WO2022193638A1 - 衣物护理机 - Google Patents

衣物护理机 Download PDF

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Publication number
WO2022193638A1
WO2022193638A1 PCT/CN2021/124571 CN2021124571W WO2022193638A1 WO 2022193638 A1 WO2022193638 A1 WO 2022193638A1 CN 2021124571 W CN2021124571 W CN 2021124571W WO 2022193638 A1 WO2022193638 A1 WO 2022193638A1
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WO
WIPO (PCT)
Prior art keywords
clothes
hanger
clothes hanger
channel
adapter
Prior art date
Application number
PCT/CN2021/124571
Other languages
English (en)
French (fr)
Inventor
方化
Original Assignee
广州视源电子科技股份有限公司
广州易家智能电子科技有限公司
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.)
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Application filed by 广州视源电子科技股份有限公司, 广州易家智能电子科技有限公司 filed Critical 广州视源电子科技股份有限公司
Publication of WO2022193638A1 publication Critical patent/WO2022193638A1/zh

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F73/00Apparatus for smoothing or removing creases from garments or other textile articles by formers, cores, stretchers, or internal frames, with the application of heat or steam 
    • D06F73/02Apparatus for smoothing or removing creases from garments or other textile articles by formers, cores, stretchers, or internal frames, with the application of heat or steam  having one or more treatment chambers
    • 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
    • D06F58/10Drying cabinets or drying chambers having heating or ventilating means
    • 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
    • D06F58/20General details of domestic laundry dryers 
    • D06F58/203Laundry conditioning arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F87/00Apparatus for moistening or otherwise conditioning the article to be ironed or pressed

Definitions

  • the present application relates to the technical field of laundry cleaning, for example, to a laundry care machine.
  • the clothing care machine can perform care such as deodorization, leveling, and ironing of the clothing, so that the clothing is neat and new, and is generally welcomed.
  • the clothes care machine usually includes a care box and a rotating module located in the nursing box.
  • a clothes hanger with a spray function is fixed on the rotating shaft of the rotating module, and water enters the inside of the clothes hanger through the rotating shaft. Since the above-mentioned clothes hanger is fixed on the rotating shaft of the rotating module, it is inconvenient to operate when picking and placing clothes on the clothes hanger.
  • a detachable hanger with spray can be provided, the end face of the rotating shaft of the rotating module is provided with a spray transfer structure, and a water inlet joint corresponding to the spray transfer structure is provided in the top middle area of the hanger.
  • the water inlet joint is provided on the hanger, the middle of the hanger is blocked, which makes it difficult to set an air inlet channel on the hanger, thereby affecting the care effect of the clothes.
  • the present application provides a clothes care machine, which can be provided with a water inlet structure and an air inlet structure on a clothes hanger at the same time, and the clothes care effect is good.
  • the clothes care machine includes: a body, a care system, a transfer structure and a rotatable clothes hanger, the care system and the clothes hanger are both located in the body, and the care system has an air channel and a liquid channel for the clothes hanger;
  • the transfer structure includes a transfer case and a guide assembly arranged on the side of the transfer case, and the clothes hanger is detachably connected to the care system through the transfer case, so that the care system provides the air flow for caring clothes into the body in turn.
  • the air flow channel and the top of the clothes hanger are guided into the clothes on the clothes hanger, and the guide component is communicated with the liquid channel, so as to provide the liquid that the nursing system provides into the body for caring clothes and guide the clothes to the clothes hanger through the liquid channel and the side of the clothes hanger in turn. in clothing.
  • the care system includes a rotating unit and an air supply unit, and the rotating unit has at least one rotating shaft rotatable around its own axis;
  • the air supply unit includes at least one air channel of the clothes hanger, the rotating shaft is inserted in the air channel of the clothes hanger, and partially extends out of the air channel of the clothes hanger to be connected with the adapter shell, so as to drive the clothes hanger to rotate through the adapter shell;
  • the adapter housing and the hanger air channel are arranged in a one-to-one correspondence, and the clothes hanger air channel and the rotating shaft are arranged in a one-to-one correspondence.
  • the care system further includes a liquid supply unit, and the liquid supply unit includes a liquid channel;
  • the rotating shaft is provided with a liquid inlet hole extending along its axis to form a liquid channel, and a part of the guide assembly extends into the adapter housing and communicates with the liquid inlet hole oppositely.
  • an adapter housing has an adapter accommodating cavity, the adapter accommodating cavity has an adapter connection seat, and the adapter connection seat is connected to the inner wall of the adapter accommodating cavity.
  • the transfer connecting seat Connected by at least two rib plates, the transfer connecting seat has a receiving groove, the rotating shaft is inserted in the receiving groove and is detachably connected with the transfer connecting seat;
  • the adapter connection seat is provided with a pipeline joint communicating with the accommodating groove, the first end of the pipeline joint is communicated with the liquid inlet hole, and the diversion component partially extends into the adapter shell and communicates with the second end of the pipeline joint.
  • the adapter housing has opposite first openings and second openings, and both the first opening and the second opening are communicated with the adapter accommodating cavity, and the rotating shaft It is inserted into the accommodating groove through the first opening, the first opening is opposite to and communicated with the air flow channel of the hanger, the top of the hanger has an air inlet of the hanger, the second opening is opposite to the air inlet of the hanger and communicated with the air inlet of the hanger, and the hanger has an air inlet.
  • the air inlet of the clothes hanger is located in the area covered by the second opening, and the rib plate divides the transfer accommodation cavity into at least two wind power transfer areas, and each wind power The sum of the cross-sectional areas of the transfer areas is greater than the cross-sectional area of the air inlet of the hanger and is smaller than the cross-sectional area of the second opening.
  • the diversion assembly includes a diversion tube, a fixing seat and an openable and closable valve, and the adapter housing further has an installation cavity, and the installation cavity is located in the adapter accommodation.
  • the fixing seat is partially inserted in the installation cavity and extends toward the hanger;
  • the first end of the diversion tube extends into the adapter housing and communicates with the second end of the pipeline joint, the second end of the diversion tube is communicated with the first end of the diversion channel, and the valve It is located in the guide channel to close the second end of the guide channel.
  • the guide tube located in the adapter housing is located above a rib and at least partially overlaps the rib;
  • the diversion assembly also includes an inlet pressure plate connected to the fixed seat, the inlet pressure plate is opposite to the second end of the diversion channel and communicates with the second end of the diversion channel, and the valve includes an elastic member, a blocking head and a pressure plate sealing seat.
  • the first end of the piece is connected with the inner wall of the guide channel, and the second end of the elastic piece is connected with the blocking head, and the blocking head abuts against the pressing plate sealing seat to block the pressing plate sealing seat.
  • the first end of the pressing plate sealing seat is inserted into the guiding channel through the second end of the guiding channel, and the first end of the pressing plate sealing seat has an inverted angle, the plugging head abuts against the chamfer, and the second end of the pressure plate sealing seat abuts between the end face of the second end of the diversion channel and the inlet pressure plate;
  • the inner side wall of the pressing plate sealing seat and/or the end face of the second end of the pressing plate sealing seat is provided with a waterproof ring, and the waterproof ring is arranged along the circumferential direction of the pressing plate sealing seat.
  • the clothes hanger has a one-way joint and a spray assembly communicating with the one-way joint.
  • the inlet pressure plate and the pressure plate sealing seat are in contact with the plugging head, and the plugging head is kept away from the pressure plate sealing seat, so as to communicate with the spray assembly and the diversion channel.
  • At least one of the upper part of the clothes hanger and the lower part of the adapting accommodating cavity has at least one sliding rail, and the other has at least one extension part, When the clothes hanger is inserted into the transfer accommodating cavity through the second opening, the extension part is inserted into the slide rail and moves along the slide rail.
  • the number of slide rails is two, and the two slide rails are respectively located on the opposite inner side walls of the lower part of the transition accommodating cavity, and the extension part is located on the top of the clothes hanger ;
  • the extending direction of the slide rail is consistent with the direction from the front side to the rear side of the body.
  • the inner side wall of the adapting accommodating cavity has at least one lock groove
  • the clothes hanger has at least one lock matched with the lock groove, extending
  • the lock is snapped into the lock groove, so that the hanger is snapped on the adapter housing, and the one-way joint is in contact with the blocking head; Under the action of external force, it is released from the clamping connection with the groove of the lock.
  • the clothes hanger is detachably connected to the care system through the adapter shell, so that the air in the air flow channel of the clothes hanger of the care system can pass through the clothes hanger.
  • the top part enters the clothes on the hanger; the guide component is communicated with the liquid channel, so that the liquid in the liquid channel enters the clothes on the hanger through the side of the clothes hanger.
  • the rotatable clothes hanger can simultaneously intake air and liquid through the switching structure, and the air intake and the liquid do not affect each other, thereby improving the care effect of clothes.
  • FIG. 1 is a schematic structural diagram of a clothing care machine provided by an embodiment of the application
  • FIG. 2 is a schematic diagram of the internal structure of the clothes care machine provided by the embodiment of the application;
  • FIG. 3 is a schematic structural diagram of a care system and a clothes hanger in a clothes care machine provided by an embodiment of the present application;
  • Fig. 4 is the exploded view of Fig. 3;
  • FIG. 5 is an exploded view of a part of the air supply unit in the clothes care machine provided by the embodiment of the application;
  • Fig. 6 is the partial enlarged view of A place in Fig. 2;
  • Fig. 7 is the sectional view of the B-B section in Fig. 3;
  • Fig. 8 is a partial enlarged view at C in Fig. 2;
  • FIG. 9 is a schematic structural diagram of an accommodation chamber partition housing in a clothing care machine provided by an embodiment of the present application.
  • FIG. 10 is a schematic structural diagram of a middle and lower casing of the clothing care machine provided by an embodiment of the application.
  • FIG. 11 is a schematic structural diagram of an air guide housing of a clothing care machine provided by an embodiment of the application.
  • Figure 12 is a sectional view of the D-D section in Figure 11;
  • FIG. 13 is a schematic structural diagram of a clothes hanger in a clothes care machine provided by an embodiment of the application.
  • FIG. 14 is a schematic structural diagram of another angle of the clothes hanger in the clothes care machine provided by the embodiment of the application.
  • Fig. 15 is an exploded view of the rotating unit in the laundry care machine provided by the embodiment of the application.
  • 16 is a schematic structural diagram of a part of a rotating unit in a laundry care machine provided by an embodiment of the application;
  • Fig. 17 is a top view of a part of the rotating unit in the laundry care machine provided by the embodiment of the application;
  • Figure 18 is a sectional view of the F-F section in Figure 17;
  • FIG. 19 is a schematic structural diagram of the first state of the rotating unit in the laundry care machine provided by the embodiment of the application.
  • 20 is a schematic structural diagram of the second state of the rotating unit in the laundry care machine provided by the embodiment of the application;
  • 21 is a schematic structural diagram of a third state of a rotating unit in a laundry care machine provided by an embodiment of the application.
  • Fig. 22 is an exploded view of the rotating shaft assembly in the laundry care machine provided by the embodiment of the application;
  • FIG. 23 is a schematic structural diagram of a swing rod in a laundry care machine provided by an embodiment of the application.
  • 24 is a schematic structural diagram of a slider in a laundry care machine provided by an embodiment of the application.
  • 25 is a schematic structural diagram of a crank in the laundry care machine provided by an embodiment of the application.
  • 26 is a schematic structural diagram of an active turntable in a laundry care machine provided by an embodiment of the application.
  • FIG. 27 is a schematic structural diagram of a rotating shaft in a laundry care machine provided by an embodiment of the application.
  • Figure 28 is a partial enlarged view at G in Figure 2;
  • 29 is a schematic structural diagram of a clothes hanger and a switching structure in a clothes care machine provided by an embodiment of the application;
  • Fig. 30 is an exploded view of the clothes hanger and the switching structure in the clothes care machine provided by the embodiment of the application;
  • 31 is a schematic diagram of the internal structure of the rotating shaft of the laundry care machine provided by the embodiment of the application.
  • FIG. 32 is a schematic structural diagram of a switching structure in a clothing care machine provided by an embodiment of the application.
  • Figure 34 is a sectional view of the H-H section in Figure 33;
  • Figure 35 is a sectional view of the I-I section in Figure 34;
  • Fig. 36 is an exploded view of the switching structure in the laundry care machine provided by the embodiment of the application.
  • FIG. 37 is a schematic structural diagram of a pressure plate sealing seat in a laundry care machine provided by an embodiment of the application.
  • FIG. 38 is a schematic diagram of the internal structure of the pressure plate sealing seat in the laundry care machine provided by the embodiment of the application.
  • 100-care box body 110-box body shell; 120-inner tank; 130-door body; 140-installation space; 150-care space; 160-clothing;
  • 300-liquid supply unit 310-clean water tank; 320-water pump; 330-first water pipe; 340-second water pipe; 350-liquid channel;
  • 500-rotating unit 510-rotating shaft; 511-rotating shaft first socket; 512-rotating shaft sealing ring; 513-rotating shaft second socket; 514-bearing; 515-bearing cover; 516-bearing sleeve; 5161-first A stop part; 520- driving part; 5- swing structure; 530- connecting assembly; 531- swing rod; 5311- swing rod chute; 5312- swing rod connecting part; 5313- roller; 5314- roller mounting groove; 5315 -Detection component mounting groove; 532-slider; 5321-slider sliding part; 5322-slider insertion part; 5323-slider extension part; 5324-slide gasket; 5325-shim sleeve; 533-crank; -First connecting part; 5332-Second connecting part; 534- Swing rod support frame; 5341- Swing rod end chute; 535- Linking rod; 540- Turntable assembly; 543-Second stop; 550
  • 600-transfer structure 610-transfer shell; 611-transfer accommodation cavity; 6111-wind power transfer area; 6112-slide rail; 6113-lock groove; 612-transfer connection seat; 6121-accommodating groove 6122-pipe joint; 613-rib; 614-first opening; 615-second opening; 616-installation cavity; 620-guide assembly; 621-guide pipe; channel; 623-valve; 6231-elastic part; 6232-blocking head; 6233-pressing plate sealing seat; 6234-chamfering; 6235-waterproof ring; 624-inlet pressure plate;
  • 700-detection component 710-detection piece; 720-induction piece;
  • Fig. 1 is a schematic structural diagram of a clothing care machine provided by an embodiment of the application
  • Fig. 2 is a schematic diagram of an internal structure of the clothing care machine provided by an embodiment of the application
  • Fig. 3 is a care system and a clothes hanger in the clothing care machine provided by an embodiment of the application Schematic diagram of the structure
  • Figure 4 is the exploded view of Figure 3.
  • the clothes care machine provided in the embodiment of the present application includes a body, the body includes a care box 100 and a door 130 , and the care box 100 includes a box shell 110 and a Liner 120.
  • the door body 130 is hinged on the box shell 110, and the door body 130 and the inner container 120 form a closed care space 150, wherein the care space 150 is used for accommodating the clothes 160, which may be a rectangular space, a cylindrical space, or the like.
  • the door body 130 can be opened relative to the inner container 120 to expose the care space 150 , so that the clothes 160 can be placed in the care space 150 .
  • the nursing box 100 is a rectangular box with an open front side, and the door 130 is installed on the front side of the nursing box 100 .
  • the orientation word "front” refers to the side facing the user, that is, the side facing the door body 130; the orientation word “rear” refers to the side facing the door body 130 opposite side.
  • the front side of the inner tank 120 is consistent with the front side of the nursing box body 100, the rear side of the inner tank 120 is consistent with the rear side of the nursing box body 100, and the height of the inner tank 120 or the height direction of the clothes care machine is the same as the vertical direction Consistent.
  • the clothes care machine provided by the embodiment of the present application further includes a clothes hanger 200 and a care system, and the care system includes a liquid supply unit 300 , an air supply unit 400 and a rotation unit 500 .
  • the air supply unit 400 may include a first air supply assembly 410 and a second air supply assembly 420 .
  • the clothes hanger 200 is installed on the top of the inner tank 120 of the nursing box 100, and the clothes hanger 200 plays the role of supporting the clothes 160; the liquid supply unit 300 sprays water mist into the clothes 160 through the clothes hangers 200, so as to remove wrinkles and shape the clothes 160;
  • the second air supply assembly 420 provides a recyclable air flow (such as hot air, cold steam or hot steam) into the inner tank 120
  • the first air supply assembly 410 provides a recyclable air flow (such as hot air, cold steam or hot steam) to the inside of the clothes 160 through the clothes hanger 200 (steam or hot steam), through the circulation of airflow, the clothes can be dewrinkled, heated up and deodorized, etc.
  • a volatile care agent can be added to the first air supply assembly 410 and/or the second air supply assembly 420, and the care agent will dissolve in the
  • the steam enters the inner tank 120, and is blown toward the clothes 160 along with the circulation of the airflow, so as to care for the clothes 160.
  • the rotating unit 500 can
  • an installation space 140 is formed between the inner wall of the box shell 110 and the outer wall of the inner tank 120, wherein the lower part of the installation space 140 can be used to install the liquid supply unit 300 and the second air supply assembly 420, and the installation space 140
  • the upper part can be used to accommodate the rotating unit 500 and the first air supply assembly 410 , that is, the rotating unit 500 and the first air supply assembly 410 are located between the upper part of the inner tank 120 and the inner top wall of the box shell 110 .
  • the rotating unit 500 is located at the inner top of the inner container 120 .
  • the liquid supply unit 300 in the present application may include a clean water tank 310 , a water pump 320 and a first water pipe 330 ; the water inlet end of the water pump 320 passes through the first water pipe 330 and the clean water tank 310 The water outlet end of the water pump 320 is communicated with the clothes hanger 200 through the second water pipe 340 . The water in the clean water tank 310 is sucked into the clothes hanger 200 by the water pump 320 .
  • the second air supply assembly 420 , the water purification tank 310 and the water pump 320 may be located below the inner tank 120 , and the first air supply assembly 410 and the rotating unit 500 may be located above the inner tank 120 .
  • the rotating unit 500 may be located above the first air supply assembly 410, but in this way, the effective utilization rate of the inner tank 120 is not increased, but the overall height of the clothes care machine is increased.
  • the rotating unit 500 is located in the inner container 120 , so that the rotating unit 500 occupies the space in the height direction of the inner container 120 , resulting in a decrease in the effective utilization rate of the inner container 120 .
