WO2023246791A1 - 衣物处理装置 - Google Patents

衣物处理装置 Download PDF

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Publication number
WO2023246791A1
WO2023246791A1 PCT/CN2023/101432 CN2023101432W WO2023246791A1 WO 2023246791 A1 WO2023246791 A1 WO 2023246791A1 CN 2023101432 W CN2023101432 W CN 2023101432W WO 2023246791 A1 WO2023246791 A1 WO 2023246791A1
Authority
WO
WIPO (PCT)
Prior art keywords
air
air inlet
air duct
clothes
barrel
Prior art date
Application number
PCT/CN2023/101432
Other languages
English (en)
French (fr)
Inventor
马德荣
巫志远
牟秋启
高弘锡
Original Assignee
无锡小天鹅电器有限公司
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
Application filed by 无锡小天鹅电器有限公司 filed Critical 无锡小天鹅电器有限公司
Publication of WO2023246791A1 publication Critical patent/WO2023246791A1/zh

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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 
    • 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
    • D06F58/02Domestic laundry dryers having dryer drums rotating about a horizontal axis
    • 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
    • D06F58/02Domestic laundry dryers having dryer drums rotating about a horizontal axis
    • D06F58/04Details 
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

Definitions

  • the present application relates to the technical field of clothing treatment devices, and specifically to a clothing treatment device.
  • the inner cavity of the clothes treatment barrel only has a single air flow effect.
  • the air flow in the inner cavity of the clothes treatment barrel is uneven, which will cause the clothes to be adsorbed on the filter during the drying process.
  • the air flow rate When it is slow and the direction cannot be controlled, it will also lead to poor penetration of the air flow, and some areas cannot be effectively dried, affecting the effect of the clothes processing device on clothes processing, affecting the user experience, and there is room for improvement.
  • the present application aims to solve one of the above-mentioned technical problems in the prior art, at least to a certain extent.
  • this application proposes a clothes processing device that can switch between different ventilation modes, and achieves different drying effects through the switching of ventilation modes, ensuring the drying effect of the clothes processing device.
  • the effect of the clothes processing device on clothes processing is improved, and the user's experience is improved.
  • a clothes treatment device includes: a housing; a clothes treatment barrel, the clothes treatment barrel is rotatably provided in the housing, and the bottom of the clothes treatment barrel has a first air inlet area and a second air inlet area, the first air inlet area is located in the middle of the bottom of the barrel, the second air inlet area surrounds the first air inlet area; the air duct shell assembly, the air duct shell The assembly is disposed outside the housing and defines a first air channel and a second air channel between the assembly and the housing; wherein the laundry treatment device has a first ventilation mode and a second ventilation mode, and in the first In the ventilation mode, the first air inlet area is connected to the first air duct and the inner cavity of the clothes treatment barrel. In the second ventilation mode, the first air inlet area is connected to the first air inlet area. The second air inlet area communicates with the second air duct and the inner cavity of the laundry treatment barrel.
  • the clothes processing device can switch between different ventilation modes, and realizes different drying effects through the switching of ventilation modes, ensuring the drying effect of the clothes processing device and improving It improves the effect of the clothes processing device on clothes processing and improves the user experience.
  • clothes processing device may also have the following additional technical features:
  • an air guide cover is provided inside the bottom of the barrel, the air guide cover covers the first air inlet area, and a plurality of ventilation holes are provided on the air guide cover. The hole communicates with the first air duct and the inner cavity of the laundry treatment barrel.
  • the air guide hood protrudes from the inner surface of the barrel bottom, the air guide hood has a peripheral wall and a top wall, and a plurality of ventilation holes are provided on the peripheral wall of the air guide hood. and/or the top wall of the air guide hood.
  • the air guide hood is formed into a conical hood.
  • the plurality of ventilation holes include first ventilation holes, and the plurality of first ventilation holes are distributed in the cone-shaped cover along the circumferential and/or axial intervals of the cone-shaped cover. side walls; and/or,
  • the plurality of ventilation holes include second ventilation holes, and the second ventilation holes are provided on the top of the cone-shaped cover.
  • the first air inlet area is provided with a plurality of first air inlets, and the first air inlets communicate with the first air duct and the inner cavity of the laundry treatment barrel,
  • the second air inlet area is provided with a plurality of second air inlets, and the second air inlets communicate with the second air duct and the clothing.
  • the inner cavity of the material disposal barrel is provided with a plurality of second air inlets, and the second air inlets communicate with the second air duct and the clothing.
  • a plurality of the first air inlet holes are arranged at intervals along the circumferential direction of a circle, and the first air inlet holes form elongated holes extending along the circumferential direction of the circle.
  • a plurality of second air inlet holes are arranged at circumferential and/or radial intervals along the first air inlet area, and the flow area of the second air inlet holes is smaller than the first air inlet hole. Describe the flow area of the first air inlet.
  • the flow area of the second air inlet hole is smaller than the flow area of the first air inlet hole.
  • the laundry treatment device further includes:
  • a first sealing member is provided between the housing and the barrel bottom and defines a first transition chamber between the housing and the barrel bottom.
  • the first transition chamber Connecting the first air inlet and the first air duct;
  • a second sealing member, the second sealing member is provided between the housing and the barrel bottom, and between the first sealing member, the second sealing member, the housing and the barrel bottom
  • a second transition cavity is defined, and the second transition cavity communicates with the second air inlet and the second air duct.
  • the air duct shell assembly includes:
  • a first cover body, the first cover body is disposed outside the housing and between the housing to define the first air duct;
  • a second cover is provided on the outside of the first cover, and the second airflow is defined between the second cover, the first cover and the shell. road,
  • an air inlet cavity is also defined between the second cover body and the housing, and the air inlet cavity is connected with the inlet of the first air duct and the inlet of the second air duct.
  • the laundry treatment device further includes:
  • the switching device is used to open and close the inlet of the second air duct, so as to control the air flow between the second air duct and the air inlet cavity to make the clothes treatment device operate in the Switchable between the first ventilation mode and the second ventilation mode.
  • Figure 1 is a partial structural schematic diagram of a clothes treatment device according to an embodiment of the present application.
  • Figure 2 is a cross-sectional view at A-A of Figure 1;
  • Figure 3 is a cross-sectional view at B-B in Figure 1;
  • Figure 4 is a partial structural schematic diagram of a clothes treatment device according to an embodiment of the present application.
  • Figure 5 is a partial structural schematic diagram of a clothes treatment device according to an embodiment of the present application.
  • Figure 6 is a cross-sectional view at C-C of Figure 5;
  • Figure 7 is a cross-sectional view at D-D of Figure 5;
  • Figure 8 is a partial structural schematic diagram of a clothes treatment device according to an embodiment of the present application.
  • Figure 9 is a partial cross-sectional view of a clothes treatment device according to an embodiment of the present application.
  • Figure 10 is a partial structural schematic diagram of a clothes treatment device according to an embodiment of the present application.
  • Figure 11 is a partial structural schematic diagram of a clothes treatment device according to an embodiment of the present application.
  • Figure 12 is a schematic structural diagram of an air guide hood according to an embodiment of the present application.
  • Figure 13 is a schematic structural diagram of an air guide hood according to an embodiment of the present application.
  • Figure 14 is a schematic structural diagram of an air guide cover according to an embodiment of the present application.
  • first and second are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of indicated technical features. Therefore, features defined as “first” and “second” may explicitly or implicitly include one or more of these features.
  • “plurality” means at least two, such as two, three, etc., unless otherwise expressly and specifically limited.
  • the term “above” or “below” a first feature on a second feature may include direct contact between the first and second features, or may also include the first and second features. Not in direct contact but through additional characteristic contact between them.
  • the terms “above”, “above” and “above” a first feature on a second feature include the first feature being directly above and diagonally above the second feature, or simply mean that the first feature is higher in level than the second feature.
  • “Below”, “under” and “under” the first feature is the second feature includes the first feature being directly below and diagonally below the second feature, or simply means that the first feature is less horizontally than the second feature.
  • the clothes processing device may be a clothes dryer. During the process of processing clothes, dry air flow needs to be introduced into the inner cavity of the clothes processing barrel to use the dry air flow to dry the clothes.
  • the inner cavity of the clothes treatment barrel only has a single air flow effect.
  • the air flow in the inner cavity of the clothes treatment barrel is uneven, which will cause the clothes to be adsorbed on the filter during the drying process.
  • the air flow When the flow rate is slow and the direction cannot be controlled, it will also lead to poor penetration of the air flow, and effective drying in some areas will affect the effect of the clothes processing device on clothes and the user experience.
  • the embodiment of the present application designs a clothes processing device that divides the bottom of the clothes processing bucket 1 into two different air inlet areas for introducing dry airflow into the inner cavity of the clothes processing bucket 1.
  • the inner cavity of the clothes processing barrel 1 can be controlled to have different clothes processing effects, thereby enabling the clothes processing device to select airflows with different drying effects when the clothes are in different states. Through, achieve better clothes treatment effect.
  • the clothes treatment device may include: a housing, a clothes treatment tub 1 and an air duct shell assembly.
  • the casing of the clothes treatment device can protect the internal structure of the clothes treatment device on the outside so that the clothes treatment device can maintain stable operation.
  • a clothes treatment barrel 1 is rotatably provided in the casing. , used to place the clothes to be processed, and the clothes are processed in the inner cavity of the clothes processing barrel 1.
  • the clothes processing device passes dry air flow into the inner cavity of the rotating clothes processing bucket 1, so that the clothes can be dried.
  • the shell can support and protect the clothes processing bucket 1 on the outside of the clothes processing bucket 1 .
  • the bottom of the clothes processing barrel 1 has a first air inlet area 11 and a second air inlet area 12, and the air flow can pass through the first air inlet area 11 and the second air inlet area 12.
  • the first air inlet area 11 enters the inner cavity of the clothes treatment barrel 1.
  • the air flow can also enter the inner cavity of the clothes treatment barrel 1 through the second air inlet area 12.
