WO2016074604A1 - 衣物处理装置 - Google Patents

衣物处理装置 Download PDF

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Publication number
WO2016074604A1
WO2016074604A1 PCT/CN2015/094161 CN2015094161W WO2016074604A1 WO 2016074604 A1 WO2016074604 A1 WO 2016074604A1 CN 2015094161 W CN2015094161 W CN 2015094161W WO 2016074604 A1 WO2016074604 A1 WO 2016074604A1
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WO
WIPO (PCT)
Prior art keywords
ozone
air
bag body
blower fan
supply device
Prior art date
Application number
PCT/CN2015/094161
Other languages
English (en)
French (fr)
Inventor
山内智博
中本重阳
鈴木肇
谷越修
永井孝之
佐野正和
大西胜司
福井慎二
松崎泰弘
Original Assignee
海尔亚洲株式会社
青岛海尔洗衣机有限公司
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 海尔亚洲株式会社, 青岛海尔洗衣机有限公司 filed Critical 海尔亚洲株式会社
Publication of WO2016074604A1 publication Critical patent/WO2016074604A1/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
    • D06F57/00Supporting means, other than simple clothes-lines, for linen or garments to be dried or aired 
    • 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

Definitions

  • the present invention relates to a laundry treating apparatus that performs a treatment such as deodorization on clothes.
  • a garment refreshing device comprising a storage that can hang clothes on a suspension bar for storage, and circulates the high-temperature and high-humidity air in the storage, and introduces circulating air that adsorbs the odor of the clothes into the ozone.
  • the deodorizer is used to deodorize the laundry (see Patent Document 1).
  • Patent Document 1 Japanese Patent Publication No. 04-327900
  • the above-described clothes refreshing device is provided with a storage, the main body of the device is likely to be excessively large. Therefore, in order to provide the above-described clothes refreshing device, a large installation space is required.
  • the present invention has been made in view of the above problems, and an object thereof is to provide a laundry treating apparatus that can be easily installed in a home without requiring a large installation space.
  • a laundry treating apparatus includes a bag body that stores laundry and an ozone supply device that supplies ozone-containing air into the bag body.
  • the laundry treating apparatus of the present embodiment may be configured to further include a bag hanger for hanging the upper portion of the bag body so that the bag body can be hung above the ozone providing device; and the rack holding And a garment hanger for holding the laundry in the bag body to be disposed under the hanger for the bag.
  • the ozone supply device may be configured to include a mounting portion for mounting the bag hanger.
  • a configuration may be adopted in which a lower portion and an upper portion of the bag body suspended above the ozone providing device are respectively provided with the ozone provided by the ozone supplying device. Air inlet and exit.
  • the air containing ozone is easily distributed to the inside of the laundry, the outer side and the inner side of the laundry can be deodorized without any omission.
  • the ozone providing device may adopt a structure including a discharge port that discharges ozone-containing air supplied to the bag body, an ozone generator, a blower fan, and an air supply unit An ozone generator; a vent pipe for guiding air containing ozone generated by the ozone generator to the discharge port; and a control portion for controlling the ozone generator and the blower fan.
  • the air in which the ozone generated by the ozone generator is mixed can be discharged from the discharge port and introduced into the bag body to deodorize the clothes in the bag body.
  • vent pipe may have a structure having a serpentine shape.
  • the ozone supply device may be configured to include an ozone removing portion that removes ozone contained in the air taken in by the blower fan.
  • the laundry treating apparatus may be configured to include an introduction pipe extending from the bag body and detachably connected to the discharge port of the ozone providing device, and containing the same
  • the air of the ozone discharged from the ozone supply device is directed to the inside of the bag.
  • the ozone supply device may be configured to include a catheter detecting portion that detects whether or not the introduction tube has been connected to the discharge port.
  • the control unit is based on the detection knot detected by the catheter detecting unit And controlling at least one of the ozone generator and the blower fan.
  • the ozone supply device may be configured to include at least one of the detection portions: a temperature detecting portion that detects the temperature of the air taken in by the blower fan, and a humidity detecting portion that detects The humidity of the air taken in by the blower fan; the intake air amount detecting unit detects the intake air amount of the air supplied to the blower fan; and the ozone concentration detecting unit detects the ozone in the air discharged from the exhaust port concentration.
  • the control unit adjusts an output of at least one of the ozone generator and the blower fan based on a detection result detected by the at least one detecting unit.
  • the ozone supply device may have a structure including a housing portion that houses the ozone generator, an opening portion that is provided in the housing portion, and a cover that closes the opening portion. And a cover detecting unit that detects whether the cover has closed the opening.
  • the control unit operates the ozone generator when the cover detecting unit detects that the cover has closed the opening.
  • a configuration may be adopted in which an introduction pipe is connected to the bag body and the ozone providing device, and air containing ozone discharged from the ozone supply device is guided to the air.
  • the bag body and the aroma providing portion are detachably attached to the introduction tube so that the air supplied to the bag body contains an aromatic component.
  • the ozone supply device performs an operation of causing the discharged air to contain no ozone in addition to the operation of containing ozone in the discharged air.
  • the ozone supply device for supplying ozone-containing air can be used to scent the laundry, and the laundry treatment device can be multi-functionalized.
  • FIG. 1 is a view showing a configuration of a laundry deodorizing device according to an embodiment.
  • FIG. 2 is a side view showing an introduction pipe attached to a bag body according to an embodiment.
  • FIG. 3 is a view showing a configuration of a bag hanger according to an embodiment.
  • FIG. 4 is a view showing a configuration of a pylon holding portion according to the embodiment.
  • FIG. 5 is a view showing a configuration of an aroma providing unit according to the embodiment.
  • FIG. 6 is a view showing a configuration of an ozone supply device according to an embodiment.
  • FIG. 7 is a view showing a configuration of an ozone supply device according to an embodiment.
  • FIG. 8 is a view showing a configuration of an ozone providing device according to an embodiment.
  • Fig. 9 is an enlarged cross-sectional view showing a periphery of an insertion opening according to an embodiment.
  • FIG. 10 is a view for explaining a configuration of an opening portion and a pipe cover of the vent pipe according to the embodiment.
  • FIG. 11 is a view for explaining a configuration of an opening portion and a pipe cover of the vent pipe according to the embodiment.
  • FIG. 12 is a block diagram showing a configuration of an ozone providing device according to an embodiment.
  • FIG. 13 is a flowchart showing a control process of the control unit in the deodorizing operation according to the embodiment.
  • FIG. 14 is a flowchart showing a control process of the control unit during the incense operation according to the embodiment.
  • FIG. 15 is a view for explaining the laundry deodorizing apparatus according to Modification 1.
  • FIG. 16 is a view for explaining the laundry deodorizing apparatus according to Modification 2.
  • FIG. 17 is a view for explaining the laundry deodorizing apparatus according to Modification 3.
  • FIG. 18 is a view for explaining the laundry deodorizing apparatus according to Modification 4.
  • FIG. 19 is a view for explaining the laundry deodorizing apparatus according to Modification 5.
  • FIG. 20 is a view for explaining the laundry deodorizing device according to the sixth modification.
  • 21 is a view for explaining the laundry deodorizing device according to Modification 7.
  • 10 bag body; 11: inlet; 12: outlet; 20: ozone supply device; 30: introduction tube; 40: bag hanger; 50: clothes hanger; 60: hanger holder; 90: aroma supply unit (aroma provided Part: 113: mounting portion; 115: discharge port; 140: catheter detecting portion; 150: ozone concentration detecting portion; 300: vent pipe; 310: pipe main body (accommodating portion); 313: opening portion; 320: tube cap ( Cover: 330: cover detection unit; 400: ozone generator; 500: blower fan; 630: activated carbon filter (ozone removal unit); 640: temperature detection unit; 650: humidity detection unit; 660: inspiratory volume detection Ministry; 710: Control Department
  • FIG. 1 is a view showing the configuration of the laundry deodorizing device 1.
  • Fig. 1(a) is a perspective view of the laundry deodorizing device 1
  • Fig. 1(b) is a perspective view of the laundry deodorizing device 1 in a state in which the bag body 10 and the introduction tube 30 are omitted.
  • a laundry deodorizing apparatus 1 includes a bag body 10, an ozone supply device 20, an introduction tube 30, a bag hanger 40, a clothes hanger 50, a hanger holding portion 60, a support 70, a pedestal 80, and an aroma.
  • a unit 90 is provided.
  • the bag body 10 houses clothes.
  • the bag body 10 is made of a material such as polyester and has almost no gas permeability.
  • the upper and lower dimensions of the bag body 10 are set to accommodate the size of a long-length garment such as a long shirt or a long coat.
  • the front and rear dimensions of the bag body 10 are set to a size capable of accommodating one piece of clothing.
  • the upper and lower dimensions of the bag body 10 may be set to a size in which the length of the long clothes cannot be accommodated, and the front and rear dimensions may be set to a size that can accommodate two or three pieces of the clothes in a front-rear arrangement.
  • the bag body 10 is provided with an air inlet 11 at the lower portion and an air outlet 12 at the upper portion. Further, on the front surface of the bag body 10, a clothes insertion opening 14 that is opened and closed by a slide fastener 13 that extends vertically is provided.
  • the ozone supply device 20 performs a deodorizing operation and a scenting operation.
  • the ozone supply device 20 can supply ozone-containing air to the bag body 10 by performing an operation of containing ozone in the discharged air during the deodorizing operation. Further, when the ozone supply device 20 performs the scenting operation, the ozone-free air can be supplied to the bag body 10 by performing an operation that does not contain ozone in the discharged air.
  • the detailed structure of the ozone supply device 20 will be described later.
  • the introduction pipe 30 is coupled to the bag body 10 and the ozone supply device 20, and guides the air discharged from the ozone supply device 20 into the bag body 10.
  • the ozone-containing air is guided into the bag body 10
  • the scenting operation is performed, the ozone-free air is guided into the bag body 10.
  • FIG. 2 is a side view of the introduction tube 30 in a state of being attached to the bag body 10.
  • the upper end of the introduction tube 30 It is fixedly connected to the inlet 11 of the bag body 10.
  • a connection portion 31 is provided at a lower end portion of the introduction pipe 30.
  • the connecting portion 31 is detachably attached to the insertion opening portion 114 of the ozone providing device 20.
  • a protruding piece 32 that protrudes downward is formed on the bottom surface of the connecting portion 31.
  • FIG. 3 is a view showing the structure of the bag hanger 40.
  • Fig. 3(a) is a perspective view
  • Fig. 3(b) is a rear view.
  • the bag hanger 40 is formed into a horizontally long plate shape which is slightly curved into an arc shape.
  • a recessed portion 41 is formed on the upper surface of the bag hanger 40, and a plurality of vent holes 42 are formed in the recessed portion 41.
  • a cylindrical projection 43 and a rib 44 extending outward from the projection 43 are formed at a substantially central portion.
  • the clothes hanger 50 is constituted by a hanger main body 51 for hanging clothes and a hook portion 52 provided at an upper portion of the hanger main body 51.
  • the pylon holding portion 60 is attached to the upper end portion of the stay 70, holds the bag cradle 40 on which the bag body 10 is hung, and holds the laundry hanging under the bag cradle 40 slightly away from the bag cradle 40.
  • the hanger 50 is composed of two rods 71 and is supported by the pedestal 80 in an upright state.
  • the pillar 70 may be composed of one or three or more rods without the two rods 71.
  • FIG. 4 is a view showing a configuration of the pylon holding portion 60.
  • 4(a) is a perspective view
  • FIG. 4(b) is a bottom view
  • FIG. 4(c) is a longitudinal cross-sectional view as seen from the front side.
  • the pylon holding portion 60 includes a box-shaped main body portion 61 that is opened downward, and a first holding portion 62 and a second holding portion 63 that extend forward from the main body portion 61. Inside the main body portion 61, a cylindrical first insertion opening portion 64 having a lower opening is formed on the left and right sides. The upper end portion of the rod 71 is inserted into the first insertion opening portion 64.
  • the first holding portion 62 holds the bag hanger 40 by its upper surface 62a.
  • a cylindrical second insertion opening portion 65 having an upper opening is formed on the upper surface 62a.
