WO2024027743A1 - 衣物处理装置 - Google Patents

衣物处理装置 Download PDF

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Publication number
WO2024027743A1
WO2024027743A1 PCT/CN2023/110668 CN2023110668W WO2024027743A1 WO 2024027743 A1 WO2024027743 A1 WO 2024027743A1 CN 2023110668 W CN2023110668 W CN 2023110668W WO 2024027743 A1 WO2024027743 A1 WO 2024027743A1
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WO
WIPO (PCT)
Prior art keywords
insect
clothes
air
proof
accommodation chamber
Prior art date
Application number
PCT/CN2023/110668
Other languages
English (en)
French (fr)
Inventor
田中正昭
铃木肇
川岛晓
永井孝之
Original Assignee
青岛海尔洗衣机有限公司
Aqua株式会社
海尔智家股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 青岛海尔洗衣机有限公司, Aqua株式会社, 海尔智家股份有限公司 filed Critical 青岛海尔洗衣机有限公司
Publication of WO2024027743A1 publication Critical patent/WO2024027743A1/zh

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Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/10Drying 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 

Definitions

  • the present invention relates to a clothes processing device that performs drying and other processing on clothes.
  • Patent Document 1 describes an example of such a laundry treatment device.
  • the clothes before storage can be provided with an insect-proof effect by subjecting the clothes to insect-proof treatment in the above-mentioned clothes treatment device, so that the clothes being stored are less likely to breed clothing pests.
  • Patent Document 1 Japanese Patent Application Publication No. 2018-057413
  • the present invention has been made in view of the above-mentioned problems, and an object thereof is to provide a clothes treatment device that can provide insect-proof effects to clothes.
  • a clothes processing device includes: a storage chamber for accommodating clothes in a hanging state; a warm air supply unit for supplying warm air into the storage room; and an insect repellent treatment unit for preventing insect repellent.
  • the insect component acts on the clothes hung in the containing chamber.
  • the clothes treatment device of this aspect not only can warm air be supplied into the accommodation room to dry clothes, but also the insect-proof component of the insect-proof agent can be activated to provide insect-proof effect on the clothes.
  • the insect-proof treatment part may be configured as follows: including a receiving part and a wind generating part, the containing part is for containing the insect repellent, and the wind generating part generates the wind generated by the air in the containing part.
  • the insect-proof ingredients vaporized from the insect-proof agent are transported to the wind of the hanging clothes.
  • the insect-proof component evaporated from the insect-proof agent can act on the clothes in the accommodation room.
  • the insect-proof treatment part may be configured as follows: it may further include an outlet, and the outlet may be provided below the hanging clothes in the accommodation room so that the wind generated by the wind generating part can The wind is discharged upward.
  • the accommodating part may be disposed in the accommodating chamber so as to be located between the hanging clothes and the discharge port.
  • the insect-repellent ingredient vaporized by the insect-repellent agent will be transported to the clothes over a short distance, so the insect-proof ingredient can easily act on the clothes without waste.
  • the wind generating part may be configured to include an air circulation part that sucks in the air in the accommodating room and circulates it. The air is blown into the accommodation chamber, and the blown air is directed to the hanging clothes, thereby causing the air to circulate in the accommodation chamber.
  • the air circulation unit may have a circulation fan that blows the air sucked in from the suction port out of the discharge port, a deflection member and a drive unit. The air blown out from the outlet contacts and deflects the air, and the driving part swings the deflection member to change the deflection angle of the air.
  • the accommodating portion may be disposed at a position in the accommodating chamber where the air from the side of the hung clothes to the suction inlet passes.
  • the anti-insect component vaporized by the anti-insect agent in the accommodating portion will be transported by the wind and sucked into the inlet together with the wind. Then, the wind containing the anti-insect component is blown out from the outlet, is deflected by the deflection member, and then flows toward the clothes to come into contact with the clothes. As a result, the insect repellent component adheres to the clothing. At this time, the deflection angle of the wind containing the insect repellent component changes due to the swing of the deflection member, and the wind contacts the clothing from all directions. Therefore, the contact efficiency between the wind and the clothing becomes better, and the insect repellent component easily adheres to the clothing without leaving any trace.
  • the clothes processing apparatus may be configured to further include a swing part for swinging the clothes suspended in the storage chamber and a control part.
  • the control unit executes an insect-proof treatment process in which the insect-proof component is applied to the clothes hanging in the accommodation chamber by the insect-proof treatment unit, and before the insect-proof treatment process, The control unit executes a swinging process of swinging the hanging clothes by the swinging unit.
  • the swinging portion may be configured to include a holding portion that holds the clothing in a state of hanging in the accommodation chamber, and a vibrating portion that swings the holding portion.
  • the laundry processing device of this aspect may be configured to further include a control unit.
  • the control unit may be configured to execute a drying process of drying the clothes hanging in the accommodation chamber using warm air supplied from the warm air supply unit, and after the drying process An insect-repellent treatment process is performed in which the insect-repellent component acts on the hanging clothing through the insect-repellent treatment unit.
  • the clothes dried through the drying process can have an insect-proof effect.
  • FIG. 1 (a) is a front view of the clothes treating device according to Embodiment 1, and (b) is a right side view of the clothes treating device according to Embodiment 1.
  • FIG. 2 is a front cross-sectional view of the clothes treating device according to Embodiment 1, taken along the position of the first supply unit.
  • Fig. 3 is a front cross-sectional view of the clothes treating device according to Embodiment 1, taken along the position of the second supply unit; view.
  • FIG. 4 (a) and (b) are plan cross-sectional views of the clothes treatment device in a state in which the cover is removed and in a state in which the cover is attached according to Embodiment 1, respectively.
  • FIG. 5 (a) is a plan view of the cover according to Embodiment 1, and (b) is a cross-sectional view taken along line AA′ of (a). (c) is a top view of the cover provided with the insect repellent container according to Embodiment 1, and (d) is a BB' cross-sectional view of (c).
  • FIG. 6 is a side cross-sectional view of a main part of the laundry treating device according to Embodiment 1, taken along the position of the suction duct of the first supply unit.
  • FIG. 7 (a) to (d) are diagrams for explaining the structure of the hanger hanging device and the vibration generating mechanism part according to Embodiment 1.
  • FIG. 8 is a block diagram showing the structure of the laundry treatment device according to Embodiment 1.
  • FIG. 8 is a block diagram showing the structure of the laundry treatment device according to Embodiment 1.
  • FIG. 9 (a) is a flowchart showing the control operation of the control unit executed in the insect-proof treatment operation according to Embodiment 1, and (b) is a flowchart showing the control unit executed in the drying operation with insect-proof treatment according to Embodiment 1. Flowchart of control work.
  • FIG. 10 (a) is a front cross-sectional view of the main part of the clothes treatment device taken along the front position of the air circulation unit according to Embodiment 2, and (b) is the air circulation unit in a state in which the cover is removed according to Embodiment 2. main view.
  • FIG. 11 is a side cross-sectional view of a main part of the laundry treatment apparatus according to Embodiment 2.
  • FIG. 11 is a side cross-sectional view of a main part of the laundry treatment apparatus according to Embodiment 2.
  • Clothes processing device 1: Clothes processing device; 2: Clothes processing device; 10: Control unit; 100: Box; 200: Accommodation chamber; 210: First supply port (discharge port); 250: Insect repellent container (accommodation portion); 280: Insect repellent container (accommodating part); 300: first supply unit (warm air supply part, wind generating part); 600: holding unit (swing part); 700: air circulation unit (air circulation part, wind generating part); 710 : circulation fan; 715: suction port; 716: discharge port; 721: ventilation plate (deflection member); 722: ventilation plate motor (driving part).
  • the laundry processing apparatus 1 according to Embodiment 1 will be described.
  • FIG. 1 is a front view of the laundry treating apparatus 1
  • FIG. 1(b) is a right side view of the laundry treating apparatus 1.
  • FIG. 2 is a front cross-sectional view of the laundry treating apparatus 1 taken along the position of the first supply unit 300. Illustration of the second supply unit 400 is omitted in FIG. 2 .
  • FIG. 3 is a front cross-sectional view of the laundry treating apparatus 1 taken along the position of the second supply unit 400.
  • FIG. 4 are top cross-sectional views of the clothes treating device 1 in a state where the cover 240 is removed and in a state where the cover is attached, respectively.
  • FIG. 5 is a top view of the cover 240
  • FIG. 5 is a top view of the cover 240
  • FIG. 5 is a top view of the cover 240
  • FIG. 5 is a cross-sectional view taken along line AA' of FIG. 5(a).
  • (c) of FIG. 5 is a top view of the cover 240 provided with the insect repellent container 250
  • (d) of FIG. 5 is a BB' cross-sectional view of (c) in FIG. 5 .
  • FIG. 6 is a side cross-sectional view of the main part of the laundry treating apparatus 1 taken along the position of the suction duct 350 of the first supply unit 300.
  • the solid-line arrow in FIG. 2 shows the flow of the ozone-containing air in the deodorization/sterilization operation, the warm air in the drying operation, and the wind in the insect-proof treatment operation.
  • the insect repellent is shown by a single-dot chain line.
  • FIG. 3 the flow of steam in the pleat flattening operation is shown by solid arrows, and the flow of condensed water is shown by broken arrows.
  • FIG. 6 the flow of air from the outside of the laundry treatment apparatus 1 is shown by a solid arrow.
  • the hanger hanging device 610 located in front of the cross-section is drawn with a single-dot chain line.
  • the laundry treating apparatus 1 includes a box 100 having a longitudinally long rectangular parallelepiped shape. On the outer bottom surface of the box 100, legs 110 are provided at four corners. An accommodating chamber 200 for accommodating various types of clothing such as suits and coats in a hanging state is disposed inside the box 100 .
  • the accommodation chamber 200 has a longitudinally long rectangular parallelepiped shape.
  • a first supply unit 300 capable of supplying wind and ozone to the accommodation chamber 200 and a second supply unit 400 capable of supplying steam to the accommodation chamber 200 are disposed below the accommodation chamber 200 .
  • the first supply unit 300 corresponds to the warm air supply part and the wind generating part of the present invention.
  • the front surface of the accommodation chamber 200 opens as a clothing insertion port 201 .
  • a portion of the front surface of the box 100 corresponding to the input port 201 is open.
  • a door 500 is provided on the front surface of the box 100 .
  • the door 500 has approximately the same dimensions as the front surface of the box 100 .
  • the input port 201 is covered by the door 500 .
  • the right end portion of the door 500 is connected to the box 100 through a hinge portion (not shown), and the door 500 can be opened forward using the hinge portion as a fulcrum.
  • a first supply port 210 and a second supply port 220 are provided adjacent to each other in the center portion of the bottom surface.
  • the first supply port 210 and the second supply port 220 have a substantially semicircular cylindrical shape having straight portions on both sides.
  • the arcuate portion 211 of the first supply port 210 and the arcuate portion 221 of the second supply port 220 are curved in opposite directions when viewed from above. Thereby, the combined shape of the first supply port 210 and the second supply port 220 becomes approximately a circular shape like the one-dot chain line in FIG. 4(a) .
  • a small gap is provided between the first supply port 210 and the second supply port 220, and a mounting boss 230 having a mounting hole 231 is provided in the gap.
  • a cover 240 is arranged above the first supply port 210 and the second supply port 220 to cover them.
  • the cover 240 includes a disk-shaped top surface 241 and a peripheral surface 242 extending obliquely downward from the peripheral edge of the top surface 241 .
  • the size of the top portion 241 is larger than the combined size of the first supply port 210 and the second supply port 220 .
  • a shaft 243 protruding downward is formed in the center of the back surface of the top surface portion 241 .
  • the shaft 243 is mounted on the mounting hole 231 of the mounting boss 230 so that a predetermined gap can be formed between the top surface portion 241 of the cover 240 and the first supply port 210 and the second supply port 220 .
  • a predetermined gap is formed between the outer peripheral edge of the cover 240 and the bottom surface of the accommodation chamber 200 .
  • a plurality of first discharge holes 244 are formed over the entire circumference of the peripheral surface 242 of the cover 240 .
  • the first discharge hole 244 has a square shape elongated in the radial direction of the cover 240 and is located around the first supply port 210 and the second supply port 220 , that is, in a larger projected area of the cover 240 than the first supply port 210 and the second supply port 220 .
  • a plurality of second discharge holes 245 are formed in the top surface portion 241 of the cover 240 directly above the first supply port 210, that is, in the projection area. Furthermore, an insect repellent container 250 is provided on the top surface 241 at a position directly above the first supply port 210 .