  • FIG. 5 is an exploded view of a part of the air supply unit in the clothing care machine provided by the embodiment of the application;
  • Fig. 6 is a partial enlarged view of A in Fig. 2;
  • Fig. 7 is a sectional view of section B-B in Fig. 3;
  • Fig. 8 is a diagram 2 is a partial enlarged view at C;
  • FIG. 9 is a schematic structural diagram of a housing compartment separating housing in a clothing care machine provided by an embodiment of the application;
  • FIG. 10 is a schematic structural schematic diagram of a middle and lower housing in the clothing care machine provided by an embodiment of the application 11 is a schematic structural diagram of the air guide housing of the clothing care machine provided by the embodiment of the application;
  • FIG. 9 is a schematic structural diagram of a housing compartment separating housing in a clothing care machine provided by an embodiment of the application;
  • FIG. 10 is a schematic structural schematic diagram of a middle and lower housing in the clothing care machine provided by an embodiment of the application
  • 11 is a
  • the air supply unit 400 includes an air supply box 440 , the first air supply assembly 410 is located in the air supply box 440 , and the air supply box 440 has An air circulation channel communicated with the inner bladder 120 to circulate the air flow between the inner bladder 120 and the air supply box 440 .
  • the rotating unit 500 and the first air supply assembly 410 are both located in the body, and the rotating unit 500 and part of the air supply box 440 are located above the inner tank 120, and the first air supply assembly 410 is located at the side of the rotating unit 500, And part of the rotating unit 500 is inserted in the air circulation channel.
  • another part of the air supply box body 440 may be located in the inner tank 120, or be located at the side of the inner tank 120.
  • Part of the air supply box 440 located in the inner tank 120 may be located on the rear side of the inner tank 120, that is, when the hanger 200 is hung in the inner tank 120, the part of the air supply box 440 located in the inner tank 120 and the hanger 200 are located along the inner tank 120.
  • the air supply box 440 occupies the space in the direction of the front side and the rear side of the inner tank 120, it does not occupy the space in the height direction of the inner tank 120. The wiggling had no effect.
  • the rotating unit 500 and part of the air supply box 440 are arranged above the inner tank 120, the first air supply assembly 410 is arranged on the side of the rotating unit 500, and part of the rotating unit 500 is inserted into the air circulation In the passage, in this way, the rotating unit 500 and part of the air supply unit 400 are overlapped, thus, on the basis of not occupying the space in the height direction of the inner tank 120, the total amount of the rotating unit 500 and the air supply unit 400 occupied by the clothing care machine is reduced. height space.
  • the air supply box 440 may include a lower casing 441 and an upper casing 442 covering the lower casing 441 , and the upper casing 442 and the lower casing 441 together
  • the air supply unit accommodating cavity is enclosed, and the air supply unit accommodating cavity has a first cavity 443 and a second cavity 444 communicating with the first cavity 443.
  • the first air supply assembly 410 is located in the first cavity 443, and part of the lower
  • the casing 441 extends into the inner container 120 , and part of the rotating unit 500 is inserted into the second chamber 444 .
  • first chamber 443 and the second chamber 444 there is no strict boundary between the first chamber 443 and the second chamber 444, and the first chamber 443 and the second chamber 444 are only two air supply unit accommodating chambers for accommodating the first air supply unit respectively. Different areas of the wind assembly 410 and part of the rotating unit 500 .
  • the upper casing 442 may be in the shape of a plate
  • the lower casing 441 may include a bottom wall 4411 of the lower casing and a side wall 4412 of the lower casing.
  • the wall 4412 surrounds the bottom wall 4411 of the lower case and is closed, wherein the upper end or the upper part of the side wall 4412 of the lower case is connected with the upper case 442, and the lower end or the lower part of the side wall 4412 of the lower case is connected with the lower case.
  • the bottom wall 4411 is connected.
  • the bottom wall 4411 of the lower case faces the inner pot 120
  • the bottom wall 4411 of the lower case has a flat portion 4413 and a lower case extension portion 4414 connected with the flat portion 4413
  • the lower case extension portion 4414 is located in the inner pot 120 and faces inward The rear side of the gallbladder 120.
  • part of the top wall of the inner pot 120 can be open, in other words, part of the top wall of the inner pot 120 has a lower case mounting hole, and the bottom wall 4411 of the lower case is embedded in the lower case mounting hole, thereby closing the The top wall of the inner pot 120 . That is, the bottom wall 4411 of the lower casing serves as a part of the top wall of the inner pot 120 . In this way, by directly opening a through hole in the bottom wall 4411 of the lower casing, the communication between the inner pot 120 and the accommodating cavity of the air supply unit can be realized.
  • the plane portion 4413 has a lower casing air outlet 4415
  • the lower casing extension portion 4414 has a lower casing air return port 4416
  • the lower casing air outlet 4415 and the lower casing air return port 4416 are used to communicate with the air supply
  • the unit accommodating cavity and the inner tank 120, the air outlet 4415 of the lower shell, the air return port 4416 of the lower shell and the accommodating cavity of the air supply unit together form an air circulation channel.
  • the air outlet 4415 of the lower casing is opposite to the second chamber 444
  • the air return port 4416 of the lower casing is opposite to the first chamber 443 .
  • the air outlet 4415 of the lower casing, the air return port 4416 of the lower casing and the air supply unit accommodating cavity together form an air circulation channel for air circulation between the inner tank 120 and the air supply box 440 .
  • This airflow cycle may be referred to as an auxiliary airflow cycle, and is primarily powered by the first air supply assembly 410 .
  • the laundry care machine also has a primary airflow cycle that is primarily powered by the second air supply assembly 420 .
  • the first air supply assembly 410 may include a first fan 411 and a heater 412 , and the heater 412 is located between the first fan 411 and the upper casing 442 .
  • the heater 412 is used to heat the gas, which can be a PTC heater, a pulley-type hot air blower, or the like.
  • the first fan 411 generates negative pressure to circulate the airflow, and continuously draws the airflow in the inner tank 120 into the first chamber 443 of the accommodating chamber of the air supply unit through the air return port 4416 of the lower casing, and the airflow is heated by the heater 412 and blows to the first chamber 443.
  • the second chamber 444 is then blown into the inner tank 120 through the air outlet 4415 of the lower casing.
  • the number of the lower casing air return ports 4416 may be multiple, and the lower casing air return ports 4416 are arranged in a grid manner to prevent the fingers of users, especially children, from entering the air supply unit accommodating cavity.
  • the first air supply assembly 410 heats the air flow in the accommodating cavity of the air supply unit.
  • the first air supply assembly 410 can output hot air to accelerate the volatilization of moisture in the upper half of the clothes 160 and accelerate the clothes 160 drying speed.
  • the water vapor molecules output by the second air supply component 420 at the bottom can be heated and vaporized for a second time, and then transported to the outer surface and interior of the clothes 169 under the action of the first fan 411, and the secondary heating and vaporization can be performed.
  • the vaporized water vapor is more permeable, and the nursing effect is better.
  • the air supply unit 400 is in an external circulation drying mode.
  • the nursing box 100 is further provided with two ventilation holes communicating with the external environment, and one of the ventilation holes is used to discharge damp and hot gas. , and the other ventilation hole is used for introducing dry and cold air, and thus circulates so as to dry the clothes 160 in the inner tank 120 .
  • the air supply unit 400 is in the inner circulation drying mode.
  • the air supply assembly 420 is used to condense the water vapor in the inner tank 120 to form condensed water, so as to dry the clothes.
  • the second air supply assembly 420 is installed in the installation space 140 at the bottom of the nursing box 100 , and the return air port 421 and the air outlet port 422 of the second air supply assembly 420 are disposed on the bottom wall of the nursing box 100 .
  • the first air supply assembly 410 and the second air supply assembly 420 are respectively disposed on the top and bottom of the nursing box 100 to dry the clothes 160, which is beneficial to improve the drying efficiency, especially for long coats and cotton clothes Wait.
  • the second air supply assembly 420 includes a compressor 425 , an evaporator 426 , a condenser 423 and a second fan 424 .
  • the drying principle of the second air supply assembly 420 provided in the embodiment of the present application is as follows:
  • the second fan 424 rotates to generate a negative pressure area, so that the wet and cold gas in the nursing space 150 enters the installation space 140 at the bottom of the nursing box 100 through the return air port 421;
  • the high-pressure gas releases heat in the condenser 423, and the refrigerant becomes a low-temperature liquid; the released heat heats the wet and cold gas to form a wet and hot gas.
  • the low-temperature liquid refrigerant passes through the evaporator 426, it exchanges heat with the hot and humid gas, and the moisture in the gas is condensed in the evaporator 426 to form condensed water, which is stored in the condensed water tank; the refrigerant in the evaporator 426 is heated and circulated to the compressor 425, The hot and humid gas is heated to form dry gas, which is discharged into the inner tank 120 through the air outlet port 422 , and the clothes in the inner tank 120 are reciprocated in this way.
  • the airflow circulation channel includes a main airflow channel 450, an inner bladder airflow channel 460 and at least one clothes hanger airflow channel 430, each of the clothes hanger airflow channels 430 and the inner bladder airflow channel 460 is communicated with the main airflow channel 450, and each clothes hanger airflow channel 430 and the inner bladder air flow channel 460 are separated from each other. That is, the air flow channels 430 of the hangers can be separated from each other and not communicated with each other. Each hanger airflow channel 430 and the inner bladder airflow channel 460 may be separated from each other and not communicated with each other.
  • the main airflow channel 450 corresponds to the first chamber 443
  • the hanger airflow channel 430 and the inner container airflow channel 460 correspond to the second chamber 444
  • part of the rotating unit 500 is inserted into the clothes hanger airflow channel 430 .
  • the air supply box 440 further includes an accommodating cavity dividing shell 445 located in the accommodating cavity of the air supply unit, and the accommodating cavity dividing shell 445 has a first cavity 4451 and a space adjacent to the first cavity 4451 In the second cavity 4452 , the first air supply assembly 410 is located in the first cavity 4451 , the first cavity 4451 is located in the first cavity 443 , and the second cavity 4452 is located in the second cavity 444 .
  • both sides of the first cavity 4451 and the second cavity 4452 from the upper shell 442 to the lower shell 441 have openings, so that the air flows from the top of the first cavity 445 to the second cavity The top of the body 4452, thereby entering the second cavity 4452.
  • the first air supply assembly 410 also has an air supply assembly fixing seat 413 , the heater 412 and the first fan 411 are both located in the air supply assembly fixing seat 413 , and the air supply assembly fixing seat 413 can be located in the first cavity 445 , one end of the first cavity 445 is communicated with the first cavity 445, and the other end of the first cavity 445 is communicated with the second cavity 4452, so that the air flows from the top of the first cavity 445 to the second cavity 4452 the top of.
  • the heater 412 has at least two heat insulating sleeves 4121 on the peripheral side, and the first cavity 445 has a mounting notch 4423 on the side facing the upper casing 442.
  • the heat insulating sleeve 4121 acts to insulate heat to prevent the heat generated by the heater 412 from being transferred to the upper shell 442 and the lower shell 441 through the accommodating cavity partition shell 445 .
  • the rotating unit 500 has at least one rotating shaft 510 rotatable around its own axis.
  • the rotating shaft 510 is inserted into the hanger airflow channel 430 and is arranged in a one-to-one correspondence with the hanger airflow channel 430
  • the inner wall of the lower housing 441 has an extension
  • At least one closed baffle ring 4417 is placed in the second cavity 4452.
  • the air outlet 4415 of the lower casing includes at least one inner air outlet 4418.
  • the baffle ring 4417 and the inner air outlet 4418 are arranged in a one-to-one correspondence.
  • the inner air outlet 4418 together forms the hanger airflow channel 430 .
  • the inner air outlet 4418 has a support portion 4419 , the rotating shaft 510 abuts on the supporting portion 4419 , and part of the rotating shaft 510 extends into the inner container 120 through the supporting portion 4419 .
  • the air outlet 4415 of the lower casing includes at least one outer air outlet 4420 , the inner side wall of the second cavity 4452 and part of the inner bottom of the lower casing 441
  • the wall, the outer side wall of the retaining ring 4417 and the outer air outlet 4420 together form the inner bladder airflow channel 460
  • the inner bladder airflow channel 460 is arranged around the clothes hanger airflow channel 430 .
  • the retaining ring 4417 can be in the shape of a circular ring or a rectangular ring.
  • a baffle ring 4417 corresponds to an inner air outlet 4418, the inner side wall of the baffle ring 4417 and the inner air outlet 4418 opposite to the baffle ring 4417 together form a hanger airflow channel 430, a rotating shaft 510 is connected to a clothes hanger 200, and a clothes hanger 200 corresponds to a clothes hanger airflow Channel 430.
  • the bottom of the clothes hanger 200 has at least one hanger air outlet 230
  • the top of the clothes hanger 200 has a clothes hanger air inlet 210
  • the clothes hanger air inlet 210 is opposite to the inner air outlet 4418 and communicates with the inner air outlet 4418 .
  • a part of the air flow enters the air inlet 210 of the clothes hanger through the inner air outlet 4418 of the air passage 430 of the clothes hanger, and then flows to the inside of the clothes 160 on the clothes hanger 200 through the air outlet 230 of the clothes hanger (the flow direction of the air flow is shown in FIG. 6 and the solid arrow in FIG. 7 ).
  • the air supply box 440 further includes an air guide casing 446, the air guide casing 446 is located between the accommodation cavity partition casing 445 and the lower casing 441, and the air guide casing 446 has at least one mounting hole. 4461, the mounting holes 4461 are matched with the retaining ring 4417 and are arranged in a one-to-one correspondence.
  • the air guide casing 446 is provided with a plurality of air guide grooves 4462, and the air flow in the gap enters the inner tank 120 through the air guide grooves 4462 and the outer air outlet 4420 in sequence.
  • the air flow entering the air flow channel 460 of the inner container is collected by the air guiding groove 4462, so that the air flow entering the inner container 120 is more concentrated and the spray distance is longer.
  • each air guide groove 4462 is arranged in a rectangular array, the installation holes 4461 are located between two adjacent rows of air guide grooves 4462, and the extension direction of the air guide grooves 4462 is consistent with the row arrangement direction of each air guide groove 4462 At least one side of the extension direction of the air guide groove 4462 is provided with an air guide member 4463, and the air guide member 4463 is inclined toward the outside of the air guide groove 4462, thereby forming a single-sided or double-sided guide for the air guide groove 4462. wind.
  • the included angle E between the air guide member 4463 and the vertical plane extending along the extending direction of the air guide groove 4462 is 15-45°. In this way, processing is convenient, and the air guiding effect of the air guiding groove 4462 is better.
  • the clothes care machine further includes a temperature detection part 800 and a light module 900, the temperature detection part 800 is located in the first chamber 443, and the temperature detection part 800 can be electrically connected with the general controller in the clothes care machine,
  • the temperature in the first chamber 443 is detected by the temperature detector 800.
  • the first air supply assembly 410 can be selected to be closed, and only the second air supply assembly can be opened 420, thereby reducing energy waste.
  • the first air supply assembly 410 and the second air supply assembly 420 are turned on to ensure the care effect of the clothes 160.
  • the lighting module 900 is used to provide light for the inner tank 120 , the lighting module 900 is located in the inner tank 120 , and the lighting module 900 is connected to the extension part 4414 of the lower casing.
  • the light-emitting surface of the lighting module 900 faces the clothing 160.
  • the lighting module 900 can be turned on at the same time.
  • a casing sealing ring 470 is disposed between the upper casing 442 and the accommodating cavity dividing casing 445 , thereby preventing airflow from flowing out through the gap between the upper casing 442 and the accommodating cavity dividing casing 445 .
  • the upper casing 442 has at least one shaft support hole 4421 , the shaft support hole 4421 is sleeved with a shaft shock absorber 4422 , and the shaft 510 is inserted into the hanger airflow channel 430 through the shaft shock absorber 4422 .
  • Fig. 15 is an exploded view of the rotating unit in the laundry care machine provided by the embodiment of the application;
  • Fig. 16 is a schematic structural diagram of a part of the rotating unit in the laundry care machine provided by the embodiment of the application;
  • Fig. 17 is the laundry care machine provided by the embodiment of the application A top view of part of the rotating unit in the machine;
  • Fig. 18 is a sectional view of the F-F section in Fig. 17;
  • Fig. 19 is a schematic structural diagram of the first state of the rotating unit in the laundry care machine provided by the embodiment of the application;
  • Fig. 20 is an embodiment of the application Provided is a schematic structural diagram of the second state of the rotating unit in the clothing care machine;
  • FIG. 16 is a schematic structural diagram of a part of the rotating unit in the laundry care machine provided by the embodiment of the application
  • Fig. 17 is the laundry care machine provided by the embodiment of the application
  • Fig. 18 is a sectional
  • FIG. 21 is a schematic structural diagram of the third state of the rotating unit in the clothing care machine provided by the embodiment of the application
  • FIG. 22 is the clothing care provided by the embodiment of the application.
  • An exploded view of the rotating shaft assembly in the machine
  • FIG. 23 is a schematic structural diagram of a swing rod in a clothing care machine provided by an embodiment of the application
  • FIG. 24 is a structural schematic diagram of a slider in the clothing care machine provided by an embodiment of the application
  • FIG. 26 is a schematic structural diagram of an active turntable in a clothing care machine provided by an embodiment of the application
  • FIG. 27 is a structural schematic diagram of a rotating shaft in the clothing care machine provided by an embodiment of the application. .
  • the rotating unit 500 can drive the clothes hanger 200 to swing back and forth.
  • the clothes hanger 200 stops swinging immediately. A certain deflection is formed between the bodies, which makes it difficult for the clothes hanger 200 to be removed from the body smoothly. That is, the hanger 200 is in the inclined position as shown in FIG. 20 or FIG. 21 . Due to the limited space of the inner tank 120 of the cabinet, the inclined clothes hanger 200 occupies a large space, which makes it difficult to smoothly remove the clothes hanger 200 from the inner tank 120 of the body.
  • the laundry care machine further includes a controller (not shown in the figure) and a detection assembly 700
  • the rotating unit includes a driving member 520 and a swing structure 5, and the swing structure 5 is used for connecting the clothes hanger 200, and the driving member 520 is connected with the swing structure 5 to drive the hanger 200 to swing back and forth on both sides of the initial position through the swing structure;
  • the detection component 700 and the driving component 520 are both electrically connected to the controller.
  • the detection component 700 is used for detecting the position of the swing structure 5.
