CN111979689A - Washing machine and use method thereof - Google Patents

Washing machine and use method thereof Download PDF

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Publication number
CN111979689A
CN111979689A CN201910441982.0A CN201910441982A CN111979689A CN 111979689 A CN111979689 A CN 111979689A CN 201910441982 A CN201910441982 A CN 201910441982A CN 111979689 A CN111979689 A CN 111979689A
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CN
China
Prior art keywords
washing
ultrasonic generator
shell
link
ultrasonic
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
CN201910441982.0A
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Chinese (zh)
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CN111979689B (en
Inventor
赵海斌
王秀梅
孙广彬
邵明岩
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Qingdao Haier Washing Machine Co Ltd
Qingdao Haier Co Ltd
Original Assignee
Qingdao Haier Washing Machine Co Ltd
Qingdao Haier Co Ltd
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Application filed by Qingdao Haier Washing Machine Co Ltd, Qingdao Haier Co Ltd filed Critical Qingdao Haier Washing Machine Co Ltd
Priority to CN201910441982.0A priority Critical patent/CN111979689B/en
Priority to PCT/CN2020/091513 priority patent/WO2020238743A1/en
Priority to JP2021568781A priority patent/JP7423872B2/en
Publication of CN111979689A publication Critical patent/CN111979689A/en
Application granted granted Critical
Publication of CN111979689B publication Critical patent/CN111979689B/en
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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
    • 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

Abstract

The invention discloses a washing machine and a use method thereof, comprising a tray seat; an ultrasonic generator disposed inside the tray base and movable between a cleaning position and a storage position; the disc seat comprises a shell, a disc seat and a control device, wherein the shell is arranged in the disc seat and used for accommodating the ultrasonic generator; and a door body which is arranged at the front part of the shell and can be opened and closed. The invention provides a washing machine and a use method thereof.A supersonic device arranged in a tray seat is movably arranged between a cleaning position and a containing position, so that the space in the tray seat is fully utilized, the problem that the effective space of the tray seat is reduced due to the fact that the supersonic device occupies larger extra space is solved, and meanwhile, the clothes to be washed soaked with liquid can be directly contacted with a supersonic vibrator, so that the absorption consumption of the supersonic wave by soft clothes is greatly reduced, the dirt on the surface of the clothes can be removed, and the stubborn dirt in a deeper layer can also be removed.

Description

Washing machine and use method thereof
Technical Field
The invention belongs to the technical field of household appliances, and particularly relates to a washing machine and a use method of the washing machine.
Background
With the pace of life increasing, people's life becomes busy increasingly, often will wait to wash the clothing together and wash, in the correlation technique, when washing machine washed the clothing, stubborn spot district is difficult for by the sanitization such as collar and cuff, the user need carry out manual washing to stubborn spot district, lead to the cleanliness factor of clothing not good, brought very big inconvenience simultaneously for the user, to above-mentioned circumstances, ultrasonic cleaning has become main trend, present ultrasonic cleaning need propagate in the liquid in order to reach the effect of washing to the article of being washed. And among the prior art, the ultrasonic cleaning technique is as the container with ultrasonic cleaner, treat that abluent part soaks wherein, reach clear purpose under the effect of ultrasonic wave, nevertheless because ultrasonic wave takes place the too much space that has taken washing machine that sets up of module, and for the ultrasonic wave that the ultrasonic wave generation module of effectual utilization sent, need set up ultrasonic wave generation module in the position that is close to center one side of washing machine for it is very inconvenient when puting in and using, the size of ultrasonic wave generation module has also been increased, user's experience sense has been reduced.
Chinese patent application No. CN201720869610.4 discloses a washing machine, comprising: the device comprises a shell, a feeding port and a discharging port, wherein the shell is provided with the feeding port; the door cover is movably arranged on the machine shell to open or close the throwing opening, and a groove is arranged on the machine shell and/or the door cover; the ultrasonic cleaning module comprises a shell and at least one ultrasonic transducer, wherein the ultrasonic transducer is arranged on the shell, and the shell can be arranged in the groove in a drawing mode between a cleaning position and a storage position so that the ultrasonic transducer can be contacted with or separated from clothes to be cleaned.
Chinese patent application No. CN201420410691.8 discloses a washing machine, comprising: the washing machine comprises a machine body, wherein a washing tank suitable for placing clothes to be washed is arranged on the machine body; the telescopic frame is telescopically arranged on the side wall of the cleaning tank and can move between an extending position and a retracting position; the ultrasonic generating device is arranged on the expansion bracket when the expansion bracket is positioned at the extending position, and the ultrasonic generating device is suitable for transmitting generated ultrasonic vibration waves to the cleaning tank so as to clean clothes to be cleaned in the cleaning tank.
Although the above prior art proposes the application of two ultrasonic devices to a washing machine, the structure of the ultrasonic device is too simple or too complex, and the ultrasonic device can only clean clothes in a washing tub, stains are usually adsorbed in the clothes, or have penetrated into molecular or atomic tissues of the clothes, and the conventional manner can only generate vibration on the surface of the clothes, which is not ideal for cleaning local stubborn stains on the clothes.
Therefore, it is necessary to improve the defects of the prior art, and a washing machine and a using method of the washing machine are provided, the ultrasonic device arranged in the tray is movably arranged between the cleaning position and the accommodating position, the space inside the tray is fully utilized, the problem that the effective space of the tray is reduced due to the fact that the extra space occupied by the ultrasonic device is large is solved, meanwhile, the clothes to be washed which are soaked in liquid can be directly contacted with the ultrasonic vibrator, the absorption consumption of the ultrasonic waves by soft clothes is greatly reduced, the dirt on the surface of the clothes can be removed, and the stubborn dirt in depth can also be removed.
The present invention has been made in view of this situation.
Disclosure of Invention
The technical problem underlying the present invention is to overcome the drawbacks of the prior art and to provide a washing machine which overcomes or at least partially solves the above mentioned problems.
Another object of the present invention is to provide a method for using a washing machine.
In order to solve the technical problems, the invention adopts the technical scheme that: a washing machine comprises
A tray seat;
an ultrasonic generator disposed inside the tray base and movable between a cleaning position and a storage position;
wherein the tray seat comprises
The shell is arranged in the disc seat and used for accommodating the ultrasonic generator;
and a door body which is arranged at the front part of the shell and can be opened and closed.
In addition, also includes
A cleaning tank which is arranged in the shell and can move between a cleaning position and a containing position;
in one embodiment, the movement of the cleaning tank between a cleaning position and a storage position is synchronized with the ultrasonic generator;
in one embodiment, the cleaning tank includes a cleaning zone;
the washing area is arranged corresponding to the ultrasonic generator;
in one embodiment, the ultrasonic generator is disposed above the cleaning tank;
The ultrasonic vibration end of the ultrasonic generator faces the cleaning tank.
