WO2023035733A1 - 衣物处理设备 - Google Patents

衣物处理设备 Download PDF

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Publication number
WO2023035733A1
WO2023035733A1 PCT/CN2022/102437 CN2022102437W WO2023035733A1 WO 2023035733 A1 WO2023035733 A1 WO 2023035733A1 CN 2022102437 W CN2022102437 W CN 2022102437W WO 2023035733 A1 WO2023035733 A1 WO 2023035733A1
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WIPO (PCT)
Prior art keywords
positioning
base
slope
clothes
ultrasonic atomizer
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PCT/CN2022/102437
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English (en)
French (fr)
Inventor
于翰武
荣家辉
徐永洪
张立君
赵雪利
Original Assignee
青岛海尔洗涤电器有限公司
海尔智家股份有限公司
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Application filed by 青岛海尔洗涤电器有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔洗涤电器有限公司
Publication of WO2023035733A1 publication Critical patent/WO2023035733A1/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
    • D06F19/00Washing machines using vibrations for washing purposes
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/02Devices for adding soap or other washing agents
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/20General details of domestic laundry dryers 
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

Definitions

  • the invention relates to the technical field of clothes treatment, and specifically provides a clothes treatment device.
  • Clothes processing equipment is equipment capable of washing, rinsing, dehydrating and/or drying clothes
  • common laundry processing equipment includes washing machines, clothes dryers, all-in-one washing and drying machines, and clothes care machines.
  • washing and drying clothes are not only for washing and drying clothes, but also for clothes such as wrinkle removal, deodorization, disinfection, sterilization, bleaching, softening or fragrance enhancement.
  • Washing is a clothing treatment method that can eliminate the wrinkles of clothes and disinfect and sterilize clothes. Clothes will be wrinkled after wearing for a long time. There are residual compressive stress and residual tensile stress on the inside and outside of the surface respectively, and the fibers are tight and unable to relax automatically.
  • the steam can moisten the fibers of the clothes, which can effectively relieve the irregular tension of the fibers of the clothes and eliminate the original stress residue, so that the clothes become smooth and soft, and some clothes will have residual odor after wearing for a long time or after going to special occasions , steam washing can realize the disinfection and sterilization of clothes, and eliminate the residual odor of clothes.
  • steam washing has become more and more popular among users.
  • a step of steam washing is usually added, or in some washing machines, the clothes are steam washed for a period of time before washing the clothes.
  • steam washing is realized by installing a steam generator on the all-in-one washer-dryer, such as a heating-type steam generator, which forms steam through heating and passes it into the clothes processing cylinder.
  • Steam can realize the steam washing of clothes, or use an ultrasonic atomizer, which is welded together with the water inlet system, and use the water inlet system to realize the water supply of the ultrasonic atomizer, and then use the ultrasonic wave to make the water become
  • the atomized liquid droplets that are fine particles enter into the clothes processing cylinder to realize the atomized washing of clothes.
  • Using a heating steam generator will consume more electric energy, while using an ultrasonic atomizer will save some electricity compared to a heating steam generator, but it will affect the water of the ultrasonic atomizer when it is combined with the water inlet system when scale is generated. supply.
  • the limitation of the above-mentioned product structure leads to relatively simple steam washing or atomization washing of clothes, which cannot meet the various needs of users, and has poor wetting and penetration effects on clothes.
  • the present invention aims to solve the above-mentioned technical problems, that is, to solve the problem that the existing clothes processing equipment has a relatively single method of steam washing or atomization washing due to the limitation of its own structure, which cannot meet the various needs of users and has insufficient wetting and penetration effects on clothes. good question.
  • the present invention provides a clothes treatment device, which includes a connected clothes treatment cylinder and a window pad, and is characterized in that the clothes treatment device also includes an ultrasonic atomizer arranged on the upper part of the window pad, the The ultrasonic atomizer has a plurality of atomizing heads independent of each other, the plurality of atomizing heads can respectively accommodate the same or different laundry treatment agents, and the ultrasonic atomizer is located on the vertical plane where the axis of the window pad is located Within the angular range between 60° to the left and 60° to the right, all the atomizing heads are set towards the inside of the laundry processing cylinder, and the orientations of all the atomizing heads are set at a position compared to The vertically downward direction has an angle in the range of 60° to 120°.
  • a base is arranged on the window pad, and the ultrasonic atomizer is detachably arranged on the base.
  • an insertion cavity is formed on the base, and the shell of the ultrasonic atomizer can be inserted into the insertion cavity in a plug-in manner.
  • a first guide structure is formed on the base, a second guide structure is formed on the housing, and the first guide structure guides and cooperates with the second guide structure to The housing can be guided into the plug-in cavity.
  • the first guide structure includes a first slope and a second slope formed on the inner wall of the base, the first slope and the second slope are oppositely arranged, so
  • the second guide structure includes a third slope and a fourth slope formed on both sides of the outer wall of the housing, the first slope guides and cooperates with the third slope, and the second slope guides and cooperates with the fourth slope .
  • a first positioning structure is formed on the base, a second positioning structure is formed on the housing, and the first positioning structure is positioned and matched with the second positioning structure.
  • the ultrasonic atomizer further includes a driver arranged on the base, a first positioning structure is formed on the driver, and a second positioning structure is formed on the housing , the first positioning structure is positioned and matched with the second positioning structure.
  • the driver is arranged outside the insertion cavity
  • the first positioning structure includes at least one positioning column formed on the driver
  • the second positioning structure includes At least one positioning hole is formed on the housing
  • the positioning posts are positioned in a one-to-one correspondence with the positioning holes
  • a passing structure is formed on the base to allow the positioning posts to pass through.
  • the driver is a wireless driver
  • the wireless driver has one of the primary coil and the secondary coil
  • the ultrasonic atomizer has the primary coil and the secondary coil
  • the primary coil is coupled to the secondary coil
  • At least one of the base and the ultrasonic atomizer is provided with a magnetic attraction structure, and the base and the ultrasonic atomizer pass through the magnetic attraction structure connect.