  • the insect repellent container 250 has a bottomed semi-cylindrical shape, and the bottom portion 251 is raised higher than the lower end of the peripheral portion 252 .
  • the peripheral surface part 252 is fixed to the top surface part 241.
  • a plurality of ventilation holes 253 are formed in the bottom portion 251 .
  • the plurality of ventilation holes 253 are located at positions that do not overlap in the vertical direction with the plurality of second discharge holes 245 of the cover 240 . This prevents foreign matter such as dust falling from the clothes from entering the first supply port 210 through the ventilation hole 253 and the second discharge hole 245 .
  • the insect repellent container 250 contains insect repellent that can be vaporized at normal temperature during the insect repellent treatment operation described below. agent. Insect repellents can be either solid insect repellents that sublime at room temperature or volatile liquid insect repellents. When using a liquid insect repellent, the insect repellent is placed in a container that releases the vaporized insect repellent component without leakage, and is accommodated in the insect repellent container 250 .
  • the insect repellent container 250 corresponds to the accommodating part of the present invention
  • the first supply port 210 corresponds to the discharge port of the present invention
  • the insect repellent treatment part of the present invention is composed of the first supply unit 300 as the wind generating part, the insect repellent container 250 as the accommodating part, and the first supply port 210 as the discharge port.
  • a discharge port 202 is formed in the upper part of the rear surface of the accommodation chamber 200 .
  • the exhaust duct 260 is connected to the exhaust port 202 and is exposed to the outside from the rear surface of the box 100 .
  • An exhaust filter unit 270 is detachably attached to the exhaust port 202 .
  • the exhaust gas filter unit 270 includes an ozone removal filter 271 and a filter cover 272 housing the ozone removal filter 271 .
  • the ozone removal filter 271 may use an activated carbon/catalyst filter.
  • the filter cover 272 is provided with a plurality of exhaust windows 273 .
  • a holding unit 600 is provided at the upper part of the accommodation chamber 200 at the center in the front-rear direction.
  • the holding unit 600 can hold the clothes in a hanging state and can shake the clothes.
  • the holding unit 600 corresponds to the swing part of the present invention.
  • the holding unit 600 includes a hanger hanging device 610 , two supporting parts 620 and a vibration mechanism part 630 .
  • the clothes hanger hanging device 610 is a holding part that holds the clothes in a suspended state in the accommodation chamber 200
  • the vibration generating mechanism part 630 is a vibration generating part that vibrates the holding part.
  • a clothes hanger on which clothes are hung is hung on the clothes hanger hanging device 610 .
  • the two support parts 620 are respectively fixed to the left and right side surfaces of the accommodation chamber 200 .
  • Track grooves 621 are formed in each support portion 620 , and the left and right ends of the hanger hanging device 610 are inserted into the track grooves 621 .
  • the vibration mechanism part 630 is attached to the hanger hanging device 610 to vibrate the hanger hanging device 610 in the horizontal direction.
  • FIG. 7 are diagrams for explaining the structure of the hanger hanging device 610 and the vibration generating mechanism part 630.
  • (a) of FIG. 7 is a front view of the hanger hanging device 610 to which the vibration generating mechanism part 630 is attached
  • (a) of FIG. 7 is a top view of the hanger hanging device 610.
  • (c) and (d) of FIG. 7 are diagrams showing a state in which the hanger hanging device 610 is moved to the right direction and the left direction by the vibrating mechanism part 630, respectively.
  • FIG. 7(b) for convenience of explanation, the roller 633 accommodated in the oscillation mechanism part 630 of the cam groove 613 is shown.
  • the clothes hanger suspension is shown in cross section. Hanging device 610.
  • the hanger hanging device 610 has a shape long in the left-right direction.
  • a plurality of hooks 611 for hanging hangers are provided on the lower surface of the hanger hanging device 610 so as to be arranged at predetermined intervals in the left-right direction.
  • an elliptical cam groove 613 extending in the front-rear direction is formed in the central recess 612.
  • a square cylindrical cover portion 614 is provided on the upper surface of the hanger hanging device 610 so as to surround the recessed portion 612 .
  • the vibration starting mechanism part 630 includes a vibration motor 631, a camshaft 632, and a roller 633.
  • the camshaft 632 is connected to the motor shaft 631a of the vibration motor 631.
  • An arm 632a extending in a direction perpendicular to the motor shaft 631a is formed at the front end portion of the camshaft 632.
  • a roller 633 is rotatably attached to the front end of the arm 632a. The roller 633 is received in the cam groove 613 of the hanger hanging device 610 .
  • a plurality of clothes can be hung side by side on the hanger hanging device 610 such that the front and rear directions of the clothes become the extension direction of the hanger hanging device 610 .
  • the vibration motor 631 is arranged between the top surface of the accommodation chamber 200 and the top surface of the box 100, and the camshaft 632 penetrates the top surface of the accommodation chamber 200 and is connected to the vibration motor 631.
  • the camshaft 632 is covered by the cover portion 614 of the hanger hanging device 610 and is hidden.
  • the first supply unit 300 includes a first supply duct 310 , an ozone generator 320 , a heater 330 , a blower fan 340 and an air suction duct 350 .
  • the inlet 311 is connected to the outlet 342 of the blower fan 340, and its outlet 312 is connected to the inlet of the first supply port 210.
  • the ozone generator 320 is arranged near the inlet 311 in the first supply duct 310 .
  • the first supply duct 310 has a shape that extends to the left from the inlet 311 , bends back to the right from a portion passing the arrangement position of the ozone generator 320 , and then extends upward to the first supply port 210 .
  • the ozone generator 320 is a discharge ozone generator that generates corona discharge and silent discharge between a pair of electrodes. Ozone is generated from the air passing between a pair of electrodes due to discharge such as electric discharge.
  • the heater 330 is disposed closer to the first supply port 210 than the ozone generator 320 in the first supply duct 310, and heats the air flowing through the first supply duct 310. As the heater 330, for example, a PTC heater can be used.
  • the blower fan 340 is a centrifugal fan, and has a suction port 341 on its side surface and a discharge port 342 on its peripheral surface.
  • the blower fan 340 takes in air from the suction port 341 and sends the taken in air into the first supply duct 310 .
  • the blower fan 340 may also use a fan other than a centrifugal fan, such as an axial flow fan.
  • An air suction port 101 is formed on the front surface of the box 100 at a position facing the suction port 341 of the blower fan 340 .
  • the air inlet 101 is provided with a dust filter 120 that removes dust and the like contained in the air taken in from the air inlet 101 .
  • the door 500 has a plurality of ventilation holes 501 formed on the rear surface at positions corresponding to the air suction ports 101 of the box 100 , and an air intake port 502 is formed on the bottom surface. Inside the door 500, the intake port 502 communicates with a plurality of ventilation holes 501.
  • the blower fan 340 When the blower fan 340 is operating, air outside the laundry treatment device 1 is taken into the air suction duct 350 through the intake port 502, the ventilation hole 501, and the air suction port 101.
  • the outside of the laundry treatment apparatus 1 will be called outside.
  • the second supply unit 400 includes a second supply pipe 410 , a steam generating device 420 and a drainage device 430 .
  • the second supply duct 410 has a shape in which the lower part bulges to the right.
  • the second supply duct 410 is provided with an outlet 411 connected to the inlet of the second supply port 220 at its upper end.
  • the second supply duct 410 is provided with an inlet 412 on the right side of the lower part.
  • the bottom is positioned lower than the inlet 412 so that a water storage portion 413 is provided below the inlet 412 .
  • a discharge port 414 is provided on the bottom surface of the water storage part 413.
  • the steam generating device 420 includes a water supply tank 440, a water supply barrel 450, a pump module 460 and a steam generator 470.
  • the water supply tank 440 stores water to be supplied to the steam generator 470 .
  • the water supply tank 440 is detachably installed in a water supply tank installation portion (not shown) in the box 100 .
  • the supply port 441 is provided with an opening and closing valve 442.
  • the opening and closing valve 442 is opened, and water is supplied from the water supply tank 440 to the water supply bucket 450, and the entire water supply bucket 450 is filled with water.
  • the pump module 460 includes a pump 461, a connecting hose 462, and a water supply hose 463. Suction port of pump 461 It is connected to the outlet 452 of the water supply barrel 450 through a connecting hose 462. A water supply hose 463 is connected to the discharge port of the pump 461 . The pump 461 sucks the water in the water supply barrel 450 through the connecting hose 462 and sends it to the steam generator 470 through the water supply hose 463.
  • the steam generator 470 includes a main body 471 and a heater 472, and is attached to the inlet 412 of the second supply pipe 410 via a heat insulating member (not shown).
  • the main body 471 is made of a metal material such as die-cast aluminum, and has a steam generating chamber 473 inside.
  • the main body 471 is provided with a water supply port 474 to which the water supply hose 463 is connected above the steam generating chamber 473 , and a discharge port 475 connected to the second supply pipe 410 is provided on the right side of the steam generating chamber 473 .
  • the heater 472 is embedded in the main body 471 .
  • the main body part 471 is heated by the heater 472 and becomes high temperature.
  • the water droplets sent by the pump 461 fall to the bottom surface of the steam generating chamber 473 and evaporate, thereby generating high-temperature steam.
  • the generated steam is released into the second supply pipe 410 through the release port 475 .
  • the drainage device 430 includes a drainage box 480 and a drainage hose 490.
  • the drain hose 490 has a connection port 491 connected to the discharge port 414 of the second supply pipe 410 at its upper end.
  • a baffle 492 is arranged at the connection port 491 to block the discharge port 414 .
  • the baffle 492 is, for example, a metal mesh with a fine mesh, and is used to prevent ozone supplied to the storage chamber 200 from leaking into the inside of the box 100 through the drain hose 490 during the deodorization/sterilization operation.
  • the drain tank 480 is a container for recovering condensed water generated in the second supply pipe 410 .
  • the drainage tank 480 is detachably installed in a drainage tank installation portion (not shown) in the box 100 .
  • a drainage tank installation portion not shown
  • its inlet 481 is positioned directly below the lower end of the drain hose 490 .
  • the entrances and exits 102 of the water supply tank 440 and the drainage tank 480 provided in the box 100 are provided in front of the tanks 440 and 480, respectively.
  • the entrance/exit 102 is covered with the openable and closable cover 103 (refer FIG. 1).
  • the user can access the water supply tank 440 and the drainage tank 480 into the box 100 by opening the door 500 and opening the cover 103 .
  • FIG. 8 is a block diagram showing the structure of the laundry treatment device 1 .
  • the laundry treatment apparatus 1 further includes a control unit 10, an operation unit 20, a display unit 30, a door sensor 40, and a temperature sensor 50.
  • the operation unit 20 includes operation buttons such as a mode selection button for selecting an operation mode and a start button for starting operation, and outputs an operation signal corresponding to the operation button operated by the user to the control unit 10 .
  • a deodorization/sterilization mode that performs a deodorization/sterilization operation
  • a drying mode that performs a drying operation
  • a wrinkle-flattening mode that performs a wrinkle-flattening operation
  • an insect-proof treatment mode that performs an insect-proof treatment operation
  • a stripping operation mode Anti-insect treatment, drying operation, drying/anti-insect treatment mode, etc.
  • the display unit 30 includes light-emitting elements such as LEDs and displays such as a liquid crystal panel, and displays the selected operation mode, operation status, abnormality notification, etc. in accordance with the control signal from the control unit 10 .
  • the door sensor 40 detects the opening and closing of the door 500 and outputs a detection signal corresponding to the opening and closing to the control unit 10 .
  • the temperature sensor 50 detects the temperature in the storage chamber 200 and outputs a temperature signal corresponding to the detected temperature to the control unit 10 .
  • the control unit 10 includes a microcomputer, various drive circuits, etc., and controls the display unit 30, the ozone generator 320, the heater 330 and the blower fan 340 of the first supply unit 300, the pump 461 and the heater 472 of the second supply unit 400, The vibration motor 631 and the like of the holding unit 600 are controlled.
  • the laundry processing apparatus 1 of the present embodiment can perform a deodorizing/sterilizing operation for deodorizing/sterilizing clothes, a drying operation for drying clothes, and a wrinkle-flattening operation for flattening wrinkles of clothes. It should be noted that during the deodorization/sterilization operation, drying operation, and wrinkle flattening operation, the insect repellent container 250 does not contain the insect repellent.
  • control unit 10 operates the blower fan 340 and the ozone generator 320 in the first supply unit 300 .
  • the air outside the machine is taken into the suction duct 350 from the suction port 101 and sent into the first supply duct 310 .