Furthermore, a water inlet pipe is arranged on the shell corresponding to the position of the cleaning groove;
a water outlet is formed in one side of the cleaning tank close to the rear part of the shell;
an elastic valve plug is arranged corresponding to the water discharge opening.
Furthermore, a water receiving groove is formed in the rear portion of the shell corresponding to the water draining opening;
in one embodiment, at least the bottom surface of the water receiving tank is obliquely arranged;
a water outlet is arranged on the side wall at the lowest end of the bottom surface of the water receiving tank or close to one side of the lowest end;
more preferably, the door body is made of a transparent material.
A method for using a washing machine comprises
The refrigerator comprises a tray seat and a shell arranged in the tray seat, wherein the front part of the shell is provided with a door body capable of opening and closing the shell;
the ultrasonic generator and the cleaning tank are arranged in the shell;
also comprises the following steps
Opening the door body, and moving the ultrasonic generator and the cleaning tank from a storage position to a cleaning position;
placing clothes to be cleaned between the ultrasonic generator and the cleaning tank;
and starting the ultrasonic generator.
Wherein, the cleaning tank comprises a cleaning area;
the washing area is arranged corresponding to the ultrasonic generator;
in one embodiment, the ultrasonic generator is disposed above the cleaning tank;
the ultrasonic vibration end of the ultrasonic generator faces the cleaning tank;
in one embodiment, the movement of the cleaning tank between the cleaning position and the storage position is synchronized with the ultrasonic generator.
Furthermore, a water inlet pipe is arranged on the shell corresponding to the position of the cleaning groove;
washing liquid enters the washing area of the washing tank from the water inlet pipe;
in one embodiment, the ultrasonic vibration end of the ultrasonic generator is in contact with the liquid level of the washing liquid in the washing zone or has a set pitch;
in one embodiment, the set distance is such that at least the lower surface of the laundry to be cleaned is in contact with the liquid level of the washing liquid when the upper surface of the laundry to be cleaned is in contact with the ultrasonic vibration end of the ultrasonic generator.
Furthermore, one side of the cleaning tank close to the rear part of the shell is provided with a water outlet;
an elastic valve plug is arranged corresponding to the water discharge opening;
In one embodiment, after washing is finished or in the process of washing, the discharge of washing liquid in the washing area of the washing tank is realized by controlling the opening or closing of the elastic valve plug;
in one embodiment, the opening and closing of the elastic valve plug is achieved by activating a corresponding control unit.
Still further, a water receiving groove is arranged at the rear part of the shell corresponding to the water drainage opening;
in one embodiment, at least the bottom surface of the water receiving tank is obliquely arranged;
the water receiving tank is characterized in that a water outlet is arranged at the lowest end of the bottom surface of the water receiving tank or on the side wall close to one side of the lowest end.
Furthermore, the door body is made of transparent materials;
when the ultrasonic generator is located at the cleaning position, the observation of the washing condition of the clothes to be cleaned is realized through the transparent door body.
After adopting the technical scheme, compared with the prior art, the invention has the following beneficial effects: the invention provides a washing machine and a use method thereof.A supersonic device arranged in a tray seat is movably arranged between a cleaning position and a containing position, so that the space in the tray seat is fully utilized, the problem that the effective space of the tray seat is reduced due to the fact that the supersonic device occupies larger extra space is solved, and meanwhile, the clothes to be washed soaked with liquid can be directly contacted with a supersonic vibrator, so that the absorption consumption of the supersonic wave by soft clothes is greatly reduced, the dirt on the surface of the clothes can be removed, and the stubborn dirt in a deeper layer can also be removed.
The following describes embodiments of the present invention in further detail with reference to the accompanying drawings.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention, are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention without limiting the invention to the right. It is obvious that the drawings in the following description are only some embodiments, and that for a person skilled in the art, other drawings can be derived from them without inventive effort.
In the drawings:
FIG. 1 is a first schematic view of an ultrasound device of the present invention;
FIG. 2 is a second schematic view of an ultrasonic apparatus of the present invention;
FIG. 3 is a third schematic view of an ultrasonic apparatus of the present invention;
FIG. 4 is a fourth schematic view of an ultrasonic apparatus of the present invention;
FIG. 5 is a fifth schematic view of an ultrasound device of the present invention;
FIG. 6 is a schematic view of a first linkage of the present invention;
FIG. 7 is a schematic view of a second link of the present invention;
FIG. 8 is a schematic view of a first slide of the present invention;
FIG. 9 is a schematic view of a second slide of the present invention;
FIG. 10 is a schematic view of the rotating portion of the present invention;
FIG. 11 is a first schematic view of the door of the present invention;
FIG. 12 is a second schematic view of the door of the present invention;
FIG. 13 is a schematic view of the construction of the tray of the present invention;
FIG. 14 is a sixth schematic view of an ultrasound device of the present invention.
In the figure: 1. a housing; 101. a water inlet pipe; 102. a water receiving tank; 103. a water outlet; 104. a first chute; 105. a second chute; 106. a first limiting part; 107. a second limiting part; 108. a guide section; 2. a door body; 3. a cleaning tank; 301. a washing area; 302. a water discharge opening; 303. an elastomeric valve plug; 4. an ultrasonic generator; 401. an ultrasonic vibration end; 5. a connecting rod assembly; 501. a first link; 502. a second link; 503. a connecting rod slot; 504. a first opening; 505. a second guide post; 506. a second opening; 6. a first slider; 601. a first guide post; 603. a positioning part; 7. a second slider; 701. an installation part; 702. a first baffle plate; 8. a center of rotation; 801. a rotating shaft; 9. a rotating part; 901. a second baffle; 10. a torsion spring; 11. a tray seat; 12. a housing chamber; 13. a laundry input port; 14. an additive feeding port; 15. a first region; 16. a second region; 17. a third region; 18. and a fourth region.
It should be noted that the drawings and the description are not intended to limit the scope of the inventive concept in any way, but to illustrate it by a person skilled in the art with reference to specific embodiments.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and the following embodiments are used for illustrating the present invention and are not intended to limit the scope of the present invention.
In the description of the present invention, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Fig. 1 to 5 and 14 are first, second, third, fourth, fifth and sixth schematic views of an ultrasonic device according to the present invention, as can be seen from fig. 1 to 5, the ultrasonic device includes an ultrasonic generator 4 and an ultrasonic vibration end 401, the ultrasonic device is disposed inside a housing 1 and can move between a storage position and a cleaning position, a connecting rod assembly 5 rotates around a rotation center 8 on the housing 1, the housing 1 is further provided with a first slider 6 and a second slider 7 which are matched with two ends of the connecting rod assembly 5, the connecting rod assembly 5 forms a pendulum-like motion around the rotation center 8 on the housing 1, under the action of the connecting rod assembly 5, the motion trajectories of the first slider 6 and the second slider 7 are parallel, in one embodiment, the motion trajectories of the first slider 6 and the second slider 7 are linear, in practical application, the motion trajectories of the first slider 6 and the second slider 7 can be set to be arc-like according to needs, in addition, a first sliding groove 104 and a second sliding groove 105 are further arranged on the housing 1, and respectively correspond to the first slider 6 and the second slider 7, and the first slider 6 and the second slider 7 form a movement track under the action of the first sliding groove 104 and the second sliding groove 105.