  • the present invention can use the ultrasonic nebulizer to achieve atomized washing of clothes, ensuring the energy-saving advantage of ultrasonic nebulization care, without consuming too much electric energy, and the mist produced by the ultrasonic nebulizer
  • the atomized particles are small and can be evenly distributed on the clothes.
  • the atomization temperature is low, and it will not cause damage to high-grade or high-temperature-resistant fabrics such as silk and mink. Users can also flexibly spray multiple fogs according to their own needs.
  • Different or the same clothing treatment agents are added to the chemical head to realize multiple care for clothes, so that users can customize the care of clothes, realize personalized clothes care experience, meet the various needs of users, and do not need Combined with the water inlet system to achieve water supply, and can make the water mist sprayed on the clothes cover the clothes more evenly, ensure the uniform wetting of the clothes, further improve the treatment effect on the clothes, and improve the user experience.
  • the user can disassemble the ultrasonic atomizer at any time, which is convenient for the user to flexibly add laundry treatment agents according to their own needs, and can flexibly carry out personal cleaning according to their own needs.
  • the fast plug-in of the ultrasonic nebulizer can be realized through the plug-in method, thereby improving the assembly efficiency.
  • first guide structure and the second guide structure can facilitate the guide installation of the ultrasonic nebulizer, further improve the assembly efficiency, and ensure that the installation is in place.
  • the positioning of the ultrasonic atomizer can be realized through the first positioning structure and the second positioning structure, so as to ensure that the ultrasonic atomizer will not move when the ultrasonic atomizer is installed in place and during the operation of the clothes treatment equipment , Improve the installation stability of the ultrasonic nebulizer.
  • the driver, the base and the ultrasonic atomizer can all be fixed together, so that the relevant structures for ultrasonic atomization can be installed in one place, and the product has a higher degree of integration, which facilitates centralized cleaning, inspection, and replacement of the product and maintenance to further enhance the user experience.
  • the use of wireless drivers is more convenient for the layout of the product structure than the wired drive method, avoiding the limitation of the installation position due to the layout of the wiring harness, providing better flexibility for the design of the clothes processing equipment, and reducing the difficulty of product design , At the same time avoid the problems of pulling, friction, corrosion and other problems in the traditional wire harness assembly process, as well as frequent disassembly for a long time will lead to poor contact, short circuit and other accidents, improve the safety of clothing processing equipment and the service life of each component.
  • the magnetic connection of the ultrasonic nebulizer can be realized through the magnetic structure, which improves the assembly efficiency, facilitates the arrangement of the product structure, does not occupy too much space, and simplifies the design of the structure.
  • Fig. 1 is a schematic structural view of the washing and drying machine of the present invention
  • Fig. 2 is a structural schematic diagram of the wireless driver, the base and the ultrasonic atomizer of the washing and drying machine of the present invention
  • Fig. 3 is a structural schematic diagram of the wireless driver of the all-in-one washing and drying machine of the present invention.
  • Fig. 4 is a schematic structural view of the base of the washing and drying machine of the present invention.
  • Fig. 5 is a structural schematic diagram 1 of the ultrasonic atomizer of the washing and drying machine of the present invention.
  • Fig. 6 is a structural schematic diagram II of the ultrasonic atomizer of the all-in-one washing and drying machine of the present invention.
  • Fig. 7 is a cross-sectional view of the wireless driver, the base and the ultrasonic atomizer of the all-in-one washing and drying machine of the present invention.
  • the existing all-in-one washer-dryer has a relatively single method of steam washing or atomization washing due to its own structural limitations, which cannot meet the various needs of users and has poor wetting and penetration effects on clothes.
  • the present invention Provided is an all-in-one washing and drying machine, which aims to enable users to realize multiple care for clothes according to their own needs, so as to realize personalized customization of clothes care, thereby realizing personalized clothes care experience, and satisfying users' multiple needs. It does not need to be combined with the water inlet system to achieve water supply, and can make the water mist sprayed on the clothes cover the clothes more evenly, ensure the uniform wetting of the clothes, further improve the treatment effect of the clothes, and improve the user's use experience.
  • the integrated washer-dryer of the present invention includes a box body 1 and a laundry processing cylinder arranged in the box body 1.
  • the laundry processing cylinder adopts a sleeve-type structure, that is, it includes an outer cylinder and is rotatably arranged on the outside.
  • the inner cylinder in the cylinder, the window pad 2 connects the opening of the outer cylinder with the clothes delivery port of the casing 1, the inner cylinder can be directly driven to rotate by a direct drive motor, and the belt can also be driven by the motor to drive the inner cylinder to rotate.
  • the outer cylinder is used to contain washing water
  • the inner cylinder is used to accommodate clothes and can turn them over
  • the window pad 2 is used to ensure the sealing between the outer cylinder and the box body 1 .
  • the all-in-one washing and drying machine of the present invention also includes an ultrasonic atomizer 3 arranged on the upper part of the window pad 2.
  • the ultrasonic atomizer 3 has a plurality of atomizing heads 4 independent of each other.
  • the heads 4 are capable of containing the same or different laundry treatment agents, respectively.
  • the ultrasonic nebulizer 3 is located in the angle range between 60° to the left and 60° to the right of the vertical plane where the axis of the window mat 2 is located, that is, when viewed along the outer cylinder to the direction of the window mat 2, it can be observed
  • the inner side of the window pad 2, the whole of the window pad 2 is ring-shaped, and the window pad 2 is observed in a clockwise manner, and the ultrasonic nebulizer 3 is located on the vertical plane where the axis of the window pad 2 is located, deflecting 60° to the left and deflecting to the right
  • the angle range between 60° means that the ultrasonic nebulizer 3 is installed on the window pad 2 within the clock range from 10 o'clock to 14 o'clock.
  • All atomizing heads 4 are set towards the inside of the inner cylinder, and the orientation of all atomizing heads 4 is set within an angle range of 60° to 120° compared to the vertical downward direction, that is, when the washing and drying machine When placed on a horizontal ground, the vertical downward is the direction perpendicular to the ground, and all the atomizing heads 4 of the ultrasonic nebulizer 3 are set towards the inside of the inner cylinder, and the angle is 60° compared to the vertical downward In the angle range of 120°, when the orientation of the atomizing head 4 is at the limit position of 120° upward, the water mist sprayed by the atomizing head 4 can evenly fall from the top of the clothing to the clothing.
