WO2016180375A1 - 衣物处理装置 - Google Patents

衣物处理装置 Download PDF

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Publication number
WO2016180375A1
WO2016180375A1 PCT/CN2016/082114 CN2016082114W WO2016180375A1 WO 2016180375 A1 WO2016180375 A1 WO 2016180375A1 CN 2016082114 W CN2016082114 W CN 2016082114W WO 2016180375 A1 WO2016180375 A1 WO 2016180375A1
Authority
WO
WIPO (PCT)
Prior art keywords
bag body
ozone
supply device
ozone supply
introduction tube
Prior art date
Application number
PCT/CN2016/082114
Other languages
English (en)
French (fr)
Inventor
中本重阳
铃木肇
永井孝之
山内智博
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
Priority to US15/573,315 priority Critical patent/US10184209B2/en
Priority to KR1020177035540A priority patent/KR101972259B1/ko
Priority to CN201680027835.3A priority patent/CN107532373B/zh
Priority to EP16792225.1A priority patent/EP3296455A4/en
Publication of WO2016180375A1 publication Critical patent/WO2016180375A1/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
    • 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
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/16Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using chemical substances
    • A61L2/20Gaseous substances, e.g. vapours
    • A61L2/202Ozone
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/24Apparatus using programmed or automatic operation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L9/00Disinfection, sterilisation or deodorisation of air
    • A61L9/015Disinfection, sterilisation or deodorisation of air using gaseous or vaporous substances, e.g. ozone
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L9/00Disinfection, sterilisation or deodorisation of air
    • A61L9/015Disinfection, sterilisation or deodorisation of air using gaseous or vaporous substances, e.g. ozone
    • A61L9/04Disinfection, sterilisation or deodorisation of air using gaseous or vaporous substances, e.g. ozone using substances evaporated in the air without heating
    • A61L9/12Apparatus, e.g. holders, therefor
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06MTREATMENT, NOT PROVIDED FOR ELSEWHERE IN CLASS D06, OF FIBRES, THREADS, YARNS, FABRICS, FEATHERS OR FIBROUS GOODS MADE FROM SUCH MATERIALS
    • D06M11/00Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereof; Such treatment combined with mechanical treatment, e.g. mercerising
    • D06M11/32Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereof; Such treatment combined with mechanical treatment, e.g. mercerising with oxygen, ozone, ozonides, oxides, hydroxides or percompounds; Salts derived from anions with an amphoteric element-oxygen bond
    • D06M11/34Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereof; Such treatment combined with mechanical treatment, e.g. mercerising with oxygen, ozone, ozonides, oxides, hydroxides or percompounds; Salts derived from anions with an amphoteric element-oxygen bond with oxygen, ozone or ozonides
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2202/00Aspects relating to methods or apparatus for disinfecting or sterilising materials or objects
    • A61L2202/10Apparatus features
    • A61L2202/12Apparatus for isolating biocidal substances from the environment
    • A61L2202/123Connecting means
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2202/00Aspects relating to methods or apparatus for disinfecting or sterilising materials or objects
    • A61L2202/20Targets to be treated
    • A61L2202/26Textiles, e.g. towels, beds, cloths
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2209/00Aspects relating to disinfection, sterilisation or deodorisation of air
    • A61L2209/20Method-related aspects
    • A61L2209/21Use of chemical compounds for treating air or the like
    • A61L2209/212Use of ozone, e.g. generated by UV radiation or electrical discharge

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 air in which the high-temperature and high-humidity air is circulated, thereby introducing circulating air that adsorbs the odor of the clothes.
  • the ozone deodorizer is used to deodorize the clothes (see Patent Document 1).
  • the clothes refreshing device is provided with a storage, the main body of the device tends to be large. Therefore, it is conceivable to provide a bag body capable of accommodating clothes and an ozone supply device for supplying ozone-containing air into the bag body so as to be easily placed in the home without requiring a large installation space, and to be housed in the bag.
  • the laundry of the body is subjected to a laundry treatment device such as deodorization by ozone.
  • the laundry treating apparatus can be configured such that an air is supplied between the bag body and the ozone supply device by the introduction pipe, and the ozone-containing air is supplied to the bag body through the introduction pipe.
  • an air is supplied between the bag body and the ozone supply device by the introduction pipe, and the ozone-containing air is supplied to the bag body through the introduction pipe.
  • a structure in which the introduction tube fixed to the bag body is detachably attached to the ozone supply device can be employed.
  • Patent Document 1 Japanese Patent Publication No. 04-327900
  • the introduction tube is attached to the ozone supply device in a predetermined direction so that the orientation of the bag body and the orientation of the ozone supply device have a predetermined relationship, for example, such that the front surface of the bag body faces the front surface of the ozone supply device in the same direction.
  • the orientation of the bag body and the ozone supply are caused when the introduction tube is mounted to the ozone supply device.
  • the orientation of the device is not a desired relationship, which may adversely affect the performance of the laundry treating device.
  • the present invention has been made in view of the above problems, and an object thereof is to provide a laundry treating apparatus in which a garment can maintain a desired relationship between the orientation of the bag body and the orientation of the ozone supply device.
  • a laundry treating apparatus includes: a bag body that stores laundry; an ozone supply device that supplies air containing ozone into the bag body; and an introduction pipe that contains ozone containing the ozone supply device Air is guided into the bag body; a fixing portion is formed on the bag body, and one end portion of the introduction tube is fixed; and a mounting portion is formed on the ozone supply device for specifying the other end portion of the introduction tube Mounted detachably.
  • a blocking means for preventing the rotation of the introduction pipe is provided in an in-plane direction perpendicular to a direction in which the introduction pipe is attached to the fixing portion.
  • the introduction tube is fixed by the stopper unit so as not to fall off from the bag body and to rotate.
  • the orientation of the bag body and the orientation of the ozone supply device can be maintained in a desired relationship.
  • the laundry treating apparatus of the present aspect may be configured such that one end portion of the introduction tube is disposed to have a cylindrical shape, and the fixing portion has a cylindrical shape and surrounds one end portion of the introduction tube.
  • the blocking unit adopts a structure including a binding band and a protrusion, wherein the binding band is wound around the fixing portion that surrounds one end portion of the introduction tube, and the fixing portion is fastened to the inside.
  • the protruding portion is formed at one end portion of the introduction tube, and is engaged with a joint portion between the head portion of the binding band and the belt portion.
  • the binding band can effectively prevent the rotation of the introduction tube relative to the bag body.
  • the fixing portion may include a belt passing portion and a shielding portion, wherein the belt passing portion is passed through the belt portion, and the shielding portion will not pass through the belt passing portion The joint portion exposed to the fixing portion is shielded.
  • the belt portion passes through the belt passing portion, and the joint portion which is not exposed through the belt passing portion is shielded by the shielding portion. Therefore, it is difficult to see the binding band from the outside, and therefore the appearance of the fixing portion is beautiful.
  • the laundry treating apparatus of the present aspect may further include a base, a stay, and a bag holding portion, wherein the base fixes the ozone supply device, the support extends upward from the base, and the bag holding portion is disposed on the pillar The upper end holds the upper portion of the bag body such that the front surface of the bag body faces the same side of the ozone supply device.
  • the introduction pipe is attached to the ozone supply device such that the front surface of the bag body faces the same side of the ozone supply device.
  • the upper portion and the lower portion of the bag body are respectively held by the bag body holding portion and the ozone supply device such that the front surface of the bag body faces the same direction as the one surface of the ozone supply device.
  • the introduction tube can be prevented from rotating relative to the bag body, it is not easy to cause the bag body to be twisted due to the change in the orientation of the lower portion of the bag body due to the rotation of the introduction tube. By preventing the bag from twisting in this way, the air containing ozone can be smoothly circulated in the bag body.
  • FIG. 1 is a view showing a configuration of a laundry deodorizing device according to an embodiment.
  • FIG. 2 is a view showing a central portion of a lower portion of the bag body according to the embodiment.
  • FIG 3 is a view showing a central portion of a lower portion of the bag body according to the embodiment.
  • FIG. 4 is a view showing a configuration of an introduction pipe according to an embodiment.
  • FIG. 5 is a schematic view for explaining a flow of attaching an introduction tube to a bag body according to an embodiment.
  • FIG. 6 is a view showing a central portion of a lower portion of a bag body in a state in which an introduction pipe is attached according to the embodiment.
  • FIG. 7 is a view showing a configuration of an exhaust/hang hanger holding unit according to an embodiment.
  • FIG. 8 is a view showing a configuration of an exhaust/hang hanger holding unit according to an embodiment.
  • FIG. 9 is a view showing a configuration of an exhaust/hang hanger holding unit according to an embodiment.
  • FIG. 10 is a view showing a configuration of an exhaust/hang hanger holding unit according to an embodiment.
  • FIG. 11 is a view showing a configuration of a bag body holding portion according to the embodiment.
  • FIG. 12 is a vertical cross-sectional view showing a main part of a state in which the bag body according to the embodiment is attached to the bag body holding portion.
  • FIG. 13 is a view showing a configuration of an ozone supply device according to an embodiment.
  • FIG. 14 is a view showing a configuration of an ozone supply device according to an embodiment.
  • FIG. 15 is a view showing a configuration of an ozone supply device according to an embodiment.
  • FIG. 16 is a view showing a configuration of an ozone supply device according to an embodiment.
  • FIG. 17 is a view for explaining the connection of the introduction pipe to the ozone supply device and the detection of the connection by the pipe detection unit according to the embodiment.
  • FIG. 18 is a view for explaining an operation in which the lock detecting unit according to the embodiment detects that the input port of the bag has been locked by the zipper.
  • FIG. 19 is a view for explaining an operation in which the lock detecting unit according to the embodiment detects that the input port of the bag has been locked by the zipper.
  • FIG. 20 is a view showing a configuration of an aroma supply unit according to the embodiment.
  • 21 is a view showing a configuration of an aroma supply unit according to an embodiment.
  • FIG. 22 is a view showing a configuration of a laundry deodorizing apparatus according to a modification.
  • FIG. 1 is a view showing the configuration of the laundry deodorizing device 1.
  • 1(a) is a perspective view of the clothes deodorizing device 1
  • FIG. 1(b) is a perspective view of the base 50, the stay 60, and the bag holding portion 70 constituting the laundry deodorizing device 1.
  • a laundry deodorizing device 1 includes a bag body 10, an ozone supply device 20, an introduction pipe 30, an exhaust/hanger holding unit 40, a base 50, a stay 60, a bag holding portion 70, and an aroma supply unit 80.
  • the bag body 10 accommodates various clothes such as a suit and a coat.
  • the bag body 10 is formed by laminating a plurality of fabrics having no gas permeability so that the sealing property is sufficient.
  • the bag body 10 has a substantially elongated rectangular parallelepiped shape which is flat in front and rear, and is composed of a front material 10a constituting the front surface, a rear fabric 10b constituting the rear surface, and upper and lower left frames.
  • the side material 10c on the right side is formed.
  • 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. Further, the front and rear dimensions of the bag body 10 are set to a size capable of accommodating one piece of clothing. In addition, the upper and lower dimensions of the bag body 10 may be set so as not to accommodate the length of the long-length clothing, and the front-back dimension may be set to a size that can accommodate two or three pieces of clothes in a front-rear arrangement.
  • a slit constituting an insertion opening of the laundry is formed from the upper end to the lower end in the approximate center of the left-right direction.
  • a zipper 12 is attached to the input port 11.
  • the start end portion 12a and the end portion 12b when the zipper 12 is locked are located at the upper end and the lower end of the bag body 10, respectively.
  • the slider 12c of the zipper 12 moves between the start end portion 12a and the end portion 12b.
  • the self-weight of the slider 12c acts in the locking direction in a state where the insertion port 11 is locked. Therefore, unlike the case where the direction in which the slider 12c is pulled up constitutes the locking direction of the insertion port 11, there is no possibility that the distal end portion 12b, that is, the closed portion of the zipper 12, is opened due to the weight of the slider 12c.
  • the ozone supply device 20 performs a deodorizing operation for deodorizing the laundry and a flavoring operation for adding the fragrance to the laundry.
  • the ozone supply device 20 supplies ozone-containing air to the bag body 10 by performing an operation of containing ozone in the discharged air during the deodorizing operation. Further, the ozone supply device 20 supplies ozone-free air to the bag body 10 by performing an operation of preventing ozone from being emitted from the discharged air during the scenting operation.
  • 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. During the deodorizing operation, the ozone-containing air passes through the introduction pipe 30, and the ozone-free air passes through the introduction pipe 30 during the scenting operation.
  • the exhaust and hanger holding unit 40 is disposed at an upper portion of the rear surface of the bag body 10.