  • the controller controls the driving component 520 to drive the oscillatory structure 5 to return to the preset position. to swing the hanger 200 to the initial position.
  • the position of the hanger 200 in FIG. 19 is the initial position of the hanger 200 , when the door 130 is opened, the length direction of the hanger 200 is perpendicular to the user, which is convenient for the user to take the hanger 200 out of the inner tank 120 .
  • the position of the swing structure 5 in FIG. 19 is the preset position of the swing structure 5 .
  • the swing structure 5 may be a swing structure such as a swing bar swing structure or a crank rocker, which is not limited in this embodiment.
  • the detection assembly 700 can continuously detect the position of the oscillating structure 5 , or detect the position of the oscillating structure 5 only when the driving member 520 stops driving. As long as the driving member 520 stops driving, the controller controls the driving member 520 to drive the swing structure 5 to return to the preset position, so that the clothes hanger 200 swings to the initial position. It faces the user vertically and maintains the initial position shown in FIG. 19 , so that the clothes hanger 200 can be easily taken out from the inner container 120 .
  • the detection component 700 can be connected to the rotating unit 500.
  • the detection component 700 is used to remove the laundry
  • the position of the swing structure 5 is detected when the driving member 520 stops driving when the care machine is turned off or the clothes care machine is suspended.
  • the detection assembly 700 does not need to detect the position of the swing structure 5 , thereby avoiding the transient and ineffective use of the detection assembly 700 and improving the service life of the detection assembly 700 .
  • the detection assembly 700 includes a detection member 710 and a sensing member 720.
  • the detection member 710 is used to detect the sensing member 720, that is, the sensing member 720 can be sensed by the detection member 710.
  • the detection member 710 is opposite to the sensing member 720.
  • the sensing member 710 senses the sensing member 720 and converts it into a sensing signal and transmits it to the controller.
  • the controller controls the driving member 520 to stop driving to make the swinging Structure 5 is in a preset position.
  • At least one of the detecting member 710 and the sensing member 720 is located on the rotating unit 500 .
  • the sensing element 720 is a magnetic element
  • the detection element 710 is a sensor or a proximity switch.
  • the sensing member 720 is a magnet
  • the detection member 710 is a Hall sensor, and the sensing member 710 is sensed by a magnetic attraction method, so that the sensing member 710 is more sensitive.
  • the swing structure 5 includes a connecting assembly 530 and a turntable assembly 540 connected to the connecting assembly 530 ; wherein the turntable assembly 540 includes an active turntable 541 and at least one connected to the active turntable 541
  • the driven turntable 542 , the driving turntable 541 and each of the driven turntables 542 can be used to connect the clothes hanger 200 .
  • the driving member 520 is used to drive the connecting assembly 530 to reciprocate and swing at a variable speed along a preset angle, so as to drive the driving turntable 541 to reciprocate and rotate at a predetermined angle around its axis.
  • Each driven turntable 542 is linked with the driving turntable 541 to make The driven turntable 542 reciprocates and rotates at a predetermined angle around its axis at a variable speed.
  • the driving member 520 can be a motor or a rotary cylinder, through the variable-speed reciprocating oscillation of the driving member 520 itself, or the rotation of the driving member 520 is transmitted to the connecting component 530, and the connecting component 530 converts the rotational motion into a variable-speed reciprocating oscillation, thereby
  • the driving turntable 541 is driven to rotate around its axis in a reciprocating speed change at a preset angle, and the driven turntable 542 rotates around its axis in a reciprocating speed change at a preset angle.
  • the clothes hanger 200 connected to the driving turntable 541 and each driven turntable 542 can be reciprocated and rotated along a preset angle at a variable speed, so that the clothes 160 have different accelerations during the swinging process, which improves the twisting effect of the clothes 160 and facilitates shaking.
  • Foreign matter such as dust or dander on the dropped laundry 160 .
  • the connecting assembly 530 may be a swing guide rod assembly, the swing guide rod assembly is connected with the driving member 520 , and the swing guide rod assembly converts the rotational motion of the driving member 520 into a variable-speed reciprocating swing.
  • the swing guide rod assembly converts the rotational motion of the driving member 520 into a variable-speed reciprocating swing.
  • the swing guide rod assembly includes a swing rod 531, a slider 532, and a crank 533 connected to the slider 532.
  • the swing rod 531 is connected to the active turntable 541, and the swing rod 531
  • the slider 532 slides back and forth in the swing rod chute 5311 , and the swing rod 531 drives the active turntable 541 to reciprocate and rotate at a predetermined angle around its axis.
  • the driving member 520 drives the crank 533 connected to it to rotate around the axis of the output shaft of the driving member 520.
  • the sliding block 532 is driven to slide back and forth along the extending direction of the swing rod chute 5311.
  • the pendulum rod 531 is driven to move and oscillate between the maximum position on the left side in FIG. 21, the initial position and the maximum position on the right side in FIG.
  • the driving dial 541 reciprocates and rotates at a predetermined angle around its axis at a variable speed.
  • the preset angle can be determined according to the swing range of the pendulum rod 531.
  • the pendulum rod 531 is at the initial position (ie, the angle of the pendulum rod 531 in FIG. 19 is 0°)
  • the slider 532 is located in the pendulum rod chute 5311 the first end of the extension direction.
  • the swing rod 531 swings to the maximum position on the left side in FIG. 21 , and the swing rod 531 and its initial position has a first angle.
  • the time swing rod 531 has a second included angle with its initial position.
  • the sum of the first included angle and the second included angle is a preset angle, that is, the first included angle and the second included angle together form a preset angle.
  • the first end of the swing rod 531 can be connected to the active turntable 541 , thereby preventing the first end of the swing rod 531 from interfering with other components during the swinging process of the reciprocating speed change.
  • the second end of the swing rod 531 is suspended and can move freely.
  • the swing guide rod assembly further includes a swing rod support frame 534, the swing rod support frame 534 is provided with a swing rod end chute 5341, and part of the swing rod 531 is located in the swing rod end chute 5341, and along the swing rod The extension direction of the end chute 5341 moves. Therefore, the second end of the swing rod 531 , which is suspended and freely movable, is supported by the sliding groove 5341 at the end of the swing rod, so that the swing rod 531 can stably swing back and forth.
  • the chute 5341 at the end of the pendulum rod is arc-shaped, and the central angle of the chute 5341 at the end of the pendulum rod is greater than or equal to a predetermined angle.
  • the pendulum rod 531 swings within the extension range of the chute 5341 at the end of the pendulum rod.
  • the central angle of the chute 5341 at the end of the pendulum rod is equal to the preset angle, the pendulum rod 531 swings to the maximum position on the right side in FIG. 20, and the pendulum rod
  • the side surface of the second end of the pendulum rod 531 is in contact with one end of the end chute 5341 of the pendulum rod, the pendulum rod 531 swings to the maximum position on the left side in FIG.
  • the other end abuts, thereby restricting the swinging range of the swing rod 531 within the sliding groove 5341 at the end of the swing rod.
  • the second end of the swing rod 531 extends into the swing rod end chute 5341 through the slot of the swing rod end chute 5341 .
  • the end face of the second end of the swing rod 531 is provided with a roller 5313, and the wheel surface of the roller 5313 is in rolling contact with the bottom of the chute 5341 at the end of the swing rod; and/or, the swing rod 531 is provided with a roller 5313, and the roller 5313 is close to the pendulum
  • the wheel surface of the roller 5313 is in rolling contact with at least one inner side wall of the end chute 5341 of the pendulum rod.
  • a roller installation groove 5314 can be opened on the pendulum rod 531, the roller installation groove 5314 is close to the second end of the pendulum rod 531, the roller 5313 is rollingly connected in the roller installation groove 5314, and the wheel surface of the roller 5313 abuts on the pendulum Between the two opposite inner side walls of the rod end chute 5341 .
  • the chute 5341 at the end of the pendulum rod may be a groove-like structure with the top and the bottom wall communicating, and the second end of the pendulum rod 531 passes through the slot and the bottom of the chute 5341 at the end of the pendulum rod Extending out of the end chute 5341 of the pendulum rod, a roller 5313 is arranged on the pendulum rod 531, the roller 5313 is close to the second end of the pendulum rod 531, and the wheel surface of the roller 5313 is in rolling contact with at least one inner side wall of the end chute 5341 of the pendulum rod .
  • the swing rod 531 also has a swing rod connecting portion 5312.
  • the swing rod connecting portion 5312 is sleeved on the active turntable 541 and is detachably connected to the active turntable 541.
  • the rod chute 5311 is located between the swing rod connecting portion 5312 and the roller 5313 .
  • the rocker connecting portion 5312 has an ear seat and an ear hole provided on the ear seat.
  • the active turntable 541 has an ear seat and an ear hole provided on the ear seat, and the screws pass through the The ear holes and the ear holes on the active turntable 541 are used to connect the pendulum rod 531 and the active turntable 541 .
  • the rotating unit 500 further includes a fixing frame 550.
  • the fixing frame 550 has at least two turntable mounting holes 551 spaced apart and arranged side by side.
  • the driving turntable 541 and each driven turntable 542 are respectively Installed in different turntable installation holes 551 , when the number of turntable installation holes 551 is three or more, the active turntable 541 is located in the turntable installation hole 551 in the middle of the fixing frame 550 .
  • Each driven turntable 542 is linked with the driving turntable 541 , and the driving turntable 541 is arranged in the middle of each driven turntable 542 , so that the force transmitted from the driving turntable 541 to each driven turntable 542 is relatively uniform.
  • the driving turntable 541 and each of the driven turntables 542 may be connected by connecting rods 535 , so as to realize the linkage between each of the driven turntables 542 and the driving turntable 541 .
  • the swing guide rod assembly includes a plurality of connecting rods 535 .
  • Each connecting rod 535 is hinged end to end to form two connecting rod groups, which are parallel to each other and are located on opposite sides of the active turntable 541 respectively.
  • Both ends of the connecting rod 535 in the same connecting rod group are hinged with the adjacent driven turntable 542 respectively, or, the two ends of the connecting rod 535 in the same connecting rod group are respectively connected with the adjacent driven turntable 542 and the driving turntable 541 hinged;
  • the hinge points of the link 535 and the driving turntable 541 in the same link group coincide with the hinge points of the two adjacent links 535, and the hinge points of the link 535 and the driven turntable 542 in the same link group are the same as those of the two adjacent links.
  • the hinge points of the two links 535 coincide.
  • the number of connecting rods 535 is four and the number of driven turntables 542 is two for description.
  • two driven turntables 542 are respectively located on both sides of the active turntable 541, the first end of the first link 535 is hinged with the first driven turntable 542, The second end of the first link 535, the first end of the second link 535, and the driving turntable 541 are hinged at the same point of the driving turntable 541, and the second end of the second link 535 is connected to the second driven turntable 541.
  • the turntable 542 is hinged.
  • the third link 535 and the fourth link 535 are located on the other side of the driving turntable 541 , and their hinged connection with the driving turntable 541 and each driven turntable 542 is the same as the first link 535 and the second link 535
  • the hinge method is the same, and will not be repeated here.
  • the distance J between the two hinge points of the link 535 on the active turntable 541 is greater than or equal to 1 mm and less than or equal to 2 mm. In this way, the dislocation arrangement of the connecting rod groups is formed, so as to prevent the pendulum rod 531 from being stuck at the dead center position.
  • the crank 533 has a first connecting portion 5331 and a second connecting portion 5332, the first connecting portion 5331 is sleeved on the output shaft of the driving member 520 and is fixedly connected with the output shaft of the driving member 520, and the slider 532 has a slider sliding portion 5321 and the slider insertion part 5322, the slider sliding part 5321 is located in the swing rod chute 5311, the first end of the slider insertion part 5322 is connected with the slider sliding part 5321, and the slider insertion part 5322 is inserted in the
  • the two connecting portions 5332 are rotatably connected with the second connecting portion 5332 .
  • first connecting portion 5331 and the second connecting portion 5332 may both be sleeve-shaped, the first connecting portion 5331 is sleeved on the output shaft of the driving member 520, and the first connecting portion 5331 is connected to the shaft perpendicular to the axis of the first connecting portion 5331 through the connecting shaft.
  • the connecting crank 533 and the output shaft of the driving member 520 are fixedly connected to prevent the two from rotating each other.
  • the slider insertion portion 5322 also has a slider extension portion 5323 on the peripheral side, and the slider extension portion 5323 abuts on the side of the swing rod 531 facing the crank 533, so that the slider sliding portion 5321 slides on the swing rod.
  • the slot 5311 slides inside to prevent the swing rod 531 from moving to the slider insertion portion 5322 .
  • the second end of the sliding block inserting portion 5322 is located outside the second connecting portion 5332, and a sliding gasket 5324 and a gasket sleeve 5325 are sequentially sleeved. Therefore, wear caused by direct sliding friction between the crank 533 and the slider 532 is avoided.
  • the rotating unit 500 further includes at least two rotating shaft assemblies, the driving rotating disk 541 and each driven rotating disk 542 are respectively connected with the rotating shaft assemblies in a one-to-one correspondence, and the rotating shaft assemblies are opposite to the clothes hanger 200 connect.
  • the rotating shaft assembly includes a rotating shaft 510 and a rotating shaft fixing base 560 , the rotating shaft 510 is sleeved on the rotating shaft fixing base 560 and can rotate relative to the rotating shaft fixing base 560 , and the rotating shaft fixing base 560 is connected with the fixing frame 550 .
  • the two ends of the rotating shaft 510 are respectively provided with a first plug-in part 511 of the rotating shaft and a second plug-in part 513 of the rotating shaft;
  • the connecting portion 513 is detachably connected.
  • screw holes can be provided on the first plug-in part 511 of the rotating shaft and the second plug-in part 513 of the rotating shaft, and the first plug-in part 511 of the rotating shaft and the hanger 200 are relatively connected by screws, or the active turntable 541 and the second plug-in shaft of the rotating shaft are connected by screws.
  • the connecting portion 513, or connecting the driven turntable 542 and the second inserting portion 513 of the rotating shaft by screws.
  • the ends of the first plug-in part 511 of the rotating shaft and the second plug-in part 513 away from the rotating shaft 510 may both be flattened, that is, cut along the axial direction of the first plug-in part 511 of the rotating shaft or the axial direction of the second plug-in part 513 of the rotating shaft so that the cross-section of the first plug-in portion 511 of the rotating shaft or the cross-section of the second plug-in portion 513 of the rotating shaft is D-shaped, thereby preventing relative rotation between the hanger 200 and the first plug-in portion 511 of the rotating shaft, and
  • the driving turntable 541 or each of the driven turntables 542 and the second insertion portion 513 of the rotating shaft rotate relative to each other.
  • the cross-section of the part of the first plug-in portion 511 of the rotating shaft connected to the hanger 200 can also be a triangle or other polygons to prevent relative rotation between the hanger 200 and the first plug-in portion 511 of the rotating shaft.
  • the cross-section of part of the second plug portion 513 of the rotating shaft connected to the driving turntable 541 or each driven turntable 542 may also be a triangle or other polygons to prevent the driving turntable 541 or each driven turntable 542 from being plugged into the second rotating shaft.
  • the parts 513 rotate relative to each other.
  • a bearing 514 and a bearing cover 515 are sleeved on the first socket part 511 of the rotating shaft and the second socket part 513 of the rotating shaft, and at least one bearing cover 515 is fixedly connected or integrally formed with the rotating shaft fixing seat 560 .
  • the inner ring of the bearing 514 is sleeved on the first plug portion 511 of the rotating shaft or the second plug portion 513 of the rotating shaft, and the outer ring of the bearing 514 is fixedly connected to the rotating shaft fixing seat 560 , so that the rotating shaft 510 rotates relative to the rotating shaft fixing seat 560 .
  • the bearing 514 can be a ball bearing, so that the noise when the rotating shaft 510 is rotated is small, and the mute effect is better achieved.
  • the diameters of the first plug-in part 511 of the rotating shaft and the second plug-in part 513 of the rotating shaft may be smaller than the diameter of the rotating shaft 510 , so that the first plug-in part 511 of the rotating shaft and the second plug-in part 513 of the rotating shaft are respectively connected with the rotating shaft 510
  • a shaft shoulder is formed at the connection of the shaft, and the bearing 514 abuts on the shaft shoulder, so as to facilitate the installation and fixation of the bearing 514.
  • the rotating shaft fixing seat 560 protects the rotating shaft 510 and the bearing 514 from being directly impacted by hot air or hot air, thereby improving the service life of the rotating shaft 510 and the bearing 514 .
  • a bearing sleeve 516 is sleeved on the first plug-in part 511 of the rotating shaft and the second plug-in part 513 of the rotating shaft.
  • the bearing sleeve 516 has a first stop part 5161.
  • the first stop is matched with the second stop 543 .
  • the number of the first stop part 5161 and the second stop part 543 can be at least one, and one of the first stop part 5161 and the second stop part 543 is a groove, and the other is a groove with the groove
  • the grooves are matched with the notch, thereby preventing the relative rotation between the hanger 200 and the first insertion portion 511 of the rotating shaft, and the relative rotation between the driving turntable 541 or each driven turntable 542 and the second insertion portion 513 of the rotating shaft.
  • the first stopper portion 5161 and the second stopper portion 543 may also be in the above-mentioned flat positions. In this case, the first insertion portion 511 of the rotation shaft and the second insertion portion 513 of the rotation shaft may not have flat positions.
  • the rotating unit 500 further includes a driver bracket 570 , the driver 520 is mounted on the driver bracket 570 , the driver bracket 570 is connected to the fixing frame 550 , and the swing rod support bracket 534 is connected to the driver bracket 570 .
  • the components in the rotating unit 500 are connected together to facilitate the disassembly and assembly of the rotating unit 500 as a whole.
  • the rotating unit 500 further includes a rotating unit upper cover 580, the rotating unit upper cover 580 covers the fixing frame 550 and forms a rotating unit cavity with the fixing frame 550, a swing rod support frame 534, a driver support 570, a swing rod 531, and a slider 532 and turntable assembly 540 are located within the rotating unit cavity.
  • the side of the fixing frame 550 facing the upper cover 580 of the rotating unit has at least one shock-absorbing pad 552 of the fixing frame, and the shock-absorbing pad 552 of the fixing frame is in abutment with the upper cover 580 of the rotating unit. Therefore, the noise generated during the operation of the rotating unit 500 and the resonance between the rotating unit 500 and the body can be reduced.