  • the air flow can also pass through the first air inlet area 11 and the second air inlet area 12 at the same time.
  • the second air inlet area 12 enters the inner cavity of the laundry treatment barrel 1 .
  • the first air inlet area 11 is located in the middle of the bottom of the barrel, and the second air inlet area 12 surrounds the first air inlet area 11. This not only facilitates the layout of the air duct, but also When the airflow enters the inner cavity of the clothes treatment barrel 1 only through the first air inlet area 11, the airflow is more concentrated, making the airflow faster and more penetrating, so that the clothes treatment device can quickly and easily penetrate the middle area of the clothes.
  • the drying part is dried to ensure that the drying function of the clothes processing device can operate reliably.
  • the airflow only enters the inner cavity of the clothes processing barrel 1 through the first air inlet area 11 or the second air inlet area 12 through the first air inlet area 11 or the second air inlet area 12, the flow rate of the airflow is faster, and the penetrating airflow can quickly dry the clothes that are difficult to dry. Blow dry the parts to ensure that the drying function of the clothes processing device can operate reliably and ensure the drying effect of the clothes processing device.
  • the air flow in the clothes treatment barrel 1 is uniform, and the clothes in the inner cavity of the clothes treatment barrel 1 can be treated. Drying is performed as a whole, and because the air flow can flow evenly, the phenomenon of clothes being adsorbed on the filter during the drying process of the clothes treatment device is avoided, which improves the user's experience.
  • the air duct shell assembly is arranged outside the shell, and two different air channels, the first air channel 10 and the second air channel 20, are defined between the air channel shell assembly and the shell.
  • the first air channel 10 and the second air channel 20 are independent of each other and do not interfere with each other. When the air flow passes through one of the air ducts, the air flow in the air duct will not enter the other air duct.
  • the first air inlet area 11 communicates with the first air channel 10 and the inner cavity of the clothes treatment barrel 1
  • the second air inlet area 12 connects the second air channel 20 with the inner cavity of the clothes treatment barrel 1 . That is to say, the airflow entering the clothes processing device from the air inlet can enter the inner cavity of the clothes processing bucket 1 through the first air inlet area 11 after passing through the first air duct 10. The airflow entering the clothes processing device from the air inlet can then pass through the first air inlet area 11. The second air duct 20 then enters the inner cavity of the clothes treatment barrel 1 through the second air inlet area 12.
  • the air inlet area in the clothes treatment barrel 1 can be controlled, thereby realizing the convenience of the clothes treatment barrel. Conversion between different gas flow modes in the inner cavity of 1.
  • the clothes processing device has a first ventilation mode and a second ventilation mode.
  • the first ventilation mode the first air inlet area 11 communicates with the first air duct 10 and the inner cavity of the clothes processing bucket 1.
  • the air flow speed is fast, and the penetrating air flow can quickly dry the parts of the clothes that are difficult to dry, ensuring that the drying function of the clothes processing device can operate reliably and ensuring the drying effect of the clothes processing device.
  • the first air inlet area 11 communicates with the first air channel 10 and the inner cavity of the clothes treatment barrel 1 and the second air inlet area 12 connects the second air channel 20 with the inner cavity of the clothes treatment barrel 1.
  • the air flow in the clothes treatment barrel 1 is uniform, which can dry the entire clothes in the inner cavity of the clothes treatment barrel 1. Moreover, because the air flow can flow evenly, it avoids the occurrence of problems in the clothes treatment device during the drying process. The phenomenon of clothes adsorbing on the filter improves the user experience.
  • the clothes processing device can switch between different ventilation modes, and realizes different drying effects through the switching of ventilation modes, ensuring the drying effect of the clothes processing device and improving The effect of the clothes processing device on clothes treatment improves the user experience.
  • the inside of the bottom of the clothes processing barrel 1 is provided with an air guide 4.
  • the air guide 4 can guide the passing airflow so that the airflow flows in different directions to achieve different clothes treatment effects. .
  • the air guide 4 is disposed on the inside of the bottom wall of the clothes processing tub 1 to guide the airflow flowing out from the inside of the clothes processing bottom wall.
  • the air guide 4 covers the first air inlet area 11 so that the air guide 4 can communicate with the first air inlet area 11 and the inner cavity of the clothes treatment barrel 1 . That is to say, the airflow in the first air duct 10 passes through the first air inlet area 11 .
  • the air inlet area 11 enters the air guide 4 and enters the inner cavity of the clothes processing barrel 1 through the air guide 4. During the process, the air flow can be guided by the air guide 4 so that the airflow Flow can achieve different laundry treatment effects.
  • a plurality of ventilation holes are provided on the air guide cover 4, and the ventilation holes connect the first air duct 10 and the inner cavity of the clothes processing barrel 11. That is to say, the air flow in the first air duct 10 enters the guide through the first air inlet area 11. Inside the air hood 4, it enters the inner cavity of the clothes processing barrel 1 through a plurality of vents opened on the air guide 4. During this process, the airflow will be guided by the air guide 4, so that the airflow can flow in different directions. Achieved different clothing treatment effects.
  • the air guide 4 protrudes from the inner surface of the bottom wall of the clothes treatment barrel 1.
  • the protruding air guide 4 can guide the airflow to all directions, so that the entire interior of the clothes treatment barrel 1 has a circulating airflow. airflow.
  • the air guide 4 has a peripheral wall and a top wall.
  • a plurality of ventilation holes are provided on the peripheral wall of the air guide 4 and the top wall of the air guide 4. At this time, the ventilation holes are located on the top wall.
  • the ventilation holes can guide the air flow to the front, and the ventilation holes located on the peripheral wall can guide the air flow to the surroundings. At this time, there is circulating air flow everywhere inside the clothes processing barrel 1.
  • a plurality of ventilation holes are provided on the peripheral wall of the air guide cover 4 , and the top wall of the air guide cover 4 is not provided with ventilation holes. At this time, the ventilation holes located on the peripheral wall can guide the air flow around.
  • a plurality of ventilation holes are provided on the top wall of the air guide cover 4 , and there are no ventilation holes on the peripheral wall of the air guide cover 4 . At this time, vents located on the top wall can direct airflow to the front.
  • the airflow can be caused to flow in different directions, and different air guide effects can be achieved, thereby achieving different clothes processing effects, thereby improving the clothes processing effect of the clothes processing device.
  • multiple ventilation holes can be opened and closed on the peripheral wall of the air guide 4 and the top wall of the air guide 4, and on the peripheral wall of the air guide 4 and the top wall of the air guide 4, When all the vents on the top wall are opened, the vents on the top wall can guide the airflow forward, and the vents on the peripheral wall can guide the airflow around. At this time, there is circulating airflow everywhere inside the clothes processing barrel 1.
  • the ventilation holes located on the peripheral wall can guide the air flow around.
  • the ventilation holes located on the top wall can guide the air flow forward.
  • the air guide 4 can have different air guide effects and can make the airflow flow in different directions, thereby achieving different clothes processing effects.
  • the laundry treatment effect of the laundry treatment device is improved.
  • the air guide 4 is formed into a cone-shaped cover, so that the air guide 4 can guide the airflow to different directions, so that the airflow forms wind directions at different angles, and because the cone-shaped cover has a concentrated As a result, the gas flow rate passing through the middle vent of the conical cover will increase and become more penetrating, and the air flow can flow to a position farther away from the bottom wall of the clothes processing barrel 1, thereby achieving better clothes processing effect.
  • the plurality of ventilation holes include first ventilation holes 411, and the plurality of first ventilation holes 411 are distributed along the circumferential and/or axial intervals of the cone-shaped cover on the side wall 41 of the cone-shaped cover,
  • the first ventilation holes 411 distributed in circumferential and/or axial intervals of the cone-shaped cover can guide the airflow around.
  • the plurality of ventilation holes include a second ventilation hole 421 and the second ventilation hole 421 is provided on the top 42 of the cone-shaped cover.
  • the second ventilation hole 421 is provided on the top 42 of the cone-shaped cover.
  • the second ventilation hole 421 located on the top 42 can Airflow is directed forward.
  • the conical cover is provided with first ventilation holes 411 distributed on the side wall 41 of the conical cover along the circumferential and/or axial direction of the conical cover and located on the conical cover.
  • the second ventilation hole 421 on the top 42 of the cover, the first ventilation hole 411 can guide the air flow to the surroundings, and the second ventilation hole 421 can guide the air flow to the front. At this time, there is circulating air flow everywhere inside the clothes treatment barrel 1 .
  • the conical cover is provided with first ventilation holes 411 distributed on the side wall 41 of the conical cover at intervals along the circumferential and/or axial direction of the conical cover, and The top 42 of the cone is not provided with ventilation holes. At this time, the first ventilation hole 411 can guide the air flow to all directions.
  • the top 42 of the conical cover is provided with a second vent hole 421 , and the side wall 41 of the conical cover is not provided with a vent hole.
  • the second ventilation hole 421 can guide the air flow forward.
  • the airflow can be caused to flow in different directions, and different air guide effects can be achieved, thereby achieving different clothes processing effects, thereby improving the clothes processing effect of the clothes processing device.
  • the first vent hole 411 and the second vent hole 421 can be opened and closed on the side wall 41 of the conical cover and the top 42 of the conical cover.
  • the second ventilation hole 421 can guide the air flow forward, and the first ventilation hole 411 can guide the air flow around. At this time, there is circulating air flow everywhere inside the clothes processing barrel 1 .
  • the first vent hole 411 provided on the side wall 41 of the conical cover When the first vent hole 411 provided on the side wall 41 of the conical cover is opened and the second vent hole 421 provided on the top 42 of the conical cover is closed, the first vent hole 411 provided on the side wall 41 of the conical cover is closed. 411 can direct airflow around.
  • the second vent hole 421 located on the top 42 of the conical cover can Direct airflow forward.
  • the cone-shaped cover can have different air guide effects and can cause the airflow to flow in different directions, thereby achieving Different clothes treatment effects, thereby improving the clothes treatment effect of the clothes treatment device.