  • a slit portion 65a is formed in the rear portion. The protrusion portion 43 and the rib 44 of the bag hanger 40 are inserted into the second insertion port portion 65 and the slit portion 65a, respectively. Thereby, the bag hanger 40 is fixed to the upper surface 62a of the first holding portion 62.
  • the second holding portion 63 is formed in front of the first holding portion 62 and has a shape of a hook that is opened on the upper side.
  • the hook portion 52 of the clothes hanger 50 is hooked to the second holding portion 63 from above (see FIG. 1(b)).
  • the pedestal 80 is a flat plate having a predetermined shape, for example, a quadrangular shape.
  • An ozone supply device 20 is placed on the pedestal 80.
  • the aroma providing unit 90 is used when performing the scenting operation by the ozone providing device 20.
  • the aroma supply unit 90 is detachably attached to the introduction tube 30, so that the air supplied to the bag body 10 contains an aromatic component.
  • the aroma supply unit 90 corresponds to the aroma supply unit of the present invention.
  • FIG. 5 is a view showing the configuration of the aroma providing unit 90.
  • Fig. 5 (a) is a plan view of the aroma supply unit 90 in a state in which the upper cover 92 is attached
  • Fig. 5 (b) is a plan view of the aroma supply unit 90 in a state in which the upper cover 92 is removed
  • Fig. 5 (c) is a longitudinal sectional view of the aroma supply unit 90 in a state of being attached to the introduction tube 30.
  • the aroma supply unit 90 includes a substantially cylindrical storage case 91 having an open upper surface, a substantially disk-shaped upper cover 92 that closes the upper surface of the storage case 91, and an aromatic body 93 disposed in the storage case 91.
  • the storage box 91 is composed of a housing portion 94 and a connecting portion 95.
  • a mounting portion 96 on which the aromatic body 93 is placed is provided at the bottom portion of the accommodating portion 94, and a plurality of vent holes 97 are formed around the placing portion 96.
  • the connecting portion 95 is provided at a lower portion of the housing portion 94 and is fitted into the upper end portion of the introduction tube 30.
  • the upper cover 92 has a shape in which the central portion 92a is slightly elongated, and a plurality of slit-shaped vent holes 98 are formed in the central portion 92a.
  • the aromatic body 93 is formed of a material such as a porous material that can be immersed in a liquid aromatic agent.
  • FIG. 6 to 8 are views showing the configuration of the ozone providing device 20.
  • Fig. 6 (a) is a perspective view of the ozone supply device 20 in a state where the bag hanger 40 is not attached.
  • Fig. 6(b) is a perspective view of the ozone supply device 20 in a state in which the bag hanger 40 is attached.
  • 7(a), (b), and (c) are a left side view, a top view, and a rear view, respectively, of the ozone providing device 20.
  • Fig. 8 (a) is a longitudinal sectional view of the ozone supply device 20 as seen from the back side.
  • FIG. 8(b) is a perspective view of the ozone generator 400.
  • Fig. 8 (c) is a transverse cross-sectional view of a main portion of the ozone providing device 20 as seen from the upper surface side.
  • the ozone supply device 20 includes a casing 100, an operation portion 200, a vent pipe 300, an ozone generator 400, a blower fan 500, a getter unit 600, and a control unit 700.
  • the housing 100 includes a case main body 110, a front surface cover 120, and a suction hood 130.
  • the box main body 110 has a horizontally long cubic shape in which the upper surface is gradually convexly curved.
  • a front surface opening portion 111 is formed on the front surface of the tank main body 110, and the front surface opening portion 111 is openably and closably closed by the front surface cover 120.
  • an intake port 112 is formed on the rear surface of the tank main body 110, and the intake port 112 is openably and closably closed by the suction hood 130.
  • On the suction hood 130 a plurality of suction holes 131 are formed.
  • a shape that is recessed to have the same shape as that of the bag hanger 40 is formed on the upper surface of the box main body 110.
  • Mounting portion 113 As shown in FIG. 6(b), when the laundry deodorizing device 1 is not used, the bag hanger 40 that can be removed from the bag body 10 can be attached to the mounting portion 113. Thereby, since the storage place of the bag hanger 40 removed from the bag body 10 is secured, it is possible to prevent the bag hanger 40 from being lost when not in use.
  • an insertion opening portion 114 that is recessed in a circular shape is provided.
  • a discharge port 115 having a lattice-shaped rebar 116 is formed in the insertion port portion 114, and a detection hole 117 is formed beside the discharge port 115.
  • an operation unit 200 is provided on the left side surface of the casing 100 .
  • the operation unit 200 includes a power button 210, a deodorizing button 220, and a fragrance button 230.
  • the power button 210 is a button for turning on and off the power of the laundry deodorizing device 1.
  • the deodorizing button 220 is a button for starting the deodorizing operation.
  • the scent button 230 is a button for starting the scenting operation.
  • the vent pipe 300 includes a pipe main body 310 and a pipe cover 320.
  • the introduction port 311 of the pipe main body 310 is connected to the discharge port 520 of the blower fan 500, and the outlet port 312 is connected to the discharge port 115.
  • An ozone generator 400 is disposed in the vicinity of the introduction port 311 in the pipe main body 310.
  • the pipe main body 310 has a shape that is curved so as to extend to the left from the introduction port 311 and that is folded back to the right side at a position where the ozone generator 400 is disposed, and then extends upward to the outlet 312.
  • the portion of the tube main body 310 that constitutes the downstream side of the ozone generator 400 is formed in a shape close to the S shape.
  • the portion of the ozone generator 400 in which the pipe main body 310 is disposed corresponds to the accommodating portion of the present invention.
  • the ozone generator 400 is a discharge type ozone generator. As shown in FIG. 8(b), in the ozone generator 400, a rod-shaped pair of electrodes 420 are disposed in the electrode arrangement portion 410 through which air passes. The ozone generator 400 generates a discharge such as a corona discharge or a silent discharge between the pair of electrodes 420, and generates ozone by the air passing between the pair of electrodes 420.
  • the blower fan 500 is a centrifugal fan, and has a suction port 510 on the side surface and a discharge port 520 on the circumferential surface.
  • the suction port 510 is opposed to the suction port 112 on the rear surface of the casing 100.
  • the blower fan 500 takes air from the suction port 510 and sends the acquired air to the ozone generator 400 in the vent pipe 300.
  • the blower fan 500 can also use a fan other than the centrifugal fan, such as an axial fan.
  • a suction unit 600 is provided between the intake port 112 of the casing 100 and the suction port 510 of the blower fan 500.
  • the getter unit 600 includes an intake pipe 610, a dust filter 620, and an activated carbon filter 630.
  • the inside of the intake pipe 610 is divided into the first filter on the side of the intake port 11 by the lattice-shaped partition plate 611.
  • the dust filter 620 is housed in the first filter housing portion 612
  • the activated carbon filter 630 is housed in the second filter housing portion 613.
  • the dust filter 620 removes dust and the like contained in the air taken from the intake port 112.
  • the activated carbon filter 630 removes ozone contained in the air passing through the dust filter 620.
  • the activated carbon filter 630 corresponds to the ozone removing unit of the present invention.
  • the intake pipe 610 is provided with a connection portion 614 that is connected to the suction port 510 of the blower fan 500, and the connection portion 614 and the second filter accommodation portion 613 are connected by a communication hole 615.
  • a temperature detecting portion 640 that detects the temperature of the air taken by the blower fan 500
  • a humidity detecting portion 650 that detects the humidity of the air taken by the blower fan 500 are disposed.
  • FIG. 9 is an enlarged cross-sectional view showing the periphery of the insertion opening portion 114.
  • Fig. 9(a) shows a state in which the introduction tube 30 is not attached to the insertion port portion 114
  • Fig. 9(b) shows a state in which the introduction tube 30 is attached to the insertion port portion 114.
  • An insertion opening 117a is formed on a side surface of the detection hole 117, and a duct detecting portion 140 is disposed outside the insertion opening 117a.
  • the catheter detecting unit 140 is, for example, a micro switch, and has a switch unit 141 and a rod portion 142 for pressing the switch unit 141. As shown in FIG. 9(a), when the introduction tube 30 is not attached to the insertion opening portion 114, the switch portion 141 and the rod portion 142 protrude into the detection hole 117 through the insertion opening 117a. As shown in Fig.
  • FIG. 10 and FIG. 11 are views for explaining the configuration of the opening portion 313 and the tube cover 320 of the vent pipe 300.
  • Fig. 10 (a) is a front view of the ozone supply device 20 in a state where the front surface cover 120 is removed.
  • (b) of FIG. 10 is a transverse cross-sectional view showing the periphery of the opening 313 in a state where the opening 313 is closed by the tube cover 320.
  • 11(a) and (b) are a front view and a right side view, respectively, of the tube cover 320.
  • (c) of FIG. 11 is a front view of the periphery of the opening 313 in a state in which the front surface cover 120 and the tube cover 320 are removed.
  • An opening portion 313 is formed at a position corresponding to the ozone generator 400 on the front surface of the pipe main body 310. Further, on the front surface of the pipe main body 310, the extending portion 314 which is fitted inside the curved portion of the pipe main body 310 is formed integrally with the pipe main body 310. A square frame portion 315 is formed around the opening portion 313 on the front surface of the pipe main body 310 including the extension arranging portion 314, and the opening portion 313 is closed by a pipe cover 320 attached to the frame portion 315. It should be noted that in FIG. 10(a), the tube cover 320 is colored to see the tube cover 320.
  • the tube cover 320 includes a lid body 321 that closes the opening portion 313 , a mounting portion 322 that is provided above the lid body 321 , and a handle portion 323 that is provided above the mounting portion 322 .
  • a screw hole 324 through which the mounting screw 340 passes and a protruding portion 325 that protrudes rearward are formed.
  • a mounting boss 316 having a mounting hole 316a and an insertion hole 317 are formed at an upper portion in the frame portion 315.
  • a cover detecting portion 330 is disposed behind the insertion hole 317.
  • the lid detecting unit 330 is, for example, a micro switch and has a switch unit 331.
  • the ozone generator 400 is disposed in the tube main body 310 such that the pair of electrodes 420 extend toward the opening 313 side and the longitudinal direction of the pair of electrodes 420 is vertically.
  • the pair of electrodes 420 of the ozone generator 400 are exposed to the outside through the opening portion 313.
  • the pair of electrodes 420 generate nitrate as the ozone is formed, and the nitrate adheres to the electrode 420.
  • the efficiency of ozone generation is lowered.
  • the user can remove the nitrate adhering to the electrode 420 by wiping the exposed electrode 420 or the like with a brush.
  • the ozone generator 400 may be disposed in the tube main body 310 such that the longitudinal direction of the pair of electrodes 420 is in the left-right direction.
  • the tube cover 320 is fixed to the mounting protrusion 316 by a mounting screw 340.
  • the switch portion 331 of the cover detecting portion 330 is pressed by the protruding portion 325 that penetrates the insertion hole 317.
  • the cover detecting unit 330 detects that the opening 313 is closed by the tube cover 320.
  • FIG. 12 is a block diagram showing the configuration of the ozone providing device 20.
  • the control unit 700 includes a control unit 710 and a storage unit 720.
  • the storage unit 720 includes an EEPROM, a RAM, and the like.
  • a program for executing the deodorizing operation and the incense operation is stored. Further, in the storage unit 720, various parameters and various control flags for execution of these programs are stored.
  • the operation unit 200 outputs an input signal corresponding to a button operated by the user among the power button 210, the deodorizing button 220, and the scent button 230 to the control unit 710.
  • the temperature detecting unit 640 outputs a detection signal corresponding to the detected temperature to the control unit 710.
  • the humidity detecting unit 650 outputs a detection signal corresponding to the detected humidity to the control unit 710.
  • the catheter detecting unit 140 outputs a detection signal corresponding to whether or not the introduction tube 30 is attached to the insertion port portion 114 to the control unit 710.
  • the cover detecting unit 330 outputs a detection signal corresponding to whether or not the opening 313 is blocked by the tube cover 320 to the control unit 710.
  • the control unit 710 controls the ozone generator 400 and the transmission according to the program stored in the storage unit 720 based on the respective signals from the operation unit 200, the temperature detection unit 640, the humidity detection unit 650, the catheter detection unit 140, and the cover detection unit 330. Fan 500 and so on.