  • the orientation of the atomizing head 4 When it is the limit position of upward 60°, the water mist sprayed by the atomizing head 4 can be sprayed onto the clothes from the front of the clothes.
  • the position setting of the above-mentioned ultrasonic atomizer 3 and the angle setting of all atomizing heads 4 can ensure that the water mist is evenly sprayed on the clothes, and the effect of covering and penetrating the clothes optimal.
  • the ultrasonic nebulizer 3 can be arranged on the window pad 2 alone, or on the outer cylinder alone, or between the window mat 2 and the outer cylinder, that is, a part of the ultrasonic atomizer 3 is arranged on the window mat 2, The other part is set on the outer cylinder.
  • the quantity of atomizing head 4 can be two, also can be three, or be other more quantity, those skilled in the art can be set flexibly to this.
  • All the atomizing heads 4 of the ultrasonic nebulizer 3 may share one ultrasonic atomizing sheet, or each atomizing head 4 may have its own independent ultrasonic atomizing sheet, and the ultrasonic atomizing sheet may be a ceramic atomizing sheet, or It is a microporous atomizing sheet, or other atomizing sheets capable of breaking up the structure of liquid water molecules through high-frequency resonance, which can be flexibly set by those skilled in the art.
  • each atomizing head 4 it is preferable to adopt each atomizing head 4 to have its own independent ultrasonic atomizing sheet, so as to realize alternate care, simultaneous care and sequential care of clothes by different atomizing heads 4, and can realize the above-mentioned different care methods switch.
  • alternate care means that one of the first atomizing head and the second atomizing head is turned on for a period of time and then turned off Turn on the other one of the first atomizing head and the second atomizing head for a period of time, then turn it off, and then repeat the above steps again.
  • Simultaneous care means that the first atomizing head and the second atomizing head are turned on at the same time.
  • One of the first atomizing head and the second atomizing head is turned on for a period of time, then turned off, and then the other of the first atomizing head and the second atomizing head is turned on for a period of time, then turned off, and then no atomization is turned on head.
  • the laundry treatment agent can be pure water, detergent, softener, softener, disinfectant, bactericide, bleach or fragrance enhancer, etc.
  • Different atomizing heads 4 can accommodate the same laundry treatment agent, Can also accommodate different laundry treatments.
  • the atomizing head 4 has a chamber, and the chamber can accommodate laundry treatment agents.
  • a liquid injection structure can be provided on the atomizing head 4.
  • the liquid injection structure is an insertion hole communicating with the chamber. The needle of the syringe is inserted into the insertion hole to realize liquid injection, or the atomizing head 4 is a split structure that can be disassembled.
  • the atomizing head 4 includes a base and a cover that is detachably connected to the base.
  • the cover and the base can be The chamber is formed on the base by screw connection, card connection or magnetic adsorption connection, etc.
  • the cover can be removed from the base, and then inject liquid into the chamber of the base. After the liquid injection is completed, the cover body is installed on the base.
  • the ultrasonic atomizer 3 can be disassembled from the window pad 2 and/or the outer cylinder as a whole, or the atomizing head 4 can be disassembled from the shell or the installation structure of the ultrasonic atomizer 3 alone, Those skilled in the art can flexibly set this.
  • the window mat 2 is provided with a base 5
  • the ultrasonic nebulizer 3 is detachably provided on the base 5 .
  • the base 5 can be made of a flexible material, such as the same or similar material as the window pad 2, such as rubber material, etc.
  • the base 5 is preferably made of a hard material, such as hard plastic or metal, so as to facilitate The ultrasonic nebulizer 3 is not easy to move when it is repeatedly installed and disassembled, and it also prevents the deformation of the base 5 after a long period of use.
  • the ultrasonic nebulizer 3 can be connected to the base 5 by means of screw connection, can also be connected by connection methods such as plug-in, card connection, bonding or magnetic adsorption, or can be connected by a combination of the above-mentioned connection methods. Personnel can set this flexibly.
  • an insertion cavity 51 is formed on the base 5 , and the shell of the ultrasonic nebulizer 3 can be inserted into the insertion cavity 51 in a plug-in manner.
  • the user can insert the shell of the ultrasonic nebulizer 3 into the insertion cavity 51 of the base 5 after the liquid injection into the atomizing head 4 is completed, so as to realize the installation.
  • the shell of the carburetor 3 is disassembled from the insertion cavity 51 of the base 5 .
  • a first guide structure is formed on the base 5
  • a second guide structure is formed on the housing, and the first guide structure and the second guide structure guide and cooperate so that the housing can be guided into the insertion cavity 51 .
  • the first guide structure and the second guide structure can adopt the guide cooperation mode of the guide groove and the guide bar, or adopt the guide cooperation mode of the guide slope, and the guide slope can be a straight slope or an arc slope.
  • the first guide structure includes a first slope 52 and a second slope 53 formed on the inner wall of the base 5, the first slope 52 and the second slope 53 are oppositely arranged, and the second guide The structure includes a third slope 31 and a fourth slope 32 formed on both sides of the outer wall of the housing, the first slope 52 guides and fits with the third slope 31, the second slope 53 guides and fits with the fourth slope 32, the first slope 52 and the second slope
  • the slopes 53 are all inclined outwards, that is, the distance between the first slope 52 and the second slope 53 gradually decreases along the insertion direction of the ultrasonic nebulizer 3, the third slope 31 is adapted to the first slope 52, and the fourth The slope 32 is compatible with the second slope 53 , and in this embodiment, the first slope 52 , the second slope 53 , the third slope 31 and the fourth slope 32 are all preferably arc-shaped slopes.
  • a first positioning structure is formed on the base 5
  • a second positioning structure is formed on the housing, and the first positioning structure is positioned and matched with the second positioning structure.
  • the positioning cooperation mode of the first positioning structure and the second positioning structure can adopt the cooperation mode of the positioning column and the positioning hole, can also adopt the cooperation mode of the positioning protrusion and the positioning groove, and can also adopt the mutual cooperation mode of the positioning stopper , those skilled in the art can flexibly set this.
  • a mutual positioning and cooperation between the driver and the housing of the ultrasonic nebulizer 3 may also be adopted.