  • the air guide 4 also includes a mounting part 43.
  • the air guide 4 is installed on the bottom wall of the clothes processing barrel 1 through the installation part 43, so that the air guide 4 can be stably installed. In the clothes processing device, ensure the stability of the installation of the air guide 4.
  • the air guide cover 4 is detachably installed on the bottom wall of the laundry treatment tub 1 through the mounting portion 43 to facilitate the replacement of the air guide cover 4 and to achieve different air guide effects by replacing the air guide cover 4 .
  • the air guide cover 4 is snap-fastened to the bottom wall of the clothes processing tub 1 through the mounting portion 43 .
  • the air guide cover 4 is fixedly installed on the bottom wall of the laundry tub 1 through the mounting portion 43 .
  • the first air inlet area 11 is provided with a plurality of first air inlets.
  • the first air inlets communicate with the first air duct 10 and the inner cavity of the clothes treatment barrel 1. In other words, the air flow in the first air duct 10 can pass through.
  • the first air inlet opened in the first air inlet area 11 on the bottom wall of the clothes treatment tub 1 enters the clothes treatment tub 1 .
  • the second air inlet area 12 is provided with a plurality of second air inlet holes, and the second air inlet holes communicate with the second air duct 20 and the inner cavity of the clothes treatment barrel 1 .
  • the airflow in the second air duct 20 can enter the inner cavity of the laundry tub 1 through the second air inlet 121 opened in the second air inlet area 12 on the bottom wall of the laundry tub 1 .
  • a plurality of first air inlets are arranged at circumferential intervals along a circumference, so that the flow rate of the air flow from the laundry treatment device into the laundry treatment barrel 1 through the first air inlets is uniform, so that the air flow is The flow effect in the laundry treatment barrel 1 is better.
  • the first air inlet hole forms a long hole extending along the circumferential direction of the circumference, so that the air outlet area of the first air inlet hole is larger, so that the air flow rate entering the clothes treatment barrel 1 through the first air inlet area 11 is larger. Large, thereby improving the clothes processing effect of the clothes treatment device.
  • a plurality of second air inlets are arranged at intervals along the circumference and/or radial direction of the first air inlet area 11 , so that the laundry treatment device enters the laundry treatment barrel 1 through the second air inlets 121 .
  • the flow rate of the air flow is uniform, so that the air flow effect in the clothes treatment barrel 1 is better.
  • the flow area of the second air inlet hole is smaller than the flow area of the first air inlet hole. Therefore, the air flow rate entering the clothes processing tub 1 through the first air inlet area 11 is compared with that entering through the second air inlet area 12 .
  • the air flow rate into the clothes treatment barrel 1 is larger, so that more gas can be guided through the air guide 4, thereby improving the treatment effect of the clothes treatment device on clothes.
  • the laundry treatment device further includes: a first sealing member and a second sealing member.
  • the first sealing member is disposed between the housing and the bottom of the barrel and defines a first sealing member between the housing and the bottom of the barrel. Transition chamber, the first transition chamber connects the first air inlet and the first air duct 10, the second sealing member is provided between the shell and the bottom of the barrel, the first sealing member, the second sealing member, A second transition chamber is defined between the shell and the bottom of the barrel.
  • the second transition chamber communicates with the second air inlet and the second air duct 20.
  • the sealing performance of the air duct can be ensured through the design of the first seal and the second seal. , making the loss of air volume as small as possible and improving the use experience of the clothes processing device.
  • the air duct shell assembly includes: a first cover body 2 and a second cover body 3.
  • the first cover body 2 and the second cover body 3 are arranged outside the shell.
  • a first air duct 10 is defined between the first cover 2 and the casing.
  • the second cover 3 is located outside the first cover 2. Between the second cover 3, the first cover 2 and the casing
  • the second air channel 20 is defined.
  • the second cover 3 is set on the outside of the first cover 2, and a space is formed on the inside of the first cover 2 for the passage of airflow.
  • the first cover 2 and the second cover A space is also formed between the bodies 3 for the passage of airflow, and, in some embodiments, the two spaces are independent of each other, that is to say, the airflow passing inside the two spaces will not interact.
  • the first air duct 10 and the second air duct 20 are independent of each other and do not interfere with each other.
  • the air flow in the air duct will not enter the other air duct. In this way, the pressure of the air flow can be increased. If the air flow enters the first air duct 10, the air flow entering the first air duct 10 will not enter the second air duct 20, which can avoid the air flow pressure in the first air duct 10. Reduce the blowing force on the clothes.
  • the first air duct 10 and the second air duct 20 are both connected to the air inlet and the inner cavity of the clothes processing barrel 1 . That is to say, the air enters the housing through the air inlet and forms an air flow. This air flow can enter the clothes through the first air duct 10
  • the inner cavity of the treatment barrel 1 can also enter the inner cavity of the clothes treatment barrel 1 through the second air duct 20 .
  • An air inlet chamber 30 is also defined between the second cover 3 and the shell.
  • the air inlet chamber 30 is connected with the inlet 101 of the first air duct 10 and the inlet 201 of the second air duct 20 . That is to say, the air inlet cavity 30 is adapted to communicate between the inlet 101 of the first air duct 10 and the air inlet, and between the inlet 201 of the second air duct 20 and the air inlet.
  • the airflow entering the clothes treatment device from the air inlet is , first enters the air inlet cavity 30 , passes through the air inlet cavity 30 to the vicinity of the inlet 101 of the first air duct 10 and the inlet 201 of the second air duct 20 , and then passes through the first air duct 10 and/or the second air duct 20 Enter the inner cavity of the laundry treatment barrel 1.
  • the clothes treatment device also includes: a switching device 5.
  • the switching device 5 is used to open and close the inlet 201 of the second air duct 20 to control the air flow between the second air duct 20 and the air inlet cavity 30. Break.
  • the switching device 5 can open and close the inlet 201 of the second air duct 20.
  • the switching device 5 opens the inlet 201 of the second air duct 20
  • the airflow can enter the second air duct 20 through the inlet 201 of the second air duct 20.
  • the airflow entering the housing through the air inlet can simultaneously enter the inner cavity of the laundry treatment barrel 1 through the first air duct 10 and the second air duct 20.
  • both air ducts in the clothes treatment device can provide air flow, under the condition of a fixed gas flow rate, the flow rate of the air flow is relatively slow.
  • the switching device 5 closes the inlet 201 of the second air duct 20
  • the airflow cannot enter the second air duct 20 through the inlet 201 of the second air duct 20, and therefore cannot enter the laundry treatment barrel 1 through the second air duct 20. in the inner cavity. That is to say, when the switching device 5 closes the inlet 201 of the second air duct 20, the airflow entering the housing through the air inlet can only enter the inner cavity of the clothes treatment barrel 1 through the first air duct 10. At this time, due to There is only one air duct in the clothes treatment device that can provide air flow. Under the condition of fixed gas flow rate, the flow rate of the air flow is relatively fast.
  • the switching device 5 controls the air flow interruption between the second air duct 20 and the air inlet by opening and closing the inlet 201 of the second air duct 20, so that the air flow has different running paths, thereby enabling the clothes treatment device to Switch between different ventilation modes, and change the flow rate and flow rate of the air flow during the conversion process, thereby achieving the purpose of better adjusting the flow rate and flow rate of the air flow entering the clothes processing chamber.
  • the switching device 5 includes: at least one switching plate, which can block the flow of air flow to achieve isolation of the air duct.
  • the switching plate is swingably disposed in the second cover body 3 .
  • the switching plate can swing to a position that blocks the air flow from flowing into the second air duct 20 .
  • the switching plate can also swing to a position that cannot block the air flow from flowing into the second air duct 20 . location within. That is to say, the switching device 5 realizes switching between the open state and the closed state through the swing of the switching plate.
  • the switching plate closes the inlet 201 of the second air duct 20 to isolate the air inlet and the second air duct 20.
  • the airflow cannot enter the second air duct 20 through the inlet 201 of the second air duct 20. Therefore, it is impossible to enter the inner cavity of the laundry treatment barrel 1 through the second air duct 20 . That is to say, when the switching device 5 closes the inlet 201 of the second air duct 20, the airflow entering the housing through the air inlet can only enter the inner cavity of the clothes treatment barrel 1 through the first air duct 10.
  • the switching device 5 closes the inlet 201 of the second air duct 20
  • the airflow entering the housing through the air inlet can only enter the inner cavity of the clothes treatment barrel 1 through the first air duct 10.
  • the flow rate of the air flow is relatively fast.
  • the switching plate opens the inlet 201 of the second air duct 20 to connect the air inlet and the second air duct 20.
  • the airflow can enter the second air duct 20 through the inlet 201 of the second air duct 20 and pass through the second air duct 20.
  • the air duct 20 enters the inner cavity of the laundry treatment barrel 1 . That is to say, when the switching device 5 opens the inlet 201 of the second air duct 20, the airflow entering the housing through the air inlet can simultaneously enter the inner cavity of the laundry treatment barrel 1 through the first air duct 10 and the second air duct 20. , at this time, since both air ducts in the clothes treatment device can provide air flow, under the condition of a fixed gas flow rate, the flow rate of the air flow is relatively slow.
  • the opening and closing of the inlet 201 of the second air duct 20 can be controlled, thereby controlling the air flow to change the running path, thereby enabling the clothes processing device to switch between different ventilation modes. , and changes the flow rate and flow rate of the air flow during the conversion process, thereby achieving the purpose of better adjusting the flow rate and flow rate of the air flow entering the clothes processing chamber.
  • the switching plate has an escape portion 53 , and the arrangement of the escape portion 53 can prevent the arrangement of the switching plate from affecting the ventilation effect of the first air duct 10 .
  • the switching plate can close the inlet 201 of the second air duct 20 when the switching device 5 is in a closed state, and the avoidance portion 53 can avoid the inlet 101 of the first air duct 10 when the switching device 5 is in a closed state. This ensures that the first air duct 10 can be maintained in a good ventilation state and avoids affecting the ventilation effect of the inlet 101 of the first air duct 10 when the switching plate closes the inlet 201 of the second air duct 20 .