  • the laundry deodorizing apparatus 1 of the present embodiment can perform two kinds of operations: a deodorizing operation for deodorizing the laundry and a flavoring operation for adding the fragrance to the laundry.
  • the user When the deodorizing operation is performed, the user stores the clothes hung on the clothes hanger 50 in the bag body 10 suspended from the rack holding portion 60 by the hanging rack 40. At this time, as shown in FIG. 1(b), the user hooks the hook portion 52 of the clothes hanger 50 to the second holding portion 63 of the hanger holding portion 60 in the bag body 10. Thus, in the bag body 10, the clothes are hung by the hanger holding portion 60.
  • the user attaches the introduction tube 30 attached to the lower portion of the bag body 10 to the insertion opening portion 114 of the ozone providing device 20, the user presses the deodorizing button 220 of the operation portion 200. Thereby, the deodorizing operation is started, and the blower fan 500 and the ozone generator 400 operate.
  • the intake pipe 610 takes outside air from the intake port 112, and removes dust and ozone contained in the air through the dust filter 620 and the activated carbon filter 630 in the intake pipe 610.
  • the air from which dust and ozone have been removed is sent into the vent pipe 300 through the blower fan 500 (see an arrow in Fig. 8(c)).
  • the air generated by the ozone generator 400 is mixed into the air flowing through the snorkel 300.
  • the ozone-containing air passes through the inside of the vent pipe 300 to the discharge port 115, and is discharged from the discharge port 115 (see an arrow in Fig. 8(a)).
  • the vent pipe 300 is serpentine on the downstream side of the ozone generator 400, and the flowing air is turbulent due to the serpentine shape. Thereby, since the air and ozone are easily mixed, the ozone concentration in the air is uniform. Further, since the rectifying rib 116 is rectified when being discharged from the discharge port 115, the air having a uniform ozone concentration is smoothly discharged from the discharge port 115 while maintaining a uniform concentration.
  • the ozone-containing air discharged from the ozone supply device 20 is introduced into the bag body 10 through the introduction pipe 30.
  • the ozone-containing air introduced into the bag body 10 flows in the bag body 10 from the bottom to the side while coming into contact with the clothes.
  • the clothes are deodorized by the deodorizing action of ozone contained in the air.
  • the lower portion of the laundry is wide open, since the air containing ozone flows from the bottom to the top in the bag body 10, it is easily distributed to the inside of the laundry. Thereby, the outer side and the inner side of the laundry can be deodorized without any omission.
  • a gap can be secured between the upper portion of the bag body 10 and the shoulder of the clothes.
  • the shoulders of the clothes are also accommodated. It is easy to distribute, so it can improve the deodorizing effect.
  • the air whose ozone concentration is lowered due to the deodorization of the laundry is discharged from the outlet 12 of the upper portion of the bag body 10.
  • the outlet 12 is partially blocked by the bag hanger 40.
  • the bag hanger 40 is provided with the recessed portion 41 and the vent hole 42, and the portion through which the air is blocked by the bag pylon 40 not having the outlet 12 is discharged, and is detached from the vent hole 42 and passed through the recess.
  • the portion 41 reaches the outlet 12 and is discharged from the outlet 12. Thereby, it is possible to suppress the obstruction of the exhaust by the bag hanger 40.
  • the laundry deodorizing device 1 is configured such that the amount of exhaust gas discharged from the bag body 10 is smaller than the amount of intake air absorbed by the bag body 10. Thereby, since the pressure of the air in the bag body 10 is increased, and the ozone is easily permeated into the laundry by the increased pressure, the deodorizing effect of the laundry is improved.
  • FIG. 13 is a flowchart showing a control process of the control unit 710 in the deodorizing operation.
  • the control operation in the deodorizing operation will be described based on the flowchart of Fig. 13 .
  • control unit 710 determines whether or not the introduction tube 30 is attached to the insertion port portion 114 based on the detection signal from the catheter detecting unit 140 (S101). Moreover, the control unit 710 determines whether or not the cap 320 has closed the opening 313 of the vent pipe 300 based on the detection signal from the cap detecting unit 330 (S102).
  • the control unit 710 activates the blower fan 500 and the ozone generator 400 (S103).
  • the ozone-providing device 20 supplies ozone-containing air into the bag body 10 to deodorize the laundry contained in the bag body 10.
  • the control unit 710 detects the temperature and humidity of the air sucked into the blower fan 500 by the temperature detecting unit 640 and the humidity detecting unit 650 (S104). Then, the control section 710 adjusts the output of the ozone generator 400 based on the detected temperature and humidity so that the concentration of ozone in the air supplied to the bag body 10 is kept substantially constant (S105). In the case where the output of the ozone generator 400 is the same, the higher the temperature of the air, the smaller the amount of ozone generated, and the higher the humidity of the air, the less the amount of ozone generated. Therefore, the higher the temperature and humidity of the air, the larger the control unit 710 controls the output of the ozone generator 400.
  • the control unit 710 constantly monitors the detachment of the introduction pipe 30 and the opening of the pipe cover 320 (S107, S108), and repeats the detection of temperature and humidity (S104). And adjustment of the output of the ozone generator 400 (S105). Then, when the operation completion time has elapsed (S106: YES), the control unit 710 causes the blower fan 500 and the ozone generator 400. The stop is stopped (S109), and the deodorizing operation is ended.
  • the control portion 710 when the introduction pipe 30 is not attached to the insertion port portion 114 at the start of the deodorizing operation (S101: NO), or the opening portion 313 is not closed by the pipe cover 320 (S102: NO), the control portion 710 will not perform deodorization operation. Further, in the deodorizing operation, when it is detected that the introduction pipe 30 is detached or the cap 320 is opened (S107: YES, S108: YES), the control unit 710 causes the blower fan 500 to be made even if the entire operation completion time has not elapsed. The ozone generator 400 is stopped (S109), and the deodorizing operation is ended.
  • step S105 the output of the ozone generator 400 is adjusted.
  • the adjustment may be performed or the output of the blower fan 500 may be adjusted to adjust the air volume.
  • the amount of ozone generated by the ozone generator 400 is the same, the more the amount of wind, the lower the ozone concentration. Therefore, the higher the temperature and the humidity of the air, the smaller the amount of ozone generated, and the smaller the amount of air is, the smaller the amount of air is adjusted.
  • the concentration of ozone in the air supplied into the bag body 10 can be set to a low concentration, for example, about 0.05 ppm or less, and the operation time can be set to about 6 to 8 hours. After the user goes home from the company at night, the deodorizing operation of the clothes that have passed through can complete the deodorization of the clothes before the next morning.
  • the user stores the clothes in the bag body 10 suspended by the pylon holding portion 60, and as shown in FIG. 5(c), in the bag body 10, at the introduction tube 30.
  • the aroma supply unit 90 provided with the fragrance 93 is attached to the upper end portion.
  • the user presses the fragrance button 230 of the operation unit 200 in a state where the introduction tube 30 is attached to the insertion opening portion 114 of the ozone supply device 20. Thereby, the scent operation starts, and the blower fan 500 operates.
  • the ozone-free air is discharged from the ozone supply device 20, and the discharged air passes through the introduction pipe 30.
  • the air discharged from the introduction pipe 30 passes through the accommodating portion 94 of the fragrance providing unit 90.
  • the aromatic component contained in the aromatic body 93 is volatilized by the air passing through the accommodating portion 94, and is mixed into the air.
  • the air containing the aromatic component is introduced into the bag body 10 through the vent hole 98.
  • the air containing the aromatic component introduced into the bag body 10 flows while being in contact with the clothes from the bottom to the inside of the bag body 10.
  • the aromatic ingredients contained in the air adhere to the clothes and add fragrance to the clothes.
  • FIG. 14 is a flowchart showing a control process of the control unit 710 during the incense operation.
  • the control operation in the incense operation will be described based on the flowchart of Fig. 14 .
  • the control unit 710 determines whether or not the introduction tube 30 is attached to the insertion port portion 114 (S201), and whether the tube cover 320 closes the opening portion 313 of the vent pipe 300 (S202).
  • the control unit 710 activates the blower fan 500 (S203).
  • the air containing the fragrance component is supplied from the ozone supply device 20 into the bag body 10, and the clothes accommodated in the bag body 10 are scented.
  • the control unit 710 constantly monitors the detachment of the introduction pipe 30 and the opening of the pipe cover 320 (S205, S206), and continues the operation of the blower fan 500.
  • the control unit 710 stops the blower fan 500 (S207), and ends the incense operation.
  • the control portion 710 is started. It will not be used to add incense. Further, in the scenting operation, when it is detected that the introduction pipe 30 is detached or the cap 320 is opened (S205: YES, S206: YES), the control unit 710 stops the blower fan 500 even if the operation completion time has not elapsed. (S207), the incense operation is ended.
  • the laundry deodorizing device 1 supplies the ozone-containing air and the air containing the aromatic component to the bag body 10 accommodating the laundry from the ozone supply device 20, the laundry is deodorized and scented, so that a large installation space is not required. It can be easily set up in the home.
  • the bag cradle 40 in which the bag body 10 is hung and the clothes hanger 50 on which the clothes are hung are independently held, whereby the upper portion of the bag body 10 and the shoulder of the clothes are provided.
  • the gap is ensured between the parts, so that ozone is easily distributed to the shoulders of the clothes, and the deodorizing effect can be improved.
  • the ozone-containing air supplied to the ozone providing device 20 by the laundry deodorizing device 1 flows from the bottom to the top in the bag body 10, the ozone-containing air easily spreads over the inside of the laundry. Thereby, the outer side and the inner side of the laundry can be deodorized without any omission.
  • vent pipe 300 is serpentine on the downstream side of the ozone generator 400, it is easy to generate turbulent flow in the flowing air. Thereby, since air and ozone are easily mixed, the concentration of ozone in the air supplied from the ozone supply device 20 into the bag body 10 can be made uniform.
  • the opening portion 313 is provided in the vent pipe 300 at the position where the ozone generator 400 is disposed, the user can perform maintenance of the ozone generator 400 that removes nitrate or the like adhering to the electrode 420.
  • the lid detecting unit 330 does not detect that the cap 320 closes the opening 313, the ozone generator 400 and the blower fan 500 do not operate, and thus the deodorizing operation can be prevented in a state where the opening 313 is opened. And add fragrance to run.
  • the laundry deodorizing device 1 is configured to have an aroma supply unit 90 that can be attached to the introduction pipe 30, and that can supply ozone-free air from the ozone supply device 20. Thereby, the ozone supply device 20 for supplying ozone-containing air can perform the fragrance of the laundry, and the multifunctionalization of the laundry deodorizing device 1 can be realized.
  • FIG. 15 is a view for explaining the laundry deodorizing device 1 of Modification 1.
  • the temperature detecting unit 640 and the humidity detecting unit 650 detect the temperature and humidity of the air taken in by the blower fan 500, and adjust the output of the ozone generator 400 based on the detected temperature and humidity.
  • the degree detecting unit 640 and the humidity detecting unit 650 are provided with an intake amount detecting unit 660 that detects the amount of intake of the air taken in by the blower fan 500.
  • the processing of steps S104 and S105 is replaced with the processing of steps S111 and S112. That is, the control unit 710 detects the intake air amount of the air taken in by the blower fan 500 (S111), and adjusts the output of the ozone generator 400 based on the detected intake air amount (S112). In the case where the output of the ozone generator 400 is the same, the more the amount of inhalation, the lower the ozone concentration. Therefore, the more the intake air amount, the larger the control unit 710 controls the output of the ozone generator 400.
  • the temperature and/or humidity may also be detected while detecting the amount of inhalation, and the output of the oxygen generator 400 may be adjusted according to the detected amount of inhalation and temperature and/or humidity.
  • the output of the ozone generator 400 may not be adjusted, or the output of the blower fan 500 may be adjusted in addition to the output of the ozone generator 400.
  • FIG. 16 is a view for explaining the laundry deodorizing device 1 of Modification 2.
  • the ozone concentration detecting unit 150 that detects the ozone concentration may be disposed in the discharge port 115.