  • the driver can be wired or wireless. Specifically, the driver is arranged on the base 5 , a first positioning structure is formed on the driver, a second positioning structure is formed on the casing, and the first positioning structure and the second positioning structure are positioned and matched.
  • the driver is arranged outside the insertion cavity 51
  • the first positioning structure includes at least one positioning post formed on the driver
  • the second positioning structure includes at least one positioning hole formed on the housing
  • the positioning post and the positioning hole are one by one
  • a passing structure is formed on the base 5 to allow the positioning column to pass through.
  • the number of positioning posts and positioning holes is two, and the passing structure can be a through hole that allows the positioning posts to pass through.
  • the diameter of the through hole can be greater than or equal to the outer diameter of the positioning posts.
  • the driver is a wireless driver 6, the wireless driver 6 has one of the primary coil and the secondary coil, and the ultrasonic nebulizer 3 has the other of the primary coil and the secondary coil,
  • the primary coil is coupled with the secondary coil.
  • the wireless driver 6 may include a housing and a driving board, the housing is fixed on the base 5, the driving board is arranged in the housing, and a circuit system is integrated in the driving board, and the circuit system can make the ultrasonic atomizing sheet resonate at high frequency.
  • the primary coil can be set on the drive board, and the secondary coil can be set on the ultrasonic atomizer 3.
  • the primary coil and the secondary coil are coupled to realize the drive plate. powered by.
  • the secondary coil can be disposed on the driving board, and the primary coil can be disposed on the ultrasonic nebulizer 3 .
  • the wireless driver 6 can be connected to the base 5 in a clamping manner.
  • hooks are respectively provided on both sides of the housing of the wireless driver 6, and the position corresponding to the hooks on the base 5 has a clip or a bayonet. The hook is engaged on the clip bar or in the bayonet socket to realize the clip connection between the wireless driver 6 and the base 5 .
  • At least one of the base 5 and the ultrasonic atomizer 3 is provided with a magnetic attraction structure, and the base 5 and the ultrasonic atomizer 3 are connected through the magnetic attraction structure.
  • a magnetic attraction structure can be provided on both the base 5 and the ultrasonic atomizer 3, so that the magnetic attraction structure can be used to realize the attraction between the ultrasonic atomizer 3 and the base 5, for example, between the ultrasonic atomizer 3 and the ultrasonic atomizer 3.
  • a first permanent magnet and a second permanent magnet with different magnetic properties are arranged on the base 5 respectively, and the ultrasonic atomizer 3 and the base 5 are attracted by the first permanent magnet and the second permanent magnet.