  • the air flowing in the first supply duct 310 passes through the ozone generator 320 , and at this time, the ozone generated by the ozone generator 320 is mixed into the air.
  • the ozone-containing air passes through the first supply duct 310 to the first supply port 210 and is discharged from the first supply port 210 into the storage chamber 200 .
  • the discharged ozone-containing air is blown onto the cover 240, part of which is discharged from the second discharge hole 245, and the remaining part is diffused to the surroundings, discharged from the plurality of first discharge holes 244, and passed between the cover 240 and the bottom surface of the accommodation chamber 200. discharge between.
  • the ozone-containing air discharged from the second discharge hole 245 passes through the ventilation hole 253 of the insect repellent container 250 .
  • Clothes are deodorized/sterilized by the deodorizing/sterilizing effect of ozone.
  • the air whose ozone concentration has been reduced due to the deodorization/sterilization of the clothes is discharged into the exhaust duct 260 from the discharge port 202 provided at the upper part of the accommodation chamber 200, flows in the exhaust duct 260, and is discharged to the outside of the machine.
  • the air discharged from the discharge port 202 passes through the ozone removal filter 271 . As a result, ozone in the air is removed, and the air reduced to an appropriate ozone concentration is discharged outside the machine.
  • the control unit 10 stops the ozone generator 320 and the blower fan 340. In this way, the deodorization/sterilization operation is completed.
  • control unit 10 operates the blower fan 340 and the heater 330 in the first supply unit 300 .
  • the air outside the machine is taken into the suction duct 350 from the suction port 101 and sent into the first supply duct 310 .
  • the air flowing in the first supply duct 310 is heated by the heater 330 and becomes warm air with a temperature suitable for drying (for example, about 60° C.). Then, the warm air reaches the first supply port 210 and is discharged from the first supply port 210 into the accommodation chamber 200 .
  • the discharged warm air and ozone-containing air are also diffused by the cover 240 and travel to the clothes above, and are widely blown onto the clothes. Thereby, the laundry is dried.
  • the air stripped of moisture from the clothes in the accommodation chamber 200 is discharged to the outside of the machine through the discharge port 202 and the exhaust duct 260 .
  • the control unit 10 rotates the vibration motor 631.
  • the hanger hanging device 610 is vibrated by the vibrating mechanism part 630 and swings.
  • the clothes hung on the clothes hanger hanging device 610 are swayed in the front and rear direction of the clothes, and at this time, the clothes are flattened by the centrifugal force acting on the clothes. This suppresses wrinkling of the clothes as drying progresses. It should be noted that as the moisture content of clothes becomes less when dried, they shrink and tend to form wrinkles on the surface. Therefore, it is enough for the laundry to swing at least during the second half of the drying cycle.
  • the control unit 10 stops the heater 330 and the blower fan 340 . In this way, the drying operation is completed.
  • control unit 10 first operates the heater 472 of the steam generator 470 in the second supply unit 400 while the pump 461 is stopped. Thereby, the temperature of the main body part 471 of the steam generator 470 rises.
  • the control part 10 causes the heater 472 to The pump 461 is operated while continuing to operate.
  • the steam generator 470 generates high-temperature steam and releases it into the second supply pipe 410 .
  • the released steam rises in the second supply pipe 410 and reaches the second supply port 220 , and is discharged from the second supply port 220 into the storage chamber 200 .
  • the discharged steam blows onto the cover 240 and diffuses around, part of it is discharged from the plurality of discharge holes 244 , and the remaining part is discharged from between the cover 240 and the bottom surface of the accommodation chamber 200 . In this way, the steam is diffused by the cover 240 and goes to the clothes above, and is widely blown onto the clothes. Using the moisture and heat of steam, wrinkles in clothing are smoothed out.
  • part of the steam may be condensed to generate condensed water.
  • the condensed water flows downward, accumulates in the water storage part 413 , and is discharged from the discharge port 414 .
  • the discharged condensed water is recovered into the drainage tank 480 through the drainage hose 490 .
  • the control unit 10 stops the heater 472 and the pump 461. Then, the control unit 10 operates the blower fan 340 and the heater 330 . Thereby, like the drying operation, warm air is blown onto the clothes, and the clothes wetted by the steam are dried. It should be noted that the drying time in the wrinkle flattening operation is set to a time suitable for the wrinkle flattening operation, and may be set to be different from the drying time in the drying operation.
  • the vibration motor 631 is rotated by the control unit 10, whereby the hanger hanging device 610 vibrates, and the clothes hung on the hanger hanging device 610 shake. This suppresses wrinkling of the clothes as drying progresses.
  • the control unit 10 stops the blower fan 340 and the heater 330 . In this way, the wrinkle flattening operation is completed.
  • the laundry treatment device 1 can perform an insect-proof treatment operation for performing insect-proof treatment on clothes such as tops and sweaters. Furthermore, after drying the clothes, a drying operation with anti-insect treatment can be performed to perform anti-insect treatment on the dried clothes.
  • FIG. 9 is a flowchart showing the control operation of the control unit 10 executed during the insect-proofing operation.
  • the user When performing the insect repellent treatment operation, the user stores the clothes in the storage chamber 200 and puts the insect repellent into the insect repellent container 250 . Then, the user selects the anti-insect treatment mode using the mode selection button on the operation unit 20 and presses the start button. As a result, the anti-insect treatment operation starts.
  • the control unit 10 executes the swing process (S101).
  • the control unit 10 rotates the vibration motor 631.
  • the clothes hanger hanging device 610 It is excited by the vibration excitation mechanism part 630 and vibrates.
  • the clothes hung on the clothes hanger hanging device 610 shake, and foreign matter such as dust attached to the clothes is shaken off.
  • the clothing pests can also be shaken off.
  • the control unit 10 stops the vibration motor 631 .
  • the swing process ends.
  • control unit 10 executes the insect-proofing process (S102). During the anti-insect treatment, the control unit 10 operates the blower fan 340 in the first supply unit 300 .
  • the wind generated by the rotation of the blower fan 340 passes through the first supply duct 310 and is discharged upward from the first supply port 210 .
  • the wind passing through the second discharge hole 245 of the cover 240 enters the insect repellent container 250 through the ventilation hole 253 and passes through the insect repellent container 250 .
  • the insect repellent component obtained by gasification, ie, volatilization or sublimation of the insect repellent in the insect repellent container 520 is carried upward by the wind and adheres to the clothes hanging in the storage chamber 200 . In this way, the insect repellent component of the insect repellent acts on the clothing, and the clothing has an insect repellent effect.
  • the control unit 10 stops the blower fan 340 .
  • the anti-insect treatment process ends, and the anti-insect treatment operation ends.
  • FIG. 9 is a flowchart showing the control operation of the control unit 10 executed during the drying operation with insect-proof treatment.
  • the user When performing the drying operation with insect repellent treatment, the user, after accommodating the clothes in the storage chamber 200, selects the drying/insect repellent treatment mode using the mode selection button on the operation unit 403 and presses the start button. This starts the drying operation with anti-insect treatment. It should be noted that at the start time of this operation, the insect repellent is not put into the insect repellent container 250 .
  • the control unit 10 executes the drying process (S201).
  • the drying process is the same as the drying operation described above. Through the drying process, the clothes suspended in the accommodation chamber 200 are dried.
  • control unit 10 executes the air blowing process (S202).
  • control unit 10 does not operate the heater 330 in the first supply unit 300 but rotates the blower fan 340 .
  • Cold air is introduced into the accommodation chamber 200, and the inside of the accommodation chamber 200 and the clothes are cooled.
  • the control unit 10 stops the blower fan 340 .
  • the air supply process ends.
  • control unit 10 causes the display unit 30 and the speaker (not shown) to issue a notification urging the input of the insect repellent into the insect repellent container 250 (S203). Then, the control unit 10 monitors whether the insect repellent is put into the insect repellent container 250 (S204).
  • the door 500 When the insect repellent is put into the insect repellent container 250, the door 500 is opened. Therefore, when the control unit 10 detects the opening of the door 500 through the door sensor 40 and then detects the closing of the door 500 , it is determined that the insect repellent has been put into the insect repellent container 250 .
  • the control unit 10 executes the insect repellent treatment process (S205).
  • the insect-proof component of the insect-proof agent acts on the clothes hung in the accommodation chamber 200, and the clothes have an insect-proof effect.
  • the temperature inside the storage chamber 200 and the clothes is low, so the insect-repellent component is not easily affected by heat.
  • the clothing treatment device 1 As an insect-proof treatment unit that causes the insect-proof component of the insect-proof agent to act on the clothes hung in the storage chamber 200 , the clothing treatment device 1 is provided with: an insect-proof agent container 250 that contains the insect-proof agent; and a first supply unit 300 that generates the insect-proof agent.
  • the laundry treatment device 1 is configured as follows: a first supply port 210 for discharging the wind generated by the first supply unit 300 upward is provided below the laundry suspended in the storage chamber 200, and the insect repellent is The container 250 is disposed in the accommodation chamber 200 so as to be located between the hanging clothes and the first supply port 210 .
  • the insect repellent container 250 is located between the hanging clothes and the first supply port 210 , so the insect repellent component vaporized from the insect repellent is transported to the clothes over a short distance. This makes it easy for the insect repellent component to act on the clothing without wasting it.
  • the laundry treatment device 1 is configured as follows: it further includes a holding unit 600 for shaking the laundry suspended in the accommodation chamber 200 and a control unit 10 , and the control unit 10 executes the insect-proofing process. Before the insect-proof treatment process, the control part 10 performs a swinging process of shaking the clothes hung in the accommodation chamber 200 through the holding unit 600 .
  • the clothes processing apparatus 1 is configured as follows: the control unit 10 executes a drying process of drying the clothes suspended in the accommodation chamber 200 with the warm air supplied from the first supply unit 300 , and the control unit 10 The drying process is followed by a pest control process.
  • the insect-proof effect can be provided to the clothes dried through the drying process.
  • the clothes processing apparatus 1 is configured as follows: the control unit 10 supplies cold air into the accommodating chamber 200 through the first supply unit 300 between the drying process and the insect-proofing process to thereby control the inside of the accommodating chamber 200 . Carry out cooling air supply process.
  • the insect-repellent component can act on the clothing cooled by the air blowing process, so the insect-repellent component is less susceptible to the influence of heat.
  • the laundry processing apparatus 2 according to Embodiment 2 will be described.
  • FIG. 10 is a front cross-sectional view of the main part of the laundry treatment apparatus 2 taken along the front position of the air circulation unit 700
  • FIG. 11 is a side cross-sectional view of the main part of the laundry treating device 2
  • the flow of the air blown from the air circulation unit 700 is shown by the solid line arrow and the broken line arrow.
  • the hanger hanging device 610 located forward of the cross-sectional plane is drawn with a one-dot chain line.
  • the insect repellent is shown with a one-dot chain line.
  • the air circulation unit 700 is arranged near the bottom and rear surface of the accommodation chamber 200.
  • the insect repellent container 250 is not provided on the top surface 241 of the cover 240 but the insect repellent container 280 is provided at the lower part of the back surface of the door 500 .
  • the air circulation unit 700 corresponds to the air circulation part and the wind generating part of the present invention
  • the insect repellent container 280 corresponds to the accommodating part of the present invention.
  • the anti-insect treatment part of the present invention is composed of the air circulation unit 700 as the wind generating part and the anti-insect agent container 280 as the accommodating part.
  • the other configurations of the laundry treating device 2 are the same as those of the laundry treating device 1 .
  • the air circulation unit 700 sucks in the air in the accommodation chamber 200 and blows it out into the accommodation chamber 200, causing the blown air to go to the hanging clothes, thereby circulating the air in the accommodation chamber 200.
  • the air circulation unit 700 includes a circulation fan 710 and a louver mechanism 720 .
  • the circulation fan 710 is a cross-flow fan and includes a fan 711 , a housing 712 and a fan motor 713 .
  • the fan 711 has an impeller 711a arranged in a cylindrical shape, and the axial dimension is much larger than the radial dimension.
  • the fan 711 is provided with a fan shaft 714 at the center. Both ends of the fan shaft 714 protrude from both end surfaces of the fan 711 .
  • the fan 711 is accommodated in the casing 712, and both ends of the fan shaft 714 are rotatably supported on both sides of the casing 712.
  • the housing 712 is composed of a main body 712a with an open front surface and a cover 712b covering the front surface of the main body 712a.
  • the casing 712 is provided with a suction port 715 that opens forward on the front side of the fan 711, that is, on the front surface of the cover 712b, and is provided with an discharge port 716 that opens upward on the rear side of the fan 711.