  • one of the detecting member 710 and the sensing member 720 is located on the swing rod 531 , and the other is located on the end chute 5341 of the swing rod.
  • the detection member 710 is located on the chute 5341 at the end of the pendulum rod, and the sensing member 720 is located on the pendulum rod 531 for description.
  • the detection piece 710 is located on the inner side wall of the chute 5341 at the end of the pendulum rod, and the sensing piece 720 is located on the surface of the chute 5341 at the end of the pendulum rod 531; or, the detection piece 710 is located in the chute 5341 at the end of the pendulum rod
  • the sensing element 720 is located on the end face of the swing rod 531 facing the chute 5341 at the end of the swing rod.
  • one of the detection member 710 and the sensing member 720 is located on the swing rod 531 , and the other is located on the side of the upper cover 580 of the rotating unit facing the swing rod 531 .
  • the pendulum rod 531 has a detection component installation groove 5315, the detection component 710 or the induction component 720 is embedded in the detection component installation groove 5315, the pendulum rod sliding groove 5311 is located between the pendulum rod connecting part 5312 and the detection component installation groove 5315, and the roller 5313 is located in the pendulum rod Between the chute 5311 and the detection assembly installation slot 5315, the detection assembly installation slot 5315 is located outside the chute 5341 at the end of the pendulum rod.
  • the sensing member 720 is located on the swing rod 531
  • the detection member 710 is located on the side of the upper cover 580 of the rotating unit facing the swing rod 531 for description.
  • the pendulum rod 531 passes through the outer side of the end chute 5341 of the pendulum rod
  • a detection component installation groove 5315 is provided on the pendulum rod 531 passing through the outer side of the pendulum rod end chute 5341
  • the sensing element 720 is embedded in the detection component installation groove Inside 5315
  • the detection part 710 is located on the upper cover 580 of the rotating unit, and faces the sensing part 720 .
  • the sensing element 720 is arranged outside the chute 5341 at the end of the swing rod to prevent the sensing element 720 from affecting the installation of the roller 5313.
  • the wheel surface of the roller 5313 can be the same as the inner side of the chute 5341 at the end of the swing rod or larger than the end of the swing rod.
  • the inner side wall of the chute 5341 ensures that the roller 5313 and the inner side wall of the swing rod end chute 5341 have a larger contact area, so that the swing rod end chute 5341 can roll the pendulum rod 531 stably through the roller 5313 support, so that the pendulum rod 531 can swing smoothly.
  • FIG. 28 is a partial enlarged view of G in Fig. 2;
  • Fig. 29 is a schematic structural diagram of a clothes hanger and a switching structure in a clothes care machine provided by an embodiment of the application;
  • FIG. 31 is a schematic diagram of the internal structure of the rotating shaft in the clothing care machine provided by the embodiment of the application;
  • FIG. 32 is a schematic structural diagram of the switching structure in the clothing care machine provided by the embodiment of the application;
  • Figure 34 is a sectional view of the H-H section in Figure 33;
  • Figure 35 is a sectional view of the I-I section in Figure 34;
  • Figure 36 is the clothing care provided by the embodiment of the application.
  • FIG. 37 is a schematic structural diagram of a pressure plate sealing seat in a clothing care machine provided by an embodiment of the application;
  • FIG. 38 is a schematic diagram of the internal structure of the pressure plate sealing seat in the clothing care machine provided by the embodiment
  • the clothes care machine provided by the present application further includes an adapter structure 600 .
  • the air guide assembly 620 on the side of the housing 610, the hanger 200 is detachably connected to the care system through the adapter housing 610, so that the care system provides the air flow for caring the clothes 160 into the body through the hanger airflow channel 430 and the clothes hanger 200 in sequence
  • the top of the cloth is guided into the clothes 160 on the hanger 200, and the guide assembly 620 communicates with the liquid channel 350, so as to guide the liquid channel 350 and the side of the clothes hanger 200 to the clothes hanger 200 through the liquid channel 350 and the side of the clothes hanger 200. inside the clothes 160 above.
  • the clothes hanger 200 is detachably connected to the nursing system through the adapter casing 610, so that the airflow in the clothes hanger airflow channel 430 of the nursing system can be detachably connected. Enter the clothes 160 on the clothes hanger 200 through the top of the clothes hanger 200; In this way, the rotatable clothes hanger 200 can simultaneously intake air and liquid through the transition structure 600, and the air intake and the liquid do not affect each other, thereby improving the care effect of clothes.
  • the rotating shaft 510 of the rotating unit 500 is inserted into the air passage 430 of the clothes hanger of the air supply unit 400, thereby saving space and making the structure of the clothes care machine relatively compact.
  • the rotating shaft 510 partially extends out of the hanger air passage 430 to be connected with the adapter housing 610 , so as to drive the clothes hanger 200 to rotate through the adapter casing 610 .
  • the rotating shaft 510 may be connected to the adapter housing 610 by detachable connection methods such as screws and clips, or the rotating shaft 510 may be fixedly connected to the adapter casing 610 . In this way, the transfer structure 600 can be disassembled from the rotating shaft 510 of the rotating unit 500 , which facilitates the disassembly and maintenance of the transfer structure 600 .
  • the rotating shaft 510 , the switching structure 600 and the clothes hanger 200 may be arranged in a one-to-one correspondence, that is, one rotating shaft 510 is connected to one switching casing 610 , and one switching casing 610 is connected to one clothes hanger 200 .
  • Each rotating shaft 510 can be driven to reciprocate and swing by the same driving member, or each rotating shaft 510 can be provided with an independent driving member to drive it to reciprocate and swing.
  • the rotating shaft 510 has a liquid inlet hole extending along its axis to form the liquid channel 350 , and the guide component 620 partially extends into the adapter housing 610 and It is in relative communication with the liquid inlet hole.
  • the liquid channel 350 is integrated in the rotating shaft 510, which saves the space occupied by the liquid channel 350.
  • the adapter housing 610 has an adapter accommodating cavity 611, and the adapter accommodating cavity 611 has an adapter connection seat 612.
  • the adapter connection seat 612 and the inner wall of the adapter accommodating cavity 611 pass through at least two ribs 613 is connected, the transfer connecting seat 612 has a receiving groove 6121, and the rotating shaft 510 is inserted in the receiving groove 6121 and is detachably connected with the transfer connecting seat 612.
  • the number of the ribs 613 may be two or more.
  • the number of rib plates 613 is four for description.
  • the adapter accommodating cavity 611 can be rectangular, and the four rib plates 613 are arranged in a cross shape to fix the adapter connection seat 612 in the adapter accommodating cavity. Central area of 611.
  • the rotating shaft 510 may have a first rotating shaft inserting portion 511, the cross section of the rotating shaft first inserting portion 511 may be D-shaped, triangular or other polygonal, the accommodating groove 6121 is matched with the rotating shaft first inserting portion 511, the rotating shaft No. 1 An insertion portion 511 is inserted into the accommodating slot 6121 to prevent the first insertion portion 511 of the rotating shaft from rotating relative to the accommodating slot 6121 .
  • the bottom of the accommodating groove 6121 has a through hole communicating with the accommodating groove 6121, and the first insertion part 511 of the rotating shaft has a threaded hole, and the screw passes through the through hole and is connected with the threaded hole, so as to detachably connect the rotating shaft 510 to the adapter. on the connecting seat 612 .
  • the adapter connection seat 612 has a pipeline joint 6122 that communicates with the accommodating groove 6121.
  • the first end of the pipeline joint 6122 communicates with the liquid inlet hole.
  • the second end of 6122 is connected. Therefore, the guide assembly 620 and the liquid channel 350 are communicated through the pipe joint 6122 .
  • a rotating shaft sealing ring 512 between the accommodating groove 6121 and the first plug-in portion 511 of the rotating shaft, and the side of the rotating shaft sealing ring 512 facing the accommodating groove 6121 and the side facing the first plug-in portion 511 of the rotating shaft both have waterproof ribs , when the rotating shaft 510 and the transfer connecting seat 612 are connected by screws, the rotating shaft sealing ring 512 is squeezed to seal the contact surface between the accommodating groove 6121 and the first inserting part 511 of the rotating shaft, thereby preventing the liquid from passing through the accommodating groove 6121 and the rotating shaft There is leakage between the first plug portions 511 .
  • the transition housing 610 There are opposite first openings 614 and second openings 615 on the upper part, and both the first openings 614 and the second openings 615 are communicated with the adapter accommodating cavity 611, and the rotating shaft 510 is inserted into the accommodating groove 6121 through the first opening 614, and the first opening 614 is opposite to and communicated with the hanger air passage 430, the top of the hanger 200 has the hanger air inlet 210, the second opening 615 is opposite to the hanger air inlet 210 and communicates with the hanger air inlet 210, and the hanger 200 has a cavity 220 inside , the hanger air inlet 210 communicates with the cavity 220 , and the bottom of the hanger 200 has at least one hanger air outlet 230 communicated with the cavity 220 .
  • the air flow provided by the air supply unit 400 can enter the clothes hanger 200 through the first opening 614 , the transition accommodating cavity 611 , the second opening 615 and the clothes hanger air inlet 210 in sequence, and then exit from the cavity 220 and the clothes hanger in the clothes hanger 200 .
  • the tuyere 230 enters the clothes 160 hung on the clothes hanger 200 .
  • the hanger air inlet 210 is located in the area covered by the second opening 615 , and the rib 613 divides the transfer accommodating cavity 611 into at least two wind power transfer areas 6111 .
  • the cross-sectional area of each wind power transfer area 6111 The sum is larger than the cross-sectional area of the hanger air inlet 210 and smaller than the cross-sectional area of the second opening 615 . That is to say, the cross-sectional area of the second opening 615, the sum of the cross-sectional areas of the wind power transfer regions 6111, and the cross-sectional area of the hanger air inlet 210 are successively reduced, so that the airflow can pass through the second opening smoothly. 615 and each wind transfer area 6111 enter the hanger air inlet 210 .
  • the guide assembly 620 may include a guide tube 621, a fixed seat 622 and an openable and closable valve 623, and the adapter housing 610 also has a mounting The cavity 616 , the installation cavity 616 is located at the side of the adapting accommodating cavity 611 , and the fixing seat 622 is partially inserted into the installation cavity 616 and extends toward the hanger 200 .
  • the fixing base 622 can be connected with the mounting cavity 616 by screws, so as to fix the fixing base 622 on the adapter housing 610 .
  • the fixing base 622 has a diversion channel 6221
  • the first end of the diversion tube 621 extends into the adapter housing 610 and communicates with the second end of the pipeline joint 6122, and the second end of the diversion tube 621 is connected to the
  • the first end of the guide channel 6221 is in communication
  • the valve 623 is located in the guide channel 6221 to close the second end of the guide channel 6221 .
  • the liquid provided by the liquid supply unit 300 flows to the guide channel 6221 through the liquid channel 350 , the pipeline joint 6122 and the guide tube 621 in sequence, and is blocked in the guide channel 6221 by the openable and closable valve 623 .
  • the valve 623 can be opened, so that the liquid in the guide channel 6221 flows into the clothes hanger 200 .
  • the air guide tube 621 in the adapter case 610 is located above a rib 613 and is connected with the rib 613 .
  • the ribs 613 at least partially overlap.
  • the projections of the guide tube 621 in the adapter housing 610 are all located on the rib 613 opposite to it, and the width of the rib 613 may be greater than or equal to the width of the guide tube 621 (also referred to as the width of the guide tube 621 ). is the diameter of the guide tube 621).
  • the guide tube 621 located in the adapter housing 610 may abut with the rib 613 opposite to the guide tube 621 or have a gap therebetween.
  • the guide assembly 620 further includes an inlet pressure plate 624 connected to the fixed seat 622 , the inlet pressure plate 624 is opposite to the second end of the guide channel 6221 and communicates with the second end of the guide channel 6221 , and the valve 623 It includes an elastic member 6231, a blocking head 6232 and a pressure plate sealing seat 6233.
  • the first end of the elastic member 6231 is connected to the inner wall of the diversion channel 6221, and the second end of the elastic member 6231 is connected to the blocking head 6232.
  • the blocking head 6232 Abutting against the pressing plate sealing seat 6233 to block the pressing plate sealing seat 6233 .
  • the elastic member 6231 may be a spring or an elastic sleeve.
  • the plugging head 6232 can be spherical or hemispherical, for example, the plugging head 6232 is a stainless steel ball.
  • the platen seal seat 6233 may be a sleeve with an extended edge.
  • the first end of the pressing plate sealing seat 6233 is inserted into the guiding channel 6221 through the second end of the guiding channel 6221, the first end of the pressing plate sealing seat 6233 has a chamfer 6234, a plugging head 6232 and a chamfer 6234 Abutting, the second end of the pressure plate sealing seat 6233 abuts between the end surface of the second end of the guide channel 6221 and the inlet pressure plate 624 .
  • the chamfer 6234 can be rounded or beveled, so that the plugging head 6232 and the first end of the pressure plate sealing seat 6233 are closely fitted.
  • the sleeve of the pressure plate sealing seat 6233 is located in the guide channel 6221 and abuts or interferes with the inner wall of the guide channel 6221, so as to fix the sleeve part of the pressure plate seal seat 6233 in the guide channel 6221, and the pressure plate seals
  • the extending edge of the seat 6233 abuts between the end face of the second end of the guide channel 6221 and the inlet pressure plate 624 .
  • a waterproof ring 6235 can be arranged on the inner side wall of the pressure plate sealing seat 6233, and the waterproof ring 6235 can be arranged along the inner side wall of the pressure plate sealing seat 6233 for a circle; and/or It is also possible to set a waterproof ring 6235 on the end face of the second end of the pressure plate sealing seat 6233, and the waterproof ring 6235 can be arranged along the end face of the second end of the pressure plate sealing seat 6233 for a week, because it prevents the liquid from passing between the pressure plate sealing seat 6233 and the pressure plate sealing seat 6233. contact surface leakage.
  • a plurality of waterproof rings 6235 on the inner side wall of the pressure plate sealing seat 6233 can be provided at intervals along the axial direction of the pressure plate sealing seat 6233, so that the sealing between the plugging head 6232 and the pressure plate sealing seat 6233 is more reliable.
  • the clothes hanger 200 has a one-way joint 240 and a spray assembly 250 in communication with the one-way joint 240.
  • the one-way joint 240 passes through the inlet pressure plate 624 and the pressure plate in sequence.
  • the sealing seat 6233 is in contact with the blocking head 6232 , and the blocking head 6232 is kept away from the pressing plate sealing seat 6233 , so as to communicate with the spray assembly 250 and the guide channel 6221 . That is to say, at this time, the one-way joint 240 opens the valve 623 , so that the liquid in the guide channel 6221 flows to the spray assembly 250 in the clothes hanger 200 .
  • the dotted line frame on the right side in FIG. 34 is the connection area between the hanger 200 and the adapter housing 610
  • the dotted line frame on the left side in FIG. 34 is the connection area between the clothes hanger 200 and the shower assembly 250 ).
  • the spray assembly 250 may include a water spray pipe 251 and a plurality of spray heads 252 communicated with the water spray pipe 251.
  • the bottom of the hanger 200 has a plurality of spray ports 290, and the spray ports 290 and the spray heads 252 are arranged in one-to-one correspondence.
  • the liquid in the guide channel 6221 is sprayed from the nozzle 290 to the clothing 160 through the water spray pipe 251 and the spray head 252 in sequence, so as to spray the clothing 160 .
  • the flow direction of the one-way joint 240 is from the diversion channel 6221 to the spray assembly 250, and the structure of the one-way joint 240 is not limited in this embodiment.
  • the upper part of the clothes hanger 200 and the lower part of the adapter accommodating cavity 611 At least one of them has at least one slide rail 6112 , and the other has at least one extension portion 260 .
  • the extension portion 260 is inserted into the slide rail 6112 . And move along the slide rail 6112 .
  • the clothes hanger 200 is slidably connected to the adapter housing 610 , thereby facilitating the disassembly and assembly of the clothes hanger 200 from the adapter casing 610 .
  • the sliding rail 6112 is located on the top of the clothes hanger 200, and the extension part 260 is located on the end surface of the lower part of the adapter accommodating cavity 611; On the end face of the lower part of the cavity 611 .
  • the extension portion 260 may be a T-shaped slider or a dovetail slider, and correspondingly, the slide rail 6112 is a T-shaped slot or a dovetail slot matched with the extension portion 260 .
  • the slide rail 6112 is located on the outer side wall of the upper part of the clothes hanger 200
  • the extension part 260 is located on the outer side wall or the inner side wall of the lower part of the adapter accommodating cavity 611
  • the upper part of the clothes hanger 200 is covered in the adapter accommodating cavity 611
  • the outer side of the lower part or the upper part of the clothes hanger 200 is embedded in the cavity of the lower part of the adapting accommodating cavity 611 , so that the extension part 260 is inserted into the sliding rail 6112 and moves along the sliding rail 6112 .
  • the number of the sliding rails 6112 is two, thereby preventing the clothes hanger 200 from tilting during the sliding process, so that the clothes hanger 200 can slide stably.
  • the two slide rails 6112 are respectively located on the inner side walls opposite to the lower part of the adapter accommodating cavity 611 , the extension part 260 is located on the top of the clothes hanger 200 , and the top of the clothes hanger 200 is inserted into the adapter housing 610 , extending
  • the portion 260 may be arranged around the top of the hanger 200 , thereby facilitating the arrangement of the extension portion 260 on the hanger 200 .
  • the extending direction of the slide rail 6112 is consistent with the direction from the front side to the rear side of the body. That is to say, the sliding rail 6112 extends from one side of the door body 130 to the side opposite to the door body 130, so that after opening the door body 130, the user can directly push the clothes hanger 200 into the inner tank 120, so that the The clothes hanger 200 is inserted into the adapter housing 610 to facilitate the connection between the clothes hanger 200 and the adapter casing 610 .
  • the inner side wall of the adapter accommodating cavity 611 has at least one lock groove 6113
  • the clothes hanger 200 has at least one lock 270 matched with the lock groove 6113
  • the extension portion 260 moves along the sliding rail 6112
  • the lock 270 is snapped into the lock groove 6113 , so that the hanger 200 is snapped on the adapter housing 610 , and the hanger 200 is fixed relative to the adapter housing 610 at this time.
  • the one-way joint 240 on the hanger 200 comes into contact with the blocking head 6232 through the inlet pressure plate 624 and the pressure plate sealing seat 6233 in sequence, and the blocking head 6232 is kept away from the pressure plate sealing seat 6233, thereby connecting the spray assembly 250 with the flow guide Channel 6221.