  • a permanent magnet is set on the base 5, and the shell of the ultrasonic atomizer 3 is set as a metal shell, and the ultrasonic atomizer 3 is connected to the base 5 through the attraction of the permanent magnet to the metal.
  • the base can also be 5 is set as a metal base 5, and the permanent magnet is set on the ultrasonic nebulizer 3.
  • the housing of the base 5 and the ultrasonic nebulizer 3 pass through the first slope 52 , the second slope 53 , the third slope 31 and the fourth slope 32 Guided cooperation is carried out, and two magnetic suction positioning heads 7 are arranged on the driver at the same time, and two positioning counterbores 8 are formed on the shell of the ultrasonic atomizer 3, and the magnetic suction positioning heads 7 correspond to the positioning counterbores 8 one by one and mutually Positioning fit
  • the shell of the ultrasonic atomizer 3 can be a metal shell that allows magnetic attraction or a magnetic member that is attracted to the magnetic positioning head 7 in the positioning counterbore 8 or an attracted member that allows magnetic attraction, In this way, the magnetic positioning head 7 can not only position the ultrasonic nebulizer 3 , but also magnetically attract the ultrasonic nebulizer 3 .
  • the guidance of the ultrasonic nebulizer 3 is realized through the guiding cooperation of the first bevel 52, the second bevel 53, the third bevel 31 and the fourth bevel 32, which facilitates the positioning counterbore on the shell of the ultrasonic nebulizer 3 8 is accurately docked with the magnetic positioning head 7 to achieve positioning, and then the magnetic effect of the magnetic positioning head 7 is used to realize the suction connection to the ultrasonic atomizer 3 .

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  • Textile Engineering (AREA)
  • Special Spraying Apparatus (AREA)

Abstract

本发明涉及衣物处理技术领域,旨在解决现有衣物处理设备由于自身结构的限制导致蒸汽洗或雾化洗的方式较为单一,无法满足用户多方面需求以及对衣物的润湿和渗透效果不佳的问题。为此,本发明的衣物处理设备包括相连的衣物处理筒和窗垫以及设置在窗垫上部的超声波雾化器,超声波雾化器具有彼此独立的多个雾化头,多个雾化头能够分别容纳相同或不同的衣物处理剂,超声波雾化器位于窗垫的轴线所在的竖直平面向左偏转60°和向右偏转60°之间的角度范围内,所有雾化头均朝向衣物处理筒的内部设置,且所有雾化头的朝向均设置在相较于竖直向下的方向具有60°至120°的角度范围内。本发明能够实现个性化的衣物护理,提高对衣物的处理效果。

Description

衣物处理设备 技术领域
本发明涉及衣物处理技术领域,具体提供一种衣物处理设备。
背景技术
衣物处理设备是能够对衣物进行洗涤、漂洗、脱水和/或烘干的设备,常见的衣物处理设备包括洗衣机、干衣机、洗干一体机和衣物护理机等。
随着生活水平的不断提高,用户对于衣物处理设备的需求不仅仅在于洗涤衣物和烘干衣物,还可能对衣物具有除皱、除臭、消毒、杀菌、漂白、软化或增香等需求,蒸汽洗是一种能够消除衣物褶皱以及对衣物进行消毒杀菌的衣物处理方式,衣物长时间的穿戴会出现褶皱,而褶皱形成的原因是由于外力使衣物纤维产生折弯变形,在折弯的位置弯曲面内侧和外侧分别存在残余压应力和残余拉应力,纤维紧绷而无法自动松弛。蒸汽能湿润衣物纤维,可以有效解除衣物纤维的无规律的绷紧,消除原有应力残余,从而使衣物变得平整、柔软,一些衣物在长时间的穿戴过后或者去了特殊场合后会残留异味,蒸汽洗能够实现对衣物的消毒和杀菌,消除衣物残留的异味,近些年来,蒸汽洗已经越来越受到用户的青睐。
在对衣物进行空气洗或者烘干的过程中,通常都加入蒸汽洗的步骤,或者在一些洗衣机中,在洗涤衣物之前先对衣物进行一段时间的蒸汽洗。现有技术中,以洗干一体机为例,实现蒸汽洗的方式为在洗干一体机上设置蒸汽发生器,例如采用加热式蒸汽发生器,通过加热方式形成蒸汽并向衣物处理筒内通入蒸汽实现对衣物的蒸汽洗,或者采用超声波雾化器,其与进水系统熔敷在一起,利用进水系统的进水实现超声波雾化器的水供给,然后再利用超声波的作用使水变为细小颗粒的雾化状液滴进入到衣物处理筒中,实现对衣物的雾化洗。采用加热式蒸汽发生器会比较耗费电能,而采用超声波雾化器虽然相比于加热式蒸汽发生器会节约 一些电能,但是其与进水系统结合当生成水垢时会影响超声波雾化器的水供给。而且,上述产品结构的限制导致对衣物的蒸汽洗或雾化洗较为单一,无法满足用户的多方面需求,且对衣物的润湿和渗透效果不佳。