  • the switching device 5 also includes a driving component 54, which can provide power for the movement of the switching device 5, wherein the driving component 54 is connected to the switching plate and is used to drive the switching plate to swing.
  • the driving component 54 may be a motor, the motor shaft of the motor is connected to the switching plate, and the rotation of the motor shaft drives the switching plate to swing. Therefore, by controlling the operation of the motor, the position of the switching plate can be controlled, and the switching device 5 can be controlled to switch between the open state and the closed state, thereby controlling the air flow to change the operating path, thereby enabling the clothing treatment device to operate in different ventilation modes. Convert between, and change the flow rate and flow rate of the air flow during the conversion process, thereby achieving the purpose of better adjusting the flow rate and flow rate of the air flow entering the clothes processing chamber.
  • the first cover body 2 is located in the middle of the second cover body 3, so that the overall structure of the clothes processing device is more reasonable and the widths on both sides of the second air duct 20 are similar. The ventilation effect is more even.
  • the switching plate includes two first plate portions 51 and second plate portions 52 to jointly control the opening and closing of the inlet 201 of the second air duct 20 on both sides, so as to achieve better control effect. And it can prevent the switch board from occupying more installation space, making the overall structure more reasonable.
  • the rotating axis of the first plate part 51 and the rotating axis of the second plate part 52 are located on opposite sides of the second cover body 3, so as to make the structure of the second cover body 3 more uniform and ensure that the wind resistance on both sides of the cover body is the same.
  • the air volume in the second air duct 20 is made more uniform.
  • the switching board can be a switching board to reduce the number of driving components 54 and make the overall structure simpler.
  • the switching device 5 can be disposed at the connection between the second air duct 20 and the overflow air duct.
  • a fan 6 is also provided in the overflow air duct.
  • the fan 6 can provide power for the flow of air, so that a continuous flow of air can enter the inner cavity of the clothes treatment barrel 1 in the clothes treatment device. .
  • a volute tongue 7 may also be provided on the inner wall of the second cover body 3.
  • the volute tongue 7 is located between the fan 6 and the inlet 201 of the first air duct 10/the second air duct 20 to improve the gas flow effect in the air duct.
  • the clothes processing device in the embodiment of the present application may be a clothes dryer.
  • the clothes dryer includes a casing and a clothing treatment barrel 1.
  • a clothes processing barrel 1 is provided in the casing for placing clothes to be processed.
  • the clothes are processed in the inner cavity of the clothes processing barrel 1.
  • An air inlet is provided on the casing, and the second cover 3 is provided outside the casing.
  • a certain space is formed between the second cover 3 and the casing, the first cover 2 and the fan 6 are arranged in the space formed between the second cover 3 and the casing, wherein the fan 6 is arranged in the second cover 3
  • the space formed between the body 3 and the casing is close to the air inlet, so that an air flow can be formed in the space formed by the second cover 3 and the casing, and the formed air flow flows along the space between the second cover 3 and the casing.
  • the defined air inlet cavity 30 flows toward the inner cavity of the laundry treatment barrel 1 .
  • the first cover 2 is disposed inside the second cover 3 and between the shell and the second cover 3. Therefore, the second cover 3, the first cover 2 and the shell jointly form an inner and outer structure.
  • Two air ducts wherein the first air duct 10 is defined between the first cover 2 and the casing, the second air duct 20 is defined between the second cover 3 and the first cover 2 and the casing.
  • the first air duct 10 and the second air duct 20 can communicate with the air inlet chamber 30 and the inner cavity of the clothes treatment barrel 1 .
  • the switching device 5 is provided at the connection between the second air duct 20 and the air inlet cavity 30 .
  • the switching device 5 includes: a motor, a first plate part 51 and a second plate part 52 .
  • One end is rotatably connected to both sides of the second cover body 3 and can swing in the second cover body 3 by driving the motor.
  • the switching device 5 realizes switching between the open state and the closed state through the swing of the first plate part 51 and the second plate part 52 .
  • the first plate part 51 and the second plate part 52 close the inlet 201 of the second air duct 20 to isolate the air inlet and the second air duct 20.
  • the air flow cannot pass through the second air duct 20.
  • the inlet 201 enters the second air duct 20 and cannot enter the inner cavity of the laundry treatment barrel 1 through the second air duct 20 . That is to say, when the switching device 5 closes the inlet 201 of the second air duct 20, the airflow entering the housing through the air inlet can only enter the inner cavity of the clothes treatment barrel 1 through the first air duct 10.
  • the switching device 5 closes the inlet 201 of the second air duct 20
  • the airflow entering the housing through the air inlet can only enter the inner cavity of the clothes treatment barrel 1 through the first air duct 10.
  • the flow rate of the air flow is relatively fast.
  • the first plate part 51 and the second plate part 52 open the inlet 201 of the second air duct 20 to connect the air inlet and the second air duct 20, and the airflow can enter the second air duct 20 through the inlet 201 of the second air duct 20.
  • the second air duct 20 enters the inner cavity of the laundry treatment barrel 1 through the second air duct 20 . That is to say, when the switching device 5 opens the inlet 201 of the second air duct 20, the airflow entering the housing through the air inlet can simultaneously enter the inner cavity of the laundry treatment barrel 1 through the first air duct 10 and the second air duct 20. , at this time, since both air ducts in the clothes treatment device can provide air flow, under the condition of a fixed gas flow rate, the flow rate of the air flow is relatively slow.
  • the opening and closing of the inlet 201 of the second air duct 20 can be controlled, thereby controlling the air flow to change the running path, thereby allowing the clothes to be processed.
  • the device can switch between different ventilation modes, and change the flow rate and flow rate of the air flow during the conversion process, thereby achieving the purpose of better adjusting the flow rate and flow rate of the air flow entering the inner cavity of the clothes processing barrel.
  • the bottom wall of the clothes processing tub 1 includes a first air inlet area 11 located in the middle, and a second air inlet area 12 surrounding the first air inlet area 11.
  • the first air inlet area 11 is provided with a first air inlet.
  • the second air inlet area 12 is provided with a second air inlet 121 .
  • the airflow only enters the inner cavity of the clothes processing barrel 1 through the first air inlet area 11 or the second air inlet area 12 through the first air inlet area 11 or the second air inlet area 12, the flow rate of the airflow is faster, and the penetrating airflow can quickly dry the clothes that are difficult to dry. Blow dry the parts to ensure that the drying function of the clothes processing device can operate reliably and ensure the drying effect of the clothes processing device.
  • the air flow in the clothes treatment barrel 1 is uniform, and the clothes in the inner cavity of the clothes treatment barrel 1 can be treated. Drying is performed as a whole, and because the air flow can flow evenly, the phenomenon of clothes being adsorbed on the filter during the drying process of the clothes treatment device is avoided, which improves the user's experience.
  • the first air inlet is connected to the first air duct 10
  • the second air inlet 121 is connected to the second air duct 20 .
  • An air guide 4 is provided on the bottom wall of the laundry barrel 1 inside the first air inlet area 11, and the air guide 4 is formed into a tapered shape.
  • the cone-shaped cover is provided with multiple ventilation holes.
  • the plurality of conical covers are detachably installed on the bottom wall of the laundry treatment barrel 1 through the mounting part 43.
  • One of the plurality of conical covers is provided with first ventilation holes 411 spaced along the circumferential and/or axial direction of the conical cover on the side wall 41 of the conical cover and first ventilation holes 411 provided on the conical cover.
  • the second ventilation hole 421 on the top 42, the first ventilation hole 411 can guide the air flow to the surroundings, and the second ventilation hole 421 can guide the air flow to the front. At this time, there is circulating air flow everywhere inside the clothes treatment barrel 1.
  • One of the plurality of conical covers is provided with first ventilation holes 411 spaced along the circumferential and/or axial direction of the conical cover on the side wall 41 of the conical cover, and the top of the conical cover is 42 has no ventilation holes. At this time, the first ventilation hole 411 can guide the air flow to all directions.
  • the top 42 of one of the conical covers is provided with a second vent hole 421, and the side wall 41 of the conical cover is not provided with a vent hole. At this time, the second ventilation hole 421 can guide the air flow forward.
  • the airflow can be caused to flow in different directions, and different air guide effects can be achieved, thereby achieving different clothes processing effects, thereby improving the clothes processing effect of the clothes processing device.
  • the first vent hole 411 and the second vent hole 421 can be opened and closed on the side wall 41 of the conical cover and the top 42 of the conical cover, between the first vent hole 411 and the second vent hole 421.
  • the second vent holes 421 When the second vent holes 421 are all opened, the second vent holes 421 can guide the air flow forward, and the first vent holes 411 can guide the air flow around. At this time, there is circulating air flow everywhere inside the clothes processing barrel 1 .
  • the first vent hole 411 provided on the side wall 41 of the conical cover When the first vent hole 411 provided on the side wall 41 of the conical cover is opened and the second vent hole 421 provided on the top 42 of the conical cover is closed, the first vent hole 411 provided on the side wall 41 of the conical cover is closed. 411 can direct airflow around.
  • the second vent hole 421 located on the top 42 of the conical cover can Direct airflow forward.
  • the cone-shaped cover can have different air guide effects and can cause the airflow to flow in different directions, thereby achieving Different clothes treatment effects, thereby improving the clothes treatment effect of the clothes treatment device.
  • the switching device 5 closes the inlet 201 of the second air duct 20
  • the airflow entering the housing through the air inlet can only enter the inner cavity of the clothes treatment barrel 1 through the first air duct 10.
  • the cone-shaped The cover can guide the airflow entering the clothes treatment barrel 1 from the first air inlet to the surroundings of the inner cavity of the clothes treatment barrel 1, thereby preventing the edge of the inner cavity of the clothes treatment barrel 1 from being blocked due to the lack of air from the second air inlet 121.
  • the disadvantages of air flow improve the clothes treatment effect of the clothes treatment device.