Fig. 1 is a schematic view of the ultrasonic apparatus at a storage position, fig. 5 is a schematic view of the ultrasonic apparatus at a cleaning position, and fig. 2 to 4 are schematic views of the ultrasonic apparatus moving to the latter storage position at the storage position or the cleaning position.
Further, the link assembly 5 includes a first link 501 and a second link 502, wherein the first link 501 is engaged with the rotation shaft 801 and rotates around the rotation center 8, in fig. 1, the rotation shaft 801 and the rotation center 8 are marked at the same position, in practical application, a rotation shaft 801 is installed at the rotation center 8 for positioning the first link 501, where for convenience of viewing, the two are marked as a whole, the first link 501 faces the housing 1 side and is provided with a link groove 503 in the length direction of the first link 501, the second link 502 can extend into or extend from the length direction of the first link 501 within the range of the link groove 503 when the link assembly 5 rotates, the first link 501 is further provided with a first opening 504 in the length direction, the first slider 6 is provided with a first guide post 601 engaged with the first opening 504, and when the link assembly 5 rotates, the first guide post 601 drives the first slider 6 to slide along the first sliding slot 104 under the action of the first opening 504, and the second link 502 is provided with the second guide post 505 matched with the first opening 504, similarly, when the link assembly 5 rotates, the second guide post 505 drives the second slider 7 to slide along the first sliding slot 104 under the action of the first opening 504, the second link 502 is further provided with the second opening 506 matched with the rotating shaft 801, when the second link 502 extends into or extends out in the length direction of the first link 501, the second opening 506 of the second link 502 also plays a guiding role, and meanwhile, the second link 502 is prevented from deviating from the link groove 503.
Furthermore, the housing 1 is provided with a first limiting portion 106 and a second limiting portion 107, the first slider 6 is provided with a positioning portion 603, and the positioning portion 603 is respectively matched with the first limiting portion 106 and the second limiting portion 107, so as to realize the rotation motion of the connecting rod assembly 5 within a certain range.
Still further, one end of the second slider 7 is rotatably engaged with the second link 502, the other end is provided with an installation part 701, the installation part 701 is a hollow cylindrical structure, a rotation part 9 is further provided in engagement with the installation part 701, a first baffle 702 is provided on the installation part 701, a second baffle 901 is provided on the rotation part 9, a torsion spring 10 is provided outside the installation part 701 and engaged with the first baffle 702 and the second baffle 901, as can be seen in fig. 14, a guide part 108 is provided, the torsion spring 10 is engaged with the guide part 108 provided inside the housing 1, the torsion spring 10 and the guide part 108 realize switching between linear motion and rotational motion, the guide part 108 is an arc-shaped guide structure, the torsion spring 10 provides a restoring force after the linear motion is converted into rotational motion, such an arrangement makes the rotational motion of the link assembly 5 converted into the linear motion of the second slider 7, and converts the linear motion of the second slider 7 into the rotational motion of the rotation part 9, various applications of the ultrasonic device are provided.
Still further, a door 2 is provided at the front of the housing 1 to be openable and closable, and is housed in the housing 1 at least in an opened state, and the entire ultrasonic apparatus is placed at a cleaning position for a user to operate.
Still further, a water receiving tank 102 is arranged at the rear part of the shell 1, the water receiving tank 102 is arranged corresponding to a water discharge opening 302 at the rear part of the water inlet pipe 101, a water discharge opening 103 is arranged at one side of the water receiving tank 102, an elastic valve plug 303 is arranged corresponding to the water discharge opening 302, the water inlet pipe 101 corresponds to the washing tank 3, washing liquid is introduced into the washing area 301 along the washing tank 3, in the washing process or the washing process, the elastic valve plug 303 is opened, and the washing liquid in the washing tank 3 enters the water receiving tank 102 along the water discharge opening 302.
Fig. 6 is a schematic view of a first link 501 of the present invention, and it can be seen in fig. 6 that the first link 501 is provided with a link slot 503 in the length direction, the link slot 503 is engaged with a second link 502 to form a channel for the second link 502 to slide in the first link 501, the first link 501 is further provided with a first opening 504, the first opening 504 is engaged with a first guide post 601 and a second guide post 505, and the first link 501 is further provided with a rotation center 8 and a rotation shaft 801, during the actual installation process, the rotation center 8 needs to pass through the rotation shaft 801, and the first link 501 rotates around the rotation shaft 801, for the convenience of viewing, the rotation shaft 801 is omitted in fig. 5, and the rotation center 8 and the rotation shaft 801 are labeled together.
Fig. 7 is a schematic view of the second link 502 of the present invention, and in fig. 6, it can be seen that the second link 502 is provided with a second opening 506 and a second guiding post 505, the second opening 506 is matched with the rotating shaft 801 to form a guide for the second link 502 to extend into and out of the first link 501, the second guiding post 505 is matched with the first opening 504 of the first link 501, the other end of the second link 502 is matched with the second slider 7, and as can be seen from fig. 6, the matching of the second link 502 and the second slider 7 is a rotating matching.
Fig. 8 and 9 are schematic views of a first slider 6 and a second slider 7 according to the present invention, and it can be seen from fig. 8 and 9 that the first slider 6 is provided with a first guide post 601, and the second slider 7 is provided with a rear mounting portion 701 and a first shutter 702.
Fig. 10 is a schematic view of the rotating part 9 of the present invention, and it can be seen from fig. 10 that the rotating part 9 is provided with a second baffle 901, and cooperates with the torsion spring 10 together with the first baffle 702 of the second slider 7, and it can be seen from fig. 14 that a guiding part 108 is provided, the torsion spring 10 cooperates with the guiding part 108 provided inside the housing 1, the torsion spring 10 and the guiding part 108 realize switching between linear motion and rotational motion, the guiding part 108 is in an arc-shaped guiding structure, and the torsion spring 10 provides restoring force after the linear motion is converted into the rotational motion, so as to realize that the linear motion of the second slider 7 is converted into the rotational motion of the rotating part 9.
Fig. 11 and 12 are first and second schematic diagrams of the door body 2 according to the present invention, showing an axial schematic diagram of the door body 2 and a sectional schematic diagram of the door body 2, and it can be seen from fig. 11 and 12 that a joint engaged with the rotating portion 9 is provided at a rotating shaft side of the door body 2, and the shape of the joint is engaged with the shape of an end portion of the rotating portion 9.
