; a second air guide portion, which is connected to the first air guide portion and is arranged on the bottom wall of the clothing processing barrel, and the second air guide portion is suitable for defining a second ventilation section connected to the first air inlet portion and the first ventilation section.
  • the first ventilation section is defined between the first air guide portion and the side wall of the laundry processing tub
  • the second ventilation section is defined between the second air guide portion and the bottom wall of the laundry processing tub.
  • the portion where the first air inlet area and the second air guide portion are offset is a non-porous structure.
  • the first air inlet portion and the air guide member respectively include multiple first air inlets and the multiple air guide members have a one-to-one correspondence; and/or, the first air inlet area surrounds the outer side of the second air inlet area, and the first air inlet portion includes multiple first air inlets and the multiple first air inlets are arranged at intervals in the circumferential direction of the second air inlet area.
  • the ventilation component defines an air inlet chamber, a first air duct and a second air duct, a first air passage chamber communicating with the first air duct and the first air inlet portion, and a second air passage chamber communicating with the second air duct and the second air inlet portion are defined between the ventilation component and the bottom wall of the clothing processing barrel, and the air inlet chamber is communicated with the outlet of the clothing processing chamber, wherein the air inlet chamber can be selectively communicated with at least one of the first air duct and the second air duct, so that the air inlet chamber can be selectively connected with at least one of the first air inlet portion and the second air inlet portion Pass.
  • the ventilation assembly includes: an air duct shell; a wind shield, wherein the wind shield is disposed between the air duct shell and the bottom wall of the clothing processing barrel, the wind shield and the bottom wall of the clothing processing barrel define the first air passage cavity and the second air passage cavity, and the air inlet cavity, the first air duct and the second air duct are defined between the wind shield and the air duct shell; a switching device, wherein the switching device is disposed on the air duct shell or the wind shield, and is used to open and close the inlet of the second air duct to control the air flow interruption between the second air duct and the air inlet cavity.
  • the first air duct includes two air duct cavities, the second air duct and the two air duct cavities are located on the same side of the air inlet cavity and are arranged side by side, and the second air duct is located between the two air duct cavities.
  • the air duct shell includes: a cover shell; two partitions, the two partitions are arranged at intervals in the cover shell and each of the partitions is connected to the bottom wall of the cover shell, the second air duct is located between the two partitions, and the two air duct cavities are respectively located between the two partitions and the side walls of the cover shell.
  • the first end of each partition in the length direction is connected to the side wall of the cover shell, the inlet of the second air duct is located between the second ends of the two partitions in the length direction, and the inlet of the first air duct is located between the second end of the partition in the length direction and the side wall of the cover shell.
  • the switching device includes a rotatable wind shield for opening and closing the inlet of the second air duct.
  • the bottom wall of the air duct housing is provided with a fixed axis perpendicular thereto, and the wind shield is provided on the fixed axis and is configured to rotate around the fixed axis driven by airflow.
  • the wind shield member includes a plurality of wind shields, which are arranged at intervals in the circumferential direction of the fixed shaft, and at least two of the wind shields are disposed opposite to each other on both sides of the fixed shaft.
  • the projection shape of at least two of the wind shields on the plane where the inlet of the second air duct is located is the same as the inlet shape of the second air duct.
  • the wind deflector forms a spiral blade.
  • the air duct shell is provided with a rotating shaft parallel to its bottom wall, and the wind shielding member is provided on the rotating shaft and rotates with the rotating shaft.
  • the switching device further includes a drive motor, which is connected to the rotating shaft and is used to drive the rotating shaft to rotate.
  • a limiting member is provided on the bottom wall of the air duct housing for limiting the wind shielding member.
  • FIG. 1 is an exploded view of a laundry treatment device according to an embodiment of the present application
  • FIG2 is a cross-sectional view of the structure of a clothes treating device according to an embodiment of the present application.
  • FIG3 is a schematic structural diagram of a clothes treating device according to an embodiment of the present application.
  • FIG4 is a schematic structural diagram of a windshield of a clothes treating device according to an embodiment of the present application.
  • FIG5 is a schematic structural diagram of an air duct housing and a switching device of a clothes processing device according to an embodiment of the present application, wherein the wind shield is in a closed state;
  • FIG6 is a schematic structural diagram of an air duct housing and a switching device of a clothes processing device according to an embodiment of the present application, wherein the wind shield is in an open state;
  • FIG7 is a schematic structural diagram of an air duct housing and a switching device of a clothes processing device according to another embodiment of the present application.
  • FIG8 is a schematic structural diagram of the air duct housing and the switching device shown in FIG7 , with the wind shield in an open state;
  • FIG. 9 is a schematic structural diagram of the air duct housing and the switching device shown in FIG. 7 , with the wind shield being in a closed state.
  • Clothes processing device 1000 air duct shell 10, outer cover 1, inner cover 2, partition 21, first partition plate 211, second partition plate 212, reinforcing rib 213, first partition section 214, second partition section 215, reinforcing cavity 217, muffler hole 22, volute tongue 23, stopper 24, first air duct 021, air duct cavity 0211, second air duct 022, air inlet cavity 023, switching device 3, wind shield 31, wind shield sheet 311, fixed shaft 321, rotating shaft 322, driving motor 33, connecting shaft 331, wind shield plate 4, first air outlet area 41, first air outlet portion 041, first air outlet hole 411, second air outlet area 42, second air outlet portion 042, second air outlet hole 421, annular sealing structure 5, outer sealing ring 51, first air passage cavity 051, inner sealing ring 52, second air passage cavity 052, clothing processing barrel 6, clothing processing cavity 061, first air inlet area 062, first air inlet portion 0621, second air inlet area 063, second air inlet portion 0631, air guide member 7, ventilation cavity 071, first ventilation section 0711, second
  • the following describes a laundry treatment device 1000 according to an embodiment of the present application with reference to FIGS. 1 to 9 .
  • the laundry processing device 1000 includes a laundry processing tub 6 and an air guide 7 .
  • the clothing processing barrel 6 defines a clothing processing chamber 061 , and the bottom wall of the clothing processing barrel 6 has a first air inlet area 062 and a second air inlet area 063 .
  • the first air inlet area 062 is provided with a first air inlet portion 0621
  • the second air inlet area 063 is provided with a second air inlet portion 0631 .
  • the second air inlet portion 0631 is connected to the clothing processing chamber 061 .
  • the air guide member 7 is arranged in the clothing processing barrel 6, and is used to connect the clothing processing chamber 061 and the first air inlet 0621.
  • the airflow entering the clothing processing barrel 6 from the first air inlet 0621 can first pass through the air guide member 7 and then enter the clothing processing chamber 061.
  • the clothing processing chamber 061 may have at least two airflows simultaneously or separately, wherein part of the airflow directly enters the clothing processing chamber 061 through the second air inlet 0631 on the bottom wall of the clothing processing barrel 6, and the part of the airflow flows from the bottom wall of the clothing processing barrel 6 into the clothing processing chamber 061, and another part of the airflow enters the air guide 7 through the first air inlet 0621 on the bottom wall of the clothing processing barrel 6, and enters the clothing processing chamber 061 under the guidance of the air guide 7. Under the joint action of multiple airflows, the airflow in the clothing processing chamber 061 is made more uniform, avoiding the occurrence of drying dead corners in the clothing processing chamber 061, ensuring the uniformity of the clothing processing process, reducing the clothing processing time, and improving the user experience.
  • the laundry treating apparatus 1000 further includes a ventilation assembly, which can be selectively connected to at least one of the first air inlet 0621 and the second air inlet 0631 .
  • the laundry treating apparatus 1000 may have a first ventilation mode, a second ventilation mode, and a third ventilation mode.
  • the laundry treating apparatus 1000 may be switchable among the first ventilation mode, the second ventilation mode, and the third ventilation mode.
  • the ventilation component When the clothing processing device 1000 is in the first ventilation mode, the ventilation component is connected to the first air inlet 0621 and the second air inlet 0631, the air flow in the ventilation component can flow from the first air inlet 0621 into the air guide 7, and then flow into the clothing processing chamber 061 under the guidance of the air guide 7, and the air flow in the ventilation component can flow from the second air inlet 0631 into the clothing processing chamber 061, and so on.
  • the ventilation component When the clothing processing device 1000 is in the second ventilation mode, the ventilation component is connected to the first air inlet 0621, and the airflow in the ventilation component can flow from the first air inlet 0621 into the air guide 7, and then flow into the clothing processing chamber 061 under the guidance of the air guide 7, and so on.
  • the ventilation assembly is connected to the second air inlet 0631, and the airflow in the ventilation assembly can flow from the second air inlet 0631 into the clothes treating chamber 061, and so on.
  • the laundry processing device 1000 may also have two ventilation modes among the first ventilation mode, the second ventilation mode and the third ventilation mode.
  • the ventilation assembly By providing the ventilation assembly, the laundry processing device 1000 can be switched between the first ventilation mode and the second ventilation mode, or the laundry processing device 1000 can be switched between the first ventilation mode and the third ventilation mode; or the laundry processing device 1000 can be switched between the second ventilation mode and the third ventilation mode.
  • a ventilation component is set, and an air guide 7 is set on the clothing processing barrel 6 to connect the clothing processing chamber 061 and the first air inlet portion 0621.