  • references to the terms “one embodiment,” “some embodiments,” “an example,” “specific examples,” or “some examples” or the like means that specific features are described in connection with the embodiment or example. , structures, materials or features are included in at least one embodiment or example of the present application. In this specification, the schematic expressions of the above terms are not necessarily directed to the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, those skilled in the art may join and combine the different embodiments or examples described in this specification.

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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,包括:壳体、衣物处理桶(1)和风道壳组件,衣物处理桶(1)的桶底具有设于桶底的中部的第一进风区(11)和环绕其的第二进风区(12),风道壳组件与壳体之间限定出第一风道(10)和第二风道(20),衣物处理装置在第一通风模式下,第一进风区(11)连通第一风道(10)和衣物处理桶(1)的内腔,在第二通风模式下,第一进风区(11)连通第一风道(10)和衣物处理桶(1)的内腔且第二进风区(12)连通第二风道(20)和衣物处理桶(1)的内腔。

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202210713845.X,申请日为2022年6月22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装置技术领域,具体而言,涉及一种衣物处理装置。
背景技术
现有技术中,衣物处理桶的内腔内仅具有单一的气流通过效果,衣物处理桶的内腔内的气流不均匀,会导致在烘干过程中出现衣物吸附在过滤网上的现象,气流流速缓慢且方向无法控制时,还会导致气流的穿透力差,部分区域无法有效的实现烘干,影响衣物处理装置对衣物处理的效果,影响用户的使用体验,存在改进空间。
发明内容
本申请旨在至少在一定程度上解决现有技术中的上述技术问题之一。为此,本申请提出一种衣物处理装置,该衣物处理装置能够在不同的通风方式之间转换,并通过通风方式的转换实现了不同的干衣效果,确保了衣物处理装置的干衣效果,提高了衣物处理装置对衣物处理的效果,提高了用户的使用体验。
根据本申请的实施例的一种衣物处理装置,包括:壳体;衣物处理桶,所述衣物处理桶可转动地设于所述壳体内,所述衣物处理桶的桶底具有第一进风区和第二进风区,所述第一进风区设于所述桶底的中部,所述第二进风区环绕所述第一进风区;风道壳组件,所述风道壳组件设于所述壳体外且与所述壳体之间限定出第一风道和第二风道;其中,所述衣物处理装置具有第一通风模式和第二通风模式,在所述第一通风模式下,所述第一进风区连通所述第一风道和所述衣物处理桶的内腔,在所述第二通风模式下,所述第一进风区连通所述第一风道和所述衣物处理桶的内腔且所述第二进风区连通所述第二风道和所述衣物处理桶的内腔。
根据本申请的实施例的衣物处理装置,该衣物处理装置能够在不同的通风方式之间转换,并通过通风方式的转换实现了不同的干衣效果,确保了衣物处理装置的干衣效果,提高了衣物处理装置对衣物处理的效果,提高了用户的使用体验。
另外,根据申请实施例的衣物处理装置,还可以具有如下附加技术特征:
根据本申请的一些实施例,所述桶底的内侧设有导风罩,所述导风罩覆盖所述第一进风区,所述导风罩上开设有多个通风孔,所述通风孔连通所述第一风道和所述衣物处理桶的内腔。
根据本申请的一些实施例,所述导风罩凸出于所述桶底的内表面,所述导风罩具有周壁和顶壁,多个所述通风孔设于所述导风罩的周壁和/或所述导风罩的顶壁。
根据本申请的一些实施例,所述导风罩形成为锥形罩。
根据本申请的一些实施例,多个所述通风孔包括第一通风孔,多个所述第一通风孔沿所述锥形罩的周向和/或轴向间隔分布在所述锥形罩的侧壁;和/或,
多个所述通风孔包括第二通风孔且所述第二通风孔设于所述锥形罩的顶部。
根据本申请的一些实施例,所述第一进风区设有多个第一进风孔,所述第一进风孔连通所述第一风道和所述衣物处理桶的内腔,
所述第二进风区设有多个第二进风孔,所述第二进风孔连通所述第二风道和所述衣 物处理桶的内腔。
根据本申请的一些实施例,多个所述第一进风孔沿一圆周的周向间隔排布,所述第一进风孔形成沿所述圆周的周向延伸的长形孔。
根据本申请的一些实施例,多个所述第二进风孔沿所述第一进风区的周向和/或径向间隔排布,所述第二进风孔的通流面积小于所述第一进风孔的通流面积。
根据本申请的一些实施例,所述第二进风孔的通流面积小于所述第一进风孔的通流面积。
根据本申请的一些实施例,所述衣物处理装置还包括:
第一密封件,所述第一密封件设于所述壳体与所述桶底之间且与所述壳体、所述桶底之间限定出第一过渡腔,所述第一过渡腔连通所述第一进风孔和所述第一风道;
第二密封件,所述第二密封件设于所述壳体与所述桶底之间,所述第一密封件、所述第二密封件、所述壳体和所述桶底之间限定出第二过渡腔,所述第二过渡腔连通所述第二进风孔和所述第二风道。
根据本申请的一些实施例,所述风道壳组件包括:
第一罩体,所述第一罩体设于所述壳体外与所述壳体之间限定出所述第一风道;
第二罩体,所述第二罩体罩设在所述第一罩体的外侧,所述第二罩体、所述第一罩体与所述壳体之间限定出所述第二风道,
其中,所述第二罩体与所述壳体之间还限定出进风腔,所述进风腔与所述第一风道的进口、所述第二风道的进口连通。
根据本申请的一些实施例,所述衣物处理装置还包括:
切换装置,所述切换装置用于开闭所述第二风道的进口,以通过控制所述第二风道与所述进风腔之间的气流通断使所述衣物处理装置在所述第一通风模式和所述第二通风模式之间可切换。
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是根据本申请实施例的衣物处理装置的局部结构示意图;
图2是图1在A-A处的剖视图;
图3是图1在B-B处的剖视图;
图4是根据本申请实施例的衣物处理装置的局部结构示意图;
图5是根据本申请实施例的衣物处理装置的局部结构示意图;
图6是图5在C-C处的剖视图;
图7是图5在D-D处的剖视图;
图8是根据本申请实施例的衣物处理装置的局部结构示意图;
图9是根据本申请实施例的衣物处理装置的局部剖视图;
图10是根据本申请实施例的衣物处理装置的局部结构示意图;
图11是根据本申请实施例的衣物处理装置的局部结构示意图;
图12是根据本申请实施例的导风罩的结构示意图;
图13是根据本申请实施例的导风罩的结构示意图;
图14是根据本申请实施例的导风罩的结构示意图。
附图标记:
衣物处理桶1,第一进风区11,第二进风区12,第二进风口121,第一罩体2,第
二罩体3,导风罩4,侧壁41,第一通风孔411,顶部42,第二通风孔421,安装部43,切换装置5,第一板部51,第二板部52,避让部53,驱动部件54,风机6,蜗舌7,第一风道10,第一风道的进口101,第二风道20,第二风道的进口201,进风腔30。
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,旨在用于解释本申请,而不能理解为对本申请的限制。
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”、“顺时针”、“逆时针”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。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,“多个”的含义是至少两个,例如两个,三个等,除非另有明确具体的限定。
在本申请中,除非另有明确的规定和限定,第一特征在第二特征之“上”或之“下”可以包括第一和第二特征直接接触,也可以包括第一和第二特征不是直接接触而是通过它们之间的另外的特征接触。而且,第一特征在第二特征“之上”、“上方”和“上面”包括第一特征在第二特征正上方和斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”包括第一特征在第二特征正下方和斜下方,或仅仅表示第一特征水平高度小于第二特征。
根据本申请实施例的衣物处理装置可以为干衣机,在对衣物进行处理的过程中,需要向衣物处理桶的内腔内通入干燥的气流,以利用干燥的气流对衣物进行干燥处理。
在现有技术中,衣物处理桶的内腔内仅具有单一的气流通过效果,衣物处理桶的内腔内的气流不均匀,会导致在烘干过程中出现衣物吸附在过滤网上的现象,气流流速缓慢且方向无法控制时,还会导致气流的穿透力差,部分区域无法有效的实现烘干,影响衣物处理装置对衣物处理的效果,影响用户的使用体验。