  • the lock 270 is disengaged from the engagement with the lock groove 6113 .
  • the movable hanger 200 and the extension 260 move relative to the slide rail 6112 so that the hanger 200 is separated from the adapter housing 610 , that is, dismounting the hanger 200 from the adapter housing 610 .
  • the clothes hanger 200 has an elastic button 280 connected with the lock 270 .
  • the lock 270 faces the inside of the clothes hanger 200 Move away from the position of being engaged with the locking groove 6113 to disengage from the locking position with the locking groove 6113 .
  • two lock buckles 270 and two elastic buttons 280 may be provided.
  • the lock buckles 270 and the elastic buttons 280 are provided in a one-to-one correspondence.
  • the two elastic buttons 280 are respectively located on opposite sides of the hanger 200.
  • the two lock buckles 270 are also They are located on opposite sides of the hanger 200, respectively.
  • the locking groove 6113 communicates with the slide rail 6112, and the locking groove 6113 extends toward the clothes hanger 200. Therefore, the locking groove 6113 and the sliding rail 6112 can be integrally formed to facilitate the processing of the locking groove 6113 and slide rail 6112.
  • the extension portion 260 is inserted into the sliding rail 6112 and moves along the sliding rail 6112 , and the lock 270 is connected to the adapter accommodating cavity 611 .
  • the lock 270 enters into the lock groove 6113, producing a "click" sound, at this time, the hanger 200 and the adapter housing 610 are realized.
  • Each wind transfer area 6111 is opposite to the hanger air inlet 210 of the hanger 200, and the airflow can enter the hanger 200, so as to realize the blowing function of the inside of the clothes 160, and speed up the drying and shaping of the clothes.
  • the synchronous movement of the clothes hanger 200 , the transfer structure 600 and the rotating shaft 510 can be realized, so as to prevent the clothes hanger 200 from falling off due to the displacement of the rotating shaft 510 when the rotating shaft 510 rotates.
  • the clothes hanger 200 in the clothing care machine of the present application can simultaneously take in the air flow (air flow through the dashed line frame on the right side of FIG. 35 ) and liquid inlet (liquid through the dashed line frame on the left side of FIG. 35 ) through the transition structure 600 .
  • the transfer structure 600 can simultaneously realize the connection between the hanger 200 and the spray assembly 250, the transfer of the air supply unit 400 and the rotation unit 500, and the structure is compact.
  • the clothes hanger 200 not only plays the role of supporting the clothes, but when the liquid enters, the spray component 250 inside the clothes hanger 200 sprays the inside of the clothes 160 to improve the nursing effect; operation, improve nursing efficiency.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Accessory Of Washing/Drying Machine, Commercial Washing/Drying Machine, Other Washing/Drying Machine (AREA)

Abstract

一种衣物护理机,包括:机体、护理系统、转接结构(600)和可旋转的衣架(200),护理系统和衣架(200)均位于机体内,护理系统具有衣架气流通道(430)和液体通道(350);转接结构(600)包括转接壳体(610)和设置在转接壳体(610)侧方的导流组件(620),衣架(200)通过转接壳体(610)与护理系统可拆卸连接,以将护理系统向机体内提供用于护理衣物的气流依次经衣架气流通道(430)和衣架(200)的顶部引导至衣架(200)上的衣物内,导流组件(620)与液体通道(350)连通,以将护理系统向机体内提供用于护理衣物的液体依次经液体通道(350)和衣架(200)的侧面引导至衣架(200)上的衣物内。衣物护理机可同时在衣架(200)上设置进水结构和进风结构,衣物护理效果较好。

Description

衣物护理机
本申请要求在2021年3月19日提交中国专利局、申请号为202110296901.X的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及衣物清洁技术领域,例如涉及一种衣物护理机。
背景技术
随着生活水平的提高,人们对衣物处理的要求也在不断的提高。其中,衣物护理机能够对衣物进行去味、整平、熨烫等护理,使得衣物整洁如新,受到普遍欢迎。
衣物护理机通常包括护理箱体和位于护理箱体内的转动模块,转动模块的转轴上固定有带喷淋功能的衣架,水经转轴进入衣架内部。由于上述衣架固定在转动模块的转轴上,导致在衣架上取放衣物时操作不方便。一些衣物护理机中,可设置带喷淋且可拆卸的衣架,转动模块的转轴的端面设置喷淋转接结构,在衣架的顶部中间区域设置与喷淋转接结构对应的入水接头。但是,由于在衣架上设置入水接头,衣架中间处被遮挡,导致衣架上难以设置进风通道,进而影响衣物的护理效果。
发明内容
本申请提供一种衣物护理机,可同时在衣架上设置进水结构和进风结构,衣物护理效果较好。
本申请提供的衣物护理机,包括:机体、护理系统、转接结构和可旋转的衣架,护理系统和衣架均位于机体内,护理系统具有衣架气流通道和液体通道;
转接结构包括转接壳体和设置在转接壳体侧方的导流组件,衣架通过转接壳体与护理系统可拆卸连接,以将护理系统向机体内提供用于护理衣物的气流 依次经衣架气流通道和衣架的顶部引导至衣架上的衣物内,导流组件与液体通道连通,以将护理系统向机体内提供用于护理衣物的液体依次经液体通道和衣架的侧面引导至衣架上的衣物内。
在一种可选的实施方式中,本申请提供的衣物护理机,护理系统包括转动单元和供风单元,转动单元具有至少一个可绕自身轴线旋转的转轴;
供风单元包括至少一个衣架气流通道,转轴插设于衣架气流通道内,且部分伸出衣架气流通道以与转接壳体连接,以通过转接壳体驱动衣架旋转;
转接壳体与衣架气流通道一一对应设置,衣架气流通道与转轴一一对应设置。
在一种可选的实施方式中,本申请提供的衣物护理机,护理系统还包括供液单元,供液单元包括液体通道;
转轴上具有沿其轴线延伸的进液孔,以形成液体通道,导流组件部分伸入转接壳体内且与进液孔相对连通。
在一种可选的实施方式中,本申请提供的衣物护理机,转接壳体内具有转接容纳腔,转接容纳腔内具有转接连接座,转接连接座与转接容纳腔的内壁通过至少两个肋板连接,转接连接座上具有容纳槽,转轴插设在容纳槽内且与转接连接座可拆卸连接;
转接连接座上具有与容纳槽连通的管路接头,管路接头的第一端与进液孔连通,导流组件部分伸入转接壳体内并与管路接头的第二端连通。
在一种可选的实施方式中,本申请提供的衣物护理机,转接壳体上具有相对的第一开口和第二开口,第一开口和第二开口均与转接容纳腔连通,转轴经第一开口插设在容纳槽内,第一开口与衣架气流通道相对且与衣架气流通道连通,衣架的顶部具有衣架进风口,第二开口与衣架进风口相对且与衣架进风口连通,衣架内具有空腔,衣架进风口与空腔连通,衣架的底部具有与空腔连通的至少一个衣架出风口。
在一种可选的实施方式中,本申请提供的衣物护理机,衣架进风口位于第 二开口所覆盖的区域内,肋板将转接容纳腔分为至少两个风力转接区,各风力转接区的横截面积之和大于衣架进风口的横截面积且小于第二开口的横截面积。
在一种可选的实施方式中,本申请提供的衣物护理机,导流组件包括导流管、固定座和可开闭的阀门,转接壳体内还具有安装腔,安装腔位于转接容纳腔的侧方,固定座部分插设于安装腔内且朝向衣架延伸;
固定座上具有导流通道,导流管的第一端伸入转接壳体内并与管路接头的第二端连通,导流管的第二端与导流通道的第一端连通,阀门位于导流通道内,以封闭导流通道的第二端。
在一种可选的实施方式中,本申请提供的衣物护理机,位于转接壳体内的导流管位于一肋板的上方且与该肋板至少部分重叠;
导流组件还包括连接在固定座上的入口压板,入口压板与导流通道的第二端相对且与导流通道的第二端连通,阀门包括弹性件、封堵头和压板密封座,弹性件的第一端与导流通道的内壁连接,弹性件的第二端与封堵头与连接,封堵头与压板密封座抵接以封堵压板密封座。
在一种可选的实施方式中,本申请提供的衣物护理机,压板密封座的第一端经导流通道的第二端插设于导流通道内,压板密封座的第一端具有倒角,封堵头与倒角抵接,压板密封座的第二端抵接在导流通道的第二端的端面与入口压板之间;
压板密封座的内侧壁和/或压板密封座的第二端的端面具有防水圈,防水圈沿压板密封座的周向设置。
在一种可选的实施方式中,本申请提供的衣物护理机,衣架内具有单向接头和与单向接头连通的喷淋组件,衣架连接在转接壳体上时,单向接头依次经入口压板和压板密封座与封堵头抵接,并使封堵头远离压板密封座,从而连通喷淋组件与导流通道。
在一种可选的实施方式中,本申请提供的衣物护理机,衣架的上部和转接容纳腔的下部中的至少一者上具有至少一个滑轨,另一者上具有至少一个延伸 部,衣架经第二开口插接于转接容纳腔内时,延伸部插接于滑轨内且沿滑轨移动。
在一种可选的实施方式中,本申请提供的衣物护理机,滑轨的数量为两个,且两个滑轨分别位于转接容纳腔的下部相对的内侧壁,延伸部位于衣架的顶部;
滑轨的延伸方向与机体的前侧至后侧的方向一致。
在一种可选的实施方式中,本申请提供的衣物护理机,转接容纳腔的内侧壁具有至少一个锁扣凹槽,衣架上具有与锁扣凹槽相匹配的至少一个锁扣,延伸部沿滑轨移动至预设位置时,锁扣卡接于锁扣凹槽内,以使衣架卡接于转接壳体上,且单向接头与封堵头抵接;或者,锁扣在外力的作用下,脱离与锁扣凹槽的卡接。
本申请提供的衣物护理机,通过将导流组件设置在转接壳体的侧方,衣架通过转接壳体与护理系统可拆卸连接,以使护理系统的衣架气流通道内的气流经衣架的顶部进入衣架上的衣物内;导流组件与液体通道连通,以使液体通道的液体经衣架的侧面进入衣架上的衣物内。这样,可旋转的衣架通过转接结构可同时进气流和进液体,且进气流和进液体两者互不影响,由此,能提高衣物的护理效果。
附图说明
图1为本申请实施例提供的衣物护理机的结构示意图;
图2为本申请实施例提供的衣物护理机的内部结构示意图;
图3为本申请实施例提供的衣物护理机中护理系统和衣架的结构示意图;
图4为图3的爆炸图;
图5为本申请实施例提供的衣物护理机中部分供风单元的爆炸图;
图6为图2中A处的局部放大图;
图7为图3中B-B剖面的剖面图;
图8为图2中C处的局部放大图;
图9为本申请实施例提供的衣物护理机中容纳腔分隔壳体的结构示意图;
图10为本申请实施例提供的衣物护理机中下壳体的结构示意图;
图11为本申请实施例提供的衣物护理机导风壳体的结构示意图;
图12为图11中D-D剖面的剖面图;
图13为本申请实施例提供的衣物护理机中衣架的结构示意图;
图14为本申请实施例提供的衣物护理机中衣架另一角度的结构示意图;
图15为本申请实施例提供的衣物护理机中转动单元的爆炸图;
图16为本申请实施例提供的衣物护理机中部分转动单元的结构示意图;
图17为本申请实施例提供的衣物护理机中部分转动单元的俯视图;
图18为图17中F-F剖面的剖面图;
图19为本申请实施例提供的衣物护理机中转动单元第一种状态的结构示意图;
图20为本申请实施例提供的衣物护理机中转动单元第二种状态的结构示意图;
图21为本申请实施例提供的衣物护理机中转动单元第三种状态的结构示意图;
图22为本申请实施例提供的衣物护理机中转轴组件的爆炸图;
图23为本申请实施例提供的衣物护理机中摆杆的结构示意图;
图24为本申请实施例提供的衣物护理机中滑块的结构示意图;
图25为本申请实施例提供的衣物护理机中曲柄的结构示意图;
图26为本申请实施例提供的衣物护理机中主动转盘的结构示意图;
图27为本申请实施例提供的衣物护理机中转轴的结构示意图;
图28为图2中G处的局部放大图;
图29为本申请实施例提供的衣物护理机中衣架和转接结构的结构示意图;
图30为本申请实施例提供的衣物护理机中衣架和转接结构的爆炸图;
图31为本申请实施例提供的衣物护理机中转轴的内部结构示意图;
图32为本申请实施例提供的衣物护理机中转接结构的结构示意图;
图33为本申请实施例提供的衣物护理机中转接结构的俯视图;
图34为图33中H-H剖面的剖面图;
图35为图34中I-I剖面的剖面图;
图36为本申请实施例提供的衣物护理机中转接结构的爆炸图;
图37为本申请实施例提供的衣物护理机中压板密封座的结构示意图;
图38为本申请实施例提供的衣物护理机中压板密封座的内部结构示意图。
附图标记说明
100-护理箱体;110-箱体外壳;120-内胆;130-门体;140-安装空间;150-护理空间;160-衣物;
200-衣架;210-衣架进风口;220-空腔;230-衣架出风口;240-单向接头;250-喷淋组件;251-喷水管;252-喷雾头;260-延伸部;270-锁扣;280-弹性按钮;290-喷口;
300-供液单元;310-净水箱;320-水泵;330-第一水管;340-第二水管;350-液体通道;
400-供风单元;410-第一供风组件;411-第一风机;412-发热器;4121-隔热套;413-供风组件固定座;420-第二供风组件;421-回风端口;422-出风端口;423-冷凝器;424-第二风机;425-压缩机;426-蒸发器;430-衣架气流通道;440-供风箱体;441-下壳体;4411-下壳体底壁;4412-下壳体侧壁;4413-平面部;4414-下壳体延伸部;4415-下壳体出风口;4416-下壳体回风口;4417-挡圈;4418-内出风口;4419-支撑部;4420-外出风口;442-上壳体;4421-转轴支撑孔;4422-转轴减震圈;4423-安装缺口;443-第一腔室;444-第二腔室;445-容纳腔分隔壳体;4451-第一腔体;4452-第二腔体;446-导风壳体;4461-安装孔;4462-导风槽;4463-导风件;450-主气流通道;460-内胆气流通道;470-壳体密封圈;
500-转动单元;510-转轴;511-转轴第一插接部;512-转轴密封圈;513-转轴第二插接部;514-轴承;515-轴承盖;516-轴承套;5161-第一止动部;520- 驱动件;5-摆动结构;530-连接组件;531-摆杆;5311-摆杆滑槽;5312-摆杆连接部;5313-滚轮;5314-滚轮安装槽;5315-检测组件安装槽;532-滑块;5321-滑块滑动部;5322-滑块插接部;5323-滑块延伸部;5324-滑动垫片;5325-垫片套;533-曲柄;5331-第一连接部;5332-第二连接部;534-摆杆支撑架;5341-摆杆端部滑槽;535-连杆;540-转盘组件;541-主动转盘;542-从动转盘;543-第二止动部;550-固定架;551-转盘安装孔;552-固定架减震垫;560-转轴固定座;570-驱动件支架;580-转动单元上盖;