  • the exhaust-and-container holding unit 40 integrally forms the exhaust portion 41 having an ozone removing function and the hanger holding portion 42 for holding the laundry hanger for hanging the laundry with a resin material.
  • the air containing ozone which contributes to the deodorization of the laundry is discharged to the outside of the bag body 10 through the exhaust portion 41 in the bag body 10. When passing through the exhaust portion 41, ozone contained in the air is removed.
  • the base 50 is a flat plate having a predetermined shape such as a square shape.
  • the ozone supply device 20 is placed on the base 50.
  • a support portion 51 for supporting the stay 60 is formed at the rear of the base 50.
  • the first fixing portion 52 and the second fixing portion 53 for fixing the ozone supply device 20 such that the front surface of the ozone supply device 20 faces the front surface of the base 50 are formed.
  • the first fixing portion 52 is composed of a plurality of hook-shaped claw portions 52a.
  • the second fixing portion 53 includes an L-shaped elastic rod 53a whose one end portion is supported by the base 50, a projection 53b formed slightly rearward of one end portion of the elastic rod 53a, and a pressing portion formed at the other end portion of the elastic rod 53a. Part 53c. When the pressing portion 53c is pressed downward, the elastic rod 53a is elastically deformed, and the projection 53b is retracted downward.
  • the strut 60 is composed of two rods 61.
  • the lower end portion of the pillar 60 is attached to the support portion 51 and stands upright with respect to the base 50.
  • the pillar 60 may be composed of one or three or more rods instead of the two rods 61.
  • a telescopic mechanism capable of adjusting the height of the strut 60 may be provided in the strut 60.
  • a bag holding portion 70 is attached to the upper end of the stay 60.
  • the bag holding portion 70 suspends the bag body 10 so as not to be movable in any of the front, rear, vertical, and left and right directions.
  • the aroma supply unit 80 is used when the scenting operation is performed by the ozone supply device 20.
  • the aroma supply unit 80 is detachably attached to the introduction pipe 30, and the air supplied to the bag body 10 contains an aromatic component.
  • FIG. 2 and 3 are views showing a central portion of a lower portion of the bag body 10.
  • Fig. 2(a) is a front perspective view
  • Fig. 2(b) is a rear cross-sectional view
  • Fig. 3(a) is a perspective view when viewed from the front lower side
  • Fig. 3(b) is a perspective view when viewed from the lower side of the back surface
  • 3(d) is a side cross section of the upper portion of the end cap 13.
  • the end cover 13 On the inner surface of the front material 10a of the bag body 10, the end cover 13 is attached so as to cover the end portion 12b of the zipper 12, that is, the closed portion from the inner side of the bag body 10.
  • the end cap 13 is formed in a rectangular shape from a fabric having no gas permeability, and the lower edge portion 13a, the right edge portion 13b, and the left edge portion 13c are closely attached to the inner surface of the front sheet 10a by a fixing method such as sewing or bonding.
  • the closed portion of the zipper 12 is liable to become a slightly opened state.
  • the periphery of the closed portion is covered by the end cover, and during the deodorizing operation, the pressure in the bag body 10 rises due to the air introduced into the bag body 10, and the end cover 13 is pushed to the end cover 13 due to the increase in the pressure.
  • the front surface side of the bag body 10 is likely to be in a state of being in close contact with the inner surface of the front material 10a. Therefore, even if the closed portion of the zipper 12 is slightly opened, it is difficult for the ozone-containing air to leak from the closed portion.
  • the upper end part of the end cover 13 is accommodated in the inside in the thickness part.
  • a filler 13d made of urethane rubber or the like.
  • the detection lock 90 is coupled to the slider 12c via the connecting rope 95, more specifically, to the handle of the slider 12c.
  • the detection lock 90 has a cylindrical shape, and a protruding portion 91 is formed at a lower end portion of the circumferential surface thereof, and a ring portion 92 for fixing the connecting rope 95 is formed at an upper end portion thereof.
  • One end of the connecting rope 95 is coupled to the handle of the slider 12c, and the other end is coupled to the loop portion 92.
  • the tie rope 95 may be a rope having a predetermined length, such as by a ribbon, a chain, a metal wire, or the like.
  • an air inlet 14 is provided at a central portion of the lower surface, and the cylindrical portion 15 is suspended from the inlet 14.
  • the cylindrical portion 15 surrounds the distal end portion of the introduction tube 30 inserted into the inlet 14.
  • the distal end portion of the introduction tube 30 is fixed to the cylindrical portion 15.
  • the cylindrical portion 15 corresponds to the fixing portion of the present invention.
  • a substantially annular belt passing portion 16 is provided on the outer peripheral surface of the cylindrical portion 15 so as to be juxtaposed in the circumferential direction. Both end portions of the belt passing portions 16 are opened at the rear surface portion 15a of the cylindrical portion 15 constituting the rear surface side of the bag body 10. Each of the belt passing portions 16 passes through a binding belt to be described later.
  • a strip-shaped shielding portion 17 is provided on the outer circumferential surface of the cylindrical portion 15 in order to shield the rear surface portion 15a.
  • One end side of the shielding portion 17 is attached to the vicinity of the opening end 16a on the side of the upper and lower belt passing portions 16.
  • a surface on one side of the velcro 18 is formed, for example, a hook surface 18a, and another velcro 18 is formed in the vicinity of the opening end 16b on the other side of the upper and lower belt passing portion 16.
  • the side surface such as the rounded surface 18b.
  • FIG. 4 is a view showing the structure of the introduction pipe 30.
  • Fig. 4 (a) is a perspective view when viewed from the lower end side
  • Fig. 4 (b) is a perspective view when viewed from the upper end side.
  • the introduction pipe 30 includes a cylindrical main body portion 31a having a relatively small outer diameter and a cylindrical connecting portion 31b having a relatively large outer diameter formed below the main body portion 31a.
  • the boundary portion between the main body portion 31a and the connecting portion 31b has a shape in which the contours are gradually concentrated together.
  • a plurality of engaging pieces 32 for fixing the aroma supply unit 80 are formed at the upper end of the main body portion 31a.
  • the front flange portion 33 and the rear are formed at positions forward and rearward of the bag body 10 in a state where the introduction tube 30 is attached to the bag body 10 at a position slightly lower than the engagement piece 32 of the main body portion 31a.
  • Flange portion 34 At a position slightly lower than each of the flange portions 33 and 34 of the main body portion 31a, a predetermined space is interposed therebetween
  • An annular upper flange portion 35 and a lower flange portion 36 are formed in the partition.
  • a protruding portion 37 that extends vertically is formed at a position facing the rear of the bag body 10 in a state of being attached to the bag body 10.
  • the ridge portion 37 is formed in a shape similar to a triangular prism by a triangular rib 37a arranged in the vertical direction and a longitudinal rib 37b connecting the triangular ribs 37a.
  • the ridge portion 37 corresponds to the protrusion portion of the present invention.
  • the right claw portion 38 and the left claw portion 39 are formed toward the right side of the bag body 10 and the position toward the left side.
  • FIG. 5 is a schematic view for explaining a flow of attaching the introduction tube 30 to the bag body 10.
  • the introduction pipe 30 is inserted into the front portion of the lower flange portion 36 in the cylindrical portion 15 so that the ridge portion 37 is positioned in the rear surface portion 15a.
  • the band 19 is inserted into the belt passing portion 16, and the band 19 is wound around the cylindrical portion 15.
  • the binding band 19 is composed of a head portion 19a and a belt portion 19b.
  • the belt portion 19b passes through the head portion 19a, and the cylindrical portion 15 is fastened to the inner side by the binding band 19.
  • the excess portion of the belt portion 19b is cut off.
  • the other end side of the shielding portion 17 is fixed to the belt passing portion 16 by the velcro 18, and the head portion 19a is shielded by the shielding portion 17. In this way, the installation of the introduction tube 30 to the bag body 10 is completed.
  • FIG. 6 is a view showing a central portion of a lower portion of the bag body 10 in a state in which the introduction tube 30 is attached.
  • Fig. 6 (a) is a rear cross-sectional view of the lower central portion of the bag body 10
  • Fig. 6 (b) is a cross-sectional view taken along line AA' of Fig. 6 (a)
  • Fig. 6 (c) is a lower central portion of the bag body 10 as viewed from below.
  • the introduction tube 30 when the introduction tube 30 is attached to the cylindrical portion 15 of the bag body 10, the upper and lower flange portions 35 and 36 and the binding band 19 are engaged in the vertical direction to be introduced.
  • the tube 30 is fixed to the cylindrical portion 15 in the vertical direction. That is, the introduction pipe 30 passes through the lower flange portion 36, does not move upward, does not enter the inside of the bag body 10, and does not move downward by the upper flange portion 35, and does not escape from the bag body 10. Further, as shown in Fig.
  • the joint portion 19c of the head portion 19a of the binding band 19 and the belt portion 19b is engaged with the ridge portion 37 of the introduction tube 30 in the circumferential direction, whereby the introduction tube 30 is circumferentially The direction is fixed to the cylindrical portion 15.
  • the introduction tube 30 is attached to the bag body 10 so as not to be detached and not rotated.
  • the right claw portion 38 and the left claw portion 39 of the introduction tube 30 have a predetermined positional relationship with respect to the bag body 10. That is, as shown in FIG. 6(c), the right claw portion 38 is located slightly forward of the center line P of the bag body 10 in the front-rear direction, and the left claw portion 39 is located slightly smaller than the center line P of the bag body 10 in the front-rear direction. Back position.
  • the tip end portion of the introduction tube 30 is located above the lower surface of the bag body 10.
  • the way is outstanding.
  • the front flange portion 33 and the rear flange portion 34 are located slightly above the lower surface of the bag body 10.
  • FIG. 7 to 10 are views showing the configuration of the exhaust-and-hanger holding unit 40.
  • FIG. 7 is a perspective view showing the exploded exhaust-container holding unit 40 before being attached to the bag body 10.
  • 8(a) and 8(b) are rear perspective views of the front unit 200 and the rear unit 100 constituting the exhaust/sheath holding unit 40, respectively.
  • Fig. 9 (a) is a perspective view of the exhaust-eilet holder holding unit 40 attached to the bag body 10
  • Fig. 9 (b) is a cross-sectional view taken along line B-B' of Fig. 9 (a) in which the exhaust portion 41 is cut in the horizontal direction.
  • 10(a) and (b) are a rear view and a front view, respectively, of an upper portion of the bag body 10. It should be noted that the front surface of the bag body 10 is omitted for convenience in FIGS. 7 and 10(b), and the bag body 10 is drawn transparent in FIG. 9(a).
  • an exhaust portion 41 is formed in the left half portion, and a hanger holding portion 42 is formed on the front side of the right half portion. Further, in the exhaust/cloth hanger holding unit 40, a mounting portion 43 to which the bag holding portion 70 is attached is formed on the rear side of the right half.
  • the exhaust and hanger holding unit 40 is formed by combining the rear unit 100 and the front unit 200.
  • the rear unit 100 and the front unit 200 are formed of a material harder than the bag body 10 such as a resin material.
  • Each of the rear unit 100 and the front unit 200 has constituent elements of the exhaust portion 41, the hanger holding portion 42, and the attachment portion 43 in the rear plate 101 and the front plate 201 having a horizontally long rectangular shape.
  • the exhaust portion 41 includes an exhaust pipe 110 formed on the rear plate 101 and a shroud 210 formed on the front plate 201.
  • An ozone removal filter 44 is attached to the exhaust unit 41.
  • the exhaust pipe 110 is formed to protrude rearward and has a rectangular shape.
  • the front surface of the exhaust pipe 110 is opened as an inlet and outlet 111 of the ozone removing filter 44, and the rear surface is opened as an exhaust port 112.
  • the periphery of the entrance and exit 111 is surrounded by a guide frame 113 that protrudes forward.
  • a lattice 114 is formed at the exhaust port 112.
  • the tube cover 210 is formed to protrude slightly forward, and includes a rectangular outer frame 211 and a lattice 212 formed in the outer frame 211.
  • the thickness of the outer frame 211 is larger than the thickness of the lattice 212, and a groove 213 is formed inside the outer frame 211.
  • the ozone removing filter 44 has a rectangular parallelepiped shape.
  • an activated carbon/catalyst filter obtained by transferring activated carbon and a catalyst to a substrate such as aluminum can be used.
  • the ozone removing filter 44 covers the periphery of the ozone removing filter 44 by a mesh cover 44a so as not to be touched by a hand. It should be noted that the ozone removal filter 44 may also use other filters having an ozone removal effect, such as a photocatalytic ceramic filter.