  • a part of the airflow can flow to the designated area in the clothing processing chamber 061 under the guidance of the air guide 7, and/or a part of the airflow can enter the clothing processing chamber 061 from the second air inlet portion 0631 on the bottom wall of the clothing processing barrel 6, thereby forming a variety of ventilation modes. Users can select the ventilation mode according to their needs to meet different usage requirements, thereby improving the user experience.
  • the first air inlet area 062 surrounds the outer side of the second air inlet area 063 .
  • the air guide member 7 itself can define a ventilation cavity 071, and the ventilation cavity 071 communicates with the laundry processing cavity 061 and the first air inlet portion 0621.
  • the ventilation cavity 071 defined by the air guide member 7 itself has better sealing performance.
  • a ventilation cavity 071 is defined between the air guide 7 and the wall of the laundry processing barrel 6, and the ventilation cavity 071 communicates with the laundry processing chamber 061 and the first air inlet 0621.
  • Such a configuration can simplify the processing steps, so as to avoid the air guide 7 occupying too much space in the laundry processing chamber 061, reduce the production cost of the air guide 7, and realize the lightweight of the laundry processing device 1000.
  • the ventilation cavity 071 may include a first ventilation section 0711 and a second ventilation section 0712, and the first ventilation section 0711 and the second ventilation section 0712 are connected to each other.
  • the air guide part 7 includes a first air guide portion 73 and a second air guide portion 74, the second air guide portion 74 is connected to the first air guide portion 73, the first air guide portion 73 is arranged on the side wall of the clothing processing barrel 6, and a first ventilation section 0711 is defined between the first air guide portion 73 and the side wall of the clothing processing barrel 6, the second air guide portion 74 is arranged on the bottom wall of the clothing processing barrel 6, and a second ventilation section 0712 is defined between the second air guide portion 74 and the bottom wall of the clothing processing barrel 6, and the second ventilation section 0712 is connected to the first air inlet portion 0621 and the first ventilation section 0712.
  • the airflow passing through the first air inlet portion 0621 can first flow through the second ventilation section 0712 defined between the second air guide portion 74 and the bottom wall of the clothing processing barrel 6, then flow through the first ventilation section 0711 defined between the first air guide portion 73 and the side wall of the clothing processing barrel 6, and finally enter the clothing processing chamber 061.
  • the airflow at the first air inlet portion 0621 on the bottom wall of the clothing processing barrel 6 can be guided to the first air guide portion 73 on the side wall of the clothing processing barrel 6 by using the second air guide portion 74 of the air guide member 7, thereby forming a side air intake form from the clothing processing chamber 061, so that the airflow with higher temperature can fully contact the clothing near the air guide member 7, thereby improving the drying efficiency of the clothing.
  • the air guide 7 has a plurality of ventilation holes 72, and the ventilation holes 72 are connected with the first ventilation section 0711 and the second ventilation section 0712, so that the ventilation holes 72 are connected with the clothing processing chamber 061 and the first air inlet 0621.
  • the plurality of ventilation holes 72 are arranged on the first air guide 73 and/or the second air guide 74. When the plurality of ventilation holes 72 are arranged on the first air guide 73, the airflow passing through the first ventilation section 0711 can enter the clothing processing chamber 061 through the ventilation holes 72 arranged on the first air guide 73.
  • the airflow passing through the second ventilation section 0712 can enter the clothing processing chamber 061 through the ventilation holes 72 arranged on the second air guide 74.
  • the plurality of ventilation holes 72 can be arranged at intervals on the top wall of the air guide 7, or can be arranged on the top wall and side walls of the air guide 7.
  • the first air guide portion 73 is in the shape of an elongated strip to form lifting ribs of the clothing processing barrel 6, which can realize the function of the air guide member 7 to stir and lift the clothing in the clothing processing chamber 061, and distribute the airflow as much as possible in the entire clothing processing chamber 061, thereby avoiding airflow dead corners in the clothing processing chamber 061 and ensuring the clothing processing effect of the clothing processing device 1000.
  • one end of the first air guide 73 is connected to the second air guide 74, so that the airflow in the second ventilation section 0712 defined between the second air guide 74 and the bottom wall of the laundry processing tub 6 can enter the first ventilation section 0711 defined between the first air guide 73 and the side wall of the laundry processing tub 6.
  • one end of the first air guide 73 and the second air guide 74 can be connected in an arc transition to avoid sharp corners in the laundry processing cavity 061 and to avoid the sharp corners generated by the transition part from scratching the laundry.
  • the first air guide portion 73 extends along the axial direction of the clothing processing barrel 6 so that the first air guide portion 73 can be distributed on the side wall of the entire clothing processing barrel 6, ensuring that the air outlet of the ventilation holes 72 opened on the first air guide portion 73 can cover the axial direction of the clothing processing cavity 061, and enable the air guide member 7 of the clothing processing barrel 6 to better lift the clothing during rotation.
  • the staggered portion between the first air inlet area 062 and the second air guide portion 74 is a non-porous structure, so that the airflow passing through the first air inlet portion 0621 can only enter the clothing processing chamber 061 through the air guide member 7.
  • the structure of the clothes processing barrel 6 can be simplified and the processing difficulty can be reduced.
  • the first air inlet 0621 and the air guide 7 include multiple first air inlets 0621 and multiple air guides 7, respectively, and the positions of the multiple first air inlets 0621 correspond one to one with the multiple air guides 7. That is, the airflow entering the laundry processing barrel 6 through any first air inlet 0621 will flow along the side wall of the laundry processing barrel 6 under the guidance of the air guide 7 corresponding to the first air inlet 0621, and enter the laundry processing chamber 061 through the ventilation holes 72 provided on the air guide 7.
  • "multiple" means two or more.
  • the first air inlet area 062 surrounds the outer side of the second air inlet area 063, and the first air inlet portion 0621 includes a plurality of first air inlet portions 0621, which are arranged at intervals in the circumferential direction of the second air inlet area 063.
  • the first air inlet portion 0621 may be a first air inlet hole with a larger size, for example, each first air inlet hole may be an arc-shaped hole extending in the circumferential direction of the second air inlet area 063, or each first air inlet hole may be a radially elongated hole perpendicular to the bottom wall of the laundry treatment tub 6.
  • the multiple first air inlet portions 0621 can correspond one-to-one to the positions of multiple air guide members 7, thereby ensuring that the airflow passing through each first air inlet portion 0621 enters the clothing processing chamber 061 under the guidance of the corresponding air guide member 7.
  • the air guide members 7 include multiple air guide members 7, which are arranged at intervals in the circumferential direction of the clothing processing barrel 6.
  • the multiple air guide members 7 can be respectively arranged at side wall positions in different directions in the clothing processing barrel 6.
  • the air flow flows from different circumferential positions of the clothing processing barrel 6 to the clothing processing chamber 061, so that the air flow distribution in the clothing processing chamber 061 is more uniform, further avoiding the occurrence of drying dead corners in the clothing processing chamber 061, ensuring the uniformity of the clothing processing process, reducing the clothing processing time, and improving the user experience.
  • the ventilation component defines an air inlet chamber 023, a first air duct 021 and a second air duct 022, and a first air passage chamber 051 and a second air passage chamber 052 are defined between the ventilation component and the bottom wall of the clothing processing barrel 6.
  • the first air passage chamber 051 connects the first air duct 021 and the first air inlet portion 0621
  • the second air passage chamber 052 connects the second air duct 022 and the second air inlet portion 0631
  • the air inlet chamber 023 connects the outlet of the clothing processing chamber 061.
  • the air inlet cavity 023 may be selectively communicated with at least one of the first air duct 021 and the second air duct 022 , so that the air inlet cavity 023 may be selectively communicated with at least one of the first air inlet portion and the second air inlet portion.
  • the air inlet cavity 023 When the air inlet cavity 023 is connected with the first air duct 021, the air in the air inlet cavity 023 flows to the first air duct 021, and the air in the first air duct 021 flows into the air guide 7 from the first air inlet portion 0621, and flows into the clothing processing cavity 061 under the guidance of the air guide 7.
  • the air inlet cavity 023 When the air inlet cavity 023 is connected with the second air duct 022, the air in the air inlet cavity 023 flows to the second air duct 022, and the air in the second air duct 022 flows into the clothing processing cavity 061 from the second air inlet portion 0631.
  • the air inlet chamber 023 When the air inlet chamber 023 is connected with the first air duct 021 and the second air duct 022, the air in the air inlet chamber 023 flows to the first air duct 021 and the second air duct 022 respectively, the air in the first air duct 021 flows into the air guide member 7 from the first air inlet portion 0621, and flows into the clothing processing chamber 061 under the guidance of the air guide member 7, and the air in the second air duct 022 flows into the clothing processing chamber 061 from the second air inlet portion 0631.
  • the air inlet chamber 023 is always connected to the first air duct 021, and the air inlet chamber 023 and the second air duct 022 can be connected in an on-off manner, that is, the air inlet chamber 023 and the second air duct 022 can be switched between an on state and an off state, so that the clothing processing device 1000 has at least a first ventilation mode and a second ventilation mode.
  • the air inlet chamber 023 When the clothing processing device 1000 is in the first ventilation mode, the air inlet chamber 023 is connected with the first air duct 021 and the second air duct 022, the humid air in the clothing processing chamber 061 is discharged from the outlet and flows into the air inlet chamber 023, the air in the air inlet chamber 023 flows into the first air duct 021 and the second air duct 022 respectively, the air in the first air duct 021 flows into the air guide 7 from the first air inlet portion 0621, and flows into the clothing processing chamber 061 under the guidance of the air guide 7, the air in the second air duct 022 flows into the clothing processing chamber 061 from the second air inlet portion 0631, and so on.
