WO2021073359A1 - 超声波装置和衣物处理设备 - Google Patents

超声波装置和衣物处理设备 Download PDF

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Publication number
WO2021073359A1
WO2021073359A1 PCT/CN2020/116415 CN2020116415W WO2021073359A1 WO 2021073359 A1 WO2021073359 A1 WO 2021073359A1 CN 2020116415 W CN2020116415 W CN 2020116415W WO 2021073359 A1 WO2021073359 A1 WO 2021073359A1
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WIPO (PCT)
Prior art keywords
water
ultrasonic
lock
containing member
sliding
Prior art date
Application number
PCT/CN2020/116415
Other languages
English (en)
French (fr)
Inventor
李新亮
王得军
邵明岩
刘建设
庄仲凯
Original Assignee
青岛海尔洗衣机有限公司
海尔智家股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 青岛海尔洗衣机有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔洗衣机有限公司
Priority to JP2022523165A priority Critical patent/JP7448645B2/ja
Publication of WO2021073359A1 publication Critical patent/WO2021073359A1/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
    • D06F7/00Washing devices adapted to be used independently of any particular receptacle, e.g. for removable mounting on wash-tubs, bath-tubs, or the like
    • D06F7/04Washing devices adapted to be used independently of any particular receptacle, e.g. for removable mounting on wash-tubs, bath-tubs, or the like of the vibrator type

Definitions

  • the invention belongs to the field of ultrasonic technology, and specifically provides an ultrasonic device and clothing treatment equipment.
  • Ultrasound is a sound wave with a frequency higher than 20000 Hz. It has the following characteristics: 1) It can propagate in various media and can propagate far enough; 2) It has moderate interaction with the sound transmission medium and is easy to carry. Information diagnosis of the state of the sound-transmitting medium or its effect on the sound-transmitting medium; 3) It can effectively spread in gas, liquid, solid, solid melt and other media; 4) It can transmit very strong energy; 5) It will produce reflection and interference , Superposition and resonance phenomena. As far as the use of ultrasound is concerned, it can be used for distance measurement, speed measurement, cleaning, welding, stone crushing, sterilization, disinfection, cutting, welding, etc.
  • clothing processing equipment is equipment that can wash, dry, sterilize and/or care for clothing, such as washing machines, clothes dryers, and washer-dryers.
  • Most of the existing laundry treatment equipment with washing function can only clean the clothes as a whole, and cannot individually clean the stained and stubborn parts such as collars and sleeves.
  • the cleaning of collars, sleeves and other parts can only be achieved by increasing the detergent dosage, extending the washing time, and extending the soaking time before washing.
  • the use of the above methods will inevitably make the wear of the clothes and the damage caused by the detergent more serious. Therefore, some clothing treatment equipment is equipped with an ultrasonic device.
  • the ultrasonic device When washing clothes, first use the ultrasonic device to pre-wash the stained parts of the clothes, and then perform normal washing and rinsing procedures.
  • the existing ultrasonic device Although it is possible to pre-wash a part of the clothes, it is inconvenient for the user to clean the ultrasonic device itself. If the ultrasonic device is not cleaned for a long time, it is easy to breed bacteria, not only can not help pre-wash the clothes, but also cause secondary pollution to the clothes , Affecting the normal use of users.
  • the present invention provides an ultrasonic device.
  • the ultrasonic device includes an ultrasonic component, a water-containing component, and a lock component.
  • the lock component is provided Between the ultrasonic component and the water-containing member, the lock component is configured to lock the ultrasonic component and the water-containing member to each other in the locked state and allow the ultrasonic component and the water-containing member to be separated from each other in the unlocked state.
  • the lock assembly includes a lock cover, an elastic member and a lock key, the lock cover is arranged on the water containing member, the elastic member is arranged between the lock cover and the lock key, and the lock key is arranged in When pressed to the unlocked position, it abuts against the ultrasonic component to lock the ultrasonic component and the water-containing member to each other, and when pressed to the unlocked position, it releases abutment from the ultrasonic component to allow the ultrasonic component and the water-containing member to separate from each other.