  • the hanger holding portion 42 includes a first holding portion 120 that extends forward from the front surface of the rear plate 101 and a second holding portion 121 that is formed in front of the first holding portion 120.
  • a cylindrical insertion opening portion 122 that protrudes upward is formed in the first holding portion 120.
  • the second holding portion 121 has a hook shape that faces upward.
  • a guide body 130 is formed on the right and left sides of the hanger holding portion 42. Further, an opening portion 220 through which the hanger holding portion 42 and the left and right guide bodies 130 pass is formed in the front plate 201. A frame body 221 is formed around the opening 220.
  • the mounting portion 43 includes a main body portion 140 and a mounting hole 141.
  • the main body portion 140 is formed in a square box shape and protrudes rearward from the rear surface of the rear plate 101.
  • the mounting hole 141 is formed on the rear surface of the main body portion 140 and extends beyond the rear plate 101 to the inside of the hanger holding portion 42.
  • a notch portion 142 is formed on the lower surface of the mounting hole 141 from the open end of the mounting hole 141 toward the inside.
  • a screw hole 230 through which the screw 300 passes is formed at the four-inch position of the front plate 201 and the upper end portion and the lower end portion of the center in the left-right direction. Further, a reinforcing rib 231 extending over the entire circumference is formed on the outer peripheral edge of the front surface of the front plate 201.
  • Mounting projections 150 for fixing the screws 300 are formed at the four-inch position of the rear plate 101 and the upper end portion and the lower end portion of the center in the left-right direction. Further, on the rear surface of the rear plate 101, a reinforcing first rib 151 that is connected from the outer upper edge portion of the rear plate 101 to the lower right end of the main body portion 140 from the upper right end of the main body portion 140 is formed on the right side of the mounting portion 43. A second rib 152 that is connected to the left lower end of the main body portion 140 from the outer edge portion of the rear plate 101 from the upper left end of the main body portion 140 is formed on the left side of the mounting portion 43. Further, on the rear surface of the rear plate 101, two reinforcing third ribs 153 extending downward from both sides of the mounting hole 141 are formed.
  • a first opening 10d is formed at an upper portion of the rear surface of the bag body 10 at a position corresponding to the exhaust portion 41, and a second opening portion 10e is formed at a position corresponding to the hanger holding portion 42 and the left and right guide bodies 130. Further, on the upper portion of the rear surface of the bag body 10, an insertion hole 10f is formed at a position corresponding to the screw hole 230 of the front plate 201 and the mounting boss 150 of the rear plate 101.
  • the ozone removing filter 44 is housed in the exhaust pipe 110 of the rear unit 100.
  • the guide frame 113 is inserted into the first opening portion 10d and the left and right guide bodies 130 are inserted into the second opening portion 10e, and the rear unit 100 is attached to the upper portion of the rear surface of the bag body 10 from the outside of the bag body 10.
  • the front unit 200 is attached to the rear unit 100 from the inner side of the bag body 10.
  • the front unit 200 and the rear unit 100 which are combined to sandwich the upper portion of the rear surface of the bag body 10 are fixed by screws 300.
  • the exhaust-and-hanger holding unit 40 is attached to the upper portion of the rear surface of the bag body 10 while being assembled.
  • the guide frame 113 and the guide body 130 are inserted into the first opening portion 10d and the second opening portion 10e, respectively. Thereby, the rear unit 100 becomes easy to be attached to the bag body 10, and the assembly of the exhaust and coat hanger holding unit 40 becomes easy.
  • the distal end portion of the guide frame 113 of the exhaust pipe 110 is fitted into the groove 213 of the outer frame 211 of the cap 210.
  • the flat portion around the exhaust pipe 110 of the rear plate 101 functions as the rear flange portion F1 that covers the periphery of the first opening portion 10d from the outside, and the flat portion around the tube cover 210 of the front plate 201 serves as the inner side.
  • the front flange portion F2 covering the periphery of the first opening portion 10d functions.
  • FIG. 9(b) when the exhaust portion 41 is attached to the first opening portion 10d, the first opening portion 10d is in a state in which its periphery is sealed by the rear flange portion F1 and the front flange portion F2. Thereby, the ozone-containing air in the bag body 10 becomes difficult to leak from the first opening portion 10d.
  • the flat portion of the hanger holding portion 42 of the rear panel 101 and the periphery of the left and right guide body 130 functions as the rear flange portion F3 that covers the periphery of the second opening portion 10e from the outside, and the periphery of the opening portion 220 in the front panel 201 is provided.
  • the flat portion functions as a front flange portion F4 that covers the periphery of the second opening portion 10e from the inside.
  • the attachment hole 141 of the attachment portion 43 is located at the center of the bag body 10 in the left-right direction.
  • the hanger holding portion 42 is located in the bag body 10 at the center portion of the bag body 10 in the left-right direction.
  • a hook for the clothes hanger H for hanging clothes is hooked on the second holding portion 121 of the hanger holding portion 42, and a top cover 440 is attached to the insertion opening portion 122 of the first holding portion 120.
  • the upper cover 440 is formed in a horizontally long plate shape that is slightly curved into an arc shape.
  • the upper surface of the bag body 10 is reinforced from the inner side by the upper cover 440.
  • the upper portion 10b1 of the rear fabric 10b constituting the upper portion of the rear surface of the bag body 10 is made harder than the other portions 10b2 by making the thickness larger than the other portion 10b2 of the rear fabric 10b or changing the fabric material of the other portion 10b2. Thereby, the exhaust-container holding unit 40 can be reliably held by the upper portion of the rear surface of the bag body 10.
  • FIG. 11 is a view showing a configuration of the bag holding portion 70.
  • Fig. 11(a) is a front perspective view
  • Fig. 11(b) is a rear perspective view.
  • FIG. 12 is a vertical cross-sectional view of a main portion in a state in which the bag body 10 is attached to the bag holding portion 70.
  • the bag holding portion 70 includes a box-shaped main body portion 71 and a holding portion 72 that extends forward from the main body portion 71.
  • An insertion hole 73 having a cylindrical shape is formed on the left and right sides of the main body portion 71. The upper end portion of the rod 61 is inserted into the insertion hole 73.
  • An engaging claw portion 74 is formed at an upper portion of the root portion of the holding portion 72.
  • An opening 75 is formed around the engagement claw portion 74.
  • the inside of the holding portion 72 is hollow, and the operation piece 76 that has hanged from the engagement claw portion 74 protrudes below the holding portion 72 through the inside of the opening portion 75 and the holding portion 72. When the operation piece 76 is pulled downward, the engaging claw portion 74 is retracted to the lower side.
  • the distal end portion of the holding portion 72 has a hook shape that faces upward.
  • the clothes hanger can be hooked at the distal end portion.
  • a support piece 77 is formed on the left and right sides of the holding portion 72 at the lower end of the front surface of the main body portion 71.
  • the user inserts the holding portion 72 of the bag body holding portion 70 into the attachment hole 141 of the exhaust and hanger holding unit 40.
  • the operation piece 76 of the holding portion 72 passes through the cutout portion 142 of the attachment hole 141.
  • An engaging hole 143 is formed in an upper portion of the inlet portion of the mounting hole 141.
  • the holding portion 72 is not detached from the attachment hole 131, and the bag body 10 is fixed to the bag holding portion 70 so as not to move in the up, down, left, and right directions, and to be detached from the front side.
  • the lower surface of the attachment portion 43 is supported by the left and right support pieces 77.
  • the front surface of the bag body 10 faces the front direction of the chassis 50.
  • FIG. 13 to 16 are views showing the configuration of the ozone supply device 20.
  • Fig. 13 (a) is a perspective view of the ozone supply device 20 in a state where the upper cover 440 is not attached.
  • Fig. 13 (b) is a perspective view of the ozone supply device 20 in a state in which the upper cover 440 is attached.
  • Fig. 14 (a) is a plan view of the ozone supply device 20, and Fig. 14 (b) is a cross-sectional view of the upper surface of the casing 400 of the ozone supply device 20 as seen from the inside.
  • 15(a) to (c) are a left side view, a rear view, and a bottom view, respectively, of the ozone supply device 20, and Figs.
  • Fig. 16 (a) is a longitudinal cross-sectional view of the ozone supply device 20 in a rear view
  • Fig. 16 (b) is a cross-sectional view of a main portion of the ozone supply device 20 in a plan view.
  • illustration of the right insertion recessed part 415, the left insertion recessed part 416, the lock insertion recessed part 417, the tube detection part 460, and the lock detection part 470 is abbreviate
  • the ozone supply device 20 includes a housing 400, a vent pipe 500, an ozone generator 600, a blower fan 700, a getter unit 800, and a control unit 900.
  • the housing 400 includes a case body 410, a front cover 420, a suction hood 430, an upper cover 440, and an operation portion 450.
  • the case main body 410 has a horizontally long rectangular parallelepiped shape in which the upper surface is gently convexly curved.
  • a front surface opening portion 411 is formed on the front surface of the case main body 410, and the front surface opening portion 411 is detachably locked by the front cover 420.
  • a concave surface portion 412 which is recessed into the same shape as that of the upper cover 440 is formed.
  • an insertion opening portion 413 which is recessed in a circular shape is provided.
  • a discharge port 414 having a lattice-shaped rebar 414a is formed.
  • the insertion mouth portion 413 corresponds to the attachment portion of the present invention.
  • a right insertion concave portion 415 and a left insertion concave portion 416 having shapes corresponding to the right claw portion 38 and the left claw portion 39 of the introduction tube 30 are formed on the left and right sides of the insertion opening portion 413.
  • the right claw portion 38 inserted into the right insertion recessed portion 415 is moved by only about one right claw portion 38 in the rightward direction.
  • a right opening portion 415a is formed.
  • the left claw portion 39 inserted into the left insertion recess 416 is inserted.
  • the left opening portion 416a is formed to move only about the amount of the left claw portion 39 in the right turn direction.
  • a lock insertion recess 417 having a shape corresponding to the detection lock 90 is formed at the right end portion. As shown in FIGS. 14(a) and 14(b), an opening portion 417a is formed on the side surface on the rear side of the lock insertion recessed portion 417.
  • the top cover 440 which is detached from the bag body 10 can be attached to the concave portion 412. Thereby, since the storage place of the top cover 440 detached from the bag body 10 is secured, it is possible to prevent the top cover 440 from being lost when not in use. Further, it is possible to prevent dust or the like from entering the inside of the casing 400 from the discharge port 414 and the lock insertion recess 417 when not in use.
  • a tube detecting portion 460 and a lock detecting portion 470 are disposed inside the upper surface of the case body 410.
  • the tube detecting portion 460 includes a detecting switch 461 and a relay lever 462.
  • the detection switch 461 has a switch portion 461a and a lever portion 461b for pressing the switch portion 461a.
  • the relay lever 462 is rotatably mounted on a rotating shaft 463 formed inside the upper surface of the case main body 410, one end of which is located near the right insertion recess 415, and the other end of which is in contact with the detecting switch 461.
  • the lock detecting portion 470 includes a detecting switch 471 and a relay lever 472.
  • the detection switch 471 has a switch portion 471a and a rod portion 471b for pressing the switch portion 471a.
  • the relay lever 472 is rotatably mounted on a rotating shaft 473 formed inside the upper surface of the casing main body 410, one end of which is located near the lock insertion recess 417, and the other end of which is in contact with the detecting switch 471.
  • an operation portion 450 is provided on the left side surface of the case body 410.
  • the operation unit 450 includes a power button 451, a deodorizing button 452, and a scent button 453.
  • the power button 451 is a button for turning on and off the power of the laundry deodorizing device 1.
  • the deodorizing button 452 is a button for starting the deodorizing operation.
  • the scent button 453 is a button for starting the scenting operation.
  • the operation unit 450 includes a first notification unit 454 and a second notification unit 455.
  • the first notification unit 454 is composed of, for example, an LED, and is notified by lighting that the introduction tube 30 is not connected to the ozone supply device 20.
  • the second notification unit 455 is composed of, for example, an LED, and is notified by lighting that the input port 11 of the bag body 10 is not locked.
  • an intake port 418 is formed on the rear surface of the casing main body 410, and the intake port 418 is detachably locked by the suction hood 430.
  • the suction hood 430 is formed with a plurality of suction holes 431.
  • a first mounting hole 419a is formed at a position corresponding to each of the claw portions 52a of the first fixing portion 52 of the base 50, and a protrusion with the second fixing portion 53 is formed.
  • a second mounting hole 419b is formed at a position corresponding to 53b.
  • the ozone supply device 20 is fixed to the base 50 so as not to be movable up and down, front and rear, and left and right directions. Therefore, it is possible to prevent the ozone supply device 20 from being reversed by the force applied to the ozone supply device 20 when the bag body 10 is expanded by the air supplied from the ozone supply device 20.