600-转接结构;610-转接壳体;611-转接容纳腔;6111-风力转接区;6112-滑轨;6113-锁扣凹槽;612-转接连接座;6121-容纳槽;6122-管路接头;613-肋板;614-第一开口;615-第二开口;616-安装腔;620-导流组件;621-导流管;622-固定座;6221-导流通道;623-阀门;6231-弹性件;6232-封堵头;6233-压板密封座;6234-倒角;6235-防水圈;624-入口压板;
700-检测组件;710-检测件;720-感应件;
800-温度检测件;
900-灯光模组;
J-间距;E-夹角。
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。
图1为本申请实施例提供的衣物护理机的结构示意图;图2为本申请实施例提供的衣物护理机的内部结构示意图;图3为本申请实施例提供的衣物护理机中护理系统和衣架的结构示意图;图4为图3的爆炸图。参见图1至图4所示,本申请实施例提供的衣物护理机包括机体,机体包括护理箱体100和门体 130,护理箱体100包括箱体外壳110以及设置在箱体外壳110内部的内胆120。门体130铰接在箱体外壳110上,门体130与内胆120形成封闭的护理空间150,其中,护理空间150用于容纳衣物160,其可以是矩形空间、圆柱形空间等。门体130能够相对内胆120打开,以露出护理空间150,从而在护理空间150内放置衣物160。
在具体实现时,护理箱体100为前侧开口的矩形箱体,门体130安装在护理箱体100的前侧。在此需要说明的是,在本申请实施例中,方位词“前”指的是朝向用户的一侧,即,朝向门体130的一侧;方位词“后”指的是与门体130相对的一侧。其中,内胆120的前侧与护理箱体100的前侧一致,内胆120的后侧与护理箱体100的后侧一致,内胆120的高度或者衣物护理机的高度方向与竖直方向一致。
本申请实施例提供的衣物护理机还包括衣架200和护理系统,护理系统包括供液单元300、供风单元400和转动单元500。其中,供风单元400可以包括第一供风组件410和第二供风组件420。衣架200安装在护理箱体100的内胆120的顶部,衣架200起到支撑衣物160的作用;供液单元300通过衣架200向衣物160内部喷淋水雾,对衣物160进行去皱塑形;第二供风组件420向内胆120内提供可循环的气流(例如热风、冷蒸汽或热蒸汽),第一供风组件410通过衣架200向衣物160内部提供可循环的气流(例如热风、冷蒸汽或热蒸汽),通过气流的循环对衣物进行除皱升温除异味等,可以在第一供风组件410和/或第二供风组件420内加入易挥发的护理剂,护理剂会溶解在蒸汽里并进入内胆120,并随着气流循环吹向衣物160,进而对衣物160进行护理。转动单元500可带动衣架200往复摆动,以提高护理效果。
在本申请中,箱体外壳110的内壁和内胆120的外壁之间形成安装空间140,其中,安装空间140的下部可以用于安装供液单元300以及第二供风组件420,安装空间140上部可以用于容纳转动单元500以及第一供风组件410,即转动单元500和第一供风组件410位于内胆120的上部与箱体外壳110的内顶壁之间。 或者,转动单元500位于内胆120的内顶部。
下面,对供液单元300、供风单元400、转动单元500以及衣架200之间的结构的连接方式进行说明。
请继续参见图1至图4所示,本申请中的供液单元300可以包括净水箱310、水泵320以及第一水管330;水泵320的进水端通过第一水管330与净水箱310连通,水泵320的出水端通过第二水管340与衣架200连通。通过水泵320将净水箱310中的水抽吸至衣架200内。
在具体实现时,第二供风组件420、净水箱310和水泵320可以位于内胆120的下方,第一供风组件410和转动单元500可以位于内胆120的上方。其中,转动单元500可以位于第一供风组件410的上方,但是此种方式,没有增加内胆120的有效利用率,反而导致衣物护理机的整体高度增加。或者转动单元500位于内胆120内,这样,转动单元500占用了内胆120高度方向的空间,导致内胆120的有效利用率降低。
图5为本申请实施例提供的衣物护理机中部分供风单元的爆炸图;图6为图2中A处的局部放大图;图7为图3中B-B剖面的剖面图;图8为图2中C处的局部放大图;图9为本申请实施例提供的衣物护理机中容纳腔分隔壳体的结构示意图;图10为本申请实施例提供的衣物护理机中下壳体的结构示意图;图11为本申请实施例提供的衣物护理机导风壳体的结构示意图;图12为图11中D-D剖面的剖面图;图13为本申请实施例提供的衣物护理机中衣架的结构示意图;图14为本申请实施例提供的衣物护理机中衣架另一角度的结构示意图。参见图1至图14所示,基于此,在一些实施例中,供风单元400包括供风箱体440,第一供风组件410位于供风箱体440内的,供风箱体440具有与内胆120连通的气流循环通道,以使气流在内胆120和供风箱体440之间循环。
具体的,转动单元500和第一供风组件410均位于机体内,且转动单元500和部分供风箱体440位于内胆120的上方,第一供风组件410位于转动单元500的侧方,且部分转动单元500插设于气流循环通道内。其中,另一部分供风箱 体440可以位于内胆120内,或者位于内胆120的侧方。位于内胆120内的部分供风箱体440可以位于内胆120的后侧,即将衣架200挂在内胆120内时,位于内胆120内的部分供风箱体440与衣架200沿内胆120的前侧至后侧并排设置,这样,虽然部分供风箱体440占用了内胆120前侧和后侧方向的空间,但并没有占用内胆120高度方向的空间,且对于衣架200的摆动没有产生影响。
在本申请中,将转动单元500和部分供风箱体440设置在内胆120的上方,第一供风组件410设置于转动单元500的侧方,并且将部分转动单元500插设于气流循环通道内,这样,转动单元500和部分供风单元400重叠,由此,在未占用内胆120高度方向的空间的基础上,减小了转动单元500和供风单元400占用衣物护理机整体的高度空间。
请继续参见图5至图7所示,在具体实现时,供风箱体440可以包括下壳体441和覆盖在下壳体441上的上壳体442,上壳体442和下壳体441共同围成供风单元容纳腔,供风单元容纳腔具有第一腔室443和与第一腔室443连通的第二腔室444,第一供风组件410位于第一腔室443内,部分下壳体441延伸至内胆120内,部分转动单元500插设于第二腔室444内。
需要说明的是,第一腔室443和第二腔室444之间没有严格的界限,第一腔室443和第二腔室444仅为供风单元容纳腔两个分别用于容纳第一供风组件410和部分转动单元500不同的区域。
请继续参见图1至图7、图10所示,具体的,上壳体442可以呈板状,下壳体441可以包括下壳体底壁4411和下壳体侧壁4412,下壳体侧壁4412围设在下壳体底壁4411的周侧且封闭设置,其中,下壳体侧壁4412的上端或者上部与上壳体442连接,下壳体侧壁4412的下端或者下部与下壳体底壁4411连接。下壳体底壁4411朝向内胆120,下壳体底壁4411具有平面部4413和与平面部4413连接的下壳体延伸部4414,下壳体延伸部4414位于内胆120内,且朝向内胆120的后侧。
其中,内胆120的部分顶壁可以敞开设置,换而言之,内胆120的部分顶 壁具有下壳体安装孔,下壳体底壁4411嵌入下壳体安装孔,由此,以封闭内胆120的顶壁。即下壳体底壁4411作为内胆120的部分顶壁。这样,直接在下壳体底壁4411开设通孔,即可实现内胆120与供风单元容纳腔之间的连通。
在具体实现时,平面部4413上具有下壳体出风口4415,下壳体延伸部4414上具有下壳体回风口4416,下壳体出风口4415和下壳体回风口4416用于连通供风单元容纳腔和内胆120,下壳体出风口4415、下壳体回风口4416以及供风单元容纳腔共同形成气流循环通道。其中,下壳体出风口4415与第二腔室444相对,下壳体回风口4416与第一腔室443相对。
需要说明的是,下壳体出风口4415、下壳体回风口4416以及供风单元容纳腔共同形成气流循环通道为内胆120与供风箱体440之间的气流循环。该气流循环可以称为辅助气流循环,且主要由第一供风组件410提供动力。衣物护理机还具有主气流循环,主气流循环主要由第二供风组件420提供动力。
下面,结合第一供风组件410和第二供风组件420的结构,对内胆120内的气流循环方式进行说明。
第一供风组件410可以包括第一风机411和发热器412,发热器412位于第一风机411和上壳体442之间。其中,发热器412用于加热气体,其可以是PTC加热器、滑轮式热风机等。第一风机411产生负压使气流循环,不断将内胆120内的气流经下壳体回风口4416吸入供风单元容纳腔的第一腔室443内,气流经发热器412加热后吹向第二腔室444,然后经下壳体出风口4415吹入内胆120内。其中,下壳体回风口4416的数量可以为多个,下壳体回风口4416呈格栅方式设置,以防止用户特别是小孩手指进入供风单元容纳腔内。
第一供风组件410对供风单元容纳腔的气流进行加热,在衣物护理机的烘干模式时,第一供风组件410可输出热风,加快衣物160上半部的水分挥发,加快衣物160的烘干速度。同时,在蒸汽护理状态下,可对底部第二供风组件420输出的水蒸气分子进行二次加热汽化,然后在第一风机411的作用下,输送到衣物169的外表面和内部,二次汽化后的水蒸气可渗透能力更强,护理效果 更好。
在一种可能的实现方式中,供风单元400为外循环烘干模式,此时,护理箱体100还设置有与外界环境连通的两个通气孔,其中一个通气孔用于排出湿热的气体,另外一个通气孔用于通入干冷的气体,如此循环以烘干内胆120中的衣物160。
请继续参见图2至图8所示,在另一种可能的实现方式中,供风单元400为内循环烘干模式,此时,供风单元400还包括第二供风组件420,第二供风组件420用于将内胆120内的水蒸汽冷凝形成冷凝水,如此以烘干衣物。其中,第二供风组件420安装在护理箱体100底部的安装空间140内,第二供风组件420的回风端口421和出风端口422设置在护理箱体100的底壁。如此,在护理箱体100的顶部和底部分别设置第一供风组件410和第二供风组件420以对衣物160进行烘干,有利于提高烘干效率,特别是对于长款的大衣、棉衣等。
其中,第二供风组件420包括压缩机425、蒸发器426、冷凝器423以及第二风机424。本申请实施例提供的第二供风组件420的烘干原理如下:
第二风机424转动产生负压区,使得护理空间150内的湿冷气体经过回风端口421进入到护理箱体100底部的安装空间140;冷媒在压缩机425的作用下变成高温高压气体,高温高压气体在冷凝器423释放热量,冷媒变成低温液体;其释放的热量将湿冷气体加热形成湿热气体。低温液体冷媒经过蒸发器426时与湿热气体进行换热,气体中的水分在蒸发器426冷凝形成冷凝水,而存储在冷凝水箱中;蒸发器426中的冷媒被加热循环至压缩机425中,而湿热气体经过换热后形成干燥气体,经过出风端口422排入到内胆120内,如此往复对内胆120内的衣物进行烘干。
请继续参见图1至图14所示,下面,对于气流循环通道的结构进行说明。
在本申请中,气流循环通道包括主气流通道450、内胆气流通道460和至少一个衣架气流通道430,各衣架气流通道430和内胆气流通道460均与主气流通道450连通,各衣架气流通道430与内胆气流通道460相互隔开。即各衣架气 流通道430之间可以相互隔开,互不连通。每个衣架气流通道430可以与内胆气流通道460相互隔开,互不连通。
主气流通道450与第一腔室443相对应,衣架气流通道430和内胆气流通道460与第二腔室444相对应,部分转动单元500插设于衣架气流通道430内。
为了将各衣架气流通道430与内胆气流通道460相互隔开。在一些实施例中,供风箱体440还包括位于供风单元容纳腔内的容纳腔分隔壳体445,容纳腔分隔壳体445具有第一腔体4451和与第一腔体4451相邻的第二腔体4452,第一供风组件410位于第一腔体4451内,第一腔体4451位于第一腔室443内,第二腔体4452位于第二腔室444内。
在具体实现时,第一腔体4451和第二腔体4452的由上壳体442至下壳体441的两侧均具有开口,从而使气流由第一腔体445的顶部流至第二腔体4452的顶部,从而进入第二腔体4452内。
具体的,第一供风组件410还具有供风组件固定座413,发热器412和第一风机411均位于供风组件固定座413内,供风组件固定座413可以位于第一腔体445内,第一腔体445的一端与第一腔体445连通,第一腔体445的另一端与第二腔体4452连通,以使气流由第一腔体445的顶部流至第二腔体4452的顶部。发热器412的周侧具有至少两个隔热套4121,第一腔体445朝向上壳体442的一侧具有安装缺口4423,隔热套4121插设于安装缺口4423上,以将发热器412固定在第一腔体445内,且隔热套4121起到隔绝热量的作用,避免发热器412产生的热量经容纳腔分隔壳体445传递至上壳体442和下壳体441。
在一些实施例中,转动单元500具有至少一个可绕自身轴线旋转的转轴510,转轴510插设于衣架气流通道430内且与衣架气流通道430一一对应设置,下壳体441的内壁具有延伸置第二腔体4452内的至少一个封闭的挡圈4417,下壳体出风口4415包括至少一个内出风口4418,挡圈4417与内出风口4418一一对应设置,挡圈4417的内侧壁和内出风口4418共同形成衣架气流通道430,内出风口4418内具有支撑部4419,转轴510抵接在支撑部4419上,且部分转轴510 经支撑部4419伸入内胆120内。
第二腔体4452的内侧壁与挡圈4417的外侧壁之间具有间隙,下壳体出风口4415包括至少一个外出风口4420,第二腔体4452的内侧壁、部分下壳体441的内底壁、挡圈4417的外侧壁以及外出风口4420共同形成内胆气流通道460,内胆气流通道460围绕衣架气流通道430设置。
在具体实现时,挡圈4417可以呈圆环状或者矩形环状。一个挡圈4417对应一个内出风口4418,挡圈4417的内侧壁和与挡圈4417相对的内出风口4418共同形成衣架气流通道430,一个转轴510连接一个衣架200,一个衣架200对应一个衣架气流通道430。衣架200的底部具有至少一个衣架出风口230,衣架200的顶部具有衣架进风口210,衣架进风口210与内出风口4418相对且与内出风口4418连通。这样,一部分气流经衣架气流通道430的内出风口4418进入衣架进风口210,然后经衣架出风口230流至衣架200上的衣物160的内部(气流的流向见图6和图7中实线箭头所示),另一部分气流经内胆气流通道460进入内胆120内,并流至内胆120内的衣物的外部(气流的流向见图6和图7中虚线箭头所示),由此,对衣物160的内部和外部同时进行护理,以提高衣物的护理效果。
请继续参见图5、图6、图9至图14所示,为了对内胆气流通道460进行导流。在一些实施例中,供风箱体440还包括导风壳体446,导风壳体446位于容纳腔分隔壳体445和下壳体441之间,导风壳体446上具有至少一个安装孔4461,安装孔4461与挡圈4417相匹配且一一对应设置,安装孔4461穿设在挡圈4417上,且安装孔4461的内侧壁与挡圈4417的外侧壁抵接。
导风壳体446上具有多个导风槽4462,间隙内的气流依次经导风槽4462和外出风口4420进入内胆120。通过导风槽4462对进入内胆气流通道460内的气流进行汇聚,可让进入内胆120的气流更集中,喷射距离更远。
在具体实现时,各导风槽4462呈矩形阵列形式排布,安装孔4461位于相邻两列导风槽4462之间,导风槽4462的延伸方向与各导风槽4462的列排列方 向一致;导风槽4462的延伸方向的至少一侧设置导风件4463,导风件4463朝向导风槽4462的外侧倾斜,由此,可形成对导风槽4462的单面导风或者双面导风。
其中,导风件4463与沿导风槽4462延伸方向延伸的竖直面之间的夹角E为15~45°。这样,便于加工,且对导风槽4462的导风效果较好。
在一实施例中,衣物护理机还包括温度检测件800和灯光模组900,温度检测件800位于第一腔室443内,温度检测件800可以与衣物护理机内的总控制器电连接,通过温度检测件800检测第一腔室443内的温度,当第一腔室443内的温度小于或者等于预设温度值时,可以选择关闭第一供风组件410,仅开启第二供风组件420,从而减小能源的浪费,当第一腔室443内的温度大于预设温度值时,开启第一供风组件410和第二供风组件420,以保证衣物160的护理效果。
灯光模组900用于为内胆120内提供光亮,灯光模组900位于内胆120内,灯光模组900与下壳体延伸部4414连接。灯光模组900的出光面朝向衣物160,在门体130打开时,灯光模组900可同时开启。
上壳体442与容纳腔分隔壳体445之间具有壳体密封圈470,由此,防止气流经上壳体442与容纳腔分隔壳体445之间的间隙流出。
上壳体442上具有至少一个转轴支撑孔4421,转轴支撑孔4421上套设有转轴减震圈4422,转轴510经转轴减震圈4422插设于衣架气流通道430内。
图15为本申请实施例提供的衣物护理机中转动单元的爆炸图;图16为本申请实施例提供的衣物护理机中部分转动单元的结构示意图;图17为本申请实施例提供的衣物护理机中部分转动单元的俯视图;图18为图17中F-F剖面的剖面图;图19为本申请实施例提供的衣物护理机中转动单元第一种状态的结构示意图;图20为本申请实施例提供的衣物护理机中转动单元第二种状态的结构示意图;图21为本申请实施例提供的衣物护理机中转动单元第三种状态的结构 示意图;图22为本申请实施例提供的衣物护理机中转轴组件的爆炸图;图23为本申请实施例提供的衣物护理机中摆杆的结构示意图;图24为本申请实施例提供的衣物护理机中滑块的结构示意图;图25为本申请实施例提供的衣物护理机中曲柄的结构示意图;图26为本申请实施例提供的衣物护理机中主动转盘的结构示意图;图27为本申请实施例提供的衣物护理机中转轴的结构示意图。
参见图1至图27所示,在本申请中,转动单元500可带动衣架200往复摆动,当衣物护理机运行结束,或者摆动过程中暂停时,衣架200立即停止摆动,若此时衣架200与机体之间形成一定的偏斜,则导致衣架200难以顺畅的从机体中取出。即衣架200为图20或图21所示的倾斜位置,由于柜体的内胆120空间有限,倾斜的衣架200占用空间较大,导致衣架200难以顺畅的从机体的内胆120中取出。
基于此,在一些实施例中,衣物护理机还包括控制器(图中未示出)和检测组件700,转动单元包括驱动件520和摆动结构5,摆动结构5用于连接衣架200,驱动件520与摆动结构5连接以通过摆动结构驱动衣架200在初始位置的两侧往复摆动;
检测组件700和驱动件520均与控制器电连接,检测组件700用于检测摆动结构5的位置,当驱动件520停止驱动时,控制器控制驱动件520驱动摆动结构5回复至预设位置,以使衣架200摆动至初始位置。
需要说明的是,图19中衣架200的位置即为衣架200的初始位置,此时打开门体130,衣架200的长度方向垂直朝向用户,便于用户将衣架200从内胆120中取出。图19中摆动结构5的位置,即为摆动结构5的预设位置。