  • the suction inlet 715 opens in the direction along the bottom surface of the accommodation chamber 200 , and its lower end is slightly higher than the bottom surface of the accommodation chamber 200 .
  • the suction port 715 is provided with a plurality of lattice lattice 715a extending in a lattice shape.
  • the axial dimensions of the suction port 715 and the discharge port 716 are substantially the same as the dimensions of the fan 711 . That is, the suction port 715 and the discharge port 716 have an axially long shape.
  • a filter 717 is arranged between the suction port 715 and the fan 711.
  • the filter 717 captures foreign matter such as dust sucked in along with the air from the suction port 715 .
  • the right end of the fan shaft 714 penetrates the right side surface of the housing 712 and further penetrates the right side surface of the accommodation chamber 200 .
  • a portion corresponding to the air circulation unit 700 is recessed inward, and a fan motor 713 is mounted on the outside of this portion.
  • the fan shaft 714 penetrating the right side surface of the accommodation chamber 200 is connected to the rotor (not shown) of the fan motor 713 .
  • the fan motor 713 drives the fan 711 to rotate via the fan shaft 714 .
  • air is sucked in from the suction port 715 , and the sucked air is transported by the fan 711 and blown out from the discharge port 716 .
  • the ventilation plate mechanism 720 includes a ventilation plate 721 and a ventilation plate motor 722 .
  • the ventilation plate 721 has a square shape that is elongated in the axial direction of the circulation fan 710 and has a size slightly larger than the discharge port 716 of the circulation fan 710 .
  • Eaves 723 are provided at both left and right ends of the ventilation plate 721
  • a ventilation plate shaft 724 is provided at the lower end of the eaves 723 .
  • the circulation fan 710 is provided with support portions 718 at the rear upper ends of both sides of the housing 712 .
  • the ventilation plate shafts 724 on both sides of the ventilation plate 721 are rotatably supported by the support portions 718 on both sides of the housing 712 . Thereby, the ventilation plate 721 is located above the discharge port 716 and can swing in the up and down direction.
  • the right end of the ventilation plate shaft 724 penetrates the right support portion 718 and further penetrates the right side of the accommodation chamber 200 .
  • a ventilation plate motor 722 is installed above the fan motor 713 on the outside of the right side of the accommodation chamber 200 .
  • the ventilation plate shaft 724 penetrating the right side of the accommodation chamber 200 is connected to the rotor (not shown) of the ventilation plate motor 722 .
  • the ventilation plate motor 722 rotates forward and reverse according to a predetermined rotation angle, thereby swinging the ventilation plate 721 via the ventilation plate shaft 724 .
  • the air blown upward from the discharge port 716 of the circulation fan 710 contacts the ventilation plate 721 and is deflected.
  • the deflection angle of the air changes with the angle of the swinging ventilation plate 721, and the direction in which the air, that is, the wind goes, changes.
  • the ventilation plate 721 corresponds to the deflection member of the present invention
  • the ventilation plate motor 722 corresponds to the driving part of the present invention.
  • the insect repellent container 280 is attached to the back surface of the door 500 and has a substantially rectangular box shape with an upper surface open. A plurality of holes 281 are formed in the left side surface, the right side surface, the rear surface part, and the bottom surface part of the insect repellent container 280 .
  • the insect repellent container 250 contains an insect repellent that can be vaporized at normal temperature during the insect repellent treatment operation, similarly to the insect repellent container 250 of the above-described first embodiment. By providing the insect repellent container 280 in the door 500 , the user can easily put the insect repellent into the insect repellent container 280 .
  • the control unit 10 drives the fan motor 713 in the air circulation unit 700 to operate the circulation fan 710, and drives the ventilation plate motor 722 to swing the ventilation plate 721 in the up and down direction. .
  • air containing ozone in the storage chamber 200 is taken into the casing 712 from the suction port 715 and blown out from the discharge port 716 in the form of ozone wind.
  • the blown ozone wind is deflected by the ventilation plate 721 and then goes to the clothes.
  • the deflection angle of the ozone wind changes due to the swing of the ventilation plate 721, so the ozone wind will contact the clothes from all directions.
  • the contact efficiency between the ozone wind and the clothes becomes better, and the clothes are easily deodorized/sterilized.
  • the clothes are pushed by the ozone wind coming from all directions, causing the hanging clothes to sway. This allows ozone to reach the area between the sleeves of clothing and the body, etc. The part of an object that is not easily accessible when it is at rest. In addition, dust attached to clothing is easy to fall off.
  • control unit 10 operates the circulation fan 710 and swings the ventilation plate 721 in the up and down direction.
  • the air in the accommodation chamber 200 that has been warmed by the supply of warm air is taken into the casing 712 from the suction port 715 and blown out from the discharge port 716 in the form of warm air. .
  • the blown warm air is deflected by the swinging ventilation plate 721, thereby contacting the clothes from all directions.
  • the contact efficiency between the warm air and the clothes becomes better, and the clothes can be easily dried.
  • warm air can reach parts of the clothes that are difficult to reach when the clothes are still, and dust attached to the clothes can easily fall off.
  • the control unit 10 when supplying steam into the storage chamber 200, the control unit 10 operates the circulation fan 710 and swings the ventilation plate 721 in the up and down direction. As shown in FIG. 10( a ) and FIG. 11 , the air in the accommodation chamber 200 is taken into the casing 712 from the suction port 715 and blown out from the discharge port 716 in the form of wind. The wind blown out from the outlet 716 and deflected by the ventilation plate 721 causes the clothes to sway. When clothes are swayed in a hanging state, forces such as centrifugal force are easily exerted on the clothes. As a result, the surface of the clothing onto which the steam is blown is easily flattened, so wrinkles in the clothing are easily flattened.
  • the operation contents of the insect-proof treatment process in the insect-proof treatment operation and the drying operation with insect-proof treatment are different from the operation contents of the insect-proof treatment process in the clothes treatment apparatus 1 of the first embodiment.
  • the control unit 10 rotates the fan motor 713 and the ventilation plate motor 722.
  • the circulation fan 710 operates, and the ventilation plate 721 swings in the up and down direction.
  • the air in the accommodation chamber 200 is taken into the casing 712 from the suction port 715 .
  • the air flow from the clothing side to the suction port 715 passes through the insect repellent container 280 .
  • the insect repellent ingredient contained in the insect repellent container 280 vaporizes, that is, volatilizes or sublimates, and is carried by the wind, and is taken into the casing 712 from the suction port 715 together with the wind. Then, the wind containing the anti-insect component is blown out from the outlet 716, is deflected by the ventilation plate 721, and then flows toward the clothes to come into contact with the clothes. As a result, the insect repellent component adheres to the clothing.
  • the deflection angle of the wind containing the insect-proof component changes due to the swing of the ventilation plate 721, so the wind containing the insect-proof component
  • the wind from the composition will come into contact with the clothing from all directions. This improves the contact efficiency between the wind containing the insect repellent component and the clothing, and the insect repellent component easily adheres to the clothing without leakage.
  • the clothes are pushed by wind from all directions, causing the hanging clothes to sway. This allows the insect repellent component to reach parts that are difficult to reach when the garment is stationary, such as between the sleeves of the garment and the body.
  • the insect repellent component of the insect repellent acts on the clothing, and the clothing has an insect repellent effect.
  • control unit 10 stops the fan motor 713 and the ventilation plate motor 722. This completes the pest control process.
  • the clothing treatment device 2 is provided with: an insect-proof agent container 280 that contains the insect-proof agent; and an air circulation unit 700 that generates the insect-proof agent.
  • the insect repellent component vaporized from the insect repellent in the insect repellent container 280 is transported to the wind of the hanging clothes. This can provide the clothing with an insect-proof effect. Therefore, when the clothing is stored in a storage such as a wardrobe or a wardrobe, the clothing is less likely to breed pests in the storage.
  • the laundry treatment apparatus 2 is configured such that the air circulation unit 700 has a circulation fan 710 that blows air sucked in from the suction port 715 out of the discharge port 716; The blown air contacts and deflects the air; and the ventilation plate motor 722 swings the ventilation plate 721 to change the deflection angle of the air.
  • the insect repellent container 280 is disposed in the accommodation chamber 200 from the side of the hanging clothes to the suction inlet 715 The location that the air passes through.
  • the anti-insect component vaporized from the anti-insect agent in the anti-insect agent container 520 is carried by the wind, and is sucked into the suction port 715 together with the wind. Then, the wind containing the anti-insect component is blown out from the outlet 716, is deflected by the ventilation plate 721, goes to the clothes, and comes into contact with the clothes. As a result, the insect repellent component adheres to the clothing. At this time, the deflection angle of the wind containing the anti-insect component changes due to the swing of the ventilation plate 721, and the wind contacts the clothes from all directions. Therefore, the contact efficiency between the wind and the clothes becomes better, and the anti-insect component easily adheres to the clothes without leaving any trace.
  • the insect repellent container 250 and the cover 240 are provided separately and fixed to the cover 240 .
  • the insect repellent container 250 may be integrally formed with the cover 240 .
  • the top portion 241 of the cover 240 may also serve as the bottom portion 251 of the insect repellent container 250 .
  • the insect repellent container 280 is provided on the back surface of the door 500 .
  • the insect repellent container 280 may be disposed at a position other than the back surface of the door 500 , as long as it is a position where the air from the side of the hanging clothes to the suction inlet 715 of the air circulation unit 700 passes through in the storage chamber 200 .
  • the insect repellent container 280 may be provided on the top surface 241 of the cover 240 or may be provided near the front of the suction port 715 on the bottom surface of the storage chamber 200 .
  • the clothing treatment apparatus 1 includes: an insect-proof agent container 250 that contains the insect-proof agent; and a first supply unit. 300 , generate wind that carries the insect-repellent component vaporized from the insect-repellent in the insect-repellent container 250 to the hanging clothes.
  • the insect repellent treatment unit the laundry treatment apparatus 2 is provided with: the insect repellent container 280 that contains the insect repellent; and the air circulation unit 700 that generates air that vaporizes the insect repellent in the insect repellent container 280.
  • the structure of the insect-proof treatment part is not limited to the above-mentioned structure.
  • the insect repellent treatment unit may be configured as follows: including a liquid storage tank that stores an insect repellent liquid obtained by dissolving a liquid or solid insect repellent in water, and a spray mechanism that sprays the insect repellent liquid in the liquid storage tank. to the clothes in the accommodating chamber 200.
  • the clothes treatment device 1 is provided with the holding unit 600 that can swing in the horizontal direction.
  • the vibration starting mechanism part 630 swings the hanger hanging device 610, thereby swinging the clothes.
  • the clothes treating apparatus 1 may be provided with the air circulation unit 700, and the clothes may be swung by blowing the wind discharged from the air circulation unit 700 onto the clothes during the swinging process.
  • the clothes may be swayed by the wind from the air circulation unit 700 during the swinging process.
  • the air circulation unit 700 corresponds to the swing part of this invention.
  • the swing process is performed before the insect-proof treatment process, but the insect-proof treatment operation may not include the swing process.
  • a liquid insect repellent that volatilizes, that is, vaporizes at normal temperature, or a solid insect repellent that sublimates at normal temperature is used.
  • a liquid insect repellent that vaporizes at a temperature higher than normal temperature or a solid insect repellent that sublimates at a temperature higher than normal temperature may also be used.
  • a deodorization/sterilization operation with insect-proof treatment in which the clothes that have been deodorized/sterilized is subjected to insect-proof treatment may be executed.
  • a wrinkle-flattening operation with insect-proof treatment may be performed in which the clothes that have been wrinkle-flattened are subjected to insect-proof treatment.
  • the processes of steps S203 to S205 in FIG. 9(b) are executed after the normal deodorization/sterilization operation.
  • the processing of steps S202 to S205 in FIG. 9(b) is executed after the normal wrinkle-flattening operation.
  • the structure of the insect repellent container 250 is not limited to the structure of Embodiment 1 mentioned above, and the structure of the insect repellent container 280 is not limited to the structure of Embodiment 2 mentioned above. That is, the insect repellent containers 250 and 280 may have any structure as long as they are accommodating portions for accommodating the insect repellent and wind can pass through the inside thereof.
  • the laundry treatment apparatuses 1 and 2 are configured to be capable of deodorizing/sterilizing operations.
  • the laundry treatment apparatuses 1 and 2 may be configured not to perform deodorization/sterilization operations, and the ozone generator 320 may not be provided in the first supply unit 300 .