  • a vent pipe 500 Inside the casing 400, a vent pipe 500, an ozone generator 600, a blower fan 700, an air suction unit 800, and a control unit 900 are disposed.
  • the vent pipe 500 includes a pipe main body 510 and a pipe cover 520.
  • the introduction port 511 of the pipe main body 510 is connected to the discharge port 720 of the blower fan 700, and the outlet port 512 is connected to the discharge port 414.
  • An ozone generator 600 is disposed in the vicinity of the introduction port 511 in the pipe main body 510.
  • the pipe main body 510 has a shape that extends to the left from the introduction port 511 and is bent so as to be folded back to the right at a portion where the ozone generator 600 is disposed, and then extends upward to the outlet 512. That is, the portion of the pipe main body 510 that constitutes the downstream side of the ozone generator 600 is meandered in an S shape.
  • the ozone generator 600 is a discharge type ozone generator that generates a discharge such as corona discharge or silent discharge between a pair of electrodes, and generates ozone by air passing between a pair of electrodes.
  • An opening portion 513 is formed at a position corresponding to the ozone generator 600 on the front surface of the pipe main body 510. The opening portion 513 is locked by the tube cover 520. The user can remove the front cover 420 and the tube cover 520, thereby maintaining the ozone generator 600 by cleaning the electrodes or the like through the opening 513.
  • the blower fan 700 is a centrifugal fan, and has a suction port 710 on the side surface and a discharge port 720 on the circumferential surface.
  • the suction port 710 is opposed to the suction port 418 on the rear surface of the casing 400.
  • the blower fan 700 takes air from the suction port 710 and sends the acquired air to the ozone generator 600 in the vent pipe 500.
  • the blower fan 700 can also use a fan other than a centrifugal fan, such as an axial fan.
  • a suction unit 800 is provided between the intake port 418 of the casing 400 and the suction port 710 of the blower fan 700.
  • the getter unit 800 includes an intake pipe 810, a dust filter 820, and an ozone removal filter 830.
  • the inside of the intake pipe 810 is divided into the first filter on the side of the intake port 418 by the lattice-shaped partition plate 811.
  • the dust filter 820 is housed in the first filter housing portion 812
  • the ozone removal filter 830 is housed in the second filter housing portion 813.
  • the dust filter 820 removes dust and the like contained in the air taken from the intake port 418.
  • the ozone removing filter 830 removes ozone contained in the air passing through the dust filter 820.
  • the ozone removal filter 830 can use an activated carbon/catalyst filter.
  • the intake pipe 810 is provided with a connection portion 814 that is connected to the suction port 710 of the blower fan 700, and the connection portion 814 is connected to the second filter accommodation portion 813 through the communication hole 815.
  • the control unit 900 includes a CPU, a memory, and the like, and controls the ozone generator 600 and the blower fan 700.
  • the connection portion 31b of the introduction pipe 30 is inserted into the right insertion recess 415 and the left insertion recess 416 by the right claw portion 38 and the left claw portion 39, respectively. Inserted into the insertion port portion 413. Then, when the introduction tube 30 is rotated to the right as viewed from above, the right claw portion 38 and the left claw portion 39 are respectively moved toward the inner side of the upper surface of the case main body 410 through the right opening portion 415a and the left opening portion 416a, and the case main body 410 The upper surface is engaged. Thereby, the introduction pipe 30 does not fall upward.
  • the right claw portion 38 is located slightly forward, and the left claw portion 39 is located slightly rearward, as compared with the center line P of the bag body 10 in the front-rear direction.
  • the introduction pipe 30 is connected to the ozone supply device 20 such that the front surface of the bag body 10 faces the front direction of the ozone supply device 20 , that is, the front direction of the chassis 50 .
  • the exhaust-container holding unit 40 is fixed to the bag holding portion 70 such that the front surface of the bag body 10 faces the front direction of the chassis 50. Therefore, the bag body 10 is suspended above the ozone supply device 20 with almost no distortion between the upper portion and the lower portion thereof. Thereby, the laundry can be well accommodated in the bag body 10, and the air containing ozone can be smoothly circulated in the bag body 10.
  • the introduction pipe 30 is connected to the ozone supply device 20, and as shown in FIG. 17(b), when the right claw portion 38 moves toward the inner side of the upper surface of the casing main body 410, the one end side of the relay lever 462 is the right claw portion 38. Press.
  • the relay lever 462 rotates, the lever portion 461b is pressed by the other end side of the relay lever 462, and the switch portion 461a is pressed by the pressed lever portion 461b.
  • the detection switch 461 detects that the introduction tube 30 has been mounted on The mouth portion 413 is inserted.
  • the lever portion 461b returns to the initial position while rotating the relay lever 462 by its own elastic force. Thereby, the detection switch 461 detects that the introduction tube 30 has been detached from the insertion port portion 413.
  • the connecting cord 95 that connects the detecting lock 90 to the slider 12c has a length that detects that the lock 90 reaches the lock insertion recess 417 when the zipper 12 is locked to the vicinity of the tip end portion 12b. Therefore, as shown in Fig. 18 (a), when the slider 12c is not located in the vicinity of the distal end portion 12b, the detection lock 90 does not reach the lock insertion concave portion 417, and the user cannot insert the detection lock 90 into the lock insertion concave portion 417. That is, the detection lock 90 does not reach the lock insertion recess 417 at least in a state where the zipper 12 is completely pulled apart. On the other hand, as shown in Fig. 18 (b), in a state where the zipper 12 is completely closed, the detecting lock 90 can reach the lock insertion recess 417, and the lock insertion recess 417 of the detecting lock 90 is inserted.
  • the detection lock 90 is inserted into the lock insertion recess 417, and the inserted detection lock 90 is rotated to the right as viewed from above.
  • the protruding portion 91 of the detecting lock 90 is moved to the inner side of the upper surface of the case main body 410 through the opening portion 417a, and the one end side of the relay rod 472 is pressed by the moving protruding portion 91.
  • the relay lever 472 rotates, and the other end side of the relay lever 472 presses the lever portion 471b, and the switch portion 471a is pressed by the pressed lever portion 471b.
  • the detecting switch 471 detects that the detecting lock 90 has been inserted into the lock insertion recess 417, that is, it is detected that the input port 11 of the bag body 10 has been locked by the zipper 12.
  • the lever portion 471b returns to the initial position while rotating the relay lever 472 by its own elastic force. Thereby, the detection switch 471 detects that the detection lock 90 has been detached from the lock insertion recess 417.
  • FIG. 20 and 21 are views showing the configuration of the aroma supply unit 80.
  • 20(a) and (b) are a plan view and a bottom view of the aroma supply unit 80, respectively, and Fig. 20(c) is a plan view of the aroma supply unit 80 in a state where the upper case 84 is removed.
  • FIG. 21 is a vertical cross-sectional view showing a central portion of a lower portion of the bag body 10 in a state in which the aroma supply unit 80 is attached to the introduction tube 30.
  • Figure 21 (b) shows the aroma attached to the introduction tube 30.
  • the aroma supply unit 80 includes a box-shaped storage box 81 having an elliptical shape in a plan view and an aroma 82 housed in the storage box 81.
  • the storage box 81 includes a lower case 83 whose upper surface is opened and an upper case 84 whose bottom surface is opened.
  • an intake port 83a is formed at one end side in the longitudinal direction, and a plurality of ribs 83b that are adjacent to the intake port 83a and extend in the longitudinal direction are formed.
  • the aromatic body 82 is placed above the plurality of ribs 83b.
  • the bottom surface of the lower casing 83 has an inclined surface 83c that becomes higher toward the other end portion on the other end side.
  • a cylindrical connection port 83d is formed on the bottom surface of the lower casing 83 so as to surround the intake port 83a.
  • a claw portion 83e is formed at a position corresponding to the engagement piece 32 of the introduction tube 30 of the connection port 83d.
  • the upper case 84 is attached to the upper surface of the lower case 83.
  • the upper surface of the upper casing 84 has an inclined surface 84a that becomes higher toward the other end portion at a position opposed to the intake port 83a.
  • an opening 84b is formed at a position facing the plurality of ribs 83b on the upper surface of the upper casing 84, and the opening 84b is openably and closably covered by the lid portion 84c.
  • the lid portion 84c is rotated about the hinge portion 84d.
  • a plurality of slit-shaped vent holes 84e are formed in the lid portion 84c.
  • the aromatic body 82 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 84c to set the fragrance 82 into the storage box 81 from the opening portion 84b.
  • connection port 83d is inserted into the distal end portion of the introduction tube 30 in a state where the positions of the claw portion 83e and the engagement piece 32 are shifted. Then, the fragrance supply unit 80 is rotated to a position where the claw portion 83e overlaps with the engagement piece 32. As shown in Fig. 21 (a), the engagement piece 32 and the claw portion 83e are engaged with each other, and the fragrance supply unit 80 does not fall upward. It should be noted that the presence of the front flange portion 33 and the rear flange portion 34 prevents the side surface material 10c on the lower surface of the bag body 10 from biting between the connection port 83d and the introduction tube 30.
  • the aroma supply unit 80 is disposed in the bag body 10 such that the longitudinal direction thereof constitutes the left-right direction of the bag body 10.
  • the introduction tube 30 is fixed to the cylindrical portion 15 so as not to rotate relative to the bag body 10
  • the aroma supply unit 80 correctly mounted on the introduction tube 30 does not overlap the front surface and the rear of the bag body 10. Surface contact.
  • the user When the deodorizing operation is performed, the user stores the clothes suspended from the clothes hanger H in the bag body 10 suspended in the bag holding portion 70. At this time, as shown in FIG. 10(b), the user suspends the clothes hanger H in the bag body 10 to the second holding portion 121 of the hanger holding portion 42. Thus, in the bag body 10, the clothes are hung by the hanger holding portion 42. The user presses the deodorizing button 452 of the operation unit 450.
  • the control unit 900 starts the deodorizing operation to operate the blower fan 700 and the ozone generator 600.
  • the control unit 900 does not start the deodorizing operation, and causes the first notification portion 454 to light.
  • the control unit 900 does not start the deodorizing operation, and causes the second notification unit 455 to light.
  • the outside air is taken into the intake pipe 810 from the intake port 418, and the dust and ozone contained in the air are removed by the dust filter 820 and the ozone removing filter 830 in the intake pipe 810.
  • the air from which dust and ozone have been removed is sent into the vent pipe 500 through the blower fan 700 (see an arrow in Fig. 16(b)).
  • the air flowing in the vent pipe 500 is mixed with the ozone generated by the ozone generator 600 as it passes through the ozone generator 600.
  • the ozone-containing air passes through the inside of the vent pipe 500 to the discharge port 414, and is discharged from the discharge port 414 (see an arrow in Fig. 16(a)).
  • 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 opened to a large extent, since the air containing ozone flows from the bottom to the top in the bag body 10, it is likely to spread over the inside of the laundry. Thereby, the outer side and the inner side of the laundry can be deodorized in all directions.
  • the bag body 10 is hung by the bag body holding portion 70, and the clothes are hung on the clothes hanger H for clothes, so that a gap is secured between the upper portion of the bag body 10 and the shoulder portion of the clothes.
  • the ozone is easily spread over the shoulder portion of the laundry, the deodorizing effect can be improved.
  • the air having a reduced ozone concentration due to deodorization of the laundry is discharged to the outside of the bag body 10 through the exhaust portion 41 at the upper portion of the bag body 10 as indicated by a broken line arrow in Fig. 1(a).
  • ozone is removed by the ozone removing filter 44.
  • the concentration of ozone in the air exhausted from the bag body 10 is further lowered.
  • the user accommodates the laundry in the bag body 10 suspended from the bag holding portion 70, and as shown in FIG. 21, the bag body 10 is provided with a fragrance.
  • the aroma supply unit 80 of 82 is mounted on the introduction tube 30.
  • the user presses the fragrance button 453 of the operation unit 450.
  • the tube detecting portion 460 detects that the introduction tube 30 is attached to the ozone supply device 20, and the lock detecting portion 470 detects that the insertion port 11 of the bag body 10 has been locked by the zipper 12, the control unit 900 starts the scenting operation, so that the control unit 900 starts the scenting operation.
  • the fan 700 is operated.
  • the control unit 900 When the introduction pipe 30 is not attached to the ozone supply device 20, the control unit 900 does not start the scent operation, and causes the first notification portion 454 to light. Further, when the input port 11 is not locked, the control unit 900 does not start the incense operation, and causes the second notification unit 455 to light.
  • the air discharged from the introduction pipe 30 is introduced into the storage box 81 from the air intake port 83a.