因此,本领域需要一种新的衣物处理设备来解决上述问题。
发明内容
本发明旨在解决上述技术问题,即,解决现有衣物处理设备由于自身结构的限制导致蒸汽洗或雾化洗的方式较为单一,无法满足用户多方面需求以及对衣物的润湿和渗透效果不佳的问题。
本发明提供一种衣物处理设备,所述衣物处理设备包括相连的衣物处理筒和窗垫,其特征在于,所述衣物处理设备还包括设置在所述窗垫上部的超声波雾化器,所述超声波雾化器具有彼此独立的多个雾化头,所述多个雾化头能够分别容纳相同或不同的衣物处理剂,所述超声波雾化器位于所述窗垫的轴线所在的竖直平面向左偏转60°和向右偏转60°之间的角度范围内,所有所述雾化头均朝向所述衣物处理筒的内部设置,且所有所述雾化头的朝向均设置在相较于竖直向下的方向具有60°至120°的角度范围内。
在上述衣物处理设备的优选技术方案中,所述窗垫上设置有基座,所述超声波雾化器可拆卸式地设置在所述基座上。
在上述衣物处理设备的优选技术方案中,所述基座上形成有插合腔,所述超声波雾化器的外壳能够以插接方式插合在所述插合腔中。
在上述衣物处理设备的优选技术方案中,所述基座上形成有第一导向结构,所述外壳上形成有第二导向结构,所述第一导向结构与所述第二导向结构导向配合以使所述外壳能够引导入所述插合腔中。
在上述衣物处理设备的优选技术方案中,所述第一导向结构包括形成于所述基座内壁上的第一斜面和第二斜面,所述第一斜面和所述第二斜面相对设置,所述第二导向结构包括形成于所述外壳外壁两侧的第三斜面和第四斜面,所述第一斜面与所述第三斜面导向配合,所述第二斜面与所述第四斜面导向配合。
在上述衣物处理设备的优选技术方案中,所述基座上形成有第一定 位结构,所述外壳上形成有第二定位结构,所述第一定位结构与所述第二定位结构定位配合。
在上述衣物处理设备的优选技术方案中,所述超声波雾化器还包括设置在所述基座上的驱动器,所述驱动器上形成有第一定位结构,所述外壳上形成有第二定位结构,所述第一定位结构与所述第二定位结构定位配合。
在上述衣物处理设备的优选技术方案中,所述驱动器设置在所述插合腔的外侧,所述第一定位结构包括形成于所述驱动器上的至少一个定位柱,所述第二定位结构包括形成于所述外壳上至少一个定位孔,所述定位柱与所述定位孔一一对应地定位配合,所述基座上形成有允许所述定位柱穿过的通过结构。
在上述衣物处理设备的优选技术方案中,所述驱动器为无线驱动器,所述无线驱动器上具有主线圈和次线圈中的一个,所述超声波雾化器上具有所述主线圈和所述次线圈中的另一个,在所述超声波雾化器插合在所述插合腔中的情形下,所述主线圈与所述次线圈耦合。
在上述衣物处理设备的优选技术方案中,所述基座和所述超声波雾化器中的至少一个上设置有磁吸结构,所述基座与所述超声波雾化器通过所述磁吸结构连接。
在采用上述技术方案的情况下,本发明能够利用超声波雾化器实现对衣物的雾化洗,保证超声波雾化护理的节能优势,不会消耗过多的电能,且超声波雾化器产生的雾化微粒细小,能均匀地分布在衣物上,同时雾化温度低,对真丝、貂皮等高档或不耐受高温的面料不会造成伤害,用户还可以根据自身的需求灵活地向多个雾化头中分别添加不同或相同的衣物处理剂,从而实现对衣物的多重化护理,使得用户对衣物的护理能够进行个性定制,实现个性化的衣物护理体验,满足用户的多方面需求,且无需与进水系统结合实现水供给,且能够使得喷向衣物的水雾更加均匀地覆盖到衣物上,保证衣物的均匀润湿,进一步提高对衣物的处理效果,提升用户的使用体验。
进一步地,通过将超声波雾化器设置为可拆卸式,使得用户能够随时将超声波雾化器拆卸下来,便于用户根据自身的需求灵活地添加衣物 处理剂,并能够根据自身的需求灵活地进行个人定制,实现个性化的衣物护理体验,满足用户的多方面需求,同时能够便于用户随时对超声波雾化器进行清理、检查、更换和维修,提升用户的使用体验。
进一步地,通过插接方式能够实现超声波雾化器的快速插接,提高装配效率。
进一步地,通过第一导向结构和第二导向结构能够便于超声波雾化器的导向安装,进一步提高装配效率,且保证安装到位。
进一步地,通过第一定位结构和第二定位结构能够实现对超声波雾化器的定位,保证在超声波雾化器安装到位后且在衣物处理设备运行的过程中超声波雾化器不会发生窜动,提高对超声波雾化器的安装稳定性。
进一步地,驱动器、基座和超声波雾化器都能够固定在一起,使得实现超声波雾化的相关结构都在一个位置进行安装,产品的集成度更高,便于集中对产品进行清理、检查、更换和维修,进一步提升用户的使用体验。
进一步地,采用无线驱动器相比于有线驱动方式更加便于产品结构的布置,避免由于线束的布置问题而导致安装位置受限,为衣物处理设备的设计提供更好的灵活性,降低产品的设计难度,同时避免传统线束装配过程中会产生拉扯、摩擦、腐蚀等问题以及长时间频繁地拆装会导致接触不良、短路等事故的发生,提高衣物处理设备的安全性以及各个零部件的使用寿命。
进一步地,通过磁吸结构能够实现超声波雾化器的磁吸连接,提高装配效率,且便于产品结构的布置,不会占用太多的空间,简化结构的设计。
附图说明
下面结合附图并结合洗干一体机来描述本发明的优选实施方式,附图中:
图1是本发明的洗干一体机的结构示意图;
图2是本发明的洗干一体机的无线驱动器、基座和超声波雾化器的结构示意图;
图3是本发明的洗干一体机的无线驱动器的结构示意图;
图4是本发明的洗干一体机的基座的结构示意图;
图5是本发明的洗干一体机的超声波雾化器的结构示意图一;
图6是本发明的洗干一体机的超声波雾化器的结构示意图二;
图7是本发明的洗干一体机的无线驱动器、基座和超声波雾化器的剖视图。
具体实施方式
首先,本领域技术人员应当理解的是,这些实施方式仅仅用于解释本发明的技术原理,并非旨在限制本发明的保护范围。例如,虽然本发明是结合洗干一体机来阐述说明的,但是,本发明的技术原理显然还适用于干衣机、洗衣机,或者是复式衣物处理设备,这些应用对象的调整或改变不构成对本发明的限制,均应该限定在本发明的保护范围之内。
需要说明的是,在本发明的描述中,术语“中”、“上”、“下”、“左”、“右”、“内”、“外”等指示的方向或位置关系的术语是基于附图所示的方向或位置关系,这仅仅是为了便于描述,而不是指示或暗示所述装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性。
此外,还需要说明的是,在本发明的描述中,除非另有明确的规定和限定,术语“设置”、“连接”、“连通”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域技术人员而言,可根据具体情况理解上述术语在本发明中的具体含义。