  • the laundry treatment apparatuses 1 and 2 are configured to perform wrinkle smoothing operation.
  • the laundry treatment apparatuses 1 and 2 may be configured not to perform the wrinkle smoothing operation, and the second supply unit 400 may not be provided.

Abstract

本发明提供一种能使衣物具有防虫效果的衣物处理装置。衣物处理装置(1)具备:容纳室(200),供衣物以悬挂的状态容纳;第一供给单元(300),向容纳室(200)内供给暖风;以及防虫处理部,使防虫剂的防虫成分作用于悬挂在容纳室(200)内的衣物。防虫处理部包括:防虫剂容器(250),容纳防虫剂;第一供给单元(300),产生将由防虫剂容器(250)内的防虫剂气化出的防虫成分运送至悬挂着的衣物的风;第一供给口(210),设于容纳室(200)内的悬挂着的衣物的下方,使第一供给单元(300)所产生的风向上方排出。防虫剂容器(250)以位于悬挂着的衣物与第一供给口(210)之间的方式配置于容纳室(200)内。

Description

衣物处理装置 技术领域
本发明涉及一种对衣物实施烘干等处理的衣物处理装置。
背景技术
以往,已知有将衣物以垂挂的方式容纳于容纳部内并对该衣物至少实施烘干处理的衣物处理装置。例如在专利文献1中记载有这样的衣物处理装置的一个例子。
当季节性衣物在不使用的时期被收纳于衣橱、衣柜等收纳库中时,多会在收纳库内放入市售的防虫剂以便不滋生衣料害虫。
因此,若能通过在如上所述的衣物处理装置中对衣物实施防虫处理来使收纳前的衣物具有防虫效果,则收纳中的衣物不易滋生衣物害虫,非常方便。
现有技术文献
专利文献
专利文献1:日本特开2018-057413号公报
发明内容
发明所要解决的问题
本发明是鉴于上述问题而完成的,其目的在于提供一种能使衣物具有防虫效果的衣物处理装置。
用于解决问题的方案
本发明的主要方案的衣物处理装置具备:容纳室,供衣物以悬挂的状态容纳;暖风供给部,向所述容纳室内供给暖风;以及防虫处理部,使防虫剂的防 虫成分作用于悬挂在所述容纳室内的衣物。
根据本方案的衣物处理装置,不仅能向容纳室内供给暖风来烘干衣物,而且能通过使防虫剂的防虫成分起作用而使衣物具有防虫效果。
本方案的衣物处理装置中,所述防虫处理部可以采用如下构成:包括容纳部和风产生部,所述容纳部供所述防虫剂容纳,所述风产生部产生将由所述容纳部内的所述防虫剂气化出的所述防虫成分运送至悬挂着的衣物的风。
需要说明的是,方案2的“气化”一词具有广义的含义,包括“升华”。
根据上述构成,能使由防虫剂气化出的防虫成分作用于容纳室内的衣物。
在采用了上述构成的情况下,所述防虫处理部可以采用如下构成:还包括排出口,所述排出口设于所述容纳室内的悬挂着的衣物的下方,使所述风产生部所产生的风向上方排出。在该情况下,所述容纳部可以以位于悬挂着的衣物与所述排出口之间的方式配置于所述容纳室内。
如果采用这样的构成,由防虫剂气化出的防虫成分会短距离得被运送至衣物,因此防虫成分容易不浪费地作用于衣物。
在如上所述所述防虫处理部采用包括容纳部和风产生部的构成的情况下,所述风产生部可以采用如下构成:包括空气循环部,所述空气循环部吸入所述容纳室内的空气并将其向所述容纳室内吹出,使吹出的空气前往悬挂着的衣物,由此使空气在所述容纳室内循环。在该情况下,所述空气循环部可以采用如下构成:具有循环风扇、偏转构件以及驱动部,所述循环风扇将从吸入口吸入的空气从吐出口吹出,所述偏转构件与从所述吐出口吹出的空气接触而使该空气偏转,所述驱动部使所述偏转构件摆动以使空气的偏转角度改变。所述容纳部可以配置于在所述容纳室中从悬挂着的衣物侧前往所述吸入口的空气所经过的位置。
如果采用这样的构成,由容纳部内的防虫剂气化出的防虫成分会通过风被运送,与风一起被吸入口吸入。然后,含防虫成分的风从吐出口吹出,通过偏转构件被偏转后前往衣物而与衣物接触。由此,防虫成分附着于衣物。此时,通过偏转构件摆动,含防虫成分的风的偏转角度变化,该风会从各个方向与衣物接触,因此该风与衣物的接触效率变好,防虫成分容易无遗漏地附着于衣物。
本方案的衣物处理装置中,可以采用如下构成:还具备摆动部和控制部,所述摆动部使悬挂于所述容纳室内的衣物晃动。在该情况下,可以采用如下构成:所述控制部执行通过所述防虫处理部来使所述防虫成分作用于悬挂在所述容纳室内的衣物的防虫处理过程,在所述防虫处理过程之前,所述控制部执行通过所述摆动部来使悬挂着的衣物晃动的摆动过程。
摆动部例如可以采用如下构成:包括保持部和起振部,所述保持部保持衣物以使其呈悬挂于容纳室内的状态,所述起振部使保持部摆动。
根据上述构成,能在防虫处理过程之前使附着于容纳室内的衣物的尘埃等异物掉落,因此能使防虫成分不受异物妨碍地作用于衣物。此外,在衣物上附着有衣料害虫的情况下,能将该衣料害虫从衣物去除。
本方案的衣物处理装置中,可以采用还具备控制部的构成。在该情况下,所述控制部可以采用如下构成:执行通过从所述暖风供给部供给的暖风来烘干悬挂于所述容纳室内的衣物的烘干过程,在所述烘干过程之后执行通过所述防虫处理部来使所述防虫成分作用于悬挂着的衣物的防虫处理过程。
根据上述构成,能使通过烘干过程而被烘干的衣物具有防虫效果。
发明效果
根据本发明,能提供一种能使衣物具有防虫效果的衣物处理装置。
通过以下所示的实施方式的说明,本发明的效果和意义将变得更清楚。不过,以下的实施方式只不过是实施本发明时的一个例示,本发明不受以下的实施方式所记载的内容的任何限制。
附图说明
图1中,(a)是实施方式1的衣物处理装置的主视图,(b)是实施方式1的衣物处理装置的右视图。
图2是实施方式1的沿第一供给单元的位置剖开的衣物处理装置的主视剖视图。
图3是实施方式1的沿第二供给单元的位置剖开的衣物处理装置的主视剖 视图。
图4中,(a)和(b)分别是实施方式1的卸下罩的状态和装配有罩的状态的衣物处理装置的俯视剖视图。
图5中,(a)是实施方式1的罩的俯视图,(b)是(a)的A-A′剖视图。(c)是实施方式1的设置有防虫剂容器的罩的俯视图,(d)是(c)的B-B′剖视图。
图6是实施方式1的沿第一供给单元的吸气管道的位置剖开的衣物处理装置的主要部分的侧视剖视图。
图7中,(a)至(d)是用于对实施方式1的衣架悬挂装置和起振机构部的构成进行说明的图。
图8是表示实施方式1的衣物处理装置的构成的框图。
图9中,(a)是表示实施方式1的防虫处理运转中执行的控制部的控制工作的流程图,(b)是表示实施方式1的带防虫处理的烘干运转所执行的控制部的控制工作的流程图。
图10中,(a)是实施方式2的沿空气循环单元的前方位置剖开的衣物处理装置的主要部分的主视剖视图,(b)是实施方式2的取下罩的状态的空气循环单元的主视图。
图11是实施方式2的衣物处理装置的主要部分的侧视剖视图。
附图标记说明
1:衣物处理装置;2:衣物处理装置;10:控制部;100:箱体;200:容纳室;210:第一供给口(排出口);250:防虫剂容器(容纳部);280:防虫剂容器(容纳部);300:第一供给单元(暖风供给部、风产生部);600:保持单元(摆动部);700:空气循环单元(空气循环部、风产生部);710:循环风扇;715:吸入口;716:吐出口;721:通风板(偏转构件);722:通风板马达(驱动部)。
具体实施方式
以下,参照附图对本发明的实施方式进行说明。
<实施方式1>
对实施方式1的衣物处理装置1进行说明。
图1的(a)是衣物处理装置1的主视图,图1的(b)是衣物处理装置1的右视图。图2是沿第一供给单元300的位置剖开的衣物处理装置1的主视剖视图。图2中省略了第二供给单元400的图示。图3是沿第二供给单元400的位置剖开的衣物处理装置1的主视剖视图。图4的(a)和(b)分别是卸下罩240的状态和装配有罩的状态的衣物处理装置1的俯视剖视图。图5的(a)是罩240的俯视图,图5的(b)是图5的(a)的A-A′剖视图。图5的(c)是设置有防虫剂容器250的罩240的俯视图,图5的(d)是图5的(c)的B-B′剖视图。图6是沿第一供给单元300的吸气管道350的位置剖开的衣物处理装置1的主要部分的侧视剖视图。
需要说明的是,图2中用实线箭头示出脱臭/除菌运转中的含有臭氧的空气、烘干运转中的暖风以及防虫处理运转中的风的流动。此外,在图2中,为了便于说明,用单点划线示出防虫剂。而且,在图3中,用实线箭头示出褶皱展平运转中的蒸汽的流动,用虚线箭头示出冷凝水的流动。而且,在图6中,用实线箭头示出来自衣物处理装置1的外部的空气的流动。而且,在图3中,为了便于说明,用单点划线描绘出位于剖切面前方的衣架悬挂装置610。
衣物处理装置1具备箱体100,该箱体100具有纵向长的长方体形状。在箱体100的外底面,于四个角部设有腿110。在箱体100的内部配置有供西装、大衣等各种衣物以悬挂的状态容纳的容纳室200。容纳室200具有纵向长的长方体形状。此外,在箱体100的内部,于容纳室200的下方配置有能向容纳室200供给风和臭氧的第一供给单元300以及能向容纳室200供给蒸汽的第二供给单元400。第一供给单元300相当于本发明的暖风供给部和风产生部。
容纳室200的前表面作为衣物的投入口201开口。箱体100的前表面的与投入口201对应的部分开口。在箱体100的前表面设有门500。门500具有与箱体100的前表面大致相同的尺寸。投入口201被门500覆盖。门500的右端部通过未图示的铰链部与箱体100连结,能以铰链部为支点将门500向前方打开。
在容纳室200,于底面的中央部以相互邻接的方式设有第一供给口210和第二供给口220。第一供给口210和第二供给口220具有两侧具有直线部分的大致半圆形的筒状。第一供给口210的圆弧状部211和第二供给口220的圆弧状部221从上方观察时向相互相反的方向弯曲。由此,第一供给口210和第二供给口220合起来的形状成为近似图4的(a)的单点划线那样的圆形的形状。第一供给口210与第二供给口220之间设有细小的间隙,在该间隙设有具有装配孔231的装配凸台230。
在第一供给口210和第二供给口220的上方,以覆盖它们的方式配置有罩240。罩240包括圆盘状的顶面部241和从顶面部241的周缘向斜下方延伸的周面部242。顶面部241的尺寸比第一供给口210和第二供给口220合起来的尺寸大。在顶面部241的背面中央形成有向下方突出的轴243。轴243以能在罩240的顶面部241与第一供给口210和第二供给口220之间形成规定的间隙的方式装配于装配凸台230的装配孔231。在罩240的外周缘与容纳室200的底面之间形成有规定的间隙。
在罩240的周面部242遍及整周地形成有多个第一排出孔244。第一排出孔244具有在罩240的径向上长的方形,位于第一供给口210和第二供给口220的周围即罩240中的比第一供给口210和第二供给口220的投影区域靠外侧处。由此,从衣物落下的尘埃等异物不易通过第一排出孔244侵入第一供给口210、第二供给口220。
在罩240的顶面部241,于第一供给口210的正上方即投影区域形成有多个第二排出孔245。而且,在顶面部241,于第一供给口210的正上方位置设置有防虫剂容器250。
防虫剂容器250具有有底半圆筒形状,底面部251以比周面部252的下端高的方式被抬高。周面部252固定于顶面部241。
在底面部251形成有多个通气孔253。多个通气孔253位于与罩240的多个第二排出孔245在上下方向上不重合的位置。由此,从衣物落下的尘埃等异物不易通过通气孔253和第二排出孔245侵入第一供给口210。
防虫剂容器250在进行后述的防虫处理运转时容纳能在常温下气化的防虫 剂。防虫剂既可以使用能在常温下升华的固体防虫剂,也可以使用具有挥发性的液体防虫剂。使用液体防虫剂的情况下,该防虫剂被放入会以不会漏出的方式放出气化的防虫成分的容器,被容纳于防虫剂容器250。