  • the processing of steps S104 and S105 is replaced with the processing of steps S121 and S122. That is, the control unit 710 detects the ozone concentration in the air discharged from the discharge port 115 (S121), and adjusts the output of the ozone generator 400 based on the detected ozone concentration so that the ozone concentration is substantially constant (S122).
  • the output of the ozone generator 400 may not be adjusted, or the output of the blower fan 500 may be adjusted in addition to the output of the ozone generator 400.
  • FIG. 17 is a view for explaining the laundry deodorizing apparatus 1 according to the third modification, and is a flowchart showing a control process of the control unit 710 in the deodorizing operation.
  • the output of the ozone generator 400 is adjusted depending on whether or not the introduction pipe 30 is attached to the insertion port portion 114.
  • the control unit 710 activates the blower fan 500 and the ozone generator 400 (S302).
  • control unit 710 detects whether or not the introduction tube 30 is attached to the insertion port portion 114 by the catheter detecting unit 140 (S303). Further, the control unit 710 detects the temperature and humidity of the air taken in by the blower fan 500 by the temperature detecting unit 640 and the humidity detecting unit 650 (S304). Then, the control unit 710 adjusts the output of the ozone generator 400 depending on whether or not the introduction pipe 30, the temperature, and the humidity are attached (S305).
  • the introduction tube 30 is attached to the insertion port portion 114.
  • the clothes, the shoes, and the like are disposed above the ozone supply device 20 without using the bag body 10, and the air containing the ozone from the ozone supply device 20 is directly deodorized by contacting with clothes, shoes, or the like.
  • the introduction tube 30 is not attached.
  • the target ozone concentration is set to be lower than the case where the introduction tube 30 is attached.
  • the control unit 710 adjusts the output of the ozone generator 400 in accordance with the temperature and humidity so that the ozone concentration approaches a set low ozone concentration. In the case where the introduction tube 30 is not installed, the output of the ozone generator 400 is low with respect to the same temperature and humidity.
  • the control unit 710 constantly monitors the opening of the tube cover 320 (S307), and repeatedly detects whether or not the introduction tube 30 (S303), temperature and humidity are detected (S304). And adjusting the output of the ozone generator 400 (S305).
  • the control unit 710 stops the blower fan 500 and the ozone generator 400 (S308), and ends the deodorizing operation.
  • the air containing ozone from the ozone supply device 20 is directly brought into contact with clothes or the like without using the bag body 10, thereby deodorizing clothes and the like.
  • step S305 the output of the ozone generator 400 may not be adjusted, or the output of the blower fan 500 may be adjusted in addition to the output of the ozone generator 400.
  • FIG. 18 is a view for explaining the laundry deodorizing device 1 of Modification 4.
  • (a) of FIG. 18 is a flowchart showing a control process of the control unit 710 in the scenting operation
  • (b) of FIG. 18 is a view showing a state in which the aroma supply unit 90 is attached to the auxiliary pipe 30A.
  • the blower fan 500 is not operated.
  • the output of the blower fan 500 is adjusted depending on whether or not the introduction pipe 30 is attached to the insertion port portion 114.
  • control unit 710 detects whether or not the introduction tube 30 is attached to the insertion port portion 114 by the catheter detecting unit 140 (S403). Then, the control unit 710 adjusts the output of the blower fan 500 based on the detection of whether or not the introduction pipe 30 is attached (S404).
  • the introduction tube 30 is attached to the insertion mouth portion 114.
  • the bag body 10 is not used, but the clothes, the shoes, and the like are placed above the ozone supply device 20, and the air containing the aroma component from the ozone supply device 20 is directly brought into contact with the clothes, shoes, or the like, thereby performing the process.
  • the insertion port portion 114 does not have the introduction tube 30 attached.
  • the insertion port portion 114 is attached with the auxiliary pipe 30A shown in Fig. 18 (b), and the aroma supply unit 90 is attached to the auxiliary pipe 30A.
  • the structure of the auxiliary pipe 30A is the same as that of the introduction pipe 30 except that it does not have a projecting piece on the lower surface of the connecting portion 31A. Since the auxiliary tube 30A has no protruding piece, even if the auxiliary tube 30A is attached to the insertion opening 114, the introduction detecting unit 140 can detect that the introduction tube 30 is not mounted.
  • the control unit 710 makes the output of the blower fan 500 larger than the case where the introduction pipe 30 is attached. Thereby, the amount of air containing the fragrance component discharged from the fragrance supply unit 90 increases.
  • the control unit 710 constantly monitors the opening of the tube cover 320 (S406), and repeatedly detects whether or not the introduction tube 30 is attached (S403) and adjusts the output of the blower fan 500 ( S404).
  • the control unit 710 stops the blower fan 500 (S407), and ends the scenting operation.
  • the present modification it is possible to achieve the following use in which the air containing the aromatic component from the ozone supply device 20 is directly brought into contact with the clothes or the like without using the bag body 10, and the fragrance of the clothes or the like is performed.
  • 19 is a view for explaining the laundry deodorizing device 1 according to the fifth modification, and is a rear view of the bag hanger 40.
  • the activated carbon filter 630 is disposed in the air intake unit 600, and the discharge from the outlet 12 is not provided in the vicinity of the outlet 12 of the bag body 10. A unit of ozone contained in the air.
  • a unit for removing ozone contained in the air discharged from the outlet 12 is provided in the vicinity of the outlet 12 of the bag body 10.
  • an activated carbon filter 45 is attached as an ozone removal means on the back surface of the bag hanger 40 disposed in the vicinity of the outlet 12 of the bag body 10.
  • ozone in the air discharged from the outlet 12 can be removed by the activated carbon filter 45.
  • FIG. 20 is a view for explaining the laundry deodorizing device 1 of Modification 6.
  • Fig. 20 (a) is a plan view of the aroma supply unit 90A
  • Fig. 20 (b) is a plan view of the aroma supply unit 90A in a state where the upper case 940 is taken away.
  • Fig. 20 (c) is a longitudinal sectional view of the aroma providing unit 90A in a state of being attached to the introduction tube 30.
  • the aroma providing unit 90A shown in Fig. 20 can be used for the laundry deodorizing device 1.
  • the aroma supply unit 90A includes a box-shaped storage box 910 having an elliptical shape in a plan view and an aroma 920 housed in the storage box 910.
  • the storage box 910 includes a lower case 930 with an upper surface open and an upper case 940 with a bottom surface opened.
  • an intake port 931 is formed on one end side in the longitudinal direction, and a plurality of ribs 932 extending in the longitudinal direction are formed beside the intake port 931.
  • a fragrance 920 is placed on the plurality of ribs 932.
  • the bottom surface of the lower case 930 has an inclined surface 933 which becomes higher toward the other end portion on the other end side.
  • a cylindrical connection port 934 is formed on the bottom surface of the lower case 930 so as to surround the intake port 931. The connection port 934 is fitted into the upper end portion of the introduction tube 30.
  • the upper case 940 is attached to the upper surface of the lower case 930.
  • the upper surface of the upper case 940 has an inclined surface 941 that becomes higher toward the other end portion at a position opposed to the intake port 931.
  • an opening portion 942 is formed at a position opposed to the plurality of ribs 932, and the opening portion 942 is covered by the cover portion 943 so as to be openable and closable.
  • the lid portion 943 is rotated about the hinge portion 943a.
  • a plurality of slit-shaped vent holes 944 are formed in the lid portion 943.
  • the aromatic body 920 is formed of a material such as a porous material that can be immersed in a liquid aromatic agent.
  • the user opens the lid portion 943 to set the fragrance 920 from the opening portion 942 into the storage box 910.
  • the aroma supply unit 90A is attached to the introduction pipe 30, and when the scent operation is started, as shown in FIG. 20(c), the air discharged from the introduction pipe 30 is introduced into the storage box 910 from the air intake port 931.
  • the introduced air flows upward along the plurality of ribs 932 to the other end side.
  • the aromatic component contained in the aromatic body 920 is volatilized by the air passing through the aromatic body 920, and is mixed into the air.
  • the air containing the aromatic component is discharged into the bag body 10 through the opening portion 942 and the vent hole 944. It should be noted that air can smoothly flow in the storage box 910 by the two inclined surfaces 933 and 941 provided in the storage box 910.
  • the aroma supply unit 90A of the present modification has a configuration in which the position at which the fragrance 920 is placed and the position of the introduction tube 30 are shifted, even when the area of the intake port 931 is enlarged, when the fragrance 920 is placed in the storage box 910, etc.
  • the fragrance 920 also does not fall into the introduction tube 30.
  • FIG. 21 is a view for explaining the laundry deodorizing device 1 of Modification 7.
  • Fig. 21 (a) is a perspective view of the pylon holding portion 60A
  • Fig. 21 (b) is a view showing a state in which the laundry deodorizing device 1 is installed in the suit cabinet C.
  • the laundry deodorizing device 1 includes the stay 70 and the pedestal 80.
  • the laundry deodorizing device 1 may also adopt a configuration that does not include the stay 70 and the pedestal 80.
  • the laundry deodorizing device 1 of the present modification includes a hanger holding portion 60A instead of the hanger holding portion 60 of the above embodiment.
  • a hook portion 66 is provided in the main body portion 61.
  • the other structure is the same as the hanger holding portion 60.
  • the laundry deodorizing device 1 of the present modification is installed in a place where the bag body 10 and the clothes can be suspended by the rack holding portion 60A, and is provided in the suit cabinet C as shown in, for example, FIG. 21(b). At this time, the hook portion 66 of the hanger holding portion 60A is hung on the hanger C1 of the suit cabinet C.
  • the laundry deodorizing device 1 can adopt a configuration that does not include the dedicated clothes hanger 50. At this time, a general clothes hanger for hanging clothes can be used.
  • the bag body 10 is formed of a material that is almost airtight.
  • a material having high gas permeability such as a fiber having a large mesh, so that air can be discharged from the surface of the bag body 10.
  • the outlet 12 may not be provided, or the small outlet 12 may be provided.
  • the inlet 11 is formed at the center of the lower portion of the bag body 10
  • the outlet 12 is formed at the center of the upper portion of the bag body 10.
  • the inlet 11 and the outlet 12 may also be disposed at positions shifted from the center to the left and right direction. Further, the positions of the inlet 11 and the outlet 12 in the left-right direction may not coincide.
  • the outputs of the ozone generator 400 and the blower fan 500 are adjusted in accordance with the temperature and humidity.
  • the output of the ozone generator 400 and the blower fan 500 may be adjusted according to any of temperature and humidity.
  • the temperature detecting unit 640 and the humidity detecting unit 650 are provided in the air intake unit 600.
  • the temperature detecting unit 640 and the humidity detecting unit 650 may be provided at any position as long as they can detect the temperature and humidity of the air taken in by the blower fan 500.
  • the air detecting unit 640 and the humidity detecting unit 650 may be provided at the back of the casing 100. The location next to the mouth 112.
  • the deodorizing operation is stopped.
  • the deodorizing operation may not be stopped, but the output of the ozone generator 400 may be adjusted so that the ozone concentration is larger than the introduction port 30 in the insertion port portion 114. At the same time as the concentration is low, the deodorization operation is continued.
  • an adjustment button for adjusting the length of the operation time of the deodorizing operation and the scenting operation may be provided in the operation unit 200. In this case, after the adjustment button is pressed, the control unit 710 performs only the deodorizing operation and the scenting operation of the set operation time.
  • the activated carbon filter 630 is used to remove ozone, but a filter having an ozone removing effect other than the activated carbon filter 630, such as a photocatalytic ceramic filter, may be used.