Fig. 13 is a schematic structural diagram of a tray 11 of the present invention, and it can be seen from fig. 13 that a door body 2 is provided on the tray 11, a laundry input port 13 is provided at a position close to the center of the tray 11, an additive input port 14 is provided on the top surface of the tray 11, the additive input port 14 is communicated with an accommodation chamber 12, and the side edge of the tray 11 and the laundry input port 13 of the tray 11 are divided into a first region 15, a second region 16, a third region 17 and a fourth region 18, forming a region where the additive input port 14 is provided.
In general, the shell 1 is matched with the connecting rod assembly 5, and the motion tracks of the two sliding blocks connected with the connecting rod assembly 5 are limited, so that the function of transmitting motion of the sliding blocks is realized under the action of the connecting rod assembly 5, and meanwhile, the ultrasonic device has the characteristics of small occupied space, small motion amplitude and the like; the ultrasonic device arranged in the disk seat 11 is arranged to be movable between a cleaning position and a storage position, so that the space in the disk seat 11 is fully utilized, and meanwhile, the connecting rod assembly 5 is arranged to be of a structure capable of stretching in the rotating process, so that the direction of the motion track and the motion amplitude of the sliding block in the moving process are controlled, the ultrasonic device is ensured to transfer motion, and the problem that the effective space of the disk seat 11 is reduced due to the fact that the extra space occupied by the ultrasonic device is large is avoided; the clothes to be washed soaked in the liquid can be directly contacted with the ultrasonic vibrator, so that the absorption consumption of the soft clothes to ultrasonic waves is greatly reduced, and not only can dirt on the surface of the clothes be removed, but also deeper intractable dirt can be removed.
In addition, an additive feeding port 14 is arranged in an area formed by two side walls of the tray seat 11 and the clothes feeding port 13, so that under the condition that the external size of the washing machine is not increased, the space and the capacity of the clothes feeding port 13 are increased, meanwhile, the clothes are conveniently taken and placed, and the state of the clothes inside is favorably observed; the additive feeding port 14 is arranged in the area between two adjacent side walls of the tray seat 11 and the clothes feeding port 13, so that the space of the tray seat 11 is fully utilized, and the requirements of users on different washing products such as detergent, softener and the like during washing are met; the connection mode of the ultrasonic module and the washing machine tray seat 11 is improved, so that the ultrasonic module can be collected when not used, the space of the clothes throwing port 13 is further increased, the arrangement of the ultrasonic module is more humanized, and the user experience is improved.
Example one
As shown in fig. 1 to 12 and 14, an ultrasonic apparatus according to the present embodiment includes a housing 1 and an ultrasonic generator 4 disposed inside the housing 1 and movable between a cleaning position and a storage position; and a door 2 which is provided at the front of the casing 1 so as to be openable and closable, and which is housed in the casing 1 at least in an open state.
Example two
As shown in fig. 1 to 12 and 14, an ultrasonic apparatus according to the present embodiment includes a housing 1; a door 2 openably and closably provided in a front portion of the casing 1; a cleaning tank 3 and an ultrasonic generator 4 provided corresponding to a cleaning area 301 of the cleaning tank 3; the cleaning tank 3 and the ultrasonic generator 4 are provided inside the housing 1 and are movable between a cleaning position and a storage position.
Wherein, the ultrasonic generator 4 is arranged above the cleaning tank 3; the ultrasonic vibration end 401 of the ultrasonic generator 4 faces the cleaning tank 3; a water inlet pipe 101 is arranged on the shell 1 corresponding to the position of the cleaning tank 3; a water outlet 302 is arranged on one side of the cleaning tank 3 close to the rear part of the shell 1; an elastic valve plug 303 is arranged corresponding to the water discharge opening 302; a water receiving tank 102 is further disposed at the rear of the housing 1 corresponding to the water discharge opening 302; at least the bottom surface of the water receiving tank 102 is obliquely arranged; a drain opening 103 is provided at the lowermost end of the bottom surface of the water receiving tank 102 or at a side wall near the lowermost end.
Fig. 1 to 5 are first, second, third, fourth and fifth schematic views of an ultrasonic apparatus according to the present invention, and as can be seen from fig. 1 to 5, the ultrasonic apparatus includes an ultrasonic generator 4 and an ultrasonic vibration end 401, is disposed inside a housing 1 and is movable between a storage position and a cleaning position, fig. 1 is a schematic view of the ultrasonic apparatus in the storage position, fig. 5 is a schematic view of the ultrasonic apparatus in the cleaning position, and fig. 2 to 4 are schematic views of the ultrasonic apparatus in the storage position or the cleaning position moving to the latter storage position.
Set up water receiving tank 102 at casing 1 rear portion, water receiving tank 102 corresponds the discharge opening 302 setting at inlet tube 101 rear portion, one side of water receiving tank 102 is provided with outlet 103, it is provided with elastic valve plug 303 to correspond discharge opening 302 department, inlet tube 101 corresponds washing tank 3, introduce washing liquid in washing region 301 along washing tank 3, finish or abluent in-process wasing, open elastic valve plug 303, washing liquid in the washing tank 3 gets into in the water receiving tank 102 along discharge opening 302.
EXAMPLE III
As shown in fig. 1 to 12 and 14, the present embodiment is based on the second embodiment, and the ultrasonic apparatus of the present embodiment has the cleaning tank 3 moving between the cleaning position and the storage position in synchronization with the ultrasonic generator 4.
Example four
As shown in fig. 1 to 12 and 14, based on any one of the first to third embodiments, the present embodiment further includes a connecting rod assembly 5 capable of rotating around a rotation center 8; the first sliding block 6 and the second sliding block 7 are movably arranged on the connecting rod assembly 5 and can slide corresponding to the sliding groove on the shell 1; the first sliding block 6 is connected with the cleaning tank 3; the second sliding block 7 is connected with the door body 2; the first sliding block 6 slides in the sliding groove of the shell 1, and the connecting rod assembly 5 drives the second sliding block 7 to synchronously slide in the sliding groove of the shell 1;
Fig. 1 to 5 and 14 are first, second, third, fourth, fifth and sixth schematic views of an ultrasonic device according to the present invention, and as can be seen from fig. 1 to 5, the ultrasonic device includes an ultrasonic generator 4 and an ultrasonic vibration end 401, the ultrasonic device is disposed inside a housing 1 and is capable of moving between a storage position and a cleaning position, a link assembly 5 rotates around a rotation center 8 on the housing 1, the housing 1 is further provided with a first slider 6 and a second slider 7 which are engaged with both ends of the link assembly 5, and the link assembly 5 forms a pendulum-like motion around the rotation center 8 on the housing 1.