  • the introduced air flows along the plurality of ribs 83b toward the other end side and then flows upward.
  • the aromatic component contained in the aromatic body 82 is volatilized by the air passing through the aromatic body 82, and is mixed into the air.
  • the air containing the aromatic component is discharged into the bag body 10 through the opening 84b and the vent hole 84e. It should be noted that the air flows smoothly in the storage box 81 by the two inclined surfaces 83c and 84a provided in the storage box 81.
  • the air containing the aromatic component flows from the bottom to the top in the bag body 10, and since the air pressure in the bag body 10 becomes high, the scenting effect of the clothes can be improved.
  • the laundry deodorizing device 1 is configured such that air containing ozone, air containing an aromatic component, and a bag body 10 containing the laundry are supplied from the ozone supply device 20, and the clothes are deodorized and scented. It requires a large setting space and can be easily installed in the home.
  • the introduction tube passage 30 is fixed so as not to fall off from the bag body 10 and to rotate. Thereby, the orientation of the bag body 10 and the orientation of the ozone supply device 20 can be maintained in a desired relationship, that is, the relationship between the front surface of the bag body 10 and the front surface of the ozone supply device 20 in the same direction can be maintained.
  • the blocking unit that prevents the introduction of the introduction tube 30 from rotating relative to the bag body 10 is wound by the cylindrical portion 15 to fasten the binding band 19 of the cylindrical portion 15 to the inside, and to the binding band 19 Since the joint portion 19c is formed to be formed in the protruding portion 37 of the introduction tube 30, the binding belt 19 can effectively prevent the introduction tube 30 from rotating relative to the bag body 10.
  • the belt portion 19b of the binding band 19 passes through the belt passing portion 16, and the joint portion 19c which is exposed without passing through the belt passing portion 16 is shielded by the shielding portion 17. Therefore, it is difficult to see the binding band 19 from the outside, and therefore the appearance of the cylindrical portion 15 is beautiful.
  • the blocking unit is disposed, and the joint portion 19c of the binding belt 19 and the ridge portion 37 engaged with the joint portion 19c prevent the introduction tube 30 from rotating relative to the bag body 10.
  • the blocking unit may have any other structure as long as it can prevent the introduction tube 30 from rotating relative to the bag body 10.
  • the structure shown in Figs. 22(a) and (b) can be employed.
  • a ridge portion 30a having a T-shaped cross section extending vertically is formed.
  • slit holes 15b which are long and long are formed.
  • the introduction tube 30A When the introduction tube 30A is attached to the cylindrical portion 15A, the ridge portion 30a passes through the slit hole 15b. Then, a binding band (not shown) is wound around the appropriate position of the cylindrical portion 15A, and the introduction tube 30A is fixed to the cylindrical portion 15A by fastening of the binding band. The introduction tube 30 is engaged with the ridge portion 30a through the slit hole 15b, and does not rotate with respect to the bag body 10.
  • the introduction tube 30 is fixed to the cylindrical portion 15 by the upper and lower binding bands 19.
  • the number of the binding bands 19 is not limited to two, and may be one or three or more.
  • 10 bag body; 15: cylindrical portion (fixed portion); 16: belt passing portion; 17: shielding portion; 19: binding band; 20: ozone supply device; 30: introduction tube; 37: protruding portion (protrusion); 50: base; 60: pillar; 70: bag holding portion; 413: insertion port (mounting portion).

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Abstract

本发明提供一种衣物处理装置,其能使袋体的朝向和臭氧供给装置的朝向维持所期望的关系。衣物除臭装置(1)具备:袋体(10),收容衣物;臭氧供给装置,将含有臭氧的空气供给至袋体(10)内;导入管(30),将从臭氧供给装置排出的含有臭氧的空气导向袋体(10)内;圆筒状部(15),形成于袋体(10),固定有导入管(30)的一端部;以及插入口部,形成于臭氧供给装置,供导入管(30)的另一端部以规定朝向可装卸地安装。这里,在导入管(30)的一端部与圆筒状部(15)之间,在与导入管(30)向圆筒状部(15)安装的方向垂直的面内方向上设置有阻止导入管30转动的阻止单元。

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,其具备能将衣物悬挂于悬杆进行收纳的收纳库,并通过使高温高湿的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)。
该衣物清新装置由于具备收纳库,因此装置主体容易变大。因此,考虑实现一种以无需大的设置空间就能在家庭内轻易地进行设置的方式,具备能收容衣物的袋体和往该袋体内供给含有臭氧的空气的臭氧供给装置,对收容在袋体的衣物实施通过臭氧进行的除臭等处理的衣物处理装置。
该衣物处理装置可以采用由导入管连结袋体与臭氧供给装置之间,并通过导入管将含有臭氧的空气供给至袋体的结构。在这种情况下,为了在不使用时能将袋体和臭氧供给装置分离,进而可以采用将固定于袋体侧的导入管可装卸地安装于臭氧供给装置的结构。
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
发明内容
发明所要解决的问题
以使袋体的朝向与臭氧供给装置的朝向具有预先规定的关系,例如使袋体的正面与臭氧供给装置的正面朝向同一方向的方式,导入管以预先规定的朝向安装于臭氧供给装置。
因此,在导入管和袋体的固定部分,当导入管向与安装到袋体的方向垂直的面内方向转动时,会导致在导入管已安装于臭氧供给装置时袋体的朝向与臭氧供给装置的朝向不是所期望的关系,随之可能会造成衣物处理装置的性能降低等不良影响。
本发明是鉴于该问题而完成的技术方案,其目的在于提供一种衣能使袋体的朝向和臭氧供给装置的朝向维持所期望的关系的衣物处理装置。
用于解决问题的方案
本发明的主要实施方式的衣物处理装置,具备:袋体,收容衣物;臭氧供给装置,将含有臭氧的空气供给至所述袋体内;导入管,将从所述臭氧供给装置排出的含有臭氧的空气导向所述袋体内;固定部,形成于所述袋体,固定有所述导入管的一端部;以及安装部,形成于所述臭氧供给装置,供所述导入管的另一端部以规定朝向可装卸地安装。这里,在所述导入管的一端部与所述固定部之间,沿着与所述导入管向所述固定部安装的方向垂直的面内方向设置有阻止所述导入管转动的阻止单元。
通过上述结构,导入管通过阻止单元,以相对于袋体不仅不会脱落而且不会转动的方式固定。由此,能使袋体的朝向和臭氧供给装置的朝向维持所期望的关系。
本方式的衣物处理装置可以采用所述导入管的一端部配置成具有圆筒形状,所述固定部具有圆筒形状并且将所述导入管的一端部包围的结构。在这种情况下,所述阻止单元采用包括捆束带和突起部的结构,其中,捆束带缠绕于将所述导入管的一端部包围的所述固定部,往内侧紧固所述固定部,突起部形成于所述导入管的一端部,卡合于所述捆束带的头部与带部的结合部。
通过上述结构,能利用捆束带有效地阻止导入管相对于袋体的转动。
在采用上述结构的情况下,所述固定部可以包括带穿过部和遮蔽部的结构,其中,带穿过部供所述带部穿过,遮蔽部将不穿过所述带穿过部而露出到所述固定部的所述结合部遮蔽。
当采用这样的结构时,带部穿过带穿过部,不穿过带穿过部而露出的结合部由遮蔽部遮蔽。因此,难以从外部看到捆束带,故而固定部的外观美观。
本方式的衣物处理装置可以采用还具备底座、支柱以及袋体保持部的结构,其中,底座固定所述臭氧供给装置,支柱从所述底座向上方延伸,袋体保持部设置于所述支柱的上端,以使所述袋体的正面与所述臭氧供给装置的一面朝向同一方向的方式保持所述袋体的上部。在这种情况下,所述导入管以使所述袋体的正面与所述臭氧供给装置的一面朝向同一方向的方式安装在所述臭氧供给装置。
通过上述结构,袋体的上部和下部以使袋体的正面与臭氧供给装置的一面朝向同一方向的方式,分别保持在袋体保持部和臭氧供给装置。在这种情况下,由于能防止导入管相对于袋体转动,因此不容易发生因导入管转动导致袋体下部的朝向改变使得袋体扭转的情况。通过这样防止袋体扭转,能使含有臭氧的空气在袋体内顺利地流通。
发明效果