Abstract

本发明提供一种衣物处理装置,不需要大的设置空间就可以轻易地设置于家庭内。衣物除臭装置(1)具备收容衣物的袋体(10)和将含有臭氧的空气提供到袋体(10)内的臭氧提供装置(20)。臭氧提供装置(20)包括:排出口,排出提供给袋体(10)的含有臭氧的空气;臭氧发生器;送风扇,将空气送到臭氧发生器;通气管,将含有由臭氧发生器产生的臭氧的空气导向排出口;以及控制部,控制臭氧发生器以及送风扇。

Description

衣物处理装置 技术领域
本发明涉及对衣物实施除臭等处理的衣物处理装置。
背景技术
以往,已知一种衣物清新装置,具备能够将衣物悬挂在悬杆上进行收纳的收纳库,并通过使高温高湿空气在该收纳库内循环,将吸附了衣物异味的循环空气通入臭氧除臭器,从而进行衣物除臭(参照专利文献1)。
现有技术文献
专利文献
专利文献1:日本特开平04-327900号公报
发明要解决的问题
上述衣物清新装置由于具备收纳库,因此装置主体容易过大。因此,为了设置上述衣物清新装置,需要大的设置空间。
发明内容
本发明是鉴于该课题而完成的技术方案,其目的在于,提供一种不需要大的设置空间就可以轻易地设置在家庭内的衣物处理装置。
用于解决问题的方案
本发明的主要方式的衣物处理装置具备收容衣物的袋体和将含有臭氧的空气提供到所述袋体内的臭氧提供装置。
通过上述结构,在衣物处理装置的设置上不需要大的设置空间,从而能轻易地在家庭内设置衣物处理装置。
本实施方式的衣物处理装置可以采用进一步具备以下构件的结构:袋用挂架,供所述袋体的上部悬挂,使得所述袋体能悬挂在所述臭氧提供装置的上方的;以及挂架保持部,保持供所述袋体内的衣物悬的衣物用挂架以便将配置于所述袋用衣架的下方。
通过上述结构,由于在袋体的上部和衣物的肩部之间留出了间隙,因而臭氧容易分布到衣物的肩部,从而提高衣物的除臭效果。
采用上述结构的情况下,进而,所述臭氧提供装置可以采用包括供所述袋用挂架安装的安装部的结构。
通过这样的结构,由于在不使用衣物处理装置时,能将从袋体取下的袋用挂架安装到安装部上,因而能防止不使用时袋用挂架的丢失。
在本方式的衣物处理装置中,可以采用以下结构:在悬挂在所述臭氧提供装置的上方的所述袋体的下部以及上部,分别设置有含有由所述臭氧提供装置提供的所述臭氧的空气的入口以及出口。
通过上述结构,由于含有臭氧的空气容易分布到衣物的内部,因而能毫无遗漏地对衣物的外侧和内侧进行除臭。
在本方式的衣物处理装置中,所述臭氧提供装置可以采用包括以下构件的结构:排出口,排出提供给所述袋体的含有臭氧的空气;臭氧发生器;送风扇,将空气送到所述臭氧发生器;通气管,将含有由所述臭氧发生器产生的臭氧的空气导向所述排出口;以及控制部,控制所述臭氧发生器以及所述送风扇。
通过上述结构,能将混入了由臭氧发生器产生的臭氧的空气从排出口排出并导入到袋体内,对袋体内的衣物进行除臭。
采用上述结构的情况下,进而,所述通气管可以采用具有蛇形形状的结构。
通过这样的结构,由于在通气管内流动的空气中容易产生乱流,因而空气和臭氧易于混合。由此,能使从臭氧提供装置提供到袋体内的空气中的臭氧浓度均匀。
采用上述结构的情况下,进而,所述臭氧提供装置可以采用包括去除所述送风扇吸入的空气中含有的臭氧的臭氧去除部的结构。
通过这样的结构,即使发生被送风扇吸入的空气中含有臭氧的情况,也能在被送风扇吸入之前去除空气中的臭氧。由此,能抑制从臭氧提供装置提供到袋体内的空气中的臭氧浓度的变动。
采用上述结构的情况下,进而,衣物处理装置可以采用具备导入管的结构,该导入管从所述袋体延伸并且可装卸地与所述臭氧提供装置的所述排出口连接,将含有从所述臭氧提供装置排出的臭氧的空气导向所述袋体内。进而,所述臭氧提供装置可以采用包括检测所述导入管是否已与所述排出口连接的导管检测部的结构。在这种情况下,所述控制部根据由所述导管检测部检测到的检测结 果,控制所述臭氧发生器以及所述送风扇当中的至少一个。
通过这样的结构,能防止例如在未提供给袋体的状态下生成含有臭氧的空气等,从而能进行高效的除臭运转。
采用上述结构的情况下,进而,所述臭氧提供装置可以采用包括以下检测部中的至少一个检测部的结构:温度检测部,检测被所述送风扇吸入的空气的温度;湿度检测部,检测被所述送风扇吸入的空气的湿度;吸气量检测部,检测提供给所述送风扇的空气的吸气量;以及臭氧浓度检测部,检测从所述排气口排出的空气中的臭氧浓度。在这种情况下,所述控制部根据由所述至少一个检测部检测到的检测结果,调整所述臭氧发生器以及所述送风扇当中的至少一方的输出。
通过这样的结构,能抑制从臭氧提供装置提供到袋体内的空气中的臭氧浓度的变动。
采用上述结构的情况下,进而,所述臭氧提供装置可以采用包括以下构件的结构:收容部,收容所述臭氧发生器;开口部,设置于所述收容部;盖体,关闭所述开口部;以及盖检测部,检测所述盖体是否已将所述开口部关闭。在这种情况下,所述控制部在通过所述盖检测部检测到所述盖体已将所述开口部关闭时,使所述臭氧发生器工作。
通过这样的结构,能防止在开口部打开的情况下进行除臭运转。
在本方式的衣物处理装置中,可以采用还具备以下构件的结构:导入管,与所述袋体和所述臭氧提供装置连结,将含有从所述臭氧提供装置排出的臭氧的空气导向所述袋体内;以及香气提供部,可装卸地安装在所述导入管,使提供给所述袋体的空气中含有芳香成分。在这种情况下,所述臭氧提供装置除了进行使排出的空气中含有臭氧的工作之外,还进行使排出的空气中不含臭氧的工作。
通过上述结构,可以利用用于提供含有臭氧的空气的臭氧提供装置,对衣物进行添香,能实现衣物处理装置的多功能化。
发明效果
根据本发明,能提供一种衣物处理装置,不需要大的设置空间就能轻易地设置于家庭内。
本发明的效果以及意义通过对如下所示的实施方式进行说明来进一步明确。但是,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中记载的内容的任何限制。
附图说明
图1是表示实施方式所涉及的衣物除臭装置的结构的图。
图2是表示实施方式所涉及的安装于袋体状态下的导入管的侧视图。
图3是表示实施方式所涉及的袋用挂架的结构的图。
图4是表示实施方式所涉及的挂架保持部的结构的图。
图5是表示实施方式所涉及的香气提供单元的结构的图。
图6是表示实施方式所涉及的臭氧提供装置的结构的图。
图7是表示实施方式所涉及的臭氧提供装置的结构的图。
图8是表示实施方式所涉及的臭氧提供装置的结构的图。
图9是实施方式所涉及的插入口部的周边的放大剖视图。
图10是用于说明实施方式所涉及的通气管的开口部和管盖的结构的图。
图11是用于说明实施方式所涉及的通气管的开口部和管盖的结构的图。
图12是表示实施方式所涉及的臭氧提供装置的结构的框图。
图13是表示实施方式所涉及的除臭运转中控制部的控制处理的流程图。
图14是表示实施方式所涉及的添香运转中控制部的控制处理的流程图。
图15是用于说明变更例1所涉及的衣物除臭装置的图。
图16是用于说明变更例2所涉及的衣物除臭装置的图。
图17是用于说明变更例3所涉及的衣物除臭装置的图。
图18是用于说明变更例4所涉及的衣物除臭装置的图。
图19是用于说明变更例5所涉及的衣物除臭装置的图。
图20是用于说明变更例6所涉及的衣物除臭装置的图。
图21是用于说明变更例7所涉及的衣物除臭装置的图。
附图标记说明
10:袋体;11:入口;12:出口;20:臭氧提供装置;30:导入管;40:袋用挂架;50:衣物用挂架;60:挂架保持部;90:香气提供单元(香气提供 部);113:安装部;115:排出口;140:导管检测部;150:臭氧浓度检测部;300:通气管;310:管主体(收容部);313:开口部;320:管盖(盖体);330:盖检测部;400:臭氧发生器;500:送风扇;630:活性炭过滤器(臭氧去除部);640:温度检测部;650:湿度检测部;660:吸气量检测部;710:控制部
具体实施方式
以下,关于本发明的衣物处理装置的一个实施方式的衣物除臭装置,参照附图进行说明。
图1是表示衣物除臭装置1的结构的图。图1(a)是衣物除臭装置1的立体图,图1(b)是省略了袋体10和导入管30的状态下的衣物除臭装置1的立体图。
参照图1,衣物除臭装置1包括:袋体10、臭氧提供装置20、导入管30、袋用挂架40、衣物用挂架50、挂架保持部60、支柱70、台座80、以及香气提供单元90。
袋体10收容衣物。袋体10由聚酯等材料构成,几乎不具有透气性。袋体10的上下尺寸设定为能收容长衬衫、长大衣等长度长的衣物的尺寸。此外,袋体10的前后尺寸设定为能收容一件衣物的尺寸。需要说明的是,袋体10的上下尺寸也可以设定为不能收容长度长的衣物的尺寸,前后尺寸也可以设定为能将二、三件左右的衣物前后排列地收容的尺寸。
袋体10在下部设置有空气的入口11,在上部设置有空气的出口12。此外,在袋体10的前表面,设置有通过上下延伸的拉链13进行开闭的衣物投入口14。
臭氧提供装置20进行除臭运转和添香运转。臭氧提供装置20在进行除臭运转时,通过进行使排出的空气中含有臭氧的工作,能将含有臭氧的空气提供给袋体10。此外,臭氧提供装置20在进行添香运转时,通过进行使排出的空气中不含臭氧的工作,能将不含臭氧的空气提供给袋体10。关于臭氧提供装置20的详细结构,后面再进行说明。
导入管30与袋体10和臭氧提供装置20连结,将从臭氧提供装置20排出的空气导向袋体10内。在进行除臭运转时,含有臭氧的空气被导向袋体10内,在进行添香运转时,不含臭氧的空气被导向袋体10内。
图2是安装于袋体10的状态下的导入管30的侧视图。导入管30的上端部 与袋体10的入口11连接固定。在导入管30的下端部,设置有连接部31。连接部31可装卸地安装于臭氧提供装置20的插入口部114。在连接部31的底面,形成有向下方突出的突起片32。
返回图1,袋用挂架40上悬挂有袋体10的上部。图3是表示袋用挂架40的结构的图。图3(a)是立体图,图3(b)是后视图。
袋用挂架40形成稍稍弯曲成弓形的横长板状。在袋用挂架40的上表面形成有凹陷部41,在该凹陷部41内形成有多个通气孔42。进而,在袋用挂架40的背面,在大致中央部处形成有圆筒状的突起部43和从突起部43向外侧延伸的筋44。
返回图1,衣物用挂架50由供衣物悬挂的挂架主体51和设置于挂架主体51的上部的挂钩部52构成。
挂架保持部60安装于支柱70的上端部,保持悬挂有袋体10的袋用挂架40并且在袋用挂架40的下方以稍微远离袋用挂架40的方式保持悬挂有衣物的衣物用挂架50。支柱70由2根杆71构成,通过台座80支承为直立的状态。支柱70也可以不由2根杆71而由1根或者3根以上的杆构成。
图4是表示挂架保持部60的结构的图。图4(a)为立体图,图4(b)为仰视图,图4(c)为从正面侧观察的纵剖视图。
挂架保持部60包括下方开口的箱状的主体部61和从主体部61向前方延伸的第一保持部62以及第二保持部63。在主体部61的内部,于左右两侧形成有具有下方开口的圆筒形状的第一插入口部64。杆71的上端部插入第一插入口部64。
第一保持部62由其上表面62a保持袋用挂架40。在上表面62a,形成有具有上方开口的圆筒形状的第二插入口部65。在第二插入口部65,于后部形成有狭缝部65a。在第二插入口部65以及狭缝部65a,分别插入有袋用挂架40的突起部43以及筋44。由此,袋用挂架40固定在第一保持部62的上表面62a。
第二保持部63形成于第一保持部62的前方,具有上侧打开的挂钩的形状。衣物用挂架50的挂钩部52从上方钩住第二保持部63(参照图1(b))。
返回图1,台座80是具有规定的形状,例如四角形的平板。台座80上载置有臭氧提供装置20。
香气提供单元90在通过臭氧提供装置20进行添香运转时使用。香气提供单元90可装卸地安装于导入管30,使提供给袋体10的空气中含有芳香成分。香气提供单元90相当于本发明的香气提供部。