为此,本申请实施例设计了一种将衣物处理桶1的桶底分为两个不同进风区用于向衣物处理桶1的内腔内通入干燥的气流的衣物处理装置,通过控制是否通过两个不同进风区通入气流,即可控制衣物处理桶1的内腔内具有不同的衣物处理效果,进而使得衣物处理装置能够在衣物处于不同状态时选择具有不同干衣效果的气流通过,实现更好的衣物处理效果。
下面参考图1-图14描述根据本申请实施例的衣物处理装置。
根据本申请实施例的衣物处理装置可以包括:壳体、衣物处理桶1和风道壳组件。
如图1-图8所示,衣物处理装置的壳体能够在外侧对衣物处理装置内部的结构进行保护,以使衣物处理装置能够保持稳定的运行,壳体内可转动地设置有衣物处理桶1,用于放置待处理的衣物,衣物在衣物处理桶1的内腔内进行处理,衣物处理装置通过向转动的衣物处理桶1的内腔内通入干燥的气流,以使衣物能够得到干燥处理,壳体能够在衣物处理桶1的外侧对衣物处理桶1进行支撑与保护。
其中,衣物处理桶1的桶底具有第一进风区11和第二进风区12,气流可以通过第 一进风区11进入到衣物处理桶1的内腔中,气流也可以通过第二进风区12进入到衣物处理桶1的内腔中,气流还可以同时通过第一进风区11和第二进风区12进入到衣物处理桶1的内腔中。
如图10和图11所示,第一进风区11设于桶底的中部,第二进风区12环绕第一进风区11,由此,不仅能够便于风道的布置,而且还能够在气流仅通过第一进风区11进入衣物处理桶1的内腔时的气流更集中,使得气流的流速更快,更具有穿透力,以使衣物处理装置能够快速的对衣物中部区域不易吹干的部分进行吹干,确保衣物处理装置的干衣功能能够可靠的运行,在气流同时通过第一进风区11以及第二进风区12进入衣物处理桶1时,确保衣物处理桶1的内腔内的各处都均匀分布有气流,使得衣物处理桶1内的衣物能够被均匀烘干,确保衣物处理装置的干衣效果。
进一步,当气流仅通过第一进风区11或者第二进风区12进入衣物处理桶1的内腔时,气流的流速较快,具有穿透力的气流能够快速的对衣物中不易吹干的部分进行吹干,确保衣物处理装置的干衣功能能够可靠的运行,确保衣物处理装置的干衣效果。
当气流同时通过第一进风区11与第二进风区12进入到衣物处理桶1的内腔中时,衣物处理桶1内的气流均匀,能够对衣物处理桶1的内腔内的衣物整体进行吹干,并且,由于气流能够均匀流动,避免了衣物处理装置在烘干过程中出现衣物吸附在过滤网上的现象,提高了使用者的使用体验。
进一步,风道壳组件设于壳体外,风道壳组件与壳体之间限定出第一风道10和第二风道20两个不同的风道,第一风道10与第二风道20之间相互独立,互不干扰,在其中一个风道内通过气流时,该风道内的气流不会进入到另一个风道内。
其中,第一进风区11连通第一风道10和衣物处理桶1的内腔,第二进风区12连通第二风道20和衣物处理桶1的内腔。也就是说,从进风口进入衣物处理装置的气流能够在通过第一风道10后通过第一进风区11进入衣物处理桶1的内腔,从进风口进入衣物处理装置的气流能够在通过第二风道20后通过第二进风区12进入衣物处理桶1的内腔,通过控制气流流经的风道,即可控制衣物处理桶1内的进风区域,从而实现了衣物处理桶1的内腔内不同的气体流动方式之间的转换。
具体地,衣物处理装置具有第一通风模式和第二通风模式,在第一通风模式下,第一进风区11连通第一风道10和衣物处理桶1的内腔,在此通风模式下,气流的流速较快,具有穿透力的气流能够快速的对衣物中不易吹干的部分进行吹干,确保衣物处理装置的干衣功能能够可靠的运行,确保衣物处理装置的干衣效果。
在第二通风模式下,第一进风区11连通第一风道10和衣物处理桶1的内腔且第二进风区12连通第二风道20和衣物处理桶1的内腔,在此通风模式下,衣物处理桶1内的气流均匀,能够对衣物处理桶1的内腔内的衣物整体进行吹干,并且,由于气流能够均匀流动,避免了衣物处理装置在烘干过程中出现衣物吸附在过滤网上的现象,提高了使用者的使用体验。
根据本申请实施例的衣物处理装置,该衣物处理装置能够在不同的通风方式之间转换,并通过通风方式的转换实现了不同的干衣效果,确保了衣物处理装置的干衣效果,提高了衣物处理装置对衣物处理的效果,提高了用户的使用体验。
参照图10和图11,衣物处理桶1的桶底的内侧设有导风罩4,导风罩4能够对通过的气流进行导向,以使气流流向不同的方向,以实现不同的衣物处理效果。
导风罩4设于衣物处理桶1的底壁内侧,以对从衣物处理底壁内侧处流出的气流进行导向。导风罩4覆盖第一进风区11,以使导风罩4能够连通第一进风区11与衣物处理桶1的内腔,也就是说,第一风道10内的气流通过第一进风区11进入到导风罩4内,通过导风罩4进入到衣物处理桶1的内腔,过程中气流能够被导风罩4所导向,以使气 流能够实现不同的衣物处理效果。
导风罩4上开设有多个通风孔,通风孔连通第一风道10与衣物处理桶11的内腔,也就是说,第一风道10内的气流通过第一进风区11进入导风罩4内,再通过导风罩4上开设的多个通风口进入衣物处理桶1的内腔,在此过程中,气流会经过导风罩4的导向,使得气流能够流向不同的方向,实现了不同的衣物处理效果。
如图9所示,导风罩4凸出于衣物处理桶1的底壁内表面,凸出的导风罩4能够将气流导向四周,以使衣物处理桶1的内部各处均具有流通的气流。
进一步,导风罩4具有周壁和顶壁,可选的,如图12所示,多个通风孔设于导风罩4的周壁和导风罩4的顶壁,此时,位于顶壁上的通风孔能够将气流导向前方,位于周壁上的通风孔能够将气流导向四周,此时衣物处理桶1的内部各处均具有流通的气流。
进一步,参照图13,多个通风孔设于导风罩4的周壁,并且导风罩4的顶壁不设有通风孔。此时,位于周壁上的通风孔能够将气流导向四周。
在另一些实施例中,如图14所示,多个通风孔设于导风罩4的顶壁,并且导风罩4的周壁不设有通风孔。此时,位于顶壁上的通风孔能够将气流导向前方。
综上所述,通过选择不同的导风罩4,能够使气流流向不同的方向,能够实现不同的导风效果,从而实现了不同的衣物处理效果,进而提高了衣物处理装置的衣物处理效果。
在一些可选的实施例中,多个通风孔可以开启与闭合的设于导风罩4的周壁和导风罩4的顶壁,在设于导风罩4的周壁和导风罩4的顶壁的通风孔全部开启时,位于顶壁上的通风孔能够将气流导向前方,位于周壁上的通风孔能够将气流导向四周,此时衣物处理桶1的内部各处均具有流通的气流。
在设于导风罩4的周壁的通风孔开启,设于导风罩4的顶壁的通风孔关闭时,位于周壁上的通风孔能够将气流导向四周。
在设于导风罩4的顶壁的通风孔开启,设于导风罩4的周壁的通风孔关闭时,位于顶壁上的通风孔能够将气流导向前方。
综上所述,通过控制导风罩4上的通风孔的开闭,能够使导风罩4具有不同的导风效果,能够使气流流向不同的方向,从而实现了不同的衣物处理效果,进而提高了衣物处理装置的衣物处理效果。
结合图11-图14所示实施例,导风罩4形成为锥形罩,以使导风罩4能够将气流引导到不同方向,使气流形成不同角度的风向,并且由于锥形罩具有集中作用,经过锥形罩中间通风口的气体流速会加大,更具有穿透力,气流能够流动到距离衣物处理桶1的底壁更远的位置,从而能够实现更好的衣物处理效果。
如图9-图14所示,多个通风孔包括第一通风孔411,多个第一通风孔411沿锥形罩的周向和/或轴向间隔分布在锥形罩的侧壁41,在锥形罩的周向和/或轴向间隔分布的第一通风孔411能够将气流导向四周。
多个通风孔包括第二通风孔421且第二通风孔421设于锥形罩的顶部42,第二通风孔421设于锥形罩的顶部42,位于顶部42的第二通风孔421能够将气流导向前方。
在一些实施例中,参照图12,锥形罩上设置有沿锥形罩的周向和/或轴向间隔分布在锥形罩的侧壁41上的第一通风孔411和设于锥形罩的顶部42的第二通风孔421,第一通风孔411能够将气流导向四周,第二通风孔421能够将气流导向前方,此时衣物处理桶1的内部各处均具有流通的气流。
在另一些实施例中,如图13所示,锥形罩上设置有沿锥形罩的周向和/或轴向间隔分布在锥形罩的侧壁41上的第一通风孔411,并且锥形罩的顶部42不设有通风孔。此时,第一通风孔411能够将气流导向四周。
在再一些实施例中,参照图14,锥形罩的顶部42设置有第二通风孔421,并且锥形罩的侧壁41不设有通风孔。此时,第二通风孔421能够将气流导向前方。
综上所述,通过选择不同的锥形罩,能够使气流流向不同的方向,能够实现不同的导风效果,从而实现了不同的衣物处理效果,进而提高了衣物处理装置的衣物处理效果。
在一些可选的实施例中,第一通风孔411和第二通风孔421可以开启与闭合的设于锥形罩的侧壁41和锥形罩的顶部42,在第一通风孔411和第二通风孔421全部开启时,第二通风孔421能够将气流导向前方,第一通风孔411能够将气流导向四周,此时衣物处理桶1的内部各处均具有流通的气流。
在设于锥形罩的侧壁41上的第一通风孔411开启,设于锥形罩的顶部42的第二通风孔421关闭时,位于锥形罩的侧壁41上的第一通风孔411能够将气流导向四周。
在设于锥形罩的顶部42的第二通风孔421开启,设于锥形罩的侧壁41上的第一通风孔411关闭时,位于锥形罩的顶部42的第二通风孔421能够将气流导向前方。
综上所述,通过控制锥形罩上的第一通风孔411与第二通风孔421的开闭,能够使锥形罩具有不同的导风效果,能够使气流流向不同的方向,从而实现了不同的衣物处理效果,进而提高了衣物处理装置的衣物处理效果。
结合图9-图14所示实施例,导风罩4还包括,安装部43,导风罩4通过安装部43安装于衣物处理桶1的底壁,以使导风罩4能够稳定的设置在衣物处理装置内,确保导风罩4设置的稳定性。
在一些实施例中,导风罩4通过安装部43可拆卸的安装在衣物处理桶1的底壁,以便于导风罩4的更换,以便于通过更换导风罩4实现不同的导风效果。
可选的,导风罩4通过安装部43卡接固定在衣物处理桶1的底壁上。
在另一些实施例中,导风罩4通过安装部43固定安装在衣物处理桶1的底壁上。
进一步,第一进风区11设有多个第一进风孔,第一进风孔连通第一风道10和衣物处理桶1的内腔,换言之,第一风道10内的气流能够通过衣物处理桶1的底壁上的第一进风区11上开设的第一进风口进入衣物处理桶1。