EXAMPLE five
As shown in fig. 1 to 12 and 14, based on any one of the first to third embodiments, the present embodiment further includes a connecting rod assembly 5 capable of rotating around a rotation center 8; the first sliding block 6 and the second sliding block 7 are movably arranged on the connecting rod assembly 5 and can slide corresponding to the sliding groove on the shell 1; the first sliding block 6 is connected with the cleaning tank 3; the second sliding block 7 is connected with the door body 2; a drive unit connected to the link assembly 5; the driving unit drives the connecting rod assembly 5 to rotate around the rotation center 8, and the sliding tracks of the first sliding block 6 and the second sliding block 7 in the sliding groove of the shell 1 are defined in cooperation with the sliding of the first sliding block 6 and the second sliding block 7 on the connecting rod assembly 5.
Fig. 1 to 5 and 14 are first, second, third, fourth, fifth and sixth schematic views of an ultrasonic device according to the present invention, and as can be seen from fig. 1 to 5, the ultrasonic device includes an ultrasonic generator 4 and an ultrasonic vibration end 401, the ultrasonic device is disposed inside a housing 1 and is capable of moving between a storage position and a cleaning position, a link assembly 5 rotates around a rotation center 8 on the housing 1, the housing 1 is further provided with a first slider 6 and a second slider 7 which are engaged with both ends of the link assembly 5, and the link assembly 5 forms a pendulum-like motion around the rotation center 8 on the housing 1.
EXAMPLE six
As shown in fig. 1 to 12 and 14, based on any one of the fourth embodiment and the fifth embodiment, the ultrasonic device of the present embodiment is provided with a first sliding slot 104 and a second sliding slot 105 on the housing 1; the first slider 6 and the second slider 7 are respectively and correspondingly disposed in the first sliding groove 104 and the second sliding groove 105, and can slide in the first sliding groove 104 and the second sliding groove 105.
Further, the link assembly 5 includes a first link 501 and a second link 502; the first link 501 is engaged with the rotation shaft 801 and can rotate around the rotation center 8; when the first link 501 rotates around the rotation center 8, the second link 502 can extend in or out of the first link 501 along the length direction of the first link 501. One end of the first link 501 is engaged with the first slider 6, and a position near the other end is engaged with the rotation shaft 801 provided at the rotation center 8; the first link 501 is provided with a link groove 503 capable of accommodating at least the second link 502 extending into or out of the link groove; a first elongated opening 504 arranged along the length direction of the first link 501 is further arranged in the link groove 503 of the first link 501;
Further, the first slider 6 is provided with a first guiding column 601 matching with the first opening 504; when the first link 501 rotates around the rotation center 8, the first guide post 601 of the first slider 6 slides in the first opening 504 under the action of the first link 501. One end of the second connecting rod 502 is rotatably matched with the second sliding block 7, and the other end is provided with a second guide column 505; the second guiding stud 505 is engaged with the first opening 504 of the first link 501; when the first link 501 rotates around the rotation center 8, the second guide post 505 of the second slider 7 slides in the first opening 504 by the first link 501. The second link 502 is provided with a second opening 506 engaged with the rotation shaft 801; the second opening 506 is a long opening disposed along the length of the second link 502.
Fig. 1 to 5 and 14 are first, second, third, fourth, fifth and sixth schematic views of an ultrasonic apparatus according to the present invention, and as can be seen from fig. 1 to 5, the ultrasonic apparatus includes an ultrasonic generator 4 and an ultrasonic vibrating end 401, the ultrasonic apparatus is disposed inside a housing 1, the connecting rod assembly 5 rotates around a rotation center 8 on the shell 1, a first sliding block 6 and a second sliding block 7 which are matched with two ends of the connecting rod assembly 5 are further arranged on the shell 1, the connecting rod assembly 5 forms pendulum-like motion around the rotation center 8 on the shell 1, a first sliding groove 104 and a second sliding groove 105 are further arranged on the shell 1 and respectively correspond to the first sliding block 6 and the second sliding block 7, and the first sliding block 6 and the second sliding block 7 form the motion track of the first sliding groove 104 and the second sliding groove 105 under the action of the first sliding groove 104 and the second sliding groove 105.
Fig. 1 is a schematic view of the ultrasonic apparatus at a storage position, fig. 5 is a schematic view of the ultrasonic apparatus at a cleaning position, and fig. 2 to 4 are schematic views of the ultrasonic apparatus moving to the latter storage position at the storage position or the cleaning position.
Further, the link assembly 5 includes a first link 501 and a second link 502, wherein the first link 501 is engaged with the rotation shaft 801 and rotates around the rotation center 8, in fig. 1, the rotation shaft 801 and the rotation center 8 are marked at the same position, in practical application, a rotation shaft 801 is installed at the rotation center 8 for positioning the first link 501, where for convenience of viewing, the two are marked as a whole, the first link 501 faces the housing 1 side and is provided with a link groove 503 in the length direction of the first link 501, the second link 502 can extend into or extend from the length direction of the first link 501 within the range of the link groove 503 when the link assembly 5 rotates, the first link 501 is further provided with a first opening 504 in the length direction, the first slider 6 is provided with a first guide post 601 engaged with the first opening 504, and when the link assembly 5 rotates, the first guide post 601 drives the first slider 6 to slide along the first sliding slot 104 under the action of the first opening 504, and the second link 502 is provided with the second guide post 505 matched with the first opening 504, similarly, when the link assembly 5 rotates, the second guide post 505 drives the second slider 7 to slide along the first sliding slot 104 under the action of the first opening 504, the second link 502 is further provided with the second opening 506 matched with the rotating shaft 801, when the second link 502 extends into or extends out in the length direction of the first link 501, the second opening 506 of the second link 502 also plays a guiding role, and meanwhile, the second link 502 is prevented from deviating from the link groove 503.
Further, a door 2 is provided at the front of the housing 1 to be openable and closable, and is housed in the housing 1 at least in an opened state, and the entire ultrasonic apparatus is placed at a cleaning position for a user to operate.
Fig. 6 is a schematic view of a first link 501 of the present invention, and it can be seen in fig. 6 that the first link 501 is provided with a link slot 503 in the length direction, the link slot 503 is engaged with a second link 502 to form a channel for the second link 502 to slide in the first link 501, the first link 501 is further provided with a first opening 504, the first opening 504 is engaged with a first guide post 601 and a second guide post 505, and the first link 501 is further provided with a rotation center 8 and a rotation shaft 801, during the actual installation process, the rotation center 8 needs to pass through the rotation shaft 801, and the first link 501 rotates around the rotation shaft 801, for the convenience of viewing, the rotation shaft 801 is omitted in fig. 5, and the rotation center 8 and the rotation shaft 801 are labeled together.