图5是表示香气提供单元90的结构的图。图5(a)是安装有上盖92的状态下的香气提供单元90的俯视图,图5(b)是取走了上盖92的状态下的香气提供单元90的俯视图。图5(c)是安装于导入管30的状态下的香气提供单元90的纵剖视图。
香气提供单元90包括上表面开口的大致圆筒状的收容箱91、堵塞收容箱91的上表面开口的大致圆盘状的上盖92、以及配置于收容箱91内的芳香体93。收容箱91由收容部94和连接部95构成。在收容部94的底部,于中央部设置有载置芳香体93的载置部96,载置部96的四周形成有多个通气口97。连接部95设置于收容部94的下部,并且嵌入导入管30的上端部。上盖92具有中央部92a高出一截的形状,在中央部92a形成有多个狭缝状的通气孔98。芳香体93由多孔质材料等能浸入液体状的芳香剂的材料形成。
接着,关于臭氧提供装置20的详细结构进行说明。
图6至图8是表示臭氧提供装置20的结构的图。图6(a)是未安装袋用挂架40的状态下的臭氧提供装置20的立体图。图6(b)是安装有袋用挂架40的状态下的臭氧提供装置20的立体图。图7(a)、(b)以及(c)分别是臭氧提供装置20的左侧视图、俯视图、以及后视图。图8(a)是从背面侧观察的臭氧提供装置20的纵剖视图。图8(b)是臭氧发生器400的立体图。图8(c)是从上表面侧观察的臭氧提供装置20的主要部位的横向剖视图。
臭氧提供装置20包括:壳体100、操作部200、通气管300、臭氧发生器400、送风扇500、吸气单元600、以及控制单元700。
壳体100包括箱主体110、前表面罩体120、以及吸气罩130。箱主体110具有上表面缓缓地凸起弯曲的横长的立方体形状。在箱主体110的前表面形成有前表面开口部111,该前表面开口部111通过前表面罩体120可开闭地关闭。此外,在箱主体110的后表面形成有吸气口112,该吸气口112通过吸气罩130可开闭地关闭。在吸气罩130上,形成有许多吸气孔131。
在箱主体110的上表面,形成有凹陷成与袋用挂架40的形状相同的形状的 安装部113。如图6(b)所示,在不使用衣物除臭装置1时,能将从袋体10取下的袋用挂架40安装在安装部113上。由此,因为确保了从袋体10取下的袋用挂架40的保管场所,所以能防止袋用挂架40在不使用时丢失。
在安装部113的中央处,设置有凹陷成圆形的插入口部114。在插入口部114,形成有具有格子状的整流筋116的排出口115,在排出口115的旁边形成有检测孔117。
如图7(a)所示,在壳体100的左侧面,设置有操作部200。操作部200包括电源按钮210、除臭按钮220、以及添香按钮230。电源按钮210是用于接通以及断开衣物除臭装置1的电源的按钮。除臭按钮220是用于开始除臭运转的按钮。添香按钮230是用于开始添香运转的按钮。
如图8(a)所示,通气管300包括管主体310和管盖320。管主体310的导入口311与送风扇500的排出口520连接,导出口312与排出口115连接。在管主体310内的导入口311的附近配置有臭氧发生器400。管主体310具有如下形状:在以从导入口311向左边延伸,并在过了臭氧发生器400的配置位置的部分开始向右边折回的方式弯曲后,向上方延伸到导出口312。即,管主体310的构成臭氧发生器400的下游侧的部分蛇形成接近S字的形状。配置有管主体310的臭氧发生器400的部分相当于本发明的收容部。
臭氧发生器400为放电式臭氧发生器。如图8(b)所示,在臭氧发生器400中,于空气通过的电极配置部410内配置有棒状的一对电极420。臭氧发生器400使一对电极420之间产生电晕放电、无声放电等放电,由通过一对电极420之间的空气生成臭氧。
送风扇500为离心扇,在侧面设置有吸入口510,在周面设置有排出口520。吸入口510与壳体100后表面的吸气口112对置。送风扇500从吸入口510获取空气,并将获取的空气送到通气管300内的臭氧发生器400。送风扇500还可以使用离心扇之外的风扇,例如轴流扇。
如图8(c)所示,在壳体100的吸气口112和送风扇500的吸入口510之间设置有吸气单元600。吸气单元600包括吸气管610、灰尘过滤器620、以及活性炭过滤器630。
吸气管610内通过格子状的分隔板611划分为吸气口11侧的第一过滤器收 容部612和送风扇500侧的第二过滤器收容部613。在第一过滤器收容部612中收容有灰尘过滤器620,在第二过滤器收容部613中收容有活性炭过滤器630。灰尘过滤器620去除从吸气口112获取的空气中所含的尘埃等。活性炭过滤器630去除通过灰尘过滤器620的空气中所含的臭氧。活性炭过滤器630相当于本发明的臭氧去除部。
吸气管610设置有与送风扇500的吸入口510连接的连接部614,连接部614和第二过滤器收容部613通过连通孔615连接。在连接部614内,配置有检测送风扇500所获取的空气的温度的温度检测部640和检测由送风扇500获取的空气的湿度的湿度检测部650。
图9为插入口部114的周边的放大剖视图。图9(a)表示插入口部114未安装导入管30的状态,图9(b)表示插入口部114安装有导入管30的状态。
在检测孔117的侧面,形成有插入开口117a,在该插入开口117a的外侧配置有导管检测部140。导管检测部140为例如微型开关,具有开关部141和用于按压开关部141的杆部142。如图9(a)所示,插入口部114中未安装导入管30时,开关部141和杆部142穿过插入开口117a向检测孔117内伸出。如图9(b)所示,当插入口部114中安装有导入管30时,导入管30的突起片32插入检测孔117内,开关部141通过被插入的突起片32按压的杆部142按压。由此,导管检测部140检测到导入管30已被安装于插入口部114。
图10以及图11是用于说明通气管300的开口部313和管盖320的结构的图。图10(a)是取走前表面罩体120的状态下的臭氧提供装置20的主视图。图10(b)是表示开口部313用管盖320关闭的状态下的开口部313的周边的横向剖视图。图11(a)以及(b)分别是管盖320的主视图以及右视图。图11(c)是取走前表面罩体120以及管盖320的状态下的开口部313的周边的主视图。
在管主体310的前表面,在与臭氧发生器400对应的位置形成有开口部313。进而,在管主体310的前表面,嵌入管主体310的弯曲部分的内侧的延伸配置部314与管主体310形成为一体。在包括延伸配置部314的管主体310的前表面,在开口部313的周围形成有方形的框部315,开口部313通过安装于框部315内的管盖320进行关闭。需要说明的是,在图10(a)中,对管盖320进行了着色,以便看清楚管盖320。
管盖320包括:关闭开口部313的盖主体321、设置于盖主体321的上方的安装部322、以及设置于安装部322的上方的把手部323。在安装部322,形成有供安装螺钉340穿过的螺孔324和向后方突出的突起部325。在将管盖320装卸到开口部313时,用手扶着把手部323。管盖320相当于本发明的盖体。
在管主体310的延伸配置部314,在框部315内的上部的位置形成有具有安装孔316a的安装凸起316和插通孔317。在插通孔317的后方,配置有盖检测部330。盖检测部330是例如微型开关,具有开关部331。
如图11(c)所示,臭氧发生器400以一对电极420伸向开口部313侧,并且一对电极420的长边方向为上下方向的方式配置于管主体310内。在前表面罩体120和管盖320被取走的状态下,臭氧发生器400的一对电极420穿过开口部313露出到外部。一对电极420随着臭氧的生成而生成硝酸盐,该硝酸盐附着在电极420上。当硝酸盐的附着量变多时,臭氧的产生效率就会降低。使用者可以通过用刷子擦拭露出的电极420等去除附着于电极420上的硝酸盐。需要说明的是,臭氧发生器400也可以以使一对电极420的长边方向为左右方向的方式配置于管主体310内。
如图10(b)所示,管盖320安装于框部315内之后,用安装螺钉340固定在安装凸起316。此时,盖检测部330的开关部331通过贯通插通孔317的突起部325被按压。由此,盖检测部330检测到开口部313由管盖320关闭。
图12是表示臭氧提供装置20的结构的框图。控制单元700包括控制部710和存储部720。
存储部720包括EEPROM、RAM等。在存储部720,存储有用于执行除臭运转以及添香运转的程序。此外,在存储部720,存储有用于这些程序的执行的各种参数、各种控制标记。
操作部200将电源按钮210、除臭按钮220以及添香按钮230当中对应使用者所操作的按钮的输入信号输出到控制部710。温度检测部640将与检测到的温度相对应的检测信号输出到控制部710。湿度检测部650将与检测到的湿度相对应的检测信号输出到控制部710。导管检测部140将与导入管30是否安装到插入口部114相对应的检测信号输出到控制部710。盖检测部330将与是否通过管盖320闭锁开口部313相对应的检测信号输出到控制部710。
控制部710根据来自操作部200、温度检测部640、湿度检测部650、导管检测部140、以及盖检测部330等的各个信号,按照存储于存储部720的程序,控制臭氧发生器400、送风扇500等。
本实施方式的衣物除臭装置1能进行两种运转:进行衣物的除臭的除臭运转和对衣物进行添香的添香运转。
在进行除臭运转的情况下,使用者将挂在衣物用挂架50上的衣物收容在使用袋用挂架40悬挂在挂架保持部60上的袋体10内。此时,使用者如图1(b)所示,在袋体10内,将衣物用挂架50的挂钩部52钩到挂架保持部60的第二保持部63上。这样,在袋体10内,通过挂架保持部60悬挂衣物。使用者在将安装于袋体10的下部的导入管30安装到臭氧提供装置20的插入口部114之后,按下操作部200的除臭按钮220。由此,开始除臭运转,送风扇500和臭氧发生器400进行工作。
吸气管610从吸气口112获取外部的空气,通过吸气管610内的灰尘过滤器620和活性炭过滤器630去除空气中含有的尘埃和臭氧。去除了尘埃和臭氧的空气通过送风扇500送入通气管300内(参照图8(c)的箭头)。在通过臭氧发生器400时,流过通气管300内的空气中混入由臭氧发生器400产生的臭氧。这样,含有臭氧的空气通过通气管300内到达排出口115,从排出口115排出(参照图8(a)的箭头)。通气管300在臭氧发生器400的下游侧蛇形,流动的空气由于蛇形而产生乱流。由此,由于容易混合空气和臭氧,因而空气中的臭氧浓度均匀。进而,因为从排出口115排出时通过整流筋116被整流,所以臭氧浓度均匀的空气在保持均匀的浓度的同时从排出口115顺利地排出。
从臭氧提供装置20排出的含有臭氧的空气通过导入管30导入袋体10内。如图1(a)的箭头所示,导入袋体10内的含有臭氧的空气在袋体10内从下向上一边与衣物接触一边流动。衣物通过空气中含有的臭氧的除臭作用进行除臭。此处,虽然衣物的下方敞开得很大,但是因为含有臭氧的空气在袋体10内从下向上流动,所以容易分布到衣物的内部。由此,能毫无遗漏地对衣物的外侧和内侧进行除臭。
此外,通过将袋体10挂于袋用挂架40,将衣物挂于衣物用挂架50,能在袋体10的上部和衣物的肩部之间确保间隙。由此,由于臭氧连衣物的肩部也容 易分布到,所以能提高除臭效果。
由于衣物的除臭而降低了臭氧浓度的空气从袋体10的上部的出口12排出。出口12成为局部被袋用挂架40堵塞的状态。在本实施方式中,在袋用挂架40设置有凹陷部41和通气孔42,空气穿过未被出口12的袋用挂架40堵塞的部分被排出,并且脱离通气孔42并穿过凹陷部41到达出口12,从出口12排出。由此,能抑制袋用挂架40对排气的妨碍。
在本实施方式中,衣物除臭装置1构成为从袋体10排出的排气量比袋体10所吸收的吸气量小。由此,由于在袋体10内空气的压力增高,并通过增高的压力使得臭氧容易浸透到衣物中,因而提高了衣物的除臭效果。