基于背景技术指出的现有洗干一体机由于自身结构的限制导致蒸汽洗或雾化洗的方式较为单一,无法满足用户多方面需求以及对衣物的润湿和渗透效果不佳的问题,本发明提供了一种洗干一体机,旨在使得用户可以根据自身的需求实现对衣物的多重化护理,从而实现对衣物的护理能够进行个性定制,进而实现个性化的衣物护理体验,满足用户的多方面需求,且无需与进水系统结合实现水供给,且能够使得喷向衣物的 水雾更加均匀地覆盖到衣物上,保证衣物的均匀润湿,进一步提高对衣物的处理效果,提升用户的使用体验。
具体地,如图1所示,本发明的洗干一体机包括箱体1和设置在箱体1中的衣物处理筒,衣物处理筒采用套筒式结构,即包括外筒和转动地设置在外筒中的内筒,窗垫2将外筒的开口与箱体1的衣物投放口连接,内筒可以通过直驱电机直接驱动转动,还可以通过电机带动皮带进而驱动内筒转动。外筒用于容纳洗涤水,内筒用于容纳衣物并能够使衣物翻转,窗垫2来保证外筒和箱体1之间的密封。
如图2至7所示,本发明的洗干一体机还包括设置在窗垫2上部的超声波雾化器3,超声波雾化器3具有彼此独立的多个雾化头4,多个雾化头4能够分别容纳相同或不同的衣物处理剂。超声波雾化器3位于窗垫2的轴线所在的竖直平面向左偏转60°和向右偏转60°之间的角度范围内,即沿着外筒向窗垫2的方向观察,可以观察到窗垫2的内侧,窗垫2的整体为环状,将窗垫2按照时钟方式进行观察,超声波雾化器3位于窗垫2的轴线所在的竖直平面向左偏转60°和向右偏转60°之间的角度范围内指的是超声波雾化器3安装在窗垫2的10点钟至14点钟的时钟范围内。所有雾化头4均朝向内筒的内部设置,且所有雾化头4的朝向均设置在相较于竖直向下的方向具有60°至120°的角度范围内,即当洗干一体机放置在水平的地面上时,竖直向下即为垂直于地面的方向,超声波雾化器3的所有雾化头4均朝向内筒的内部设置且角度相较于竖直向下具有60°至120°的角度范围内,当雾化头4的朝向为向上120°的极限位置时,雾化头4喷射出的水雾能够从衣物的上方均匀飘落至衣物,当雾化头4的朝向为向上60°的极限位置时,雾化头4喷射出的水雾能够从衣物的前方喷射到衣物上。经过发明人反复地实验、对比和分析,通过上述超声波雾化器3的位置设定以及所有雾化头4的角度设定能够保证水雾均匀地喷洒在衣物上,对衣物的覆盖和渗透效果最佳。
超声波雾化器3可以单独设置在窗垫2上,还可以单独设置在外筒上,又或者设置在窗垫2和外筒之间,即超声波雾化器3的一部分设置在窗垫2上,另一部分设置在外筒上。雾化头4的数量可以为两个,也可以为三个,或者为其他更多的数量,本领域技术人员可以对此进行灵 活地设置。超声波雾化器3的所有雾化头4可以共用一个超声波雾化片,也可以每个雾化头4都具有自身独立的超声波雾化片,超声波雾化片可以为陶瓷雾化片,还可以为微孔雾化片,或者其他能够通过高频谐振实现液态水分子结构打散的雾化片,本领域技术人员可以对此进行灵活地设置。当所有雾化头4共用一个超声波雾化片时,超声波雾化片振荡后所有雾化头4中只要有衣物处理剂都会将衣物处理剂打散形成水雾状结构,从而喷射到内筒的衣物上,当每个雾化头4都具有自身独立的超声波雾化片时,超声波雾化片振荡后能够使与其对应的且雾化头4中具有衣物处理剂的雾化头4将衣物处理剂打散形成水雾状结构,从而喷射到内筒的衣物上。在本发明中,优选的是采用每个雾化头4都具有自身独立的超声波雾化片,从而实现不同雾化头4对衣物交替护理、同时护理以及依次护理,并且能够实现上述不同护理方式的切换。以雾化头4具有两个,分别为第一雾化头和第二雾化头为例,交替护理指的是第一雾化头和第二雾化头中的一个开启一段时间后关闭再开启第一雾化头和第二雾化头中的另一个一段时间后关闭,然后再次重复执行上述步骤,同时护理指的是第一雾化头和第二雾化头同时开启,依次护理指的是第一雾化头和第二雾化头中的一个开启一段时间后关闭再开启第一雾化头和第二雾化头中的另一个一段时间然后关闭,然后不再开启任何雾化头。
在本发明中,衣物处理剂可以为纯净水、洗涤剂、柔顺剂、软化剂、消毒剂、杀菌剂、漂白剂或增香剂等,不同的雾化头4可以容纳相同的衣物处理剂,也可以容纳不同的衣物处理剂。雾化头4具有腔室,腔室可以容纳衣物处理剂,在实际应用中,可以在雾化头4上设置注液结构,例如注液结构为与腔室连通的插合孔,用户可以通过注射器的针头插入插合孔中实现注液,或者雾化头4为本身能够拆卸开的分体式结构,例如雾化头4包括底座和与底座可拆卸式连接的盖体,盖体和底座可以采用螺接、卡接或者磁吸附连接等,腔室形成在底座上,当用户需要向雾化头4注液时,可以将盖体从底座上拆卸下来,然后向底座的腔室注液,注液完成后再将盖体安装至底座上。在本发明中,可以是超声波雾化器3整体能够从窗垫2和/或外筒上拆卸下来,还可以是雾化头4单独从超声波雾化器3的外壳或者安装结构上拆卸下来,本领域技术人员可以对此 进行灵活地设置。
优选地,如图1、2、4和7所示,窗垫2上设置有基座5,超声波雾化器3可拆卸式地设置在基座5上。基座5可以由柔性材料制成,例如与窗垫2采用相同或者类似的材质,例如橡胶材质等,当然,基座5优选采用硬质材料制成,例如硬质塑料或金属等,从而便于超声波雾化器3反复安装和拆卸时不易发生窜动,也避免基座5长时间使用后发生变形。超声波雾化器3可以采用螺接的方式与基座5连接,也可以采用插接、卡接、粘接或磁吸附等连接方式连接,又或者采用上述连接方式的组合进行连接,本领域技术人员可以对此进行灵活地设置。
优选地,如图4所示,基座5上形成有插合腔51,超声波雾化器3的外壳能够以插接方式插合在插合腔51中。在实际使用时,用户可以在向雾化头4注液完成后将超声波雾化器3的外壳插合到基座5的插合腔51中从而实现安装,在需要进行注液时将超声波雾化器3的外壳从基座5的插合腔51中拆卸下来。
在一种优选的情形中,基座5上形成有第一导向结构,外壳上形成有第二导向结构,第一导向结构与第二导向结构导向配合以使外壳能够引导入插合腔51中。其中,第一导向结构和第二导向结构可以采用导向槽和导向条的导向配合方式,或者采用导向斜面的配合方式,导向斜面可以为平直斜面,也可以为弧形斜面。可选地,如图4至6所示,第一导向结构包括形成于基座5内壁上的第一斜面52和第二斜面53,第一斜面52和第二斜面53相对设置,第二导向结构包括形成于外壳外壁两侧的第三斜面31和第四斜面32,第一斜面52与第三斜面31导向配合,第二斜面53与第四斜面32导向配合,第一斜面52和第二斜面53均向外倾斜设置,即第一斜面52和第二斜面53之间的距离沿超声波雾化器3的插合方向逐渐减小,第三斜面31与第一斜面52适配,第四斜面32与第二斜面53适配,在本实施方式中,第一斜面52、第二斜面53、第三斜面31和第四斜面32都优选为弧形斜面。
在一种优选的情形中,基座5上形成有第一定位结构,外壳上形成有第二定位结构,第一定位结构与第二定位结构定位配合。其中,第一定位结构与第二定位结构的定位配合方式可以采用定位柱与定位孔的配 合方式,也可以采用定位凸起和定位凹槽的配合方式,又可以采用定位挡片相互配合的方式,本领域技术人员可以对此进行灵活地设置。