Fig. 7 is a schematic view of the second link 502 of the present invention, and in fig. 6, it can be seen that the second link 502 is provided with a second opening 506 and a second guiding post 505, the second opening 506 is matched with the rotating shaft 801 to form a guide for the second link 502 to extend into and out of the first link 501, the second guiding post 505 is matched with the first opening 504 of the first link 501, the other end of the second link 502 is matched with the second slider 7, and as can be seen from fig. 6, the matching of the second link 502 and the second slider 7 is a rotating matching.
EXAMPLE seven
As shown in fig. 1 to 12 and 14, based on any one of the fourth to sixth embodiments, the first slider 6 and the second slider 7 of the ultrasonic device of this embodiment move linearly under the action of the connecting rod assembly 5.
Example eight
As shown in fig. 1 to 12 and 14, the present embodiment is based on the sixth embodiment, and the first sliding chute 104 and the second sliding chute 105 of the ultrasonic device of the present embodiment are arranged in parallel.
Example nine
As shown in fig. 1 to 12 and 14, in the present embodiment, based on any one of the fourth to sixth embodiments, the rotation center 8 of the ultrasonic device is disposed on the housing 1.
Example ten
As shown in fig. 1 to 12 and 14, in the present embodiment, based on any one of the fourth to sixth embodiments, an ultrasonic apparatus according to the present embodiment is provided, wherein one end of the second slider 7 is engaged with the second link 502, and a mounting portion 701 is disposed at a position close to the other end; the mounting part 701 is a cylindrical structure with a through hole in the center; the rotating part 9 penetrates through a through hole in the center of the mounting part 701 and is matched with the door body 2 to realize the opening and closing of the door body 2; the second slider 7 is further provided with a first baffle 702 extending towards one side of the mounting part 701; a second baffle 901 extending towards one side of the mounting part 701 is arranged on the rotating part 9; and a torsion spring 10 disposed outside the mounting portion 701 and engaged with the first shutter 702 and the second shutter 901.
Fig. 8 and 9 are schematic views of a first slider 6 and a second slider 7 according to the present invention, and it can be seen from fig. 8 and 9 that the first slider 6 is provided with a first guide post 601, and the second slider 7 is provided with a rear mounting portion 701 and a first shutter 702.
Fig. 10 is a schematic view of the rotating part 9 of the present invention, and it can be seen from fig. 10 that the rotating part 9 is provided with a second baffle 901, and cooperates with the torsion spring 10 together with the first baffle 702 of the second slider 7, and it can be seen from fig. 14 that a guiding part 108 is provided, the torsion spring 10 cooperates with the guiding part 108 provided inside the housing 1, the torsion spring 10 and the guiding part 108 realize switching between linear motion and rotational motion, the guiding part 108 is in an arc-shaped guiding structure, and the torsion spring 10 provides restoring force after the linear motion is converted into the rotational motion, so as to realize that the linear motion of the second slider 7 is converted into the rotational motion of the rotating part 9.
Fig. 11 and 12 are first and second schematic diagrams of the door body 2 according to the present invention, showing an axial schematic diagram of the door body 2 and a sectional schematic diagram of the door body 2, and it can be seen from fig. 11 and 12 that a joint engaged with the rotating portion 9 is provided at a rotating shaft side of the door body 2, and the shape of the joint is engaged with the shape of an end portion of the rotating portion 9.
Further, one end of the second slider 7 is rotatably engaged with the second link 502, the other end is provided with an installation part 701, the installation part 701 is a hollow cylindrical structure, a rotation part 9 is further provided in engagement with the installation part 701, a first baffle 702 is provided on the installation part 701, a second baffle 901 is provided on the rotation part 9, a torsion spring 10 is provided outside the installation part 701 and engaged with the first baffle 702 and the second baffle 901, as can be seen in fig. 14, a guide part 108 is provided, the torsion spring 10 is engaged with the guide part 108 provided inside the housing 1, the torsion spring 10 and the guide part 108 realize switching between linear motion and rotational motion, the guide part 108 is an arc-shaped guide structure, the torsion spring 10 provides a restoring force after the linear motion is converted into rotational motion, such an arrangement makes the rotational motion of the link assembly 5 converted into the linear motion of the second slider 7, and then converts the linear motion of the second slider 7 into the rotational motion of the rotation part 9, various applications of the ultrasonic device are provided.
EXAMPLE eleven
The use method of the washing machine in the embodiment includes a tray 11 and a casing 1 arranged inside the tray 11, wherein a door 2 capable of opening and closing the casing 1 is arranged at the front part of the casing 1; an ultrasonic generator 4 and a cleaning tank 3 which are arranged in the shell 1; the method further comprises the following steps of opening the door body 2, and moving the ultrasonic generator 4 and the cleaning tank 3 from a storage position to a cleaning position; placing the clothes to be cleaned between the ultrasonic generator 4 and the cleaning tank 3; the ultrasonic generator 4 is started.
Wherein, the cleaning tank 3 comprises a cleaning area 301; the washing area 301 is arranged corresponding to the ultrasonic generator 4; the ultrasonic generator 4 is arranged above the cleaning tank 3; the ultrasonic vibration end 401 of the ultrasonic generator 4 faces the cleaning tank 3;
furthermore, a water inlet pipe 101 is arranged on the shell 1 corresponding to the position of the cleaning tank 3; washing liquid enters the washing area 301 of the washing tank 3 from the water inlet pipe 101; the ultrasonic vibration end 401 of the ultrasonic generator 4 is in contact with the liquid level of the washing liquid in the washing zone 301 or has a set interval; the set distance is such that when the upper surface of the laundry to be cleaned is in contact with the ultrasonic vibration end 401 of the ultrasonic generator 4, at least the lower surface of the laundry to be cleaned is in contact with the liquid level of the washing liquid.
Furthermore, a drain opening 302 is arranged on one side of the cleaning tank 3 close to the rear part of the shell 1; an elastic valve plug 303 is arranged corresponding to the water discharge opening 302; after washing is finished or during washing, the washing liquid in the washing area 301 of the washing tank 3 is discharged by controlling the opening or closing of the elastic valve plug 303; the opening and closing of the elastic valve plug 303 are realized by triggering the corresponding control unit.
Still further, a water receiving tank 102 is further disposed at the rear of the housing 1 corresponding to the water discharge opening 302; at least the bottom surface of the water receiving tank 102 is obliquely arranged; a drain opening 103 is provided at the lowermost end of the bottom surface of the water receiving tank 102 or at a side wall near the lowermost end.
Furthermore, the door body 2 is made of transparent materials; when the ultrasonic generator 4 is at the cleaning position, the observation of the washing condition of the clothes to be cleaned is realized through the transparent door body 2.
Example twelve
The use method of the washing machine in the embodiment comprises a tray seat 11 and a shell 1 arranged inside the tray seat 11, wherein a door body 2 capable of opening and closing the shell 1 is arranged at the front part of the shell 1, and an ultrasonic generator 4 is arranged inside the shell 1; the method further comprises the following steps of opening the door body 2, and moving the ultrasonic generator 4 from a storage position to a cleaning position; the ultrasonic generator 4 is started.