图13是表示除臭运转中控制部710的控制处理的流程图。以下,根据图13的流程图,关于除臭运转中的控制工作进行说明。
当开始除臭运转时,控制部710根据来自导管检测部140的检测信号,判断插入口部114中是否安装有导入管30(S101)。此外,控制部710根据来自盖检测部330的检测信号,判断管盖320是否将通气管300的开口部313关闭(S102)。
在插入口部114中安装有导入管30,并且管盖320将开口部313关闭的情况下(S101:YES→S102:YES),控制部710起动送风扇500和臭氧发生器400(S103)。如上所述,从臭氧提供装置20向袋体10内提供含有臭氧的空气,从而对袋体10内收容的衣物进行除臭。
控制部710通过温度检测部640和湿度检测部650,检测吸入送风扇500的空气的温度和湿度(S104)。然后,控制部710根据检测到的温度和湿度,调整臭氧发生器400的输出使得提供给袋体10的空气中的臭氧浓度大致保持恒定(S105)。在臭氧发生器400的输出相同的情况下,空气的温度越高,臭氧的产生量越少,空气的湿度越高,臭氧的产生量越少。因此,空气的温度以及湿度越高,控制部710控制臭氧发生器400的输出越大。
只要没有走完整个运转完成时间(S106:NO),控制部710就会一直监视导入管30的脱离以及管盖320的打开情况(S107、S108),并且反复进行温度和湿度的检测(S104)以及臭氧发生器400的输出的调整(S105)。然后,当经过了运转完成时间时(S106:YES),控制部710使送风扇500和臭氧发生器400 停止(S109),结束除臭运转。
需要说明的是,在开始除臭运转时,如果插入口部114中还没有安装导入管30的话(S101:NO),或者开口部313没有被管盖320关闭的话(S102:NO),控制部710不会进行除臭运转。此外,在除臭运转中,当检测到导入管30脱离或管盖320打开时(S107:YES,S108:YES),即使还没有走完整个运转完成时间,控制部710也会使送风扇500和臭氧发生器400停止(S109),结束除臭运转。
在步骤S105的处理中,对臭氧发生器400的输出进行了调整,但也可以不进行调整,或者除此之外,再加上通过调整送风扇500的输出来调整风量。在臭氧发生器400的臭氧产生量相同的情况下,风量越多臭氧浓度越低。因此,以空气的温度以及湿度越高,臭氧产生量越少,则风量越少的方式调整送风扇500的输出。
在本实施方式中,可以将例如提供给袋体10内的空气中的臭氧浓度设为低浓度,例如0.05ppm左右或者以下,并将运转时间设为6~8小时左右。使用者在晚上从公司等回家之后,通过对穿过的衣物进行除臭运转,能在第二天早晨之前完成衣物的除臭。
接着,在进行添香运转的情况下,使用者将衣物收容到悬挂于挂架保持部60的袋体10内,并且如图5(c)所示,在袋体10内,在导入管30的上端部安装设置有芳香体93的香气提供单元90。使用者在将导入管30安装到臭氧提供装置20的插入口部114中的状态下,按压操作部200的添香按钮230。由此,添香运转开始,送风扇500进行工作。
从臭氧提供装置20排出不含臭氧的空气,排出的空气通过导入管30。如图5(c)所示,从导入管30排出的空气穿过香气提供单元90的收容部94。利用通过收容部94的空气,芳香体93所含的芳香成分挥发,混入空气中。含有芳香成分的空气穿过通气孔98导入袋体10内。导入袋体10内的含有芳香成分的空气一边在袋体10内从下向上与衣物接触一边流动。空气中含有的芳香成分附着于衣物上,对衣物进行添香。
与除臭运转的情况相同,由于含有芳香成分的空气在袋体10内从下向上流动,此外,在袋体10内空气的压力增高,因此提高了衣物的添香效果。
图14是表示添香运转中的控制部710的控制处理的流程图。以下,根据图14的流程图,关于添香运转中的控制工作进行说明。
当添香运转开始时,控制部710判断插入口部114中是否安装了导入管30(S201),管盖320是否将通气管300的开口部313关闭(S202)。在插入口部114中安装了导入管30,并且管盖320将开口部313关闭的情况下(S201:YES→S202:YES),控制部710起动送风扇500(S203)。如上所述,从臭氧提供装置20向袋体10内提供含有芳香成分的空气,对袋体10内收容的衣物进行添香。
只要没有走完整个运转完成时间(S204:NO),控制部710就会一直监视导入管30的脱离以及管盖320的打开情况(S205、S206),并且使送风扇500的工作继续。然后,当经过运转完成时间时(S204:YES),控制部710使送风扇500停止(S207),结束添香运转。
需要说明的是,在开始添香运转时,如果插入口部114中没有安装导入管30的话(S201:NO),或者开口部313没有被管盖320关闭的话(S202:NO),控制部710就不会进行添香运转。此外,在添香运转中,当检测到导入管30脱离或管盖320打开时(S205:YES,S206:YES),即使还没有走完运转完成时间,控制部710也会使送风扇500停止(S207),结束添香运转。
<本实施方式的效果>
以上,通过本实施方式,起到以下的作用效果。
(1)由于衣物除臭装置1从臭氧提供装置20对收容衣物的袋体10提供含有臭氧的空气、含有芳香成分的空气,从而进行衣物的除臭、添香,因而不需要大的设置空间就能轻易地设置于家庭内。
(2)由于通过利用挂架保持部60,分别独立地保持挂了袋体10的袋用挂架40和悬挂了衣物的衣物用挂架50,由此在袋体10的上部和衣物的肩部之间确保间隙,因而臭氧容易分布到衣物的肩部,能提高除臭效果。
(3)由于在不使用衣物除臭装置1时,能将从袋体10取下的袋用挂架40安装到臭氧提供装置20的安装部113,因而能防止在不使用时袋用挂架40丢失。
(4)由于衣物除臭装置1提供给臭氧提供装置20的含有臭氧的空气在袋体10内从下向上地流动,因而含有臭氧的空气容易遍及衣物的内部。由此,能毫无遗漏地对衣物的外侧和内侧进行除臭。
(5)由于通气管300在臭氧发生器400的下游侧蛇形,因而容易在流动的空气中产生乱流·。由此,由于空气和臭氧易于混合,因而能使从臭氧提供装置20提供到袋体10内的空气中的臭氧浓度均匀。
(6)即使发生了送风扇500吸入的空气中含有臭氧的情况,通过设置于吸气单元600的活性炭过滤器630,空气中的臭氧也能在被送风扇500吸入之前去除。由此,能抑制从臭氧提供装置20提供到袋体10内的空气中的臭氧浓度的变动。
(7)由于在导管检测部140未检测到插入口部114安装到导入管30的情况下,臭氧发生器400以及送风扇500不进行工作,因而能防止在不被提供给袋体10的状态下生成含有臭氧的空气、含有芳香成分的空气。因此,能进行高效的除臭运转以及添香运转。
(8)由于根据送风扇500吸入的空气的温度和湿度,调整臭氧发生器400、送风扇500的输出,因而能抑制从臭氧提供装置20提供到袋体10内的空气中的臭氧浓度随着温度以及湿度变动。
(9)由于在通气管300中,在配置臭氧发生器400的位置设置有开口部313,因而使用者能进行去除附着于电极420上的硝酸盐等的臭氧发生器400的维护。并且,由于在盖检测部330未检测到管盖320将开口部313关闭的情况下,臭氧发生器400以及送风扇500不进行工作,因而能防止在开口部313打开的状态下进行除臭运转、添香运转。
(10)衣物除臭装置1采用具备能安装到导入管30的香气提供单元90,并且能从臭氧提供装置20提供不含臭氧的空气的结构。由此,利用用于提供含有臭氧的空气的臭氧提供装置20,可以进行衣物的添香,能实现衣物除臭装置1的多功能化。
<变更例1>
图15是用于说明变更例1的衣物除臭装置1的图。
在上述实施方式中,通过温度检测部640和湿度检测部650,检测送风扇500吸入的空气的温度和湿度,并根据检测到的温度和湿度,调整臭氧发生器400的输出。
然而,如图15(a)所示,在吸气单元600的连接部614内,也可以取代温 度检测部640和湿度检测部650,配置检测送风扇500吸入的空气的吸气量的吸气量检测部660。在这种情况下,如图15(b)所示,在除臭运转的控制处理中,步骤S104和步骤S105的处理置换为步骤S111和步骤S112的处理。即,控制部710检测送风扇500吸入的空气的吸气量(S111),并根据检测到的吸气量调整臭氧发生器400的输出(S112)。在臭氧发生器400的输出相同的情况下,吸气量越多,臭氧浓度越低。因此,吸气量越多时,控制部710控制臭氧发生器400的输出越大。
需要说明的是,也可以在检测吸气量的同时检测温度和/或湿度,并根据检测到的吸气量和温度和/或湿度调整氧发生器400的输出。
此外,与上述实施方式相同,也可以不调整臭氧发生器400的输出,或者在调整臭氧发生器400的输出之外,还调整送风扇500的输出。
通过本变更例,与上述实施方式相同,能抑制从臭氧提供装置20排出的空气中的臭氧浓度的变动。
<变更例2>
图16是用于说明变更例2的衣物除臭装置1的图。
如图16(a)所示,也可以在排出口115配置检测臭氧浓度的臭氧浓度检测部150。在这种情况下,如图16(b)所示,在除臭运转的控制处理中,步骤S104和步骤S105的处理置换为步骤S121和步骤S122的处理。即,控制部710检测从排出口115排出的空气中的臭氧浓度(S121),并根据检测到的臭氧浓度,调整臭氧发生器400的输出使得臭氧浓度大致恒定(S122)。
需要说明的是,与上述实施方式相同,也可以不调整臭氧发生器400的输出,或者在调整臭氧发生器400的输出之外,还调整送风扇500的输出。
通过本变更例,与上述实施方式相同,能抑制从臭氧提供装置20排出的空气中的臭氧浓度的变动。
<变更例3>
图17是用于说明变更例3的衣物除臭装置1的图,是表示除臭运转中的控制部710的控制处理的流程图。
上述实施方式采用在除臭运转中,在臭氧提供装置20的插入口部114未安装有导入管30的情况下,使臭氧发生器400以及送风扇500不进行工作的结构。
与此相对地,在本变更例中,根据插入口部114是否安装有导入管30,调整臭氧发生器400的输出。
参照图17,控制部710在开口部313被管盖320关闭时(S301:YES),起动送风扇500和臭氧发生器400(S302)。
接着,控制部710通过导管检测部140,检测插入口部114是否安装了导入管30(S303)。进而,控制部710通过温度检测部640和湿度检测部650,检测送风扇500吸入的空气的温度和湿度(S304)。然后,控制部710根据是否安装有导入管30、温度以及湿度,调整臭氧发生器400的输出(S305)。
在使用袋体10进行衣物的除臭的情况下,导入管30安装于插入口部114。另一方面,例如,在不使用袋体10,而是将衣物、鞋等配置于臭氧提供装置20的上方,使含有来自臭氧提供装置20的臭氧的空气直接与衣物、鞋等接触进行除臭的情况下,插入口部114不安装导入管30。
例如,在插入口部114不安装导入管30的情况下,目标臭氧浓度被设定为比安装有导入管30的情况低。控制部710根据温度和湿度调整臭氧发生器400的输出使得臭氧浓度接近设定地较低的臭氧浓度。在不安装导入管30的情况下,相对于相同的温度和湿度,臭氧发生器400的输出较低。
只要没有走完运转完成时间(S306:NO),控制部710就会一直监视管盖320的打开(S307)情况,同时反复检测是否安装有导入管30(S303)、温度和湿度的检测(S304)以及调整臭氧发生器400的输出(S305)。然后,当经过运转完成时间时(S306:YES),控制部710使送风扇500和臭氧发生器400停止(S308),结束除臭运转。
通过本变更例,可以实现以下使用形态,即不使用袋体10,而是使含有来自臭氧提供装置20的臭氧的空气直接与衣物等接触,从而进行衣物等的除臭。
需要说明的是,在步骤S305中,也可以不调整臭氧发生器400的输出,或者在调整臭氧发生器400的输出之外,还调整送风扇500的输出。