  • the lock key includes a connected pressing part and a lock hook part, and the elastic member is arranged between the lock cover and the pressing part.
  • the lock key is provided with a first guide part
  • the lock cover is provided with a second guide part
  • the first guide part and the second guide part guide and cooperate, so that the lock key can only move along the ultrasonic wave.
  • the component moves in the direction of locking/unlocking.
  • the elastic member is a spring
  • a limit shaft is arranged on the lock cover, and a part of the spring is sleeved on the limit shaft.
  • the ultrasonic device further includes a drainage member, and the drainage member can receive the liquid flowing out of the water-containing member.
  • the water containing member is slidably arranged on the drain member.
  • a water guiding part and a draining part are formed on the drainage member, and the water guiding part is arranged obliquely downward in a direction close to the draining part.
  • the ultrasonic device further includes a housing, and the ultrasonic component is slidably connected to the housing, so that the ultrasonic component and the water-containing member can be pulled out of the housing together and pushed into the housing when locked by the locking component.
  • the present invention also provides a clothing treatment equipment, the clothing treatment equipment includes a box body and a tray set on the box body, the clothing treatment equipment also includes any of the aforementioned ultrasonic devices, ultrasonic The device is arranged on the box body and/or the tray base.
  • a lock assembly is provided between the ultrasonic assembly and the water-containing member, so that the ultrasonic assembly and the water-containing member can be Locked or separated from each other.
  • the ultrasonic component and the water-containing member can be locked to each other.
  • the ultrasonic components of the ultrasonic device can not be separated from the water-containing member when the ultrasonic device is working, thereby avoiding the situation that the clothes are put into the ultrasonic device for pre-washing but are not washed;
  • the ultrasonic component and the water-containing component can be separated from each other, so that the user can independently clean the ultrasonic component and the water-containing component, which is convenient for the user to perform cleaning operations, and facilitates the maintenance and replacement of parts of the ultrasonic device.
  • the lock assembly includes a lock cover, an elastic member, and a lock key.
  • the lock key is configured to lock the ultrasonic assembly and the water-containing member to each other when not pressed to the unlocked position, and to lock the ultrasonic assembly and the water-containing member to each other when pressed to the unlocked position.
  • an elastic member is arranged between the lock cover and the lock key.
  • the ultrasonic component can be separated from the water containing member by pressing the lock key, which is convenient for the user to operate, and when the lock key is pressed, the pressing force disappears At this time, the lock key can automatically return to the position when the lock key is not pressed under the elastic force of the elastic member, and the user does not need to operate the lock key to restore the lock key to the original position, simplifying the user's operation and improving the user experience.
  • the lock key is provided with a first guide part
  • the lock cover is provided with a second guide part
  • the first guide part and the second guide part guide and cooperate, through this arrangement, the lock key and the lock cover can move relatively , And can only move in the direction of locking/unlocking the ultrasonic component, which prevents the lock key from moving in the direction deviating from the pressed direction when the lock key is pressed, thereby providing a certain error tolerance space for the user's pressing operation, that is, the user is pressing
  • the ultrasonic component and the water-containing member can be unlocked smoothly, which further facilitates the user's operation and further enhances the user experience.
  • the elastic member is a spring, and the spring is sleeved on the limit shaft of the lock cover.
  • the drainage member is formed with a water guiding part and a drainage part, and the water guiding part is arranged obliquely downward in a direction close to the drainage part.
  • the water guiding part can The liquid is guided to the drainage part, so that the liquid can smoothly flow out from the drainage part, thereby preventing the liquid in the drainage member from accumulating in the drainage member, and preventing the drainage member from breeding bacteria.
  • the ultrasonic component is slidably connected to the housing of the ultrasonic device.
  • the ultrasonic component and the water-containing member can be smoothly pulled out or pushed in together when locked to each other, so that the user can perform the ultrasonic component outside the housing
  • the unlocking and locking operations of the water-containing component facilitates the user's operation and further enhances the user experience.
  • the present invention also provides a laundry treatment device.