通过本发明,能提供一种能使袋体的朝向和臭氧供给装置的朝向维持所期望的关系的衣物处理装置。
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袋体的下部中央部的图。
图3是表示实施方式所涉及的袋体的下部中央部的图。
图4是表示实施方式所涉及的导入管的结构的图。
图5是用于对实施方式所涉及的将导入管安装到袋体的流程进行说明的示意图。
图6是表示实施方式所涉及的安装有导入管的状态的袋体的下部中央部的图。
图7是表示实施方式所涉及的排气兼衣架保持单元的结构的图。
图8是表示实施方式所涉及的排气兼衣架保持单元的结构的图。
图9是表示实施方式所涉及的排气兼衣架保持单元的结构的图。
图10是表示实施方式所涉及的排气兼衣架保持单元的结构的图。
图11是表示实施方式所涉及的袋体保持部的结构的图。
图12是实施方式所涉及的袋体安装于袋体保持部的状态的主要部位的纵剖图。
图13是表示实施方式所涉及的臭氧供给装置的结构的图。
图14是表示实施方式所涉及的臭氧供给装置的结构的图。
图15是表示实施方式所涉及的臭氧供给装置的结构的图。
图16是表示实施方式所涉及的臭氧供给装置的结构的图。
图17是用于对实施方式所涉及的导入管向臭氧供给装置的连接和通过管检测部进行的连接的检测进行说明的图。
图18是用于对实施方式所涉及的锁检测部检测袋体的投入口已通过拉链锁闭的动作进行说明的图。
图19是用于对实施方式所涉及的锁检测部检测袋体的投入口已通过拉链锁闭的动作进行说明的图。
图20是表示实施方式所涉及的香气供给单元的结构的图。
图21是表示实施方式所涉及的香气供给单元的结构的图。
图22是表示变更例所涉及的衣物除臭装置的结构的图。
具体实施方式
以下,参照附图,对本发明的衣物处理装置的一实施方式即衣物除臭装置进行说明。
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)是构成衣物除臭装置1的底座50、支柱60以及袋体保持部70的立体图。
参照图1,衣物除臭装置1包括:袋体10、臭氧供给装置20、导入管30、排气兼衣架保持单元40、底座50、支柱60、袋体保持部70以及香气供给单元80。
袋体10收容西服、大衣等各种衣物。袋体10以层叠多张不具有透气性的面料的方式形成,以使封闭性充足。袋体10具有前后扁平的大致纵长的长方体形状,并由构成前表面的前面料10a、构成后表面的后面料10b以及构成上下左 右侧面的侧面料10c构成。
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两三件左右的衣物前后排列进行收容的尺寸。
在袋体10的前表面,在左右方向的大致中央,从上端到下端形成有构成衣物的投入口的缝隙。在投入口11安装有拉链12。拉链12进行锁闭时的始端部12a以及末端部12b分别位于袋体10的上端以及下端。拉链12的拉头12c在始端部12a与末端部12b之间移动。当拉头12c从始端部12a被下拉时拉链12闭合,使得投入口11锁闭,当拉头12c从末端部12b被上拉时,拉链12打开,使得投入口11打开。这样,由于将拉头12c下拉的方向被设定为投入口11的锁闭方向,因此在投入口11锁闭的状态下,拉头12c的自重往锁闭方向作用。因此,与将拉头12c上拉的方向构成投入口11的锁闭方向的情况不同,不存在由于拉头12c的自重导致末端部12b即拉链12的闭口部分打开的隐患。
臭氧供给装置20进行对衣物进行除臭的除臭运转和对衣物进行添香的添香运转。臭氧供给装置20在除臭运转时,通过进行使排出的空气中含有臭氧的动作,将含有臭氧的空气供给至袋体10。此外,臭氧供给装置20在添香运转时,通过进行使排出的空气中不含臭氧的动作,将不含臭氧的空气供给至袋体10。
导入管30与袋体10、臭氧供给装置20连结,将从臭氧供给装置20排出的空气导向袋体10内。在除臭运转时,含有臭氧的空气通过导入管30,在添香运转时,不含臭氧的空气通过导入管30。
排气兼衣架保持单元40设置在袋体10的后表面上部。排气兼衣架保持单元40用树脂材料一体地形成具有臭氧去除功能的排气部41和保持悬挂有衣物的衣物用衣架的衣架保持部42。含有有助于衣物的除臭的臭氧的空气在袋体10内通过排气部41排出到袋体10外。在通过排气部41时,空气中所含的臭氧被去除。
底座50是具有规定形状例如四角形状的平板。底座50上载置有臭氧供给装置20。在底座50的后部形成有用于支承支柱60的支承部51。并且,在底座 50形成有用于以使臭氧供给装置20的前表面朝向底座50的正面方向的方式固定臭氧供给装置20的第一固定部52和第二固定部53。第一固定部52由多个钩状爪部52a构成。第二固定部53包括:一端部由底座50支承的L字状的弹性杆53a、形成于比弹性杆53a的一端部稍稍靠后方的突起53b、以及形成于弹性杆53a的另一端部的按压部53c。当向下方按压按压部53c时,弹性杆53a弹性变形,突起53b缩入下方。
支柱60由两根杆61构成。支柱60的下端部安装于支承部51,相对于底座50直立。支柱60也可以不由两根杆61而是由一根或三根以上的杆构成。此外,也可以在支柱60设置能调整支柱60的高度的伸缩机构。
在支柱60的上端安装有袋体保持部70。袋体保持部70将袋体10以无法向前后、上下以及左右任一方向活动的方式悬挂保持。
香气供给单元80在通过臭氧供给装置20进行添香运转时使用。香气供给单元80可装卸地安装于导入管30,使供给至袋体10的空气中含有芳香成分。
接下来,对袋体10以及安装在袋体10的导入管30以及排气兼衣架保持单元40的构造进行详细说明。
图2以及图3是表示袋体10的下部中央部的图。图2(a)是前立体图,图2(b)是后剖视图。图3(a)是从正面下方观察时的立体图,图3(b)是从背面下方观察时的立体图。图3(d)是末端罩13的上部的侧面剖面。
在袋体10的前面料10a的内面,以从袋体10内侧覆盖拉链12的末端部12b即闭口部分的方式安装有末端罩13。末端罩13由不具有透气性的面料形成为长方形,下边缘部13a、右边缘部13b以及左边缘部13c通过缝合、粘合等固定方法紧贴固定在前面料10a的内面。
当拉链12未被充分闭合至最后时,拉链12的闭口部分容易变成稍稍打开的状态。如上所述,闭口部分的周围被末端罩覆盖,在除臭运转时,由于导入袋体10的空气,袋体10内的压力升高,由于该压力的升高,使得末端罩13被推至袋体10的前表面侧,容易变成与前面料10a的内面紧贴的状态。因此,即使稍稍打开拉链12的闭口部分,含有臭氧的空气也很难从闭口部分泄漏。
需要说明的是,在末端罩13的上端部,以厚度变大的方式,在其内部收容 有由聚氨酯橡胶等构成的填充材料13d。由此,可以在闭合拉链12时防止拉链12咬合至末端罩13的上端部。
为了通过拉链1检测2投入口11锁闭的情况,检测锁90经由连结绳索95与拉头12c,更具体而言与拉头12c的拉手连结。检测锁90具有圆筒状,在其周面的下端部形成有突出部91,在其上端部形成有用于固定连结绳索95的吊环部92。连结绳索95的一端部与拉头12c的拉手连结,另一端部与吊环部92连结。连结绳索95可以是具有预定长度的绳索,例如通过丝带、链条、金属线等来实现。
在袋体10,于下表面中央部设置有空气的入口14,圆筒状部15从该入口14垂下。圆筒状部15包围插入于入口14的导入管30的顶端部。导入管30的顶端部固定在圆筒状部15。圆筒状部15相当于本发明的固定部。
在圆筒状部15的外周面,沿着圆周方向以上下并列的方式设置有大致圆环状的带穿过部16。各带穿过部16的两端部在构成袋体10的后表面侧的圆筒状部15的后表面部15a打开。各带穿过部16供后述的捆束带穿过。
在圆筒状部15的外圆周面,为了遮蔽后表面部15a,还设置有带状的遮蔽部17。遮蔽部17的一端侧安装在上下的带穿过部16的一侧的打开端16a附近。在遮蔽部17的另一端侧形成有魔术贴18的一侧的面,例如挂钩面18a,在上下的带穿过部16的另一侧的打开端16b的附近形成有魔术贴18的另一侧的面,例如圆毛面18b。
图4是表示导入管30的结构的图。图4(a)是从下端侧观察时的立体图,图4(b)是从上端侧观察时的立体图。
导入管30包括外径相对较小的圆筒形的主体部31a和形成于主体部31a的下方的外径相对较大的圆筒形的连接部31b。主体部31a与连接部31b的交界部分具有轮廓逐渐集中到一起的形状。
在主体部31a的上端形成有用于固定香气供给单元80的多个卡合片32。在比主体部31a的卡合片32稍微靠下的位置,且在导入管30安装于袋体10的状态下朝向袋体10的前方以及后方的各位置,形成有前凸缘部33以及后凸缘部34。在比主体部31a的各凸缘部33、34稍微靠下的位置,沿上下隔着规定的间 隔形成有环状的上凸缘部35以及下凸缘部36。在上凸缘部35与下凸缘部36之间,且在安装于袋体10的状态下朝向袋体10的后方的位置,形成有上下延伸的突条部37。突条部37通过上下并列的三角筋37a和连接这些三角筋37a的纵筋37b,形成为近似于三棱柱的形状。突条部37相当于本发明的突起部。
在连接部31b的下端,且在安装于袋体10的状态下朝向袋体10的右方的位置和朝向左方的位置,分别形成有右爪部38以及左爪部39。
图5是用于说明将导入管30安装于袋体10的流程的示意图。
如图5(a)以及(b)所示,导入管30以使突条部37位于后表面部15a的朝向,在圆筒状部15内插入至下凸缘部36的跟前位置。如图5(b)所示,在带穿过部16插入有捆束带19,捆束带19缠绕于圆筒状部15。捆束带19由头部19a和带部19b构成。在后表面部15a,带部19b穿过头部19a,通过捆束带19使圆筒状部15紧固于内侧。剪掉带部19b的多余部分,此后,如图5(c)所示,遮蔽部17的另一端侧通过魔术贴18固定在带穿过部16,头部19a由遮蔽部17遮蔽。这样,完成导入管30向袋体10的安装。
图6是表示安装有导入管30的状态的袋体10的下部中央部的图。图6(a)是袋体10的下部中央部的后剖视图,图6(b)是图6(a)的A-A′剖视图,图6(c)是从下方观察袋体10的下部中央部的图。
如图6(a)所示,在导入管30安装于袋体10的圆筒状部15的状态下,通过沿上下方向卡合上下的凸缘部35、36和捆束带19,从而导入管30沿上下方向固定在圆筒状部15。即,导入管30通过下凸缘部36,不朝上方移动且不进入至袋体10内,并且通过上凸缘部35,不朝下方移动且不会从袋体10脱离。并且,如图6(b)所示,捆束带19的头部19a与带部19b的结合部19c沿圆周方向与导入管30的突条部37卡合,由此,导入管30沿圆周方向固定在圆筒状部15。这样,导入管30相对于袋体10以不仅不会脱离而且不转动的方式安装。此外,导入管30的右爪部38以及左爪部39相对于袋体10呈预定的位置关系。即,如图6(c)所示,右爪部38位于比袋体10的前后方向的中心线P稍微靠前的位置,左爪部39位于比袋体10的前后方向的中心线P稍微靠后的位置。
如图6(a)所示,导入管30的顶端部以比袋体10的下表面更靠近上方的 方式突出。前凸缘部33以及后凸缘部34位于比袋体10的下表面稍微靠近上方的位置。
图7至图10是表示排气兼衣架保持单元40的结构的图。图7是表示安装于袋体10之前的分解的排气兼衣架保持单元40的立体图。图8(a)以及(b)分别是构成排气兼衣架保持单元40的前单元200以及后单元100的后立体图。图9(a)是安装于袋体10的排气兼衣架保持单元40的立体图,图9(b)是沿水平方向切断排气部41的图9(a)的B-B′剖视图。图10(a)以及(b)分别是袋体10的上部的后视图以及主视图。需要说明的是,在图7以及图10(b)中为了方便而省略了袋体10的前表面的图示,在图9(a)中袋体10被绘制成透明。
在排气兼衣架保持单元40,于左半部分形成有排气部41,于右半部分的前侧形成有衣架保持部42。并且,在排气兼衣架保持单元40,于右半部分的后侧形成有安装袋体保持部70的安装部43。
排气兼衣架保持单元40通过组合后单元100和前单元200而形成。后单元100以及前单元200由树脂材料等比袋体10更硬的材料形成。后单元100以及前单元200分别在具有横长的长方形状的后板101以及前板201形成有排气部41、衣架保持部42以及安装部43的构成要素。
排气部41包括形成于后板101的排气管110和形成于前板201的管罩210。在排气部41内安装有臭氧去除过滤器44。排气管110以朝后方突出的方式形成,具有长方形状。排气管110的前表面作为臭氧去除过滤器44的出入口111进行开口,后表面作为排气口112进行开口。出入口111的周边由朝前方突出的引导框113围起来。在排气口112形成有格子114。管罩210以稍微向前方突出的方式形成,包括长方形状的外框211和形成于外框211内的格子212。外框211的厚度比格子212的厚度更大,在外框211的内侧形成有槽213。
臭氧去除过滤器44具有前后扁平的长方体形状。臭氧去除过滤器44可以使用例如将活性炭和催化剂转移至铝等基材而成的活性炭/催化剂过滤器。臭氧去除过滤器44以不会被手触碰的方式,由网状的罩44a覆盖臭氧去除过滤器44的周围。需要说明的是,臭氧去除过滤器44也可以使用具有臭氧去除效果的其他过滤器,例如光触媒陶瓷过滤器。
衣架保持部42包括从后板101的前表面朝前方延伸的第一保持部120和形成于第一保持部120的前方的第二保持部121。在第一保持部120形成有朝上方突出的圆筒状的插入口部122。第二保持部121具有朝向上方的挂钩形状。
在后板101的前表面,于衣架保持部42的左右形成有引导体130。此外,在前板201形成有供衣架保持部42和左右的引导体130穿过的开口部220。在开口部220的周围形成有框体221。
安装部43包括主体部140和安装孔141。主体部140形成为四方的箱状,从后板101的后表面向后方突出。安装孔141形成于主体部140的后表面,越过后板101延伸至衣架保持部42的内部。在安装孔141的下表面从安装孔141的开口端朝向内部形成有切口部142。