<变更例4>
图18是用于说明变更例4的衣物除臭装置1的图。图18(a)是表示添香运转中的控制部710的控制处理的流程图,图18(b)是表示辅助管30A中安装了香气提供单元90的状态的图。
在上述实施方式中,采用在添香运转中,在臭氧提供装置20的插入口部114不安装导入管30的情况下,不使送风扇500进行工作的结构。
与此相对地,在本变更例中,根据插入口部114是否安装有导入管30,调整送风扇500的输出。
参照图18(a),控制部710在开口部313被管盖320关闭时(S401:YES),起动送风扇500(S402)。
接着,控制部710通过导管检测部140,检测插入口部114是否安装了导入管30(S403)。然后,控制部710根据检测到是否安装有导入管30的情况,调整送风扇500的输出(S404)。
在使用袋体10进行衣物的添香的情况下,导入管30安装于插入口部114。另一方面,在例如不使用袋体10,而是将衣物、鞋等配置于臭氧提供装置20的上方,使含有来自臭氧提供装置20的芳香成分的空气直接与衣物、鞋等接触,从而进行添香的情况下,插入口部114不安装导入管30。在这种情况下,插入口部114安装有图18(b)所示的辅助管30A,在辅助管30A中安装有香气提供单元90。辅助管30A的结构除了在连接部31A的下表面不具有突起片之外,都与导入管30的结构相同。由于辅助管30A上没有突起片,因而即使插入口部114安装有辅助管30A,也能通过导管检测部140,检测到未安装导入管30。
例如,在插入口部114不安装导入管30的情况下,控制部710使送风扇500的输出比安装有导入管30的情况更大。由此,含有从香气提供单元90排出的芳香成分的空气的风量变多。
只要没有走完运转完成时间(S405:NO),控制部710就会一直监视管盖320的打开(S406)情况,并且反复检测是否安装有导入管30(S403)以及调整送风扇500的输出(S404)。然后,当经过运转完成时间时(S405:YES),控制部710使送风扇500停止(S407),结束添香运转。
通过本变更例,可以实现以下使用形态:不使用袋体10,而是使含有来自臭氧提供装置20的芳香成分的空气直接与衣物等接触,从而进行衣物等的添香。
<变更例5>
图19是用于说明变更例5的衣物除臭装置1的图,是袋用挂架40的后视图。
在上述实施方式中,为了去除送风扇500吸入的空气中含有的臭氧,在吸气单元600中配置有活性炭过滤器630,在袋体10的出口12的附近,不设置去除从出口12排出的空气中含有的臭氧的单元。
与此相对地,在本变更例中,在袋体10的出口12的附近,设置去除从出口12排出的空气中含有的臭氧的单元。例如,如图19所示,在配置于袋体10的出口12的附近的袋用挂架40的背面,作为臭氧去除单元安装有活性炭过滤器45。
通过本变更例,能通过活性炭过滤器45,去除从出口12排出的空气中的臭氧。
<变更例6>
图20是用于说明变更例6的衣物除臭装置1的图。图20(a)是香气提供单元90A的俯视图,图20(b)是取走上箱940的状态下的香气提供单元90A的俯视图。图20(c)是安装于导入管30的状态下的香气提供单元90A的纵剖视图。
可以取代上述实施方式的香气提供单元90,将图20所示的香气提供单元90A用于衣物除臭装置1。
香气提供单元90A包括俯视时具有椭圆形状的箱状的收容箱910和收容于收容箱910内的芳香体920。收容箱910包括上表面打开的下箱930和底面打开的上箱940。
在下箱930的底面,在长边方向的一端侧形成有吸气口931,并且在吸气口931旁边形成有在长边方向上延伸的多个筋932。在多个筋932上面载置有芳香体920。此外,下箱930的底面在另一端部侧,具有朝向另一端部变高的倾斜面933。进而,在下箱930的底面,以将吸气口931包围的方式形成有圆筒状的连接口934。连接口934嵌入导入管30的上端部。
上箱940安装于下箱930的上表面。上箱940的上表面在与吸气口931对置的位置,具有朝向另一端部变高的倾斜面941。此外,在上箱940的上表面,在与多个筋932对置的位置形成有开口部942,该开口部942被盖部943可开闭地覆盖。盖部943以铰链部943a为中心进行转动。在盖部943,形成有多个狭缝状的通气孔944。
芳香体920由多孔质材料等能浸入液体状的芳香剂的材料形成。使用者打开盖部943从开口部942将芳香体920设置到收容箱910内。
香气提供单元90A安装到导入管30中,当添香运转开始时,如图20(c)所示,从导入管30排出的空气从吸气口931导入收容箱910内。被导入的空气沿着多个筋932流到另一端部侧之后向上方流动。利用通过芳香体920的空气,芳香体920中含有的芳香成分挥发,并混入空气中。含有芳香成分的空气穿过开口部942以及通气孔944排出到袋体10内。需要说明的是,通过设置于收容箱910的两个倾斜面933、941,空气能在收容箱910内顺利地流动。
由于本变更例的香气提供单元90A采用载置芳香体920的位置与导入管30的位置错开的结构,因而即使扩大吸气口931的面积,在收容箱910内设置芳香体920时等情况下,芳香体920也不会落到导入管30内。
<变更例7>
图21是用于说明变更例7的衣物除臭装置1的图。图21(a)是挂架保持部60A的立体图,图21(b)是表示衣物除臭装置1设置于西服柜C中的状态的图。
在上述实施方式中,衣物除臭装置1包括支柱70和台座80。然而,如本变更例所示,衣物除臭装置1也可以采用不包括支柱70和台座80的结构。
本变更例的衣物除臭装置1包括挂架保持部60A以取代上述实施方式的挂架保持部60。
如图21(a)所示,在挂架保持部60A,于主体部61设置有挂钩部66。其它的结构与挂架保持部60相同。
本变更例的衣物除臭装置1设置于可以使用挂架保持部60A悬挂袋体10和衣物的场所,例如,如图21(b)所示,设置于西服柜C中。此时,挂架保持部60A的挂钩部66挂在西服柜C的挂杆C1上。
进而,衣物除臭装置1可以采用不包括专用的衣物用挂架50的结构。此时,可以使用用于悬挂衣物的普通衣物用挂架。
<其它的变更例>
以上,虽然关于本发明的实施方式以及变更例进行了说明,但是本发明不受上述实施方式等的任何限制,另外,本发明的实施方式以及变更例也可以进 行上述以外的各种变更。
例如,在上述实施方式中,袋体10由几乎不透气的材料形成。然而,也可以通过由网眼较大的纤维等透气性高的材料形成袋体10,使得空气能从袋体10的表面排出。在这种情况下,在袋体10的上部,既可以不设置出口12,也可以设置小的出口12。
进而,在上述实施方式中,在袋体10的下部中央处形成有入口11,在袋体10的上部中央处形成有出口12。然而,入口11以及出口12也可以设置在从中央向左右方向偏移的位置上。此外,入口11和出口12的左右方向位置也可以不一致。
进而,在上述实施方式中,根据温度和湿度调整臭氧发生器400、送风扇500的输出。然而,也可以根据温度和湿度中的任一个来调整臭氧发生器400、送风扇500的输出。
进而,在上述实施方式中,温度检测部640以及湿度检测部650设置在吸气单元600。然而,温度检测部640以及湿度检测部650只要是能检测到送风扇500吸入的空气的温度以及湿度的位置,就可以设置在任何位置,例如,也可以设置在壳体100的背面的吸气口112旁边的位置。
进而,在上述实施方式中,在除臭运转中导入管30从插入口部114脱离的情况下(S107:YES),会中止除臭运转。然而,也可以在除臭运转中导入管30从插入口部114脱离的情况下,不中止除臭运转,而是调整臭氧发生器400的输出使得臭氧浓度比插入口部114安装有导入管30时的浓度低的同时,继续除臭运转。
进而,也可以在操作部200设置用于调整除臭运转、添香运转的运转时间长短的调整按钮。在这种情况下,按下调整按钮后控制部710只进行设定的运转时间的除臭运转、添香运转。
在上述实施方式中,为了去除臭氧而使用了活性炭过滤器630,但是也可以使用活性炭过滤器630之外的具有去除臭氧效果的过滤器,例如光触媒陶瓷过滤器。
此外,本发明的实施方式在权利要求书示出的技术思想的范围内可以适当地进行各种变更。

Claims (11)

  1. 一种衣物处理装置,其特征在于,具备:
    袋体,收容衣物;以及
    臭氧提供装置,将含有臭氧的空气提供给所述袋体内。
  2. 根据权利要求1所述的衣物处理装置,其特征在于,还具备:
    袋用挂架,供所述袋体的上部进行悬挂,使得所述袋体能挂在所述臭氧提供装置的上方;以及
    挂架保持部,保持供所述袋体内的衣物悬挂的衣物用挂架以便将其配置在所述袋用挂架的下方。
  3. 根据权利要求2所述的衣物处理装置,其特征在于,
    所述臭氧提供装置包括供所述袋用挂架安装的安装部。
  4. 根据权利要求1至3的任意一项所述的衣物处理装置,其特征在于,
    在悬挂于所述臭氧提供装置的上方的所述袋体的下部以及上部,分别设置有从所述臭氧提供装置提供的含有所述臭氧的空气的入口以及出口。
  5. 根据权利要求1至4的任意一项所述的衣物处理装置,其特征在于,
    所述臭氧提供装置包括:
    排出口,排出提供给所述袋体的含有臭氧的空气;
    臭氧发生器;
    送风扇,将空气送到所述臭氧发生器;
    通气管,将含有由所述臭氧发生器产生的臭氧的空气导向所述排出口;以及
    控制部,控制所述臭氧发生器以及所述送风扇。
  6. 根据权利要求5所述的衣物处理装置,其特征在于,
    所述通气管具有蛇形形状。
  7. 根据权利要求5或6所述的衣物处理装置,其特征在于,
    所述臭氧提供装置包括去除所述送风扇吸入的空气中含有的臭氧的臭氧去除部。
  8. 根据权利要求5至7的任意一项所述的衣物处理装置,其特征在于,
    还具备导入管,从所述袋体延伸并且可装卸地与所述臭氧提供装置的所述 排出口连接,将含有从所述臭氧提供装置排出的臭氧的空气导向所述袋体内,
    所述臭氧提供装置包括检测所述导入管是否已连接到所述排出口的导管检测部,
    所述控制部根据所述导管检测部的检测结果,控制所述臭氧发生器以及所述送风扇当中的至少一个。
  9. 根据权利要求5至8的任意一项所述的衣物处理装置,其特征在于,
    所述臭氧提供装置包括检测由所述送风扇吸入的空气的温度的温度检测部、检测由所述送风扇吸入的空气的湿度的湿度检测部、检测所述送风扇的空气吸气量的吸气量检测部、以及检测从所述排气口排出的空气中的臭氧浓度的臭氧浓度检测部当中的至少一个检测部,
    所述控制部根据由所述至少一个检测部检测到的检测结果,调整所述臭氧发生器以及所述送风扇当中的至少一方的输出。
  10. 根据权利要求5至9的任意一项所述的衣物处理装置,其特征在于,
    所述臭氧提供装置包括:
    收容部,收容所述臭氧发生器;
    开口部,设置于所述收容部;
    盖体,关闭所述开口部;以及
    盖检测部,检测所述盖体是否已将所述开口部关闭,
    所述控制部在通过所述盖检测部检测到所述盖体将所述开口部关闭时,使所述臭氧发生器工作。
  11. 根据权利要求1所述的衣物处理装置,其特征在于,还具备:
    导入管,与所述袋体和所述臭氧提供装置连结,将含有从所述臭氧提供装置排出的臭氧的空气导向所述袋体内;以及
    香气提供部,可装卸地安装在所述导入管,使提供给所述袋体的空气中含有芳香成分,
    所述臭氧提供装置除了进行使排出的空气中含有臭氧的工作之外,还进行使排出的空气中不含臭氧的工作。
PCT/CN2015/094161 2014-11-14 2015-11-10 衣物处理装置 WO2016074604A1 (zh)

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