当然,作为替代性地,除了上述采用基座5和超声波雾化器3相互定位配合方式,还可以采用驱动器与超声波雾化器3的外壳相互定位的配合方式。驱动器可以采用有线驱动方式,也可以采用无线驱动方式。具体地,驱动器设置在基座5上,驱动器上形成有第一定位结构,外壳上形成有第二定位结构,第一定位结构与第二定位结构定位配合。可选地,驱动器设置在插合腔51的外侧,第一定位结构包括形成于驱动器上的至少一个定位柱,第二定位结构包括形成于外壳上至少一个定位孔,定位柱与定位孔一一对应地定位配合,基座5上形成有允许定位柱穿过的通过结构。定位柱可以为一个,也可以为多个,对应地,定位孔可以为一个,也可以为多个。例如,定位柱和定位孔的数量为两个,通过结构可以为允许定位柱穿过的通孔,通孔的口径可以大于或等于定位柱的外径,当定位柱有多个时,还可以通过将通过结构设置为一个通口,即通过一个通口同时允许多个定位柱穿过。
优选地,如图2至4和7所示,驱动器为无线驱动器6,无线驱动器6上具有主线圈和次线圈中的一个,超声波雾化器3上具有主线圈和次线圈中的另一个,在超声波雾化器3插合在插合腔51中的情形下,主线圈与次线圈耦合。无线驱动器6可以包括壳体和驱动板,壳体固定在基座5上,驱动板设置在壳体内,驱动板内集成有电路系统,电路系统能够使超声波雾化片高频谐振。主线圈可以设置在驱动板上,次线圈可以设置在超声波雾化器3上,当超声波雾化器3安装至基座5的插合腔51中后,主线圈和次线圈耦合实现驱动板的供电。当然,作为替代性的,还可以是次线圈可以设置在驱动板上,主线圈可以设置在超声波雾化器3上。
优选地,无线驱动器6可以采用卡接的方式与基座5连接,例如,无线驱动器6的壳体两侧分别设置卡钩,基座5上对应于卡钩的位置具有卡条或者卡口,卡钩卡合在卡条上或者卡口内实现无线驱动器6与基座5的卡合连接。
优选地,基座5和超声波雾化器3中的至少一个上设置有磁吸结构,基座5与超声波雾化器3通过磁吸结构连接。在实际应用中,可以在基 座5和超声波雾化器3上都设置磁吸结构,从而利用磁吸结构实现超声波雾化器3与基座5的吸合,例如在超声波雾化器3和基座5上分别设置磁性相异的第一永磁铁和第二永磁铁,通过第一永磁铁和第二永磁铁实现超声波雾化器3与基座5的吸合,当然,还可以仅在基座5上设置永磁铁,而将超声波雾化器3的外壳设置为金属外壳,通过永磁铁对金属的吸合实现超声波雾化器3连接在基座5上,另外,还可以将基座5设置为金属基座5,而将永磁铁设置在超声波雾化器3上。
在一种优选的实施方式中,如图2至7所示,基座5和超声波雾化器3的外壳通过前述的第一斜面52、第二斜面53、第三斜面31和第四斜面32进行导向配合,同时在驱动器上设置有两个磁吸定位头7,超声波雾化器3的外壳上形成有两个定位沉孔8,磁吸定位头7与定位沉孔8一一对应且相互定位配合,超声波雾化器3的外壳可以为允许被磁性吸合的金属外壳或者定位沉孔8中具有与磁吸定位头7吸合的磁性构件或允许被磁性吸合的被吸合构件,从而实现磁吸定位头7既能够对超声波雾化器3进行定位,又能够对超声波雾化器3磁性吸合。在实际安装时,通过第一斜面52、第二斜面53、第三斜面31和第四斜面32的导向配合实现超声波雾化器3的引导,便于超声波雾化器3的外壳上的定位沉孔8准确地与磁吸定位头7对接,实现定位,然后通过磁吸定位头7的磁性作用实现对超声波雾化器3的吸合连接。
至此,已经结合附图所示的优选实施方式描述了本发明的技术方案,但是,本领域技术人员容易理解的是,本发明的保护范围显然不局限于这些具体实施方式。在不偏离本发明的原理的前提下,本领域技术人员可以对相关技术特征作出等同的更改或替换,这些更改或替换之后的技术方案都将落入本发明的保护范围之内。

Claims (10)

  1. 一种衣物处理设备,所述衣物处理设备包括相连的衣物处理筒和窗垫,其特征在于,所述衣物处理设备还包括设置在所述窗垫上部的超声波雾化器,所述超声波雾化器具有彼此独立的多个雾化头,所述多个雾化头能够分别容纳相同或不同的衣物处理剂,所述超声波雾化器位于所述窗垫的轴线所在的竖直平面向左偏转60°和向右偏转60°之间的角度范围内,所有所述雾化头均朝向所述衣物处理筒的内部设置,且所有所述雾化头的朝向均设置在相较于竖直向下的方向具有60°至120°的角度范围内。
  2. 根据权利要求1所述的衣物处理设备,其特征在于,所述窗垫上设置有基座,所述超声波雾化器可拆卸式地设置在所述基座上。
  3. 根据权利要求2所述的衣物处理设备,其特征在于,所述基座上形成有插合腔,所述超声波雾化器的外壳能够以插接方式插合在所述插合腔中。
  4. 根据权利要求3所述的衣物处理设备,其特征在于,所述基座上形成有第一导向结构,所述外壳上形成有第二导向结构,所述第一导向结构与所述第二导向结构导向配合以使所述外壳能够引导入所述插合腔中。
  5. 根据权利要求4所述的衣物处理设备,其特征在于,所述第一导向结构包括形成于所述基座内壁上的第一斜面和第二斜面,所述第一斜面和所述第二斜面相对设置,所述第二导向结构包括形成于所述外壳外壁两侧的第三斜面和第四斜面,所述第一斜面与所述第三斜面导向配合,所述第二斜面与所述第四斜面导向配合。
  6. 根据权利要求3所述的衣物处理设备,其特征在于,所述基座上 形成有第一定位结构,所述外壳上形成有第二定位结构,所述第一定位结构与所述第二定位结构定位配合。
  7. 根据权利要求3所述的衣物处理设备,其特征在于,所述超声波雾化器还包括设置在所述基座上的驱动器,所述驱动器上形成有第一定位结构,所述外壳上形成有第二定位结构,所述第一定位结构与所述第二定位结构定位配合。
  8. 根据权利要求7所述的衣物处理设备,其特征在于,所述驱动器设置在所述插合腔的外侧,所述第一定位结构包括形成于所述驱动器上的至少一个定位柱,所述第二定位结构包括形成于所述外壳上至少一个定位孔,所述定位柱与所述定位孔一一对应地定位配合,所述基座上形成有允许所述定位柱穿过的通过结构。
  9. 根据权利要求7所述的衣物处理设备,其特征在于,所述驱动器为无线驱动器,所述无线驱动器上具有主线圈和次线圈中的一个,所述超声波雾化器上具有所述主线圈和所述次线圈中的另一个,在所述超声波雾化器插合在所述插合腔中的情形下,所述主线圈与所述次线圈耦合。
  10. 根据权利要求2至9中任一项所述的衣物处理设备,其特征在于,所述基座和所述超声波雾化器中的至少一个上设置有磁吸结构,所述基座与所述超声波雾化器通过所述磁吸结构连接。
PCT/CN2022/102437 2021-09-10 2022-06-29 衣物处理设备 WO2023035733A1 (zh)

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JP2009089958A (ja) * 2007-10-10 2009-04-30 Panasonic Corp ドラム式洗濯乾燥機
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