第二进风区12设有多个第二进风孔,第二进风孔连通第二风道20和衣物处理桶1的内腔。换言之,第二风道20内的气流能够通过衣物处理桶1的底壁上的第二进风区12上开设的第二进风口121进入到衣物处理桶1的内腔。
根据本申请的一些实施例,多个第一进风孔沿一圆周的周向间隔排布,以使衣物处理装置通过第一进风口进入衣物处理桶1的气流的流速均匀,以使气流在衣物处理桶1内的流动效果更好。
第一进风孔形成沿圆周的周向延伸的长形孔,以使第一进风口的出风面积更大,从而使得通过第一进风区11进入到衣物处理桶1内的气流流量更大,从而提高了衣物处理装置对衣物处理的效果。
参照图10和图11,多个第二进风孔沿第一进风区11的周向和/或径向间隔排布,以使衣物处理装置通过第二进风口121进入衣物处理桶1的气流的流速均匀,以使气流在衣物处理桶1内的流动效果更好。
第二进风孔的通流面积小于第一进风孔的通流面积,因此使得通过第一进风区11进入到衣物处理桶1内的气流流量相较于通过第二进风区12进入到衣物处理桶1内的气流流量更大,从而使得更多的气体能够经过导风罩4的导向,从而提高了衣物处理装置对衣物的处理效果。
根据本申请的一些实施例,衣物处理装置还包括:第一密封件和第二密封件,第一密封件设于壳体与桶底之间且与壳体、桶底之间限定出第一过渡腔,第一过渡腔连通第一进风孔和第一风道10,第二密封件设于壳体与桶底之间,第一密封件、第二密封件、 壳体和桶底之间限定出第二过渡腔,第二过渡腔连通第二进风孔和第二风道20,通过第一密封件与第二密封件的设计能够确保风道的密封性,使得风量损失尽可能的小,提高衣物处理装置的使用体验。
如图1-图8所示,风道壳组件包括:第一罩体2和第二罩体3,第一罩体2与第二罩体3设于壳体外。第一罩体2与壳体之间限定出第一风道10,第二罩体3罩设在第一罩体2的外侧,第二罩体3、第一罩体2与壳体之间限定出第二风道20,换言之,第二罩体3套设在第一罩体2的外侧,第一罩体2内侧形成有空间用于气流的通过,第一罩体2与第二罩体3之间也形成有空间用于气流的通过,并且,在一些实施例中,两个空间之间相互独立,也就是说,两个空间内部通过的气流不会产生交互。
也就是说,第一风道10与第二风道20之间相互独立,互不干扰,在其中一个风道内通过气流时,该风道内的气流不会进入到另一个风道内。如此,可以增大气流的压力,如气流经进入第一风道10内,进入第一风道10内的气流不会进入第二风道20,这可以避免第一风道10内的气流压力降低,从而降低对衣物的吹扫力度。
第一风道10和第二风道20均连通进风口和衣物处理桶1的内腔,也就是说,空气通过进风口进入壳体内并形成气流,该气流能够通过第一风道10进入衣物处理桶1的内腔,也能够通过第二风道20进入衣物处理桶1的内腔。
其中,第二罩体3与壳体之间还限定出进风腔30,进风腔30与第一风道10的进口101、第二风道20的进口201连通。也就是说,进风腔30适于连通在第一风道10的进口101与进风口之间、第二风道20的进口201与进风口之间,从进风口进入衣物处理装置内的气流,首先进入到进风腔30内,通过进风腔30到达第一风道10的进口101与第二风道20的进口201附近,再通过第一风道10和/或第二风道20进入衣物处理桶1的内腔内。
参照图1-图8,衣物处理装置还包括:切换装置5,切换装置5用于开闭第二风道20的进口201,以控制第二风道20与进风腔30之间的气流通断。
具体地,切换装置5能够开闭第二风道20的进口201,在切换装置5打开第二风道20的进口201时,气流能够通过第二风道20的进口201进入第二风道20,并通过第二风道20进入到衣物处理桶1的内腔中。也就是说,在切换装置5打开第二风道20的进口201时,通过进风口进入壳体内的气流能够同时通过第一风道10和第二风道20进入衣物处理桶1的内腔中,此时,由于衣物处理装置内两条风道都能够提供给气流流通,在固定的气体流量的情况下,气流的流速相对较缓。
进一步,在切换装置5关闭第二风道20的进口201时,气流无法通过第二风道20的进口201进入第二风道20,也就无法通过第二风道20进入到衣物处理桶1的内腔中。也就是说,在切换装置5关闭第二风道20的进口201时,通过进风口进入壳体内的气流仅能通过第一风道10进入到衣物处理桶1的内腔中,此时,由于衣物处理装置内仅有一条风道能够提供给气流流通,在固定的气体流量的情况下,气流的流速相对较快。
也就是说,切换装置5通过开闭第二风道20的进口201以控制第二风道20与进风口之间的气流通断,以使气流具有不同的运行路径,进而使得衣物处理装置能够在不同的通风方式之间转换,并在转换过程中对气流的流速与流量进行改变,从而达到更好的调整通入衣物处理腔内的气流的流速和流量的目的。
参照图7和图8,切换装置5包括:至少一个切换板,切换板能够阻挡气流的流通,以实现风道的隔断。其中,切换板可摆动地设于第二罩体3内,切换板能够摆动到阻挡气流流动到第二风道20内的位置,切换板也能够摆动到无法阻挡气流流动到第二风道20内的位置。也就是说,切换装置5通过切换板的摆动实现了在打开状态和关闭状态之间切换。
其中,在关闭状态下,切换板关闭第二风道20的进口201以隔断进风口与第二风道20,此时,气流无法通过第二风道20的进口201进入第二风道20,也就无法通过第二风道20进入到衣物处理桶1的内腔中。也就是说,在切换装置5关闭第二风道20的进口201时,通过进风口进入壳体内的气流仅能通过第一风道10进入到衣物处理桶1的内腔中,此时,由于衣物处理装置内仅有一条风道能够提供给气流流通,在固定的气体流量的情况下,气流的流速相对较快。
在打开状态下,切换板打开第二风道20的进口201以导通进风口与第二风道20,气流能够通过第二风道20的进口201进入第二风道20,并通过第二风道20进入到衣物处理桶1的内腔中。也就是说,在切换装置5打开第二风道20的进口201时,通过进风口进入壳体内的气流能够同时通过第一风道10和第二风道20进入衣物处理桶1的内腔中,此时,由于衣物处理装置内两条风道都能够提供给气流流通,在固定的气体流量的情况下,气流的流速相对较缓。
也就是说,通过控制切换板位于不同的位置,能够控制第二风道20的进口201的打开与关闭,从而控制了气流改变运行路径,进而使得衣物处理装置能够在不同的通风方式之间转换,并在转换过程中对气流的流速与流量进行改变,从而达到更好的调整通入衣物处理腔内的气流的流速和流量的目的。
如图7和图8所示,切换板具有避让部53,避让部53的设置能够避免切换板的设置影响第一风道10的通风效果。切换板能够在切换装置5处于关闭状态下关闭第二风道20的进口201,避让部53能够在切换装置5处于关闭状态下避开第一风道10的进口101。由此,确保了第一风道10能够保持在良好的通风状态下,避免在切换板关闭第二风道20的进口201时对第一风道10的进口101的通风效果造成影响。
参照图2和图6,切换装置5还包括:驱动部件54,驱动部件54能够为切换装置5的运动提供动力,其中,驱动部件54与切换板连接,用于驱动切换板摆动。
在一些实施例中,驱动部件54可以为电机,电机的电机轴与切换板连接,通过电机轴的转动驱动切换板摆动。因此,通过控制电机的运行,即可控制切换板的位置,进而能够控制切换装置5在打开状态和关闭状态之间切换,从而控制气流改变运行路径,进而使得衣物处理装置能够在不同的通风方式之间转换,并在转换过程中对气流的流速与流量进行改变,从而达到更好的调整通入衣物处理腔内的气流的流速和流量的目的。
结合图1-图8所示实施例,第一罩体2设于第二罩体3内的中部,以使衣物处理装置的整体结构更合理,使第二风道20两侧的宽度相似,通风效果更均匀。
进一步,切换板包括两个且分别为第一板部51和第二板部52,以在两侧共同对第二风道20的进口201的开启与闭合进行控制,以使控制效果更好,并且能够避免切换板的设置占用更多的安装空间,使得整体结构更合理。并且,第一板部51的转轴和第二板部52的转轴位于第二罩体3的相对两侧,以使第二罩体3的结构更均匀,确保罩体两侧的风阻相同,以使第二风道20内的风量更均匀。
可选的,切换板可以为一块切换板,以减少驱动部件54的数量,使得整体结构更简洁。
其中,切换装置5可以设置在第二风道20与过流风道的连接处。
如图4和图8所示,过流风道内还设置有风机6,风机6能够为气流的流动提供动力,以使衣物处理装置内能够具有源源不断的气流进入到衣物处理桶1的内腔内。
在第二罩体3的内壁还可以设有蜗舌7,蜗舌7位于风机6与第一风道10/第二风道20的进口201之间,以提高风道内的气体流动效果。
下面结合图示附图描述衣物处理装置的一个具体实施例。
本申请实施例的衣物处理装置可以为干衣机。干衣机包括壳体、衣物处理桶1、第 一罩体2、第二罩体3、切换装置5、导风罩4和风机6。
其中,壳体内设置有衣物处理桶1,用于放置待处理的衣物,衣物在衣物处理桶1的内腔内进行处理,在壳体上开设有进风口,第二罩体3设于壳体外,第二罩体3与壳体之间形成有一定的空间,第一罩体2与风机6设置在第二罩体3与壳体之间形成的空间内,其中风机6设置在第二罩体3与壳体之间形成的空间内靠近进风口的位置,以使第二罩体3与壳体形成的空间内能够形成气流,形成的气流沿着第二罩体3与壳体之间限定出的进风腔30向衣物处理桶1的内腔流动。
第一罩体2设置在第二罩体3的内部,且设置在壳体与第二罩体3之间,由此,第二罩体3、第一罩体2和壳体共同形成了内外两个风道,其中,第一罩体2与壳体之间限定出第一风道10,第二罩体3、第一罩体2与壳体之间限定出第二风道20,第一风道10与第二风道20能够连通进风腔30与衣物处理桶1的内腔。