  • the ultrasonic device is arranged on the cabinet and/or the tray base of the laundry treatment device.
  • the laundry treatment device can deal with more stains in the laundry.
  • the parts are pre-washed, so as to avoid increasing the detergent dosage, extending the washing time, and prolonging the soaking time before washing to achieve the cleaning of the stained parts of the clothes, thereby reducing the damage to the clothes during the washing process.
  • Fig. 1 is a structural diagram 1 of an embodiment of an ultrasonic device of the present invention (showing a door);
  • Figure 2 is a partial enlarged view of A in Figure 1;
  • Figure 3 is a partial enlarged view at B in Figure 1;
  • FIG. 4 is a second structural diagram of an embodiment of the ultrasonic device of the present invention (the door is not shown);
  • Fig. 5 is a structural schematic diagram 1 of the lock assembly of the ultrasonic device of the present invention.
  • FIG. 6 is a second structural diagram of the lock assembly of the ultrasonic device of the present invention.
  • Fig. 7 is a partial enlarged view of C in Fig. 6;
  • Figure 8 is the third structural diagram of the lock assembly of the ultrasonic device of the present invention.
  • Figure 9 is a schematic structural view of the lock cover of the ultrasonic device of the present invention.
  • FIG. 10 is a schematic diagram of the structure of the drainage member of the ultrasonic device of the present invention.
  • FIG. 11 is a structural schematic diagram 1 of the opening and closing assembly of the ultrasonic device of the present invention.
  • Figure 12 is a partial enlarged view at D in Figure 11;
  • FIG. 13 is a second structural diagram of the opening and closing assembly of the ultrasonic device of the present invention.
  • Figure 14 is a partial enlarged view of E in Figure 13;
  • 15 is a schematic diagram of the structure of the sliding bracket of the ultrasonic device of the present invention.
  • 16 is a structural schematic diagram 1 of the sliding shaft of the ultrasonic device of the present invention.
  • 17 is a second structural diagram of the sliding shaft of the ultrasonic device of the present invention.
  • 19 is a schematic structural view of a situation of the door drive assembly of the ultrasonic device of the present invention.
  • Figure 20 is a partial enlarged view of F in Figure 19;
  • Figure 21 is a partial enlarged view of G in Figure 19;
  • 22 is a schematic diagram of the structure of the first transmission rod and the second transmission rod of the ultrasonic device of the present invention.
  • FIG. 23 is a schematic diagram of the structure of the first sliding seat of the ultrasonic device of the present invention.
  • 24 is a schematic structural view of another situation of the door drive assembly of the ultrasonic device of the present invention.
  • 25 is a schematic view of the structure of the seventh sliding part and the eighth sliding part of the ultrasonic device of the present invention.
  • 26 is a schematic diagram of the arrangement relationship between the door body and the rotating member of the ultrasonic device of the present invention.
  • Figure 27 is a partial enlarged view of H in Figure 26;
  • Figure 28 is a schematic structural view of the fastener of the ultrasonic device of the present invention.
  • Figure 29 is a schematic view of the structure of the door and the fastener of the ultrasonic device of the present invention.
  • FIG. 30 is a schematic diagram of the structure of the second sliding seat of the ultrasonic device of the present invention.
  • FIG. 31 is a third structural diagram of an embodiment of an ultrasonic device of the present invention.
  • Figure 32 is a schematic view of the structure of the water containing member and the drainage member of the present invention.
  • Fig. 33 is a partial enlarged view of I in Fig. 32.
  • Barrier section; 5221 Annular groove; 523, sealing ring; 53, second spring; 6, housing; 61, first sliding through groove; 611, fourth limiting structure; 612, sixth limiting structure; 62, eighth sliding part; 63. Opening; 64. Cooperating part; 65. First avoidance groove; 66. Second avoidance groove; 7. Door body; 71. Second overlapping part; 72. Smooth transition part; 8. Door drive assembly; 81.
  • the present invention provides a laundry treatment equipment with ultrasonic device, which aims to facilitate users to clean the ultrasonic device and facilitate the cleaning of the ultrasonic device. Repair of ultrasonic devices and replacement of parts.