  • the air inlet chamber 023 When the clothing processing device 1000 is in the second ventilation mode, the air inlet chamber 023 is connected to the first air duct 021, and the air inlet chamber 023 is disconnected from the second air duct 022.
  • the humid air in the clothing processing chamber 061 is discharged from the outlet and flows into the air inlet chamber 023.
  • the air in the air inlet chamber 023 flows through the first air duct 021 in turn, flows into the air guide 7 from the first air inlet portion 0621, and flows into the clothing processing chamber 061 under the guidance of the air guide 7, and so on.
  • the air inlet cavity 023 may be provided with a rotatable wind wheel 300.
  • the rotating The wind wheel 300 can drive air to flow to form an airflow.
  • the ventilation assembly includes an air duct shell 10 and a wind shield 4, the wind shield 4 is arranged between the air duct shell 10 and the bottom wall of the clothing processing barrel 6, the wind shield 4 and the bottom wall of the clothing processing barrel 6 define a first air passage cavity 051 and a second air passage cavity 052, the first air passage cavity 051 connects the first air duct 021 and the first air inlet portion 0621, the second air passage cavity 052 connects the second air duct 022 and the second air inlet portion 0631, and the air inlet cavity 023, the first air duct 021 and the second air duct 022 are defined between the wind shield 4 and the air duct shell 10.
  • the ventilation assembly also includes a switching device 3, which is arranged on the air duct shell 10 or the wind shield 4.
  • the switching device 3 is used to open and close the inlet of the second air duct 022, so as to control the interruption of air flow between the second air duct 022 and the air inlet cavity 023.
  • the clothing processing device 1000 can control the air flow rate or flow rate in the first air duct 021 and the second air duct 022 by controlling the switching device 3, and then the flow rate of the air flow flowing into the clothing processing chamber 061 through the second air inlet part 0631 or the ventilation hole 72 on the air guide 7, so as to better control the distribution of the air flow in the clothing processing chamber 061 and the direction of the air flow, so that the clothing processing device 1000 can have a variety of different ventilation modes and can switch between a variety of different ventilation modes, so that the clothing processing process is more uniform, the clothing processing time is reduced, and the user experience is improved.
  • annular sealing structure 5 is provided between the wind shield 4 and the bottom wall of the clothing processing barrel 6.
  • the annular sealing structure 5 includes an outer sealing ring 51 and an inner sealing ring 52.
  • a first air passage cavity 051 is defined between the outer sealing ring 51, the inner sealing ring 52, the wind shield 4 and the bottom wall of the clothing processing barrel 6.
  • a second air passage cavity 052 is defined between the inner sealing ring 52, the wind shield 4 and the bottom wall of the clothing processing barrel 6.
  • the first air duct 021 includes two air duct cavities 0211, the second air duct 022 and the two air duct cavities 0211 are located on the same side of the air inlet cavity 023, and the second air duct 022 and the two air duct cavities 0211 are arranged side by side, and the second air duct 022 is located between the two air duct cavities 0211.
  • three air ducts are defined between the air duct shell 10 and the wind shield 4, which are the air duct cavities 0211 located on both sides and the second air duct 022 located in the middle.
  • the two air duct cavities 0211 of the first air duct 021 correspond to the first air inlet area 062 of the bottom wall of the clothing processing barrel 6, and can guide the airflow to the two sides or even the surrounding side of the clothing processing chamber 061 respectively.
  • the second air duct 022 corresponds to the second air inlet area 063 of the bottom wall of the clothing processing barrel 6, and can guide the airflow to the middle part of the clothing processing chamber 061, ensuring uniform distribution of airflow in the clothing processing chamber 061.
  • the present application arranges the first air duct 021 to include two air duct cavities 0211 located on both sides of the second air duct 022. Since the two air duct cavities 0211 are independent of each other and are not connected at the downstream ends in the air flow direction, the air flow directions in each air duct cavity 0211 are consistent, thereby avoiding the airflow collision between the first air duct 021 and the second air duct 022, and avoiding the air volume loss caused by the airflow collision process.
  • the air duct housing 10 includes a cover shell and two partitions 21, the two partitions 21 are arranged at intervals in the cover shell, and each partition 21 is connected to the bottom wall of the cover shell, the second air duct 022 is located between the two partitions 21, and the two air duct cavities 0211 are respectively located between the two partitions 21 and the side walls of the cover shell.
  • the two partitions 21 divide the air duct defined by the cover into three cavities, namely the air duct cavity 0211 located on both sides and the air duct cavity 0211 located in the middle.
  • the two air duct cavities 0211 located on both sides together form a first air duct 021, and the air duct cavity 0211 located in the middle forms a second air duct 022.
  • the two partitions 21 can be used to partition the space in the cover shell, so as to at least define two air duct cavities 0211 of the first air duct 021 and the second air duct 022.
  • the switching of air flow interruption between the second air duct 022 and the air inlet cavity 023 can be realized, thereby meeting different ventilation requirements.
  • the separator 21 has a reinforcement portion.
  • the reinforcement portion can improve the structural strength of the separator 21, ensure that the separator 21 has sufficient strength to resist the pressure on the separator 21 during the flow of air, and ensure that the separator 21 has sufficient stability and reliability under any working conditions.
  • the reinforcement portion includes a plurality of reinforcement cavities 217, so as to utilize the reinforcement cavities 217 to improve the structural strength of the partition 21, ensure the reliability and stability of the partition 21, and the reinforcement cavities 217 can reduce the weight of the partition 21, and avoid the setting of the partition 21 affecting the lightweight of the clothing processing device 1000.
  • at least a part of the plurality of reinforcement cavities 217 is arranged in the length direction of the partition 21, so as to facilitate the processing and production of the partition 21. Production, improve the strength of the separator 21 in the force direction.
  • the partition 21 includes a first partition plate 211 and a second partition plate 212, each of which is connected to the bottom wall of the housing, and the bottom wall provides a supporting force in a first direction perpendicular to the bottom wall for the first partition plate 211 and the second partition plate 212.
  • the reinforcing portion includes a plurality of reinforcing ribs 213, which are arranged between the first partition plate 211 and the second partition plate 212 to prevent the first partition plate 211 and the second partition plate 212 from approaching each other under the action of an external force, and the reinforcing ribs 213 are used to enhance the strength of the first partition plate 211 and the second partition plate 212, so as to prevent the first partition plate 211 or the second partition plate 212 from cracking and deforming.
  • a plurality of reinforcing ribs 213 are arranged at intervals in the length direction of the first partition plate 211/the second partition plate 212, so that the strength at each position on the first partition plate 211 and the second partition plate 212 is uniform, thereby avoiding cracking.
  • the two ends of each reinforcing rib 213 are respectively connected to the first partition plate 211 and the second partition plate 212.
  • the reinforcing ribs 213 connect the first partition plate 211 and the second partition plate 212, and provide support for the first partition plate 211 and the second partition plate 212 in the plane direction perpendicular to the first direction, thereby ensuring the stability of the first partition plate 211 and the second partition plate 212.
  • the reinforcing ribs 213 are supported and arranged between the first partition plate 211 and the second partition plate 212, the strength of the first partition plate 211 and the second partition plate 212 can be enhanced, thereby avoiding cracking and deformation of the first partition plate 211 or the second partition plate 212.
  • each of the first partition plate 211 and the second partition plate 212 in the length direction is connected to the side wall of the cover shell and the second end is connected.
  • a relatively complete and closed cavity structure can be formed between the first partition plate 211, the second partition plate 212 and the side wall and the bottom wall of the cover shell, avoiding the formation of an open cavity on the partition 21, thereby ensuring the stability of the setting of the first partition plate 211 and the second partition plate 212.
  • first partition plate 211 and the second partition plate 212 are designed according to the shape of the cover shell.
  • Each of the first partition plate 211 and the second partition plate 212 includes a first partition segment 214 and a second partition segment 215.
  • the first partition segment 214 is parallel to the side wall of the cover shell near the inlet of the first air duct 021 and is spaced apart to avoid the setting of the partition 21 affecting the wind resistance of the first air duct 021 and the second air duct 022, thereby avoiding losses during airflow.
  • the first partition section 214 and the side wall of the housing close to the inlet of the first air duct 021 define two air inlet parts of the first air duct 021 , and the first partition sections 214 of the two partitions 21 define an air inlet part of the second air duct 022 .
  • each partition 21 in the length direction is connected to the side wall of the cover shell
  • the inlet of the second air duct 022 is located between the second ends of the two partitions 21 in the length direction
  • the inlet of the first air duct 021 is located between the second end of the partition 21 in the length direction and the side wall of the cover shell.
  • the space defined by the shell is divided into three independent and parallel cavities by two partitions 21.
  • the inlet of the first air duct 021 is located between the other end of the partition 21 in the length direction and the side wall of the shell, and the inlet of the second air duct 022 is located between the other ends of the two partitions 21 in the length direction.
  • the two partitions 21 can divide the airflow flowing from the air inlet chamber 023 to the clothing processing chamber 061 into three parts. After the airflow is diverted, it flows into the clothing processing chamber 061 under the guidance of the partitions 21.
  • the switching device 3 includes a rotatable windshield 31, which is used to open and close the inlet of the second air duct 022.