切换装置5设置在第二风道20与进风腔30的连接处,切换装置5包括:电机、第一板部51和第二板部52,第一板部51和第二板部52的一端可转动的连接在第二罩体3的两侧,且能够通过电机的驱动在第二罩体3内摆动。切换装置5通过第一板部51和第二板部52的摆动实现了在打开状态和关闭状态之间切换。
其中,在关闭状态下,第一板部51和第二板部52关闭第二风道20的进口201以隔断进风口与第二风道20,此时,气流无法通过第二风道20的进口201进入第二风道20,也就无法通过第二风道20进入到衣物处理桶1的内腔中。也就是说,在切换装置5关闭第二风道20的进口201时,通过进风口进入壳体内的气流仅能通过第一风道10进入到衣物处理桶1的内腔中,此时,由于衣物处理装置内仅有一条风道能够提供给气流流通,在固定的气体流量的情况下,气流的流速相对较快。
在打开状态下,第一板部51和第二板部52打开第二风道20的进口201以导通进风口与第二风道20,气流能够通过第二风道20的进口201进入第二风道20,并通过第二风道20进入到衣物处理桶1的内腔中。也就是说,在切换装置5打开第二风道20的进口201时,通过进风口进入壳体内的气流能够同时通过第一风道10和第二风道20进入衣物处理桶1的内腔中,此时,由于衣物处理装置内两条风道都能够提供给气流流通,在固定的气体流量的情况下,气流的流速相对较缓。
也就是说,通过电机控制第一板部51和第二板部52位于不同的位置,能够控制第二风道20的进口201的打开与关闭,从而控制了气流改变运行路径,进而使得衣物处理装置能够在不同的通风方式之间转换,并在转换过程中对气流的流速与流量进行改变,从而达到更好的调整通入衣物处理桶的内腔内的气流的流速和流量的目的。
其中,在衣物处理桶1的底壁包括位于中部的第一进风区11,以及环绕第一进风区11的第二进风区12,第一进风区11设有第一进风口,第二进风区12设有第二进风口121。
进一步,当气流仅通过第一进风区11或者第二进风区12进入衣物处理桶1的内腔时,气流的流速较快,具有穿透力的气流能够快速的对衣物中不易吹干的部分进行吹干,确保衣物处理装置的干衣功能能够可靠的运行,确保衣物处理装置的干衣效果。
当气流同时通过第一进风区11与第二进风区12进入到衣物处理桶1的内腔中时,衣物处理桶1内的气流均匀,能够对衣物处理桶1的内腔内的衣物整体进行吹干,并且,由于气流能够均匀流动,避免了衣物处理装置在烘干过程中出现衣物吸附在过滤网上的现象,提高了使用者的使用体验。
在一些实施例中,第一进风口与第一风道10连通,第二进风口121与第二风道20连通。
在衣物处理桶1底壁上第一进风区11的内侧设置有导风罩4,导风罩4形成为锥形 罩,锥形罩上开设有多个通风孔。
在一些实施例中,锥形罩为多个,多个锥形罩通过安装部43可拆卸的安装在衣物处理桶1的底壁上,通过安装不同的锥形罩,能够实现不同的导风效果,从而实现了不同的衣物处理效果。
多个锥形罩中的一个锥形罩上开设有沿锥形罩的周向和/或轴向间隔分布在锥形罩的侧壁41上的第一通风孔411和设于锥形罩的顶部42的第二通风孔421,第一通风孔411能够将气流导向四周,第二通风孔421能够将气流导向前方,此时衣物处理桶1的内部各处均具有流通的气流。
多个锥形罩中的一个锥形罩上开设有沿锥形罩的周向和/或轴向间隔分布在锥形罩的侧壁41上的第一通风孔411,并且锥形罩的顶部42不设有通风孔。此时,第一通风孔411能够将气流导向四周。
多个锥形罩中的一个锥形罩的顶部42设置有第二通风孔421,并且锥形罩的侧壁41不设有通风孔。此时,第二通风孔421能够将气流导向前方。
综上所述,通过选择不同的锥形罩,能够使气流流向不同的方向,能够实现不同的导风效果,从而实现了不同的衣物处理效果,进而提高了衣物处理装置的衣物处理效果。
在另一些可选的实施例中,第一通风孔411和第二通风孔421可以开启与闭合的设于锥形罩的侧壁41和锥形罩的顶部42,在第一通风孔411和第二通风孔421全部开启时,第二通风孔421能够将气流导向前方,第一通风孔411能够将气流导向四周,此时衣物处理桶1的内部各处均具有流通的气流。
在设于锥形罩的侧壁41上的第一通风孔411开启,设于锥形罩的顶部42的第二通风孔421关闭时,位于锥形罩的侧壁41上的第一通风孔411能够将气流导向四周。
在设于锥形罩的顶部42的第二通风孔421开启,设于锥形罩的侧壁41上的第一通风孔411关闭时,位于锥形罩的顶部42的第二通风孔421能够将气流导向前方。
综上所述,通过控制锥形罩上的第一通风孔411与第二通风孔421的开闭,能够使锥形罩具有不同的导风效果,能够使气流流向不同的方向,从而实现了不同的衣物处理效果,进而提高了衣物处理装置的衣物处理效果。
并且,当在切换装置5关闭第二风道20的进口201时,通过进风口进入壳体内的气流仅能通过第一风道10进入到衣物处理桶1的内腔中,此时,锥形罩能够将从第一进风口进入衣物处理桶1的气流导向衣物处理桶1的内腔的四周,避免了由于第二进风口121不出风而导致的衣物处理桶1的内腔的边沿没有气流流动的弊端,提高了衣物处理装置的衣物处理效果。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“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必须针对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。此外,本领域的技术人员可以将本说明书中描述的不同实施例或示例进行接合和组合。
尽管上面已经示出和描述了本申请的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本申请的限制,本领域的普通技术人员在本申请的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (12)

  1. 一种衣物处理装置,其中,包括:
    壳体;
    衣物处理桶,所述衣物处理桶可转动地设于所述壳体内,所述衣物处理桶的桶底具有第一进风区和第二进风区,所述第一进风区设于所述桶底的中部,所述第二进风区环绕所述第一进风区;
    风道壳组件,所述风道壳组件与所述壳体之间限定出第一风道和第二风道;
    其中,所述衣物处理装置具有第一通风模式和第二通风模式,在所述第一通风模式下,所述第一进风区连通所述第一风道和所述衣物处理桶的内腔,在所述第二通风模式下,所述第一进风区连通所述第一风道和所述衣物处理桶的内腔且所述第二进风区连通所述第二风道和所述衣物处理桶的内腔。
  2. 根据权利要求1所述的衣物处理装置,其中,所述桶底的内侧设有导风罩,所述导风罩覆盖所述第一进风区,所述导风罩上开设有多个通风孔,所述通风孔连通所述第一风道和所述衣物处理桶的内腔。
  3. 根据权利要求2所述的衣物处理装置,其中,所述导风罩凸出于所述桶底的内表面,所述导风罩具有周壁和顶壁,多个所述通风孔设于所述导风罩的周壁和/或所述导风罩的顶壁。
  4. 根据权利要求2所述的衣物处理装置,其中,所述导风罩形成为锥形罩。
  5. 根据权利要求4所述的衣物处理装置,其中,
    多个所述通风孔包括第一通风孔,多个所述第一通风孔沿所述锥形罩的周向和/或轴向间隔分布在所述锥形罩的侧壁;和/或,
    多个所述通风孔包括第二通风孔且所述第二通风孔设于所述锥形罩的顶部。
  6. 根据权利要求1所述的衣物处理装置,其中,
    所述第一进风区设有多个第一进风孔,所述第一进风孔连通所述第一风道和所述衣物处理桶的内腔,
    所述第二进风区设有多个第二进风孔,所述第二进风孔连通所述第二风道和所述衣物处理桶的内腔。
  7. 根据权利要求6所述的衣物处理装置,其中,多个所述第一进风孔沿一圆周的周向间隔排布,所述第一进风孔形成沿所述圆周的周向延伸的长形孔。
  8. 根据权利要求6所述的衣物处理装置,其中,多个所述第二进风孔沿所述第一进风区的周向和/或径向间隔排布,所述第二进风孔的通流面积小于所述第一进风孔的通流面积。
  9. 根据权利要求6所述的衣物处理装置,其中,所述第二进风孔的通流面积小于所述第一进风孔的通流面积。
  10. 根据权利要求6所述的衣物处理装置,其中,还包括:
    第一密封件,所述第一密封件设于所述壳体与所述桶底之间且与所述壳体、所述桶底之间限定出第一过渡腔,所述第一过渡腔连通所述第一进风孔和所述第一风道;
    第二密封件,所述第二密封件设于所述壳体与所述桶底之间,所述第一密封件、所述第二密封件、所述壳体和所述桶底之间限定出第二过渡腔,所述第二过渡腔连通所述 第二进风孔和所述第二风道。
  11. 根据权利要求1-10中任一项所述的衣物处理装置,其中,所述风道壳组件包括:
    第一罩体,所述第一罩体设于所述壳体外与所述壳体之间限定出所述第一风道;
    第二罩体,所述第二罩体罩设在所述第一罩体的外侧,所述第二罩体、所述第一罩体与所述壳体之间限定出所述第二风道,
    其中,所述第二罩体与所述壳体之间还限定出进风腔,所述进风腔与所述第一风道的进口、所述第二风道的进口连通。
  12. 根据权利要求11所述的衣物处理装置,其中,还包括:
    切换装置,所述切换装置用于开闭所述第二风道的进口,以通过控制所述第二风道与所述进风腔之间的气流通断使所述衣物处理装置在所述第一通风模式和所述第二通风模式之间可切换。
PCT/CN2023/101432 2022-06-22 2023-06-20 衣物处理装置 WO2023246791A1 (zh)

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CN106958130A (zh) * 2017-04-12 2017-07-18 广东美的厨房电器制造有限公司 微波干衣机
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