防虫剂容器250相当于本发明的容纳部,第一供给口210相当于本发明的排出口。而且,由作为风产生部的第一供给单元300、作为容纳部的防虫剂容器250以及作为排出口的第一供给口210构成本发明的防虫处理部。
在容纳室200的后表面,于上部形成有排出口202。排气管道260与排出口202相连,排气管道260从箱体100的后表面向外部露出。
在排出口202可拆装地装接有排气过滤单元270。排气过滤单元270包括臭氧去除过滤器271和容纳臭氧去除过滤器271的过滤器罩272。臭氧去除过滤器271可以使用活性炭/催化剂过滤器。在过滤器罩272设有多个排气窗273。
在容纳室200的上部,于前后方向上的中央部设有保持单元600,保持单元600能以悬挂状态保持衣物并且能晃动衣物。保持单元600相当于本发明的摆动部。
保持单元600包括衣架悬挂装置610、两个支承部620以及起振机构部630。衣架悬挂装置610是保持衣物以使其呈悬挂于容纳室200内的状态的保持部,起振机构部630是使保持部振动的起振部。
在衣架悬挂装置610上挂着悬挂有衣物的衣架。两个支承部620分别固定于容纳室200的左右侧面。在各支承部620形成有轨道槽621,衣架悬挂装置610的左右端部嵌入轨道槽621。由此,衣架悬挂装置610以能在左右方向上水平移动的方式被两个支承部620支承。起振机构部630装接于衣架悬挂装置610,使衣架悬挂装置610在水平方向上振动。
图7的(a)至(d)是用于对衣架悬挂装置610和起振机构部630的构成进行说明的图。图7的(a)是装接有起振机构部630的衣架悬挂装置610的主视图,图7的(a)是衣架悬挂装置610的俯视图。图7的(c)和(d)分别是表示衣架悬挂装置610通过起振机构部630向右方向和左方向移动的状态的图。需要说明的是,在图7的(b)中,为了便于说明,示出了容纳于凸轮槽613的起振机构部630的辊633。此外,在图7的(c)和(d)中,用剖面示出衣架悬 挂装置610。
衣架悬挂装置610具有左右方向上长的形状。在衣架悬挂装置610的下表面,以在左右方向上按规定的间隔排列的方式设有用于悬挂衣架的多个钩部611。在衣架悬挂装置610的上表面,于中央的凹部612形成有在前后方向上延伸的椭圆形的凸轮槽613。此外,在衣架悬挂装置610的上表面,以包围凹部612的方式设有方形筒状的罩部614。
起振机构部630包括振动马达631、凸轮轴632以及辊633。凸轮轴632与振动马达631的马达轴631a连接。在凸轮轴632的前端部形成有在与马达轴631a垂直的方向上延伸的臂632a。在臂632a的前端旋转自如地装配有辊633。辊633容纳于衣架悬挂装置610的凸轮槽613。
当振动马达631工作而凸轮轴632旋转时,如图7的(b)的箭头和虚线所示,辊633以描绘出圆轨道的方式移动,凸轮槽613在左右方向上移动。由此,如图7的(c)和(d)所示,衣架悬挂装置610向右方向和左方向交替移动。即,衣架悬挂装置610以与振动马达631的转速对应的振动频率在左右方向上摆动。
如图2所示,可以以衣物的前后方向成为衣架悬挂装置610的延伸方向的方式,将多个衣物并排挂在衣架悬挂装置610上。起振机构部630中,振动马达631配置于容纳室200的顶面与箱体100的顶面之间,凸轮轴632贯通容纳室200的顶面而连接于振动马达631。凸轮轴632成为被衣架悬挂装置610的罩部614覆盖而被隐藏的状态。
参照图2和图6,第一供给单元300包括第一供给管道310、臭氧发生器320、加热器330、鼓风扇340以及吸气管道350。
第一供给管道310中,其导入口311与鼓风扇340的吐出口342连接,其导出口312与第一供给口210的入口连接。臭氧发生器320配置于第一供给管道310内的导入口311的附近。第一供给管道310具有如下形状:从导入口311向左方延伸,在从经过臭氧发生器320的配置位置的部分以向右方折回的方式弯曲后,向上方延伸至第一供给口210。
臭氧发生器320是放电式臭氧发生器,在一对电极间产生电晕放电、无声 放电等放电,由穿过一对电极间的空气生成臭氧。加热器330在第一供给管道310内配置于比臭氧发生器320靠第一供给口210侧,对流过第一供给管道310内的空气进行加热。作为加热器330,例如可以使用PTC加热器。
鼓风扇340是离心扇,在其侧面设有吸入口341,在起周面设有吐出口342。鼓风扇340从吸入口341摄入空气,并将摄入的空气送向第一供给管道310内。鼓风扇340也可以使用离心扇以外的风扇,例如轴流扇。
在箱体100的前表面,在与鼓风扇340的吸入口341对置的位置形成有吸气口101。在吸气口101设有去除从吸气口101摄入的空气中所含的尘埃等的灰尘过滤器120。
吸气管道350的一端与吸气口101连接,另一端与吸入口341连接。在门500,在后表面的与箱体100的吸气口101对应的位置形成有多个通气孔501,并在底面形成有空气的摄入口502。在门500的内部,摄入口502和多个通气孔501连通。在鼓风扇340工作时,衣物处理装置1的外部的空气经过摄入口502、通气孔501以及吸气口101被摄入吸气管道350内。以下,将衣物处理装置1的外部称为机外。
参照图3,第二供给单元400包括第二供给管道410、蒸汽发生装置420以及排水装置430。第二供给管道410具有下部向右方鼓出的形状。在第二供给管道410,于上端部设有与第二供给口220的入口连接的导出口411。此外,在第二供给管道410,于下部的右侧面设有导入口412。而且,在第二供给管道410,通过使底部比导入口412的位置低,在导入口412的下方设有贮水部413。在贮水部413的底面设有排出口414。
蒸汽发生装置420包括供水箱440、供水桶450、泵模块460以及蒸汽发生器470。供水箱440中蓄有要向蒸汽发生器470供给的水。供水箱440在箱体100内可拆装地设置于未图示的供水箱设置部。当供水箱440设置于供水箱设置部时,其供给口441从上方与供水桶450的入口451连接。在供给口441设有开闭阀442,当供给口441与入口451连接时,开闭阀442打开,从供水箱440向供水桶450供水,整个供水桶450内充满水。
泵模块460包括泵461、连接软管462以及供水软管463。泵461的吸入口 通过连接软管462与供水桶450的出口452连接。在泵461的吐出口连接有供水软管463。泵461将供水桶450内的水通过连接软管462吸入并通过供水软管463送到蒸汽发生器470。
蒸汽发生器470包括主体部471和加热器472,经由未图示的隔热构件装接于第二供给管道410的导入口412。主体部471由压铸铝等金属材料形成,内部具有蒸汽发生室473。此外,在主体部471,于蒸汽发生室473的上方设有供供水软管463连接的供水口474,于蒸汽发生室473的右方设有与第二供给管道410内相连的放出口475。加热器472被埋入主体部471。
主体部471被加热器472加热而变成高温。由泵461输送来的水滴落到蒸汽发生室473的底面而蒸发,由此产生高温的蒸汽。产生的蒸汽通过放出口475被放出到第二供给管道410内。
排水装置430包括排水箱480和排水软管490。排水软管490在其上端部具有与第二供给管道410的排出口414连接的连接口491。在连接口491以堵塞排出口414的方式配置有挡板492。挡板492例如是金属制的网眼细的网板,用于在脱臭/除菌运转时使供给到容纳室200内的臭氧不易通过排水软管490漏到箱体100的内部。
排水箱480是用于回收第二供给管道410内产生的冷凝水的容器。排水箱480在箱体100内可拆装地设置于未图示的排水箱设置部。当排水箱480设置于排水箱设置部时,其入口481被定位在排水软管490的下端的正下方。
在箱体100的前表面,在设置于箱体100内的供水箱440和排水箱480的正面位置设有这些箱440、480的出入口102。出入口102由可开闭的盖103覆盖(参照图1)。用户能通过打开门500并打开盖103来向箱体100内取放供水箱440和排水箱480。
图8是表示衣物处理装置1的构成的框图。
衣物处理装置1除了上述的构成以外,还具备控制部10、操作部20、显示部30、门传感器40以及温度传感器50。
操作部20包括用于选择运转模式的模式选择按钮、用于使运转开始的开始按钮等操作按钮,将与用户所操作的操作按钮对应的操作信号输出给控制部10。
作为运转模式,准备了进行脱臭/除菌运转的脱臭/除菌模式、进行烘干运转的烘干模式、进行褶皱展平运转的褶皱展平模式、进行防虫处理运转的防虫处理模式、进行带防虫处理的烘干运转的烘干/防虫处理模式等。
显示部30包括LED等发光元件、液晶面板等显示器,按照来自控制部10的控制信号,进行所选择的运转模式的显示、运转的运行状况的显示、异常的通知等。
门传感器40检测门500的开闭,并将与开闭对应的检测信号输出给控制部10。温度传感器50检测容纳室200内的温度,并将与检测到的温度对应的温度信号输出给控制部10。
控制部10包括微型计算机、各种驱动电路等,对显示部30、第一供给单元300的臭氧发生器320、加热器330和鼓风扇340、第二供给单元400的泵461和加热器472、保持单元600的振动马达631等进行控制。
在本实施方式的衣物处理装置1中,能执行进行衣物的脱臭/除菌的脱臭/除菌运转、进行衣物的烘干的烘干运转、展平衣物的褶皱的褶皱展平运转。需要说明的是,在进行这些脱臭/除菌运转、烘干运转以及褶皱展平运转时,防虫剂容器250中不容纳防虫剂。
脱臭/除菌运转中,控制部10在第一供给单元300中使鼓风扇340和臭氧发生器320工作。
如图6的箭头所示,通过鼓风扇340的工作,机外的空气从吸气口101被摄入吸气管道350并被送入第一供给管道310内。
如图2所示,在第一供给管道310内流动的空气穿过臭氧发生器320,这时,由臭氧发生器320产生的臭氧混入空气中。这样,含有臭氧的空气通过第一供给管道310内到达第一供给口210,从第一供给口210排出到容纳室200内。排出的含有臭氧的空气吹到罩240上,其中一部分从第二排出孔245排出,剩下的部分向周围扩散,从多个第一排出孔244排出并且从罩240与容纳室200的底面之间排出。从第二排出孔245排出的含有臭氧的空气穿过防虫剂容器250的通气孔253。
这样,含有臭氧的空气被罩240扩散而前往上方的衣物,广泛地吹到衣物 上。衣物通过臭氧的脱臭/除菌作用被脱臭/除菌。
因进行衣物的脱臭/除菌而降低了臭氧浓度的空气从设于容纳室200的上部的排出口202排出至排气管道260内,在排气管道260内流动并向机外排出。从排出口202排出的空气穿过臭氧去除过滤器271。由此,空气中的臭氧被去除,降低到适当的臭氧浓度的空气被排出到机外。
当经过规定的脱臭/除菌时间时,控制部10使臭氧发生器320和鼓风扇340停止。这样,脱臭/除菌运转结束。
接着,烘干运转中,控制部10在第一供给单元300中使鼓风扇340和加热器330工作。
如图6的箭头所示,通过鼓风扇340的工作,机外的空气从吸气口101被摄入吸气管道350并被送入第一供给管道310内。
如图2所示,在第一供给管道310内流动的空气通过加热器330被加热,成为适合烘干的温度(例如60℃左右)的暖风。然后,暖风到达第一供给口210并从第一供给口210排出到容纳室200内。排出的暖风与含有臭氧的空气同样被罩240扩散而前往上方的衣物,广泛地吹到衣物上。由此,衣物被烘干。在容纳室200内从衣物中剥离了水分的空气通过排出口202、排气管道260被排出到机外。
在烘干运转中,控制部10使振动马达631旋转。由此,衣架悬挂装置610被起振机构部630起振而摆动。悬挂于衣架悬挂装置610的衣物在该衣物的前后方向上晃动,此时衣物通过作用于衣物的离心力被展平。由此,抑制了伴随烘干的进行而来的衣物起皱。需要说明的是,衣物随着被烘干水分变少而收缩,容易在表面形成褶皱。因此,衣物至少在烘干运转的后半部分摆动即可。