  • a rotatable windshield 4 By providing a rotatable windshield 4, it is not only easy to drive, but also takes up less space in the process of opening and closing the inlet of the second air duct 022.
  • the bottom wall of the air duct shell 10 is provided with a fixed shaft 321, the fixed shaft 321 is perpendicular to the bottom wall of the air duct shell 10, the wind shield 31 is provided on the fixed shaft 321, and the wind shield 31 is constructed to rotate around the fixed shaft 321 under the drive of airflow.
  • the wind shield 31 rotates driven by the airflow, thereby continuously changing the on-off state between the air inlet chamber 023 and the second air duct 022, and continuously changing the air flow speed and air volume flowing from the air inlet chamber 023 to the second air duct 022, thereby changing the air volume in different areas of the clothing processing chamber 061, meeting different drying needs, and improving the uniformity of clothing drying.
  • the wind shield member 31 includes a plurality of wind shields 311, which are arranged at intervals in the circumferential direction of the fixed shaft 321, and at least two wind shields 311 are relatively arranged on both sides of the fixed shaft 321, so that the wind shield member 31 can rotate at the entrance of the second air duct 022, and when the edges of the two relatively arranged wind shields 311 respectively stop at the two side walls of the entrance of the second air duct 022, the two relatively arranged wind shields 311 can close the entrance of the second air duct 022.
  • the fixed shaft 321 is arranged in the middle of the inlet of the second air duct 022, so that the wind shield 311 can stably rotate and open and close the inlet of the second air duct 022, ensuring that any wind shield 311 can smoothly pass between the fixed shaft 321 and the side wall of the second air duct 022.
  • the projection shape of at least two wind shields 311 on the plane where the entrance of the second air duct 022 is located is the same as the entrance shape of the second air duct 022 to ensure that the two wind shields 311 can completely block the entrance of the second air duct 022 .
  • the wind shield 311 forms a spiral blade.
  • the spiral blade can rotate under the drive of the airflow.
  • the wind shields 311 at different positions can guide the airflow to different positions in the air duct and continuously adjust the air volume change, thereby changing the air volume change in different areas of the clothing processing chamber 061, meeting different drying needs, and improving the uniformity of clothing drying.
  • the wind shield 31 includes two spiral blades arranged opposite to each other.
  • the two spiral blades of the wind shield 31 are suitable for rotating from a position completely shielding the inlet of the second air duct 022 to a position parallel to the flow direction of the airflow, during which the airflow flowing through the second air duct 022 gradually increases, and further, the wind shield 31 rotates from a position parallel to the flow direction of the airflow back to a position completely shielding the inlet of the second air duct 022, during which the airflow flowing through the second air duct 022 gradually decreases.
  • the switching device 3 closes the inlet of the second air duct 022, and when the wind shield 31 is located at a position parallel to the flow direction of the airflow, the switching device 3 opens the inlet of the second air duct 022.
  • the two spiral blades of the wind shield 31 are adapted to rotate from the position completely shielding the inlet of the second air duct 022 to the position parallel to the airflow direction.
  • the wind shield 31 is tilted toward the first air duct 021 in the airflow direction, and the inclination angle with the airflow direction gradually decreases.
  • the wind shield 31 will guide the airflow toward the first air duct 021 and gradually open the inlet of the second air duct 022. Further, the wind shield 31 rotates from the position parallel to the airflow direction back to the position completely shielding the inlet of the second air duct 022.
  • the wind shield 31 is tilted toward the second air duct 022 in the airflow direction, and the inclination angle with the airflow direction gradually increases. At this time, the wind shield 31 will guide the airflow toward the second air duct 022 and gradually close the inlet of the second air duct 022. Therefore, the air volume changes in each air duct can be adjusted by rotating the wind shield 31, thereby changing the air volume changes in different areas in the clothing processing chamber 061, meeting different drying needs, and improving the uniformity of clothing drying.
  • the air duct housing 10 is provided with a rotating shaft 322 , the rotating shaft 322 is parallel to the bottom wall of the air duct housing 10 , the wind shield 31 is provided on the rotating shaft 322 , and the wind shield 31 can rotate with the rotating shaft 322 .
  • the wind shield 31 can rotate to a position that completely blocks the inlet of the second air duct 022.
  • the switching device 3 closes the inlet of the second air duct 022, the airflow does not pass through the second air duct 022, and the second air inlet 0631 does not deliver airflow to the clothing processing chamber 061.
  • the wind shield 31 can rotate to a position parallel to the flow direction of the airflow.
  • the switching device 3 opens the inlet of the second air duct 022, part of the airflow passes through the second air duct 022, and the second air inlet 0631 delivers airflow to the clothing processing chamber 061.
  • the wind shield 31 can rotate to a position between a position parallel to the flow direction of the airflow and a position that completely blocks the inlet of the second air duct 022, partially opens the inlet of the second air duct 022, and controls the flow rate of the airflow entering the second air duct 022 by controlling the size of the inlet of the second air duct 022.
  • the switching device 3 also includes a driving motor 33, which is connected to the rotating shaft 322.
  • the driving motor 33 is used to drive the rotating shaft 322 to rotate.
  • the clothing processing device 1000 can control the rotation of the rotating shaft 322 by controlling the operation of the driving motor 33, and control the rotating shaft 322 to remain stationary at a preset position, thereby controlling the position of the wind shield 31 and controlling the flow of air in the ventilation assembly.
  • the cover shell includes an outer cover 1 and an inner cover 2, and the inner cover 2 is arranged in the outer cover 1, wherein the inner cover 2 includes a first inner cover 2 and a second inner cover 2, and the first inner cover 2 and the second inner cover 2 are arranged side by side in the outer cover 1, and a plurality of silencer holes 22 are provided on the bottom wall of the first inner cover 2 to reduce the noise generated during the flow of air.
  • the two partitions 21 are arranged in the first inner cover 2 at intervals, wherein one of the air duct cavities 0211 is located between one of the partitions 21 and the side wall of the first inner cover 2, wherein the other air duct cavity 0211 is located between the other partition 21 and the side wall of the first inner cover 2, the second air duct 022 is located between the two partitions 21, and the second inner cover 2 is suitable for defining an air inlet cavity 023
  • At least a part of the second inner cover 2 is provided with a volute tongue 23 on the side wall, and the drive motor 33 is located between the side wall of the outer cover 1 and the side wall of the first inner cover 2 close to the volute tongue 23.
  • the outer cover 1 can protect the first inner cover 2 and the second inner cover 2, and play the role of isolating noise, reducing vibration, etc., and can reserve installation space for the driving motor 33.
  • the bottom wall of the air duct housing 10 is provided with a stopper 24 for limiting the wind shield 31.
  • the stopper 24 By providing the stopper 24 on the bottom wall of the air duct housing 10, the rotation position of the wind shield 31 can be limited, so that the wind shield 31 can be kept at a position that opens or closes the inlet of the second air duct 022.
  • the wind shield 4 has a first air outlet area 41 and a second air outlet area 42, and the first air outlet area 41 surrounds the outer side of the second air outlet area 42, so that the first air duct 021 can correspond to the first air outlet area 41, and the second air outlet area 42 corresponds to the second air duct 022.
  • the first air outlet area 41 is provided with a first air outlet portion 041
  • the second air outlet area 42 is provided with a second air outlet portion 042.
  • the first air outlet portion 041 includes at least one first air outlet hole 411
  • the second air outlet portion 042 is located in the second air outlet area 42 and includes at least one second air outlet hole 421.
  • the part of the first air outlet area 41 that is opposite to the second air duct 022 is a non-porous structure to prevent the airflow in the second air duct 022 from entering the clothing processing chamber 061 through the first air outlet area 41 and the first air inlet area 062 of the clothing processing chamber 061, thereby affecting the clothing processing device 1000's control over the ventilation mode in the clothing processing chamber 061.