在具体实现时,摆动结构5可以为摆杆摆动结构或者曲柄摇杆等摆动结构,本实施例在此不加以限制。检测组件700可以持续检测摆动结构5的位置,或者仅在驱动件520停止驱动时检测摆动结构5的位置。只要驱动件520停止驱动,控制器控制驱动件520驱动摆动结构5回复至预设位置,以使衣架200摆动至初始位置,由此,使衣架200在驱动件520停止后,衣架200的长度方向 垂直朝向用户,保持图19中的初始位置,这样,便于将衣架200从内胆120中取出。
在具体实现时,检测组件700可以与转动单元500连接,衣物护理机关机或衣物护理机暂停的情况下,有取出衣物160的需求,因此,在本实施例中,检测组件700用于在衣物护理机关机或衣物护理机暂停,导致的驱动件520停止驱动时,检测摆动结构5的位置。而在衣物护理机正常的护理衣物160的过程中,检测组件700无需检测摆动结构5的位置,由此,避免检测组件700的过渡且无效使用,提高检测组件700的使用寿命。
具体的,检测组件700包括检测件710和感应件720,检测件710用于检测感应件720,也就是说,感应件720可被检测件710感应,摆动结构5位于预设位置时,检测件710和感应件720相对,检测件710和感应件720相对时,检测件710感应到感应件720,并转化为感应信号传递至控制器,此时控制器控制驱动件520停止驱动,以使摆动结构5位于预设位置。
其中,检测件710和感应件720中的至少一者位于转动单元500上。
在具体实现时,感应件720为磁性件,检测件710为传感器或接近开关。例如,感应件720为磁铁,检测件710为霍尔传感器,通过磁吸方式进行感应,由此,检测件710的感应更灵敏。
请继续参见图1至图27所示,本申请中摆动结构5包括连接组件530和与连接组件530连接的转盘组件540;其中,转盘组件540包括主动转盘541和与主动转盘541连接的至少一个从动转盘542,主动转盘541和各从动转盘542均可用于连接衣架200。
驱动件520用于驱动连接组件530沿预设角度以可变的速度往复摆动,以带动主动转盘541绕其轴线沿预设角度往复变速旋转,各从动转盘542与主动转盘541联动,以使从动转盘542绕其轴线沿预设角度往复变速旋转。
具体的,驱动件520可以为电机或者旋转气缸,通过驱动件520自身的变 速往复摆动,或者驱动件520的旋转传递至连接组件530,连接组件530将旋转运动转化为可变速的往复摆动,从而带动主动转盘541绕其轴线沿预设角度往复变速旋转,以及从动转盘542绕其轴线沿预设角度往复变速旋转。这样,可实现与主动转盘541和各从动转盘542相对连接衣架200沿预设角度往复变速旋转,由此,衣物160在摆动过程中具有不同的加速度,提高衣物160的扭动效果,便于抖落衣物160上的灰尘或毛屑等异物。
在本实施例中,连接组件530可以为摆动导杆组件,摆动导杆组件与驱动件520连接,摆动导杆组件将驱动件520的旋转运动转化为可变速的往复摆动。通过摆动导杆组件的急回特性,实现衣架200在预设角度内的变速运动,由此,使衣物160在摆动过程中具有不同的加速度,以实现衣物160在扭动过程中去程慢速,回程急回,如此使衣物扭160动过程中具有更好的惯性,从而实现更好的扭动效果。
请继续参见图15至图21所示,在具体实现时,摆动导杆组件包括摆杆531、滑块532和与滑块532连接的曲柄533,摆杆531与主动转盘541连接,摆杆531上具有沿摆杆531的延伸方向延伸的摆杆滑槽5311,滑块532插设于摆杆滑槽5311内,曲柄533与驱动件520的输出轴连接,以使驱动件520通过曲柄533驱动滑块532在摆杆滑槽5311内往复滑动,以及摆杆531带动主动转盘541绕其轴线沿预设角度往复变速旋转。
在本申请中,驱动件520带动与其连接的曲柄533绕驱动件520的输出轴的轴线旋转,曲柄533旋转一周的过程中,带动滑块532沿摆杆滑槽5311的延伸方向往复滑动,在滑块532滑动的过程中带动摆杆531在图21中左侧的最大位置、初始位置和图20中右侧的最大位置之间移动摆动,利用摆杆531回程过程中的急回特性,带动主动转盘541绕其轴线沿预设角度往复变速旋转。
需要说明的是,预设角度可以根据摆杆531的摆动范围确定,当摆杆531位于初始位置(即图19中摆杆531的角度为0°)时,滑块532位于摆杆滑槽5311的延伸方向的第一端。随着滑块532由摆杆滑槽5311的延伸方向的第一端 滑动至摆杆滑槽5311的中部,摆杆531摆动至图21中左侧的最大位置,此时摆杆531与其初始位置具有第一夹角。随着滑块532的继续滑动,滑块532由摆杆滑槽5311的中部滑动至摆杆滑槽5311的延伸方向的第二端,摆杆531回至初始位置。随着滑块532的继续滑动,滑块532由摆杆滑槽5311的延伸方向的第二端摆杆滑动至滑槽5311的中部,摆杆531摆动至图20中右侧的最大位置,此时摆杆531与其初始位置具有第二夹角。第一夹角和第二夹角之和为预设角度,即第一夹角和第二夹角共同组成预设角度。
可以理解的是,当滑块532由摆杆滑槽5311的中部滑动至摆杆滑槽5311的延伸方向的第一端摆杆或者滑块532由摆杆滑槽5311的中部滑动至摆杆滑槽5311的延伸方向的第二端的过程可以称为摆杆531的回程。
在具体实现时,摆杆531的第一端可以与主动转盘541连接,由此,避免摆杆531在往复变速摆动的过程中,摆杆531的第一端与其他部件产生干涉。摆杆531的第二端悬空可自由活动。
在本申请中,摆动导杆组件还包括摆杆支撑架534,摆杆支撑架534上具有摆杆端部滑槽5341,部分摆杆531位于摆杆端部滑槽5341内,且沿摆杆端部滑槽5341的延伸方向移动。由此,通过摆杆端部滑槽5341支撑摆杆531悬空可自由活动的摆杆531的第二端,以使摆杆531能平稳的往复摆动。
在一实施例中,摆杆端部滑槽5341呈弧形,摆杆端部滑槽5341的圆心角大于或等于预设角度。摆杆531在摆杆端部滑槽5341的延伸范围内摆动,当摆杆端部滑槽5341的圆心角等于预设角度时,摆杆531摆动至图20中右侧的最大位置,摆杆531的第二端的侧面与摆杆端部滑槽5341的一端抵接,摆杆531摆动至图21中左侧的最大位置,摆杆531的第二端的侧面与摆杆端部滑槽5341的另一端抵接,由此,以将摆杆531的摆动范围限制在摆杆端部滑槽5341内。
在一种可能的实现方式中,摆杆531的第二端经摆杆端部滑槽5341的槽口伸入至摆杆端部滑槽5341内。此时,摆杆531的第二端的端面设置滚轮5313,滚轮5313的轮面与摆杆端部滑槽5341的槽底滚动接触;和/或,摆杆531上设 置滚轮5313,滚轮5313靠近摆杆531的第二端,滚轮5313的轮面与摆杆端部滑槽5341的至少一个内侧壁滚动接触。
在具体实现时,可以在摆杆531上开设滚轮安装槽5314,滚轮安装槽5314靠近摆杆531的第二端,滚轮5313滚动连接在滚轮安装槽5314内,滚轮5313的轮面抵接在摆杆端部滑槽5341相对的两个内侧壁之间。
在另一种可能的实现方式中,摆杆端部滑槽5341可以为顶部和底壁连通的槽状结构,摆杆531的第二端经摆杆端部滑槽5341的槽口和槽底伸出摆杆端部滑槽5341外,摆杆531上设置滚轮5313,滚轮5313靠近摆杆531的第二端,滚轮5313的轮面与摆杆端部滑槽5341的至少一个内侧壁滚动接触。
为了便于摆杆531与主动转盘541连接,在本申请中,摆杆531上还具有摆杆连接部5312,摆杆连接部5312套接在主动转盘541上且与主动转盘541可拆卸连接,摆杆滑槽5311位于摆杆连接部5312和滚轮5313之间。例如,摆杆连接部5312上具有耳座和设置在耳座上的耳孔,相应的,主动转盘541上具有耳座和设置在耳座上的耳孔,螺钉依次穿过摆杆连接部5312上的耳孔与主动转盘541上的耳孔以连接摆杆531与主动转盘541。
为了便于安装转盘组件540,在一些实施例中,转动单元500还包括固定架550,固定架550上具有间隔且并排设置的至少两个转盘安装孔551,主动转盘541和各从动转盘542分别安装于不同的转盘安装孔551内,当转盘安装孔551的数量为三个或三个以上时,主动转盘541位于固定架550的中部的转盘安装孔551内。各从动转盘542与主动转盘541联动,通过将主动转盘541设置在各从动转盘542的中部,由此,以使主动转盘541传递至各从动转盘542的力较为均匀。
在本实施例中,可以通过连杆535连接主动转盘541和各从动转盘542,以实现各从动转盘542与主动转盘541联动。具体的,摆动导杆组件包括多个连杆535,各连杆535依次首尾铰接形成两个连杆组,两个连杆组相互平行且分别位于主动转盘541相对的两侧。
同一连杆组中的连杆535的两端分别与相邻的从动转盘542铰接,或者,同一连杆组中的连杆535的两端分别与相邻的从动转盘542和主动转盘541铰接;
同一连杆组中的连杆535和主动转盘541的铰接点与相邻两个连杆535的铰接点重合,同一连杆组中的连杆535和从动转盘542的铰接点与相邻两个连杆535的铰接点重合。
为了便于描述,本实施例以及附图中,以连杆535的数量为四个,从动转盘542的数量为两个进行说明。四个两两形成连杆组,形成平行四连杆,两个从动转盘542分别位于主动转盘541的两侧,第一个连杆535的第一端与第一个从动转盘542铰接,第一个连杆535的第二端、第二个连杆535的第一端以及主动转盘541在主动转盘541的同一点铰接,第二个连杆535的第二端与第二个从动转盘542铰接。第三个连杆535和第四个连杆535位于主动转盘541的另一侧,其与主动转盘541和各从动转盘542的铰接方式与第一个连杆535和第二个连杆535的铰接方式相同,此处不再一一赘述。
当摆杆531处于初始位置时,主动转盘541上的连杆535的两个铰接点之间的间距J大于或等于1mm且小于或等于2mm。这样,形成连杆组错位排布的形式,避免摆杆531在死点位置时被卡死。
请继续参见图15至图27所示,下面对于曲柄533与驱动件520以及滑块532的连接方式进行说明。
曲柄533上具有第一连接部5331和第二连接部5332,第一连接部5331套接在驱动件520的输出轴上且与驱动件520的输出轴固接,滑块532具有滑块滑动部5321和滑块插接部5322,滑块滑动部5321位于摆杆滑槽5311内,滑块插接部5322的第一端与滑块滑动部5321连接,滑块插接部5322插设于第二连接部5332内且与第二连接部5332转动连接。
具体的,第一连接部5331和第二连接部5332可以均呈套筒状,第一连接部5331套接在驱动件520的输出轴上,通过连接轴从垂直于第一连接部5331 的轴向的方向穿过第一连接部5331和驱动件520的输出轴,以将连接曲柄533与驱动件520的输出轴固接,以防止两者相互转动。
其中,滑块插接部5322的周侧还具有滑块延伸部5323,滑块延伸部5323抵接在摆杆531朝向曲柄533的一面,由此,以使滑块滑动部5321在摆杆滑槽5311内滑动,以防止摆杆531移动至滑块插接部5322。
滑块插接部5322的第二端位于第二连接部5332外,且依次套接有滑动垫片5324和垫片套5325。由此,避免曲柄533和滑块532直接滑动摩擦造成磨损。
为了便于衣架200与转动单元500连接,在本申请中,转动单元500还包括至少两个转轴组件,主动转盘541和各从动转盘542分别与转轴组件一一对应连接,转轴组件与衣架200相对连接。
具体的,转轴组件包括转轴510和转轴固定座560,转轴510套接在转轴固定座560上且可相对于转轴固定座560旋转,转轴固定座560与固定架550连接。
转轴510的两端分别具有转轴第一插接部511和转轴第二插接部513,转轴第一插接部511与衣架200相对连接,主动转盘541或各从动转盘542与转轴第二插接部513可拆卸连接。其中,转轴第一插接部511和转轴第二插接部513上可设置螺钉孔,通过螺钉相对连接转轴第一插接部511与衣架200,或者通过螺钉连接主动转盘541与转轴第二插接部513,或者通过螺钉连接从动转盘542与转轴第二插接部513。转轴第一插接部511和转轴第二插接部513远离转轴510的一端可以均设置扁位,即沿转轴第一插接部511的轴向或转轴第二插接部513的轴向切除一部分,从而使转轴第一插接部511的横截面或转轴第二插接部513的横截面为D型,由此,以防止衣架200与转轴第一插接部511之间相对转动,以及主动转盘541或各从动转盘542与转轴第二插接部513之间相对转动。
可以理解的是,与衣架200相对连接的部分转轴第一插接部511的横截面也可以为三角形或者其他多边形,以防止衣架200与转轴第一插接部511之间 相对转动。或者,与主动转盘541或各从动转盘542连接的部分转轴第二插接部513的横截面也可以为三角形或者其他多边形,以防止主动转盘541或各从动转盘542与转轴第二插接部513之间相对转动。
转轴第一插接部511和转轴第二插接部513上均套接有轴承514和轴承盖515,至少一个轴承盖515与转轴固定座560固接或一体成型。轴承514的内圈套接在转轴第一插接部511或转轴第二插接部513上,轴承514的外圈与转轴固定座560固接,从而使转轴510相对于转轴固定座560旋转。其中,轴承514可以为滚珠轴承,从而使转轴510的转动时噪声较小,更好的实现静音效果。在具体实现时,转轴第一插接部511和转轴第二插接部513的直径可以小于转轴510的直径,从而在转轴第一插接部511和转轴第二插接部513分别与转轴510的连接处形成轴肩,轴承514抵接在轴肩,以便于安装和固定轴承514。
其中,转轴固定座560保护转轴510和轴承514,避免直接受到热风冲击,或者是热空气冲击,提高转轴510和轴承514使用寿命。
转轴第一插接部511和转轴第二插接部513上均套接有轴承套516,轴承套516上具有第一止动部5161,主动转盘541和/或各从动转盘542上具有与第一止动部相匹配的第二止动部543。其中,第一止动部5161和第二止动部543的数量可以均为至少一个,第一止动部5161和第二止动部543中的一者为凹槽,另一者为与凹槽相匹配的缺口,由此,以防止衣架200与转轴第一插接部511之间相对转动,以及主动转盘541或各从动转盘542与转轴第二插接部513之间相对转动。第一止动部5161和第二止动部543也可以为上述的扁位,此时,转轴第一插接部511和转轴第二插接部513上可以不设置扁位。
在一些实施例中,转动单元500还包括驱动件支架570,驱动件520安装于驱动件支架570上,驱动件支架570连接在固定架550上,摆杆支撑架534连接在驱动件支架570上。由此,以将转动单元500中的各部件连接在一起,便于转动单元500整体的拆装。
转动单元500还包括转动单元上盖580,转动单元上盖580覆盖在固定架 550上且与固定架550形成转动单元腔体,摆杆支撑架534、驱动件支架570、摆杆531、滑块532和转盘组件540位于转动单元腔体内。
在具体实现时,固定架550朝向转动单元上盖580的一面上具有至少一个固定架减震垫552,固定架减震垫552与转动单元上盖580抵接。由此,以降低转动单元500工作中产生的噪音,以及转动单元500与机体的共振。
请继续参见图15至图18所示,下面结合转动单元500的具体结构,对于检测组件700的不同设置位置进行说明。
在一种可能的实现方式中,检测件710和感应件720中的一者位于摆杆531上,另一者位于摆杆端部滑槽5341上。本实施例以检测件710位于摆杆端部滑槽5341上,感应件720位于摆杆531上进行说明。例如,检测件710位于摆杆端部滑槽5341的内侧壁,感应件720位于摆杆531朝向摆杆端部滑槽5341的表面;或者,检测件710位于摆杆端部滑槽5341的内底壁,感应件720位于摆杆531朝向摆杆端部滑槽5341的端面。
在另一种可能的实现方式中,检测件710和感应件720中的一者位于摆杆531上,另一者位于转动单元上盖580朝向摆杆531的一面。摆杆531具有检测组件安装槽5315,检测件710或感应件720嵌入检测组件安装槽5315内,摆杆滑槽5311位于摆杆连接部5312和检测组件安装槽5315之间,滚轮5313位于摆杆滑槽5311和检测组件安装槽5315之间,检测组件安装槽5315位于摆杆端部滑槽5341的外侧。
本实施例以及附图中,以感应件720位于摆杆531上,检测件710位于转动单元上盖580朝向摆杆531的一面进行说明。其中,摆杆531穿出摆杆端部滑槽5341的外侧,并在穿出摆杆端部滑槽5341的外侧的摆杆531上设置检测组件安装槽5315,感应件720嵌入检测组件安装槽5315内,检测件710位于转动单元上盖580上,且朝向感应件720。将感应件720设置在摆杆端部滑槽5341之外,避免感应件720影响滚轮5313的安装,滚轮5313的轮面可以与摆杆端部滑槽5341的内侧面相同或者大于摆杆端部滑槽5341的内侧壁,由此,保证 滚轮5313与摆杆端部滑槽5341的内侧壁具有较大的接触面积,使摆杆端部滑槽5341通过滚轮5313对摆杆531进行稳固的滚动支撑,以使摆杆531能平稳摆动。
图28为图2中G处的局部放大图;图29为本申请实施例提供的衣物护理机中衣架和转接结构的结构示意图;图30为本申请实施例提供的衣物护理机中衣架和转接结构的爆炸图;图31为本申请实施例提供的衣物护理机中转轴的内部结构示意图;图32为本申请实施例提供的衣物护理机中转接结构的结构示意图;图33为本申请实施例提供的衣物护理机中转接结构的俯视图;图34为图33中H-H剖面的剖面图;图35为图34中I-I剖面的剖面图;图36为本申请实施例提供的衣物护理机中转接结构的爆炸图;图37为本申请实施例提供的衣物护理机中压板密封座的结构示意图;图38为本申请实施例提供的衣物护理机中压板密封座的内部结构示意图。
参见图1至图38所示,为了便于将衣架200连接在内胆120内,本申请提供的衣物护理机还包括转接结构600,转接结构600包括转接壳体610和设置在转接壳体610侧方的导流组件620,衣架200通过转接壳体610与护理系统可拆卸连接,以将护理系统向机体内提供用于护理衣物160的气流依次经衣架气流通道430和衣架200的顶部引导至衣架200上的衣物160内,导流组件620与液体通道350连通,以将护理系统向机体内提供用于护理衣物的液体依次经液体通道350和衣架200的侧面引导至衣架200上的衣物160内。
在本实施例中,通过将导流组件620设置在转接壳体610的侧方,衣架200通过转接壳体610与护理系统可拆卸连接,以使护理系统的衣架气流通道430内的气流经衣架200的顶部进入衣架200上的衣物160内;导流组件620与液体通道350连通,以使液体通道350的液体经衣架200的侧面进入衣架200上的衣物160内。这样,可旋转的衣架200通过转接结构600可同时进气流和进液体,且进气流和进液体两者互不影响,由此,能提高衣物的护理效果。