Wherein, the door body 2 is accommodated in the shell 1 in an opening state; a first limiting part 106 and a second limiting part 107 are arranged on the shell 1; when the ultrasonic generator 4 moves to the cleaning position, the first limiting part 106 positions the ultrasonic generator 4 at the cleaning position; when the ultrasonic generator 4 moves to the storage position, the second limiting part 107 positions the ultrasonic generator 4 at the storage position; when at least the ultrasonic generator 4 is positioned at the cleaning position, the door body 2 is completely accommodated in the shell 1; when the ultrasonic generator 4 moves from the storage position to the cleaning position, the door body 2 rotates by a set angle, and then the ultrasonic generator 4 starts to move; the preset angle for the door body 2 to rotate firstly is at least the angle at which the door body 2 cannot be touched when the ultrasonic generator 4 moves.
In addition, the connecting rod assembly 5 is arranged on the shell 1 and can rotate around a rotating center 8; the first sliding block 6 and the second sliding block 7 are arranged on the shell 1 and are respectively connected with two ends of the connecting rod assembly 5;
when the connecting rod assembly 5 rotates around the rotating center 8, the motion tracks generated by the first sliding block 6 and the second sliding block 7 under the action of the connecting rod assembly 5 are parallel; a first sliding groove 104 and a second sliding groove 105 are arranged on the shell 1; the first slider 6 and the second slider 7 are respectively and correspondingly disposed in the first sliding groove 104 and the second sliding groove 105, and can slide in the first sliding groove 104 and the second sliding groove 105.
Further, the link assembly 5 includes a first link 501 and a second link 502; the first link 501 is engaged with the rotation shaft 801 and can rotate around the rotation center 8; when the first link 501 rotates around the rotation center 8, the second link 502 can extend in or out of the first link 501 along the length direction of the first link 501.
Further, one end of the first link 501 is engaged with the first slider 6, and a position near the other end is engaged with the rotation shaft 801 provided at the rotation center 8; the first link 501 is provided with a link groove 503 capable of accommodating at least the second link 502 extending into or out of the link groove; one end of the second slider 7 is matched with the second connecting rod 502, and the other end is provided with an installation part 701; the mounting part 701 is a cylindrical structure with a through hole in the center; the rotating part 9 penetrates through a through hole in the center of the mounting part 701 and is matched with the door body 2 to realize the opening and closing of the door body 2; the second slider 7 is further provided with a first baffle 702 extending towards one side of the mounting part 701; a second baffle 901 extending towards one side of the mounting part 701 is arranged on the rotating part 9; and a torsion spring 10 disposed outside the mounting portion 701 and engaged with the first shutter 702 and the second shutter 901.
Fig. 6 is a schematic view of a first link 501 of the present invention, and it can be seen in fig. 6 that the first link 501 is provided with a link slot 503 in the length direction, the link slot 503 is engaged with a second link 502 to form a channel for the second link 502 to slide in the first link 501, the first link 501 is further provided with a first opening 504, the first opening 504 is engaged with a first guide post 601 and a second guide post 505, and the first link 501 is further provided with a rotation center 8 and a rotation shaft 801, during the actual installation process, the rotation center 8 needs to pass through the rotation shaft 801, and the first link 501 rotates around the rotation shaft 801, for the convenience of viewing, the rotation shaft 801 is omitted in fig. 5, and the rotation center 8 and the rotation shaft 801 are labeled together.
Fig. 7 is a schematic view of the second link 502 of the present invention, and in fig. 6, it can be seen that the second link 502 is provided with a second opening 506 and a second guiding post 505, the second opening 506 is matched with the rotating shaft 801 to form a guide for the second link 502 to extend into and out of the first link 501, the second guiding post 505 is matched with the first opening 504 of the first link 501, the other end of the second link 502 is matched with the second slider 7, and as can be seen from fig. 6, the matching of the second link 502 and the second slider 7 is a rotating matching.
Fig. 8 and 9 are schematic views of a first slider 6 and a second slider 7 according to the present invention, and it can be seen from fig. 8 and 9 that the first slider 6 is provided with a first guide post 601, and the second slider 7 is provided with a rear mounting portion 701 and a first shutter 702.
Fig. 10 is a schematic view of the rotating part 9 of the present invention, and it can be seen from fig. 10 that the rotating part 9 is provided with a second stop 901, which cooperates with the torsion spring 10 together with the first stop 702 of the second slider 7 to convert the linear motion of the second slider 7 into the rotational motion of the rotating part 9.
Fig. 11 and 12 are first and second schematic diagrams of the door body 2 according to the present invention, showing an axial schematic diagram of the door body 2 and a sectional schematic diagram of the door body 2, and it can be seen from fig. 11 and 12 that a joint engaged with the rotating portion 9 is provided at a rotating shaft side of the door body 2, and the shape of the joint is engaged with the shape of an end portion of the rotating portion 9.
EXAMPLE thirteen
As shown in fig. 1 to 14, a structure of a tray 11 of a washing machine according to the present embodiment includes a receiving chamber 12 disposed inside the tray 11 for receiving an additive; a clothes input port 13 arranged on the tray seat 11 and used for inputting clothes; an additive feeding port 14 communicated with the accommodating chamber 12 is arranged in an area defined between two adjacent side walls of the tray seat 11 and the clothes feeding port 13; the cleaning device comprises a shell 1 arranged inside a disc seat 11, wherein an ultrasonic generator 4 capable of moving between a cleaning position and a storage position is arranged inside the shell 1, and a door body 2 capable of opening and closing the shell 1 is arranged at the front part of the shell 1.
Four areas which are defined between two adjacent side walls of the tray seat 11 and the clothes input opening 13 and are positioned on the upper end surface of the tray seat 11 are provided; at least two additive feeding ports 14 are arranged in different areas respectively; at least one additive feeding port 14 is used for feeding detergent, and at least one additive feeding port 14 is used for feeding softener.
In one embodiment, said tray 11 comprises four side walls, front and rear, left and right, with two adjacent left and rear side walls defining a first zone 15 between said laundry input opening 13, two adjacent right and rear side walls defining a second zone 16 between said laundry input opening 13, two adjacent left and front side walls defining a third zone 17 between said laundry input opening 13, and two adjacent right and front side walls defining a fourth zone 18 between said laundry input opening 13;
the additive feeding ports 14 are two and are respectively arranged in the first area 15 and the second area 16, or the third area 17 and the fourth area 18, or the first area 15 and the third area 17, or the second area 16 and the fourth area 18 which are positioned on the same side of the disk seat 11.