  • the second air inlet portion 0631 includes a plurality of second air inlet holes, which are arranged at circumferential and/or radial intervals in the second air inlet area 063 to ensure uniform air intake in the second air inlet portion 0631 and uniform clothing processing.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)

Abstract

一种衣物处理装置(1000)包括衣物处理桶(6)、导风件(7)和通风组件,衣物处理桶(6)限定出衣物处理腔(061)且底壁具有第一进风区(062)和第二进风区(063),第一进风区(062)设有第一进风部(0621),第二进风区(063)设有与衣物处理腔(061)连通的第二进风部(0631),导风件(7)设于衣物处理桶(6),用于连通衣物处理腔(061)和第一进风部(0621),通风组件可选择地与第一进风部(0621)和第二进风部(0631)中的至少一个连通。

Description

衣物处理装置
相关申请的交叉引用
本申请基于申请号为202310679255.4、202321446056.0,申请日为2023年06月07日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及衣物处理技术领域,尤其是涉及一种衣物处理装置。
背景技术
相关技术中的衣物处理腔的进风口仅设于衣物处理桶的底壁,衣物护理腔内的风向一定,衣物处理过程中存在烘干死角,衣物处理装置衣物处理的效果不均匀,烘干时间长,影响用户的使用体验,存在改进空间。
发明内容
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请的一个目的在于提出一种衣物处理装置,所述衣物处理装置能够避免衣物处理过程中出现烘干死角,确保衣物处理过程的均匀度,减少衣物处理的时间,提高了用户的使用体验。
根据本申请实施例的衣物处理装置,包括:衣物处理桶,所述衣物处理桶限定出衣物处理腔且底壁具有第一进风区和第二进风区,所述第一进风区设有第一进风部,所述第二进风区设有与所述衣物处理腔连通的第二进风部;导风件,所述导风件设于所述衣物处理桶,用于连通所述衣物处理腔和所述第一进风部;通风组件,所述通风组件可选择地与所述第一进风部和第二进风部中的至少一个连通。
根据本申请实施例的衣物处理装置,通过设置通风组件,并在衣物处理桶上设置导风件以连通衣物处理腔和第一进风部,使得衣物处理装置工作时,一部分气流可以在导风件的引导下流动至衣物处理腔内的指定区域,和/或,一部分气流可以从衣物处理桶的底壁上的第二进风部进入衣物处理腔,从而可以形成多种通风模式,用户可以根据需要选择通风模式,满足不同的使用需求,提高了用户的使用体验。
根据本申请的一些实施例,所述导风件包括:第一导风部,所述第一导风部设于所述衣物处理桶的侧壁且适于限定出第一通风段;第二导风部,所述第二导风部与所述第一导风部连接且设于所述衣物处理桶的底壁,所述第二导风部适于限定出与所述第一进风部、所述第一通风段连通的第二通风段。
在一些实施例中,所述第一导风部与所述衣物处理桶的侧壁之间限定出所述第一通风段,所述第二导风部与所述衣物处理桶的底壁之间限定出所述第二通风段。
在一些实施例中,所述第一进风区与所述第二导风部错开的部分为无孔结构。
根据本申请的一些实施例,所述第一进风部和所述导风件分别包括多个且多个所述第一进风部与多个所述导风件位置一一对应;和/或,所述第一进风区环绕在所述第二进风区的外侧,所述第一进风部包括多个且多个所述第一进风部在所述第二进风区的周向上间隔布置。
根据本申请的一些实施例,所述通风组件限定出进风腔、第一风道和第二风道,所述通风组件与所述衣物处理桶的底壁之间限定出与所述第一风道和所述第一进风部连通的第一过风腔、与所述第二风道和所述第二进风部连通的第二过风腔,所述进风腔与所述衣物处理腔的出口连通,其中,所述进风腔可选择地与所述第一风道和所述第二风道中的至少一个连通,以使所述进风腔可选择地与所述第一进风部和所述第二进风部中的至少一个连 通。
在一些实施例中,所述通风组件包括:风道壳;挡风板,所述挡风板设于所述风道壳与所述衣物处理桶的底壁之间,所述挡风板与所述衣物处理桶的底壁限定出所述第一过风腔和所述第二过风腔,所述挡风板与所述风道壳之间限定出所述进风腔、所述第一风道和所述第二风道;切换装置,所述切换装置设于所述风道壳或者所述挡风板,用于开闭所述第二风道的进口以控制所述第二风道与所述进风腔之间的气流通断。
在一些实施例中,所述第一风道包括两个风道腔,所述第二风道和两个所述风道腔位于所述进风腔的同一侧且并排布置,所述第二风道位于两个所述风道腔之间。
在一些示例中,所述风道壳包括:罩壳;两个分隔件,两个所述分隔件间隔布置在所述罩壳内且每个所述分隔件与所述罩壳的底壁连接,所述第二风道位于两个所述分隔件之间,两个所述风道腔分别位于两个所述分隔件与所述罩壳的侧壁之间。
在一些具体示例中,每个所述分隔件的长度方向的第一端与所述罩壳的侧壁连接,所述第二风道的进口位于两个所述分隔件的长度方向的第二端之间,所述第一风道的进口位于所述分隔件的长度方向的第二端与所述罩壳的侧壁之间。
在一些实施例中,所述切换装置包括可转动的挡风件,用于开闭所述第二风道的进口。
在一些示例中,所述风道壳的底壁设有与其垂直的固定轴,所述挡风件设于所述固定轴且被构造为在气流驱动下绕所述固定轴转动。
在一些示例中,所述挡风件包括多个挡风片,多个所述挡风片在所述固定轴的周向间隔布置,至少两个所述挡风片在所述固定轴的两侧相对设置。
在一些具体示例中,至少两个所述挡风片在所述第二风道的进口所在平面的投影形状与所述第二风道的进口形状相同。
在一些具体示例中,所述挡风片形成螺旋叶片。
在一些实施例中,所述风道壳设有与其底壁平行的转轴,所述挡风件设于所述转轴且随所述转轴转动。
在一些示例中,所述切换装置还包括驱动电机,所述驱动电机与所述转轴连接,用于驱动所述转轴转动。
在一些示例中,所述风道壳的底壁设有限位件,用于对所述挡风件进行限位。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本申请一个实施例的衣物处理装置的结构分解图;
图2是根据本申请一个实施例的衣物处理装置的结构剖视图;
图3是根据本申请一个实施例的衣物处理装置的结构示意图;
图4是根据本申请一个实施例的衣物处理装置的挡风板的结构示意图;
图5是根据本申请一个实施例的衣物处理装置的风道壳和切换装置的结构示意图,挡风件处于关闭状态;
图6是根据本申请一个实施例的衣物处理装置的风道壳和切换装置的结构示意图,挡风件处于打开状态;
图7是根据本申请另一个实施例的衣物处理装置的风道壳和切换装置的结构示意图;
图8是图7中所示的风道壳和切换装置的结构示意图,挡风件处于打开状态;
图9是图7中所示的风道壳和切换装置的结构示意图,挡风件处于关闭状态。
附图标记:
衣物处理装置1000,风道壳10,外罩1,内罩2,分隔件21,第一分隔板211,第
二分隔板212,加强筋213,第一分隔段214,第二分隔段215,加强腔217,消音孔22,蜗舌23,限位件24,第一风道021,风道腔0211,第二风道022,进风腔023,切换装置3,挡风件31,挡风片311,固定轴321,转轴322,驱动电机33,连接轴331,挡风板4,第一出风区41,第一出风部041,第一出风孔411,第二出风区42,第二出风部042,第二出风孔421,环状密封结构5,外密封圈51,第一过风腔051,内密封圈52,第二过风腔052,衣物处理桶6,衣物处理腔061,第一进风区062,第一进风部0621,第二进风区063,第二进风部0631,导风件7,通风腔071,第一通风段0711,第二通风段0712,通风孔72,第一导风部73,第二导风部74,风轮300。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
下面参考图1-图9描述根据本申请实施例的衣物处理装置1000。
如图1-图3所示,根据本申请实施例的衣物处理装置1000包括衣物处理桶6和导风件7。
衣物处理桶6限定出衣物处理腔061,衣物处理桶6的底壁具有第一进风区062和第二进风区063,第一进风区062设有第一进风部0621,第二进风区063设有第二进风部0631,第二进风部0631与衣物处理腔061连通。
导风件7设于衣物处理桶6内,导风件7用于连通衣物处理腔061和第一进风部0621,从第一进风部0621进入衣物处理桶6内的气流,可以先穿过导风件7再进入衣物处理腔061。
衣物处理腔061内可以同时或者分别具有至少两种气流,其中,部分气流通过衣物处理桶6的底壁上的第二进风部0631直接进入衣物处理腔061,该部分气流由衣物处理桶6的底壁向衣物处理腔061内流动,另外一部分气流通过衣物处理桶6的底壁的第一进风部0621进入导风件7内,在导风件7的导向下进入衣物处理腔061。在多种气流的共同作用下,使得衣物处理腔061内的气流更加均匀,避免衣物处理腔061内出现烘干死角,确保衣物处理过程的均匀度,减少衣物处理的时间,提高了用户的使用体验。
衣物处理装置1000还包括通风组件,通风组件可选择地与第一进风部0621和第二进风部0631中的至少一个连通。
具体地,衣物处理装置1000可以具有第一通风模式、第二通风模式和第三通风模式。通过设置通风组件,可以使衣物处理装置1000在第一通风模式、第二通风模式和第三通风模式之间可切换。