当经过规定的烘干时间时,控制部10使加热器330和鼓风扇340停止。这样,烘干运转结束。
接着,褶皱展平运转中,首先,控制部10在第二供给单元400中使蒸汽发生器470的加热器472在泵461停止的状态下工作。由此,蒸汽发生器470的主体部471的温度上升。
当蒸汽发生器470的主体部471变成足够高温时,控制部10在使加热器472 继续工作的状态下使泵461工作。如图3所示,由蒸汽发生器470产生高温的蒸汽并放出到第二供给管道410内。放出的蒸汽在第二供给管道410内上升而到达第二供给口220,从第二供给口220排出到容纳室200内。排出的蒸汽吹到罩240上而向周围扩散,其中的一部分从多个排出孔244排出,剩下的部分从罩240与容纳室200的底面之间排出。这样,蒸汽被罩240扩散而前往上方的衣物,广泛地吹到衣物上。利用蒸汽所具有的水分和热量,衣物的褶皱被展平。
蒸汽在第二供给管道410内流动时,其中的一部分可能会冷凝而产生冷凝水。冷凝水向下方流动而蓄至贮水部413并从排出口414排出。排出的冷凝水通过排水软管490回收到排水箱480中。
当经过规定的蒸汽供给时间时,控制部10使加热器472和泵461停止。然后,控制部10使鼓风扇340和加热器330工作。由此,与烘干运转同样,暖风吹到衣物上,被蒸汽弄湿的衣物被烘干。需要说明的是,褶皱展平运转中的烘干时间设为适合褶皱展平运转的时间,可以设为与烘干运转的烘干时间不同。
而且,在褶皱防止运转的烘干时也通过控制部10使振动马达631旋转,由此,衣架悬挂装置610振动,悬挂于衣架悬挂装置610的衣物晃动。由此,抑制了伴随烘干的进行而来的衣物起皱。
当经过规定的烘干时间时,控制部10使鼓风扇340和加热器330停止。这样,褶皱展平运转结束。
在衣物处理装置1中,能进行对上衣、毛衣等衣物实施防虫处理的防虫处理运转。而且,可以在烘干衣物后进行对烘干的衣物实施防虫处理的带防虫处理的烘干运转。
图9的(a)是表示防虫处理运转中执行的控制部10的控制工作的流程图。
在进行防虫处理运转的情况下,用户将衣物容纳于容纳室200内,并且向防虫剂容器250内投入防虫剂。然后,用户在操作部20中通过模式选择按钮来选择防虫处理模式并按下开始按钮。由此,防虫处理运转开始。
参照图9的(a),当防虫处理运转开始时,首先,控制部10执行摆动过程(S101)。
在摆动过程中,控制部10使振动马达631旋转。由此,衣架悬挂装置610 被起振机构部630起振而振动。悬挂于衣架悬挂装置610的衣物晃动,附着于衣物的尘埃等异物被抖落。在衣物滋生了衣料害虫的情况下,衣料害虫也能被抖落。
当经过规定的摆动时间时,控制部10使振动马达631停止。由此,摆动过程结束。
接着,控制部10执行防虫处理过程(S102)。防虫处理过程中,控制部10在第一供给单元300中使鼓风扇340工作。
如图2的箭头所示,由鼓风扇340的旋转产生的风通过第一供给管道310内,从第一供给口210向上方排出。经过罩240的第二排出孔245的风穿过通气孔253而进入防虫剂容器250内,穿过防虫剂容器250内。在防虫剂容器520内由防虫剂气化即挥发或者升华而得到的防虫成分被风向上方运送,附着于悬挂在容纳室200内的衣物。这样一来,防虫剂的防虫成分作用于衣物,衣物具有防虫效果。
当经过规定的防虫处理时间时,控制部10使鼓风扇340停止。由此,防虫处理过程结束,防虫处理运转结束。
图9的(b)是表示带防虫处理的烘干运转中执行的控制部10的控制工作的流程图。
在进行带防虫处理的烘干运转的情况下,用户在将衣物容纳于容纳室200内后,在操作部403中通过模式选择按钮来选择烘干/防虫处理模式并按下开始按钮。由此,带防虫处理的烘干运转开始。需要说明的是,在该运转的开始时刻,不向防虫剂容器250内投入防虫剂。
参照图9的(b),当带防虫处理的烘干运转开始时,首先,控制部10执行烘干过程(S201)。烘干过程与上述的烘干运转同样。通过烘干过程,悬挂于容纳室200内的衣物被烘干。
接着,控制部10执行送风过程(S202)。
送风过程中,控制部10在第一供给单元300中不使加热器330工作而使鼓风扇340旋转。向容纳室200内导入冷风,容纳室200内和衣物被冷却。
当由温度传感器50检测到的容纳室200内的温度下降至规定温度例如40℃时,控制部10使鼓风扇340停止。由此,送风过程结束。
接着,控制部10使显示部30、未图示的扬声器进行催促向防虫剂容器250内投入防虫剂的通知(S203)。然后,控制部10监视是否向防虫剂容器250内投入了防虫剂(S204)。
当向防虫剂容器250内投入防虫剂时,门500打开。因此,当控制部10通过门传感器40检测到门500的打开并在此后检测到门500的关闭时,判定为向防虫剂容器250内投入了防虫剂。
当判定为向防虫剂容器250内投入了防虫剂时(S204:是),控制部10执行防虫处理过程(S205)。由此,防虫剂的防虫成分作用于悬挂在容纳室200内的衣物,衣物具有防虫效果。此时,容纳室200内和衣物的温度低,因此防虫成分不易受到热的影响。
这样,当防虫处理过程完成时,带防虫处理的烘干运转结束。
<实施方式1的效果>
根据本实施方式,作为使防虫剂的防虫成分作用于悬挂在容纳室200内的衣物的防虫处理部,衣物处理装置1具备:防虫剂容器250,容纳防虫剂;以及第一供给单元300,产生将由防虫剂容器250内的防虫剂气化出的防虫成分运送至悬挂着的衣物的风。由此,能使衣物具有防虫效果,因此在该衣物被收纳于衣橱、衣柜等收纳库中时,在收纳库内该衣物难以滋生衣料害虫。
进而,根据本实施方式,衣物处理装置1采用如下构成:在悬挂于容纳室200内的衣物的下方设有将第一供给单元300所产生的风向上方排出的第一供给口210,防虫剂容器250以位于悬挂着的衣物与第一供给口210之间的方式配置于容纳室200内。
根据该构成,防虫剂容器250位于悬挂着的衣物与第一供给口210之间,因此由防虫剂气化出的防虫成分以短距离被运送到衣物。由此,防虫成分容易不浪费地作用于衣物。
进而,根据本实施方式,衣物处理装置1采用如下构成:还包括使悬挂于容纳室200内的衣物晃动的保持单元600和控制部10,控制部10执行使防虫成 分作用于悬挂在容纳室200内的衣物的防虫处理过程,在防虫处理过程之前,控制部10通过保持单元600来执行使悬挂于容纳室200内的衣物晃动的摆动过程。
根据该构成,能在防虫处理过程之前使附着于容纳室200内的衣物的尘埃等异物掉落,因此能使防虫成分不受异物妨碍地作用于衣物。此外,在衣物上附着有衣料害虫的情况下,能将该衣料害虫从衣物去除。
进而,根据本实施方式,衣物处理装置1采用如下构成:控制部10执行通过从第一供给单元300供给的暖风来烘干悬挂于容纳室200内的衣物的烘干过程,控制部10在烘干过程之后执行防虫处理过程。
根据该构成,能使通过烘干过程而被烘干的衣物具有防虫效果。
进而,根据本实施方式,衣物处理装置1采用如下构成:控制部10在烘干过程与防虫处理过程之间执行通过第一供给单元300来将冷风供给到容纳室200内从而对容纳室200内进行冷却的送风过程。
根据该构成,能使防虫成分作用于通过送风过程而被冷却的衣物,因此防虫成分不易受到热的影响。
<实施方式2>
对实施方式2的衣物处理装置2进行说明。
图10的(a)是沿空气循环单元700的前方位置剖开的衣物处理装置2的主要部分的主视剖视图,图10的(b)是取下罩712b的状态的空气循环单元700的主视图。图11是衣物处理装置2的主要部分的侧视剖视图。需要说明的是,图10的(a)和图11中,从空气循环单元700吹出的空气的流动用实线箭头、虚线箭头示出。此外,图10的(a)中,为了便于说明,位于比剖切面靠前方处的衣架悬挂装置610用单点划线描绘出。而且,图11中,为了便于说明,防虫剂用单点划线示出。
在衣物处理装置2中,在容纳室200内的底部且后表面附近配置有空气循环单元700。此外,在衣物处理装置2中,未在罩240的顶面部241设置防虫剂容器250而在门500的背面的下部设置防虫剂容器280。
空气循环单元700相当于本发明的空气循环部和风产生部,防虫剂容器280相当于本发明的容纳部。然后,由作为风产生部的空气循环单元700和作为容纳部的防虫剂容器280构成本发明的防虫处理部。
衣物处理装置2中的其他构成与衣物处理装置1的构成相同。
空气循环单元700吸入容纳室200内的空气并将其向容纳室200内吹出,使吹出的空气前往悬挂着的衣物,由此使空气在容纳室200内循环。
空气循环单元700具备循环风扇710和通风板(louver)机构720。循环风扇710是横流风扇,包括风扇711、壳体712以及风扇马达713。风扇711具有配置成圆筒状的叶轮711a,轴向尺寸比径向尺寸大很多。在风扇711,于中心设有风扇轴714。风扇轴714的两端部从风扇711的两端面突出。
风扇711容纳于壳体712内,风扇轴714的两端部可旋转地支承于壳体712的两侧面。壳体712由前表面开口的主体712a和覆盖主体712a的前表面的罩712b构成。在壳体712,于风扇711的前侧即罩712b的前表面设有向前方开口的吸入口715,于风扇711的后侧设有向上方开口的吐出口716。吸入口715在沿着容纳室200的底面的方向上开口,其下端比容纳室200的底面略高。吸入口715设有呈格子状走向的多个格棂715a。吸入口715和吐出口716的轴向尺寸与风扇711的尺寸大致相同。即,吸入口715和吐出口716具有轴向上长的形状。
在壳体712内,于吸入口715与风扇711之间配置有过滤器717。过滤器717捕集与空气一起从吸入口715吸入的尘埃等异物。
风扇轴714的右侧的端部贯通壳体712的右侧的侧面,进而贯通容纳室200的右侧面。容纳室200的右侧面中,与空气循环单元700对应的部分向内侧凹陷,在该部分的外侧装配有风扇马达713。贯通容纳室200的右侧面的风扇轴714与风扇马达713的转子(未图示)连结。
风扇马达713经由风扇轴714对风扇711进行旋转驱动。当风扇711旋转时,从吸入口715吸入空气,吸入的空气由风扇711输送并从吐出口716吹出。
通风板机构720包括通风板721和通风板马达722。通风板721具有在循环风扇710的轴向上长的方形,具有比循环风扇710的吐出口716稍大的尺寸。 在通风板721的左右两端部设有檐部723,在檐部723的下端部设有通风板轴724。在循环风扇710,于壳体712的两侧面的后上端部设有支承部718。通风板721的两侧的通风板轴724可旋转地支承于壳体712的两侧的支承部718。由此,通风板721位于吐出口716的上方,能在上下方向上摆动。
通风板轴724的右侧的端部贯通右侧的支承部718,进而贯通容纳室200的右侧面。在容纳室200的右侧面的外侧,于风扇马达713的上方装配有通风板马达722。贯通容纳室200的右侧面的通风板轴724与通风板马达722的转子(未图示)连结。
通风板马达722按规定的旋转角正转和反转,由此经由通风板轴724使通风板721摆动。从循环风扇710的吐出口716向上方吹出的空气与通风板721接触而偏转。空气的偏转角度随着摆动的通风板721的角度而变化,空气即风前往的方向发生变化。
通风板721相当于本发明的偏转构件,通风板马达722相当于本发明的驱动部。
防虫剂容器280装配于门500的背面,具有上表面开口的大致长方体的箱状。在防虫剂容器280的左侧面部、右侧面部、后表面部以及底面部形成有多个孔281。在防虫剂容器250中,与上述实施方式1的防虫剂容器250同样,在进行防虫处理运转时容纳能在常温下气化的防虫剂。通过将防虫剂容器280设于门500,用户容易将防虫剂投入防虫剂容器280内。
衣物处理装置2中,在脱臭/除菌运转中,控制部10在空气循环单元700中驱动风扇马达713来使循环风扇710工作,并且驱动通风板马达722来使通风板721在上下方向上摆动。