在前板201的四隅位置和左右方向的中央的上端部以及下端部位置,形成有供螺丝300穿过的螺孔230。并且,在前板201的前表面的外周缘形成有遍及整周的加强用的筋231。
在后板101的四隅位置和左右方向的中央的上端部以及下端部位置形成供螺丝300固定的安装凸起150。此外,在后板101的后表面,于安装部43的右侧形成有从主体部140的右上端环绕后板101的外边缘部向主体部140右下端连接的加强用的第一筋151,在安装部43的左侧形成有从主体部140的左上端环绕后板101的外边缘部向主体部140左下端连接的第二筋152。并且,在后板101的后表面形成有从安装孔141的两侧向下方延伸的两个加强用的第三筋153。
在袋体10的后表面上部,在与排气部41对应的位置形成有第一开口部10d,在与衣架保持部42以及左右的引导体130对应的位置形成有第二开口部10e。此外,在袋体10的后表面上部,在与前板201的螺孔230和后板101的安装凸起150对应的位置形成有插通孔10f。
在组装排气兼衣架保持单元40时,首先,臭氧去除过滤器44收容在后单元100的排气管110内。接下来,使引导框113插入第一开口部10d并且使左右的引导体130插入第二开口部10e,从袋体10的外侧将后单元100安装到袋体10的后表面上部。接下来,从袋体10的内侧将前单元200安装到后单元100。 此后,前后夹住袋体10的后表面上部而组合起来的前单元200和后单元100由螺丝300固定。这样,如图9(a)所示,排气兼衣架保持单元40在被组装的同时安装在袋体10的后表面上部。
在此,将后单元100安装在袋体10的后表面时,引导框113以及引导体130分别插入第一开口部10d以及第二开口部10e进行导向。由此,后单元100变得容易安装在袋体10,排气兼衣架保持单元40的组装变得容易。
此外,如图9(b)所示,在排气部41,排气管110的引导框113的顶端部嵌入管罩210的外框211的槽213内。由此,由于提高了排气管110与管罩210之间的密封效果,因此通过排气部41的含有臭氧的空气变得难以从排气部41泄漏。
进而,后板101的排气管110的周围的平坦部位作为从外侧覆盖第一开口部10d的周围的后凸缘部F1发挥功能,前板201的管罩210的周围的平坦部位作为从内侧覆盖第一开口部10d的周围的前凸缘部F2发挥功能。如图9(b)所示,当排气部41安装在第一开口部10d时,第一开口部10d呈其周围由后凸缘部F1和前凸缘部F2密封的状态。由此,袋体10内的含有臭氧的空气变得难以从第一开口部10d泄漏。
同样,后板101的衣架保持部42以及左右引导体130的周围的平坦部位作为从外侧覆盖第二开口部10e的周围的后凸缘部F3发挥功能,前板201中的开口部220的周围的平坦部位作为从内侧覆盖第二开口部10e的周围的前凸缘部F4发挥功能。当衣架保持部42安装在第二开口部10e时,第二开口部10e呈其周围由后凸缘部F3和前凸缘部F4密封的状态。由此,袋体10内的含有臭氧的空气变得难以从第二开口部10e泄漏。
在排气兼衣架保持单元40安装于袋体10的后表面上部的状态下,如图10(a)所示,安装部43的安装孔141位于袋体10的左右方向的中央。此外,如图10(b)所示,衣架保持部42在袋体10内,位于袋体10的左右方向的中央部。在衣架保持部42的第二保持部121钩挂有供衣物悬挂的衣物用衣架H的挂钩,在第一保持部120的插入口部122安装有上面罩440。上面罩440形成为稍稍弯曲成弓形的横长的板状。袋体10的上表面通过该上面罩440从内侧得到强化。
构成袋体10的后表面上部的后面料10b的上部10b1通过使厚度变得比后面料10b的其他部分10b2大,或者改变其他部分10b2的面料材料,从而比其他部分10b2更硬。由此,能通过袋体10的后表面上部可靠地保持排气兼衣架保持单元40。
接下来,对袋体保持部70的构造,以及袋体10向袋体保持部70的安装构造进行详细说明。
图11是表示袋体保持部70的结构的图,图11(a)为前立体图,图11(b)为后立体图。图12为在袋体保持部70安装有袋体10的状态下的主要部分的纵剖视图。
袋体保持部70包括箱状的主体部71和从主体部71朝前方延伸的保持部72。在主体部71的左右两侧形成有具有圆筒形状的插入孔73。在插入孔73插入有杆61的上端部。
在保持部72的根部的上部形成有卡合爪部74。在卡合爪部74的周围形成有开口部75。保持部72的内部制成中空,从卡合爪部74垂下的操作片76通过开口部75和保持部72的内部突出至保持部72的下方。当操作片76被拉至下方时,卡合爪部74缩入至下方。
保持部72的顶端部具有朝向上方的挂钩形状。在袋体保持部70未安装袋体10时,能在顶端部钩挂衣物用衣架。在主体部71的前表面下端,于保持部72的左右两侧形成有支承片77。
如图12所示,在将袋体10安装于袋体保持部70的情况下,使用者将袋体保持部70的保持部72插入排气兼衣架保持单元40的安装孔141。插入时,保持部72的操作片76通过安装孔141的切口部142。在安装孔141的入口部分的上部形成有卡合孔143,当保持部72插入至安装孔141最后时,卡合爪部74与卡合孔143卡合。由此,保持部72不会从安装孔131脱离,袋体10相对于袋体保持部70以不仅不会朝上下左右方向活动,也不会朝前方脱离的方式固定。此外,虽然在图12中未作图示,但安装部43的下表面通过左右的支承片77而被支承。如图1(a)所示,在固定于袋体保持部70的状态下,袋体10的前表面朝向底座50的正面方向。
使用者通过将操作片76拉至下方,使卡合爪部74缩入,将袋体10移动至前方,从而能从袋体保持部70拆卸袋体10。
接下来,对臭氧供给装置20的详细结构进行说明。
图13至图16是表示臭氧供给装置20的结构的图。图13(a)是未安装上面罩440的状态的臭氧供给装置20的立体图。图13(b)是安装有上面罩440的状态的臭氧供给装置20的立体图。图14(a)是臭氧供给装置20的俯视图,图14(b)是从内侧观察臭氧供给装置20的壳体400的上表面的横剖图。图15(a)至(c)分别为臭氧供给装置20的左视图、后视图以及仰视图,图15(d)以及(e)是表示固定于底座50的状态的臭氧供给装置20的主要部分的侧剖图。图16(a)是后视观察时的臭氧供给装置20的纵剖图,图16(b)是俯视观察时的臭氧供给装置20的主要部分的横剖图。需要说明的是,在图16(a)中省略了右插入凹部415、左插入凹部416、锁插入凹部417、管检测部460以及锁检测部470的图示。
臭氧供给装置20包括壳体400、通气管500、臭氧发生器600、送风扇700、吸气单元800以及控制单元900。
壳体400包括:壳主体410、前面罩420、吸气罩430、上面罩440以及操作部450。如图13(a)所示,壳主体410具有上表面平缓地凸弯曲的横长的长方体形状。在壳主体410的前表面形成有前表面开口部411,该前表面开口部411通过前面罩420可装卸地锁闭。
在壳主体410的上表面,形成有凹陷成与上面罩440的形状相同形状的凹面部412。在凹面部412的中央,设置有凹陷成圆形的插入口部413。在插入口部413,形成有具有格子状的整流筋414a的排出口414。插入口部413相当于本发明的安装部。
在凹面部412,于插入口部413的左右两侧形成有具有与导入管30的右爪部38以及左爪部39对应的形状的右插入凹部415以及左插入凹部416。如图14(a)以及(b)所示,在右插入凹部415的前侧,以使插入右插入凹部415的右爪部38只向右转方向移动大概一个右爪部38的量的方式形成有右开口部415a。同样,在左插入凹部416的后侧,以使插入左插入凹部416的左爪部39 只向右转方向移动大概一个左爪部39的量的方式形成有左开口部416a。
在凹面部412,于右端部形成有具有与检测锁90对应的形状的锁插入凹部417。如图14(a)以及(b)所示,在锁插入凹部417的后侧的侧面,形成有开口部417a。
如图13(b)所示,在不使用衣物除臭装置1时,能把从袋体10卸下的上面罩440安装在凹面部412。由此,由于确保了从袋体10卸下的上面罩440的保管场所,因此能防止不使用时丢失上面罩440。此外,能防止不使用时灰尘等从排出口414、锁插入凹部417进入壳体400的内部。
如图14(b)所示,在壳主体410的上表面的内侧,配置有管检测部460以及锁检测部470。管检测部460包括检测开关461和中继杆462。检测开关461具有开关部461a和用于按压开关部461a的杆部461b。中继杆462自由旋转地安装在形成于壳主体410的上表面的内侧的旋转轴463,一端位于右插入凹部415附近,另一端与检测开关461接触。锁检测部470包括检测开关471和中继杆472。检测开关471具有开关部471a和用于按压开关部471a的杆部471b。中继杆472自由旋转地安装在形成于壳主体410的上表面的内侧的旋转轴473,一端位于锁插入凹部417附近,另一端与检测开关471接触。
如图15(a)所示,在壳主体410的左侧面,设置有操作部450。操作部450包括电源按钮451、除臭按钮452以及添香按钮453。电源按钮451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452是用于开始除臭运转的按钮。添香按钮453是用于开始添香运转的按钮。此外,操作部450包括第一报知部454以及第二报知部455。第一报知部454例如由LED构成,通过亮灯来报知导入管30未与臭氧供给装置20连接。第二报知部455例如由LED构成,通过亮灯来报知袋体10的投入口11未锁闭。
如图15(b)所示,在壳主体410的后表面形成有吸气口418,该吸气口418通过吸气罩430可装卸地锁闭。吸气罩430形成有许多吸气孔431。
如图15(c)所示,在壳主体410的底面,在与底座50的第一固定部52各爪部52a对应的位置形成有第一安装孔419a,在与第二固定部53的突起53b对应的位置形成有第二安装孔419b。当使用者在向下方按压第二固定部53的按压 部53c,使突起53b缩入之后,使爪部52a通过第一安装孔419a,将臭氧供给装置20装载在底座50,进而横向滑动臭氧供给装置20时,如图15(d)所示,使得爪部52a和壳主体410的底面卡合。然后,当使用者停止按压按压部53c时,如图15(e)所示,突起53b嵌入第二安装孔419b。由此,臭氧供给装置20以不能向上下、前后以及左右方向活动的方式固定于底座50。因此,能防止臭氧供给装置20因袋体10由于臭氧供给装置20所供给的空气而膨胀时施加给臭氧供给装置20的力而颠倒。
在壳体400的内部,配置有通气管500、臭氧发生器600、送风扇700、吸气单元800以及控制单元900。
如图16(a)以及(b)所示,通气管500包括管主体510和管盖520。管主体510的导入口511与送风扇700的排出口720连接,导出口512与排出口414连接。在管主体510内的导入口511的附近配置有臭氧发生器600。管主体510具有如下形状:在以从导入口511向左方延伸,并在过了臭氧发生器600的配置位置的部分开始向右方折回的方式弯曲后,向上方延伸至导出口512。即,管主体510的构成臭氧发生器600的下游侧的部分蛇行成S形。
臭氧发生器600为放电式臭氧发生器,使一对电极之间产生电晕放电、无声放电等放电,由通过一对电极之间的空气生成臭氧。在管主体510的前表面,在与臭氧发生器600对应的位置形成有开口部513。开口部513通过管盖520锁闭。使用者能通过将前面罩420以及管盖520卸下,从而通过开口部513进行电极的清扫等对臭氧发生器600的维护。
送风扇700为离心扇,在侧面设置有吸入口710,在周面设置有排出口720。吸入口710与壳体400后表面的吸气口418对置。送风扇700从吸入口710获取空气,并将获取的空气送至通气管500内的臭氧发生器600。送风扇700还可以使用离心扇之外的风扇,例如轴流扇。
如图16(b)所示,在壳体400的吸气口418与送风扇700的吸入口710之间设置有吸气单元800。吸气单元800包括吸气管810、灰尘过滤器820以及臭氧去除过滤器830。
吸气管810内通过格子状的隔板811划分为吸气口418侧的第一过滤器收 容部812和送风扇700侧的第二过滤器收容部813。在第一过滤器收容部812收容有灰尘过滤器820,在第二过滤器收容部813收容有臭氧去除过滤器830。灰尘过滤器820去除从吸气口418获取的空气中所含的尘埃等。臭氧去除过滤器830去除通过灰尘过滤器820的空气中所含的臭氧。与排气兼衣架保持单元40的臭氧去除过滤器44相同,臭氧去除过滤器830可以使用活性炭/催化剂过滤器。
吸气管810设置有与送风扇700的吸入口710连接的连接部814,连接部814与第二过滤器收容部813通过连通孔815连接。
控制单元900包括CPU、存储器等,控制臭氧发生器600以及送风扇700。
接下来,参照图17,对导入管30向臭氧供给装置20的连接和通过管检测部460进行的连接的检测进行说明。
导入管30与臭氧供给装置20连接时,如图17(a)所示,导入管30的连接部31b以右爪部38以及左爪部39分别插入右插入凹部415以及左插入凹部416的方式插入至插入口部413。然后,当导入管30从上方观察向右旋转时,右爪部38以及左爪部39分别通过右开口部415a以及左开口部416a向壳主体410的上表面的内侧移动,与壳主体410的上表面卡合。由此,导入管30就不会向上方脱落。
如由图6(c)所说明的那样,由于与袋体10的前后方向的中心线P相比,右爪部38位于稍微靠前的位置,左爪部39位于稍微靠后的位置,因此如图1(a)所示,导入管30以袋体10的前表面朝向臭氧供给装置20的正面方向即底座50的正面方向的方式与臭氧供给装置20连接。此外,如上所述,排气兼衣架保持单元40以袋体10的前表面朝向底座50的正面方向的方式固定在袋体保持部70。因此,袋体10以其上部和下部之间几乎不会扭曲的状态悬挂在臭氧供给装置20的上方。由此,能将衣物很好地收容在袋体10内,并且能使含有臭氧的空气在袋体10内顺利地流通。