In one embodiment, said tray 11 comprises four side walls, front and rear, left and right, with two adjacent left and rear side walls defining a first zone 15 between said laundry input opening 13, two adjacent right and rear side walls defining a second zone 16 between said laundry input opening 13, two adjacent left and front side walls defining a third zone 17 between said laundry input opening 13, and two adjacent right and front side walls defining a fourth zone 18 between said laundry input opening 13;
the additive feeding ports 14 are two and are respectively arranged in the first area 15 and the fourth area 18, or are respectively arranged in the second area 16 and the third area 17.
Fig. 13 is a schematic structural diagram of a tray 11 of the present invention, and it can be seen from fig. 13 that a door body 2 is provided on the tray 11, a laundry input port 13 is provided at a position close to the center of the tray 11, an additive input port 14 is provided on the top surface of the tray 11, the additive input port 14 is communicated with an accommodation chamber 12, and the side edge of the tray 11 and the laundry input port 13 of the tray 11 are divided into a first region 15, a second region 16, a third region 17 and a fourth region 18, forming a region where the additive input port 14 is provided.
Example fourteen
The washing machine of the present embodiment includes the technical solutions of the first to thirteenth embodiments.
In the description provided herein, numerous specific details are set forth. It is understood, however, that embodiments of the invention may be practiced without these specific details. In some instances, well-known methods, structures and techniques have not been shown in detail in order not to obscure an understanding of this description.
Furthermore, those skilled in the art will appreciate that while some embodiments described herein include some features included in other embodiments, rather than others, combinations of features of different embodiments are also meant to be within the scope of the invention and form different embodiments. For example, in the above embodiments, those skilled in the art can use the combination according to the known technical solutions and technical problems to be solved by the present application.
Although the present invention has been described with reference to a preferred embodiment, it should be understood that various changes, substitutions and alterations can be made herein without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. A washing machine characterized by: comprises that
A tray base (11);
an ultrasonic generator (4) which is provided inside the tray base (11) and can move between a cleaning position and a storage position;
wherein the tray seat (11) comprises
The shell (1) is arranged inside the disc seat (11) and is used for accommodating the ultrasonic generator (4);
and a door body (2) which is provided at the front part of the housing (1) in an openable and closable manner.
2. A washing machine as claimed in claim 1, characterized in that: also comprises
A cleaning tank (3) which is provided inside the housing (1) and can move between a cleaning position and a storage position;
preferably, the movement of the cleaning tank (3) between the cleaning position and the storage position is synchronized with the ultrasonic generator (4);
more preferably, the washing tank (3) comprises a washing zone (301);
the washing area (301) is arranged corresponding to the ultrasonic generator (4);
also preferably, the ultrasonic generator (4) is disposed above the cleaning tank (3);
the ultrasonic vibration end (401) of the ultrasonic generator (4) faces the cleaning tank (3).
3. A washing machine as claimed in claim 1 or 2, characterized in that:
a water inlet pipe (101) is arranged on the shell (1) corresponding to the position of the cleaning tank (3);
A water outlet (302) is formed in one side, close to the rear part of the shell (1), of the cleaning tank (3);
an elastic valve plug (303) is arranged corresponding to the water discharge opening (302).
4. A washing machine as claimed in claim 3, characterized in that:
a water receiving groove (102) is arranged at the rear part of the shell (1) corresponding to the water drainage opening (302);
preferably, at least the bottom surface of the water receiving tank (102) is obliquely arranged;
a water outlet (103) is arranged on the side wall at the lowest end of the bottom surface of the water receiving tank (102) or close to one side of the lowest end;
more preferably, the door body (2) is made of transparent materials.
5. The use method of the washing machine is characterized in that: comprises that
The refrigerator comprises a tray seat (11) and a shell (1) arranged in the tray seat (11), wherein a door body (2) capable of opening and closing the shell (1) is arranged at the front part of the shell (1);
the ultrasonic generator (4) and the cleaning tank (3) are arranged in the shell (1);
also comprises the following steps
Opening the door body (2), and moving the ultrasonic generator (4) and the cleaning tank (3) from a storage position to a cleaning position;
placing the clothes to be cleaned between the ultrasonic generator (4) and the cleaning tank (3);
-starting said ultrasonic generator (4).
6. Use of a washing machine according to claim 5, characterized in that:
the cleaning tank (3) comprises a cleaning area (301);
the washing area (301) is arranged corresponding to the ultrasonic generator (4);
preferably, the ultrasonic generator (4) is arranged above the cleaning tank (3);
the ultrasonic vibration end (401) of the ultrasonic generator (4) faces the cleaning tank (3);
more preferably, the movement of the cleaning tank (3) between the cleaning position and the storage position is synchronized with the ultrasonic generator (4).
7. Use of a washing machine according to claim 5 or 6, characterized in that:
a water inlet pipe (101) is arranged on the shell (1) corresponding to the position of the cleaning tank (3);
washing liquid enters the washing area (301) of the washing tank (3) from the water inlet pipe (101);
preferably, the ultrasonic vibration end (401) of the ultrasonic generator (4) is in contact with the liquid level of the washing liquid in the washing zone (301) or has a set interval;
more preferably, the set interval is such that at least the lower surface of the laundry to be cleaned is in contact with the liquid level of the washing liquid when the upper surface of the laundry to be cleaned is in contact with the ultrasonic wave vibrating end (401) of the ultrasonic wave generator (4).
8. Use of a washing machine according to claim 6 or 7, characterized in that:
a water outlet (302) is formed in one side, close to the rear part of the shell (1), of the cleaning tank (3);
an elastic valve plug (303) is arranged corresponding to the water discharge opening (302);
preferably, after washing is finished or in the process of washing, the discharge of washing liquid in the washing area (301) of the washing tank (3) is realized by controlling the opening or closing of the elastic valve plug (303);
more preferably, the opening and closing of the elastic valve plug (303) is realized by triggering a corresponding control unit.
9. The use method of a washing machine as claimed in claim 8, wherein:
a water receiving groove (102) is arranged at the rear part of the shell (1) corresponding to the water drainage opening (302);
preferably, at least the bottom surface of the water receiving tank (102) is obliquely arranged;
a water outlet (103) is arranged on the lowest end of the bottom surface of the water receiving tank (102) or the side wall close to the lowest end.
10. Use of a washing machine according to any one of claims 5-9, characterized in that:
the door body (2) is made of transparent materials;
when the ultrasonic generator (4) is positioned at the cleaning position, the observation of the washing condition of the clothes to be cleaned is realized through the transparent door body (2).
CN201910441982.0A 2019-05-24 2019-05-24 Washing machine and use method thereof Active CN111979689B (en)

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CN201910441982.0A CN111979689B (en) 2019-05-24 2019-05-24 Washing machine and use method thereof
PCT/CN2020/091513 WO2020238743A1 (en) 2019-05-24 2020-05-21 Washing machine, and method for using washing machine
JP2021568781A JP7423872B2 (en) 2019-05-24 2020-05-21 Washing machines and how to use them

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