当衣物处理装置1000处于第一通风模式,通风组件与第一进风部0621、第二进风部0631连通,通风组件内的气流可以从第一进风部0621流入导风件7内,在导风件7的引导下流入衣物处理腔061,通风组件内的气流可以从第二进风部0631流入衣物处理腔061,如此往复。
当衣物处理装置1000处于第二通风模式,通风组件与第一进风部0621连通,通风组件内的气流可以从第一进风部0621流入导风件7内,在导风件7的引导下流入衣物处理腔061,如此往复。
当衣物处理装置1000处于第三通风模式,通风组件与第二进风部0631连通,通风组件内的气流可以从第二进风部0631流入衣物处理腔061,如此往复。
当然,衣物处理装置1000也可以具有以上第一通风模式、第二通风模式和第三通风模式中的两种通风模式。通过设置通风组件,可以使衣物处理装置1000在第一通风模式和第二通风模式之间可切换,或者,使衣物处理装置1000在第一通风模式和第三通风模式之间可切换;或者,使衣物处理装置1000在第二通风模式和第三通风模式之间可切换。
根据本申请实施例的衣物处理装置1000,通过设置通风组件,并在衣物处理桶6上设置导风件7以连通衣物处理腔061和第一进风部0621,使得衣物处理装置1000工作时,一部分气流可以在导风件7的引导下流动至衣物处理腔061内的指定区域,和/或,一部分气流可以从衣物处理桶6的底壁上的第二进风部0631进入衣物处理腔061,从而可以形成多种通风模式,用户可以根据需要选择通风模式,满足不同的使用需求,提高了用户的使用体验。
在一些实施例中,第一进风区062环绕在第二进风区063的外侧。
在一些实施例中,导风件7自身可以限定出通风腔071,通风腔071连通衣物处理腔061和第一进风部0621。通过导风件7自身限定出的通风腔071密封性更好。
在一些实施例中,导风件7与衣物处理桶6的桶壁之间限定出通风腔071,通风腔071连通衣物处理腔061和第一进风部0621。如此设置,可以简化加工工序,以避免导风件7占用衣物处理腔061内过多的空间,降低导风件7的生产成本,实现衣物处理装置1000的轻量化。
其中,通风腔071可以包括第一通风段0711和第二通风段0712,第一通风段0711和第二通风段0712相互连通。
如图2和图3所示,在一些实施例中,导风件7包括第一导风部73和第二导风部74,第二导风部74与第一导风部73连接,第一导风部73设于衣物处理桶6的侧壁,第一导风部73与衣物处理桶6的侧壁之间限定出第一通风段0711,第二导风部74设于衣物处理桶6的底壁,第二导风部74与衣物处理桶6的底壁之间限定出第二通风段0712,第二通风段0712与第一进风部0621、第一通风段0712连通。
具体地,通过第一进风部0621的气流,可以先流经第二导风部74与衣物处理桶6的底壁之间限定出的第二通风段0712,再流经第一导风部73与衣物处理桶6的侧壁之间限定出的第一通风段0711,最后进入衣物处理腔061内。
由此,通过将导风件7设置成上述结构,利用导风件7的第二导风部74可以将衣物处理桶6的底壁上的第一进风部0621处的气流引导至衣物处理桶6的侧壁上的第一导风部73内,从而可以形成从衣物处理腔061的侧向进风的形式,使温度较高的气流可以与导风件7附近的衣物充分接触,提升衣物的干衣效率。
其中,导风件7具有多个通风孔72,通风孔72与第一通风段0711、第二通风段0712连通,从而使通风孔72连通衣物处理腔061和第一进风部0621。多个通风孔72设于第一导风部73和/或第二导风部74,当多个通风孔72设在第一导风部73上时,经过第一通风段0711的气流可以通过设于第一导风部73的通风孔72进入衣物处理腔061内,当多个通风孔72设在第二导风部74上时,经过第二通风段0712的气流可以通过设于第二导风部74的通风孔72进入衣物处理腔061内。多个通风孔72可以间隔布置在导风件7的顶壁,也可以布置在导风件7的顶壁和侧壁。
参照图2,第一导风部73为长条状以形成衣物处理桶6的提升筋,可以实现导风件7对衣物处理腔061内的衣物搅拌和提升的功能,并使气流尽可能地分布在整个衣物处理腔061内,避免衣物处理腔061内出现气流死角,确保衣物处理装置1000的衣物处理效果。
具体地,第一导风部73的一端与第二导风部74连接,以使第二导风部74与衣物处理桶6的底壁之间限定的第二通风段0712内的气流能够进入到第一导风部73与衣物处理桶6的侧壁限定出的第一通风段0711内。其中,第一导风部73的一端与第二导风部74可以圆弧过渡连接,避免衣物处理腔061内出现锐利尖角,避免过渡部分产生的尖角划破衣物。
参照图2,第一导风部73沿衣物处理桶6的轴向延伸,以使第一导风部73能够分布于整个衣物处理桶6的侧壁上,确保第一导风部73上开设的通风孔72的出风能够覆盖衣物处理腔061的轴向,并使衣物处理桶6在旋转过程中导风件7能够更好地提拉衣物。
如图3所示,在一些实施例中,第一进风区062与第二导风部74错开的部分为无孔结构,从而使通过第一进风部0621的气流只可以通过导风件7进入衣物处理腔061,如此设 置,可以简化衣物处理桶6的结构,降低加工难度。
如图2和图3所示,第一进风部0621和导风件7分别包括多个,多个第一进风部0621与多个导风件7位置一一对应。也就是说,通过任意一个第一进风部0621处进入衣物处理桶6内的气流,会在与该第一进风部0621对应的导风件7的导向下沿衣物处理桶6的侧壁流动,并通过该导风件7上开设的通风孔72进入衣物处理腔061。在本申请的描述中,“多个”的含义是两个或两个以上。
在一些实施例中,第一进风区062环绕在第二进风区063的外侧,第一进风部0621包括多个,多个第一进风部0621在第二进风区063的周向上间隔布置。其中,第一进风部0621可以为尺寸较大的第一进风孔,例如,每个第一进风孔可以为沿第二进风区063的周向延伸的弧形孔,或者,每个第一进风孔可以为垂直于衣物处理桶6的底壁的径向的长形孔。
由此,通过将多个第一进风部0621在第二进风区063的周向上间隔布置,使多个第一进风部0621可以与多个导风件7位置一一对应,这样能够保证从每个第一进风部0621通过的气流在对应的导风件7的引导作用下进入衣物处理腔061。
在一些实施例中,导风件7包括多个,多个导风件7在衣物处理桶6的周向间隔布置,多个导风件7可以分别设于衣物处理桶6内不同方向的侧壁位置处,气流在多个导风件7的导向下分别从衣物处理桶6的周向上不同的位置向衣物处理腔061内流动,使得衣物处理腔061内气流分布更均匀,进一步避免了衣物处理腔061内出现烘干死角,确保衣物处理过程的均匀度,减少衣物处理的时间,提高了用户的使用体验。
根据本申请的一些实施例,通风组件限定出进风腔023、第一风道021和第二风道022,通风组件与衣物处理桶6的底壁之间限定出第一过风腔051和第二过风腔052,第一过风腔051连通第一风道021和第一进风部0621,第二过风腔052连通第二风道022和第二进风部0631,进风腔023与衣物处理腔061的出口连通。
其中,进风腔023可选择地与第一风道021和第二风道022中的至少一个连通,以使进风腔023可选择地与第一进风部和第二进风部中的至少一个连通。
当进风腔023与第一风道021连通时,进风腔023内的空气流向第一风道021,第一风道021内的空气从第一进风部0621流入导风件7内,在导风件7的引导下流入衣物处理腔061。当进风腔023与第二风道022连通时,进风腔023内的空气流向第二风道022,第二风道022内的空气从第二进风部0631流入衣物处理腔061。当进风腔023与第一风道021、第二风道022连通时,进风腔023内的空气分别流向第一风道021和第二风道022,第一风道021内的空气从第一进风部0621流入导风件7内,在导风件7的引导下流入衣物处理腔061,第二风道022内的空气从第二进风部0631流入衣物处理腔061。
由此,通过将通风组件设置成上述结构,可以实现多种通风模式的切换,用户可以根据需要选择通风模式,满足不同的使用需求,提高了用户的使用体验。
在一些实施例中,进风腔023与第一风道021始终连通,进风腔023与第二风道022可通断地连通,也就是说,进风腔023与第二风道022可以在导通状态和断开状态之间切换,从而使衣物处理装置1000至少具有第一通风模式和第二通风模式。
当衣物处理装置1000处于第一通风模式,进风腔023与第一风道021、第二风道022连通,衣物处理腔061内的潮湿空气从出口排出,流向进风腔023内,进风腔023内的空气分别流向第一风道021和第二风道022,第一风道021内的空气从第一进风部0621流入导风件7内,在导风件7的引导下流入衣物处理腔061,第二风道022内的空气从第二进风部0631流入衣物处理腔061,如此往复。
当衣物处理装置1000处于第二通风模式,进风腔023与第一风道021连通,进风腔023与第二风道022断开,衣物处理腔061内的潮湿空气从出口排出,流向进风腔023内,进风腔023内的空气依次流经第一风道021,从第一进风部0621流入导风件7内,在导风件7的引导下流入衣物处理腔061,如此往复。
其中,进风腔023内可以设置可转动的风轮300。衣物处理装置1000工作时,转动 的风轮300可以驱动空气流动以形成气流。
如图1-图4所示,根据本申请的一些实施例,通风组件包括风道壳10和挡风板4,挡风板4设于风道壳10与衣物处理桶6的底壁之间,挡风板4与衣物处理桶6的底壁限定出第一过风腔051和第二过风腔052,第一过风腔051连通第一风道021和第一进风部0621,第二过风腔052连通第二风道022和第二进风部0631,挡风板4与风道壳10之间限定出进风腔023、第一风道021和第二风道022。