如图10的(a)和图11所示,容纳室200内的含有臭氧的空气从吸入口715被摄入到壳体712内,以臭氧风的形式从吐出口716吹出。吹出的臭氧风通过通风板721被偏转后前往衣物。此时,臭氧风的偏转角度因通风板721摆动而发生变化,因此臭氧风会从各个方向与衣物接触。由此,臭氧风与衣物的接触效率变好,衣物容易被脱臭/除菌。此外,衣物被来自各个方向的臭氧风推动,由此悬挂着的衣物会晃动。由此,能使臭氧触及衣物的袖子与身体之间等在衣 物静止的状态下不易触及的部分。此外,附着在衣物上的尘埃容易掉落。
此外,烘干运转中,控制部10使循环风扇710工作,并且使通风板721在上下方向上摆动。
如图10的(a)和图11所示,通过暖风的供给而变暖的容纳室200内的空气从吸入口715被摄入壳体712内,以暖风的形式从吐出口716吹出。吹出的暖风通过摆动的通风板721被偏转,由此从各个方向与衣物接触。由此,暖风与衣物的接触效率变好,衣物容易烘干。此外,通过晃动衣物,能使暖风触及在衣物静止状态下难以触及的衣物的部分,此外,附着于衣物的尘埃容易掉落。
进而,褶皱展平运转中,在向容纳室200内供给蒸汽时,控制部10使循环风扇710工作并且使通风板721在上下方向上摆动。如图10的(a)和图11所示,容纳室200内的空气从吸入口715被摄入壳体712内,以风的形式从吐出口716吹出。通过从吐出口716吹出并被通风板721偏转的风,衣物晃动。当衣物在悬挂的状态下晃动时,衣物容易被施加离心力等力。由此,蒸汽所吹到的衣物的表面容易被展平,因此衣物的褶皱容易展平。
在本实施方式的衣物处理装置2中也与上述实施方式1的衣物处理装置1同样地进行图9的(a)的防虫处理运转和图9的(b)的带防虫处理的烘干运转。
然而,本实施方式的衣物处理装置2中,防虫处理运转和带防虫处理的烘干运转中的防虫处理过程的运转内容与上述实施方式1的衣物处理装置1的防虫处理过程的运转内容不同。
即,防虫处理过程中,控制部10使风扇马达713和通风板马达722旋转。循环风扇710工作,并且通风板721在上下方向上摆动。如图11所示,容纳室200内的空气从吸入口715被摄入壳体712内。此时,如图11的箭头所示,从衣物侧前往吸入口715的空气流即风穿过防虫剂容器280内。由容纳于防虫剂容器280内的防虫剂气化即挥发或者升华而得到的防虫成分由风运送,与风一起从吸入口715被摄入壳体712内。然后,含防虫成分的风从吐出口716吹出,通过通风板721被偏转后前往衣物而与衣物接触。由此,防虫成分附着于衣物。
此时,含防虫成分的风的偏转角度因通风板721摆动而变化,因此含防虫 成分的风会从各个方向与衣物接触。由此,含防虫成分的风与衣物的接触效率变好,防虫成分容易无遗漏地附着于衣物。此外,衣物被来自各个方向的风推动,由此悬挂着的衣物会晃动。由此,能使防虫成分触及衣物的袖子与身体之间等在衣物静止的状态下不易触及的部分。
这样一来,防虫剂的防虫成分作用于衣物,衣物具有防虫效果。
当经过规定的防虫处理时间时,控制部10使风扇马达713和通风板马达722停止。由此,防虫处理过程结束。
<实施方式2的效果>
根据本实施方式,作为使防虫剂的防虫成分作用于悬挂在容纳室200内的衣物的防虫处理部,衣物处理装置2具备:防虫剂容器280,容纳防虫剂;以及空气循环单元700,产生将由防虫剂容器280内的防虫剂气化出的防虫成分运送至悬挂着的衣物的风。由此,能使衣物具有防虫效果,因此在该衣物被收纳于衣橱、衣柜等收纳库中时,在收纳库内该衣物难以滋生衣料害虫。
进而,根据本实施方式,衣物处理装置2采用如下构成,即,空气循环单元700具有:循环风扇710,使从吸入口715吸入的空气从吐出口716吹出;通风板721,与从吐出口716吹出的空气接触而使该空气偏转;以及通风板马达722,使通风板721摆动以使空气的偏转角度改变,防虫剂容器280配置于在容纳室200中从悬挂着的衣物侧前往吸入口715的空气所经过的位置。
根据该构成,由防虫剂容器520内的防虫剂气化出的防虫成分由风运送,与风一起被吸入口715吸入。然后,含防虫成分的风从吐出口716吹出,通过通风板721被偏转而前往衣物并与衣物接触。由此,防虫成分附着于衣物。此时,含防虫成分的风的偏转角度因通风板721摆动而变化,该风会从各个方向与衣物接触,因此该风与衣物的接触效率变好,防虫成分容易无遗漏地附着于衣物。
除此之外,根据本实施方式,通过与上述实施方式1同样的构成,能起到与上述实施方式1同样的效果。
<变更例>
以上,对本发明的实施方式进行了说明,但本发明不受上述实施方式的任 何限制,此外,本发明的实施方式也能进行上述以外的各种变更。
例如,上述实施方式1中,防虫剂容器250与罩240分体设置并固定于罩240。然而,防虫剂容器250也可以与罩240一体形成。在该情况下,罩240的顶面部241也可以兼用作防虫剂容器250的底面部251。
进而,上述实施方式2中,防虫剂容器280设置于门500的背面。然而,防虫剂容器280也可以配置于门500的背面以外的位置,只要是在容纳室200中从悬挂着的衣物侧前往空气循环单元700的吸入口715的空气所经过的位置即可。例如,防虫剂容器280既可以设置于罩240的顶面部241,也可以设置于容纳室200的底面中的吸入口715的前方附近。
进而,上述实施方式1中,作为使防虫剂的防虫成分作用于悬挂在容纳室200内的衣物的防虫处理部,衣物处理装置1具备:防虫剂容器250,容纳防虫剂;以及第一供给单元300,产生将由防虫剂容器250内的防虫剂气化出的防虫成分运送至悬挂着的衣物的风。此外,在上述实施方式2中,作为防虫处理部,衣物处理装置2具备:防虫剂容器280,,容纳防虫剂;以及空气循环单元700,产生将由防虫剂容器280内的防虫剂气化出的防虫成分运送至悬挂着的衣物的风。然而,防虫处理部的构成不限于上述构成。例如,防虫处理部也可以采用如下构成:包括贮液箱和喷雾机构,贮液箱贮存使液体或固体的防虫剂溶解于水而得到的防虫液,喷雾机构将贮液箱内的防虫液喷雾向容纳室200内的衣物。
进而,上述实施方式1中,衣物处理装置1具备能在水平方向上摆动的保持单元600,在防虫处理运转的摆动过程中,起振机构部630使衣架悬挂装置610摆动,由此使衣物摆动。然而,也可以是,衣物处理装置1具备空气循环单元700,在摆动过程中,通过使从空气循环单元700排出的风吹到衣物上来使衣物摆动。同样,在上述实施方式2中,也可以是,在摆动过程中,通过来自空气循环单元700的风来使衣物摆动。需要说明的是,在这些情况下,为了在摆动过程之后向防虫剂容器250、280内投入防虫剂,可以继摆动过程之后进行催促投入防虫剂的通知。在该构成中,空气循环单元700相当于本发明的摆动部。
进而,上述实施方式1、2中,在防虫处理运转中,在防虫处理过程之前执行摆动过程,但防虫处理运转也可以不包括摆动过程。
进而,上述实施方式1、2中,使用会挥发即会在常温下气化的液体防虫剂或会在常温下升华的固体防虫剂。然而,也可以使用会在比常温高的温度下气化的液体防虫剂或会在比常温高的温度下升华的固体防虫剂。
进而,在上述实施方式1、2中,也可以执行对进行了脱臭/除菌的衣物实施防虫处理的带防虫处理的脱臭/除菌运转。同样,也可以执行对进行了褶皱展平的衣物实施防虫处理的带防虫处理的褶皱展平运转。带防虫处理的脱臭/除菌运转中,在通常的脱臭/除菌运转之后执行图9的(b)的步骤S203~S205的处理。带防虫处理的褶皱展平运转中,在通常的褶皱展平运转之后执行图9的(b)的步骤S202~S205的处理。
进而,防虫剂容器250的构成不限于上述实施方式1的构成,防虫剂容器280的构成不限于上述实施方式2的构成。即,防虫剂容器250、280可以是任意构成,只要是容纳防虫剂的容纳部且风穿过其内部即可。
进而,上述实施方式1、2中,衣物处理装置1、2采用能进行脱臭/除菌运转的构成。然而,衣物处理装置1、2也可以采用不进行脱臭/除菌运转的构成,也可以在第一供给单元300中不配置臭氧发生器320。
进而,上述实施方式1、2中,衣物处理装置1、2采用能进行褶皱展平运转的构成。然而,衣物处理装置1、2也可以采用不进行褶皱展平运转的构成,可以不设置第二供给单元400。
除此之外,本发明的实施方式能在技术方案所示的技术构思的范围内适当进行各种变更。

Claims (6)

  1. 一种衣物处理装置,其特征在于,具备:
    容纳室,供衣物以悬挂的状态容纳;
    暖风供给部,向所述容纳室内供给暖风;以及
    防虫处理部,使防虫剂的防虫成分作用于悬挂在所述容纳室内的衣物。
  2. 根据权利要求1所述的衣物处理装置,其特征在于,
    所述防虫处理部包括:
    容纳部,容纳所述防虫剂;以及
    风产生部,产生将由所述容纳部内的所述防虫剂气化出的所述防虫成分运送至悬挂着的衣物的风。
  3. 根据权利要求2所述的衣物处理装置,其特征在于,
    所述防虫处理部还包括排出口,所述排出口设于所述容纳室内的悬挂着的衣物的下方,使所述风产生部所产生的风向上方排出,
    所述容纳部以位于悬挂着的衣物与所述排出口之间的方式配置于所述容纳室内。
  4. 根据权利要求2所述的衣物处理装置,其特征在于,
    所述风产生部包括空气循环部,所述空气循环部吸入所述容纳室内的空气并将其向所述容纳室内吹出,使吹出的空气前往悬挂着的衣物,由此使空气在所述容纳室内循环,
    所述空气循环部具有:
    循环风扇,将从吸入口吸入的空气从吐出口吹出;
    偏转构件,与从所述吐出口吹出的空气接触而使该空气偏转;以及
    驱动部,使所述偏转构件摆动以使空气的偏转角度改变,
    所述容纳部配置于在所述容纳室中从悬挂着的衣物侧前往所述吸入口的空 气所经过的位置。
  5. 根据权利要求1至4中任一项所述的衣物处理装置,其特征在于,还具备:
    摆动部,使悬挂于所述容纳室内的衣物晃动;以及
    控制部,
    所述控制部执行通过所述防虫处理部来使所述防虫成分作用于悬挂在所述容纳室内的衣物的防虫处理过程,
    所述控制部在所述防虫处理过程之前执行通过所述摆动部来使悬挂着的衣物晃动的摆动过程。
  6. 根据权利要求1至4中任一项所述的衣物处理装置,其特征在于,
    还具备控制部,
    所述控制部执行通过从所述暖风供给部供给的暖风来烘干悬挂于所述容纳室内的衣物的烘干过程,
    所述控制部在所述烘干过程之后执行通过所述防虫处理部来使所述防虫成分作用于悬挂着的衣物的防虫处理过程。
PCT/CN2023/110668 2022-08-02 2023-08-02 衣物处理装置 WO2024027743A1 (zh)

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JP2017124030A (ja) * 2016-01-14 2017-07-20 パナソニックIpマネジメント株式会社 布材処理装置
WO2020135004A1 (zh) * 2018-12-26 2020-07-02 青岛海尔洗衣机有限公司 衣物处理装置
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Publication number Priority date Publication date Assignee Title
JP2017124030A (ja) * 2016-01-14 2017-07-20 パナソニックIpマネジメント株式会社 布材処理装置
WO2020135004A1 (zh) * 2018-12-26 2020-07-02 青岛海尔洗衣机有限公司 衣物处理装置
CN211431638U (zh) * 2019-12-17 2020-09-08 深圳市悦美家实业有限公司 一种防潮效果好的家居用衣柜
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