这样,导入管30与臭氧供给装置20连接,如图17(b)所示,当右爪部38向壳主体410的上表面的内侧移动时,中继杆462的一端侧被右爪部38按压。中继杆462旋转,杆部461b被中继杆462的另一端侧按压,开关部461a通过被按压的杆部461b而被按压。由此,检测开关461检测到导入管30已安装于 插入口部413。
需要说明的是,当导入管30从插入口部413卸下时,杆部461b通过自身的弹力一边使中继杆462旋转一边返回初始位置。由此,检测开关461检测到导入管30已从插入口部413卸下。
接下来,参照图18以及图19,对锁检测部470检测到袋体10的投入口11已通过拉链12锁闭的动作进行说明。
将检测锁90与拉头12c连结的连结绳索95具有当拉链12被锁闭至末端部12b附近时,检测锁90抵达锁插入凹部417的长度。因此,如图18(a)所示,当拉头12c不位于末端部12b附近时,检测锁90够不到锁插入凹部417,使用者无法将检测锁90插到锁插入凹部417。即,至少在拉链12完全拉开的状态下,检测锁90够不到锁插入凹部417。另一方面,如图18(b)所示,在拉链12完全闭合的状态下,检测锁90可以够到锁插入凹部417,插入检测锁90的锁插入凹部417。
当使用者通过拉链12将投入口11锁闭至最后时,如图19(a)所示,将检测锁90插到锁插入凹部417中,使插入的检测锁90从上方观察向右旋转。如图19(b)所示,检测锁90的突出部91通过开口部417a,向壳主体410的上表面的内侧移动,通过移动的突出部91按压中继杆472的一端侧。中继杆472旋转,通过中继杆472的另一端侧按压杆部471b,通过按压的杆部471b而按压开关部471a。由此,检测开关471检测到检测锁90已插到锁插入凹部417,即,检测到袋体10的投入口11已通过拉链12锁闭。
需要说明的是,当检测锁90从锁插入凹部417卸下时,杆部471b通过自身的弹力一边使中继杆472旋转一边返回初始位置。由此,检测开关471检测到检测锁90已经从锁插入凹部417卸下。
接下来,对香气供给单元80的详细结构进行说明。
图20以及图21是表示香气供给单元80的结构的图。图20(a)以及(b)分别为香气供给单元80的俯视图以及仰视图,图20(c)为上箱体84被卸下的状态的香气供给单元80的俯视图。图21为在导入管30安装有香气供给单元80的状态的袋体10的下部中央部的纵剖图。图21(b)为在导入管30安装有香气 供给单元80的状态的袋体10的下部中央部的横剖图。
香气供给单元80包括俯视时具有椭圆形状的箱状的收容箱81和收容于收容箱81内的芳香体82。收容箱81包括上表面打开的下箱体83和底面打开的上箱体84。
在下箱体83的底面,在长边方向的一端侧形成有吸气口83a,并且形成有与吸气口83a邻接且向长边方向延伸的多个筋83b。在多个筋83b的上方载置有芳香体82。此外,下箱体83的底面在另一端部侧具有向另一端部变高的倾斜面83c。并且,在下箱体83的底面,以包围吸气口83a的方式形成有圆筒状的连接口83d。在连接口83d的与导入管30的卡合片32对应的位置形成有爪部83e。
上箱体84安装在下箱体83的上表面。上箱体84的上表面在与吸气口83a对置的位置具有向另一端部变高的倾斜面84a。此外,在上箱体84的上表面的与多个筋83b对置的位置形成有开口部84b,该开口部84b由盖部84c可开闭地覆盖。盖部84c以铰接部84d为中心进行转动。在盖部84c形成有多个狭缝状的通气孔84e。
芳香体82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84c从开口部84b将芳香体82设置到收容箱81内。
在将香气供给单元80安装于导入管30时,在爪部83e和卡合片32的位置错开的状态下将连接口83d插入导入管30的顶端部。然后,使香气供给单元80旋转至爪部83e与卡合片32重叠的位置。如图21(a)所示,卡合片32和爪部83e卡合,香气供给单元80不会向上方脱落。需要说明的是,通过前凸缘部33以及后凸缘部34的存在,能防止袋体10的下表面的侧面料10c咬入连接口83d与导入管30之间。
如图21(b)所示,在香气供给单元80安装于导入管30的状态下,香气供给单元80以其长边方向构成袋体10的左右方向的方式配置在袋体10内。如上所述,由于导入管30以相对于袋体10不会转动的方式固定在圆筒状部15,因此正确安装在导入管30的香气供给单元80不会与袋体10的前表面、后表面接触。
接下来,对通过衣物除臭装置1进行的除臭运转和添香工作进行说明。
在进行除臭运转的情况下,使用者将悬挂于衣物用衣架H的衣物收容在悬挂于袋体保持部70的袋体10内。此时,使用者如图10(b)所示,在袋体10内将衣物用衣架H悬挂到衣架保持部42的第二保持部121。这样,在袋体10内,通过衣架保持部42悬挂衣物。使用者按压操作部450的除臭按钮452。当通过管检测部460检测到导入管30已安装于臭氧供给装置20,并且通过锁检测部470检测到锁90已插入锁插入凹部417,即,当检测到袋体10的投入口11已通过拉链12锁闭时,控制单元900开始进行除臭运转,使送风扇700和臭氧发生器600工作。当导入管30未安装于臭氧供给装置20时,控制单元900不开始除臭运转,使第一报知部454亮灯。此外,当投入口11未锁闭时,控制单元900不开始除臭运转,使第二报知部455亮灯。
当除臭运转开始时,外部的空气从吸气口418被摄入吸气管810,通过吸气管810内的灰尘过滤器820和臭氧去除过滤器830去除空气中所含的尘埃和臭氧。去除了灰尘和臭氧的空气通过送风扇700送入通气管500内(参照图16(b)的箭头)。在通气管500内流动的空气在通过臭氧发生器600时混入由臭氧发生器600产生的臭氧。这样,含有臭氧的空气通过通气管500内到达排出口414,从排出口414排出(参照图16(a)的箭头)。
从臭氧供给装置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。衣物通过空气中所含的臭氧的除臭作用进行除臭。在此,虽然衣物的下方较大地开口,但由于含有臭氧的空气在袋体10内从下向上流动,因此容易遍布于衣物的内部。由此,能对衣物的外侧和内侧进行全方位的除臭。
此外,通过袋体10悬挂在袋体保持部70,衣物悬挂在衣物用衣架H,从而在袋体10的上部与衣物的肩部分之间确保了间隙。由此,由于在衣物的肩部分也容易遍及臭氧,因此能提高除臭效果。
由于衣物的除臭而降低了臭氧浓度的空气如图1(a)的虚线箭头所示,通过袋体10上部的排气部41向袋体10外排出。除臭后的空气在通过排气部41时,通过臭氧去除过滤器44被除去臭氧。由此,从袋体10排气的空气中的臭氧浓度进一步降低。
接下来,在进行添香运转的情况下,使用者将衣物收容到悬挂于袋体保持部70的袋体10内,并且,如图21所示,在袋体10内,将设有芳香体82的香气供给单元80安装在导入管30。使用者按压操作部450的添香按钮453。当通过管检测部460检测到导入管30安装于臭氧供给装置20,并且通过锁检测部470检测到袋体10的投入口11已通过拉链12锁闭时,控制单元900开始添香运转,使送风扇700工作。当导入管30未安装于臭氧供给装置20时,控制单元900不开始添香运转,使第一报知部454亮灯。此外,当投入口11未锁闭时,控制单元900不开始添香运转,使第二报知部455亮灯。
当添香运转开始时,如图21(a)所示,从导入管30排出的空气从吸气口83a导入收容箱81内。导入的空气沿着多个筋83b向另一端部侧流动后朝上方流动。通过经过芳香体82的空气,芳香体82中所含的芳香成分挥发,混入空气中。含有芳香成分的空气通过开口部84b以及通气孔84e排出到袋体10内。需要说明的是,通过设置在收容箱81的两个倾斜面83c、84a,空气在收容箱81内顺利地流动。
与除臭运转的情况相同,含有芳香成分的空气在袋体10内从下往上流动,此外,由于袋体10内的空气压力变高了,因此可以提高衣物的添香效果。
<本实施方式的效果>
以上,通过本实施方式,可以起到以下的作用效果。
(1)衣物除臭装置1由于采用了从臭氧供给装置20供给含有臭氧的空气、含有芳香成分的空气至收容有衣物的袋体10,进行衣物的除臭、添香运转的结构,因此不需要大的设置空间,就能轻易地设置于在家庭内。
(2)导入管通30以相对于袋体10不仅不会脱落而且不会转动的方式固定。由此,能使袋体10的朝向和臭氧供给装置20的朝向维持所期望的关系,即,能维持使袋体10的正面与臭氧供给装置20的正面朝向同一方向的关系。
(3)由于阻止导入管30相对于袋体10转动的阻止单元由缠绕于圆筒状部15从而往内侧紧固该圆筒状部15的捆束带19、以及以与捆束带19的结合部19c卡合的方式形成于导入管30的突条部37构成,因此能利用捆束带19有效地阻止导入管30相对于袋体10的转动。
(4)在圆筒状部15中,捆束带19的带部19b通过带穿过部16,不通过带穿过部16而露出的结合部19c由遮蔽部17遮蔽。因此,难以从外部看到捆束带19,因此圆筒状部15的外观美观。
(5)袋体10的上部和下部以使袋体10的正面与臭氧供给装置20的正面朝向同一方向的方式,分别保持在袋体保持部70和臭氧供给装置20。在这种情况下,由于能防止导入管30相对于袋体10转动,因此不容易发生因导入管30转动导致袋体10的下部的朝向改变使得袋体10扭转的情况。通过这样防止袋体10扭转,能使含有臭氧的空气在袋体10内顺利地流通。
<变更例>
以上,关于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,另外,本发明的实施方式也可以进行上述以外的各种变更。
在上述实施方式中,配置有阻止单元,通过捆束带19的结合部19c和与该结合部19c卡合的突条部37阻止导入管30相对于袋体10转动。但是,阻止单元只要是能阻止导入管30相对于袋体10转动的结构的即可,也能采用其他的结构。例如,能采用图22(a)以及(b)所示的结构。即,在导入管30A,形成有上下延伸的剖面T字状的突条部30a。另一方面,在袋体10的圆筒状部15A,形成有上下较长的狭缝孔15b。将导入管30A向圆筒状部15A安装时,突条部30a穿过狭缝孔15b。然后,未图示的捆束带缠绕于圆筒状部15A的适当位置,通过捆束带的紧固使导入管30A固定于圆筒状部15A。导入管30通过狭缝孔15b与突条部30a的卡合,相对于袋体10不会转动。
进而,在上述实施方式中,导入管30通过上下两根捆束带19固定在圆筒状部15。但是,捆束带19的数目不局限于两根,也可以是一根或者三根以上。
此外,本发明的实施方式在权利要求范围所示出的技术思想的范围内,可以适当地进行各种变更。
附图标记说明
10:袋体;15:圆筒状部(固定部);16:带穿过部;17:遮蔽部;19:捆束带;20:臭氧供给装置;30:导入管;37:突条部(突起部);50:底座;60:支柱;70:袋体保持部;413:插入口部(安装部)。

Claims (4)

  1. 一种衣物处理装置,其特征在于,具备:
    袋体,收容衣物;
    臭氧供给装置,将含有臭氧的空气供给至所述袋体内;
    导入管,将从所述臭氧供给装置排出的含有臭氧的空气导向所述袋体内;
    固定部,形成于所述袋体,固定有所述导入管的一端部;以及
    安装部,形成于所述臭氧供给装置,供所述导入管的另一端部以规定朝向可装卸地安装,
    在所述导入管的一端部与所述固定部之间,沿着与所述导入管向所述固定部安装的方向垂直的面内方向设置有阻止所述导入管转动的阻止单元。
  2. 根据权利要求1所述的衣物处理装置,其特征在于,
    所述导入管的一端部具有圆筒形状,
    所述固定部具有圆筒形状并且将所述导入管的一端部包围,
    所述阻止单元包括:
    捆束带,缠绕于包围所述导入管的一端部的所述固定部,向内侧紧固所述固定部;以及
    突起部,形成于所述导入管的一端部,卡合于所述捆束带的头部与带部的结合部。
  3. 根据权利要求2所述的衣物处理装置,其特征在于,
    所述固定部包括:
    带穿过部,供所述带部穿过;以及
    遮蔽部,将不穿过所述带穿过部而露出到所述固定部的所述结合部遮蔽。
  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,还具备:
    底座,固定所述臭氧供给装置;
    支柱,从所述底座向上方延伸;以及
    袋体保持部,设置于所述支柱的上端,以使所述袋体的正面与所述臭氧供给装置的一面朝向同一方向的方式保持所述袋体的上部,
    所述导入管以使所述袋体的正面与所述臭氧供给装置的一面朝向同一方向的方式安装在所述臭氧供给装置。
PCT/CN2016/082114 2015-05-13 2016-05-13 衣物处理装置 WO2016180375A1 (zh)

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KR20180004266A (ko) 2018-01-10
JP6653947B2 (ja) 2020-02-26
JP2016209472A (ja) 2016-12-15
EP3296455A4 (en) 2018-12-19
US20180105973A1 (en) 2018-04-19
KR101972259B1 (ko) 2019-04-24
CN107532373B (zh) 2019-10-01
US10184209B2 (en) 2019-01-22
EP3296455A1 (en) 2018-03-21

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