在具体实现时,转动单元500的转轴510插设于供风单元400的衣架气流通道430内,由此,节省了空间,使衣物护理机的结构较为紧凑。转轴510部分伸出衣架气流通道430以与转接壳体610连接,以通过转接壳体610驱动衣架200旋转。其中,转轴510可以通过螺钉、卡接等可拆卸的连接方式与转接壳体610连接,或者转轴510与转接壳体610固接。由此,可以将转接结构600从转动单元500的转轴510上拆卸,便于转接结构600的拆装与维护。
具体的,转轴510、转接结构600和衣架200可以一一对应设置,即一个转轴510上连接一个转接壳体610,一个转接壳体610上连接一个衣架200。各转轴510可以通过同一驱动部件驱动其往复摆动,或者各转轴510分别设置独立的驱动部件,以驱动其往复摆动。
请继续参见图28至图38所示,在一些实施例中,转轴510上具有沿其轴线延伸的进液孔,以形成液体通道350,导流组件620部分伸入转接壳体610内且与进液孔相对连通。由此,将液体通道350集成在转轴510内,节省了液体通道350占用的空间。
在本申请中,转接壳体610内具有转接容纳腔611,转接容纳腔611内具有转接连接座612,转接连接座612与转接容纳腔611的内壁通过至少两个肋板613连接,转接连接座612上具有容纳槽6121,转轴510插设在容纳槽6121内且与转接连接座612可拆卸连接。
可以理解的是,肋板613的数量可以为两个或者两个以上。本实施例的附图中以肋板613的数量为四个进行说明,转接容纳腔611可以为矩形,四个肋板613呈十字形排布将转接连接座612固定在转接容纳腔611的中部区域。
其中,转轴510上可以具有转轴第一插接部511,转轴第一插接部511的截面可以为D型、三角形或者其他多边形,容纳槽6121与转轴第一插接部511相匹配,转轴第一插接部511插设于容纳槽6121内,以防止转轴第一插接部511相对于容纳槽6121转动。容纳槽6121的槽底具有与容纳槽6121连通的通孔,转轴第一插接部511上具有螺纹孔,螺钉穿过通孔并与螺纹孔连接,以将转轴 510可拆卸的连接在转接连接座612上。
转接连接座612上具有与容纳槽6121连通的管路接头6122,管路接头6122的第一端与进液孔连通,导流组件620部分伸入转接壳体610内并与管路接头6122的第二端连通。由此,通过管路接头6122连通导流组件620与液体通道350。
在一些实施例中,容纳槽6121与转轴第一插接部511之间具有转轴密封圈512,转轴密封圈512朝向容纳槽6121的一面和朝向转轴第一插接部511的一面均具有防水筋,转轴510和转接连接座612通过螺钉连接时,转轴密封圈512受到挤压,以密封容纳槽6121与转轴第一插接部511的接触面,由此,防止液体经容纳槽6121与转轴第一插接部511之间渗漏。
请继续参见图14、图29、图30、图33至图34所示,为了便于供风单元400提供的气流通过转接结构600进入衣架200内,在一些实施例中,转接壳体610上具有相对的第一开口614和第二开口615,第一开口614和第二开口615均与转接容纳腔611连通,转轴510经第一开口614插设在容纳槽6121内,第一开口614与衣架气流通道430相对且与衣架气流通道430连通,衣架200的顶部具有衣架进风口210,第二开口615与衣架进风口210相对且与衣架进风口210连通,衣架200内具有空腔220,衣架进风口210与空腔220连通,衣架200的底部具有与空腔220连通的至少一个衣架出风口230。由此,供风单元400提供的气流可依次经过第一开口614、转接容纳腔611、第二开口615和衣架进风口210进入衣架200内,进而从衣架200内的空腔220和衣架出风口230进入挂在衣架200上的衣物160内。
在具体实现时,衣架进风口210位于第二开口615所覆盖的区域内,肋板613将转接容纳腔611分为至少两个风力转接区6111,各风力转接区6111的横截面积之和大于衣架进风口210的横截面积且小于第二开口615的横截面积。也就是说,第二开口615的横截面积、各风力转接区6111的横截面积之和以及衣架进风口210的横截面积依次减小,由此,以使气流顺畅的经第二开口615 和各风力转接区6111进入衣架进风口210。
请继续参见图28、图32至图38所示,在本申请中,导流组件620可以包括导流管621、固定座622和可开闭的阀门623,转接壳体610内还具有安装腔616,安装腔616位于转接容纳腔611的侧方,固定座622部分插设于安装腔616内且朝向衣架200延伸。其中,固定座622可以与安装腔616通过螺钉连接,由此,以将固定座622固定于转接壳体610上。
具体的,固定座622上具有导流通道6221,导流管621的第一端伸入转接壳体610内并与管路接头6122的第二端连通,导流管621的第二端与导流通道6221的第一端连通,阀门623位于导流通道6221内,以封闭导流通道6221的第二端。由此,供液单元300提供的液体依次经液体通道350、管路接头6122和导流管621流至导流通道6221,并被可开闭的阀门623封堵在导流通道6221内。衣架200连接在转接壳体610上时,可将阀门623打开,以使导流通道6221内的液体流至衣架200内。
为了避免位于转接壳体610内的导流管621占用风力转接区6111的空间,在一些实施例中,位于转接壳体610内的导流管621位于一肋板613的上方且与该肋板613至少部分重叠。换而言之,位于转接壳体610内的导流管621的投影全部位于和其相对的肋板613上,该肋板613的宽度可以大于或者等于导流管621的宽度(也可称为导流管621的直径)。在具体实现时,位于转接壳体610内的导流管621可以和与导流管621相对的肋板613抵接或者两者之间具有间隙。
在一些实施例中,导流组件620还包括连接在固定座622上的入口压板624,入口压板624与导流通道6221的第二端相对且与导流通道6221的第二端连通,阀门623包括弹性件6231、封堵头6232和压板密封座6233,弹性件6231的第一端与导流通道6221的内壁连接,弹性件6231的第二端与封堵头6232与连接,封堵头6232与压板密封座6233抵接以封堵压板密封座6233。
在具体实现时,弹性件6231可以为弹簧或者具有弹性的套筒。封堵头6232 可以呈球状或者半球状,例如封堵头6232为不锈钢球。压板密封座6233可以为具有延伸边的套筒。
具体的,压板密封座6233的第一端经导流通道6221的第二端插设于导流通道6221内,压板密封座6233的第一端具有倒角6234,封堵头6232与倒角6234抵接,压板密封座6233的第二端抵接在导流通道6221的第二端的端面与入口压板624之间。倒角6234可以为圆角或者斜角,以使封堵头6232与压板密封座6233的第一端的贴合较为紧密。
其中,压板密封座6233的套筒位于导流通道6221内且与导流通道6221的内壁抵接或过盈配合,以将压板密封座6233的套筒部分固定在导流通道6221内,压板密封座6233的延伸边抵接在导流通道6221的第二端的端面与入口压板624之间。
为了防止液体经封堵头6232与压板密封座6233的接触面渗漏,可以在压板密封座6233的内侧壁设置防水圈6235,防水圈6235沿压板密封座6233的内侧壁设置一周;和/或,也可以在压板密封座6233的第二端的端面设置防水圈6235,防水圈6235沿压板密封座6233的第二端的端面设置一周,由于,防止液体经压板密封座6233与压板密封座6233之间的接触面渗漏。
其中,压板密封座6233的内侧壁的防水圈6235可以沿压板密封座6233的轴向间隔设置多个,以使封堵头6232与压板密封座6233之间的密封较为可靠。
在一些实施例中,衣架200内具有单向接头240和与单向接头240连通的喷淋组件250,衣架200连接在转接壳体610上时,单向接头240依次经入口压板624和压板密封座6233与封堵头6232抵接,并使封堵头6232远离压板密封座6233,从而连通喷淋组件250与导流通道6221。也就是说,此时单向接头240将阀门623打开,以使导流通道6221内的液体流至衣架200内的喷淋组件250。(图34中右侧的虚线框为衣架200与转接壳体610的连接区域,图34中左侧的虚线框衣架200与喷淋组件250的连接区域)。
具体的,喷淋组件250可以包括喷水管251和与喷水管251连通的多个喷 雾头252,衣架200的底部具有多个喷口290,喷口290与喷雾头252一一对应设置。导流通道6221内的液体依次经喷水管251和喷雾头252从喷口290喷向衣物160,实现对衣物160的喷淋。其中,单向接头240的流通方向为导流通道6221至喷淋组件250,本实施例中对于单向接头240的结构不加限制。
请继续参见图28至图30、图32至图38所示,为了便于将衣架200连接在转接壳体610,在一些实施例中,衣架200的上部和转接容纳腔611的下部中的至少一者上具有至少一个滑轨6112,另一者上具有至少一个延伸部260,衣架200经第二开口615插接于转接容纳腔611内时,延伸部260插接于滑轨6112内且沿滑轨6112移动。通过滑轨6112与延伸部260的配合,以将衣架200滑动连接在转接壳体610上,由此,便于将衣架200从转接壳体610上拆装。
在一种可能的实现方式中,滑轨6112位于衣架200的顶部,延伸部260位于转接容纳腔611下部的端面上,或者,延伸部260位于衣架200的顶部,滑轨6112位于转接容纳腔611下部的端面上。其中,延伸部260可以为T型滑块或者燕尾型滑块,相应的,滑轨6112为与延伸部260相匹配的T型槽或者燕尾槽。
在另一种可能的实现方式中,滑轨6112位于衣架200上部的外侧壁,延伸部260位于转接容纳腔611下部的外侧壁或内侧壁,衣架200的上部包覆在转接容纳腔611下部的外侧或者衣架200的上部嵌入转接容纳腔611下部的腔体内,以使延伸部260插接于滑轨6112内且沿滑轨6112移动。
在本申请中,滑轨6112的数量为两个,由此,避免衣架200在滑动的过程中发生倾斜,使衣架200能稳定的滑动。
在申请的附图中,两个滑轨6112分别位于转接容纳腔611的下部相对的内侧壁,延伸部260位于衣架200的顶部,衣架200的顶部插接在转接壳体610内,延伸部260可以绕衣架200的顶部设置一周,由此,便于在衣架200上设置延伸部260。
在具体实现时,滑轨6112的延伸方向与机体的前侧至后侧的方向一致。也 就是说,滑轨6112由门体130的、一侧延伸至与门体130相对的一侧,这样,用户在打开门体130后,可直接将衣架200向内胆120内推动,以使衣架200插接于转接壳体610上,便于衣架200与转接壳体610的连接。
在衣架200通过延伸部260和滑轨6112的相互配合安装至转接壳体610上时,为了保持衣架200与转接壳体610的相对位置。在一些实施例中,转接容纳腔611的内侧壁具有至少一个锁扣凹槽6113,衣架200上具有与锁扣凹槽6113相匹配的至少一个锁扣270,延伸部260沿滑轨6112移动至预设位置时,锁扣270卡接于锁扣凹槽6113内,以使衣架200卡接于转接壳体610上,此时衣架200相对于转接壳体610固定。此时,衣架200上的单向接头240依次经入口压板624和压板密封座6233与封堵头6232抵接,并使封堵头6232远离压板密封座6233,从而连通喷淋组件250与导流通道6221。或者,锁扣270在外力的作用下,脱离与锁扣凹槽6113的卡接,此时,可移动衣架200,延伸部260相对于滑轨6112移动,以使衣架200脱离转接壳体610,即将衣架200从转接壳体610上拆卸下来。
在具体实现时,衣架200上具有与锁扣270连接的弹性按钮280,将衣架200从转接壳体610上拆卸下来时,按住衣架200上弹性按钮280,锁扣270朝向衣架200的内部移动,离开与锁扣凹槽6113的卡接的位置,以脱离与锁扣凹槽6113的卡接。其中,锁扣270和弹性按钮280可以均设置两个,锁扣270和弹性按钮280一一对应设置,两个弹性按钮280分别位于衣架200的相对两侧,相应的,两个锁扣270也分别位于衣架200的相对两侧。
在一些实施例中,锁扣凹槽6113与滑轨6112连通,锁扣凹槽6113朝向衣架200延伸,由此,锁扣凹槽6113与滑轨6112可以一体成型,以便于加工锁扣凹槽6113与滑轨6112。
在本申请中,当衣架200经第二开口615插接于转接容纳腔611内时,延伸部260插接于滑轨6112内且沿滑轨6112移动,锁扣270与转接容纳腔611的内壁抵接,延伸部260沿滑轨6112移动至预设位置时,锁扣270进入到锁扣 凹槽6113内,产生“哒”的声音,此时,实现衣架200与转接壳体610的锁紧,各风力转接区6111与衣架200的衣架进风口210相对,气流可以进入衣架200内,从而实现对衣物160内部的吹风功能,加快衣物的烘干和塑形。同时可实现衣架200、转接结构600和转轴510的同步运动,以避免转轴510转动时,衣架200移位造成脱落。
综上所述,本申请衣物护理机中的衣架200通过转接结构600可同时进气流(通过图35右侧的虚线框进气流)和进液体(通过图35左侧的虚线框进液体),且进气流和进液体两者互不影响,转接结构600同时可实现衣架200与喷淋组件250的连接、供风单元400以及转动单元500的转接,结构紧凑。衣架200不仅起到支撑衣物的作用,在进液体时,衣架200内部喷淋组件250对从衣物160的内部进行喷淋,提高护理效果;并进气流可经衣架200从衣物160内部进行烘干等操作,提高护理效率。

Claims (13)

  1. 一种衣物护理机,包括:机体、护理系统、转接结构和可旋转的衣架,所述护理系统和所述衣架均位于所述机体内,所述护理系统具有衣架气流通道和液体通道;
    所述转接结构包括转接壳体和设置在所述转接壳体侧方的导流组件,所述衣架通过所述转接壳体与所述护理系统可拆卸连接,以将所述护理系统向所述机体内提供用于护理衣物的气流依次经所述衣架气流通道和所述衣架的顶部引导至所述衣架上的衣物内,所述导流组件与所述液体通道连通,以将所述护理系统向所述机体内提供用于护理衣物的液体依次经所述液体通道和所述衣架的侧面引导至所述衣架上的衣物内。
  2. 根据权利要求1所述的衣物护理机,其中,所述护理系统包括转动单元和供风单元,所述转动单元具有至少一个可绕自身轴线旋转的转轴;
    所述供风单元包括至少一个所述衣架气流通道,所述转轴插设于所述衣架气流通道内,且部分伸出所述衣架气流通道以与所述转接壳体连接,以通过所述转接壳体驱动所述衣架旋转;
    所述转接壳体与所述衣架气流通道一一对应设置,所述衣架气流通道与所述转轴一一对应设置。
  3. 根据权利要求2所述的衣物护理机,其中,所述护理系统还包括供液单元,所述供液单元包括所述液体通道;
    所述转轴上具有沿其轴线延伸的进液孔,以形成所述液体通道,所述导流组件部分伸入所述转接壳体内且与所述进液孔相对连通。
  4. 根据权利要求3所述的衣物护理机,其中,所述转接壳体内具有转接容纳腔,所述转接容纳腔内具有转接连接座,所述转接连接座与所述转接容纳腔的内壁通过至少两个肋板连接,所述转接连接座上具有容纳槽,所述转轴插设在所述容纳槽内且与所述转接连接座可拆卸连接;
    所述转接连接座上具有与所述容纳槽连通的管路接头,所述管路接头的第一端与所述进液孔连通,所述导流组件部分伸入所述转接壳体内并与所述管路 接头的第二端连通。
  5. 根据权利要求4所述的衣物护理机,其中,所述转接壳体上具有相对的第一开口和第二开口,所述第一开口和所述第二开口均与所述转接容纳腔连通,所述转轴经所述第一开口插设在所述容纳槽内,所述第一开口与所述衣架气流通道相对且与所述衣架气流通道连通,所述衣架的顶部具有衣架进风口,所述第二开口与所述衣架进风口相对且与所述衣架进风口连通,所述衣架内具有空腔,所述衣架进风口与所述空腔连通,所述衣架的底部具有与所述空腔连通的至少一个衣架出风口。
  6. 根据权利要求5所述的衣物护理机,其中,所述衣架进风口位于所述第二开口所覆盖的区域内,所述肋板将所述转接容纳腔分为至少两个风力转接区,各所述风力转接区的横截面积之和大于所述衣架进风口的横截面积且小于所述第二开口的横截面积。
  7. 根据权利要求5或6所述的衣物护理机,其中,所述导流组件包括导流管、固定座和可开闭的阀门,所述转接壳体内还具有安装腔,所述安装腔位于所述转接容纳腔的侧方,所述固定座部分插设于所述安装腔内且朝向所述衣架延伸;
    所述固定座上具有导流通道,所述导流管的第一端伸入所述转接壳体内并与所述管路接头的第二端连通,所述导流管的第二端与所述导流通道的第一端连通,所述阀门位于所述导流通道内,以封闭所述导流通道的第二端。
  8. 根据权利要求7所述的衣物护理机,其中,位于所述转接壳体内的所述导流管位于一所述肋板的上方且与该所述肋板至少部分重叠;
    所述导流组件还包括连接在所述固定座上的入口压板,所述入口压板与所述导流通道的第二端相对且与所述导流通道的第二端连通,所述阀门包括弹性件、封堵头和压板密封座,所述弹性件的第一端与导流通道的内壁连接,所述弹性件的第二端与所述封堵头与连接,所述封堵头与所述压板密封座抵接以封堵所述压板密封座。
  9. 根据权利要求8所述的衣物护理机,其中,所述压板密封座的第一端经所述导流通道的第二端插设于所述导流通道内,所述压板密封座的第一端具有倒角,所述封堵头与所述倒角抵接,所述压板密封座的第二端抵接在所述导流通道的第二端的端面与所述入口压板之间;
    所述压板密封座的内侧壁和/或所述压板密封座的第二端的端面具有防水圈,所述防水圈沿所述压板密封座的周向设置。
  10. 根据权利要求8所述的衣物护理机,其中,所述衣架内具有单向接头和与所述单向接头连通的喷淋组件,所述衣架连接在所述转接壳体上时,所述单向接头依次经所述入口压板和所述压板密封座与所述封堵头抵接,并使所述封堵头远离所述压板密封座,从而连通所述喷淋组件与所述导流通道。
  11. 根据权利要求10所述的衣物护理机,其中,所述衣架的上部和所述转接容纳腔的下部中的至少一者上具有至少一个滑轨,另一者上具有至少一个延伸部,所述衣架经所述第二开口插接于所述转接容纳腔内时,所述延伸部插接于所述滑轨内且沿所述滑轨移动。
  12. 根据权利要求11所述的衣物护理机,其中,所述滑轨的数量为两个,且两个所述滑轨分别位于所述转接容纳腔的下部相对的内侧壁,所述延伸部位于所述衣架的顶部;
    所述滑轨的延伸方向与所述机体的前侧至后侧的方向一致。
  13. 根据权利要求11所述的衣物护理机,其中,所述转接容纳腔的内侧壁具有至少一个锁扣凹槽,所述衣架上具有与所述锁扣凹槽相匹配的至少一个锁扣,所述延伸部沿所述滑轨移动至预设位置时,所述锁扣卡接于所述锁扣凹槽内,以使所述衣架卡接于所述转接壳体上,且所述单向接头与所述封堵头抵接;或者,所述锁扣在外力的作用下,脱离与所述锁扣凹槽的卡接。
PCT/CN2021/124571 2021-03-19 2021-10-19 衣物护理机 WO2022193638A1 (zh)

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