通风组件还包括切换装置3,切换装置3设于风道壳10或者挡风板4,切换装置3用于开闭第二风道022的进口,从而可以控制第二风道022与进风腔023之间的气流通断。
具体地,衣物处理装置1000通过控制切换装置3,即可控制第一风道021与第二风道022内的气流流量或流速,进而通过第二进风部0631或导风件7上的通风孔72处流入衣物处理腔061内的气流的流速,更好地控制衣物处理腔061内气流的分布以及气流的方向,使得衣物处理装置1000能够具有多种不同的通风方式且能够在多种不同的通风方式之间转换,使得衣物处理过程更均匀,减少衣物处理的时间,提高了用户的使用体验。
其中,如图1和图2所示,挡风板4与衣物处理桶6的底壁之间设有环状的密封结构,环状密封结构5包括外密封圈51和内密封圈52,外密封圈51、内密封圈52、挡风板4与衣物处理桶6的底壁之间限定出第一过风腔051,内密封圈52、挡风板4与衣物处理桶6的底壁之间限定出第二过风腔052。
如图5-图9所示,在一些实施例中,第一风道021包括两个风道腔0211,第二风道022和两个风道腔0211位于进风腔023的同一侧,并且第二风道022和两个风道腔0211并排布置,第二风道022位于两个风道腔0211之间。
也就是说,风道壳10与挡风板4之间限定出三个风道,分别是位于两侧的风道腔0211,以及位于中间的第二风道022,第一风道021的两个风道腔0211与衣物处理桶6的底壁的第一进风区062位置对应,能够分别将气流导向衣物处理腔061内的两侧,甚至是周侧,第二风道022与衣物处理桶6的底壁的第二进风区063位置对应,能够将气流导向衣物处理腔061内的中部,确保衣物处理腔061内气流的分布均匀。
与相关技术的衣物处理装置的内外环形风道结构相比,本申请通过将第一风道021设置成包括位于第二风道022两侧的两个风道腔0211,由于两个风道腔0211相互独立,在气流流动方向上的下游端不连通,各自风道腔0211内气流流动方向一致,避免了第一风道021与第二风道022两条风道内的气流对冲,避免了在气流对冲过程中造成的风量损失。
在一些示例中,风道壳10包括罩壳和两个分隔件21,两个分隔件21间隔布置在罩壳内,并且每个分隔件21与罩壳的底壁连接,第二风道022位于两个分隔件21之间,两个风道腔0211分别位于两个分隔件21与罩壳的侧壁之间。
也就是说,两个分隔件21将罩壳限定出的风道分隔为三个腔体,分别是位于两侧的风道腔0211,以及位于中间的风道腔0211,位于两侧的两个风道腔0211共同形成为第一风道021,位于中间的风道腔0211形成为第二风道022。
由此,通过在罩壳内设置两个分隔件21,可以利用两个分隔件21对罩壳内的空间进行分区,从而可以至少限定出第一风道021的两个风道腔0211、和第二风道022,配合切换装置3进行使用,可以实现第二风道022与进风腔023之间气流通断的切换,从而满足不同的通风需求。
在一些示例中,分隔件21具有加强部。加强部能够提高分隔件21的结构强度,确保分隔件21具有足够的强度去抵抗气流流动过程中对分隔件21造成的压力,确保在任意工况下分隔件21都具有足够的稳定性与可靠性。
如图6和图7所示,在一些具体示例中,加强部包括多个加强腔217,以利用加强腔217提高分隔件21的结构强度,确保分隔件21的可靠性与稳定性,并且,加强腔217能够降低分隔件21的重量,避免分隔件21的设置影响衣物处理装置1000的轻量化。其中,多个加强腔217中的至少一部分在分隔件21的长度方向上排布,以便于分隔件21的加工生 产,提高分隔件21在受力方向上的强度。
如图6和图7所示,在一些具体示例中,分隔件21包括第一分隔板211和第二分隔板212,第一分隔板211和第二分隔板212中的每一个均与罩壳的底壁连接,底壁为第一分隔板211与第二分隔板212提供了垂直于底壁的第一方向上的支撑力。进一步,加强部包括多个加强筋213,多个加强筋213设于第一分隔板211和第二分隔板212之间,避免第一分隔板211与第二分隔板212在外力作用下相互靠近,并利用加强筋213增强第一分隔板211与第二分隔板212的强度,避免第一分隔板211或第二分隔板212开裂变形。
其中,多个加强筋213在第一分隔板211/第二分隔板212的长度方向间隔布置,以使第一分隔板211与第二分隔板212上各个位置处的强度均匀,避免开裂。每个加强筋213的两端分别与第一分隔板211、第二分隔板212连接,加强筋213连接第一分隔板211与第二分隔板212,在与第一方向垂直的平面方向上为第一分隔板211与第二分隔板212提供支撑,确保了第一分隔板211与第二分隔板212设置的稳定性。并且,由于加强筋213支撑设置在第一分隔板211与第二分隔板212之间,能够增强第一分隔板211与第二分隔板212的强度,避免第一分隔板211或第二分隔板212开裂变形。
如图5-图9所示,第一分隔板211和第二分隔板212中的每一个的长度方向的第一端与罩壳的侧壁连接且第二端相连,由此,第一分隔板211、第二分隔板212与罩壳的侧壁和底壁之间能够形成一个相对完整且封闭的腔体结构,避免在分隔件21上形成开放空腔,确保了第一分隔板211与第二分隔板212设置的稳定性。
具体地,第一分隔板211与第二分隔板212的形状根据罩壳的形状进行设计,第一分隔板211和第二分隔板212中的每一个包括第一分隔段214和第二分隔段215,第一分隔段214与罩壳靠近第一风道021的进口的侧壁平行且间隔设置,以避免分隔件21的设置影响第一风道021与第二风道022的风阻,避免气流流动过程中的损耗。
其中,第一分隔段214与罩壳靠近第一风道021的进口的侧壁之间限定出两个第一风道021的进风部分,两个分隔件21的第一分隔段214之间限定出第二风道022的进风部分。
在一些具体示例中,每个分隔件21的长度方向的第一端与罩壳的侧壁连接,第二风道022的进口位于两个分隔件21的长度方向的第二端之间,第一风道021的进口位于分隔件21的长度方向的第二端与罩壳的侧壁之间。
由此,罩壳限定的空间被两个分隔件21分为三个独立且并列设置的腔体,第一风道021的进口位于分隔件21的长度方向的另一端与罩壳的侧壁之间,第二风道022的进口位于两个分隔件21的长度方向的另一端之间,两个分隔件21能够将由进风腔023向衣物处理腔061内流动的气流分为三份,气流被分流后分别在分隔件21的导向下流向衣物处理腔061内。
在一些实施例中,切换装置3包括可转动的挡风件31,挡风件31用于开闭第二风道022的进口。通过设置可转动的挡风板4,不仅驱动方便,而且在开闭第二风道022的进口的过程中,占用空间小。
如图5和图6所示,在一些可选的示例中,风道壳10的底壁设有固定轴321,固定轴321与风道壳10的底壁垂直,挡风件31设于固定轴321,并且挡风件31被构造为在气流驱动下绕固定轴321转动。
也就是说,衣物处理装置1000在工作过程中,挡风件31在气流驱动下转动,从而可以不断地改变进风腔023与第二风道022之间的通断情况,以及,不断地改变进风腔023向第二风道022流动的气流速度和风量,从而改变衣物处理腔061内不同区域的风量,满足不同的干衣需求,提升衣物烘干的均匀度。
在一些示例中,挡风件31包括多个挡风片311,多个挡风片311在固定轴321的周向间隔布置,至少两个挡风片311在固定轴321的两侧相对设置,以使挡风件31在第二风道022的进口处可转动,并且在两个相对设置的挡风片311的边沿分别止抵第二风道022的进口处的两侧壁面时,相对设置的两个挡风片311能够关闭第二风道022的进口。
其中,固定轴321设于第二风道022的进口的中部,以使挡风片311能够稳定的转动并开闭第二风道022的进口,确保任意一片挡风片311都能够顺利的通过固定轴321与第二风道022的侧壁之间。
在一些具体示例中,至少两个挡风片311在第二风道022的进口所在平面的投影形状与第二风道022的进口形状相同,以确保两个挡风片311能够完全封堵第二风道022的进口。
在一些具体示例中,挡风片311形成螺旋叶片。螺旋叶片能够在气流的驱动下转动,在转动过程中,不同位置处的挡风片311能够将气流导向风道内的不同位置,并不断的调节风量变化,进而改变衣物处理腔061内不同区域的风量变化,满足不同的干衣需求,提升衣物烘干的均匀度。
如图5和图6所示,在本实施例中,挡风件31包括两个相对设置的螺旋叶片。挡风件31在气流驱动下绕固定轴321转动半周的过程中,挡风件31的两个螺旋叶片适于由完全遮蔽第二风道022的进口的位置转动到与气流流动方向平行位置,在此过程中,流经第二风道022的气流逐步增大,进一步,挡风件31由与气流流动方向平行位置转动回完全遮蔽第二风道022的进口的位置,在此过程中,流经第二风道022的气流逐步减少。在挡风件31的两个螺旋叶片位于完全遮蔽第二风道022的进口的位置时,切换装置3关闭第二风道022的进口,在挡风件31位于与气流流动方向平行位置时,切换装置3打开第二风道022的进口。
挡风件31在气流驱动下绕固定轴321转动一周的过程中,挡风件31的两个螺旋叶片适于由完全遮蔽第二风道022的进口的位置转动到与气流流动方向平行位置,过程中挡风件31在气流流动方向上向第一风道021方向倾斜,且与气流流动方向之间的倾角逐渐减小,此时,挡风件31会将气流向第一风道021的方向导向,且逐渐打开第二风道022的进口。进一步,挡风件31由与气流流动方向平行位置转动回完全遮蔽第二风道022的进口的位置,过程中挡风件31在气流方向上向第二风道022方向倾斜,且与气流流动方向之间的倾角逐渐增大,此时,挡风件31会将气流向第二风道022的方向导向,且逐渐关闭第二风道022的进口。因此,通过挡风件31的转动能够调节各风道的风量变化,进而改变衣物处理腔061内不同区域的风量变化,满足不同的干衣需求,提升衣物烘干的均匀度。
如图7-图9所示,在另一些可选的示例中,风道壳10设有转轴322,转轴322与风道壳10的底壁平行,挡风件31设于转轴322,并且挡风件31可以随转轴322转动。
在转轴322的控制下,挡风件31能够转动到完全遮蔽第二风道022的进口的位置,此时切换装置3关闭第二风道022的进口,气流不经过第二风道022,第二进风部0631不向衣物处理腔061内输送气流。在转轴322的控制下,挡风件31能够转动到与气流流动方向平行位置,此时切换装置3打开第二风道022的进口,部分气流通过第二风道022,第二进风部0631向衣物处理腔061内输送气流。在转轴322的控制下,挡风件31能够转动到与气流流动方向平行位置与完全遮蔽第二风道022的进口的位置之间,部分打开第二风道022的进口,通过控制第二风道022的进口的大小控制进入第二风道022内气流的流量。
在一些示例中,切换装置3还包括驱动电机33,驱动电机33与转轴322连接,驱动电机33用于驱动转轴322转动,衣物处理装置1000通过控制驱动电机33的运行即可控制转轴322的转动,并控制转轴322在预设位置保持静止,进而控制挡风件31的位置,控制气流在通风组件内的流动。
在一些示例中,罩壳包括外罩1和内罩2,内罩2设于外罩1内,其中,内罩2包括第一内罩2和第二内罩2,并且第一内罩2和第二内罩2并排布置在外罩1内,第一内罩2的底壁上设有多个消音孔22,以降低气流流动过程中产生的噪音。
两个分隔件21间隔布置在第一内罩2内,其中一个风道腔0211位于其中一个分隔件21与第一内罩2的侧壁之间,其中另一个风道腔0211位于其中另一个分隔件21与第一内罩2的侧壁之间,第二风道022位于两个分隔件21之间,第二内罩2适于限定出进风腔023 的至少一部分,第二内罩2的侧壁设有蜗舌23,驱动电机33位于外罩1的侧壁与第一内罩2靠近蜗舌23的侧壁之间。
其中,转轴322的一端可转动地设于其中一个分隔件21,驱动电机33通过连接轴331与转轴322连接,并且连接轴331穿过另一个分隔件21,从而可以与转轴322的另一端连接。通过将罩壳设置成上述结构,使得外罩1可以对第一内罩2和第二内罩2进行保护,并起到隔绝噪音,减少振动等作用,并且可以为驱动电机33预留出安装空间。
在一些示例中,风道壳10的底壁设有限位件24,用于对挡风件31进行限位。通过在风道壳10的底壁设置限位件24,可以对挡风件31的转动位置进行限位,从而可以使挡风件31可以保持在打开或者关闭第二风道022的进口的位置。
如图4所示,根据本申请的一些实施例,挡风板4具有第一出风区41和第二出风区42,第一出风区41环绕在第二出风区42的外侧,以使第一风道021能够与第一出风区41对应,使第二出风区42与第二风道022对应,第一出风区41设有第一出风部041,第二出风区42设有第二出风部042,第一出风部041包括至少一个第一出风孔411,第二出风部042位于第二出风区42且包括至少一个第二出风孔421。
其中,第一出风区41的与第二风道022正对的部分为无孔结构,以避免第二风道022内的气流通过第一出风区41以及衣物处理腔061的第一进风区062进入衣物处理腔061,影响衣物处理装置1000对衣物处理腔061内通风方式的控制。
根据本申请的一些实施例,第二进风部0631包括多个第二进风孔,多个第二进风孔在第二进风区063的周向和/或径向间隔布置,以确保第二进风部0631的进风均匀,确保衣物处理的均匀性。
在本申请的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
根据本申请实施例的衣物处理装置1000的其他构成以及操作对于本领域普通技术人员而言都是已知的,这里不再详细描述。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本申请的实施例,本领域的普通技术人员可以理解:在不脱离本申请的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。

Claims (16)

  1. 一种衣物处理装置,其中,包括:
    衣物处理桶,所述衣物处理桶限定出衣物处理腔且底壁具有第一进风区和第二进风区,所述第一进风区设有第一进风部,所述第二进风区设有与所述衣物处理腔连通的第二进风部;
    导风件,所述导风件设于所述衣物处理桶,用于连通所述衣物处理腔和所述第一进风部;
    通风组件,所述通风组件可选择地与所述第一进风部和第二进风部中的至少一个连通。
  2. 根据权利要求1所述的衣物处理装置,其中,所述导风件包括:
    第一导风部,所述第一导风部设于所述衣物处理桶的侧壁且适于限定出第一通风段;
    第二导风部,所述第二导风部与所述第一导风部连接且设于所述衣物处理桶的底壁,所述第二导风部适于限定出与所述第一进风部、所述第一通风段连通的第二通风段。
  3. 根据权利要求2所述的衣物处理装置,其中,所述第一导风部与所述衣物处理桶的侧壁之间限定出所述第一通风段,所述第二导风部与所述衣物处理桶的底壁之间限定出所述第二通风段。
  4. 根据权利要求2所述的衣物处理装置,其中,所述第一进风区与所述第二导风部错开的部分为无孔结构。
  5. 根据权利要求1所述的衣物处理装置,其中,所述第一进风部和所述导风件分别包括多个且多个所述第一进风部与多个所述导风件位置一一对应;和/或,
    所述第一进风区环绕在所述第二进风区的外侧,所述第一进风部包括多个且多个所述第一进风部在所述第二进风区的周向上间隔布置。
  6. 根据权利要求1-5中任一项所述的衣物处理装置,其中,所述通风组件限定出进风腔、第一风道和第二风道,所述通风组件与所述衣物处理桶的底壁之间限定出与所述第一风道和所述第一进风部连通的第一过风腔、与所述第二风道和所述第二进风部连通的第二过风腔,所述进风腔与所述衣物处理腔的出口连通,
    其中,所述进风腔可选择地与所述第一风道和所述第二风道中的至少一个连通,以使所述进风腔可选择地与所述第一进风部和所述第二进风部中的至少一个连通。
  7. 根据权利要求6所述的衣物处理装置,其中,所述通风组件包括:
    风道壳;
    挡风板,所述挡风板设于所述风道壳与所述衣物处理桶的底壁之间,所述挡风板与所述衣物处理桶的底壁限定出所述第一过风腔和所述第二过风腔,所述挡风板与所述风道壳之间限定出所述进风腔、所述第一风道和所述第二风道;
    切换装置,所述切换装置设于所述风道壳或者所述挡风板,用于开闭所述第二风道的进口以控制所述第二风道与所述进风腔之间的气流通断。
  8. 根据权利要求7所述的衣物处理装置,其中,所述第一风道包括两个风道腔,所述第二风道和两个所述风道腔位于所述进风腔的同一侧且并排布置,所述第二风道位于两个所述风道腔之间。
  9. 根据权利要求8所述的衣物处理装置,其中,所述风道壳包括:
    罩壳;
    两个分隔件,两个所述分隔件间隔布置在所述罩壳内且每个所述分隔件与所述罩壳的底壁连接,所述第二风道位于两个所述分隔件之间,两个所述风道腔分别位于两个所述分隔件与所述罩壳的侧壁之间。
  10. 根据权利要求9所述的衣物处理装置,其中,每个所述分隔件的长度方向的第一端与所述罩壳的侧壁连接,所述第二风道的进口位于两个所述分隔件的长度方向的第二端之间,所述第一风道的进口位于所述分隔件的长度方向的第二端与所述罩壳的侧壁之间。
  11. 根据权利要求7所述的衣物处理装置,其中,所述切换装置包括可转动的挡风件,用于开闭所述第二风道的进口。
  12. 根据权利要求11所述的衣物处理装置,其中,所述风道壳的底壁设有与其垂直的固定轴,所述挡风件设于所述固定轴且被构造为在气流驱动下绕所述固定轴转动。
  13. 根据权利要求12所述的衣物处理装置,其中,所述挡风件包括多个挡风片,多个所述挡风片在所述固定轴的周向间隔布置,至少两个所述挡风片在所述固定轴的两侧相对设置。
  14. 根据权利要求13所述的衣物处理装置,其中,至少两个所述挡风片在所述第二风道的进口所在平面的投影形状与所述第二风道的进口形状相同;和/或,所述挡风片形成螺旋叶片。
  15. 根据权利要求11所述的衣物处理装置,其中,所述风道壳设有与其底壁平行的转轴,所述挡风件设于所述转轴且随所述转轴转动。
  16. 根据权利要求15所述的衣物处理装置,其中,所述切换装置还包括驱动电机,所述驱动电机与所述转轴连接,用于驱动所述转轴转动;和/或,
    所述风道壳的底壁设有限位件,用于对所述挡风件进行限位。
PCT/CN2024/096742 2023-06-07 2024-05-31 衣物处理装置 Ceased WO2024251048A1 (zh)

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JPH09299694A (ja) * 1996-05-20 1997-11-25 Sanyo Electric Co Ltd 衣類乾燥機
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CN108677492A (zh) * 2018-05-21 2018-10-19 无锡小天鹅股份有限公司 具有干衣功能的衣物处理装置
CN220376962U (zh) * 2023-06-07 2024-01-23 无锡小天鹅电器有限公司 衣物处理装置
CN220376964U (zh) * 2023-06-07 2024-01-23 无锡小天鹅电器有限公司 衣物处理装置
CN220520913U (zh) * 2023-06-07 2024-02-23 无锡小天鹅电器有限公司 衣物处理装置

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