  • the clothing treatment equipment of the present invention may include a box body and a tray seat arranged on the box body, and the ultrasonic device is arranged on the box body and/or the tray seat, wherein the ultrasonic device may only be arranged on the box body, Or it is only arranged on the disc seat, or one part is arranged on the box body and the other part is arranged on the disc seat.
  • the clothing processing equipment of the present invention may also not have a tray seat, and in this case, the ultrasonic device is arranged on the box body.
  • the specific location of the ultrasonic device on the components of the clothing treatment equipment is only exemplary, and those skilled in the art can flexibly set the specific location of the ultrasonic device according to the specific structure of the clothing treatment equipment in practical applications.
  • the adjustment and change of the specific setting position of the ultrasonic device does not constitute a limitation to the present invention, and should be limited within the protection scope of the present invention.
  • the laundry treatment equipment of the present invention may be a washing machine, a clothes dryer, a washer-dryer, a shoe washing machine, a clothes care machine, etc.
  • the adjustment and change of the specific type of the laundry treatment equipment does not constitute a limitation to the present invention, and should be limited within the protection scope of the present invention.
  • the specific structure of the ultrasonic device will be further described below.
  • the ultrasonic device of the present invention includes an ultrasonic component 1, a water-containing member 2 and a lock assembly 3.
  • the lock assembly 3 is arranged between the ultrasonic component 1 and the water-containing member 2.
  • the lock assembly 3 is configured to be able to lock the ultrasonic assembly 1 and the water containing member 2 to each other in the locked state and to allow the ultrasonic assembly 1 and the water containing member 2 to be separated from each other in the unlocked state.
  • the ultrasonic component 1 can generate ultrasonic waves.
  • the ultrasonic component 1 can be an ultrasonic rod, probe, probe, etc.
  • the ultrasonic assembly 1 may also include fixing frames and/or fixing seats for installing ultrasonic rods, probes, probes, etc.
  • the water containing member 2 can contain liquid (such as water, a mixed liquid of water and detergent, etc.) and place clothes to be prewashed.
  • the water-containing member 2 can adopt a water-containing box, a water-containing tray (shown in FIG.
  • the ultrasonic device is not limited to only washing clothes.
  • the ultrasonic device of the present invention can also wash other items, such as glasses, rings, etc., as long as the items can be washed by ultrasonic waves.
  • the lock assembly 3 includes a lock cover 31, an elastic member and a lock key 33.
  • the lock cover 31 is arranged on the water-containing member 2, and the elastic member (not shown in the figure) is arranged on Between the lock cover 31 and the lock key 33, the lock key 33 is arranged to abut the ultrasonic assembly 1 when not pressed to the unlocked position to lock the ultrasonic assembly 1 and the water containing member 2 to each other, and when pressed to the unlocked position, and The ultrasonic component 1 is released from abutment to allow the ultrasonic component 1 and the water containing member 2 to be separated from each other.
  • the lock cover 31 may also be provided on the ultrasonic assembly 1.
  • the lock key 33 is set to abut against the water containing member 2 when not pressed to the unlocking position to lock the ultrasonic assembly 1 and the water containing member 2 to each other.
  • the unlocked position it releases abutment with the water-containing member 2 to allow the ultrasonic assembly 1 and the water-containing member 2 to be separated from each other.
  • the lock assembly 3 includes an elastic first clamping member and an elastic second clamping member, the first clamping member is disposed on the water-containing member 2, and the second clamping member
  • the first clamping member and the second clamping member can be locked with each other so that the ultrasonic assembly 1 and the water-containing member 2 are locked to each other, and the first clamping member and the second clamping member can release the card So that the ultrasonic component 1 and the water-containing member 2 are separated from each other. Since both the first clamping member and the second clamping member are elastic, the first clamping member and the second clamping member can be connected by hand. In a separate manner, the first clamping member and the second clamping member are released from the clamping.
  • Those skilled in the art can flexibly set the specific structural form of the lock assembly 3 in practical applications, as long as the lock assembly 3 can realize the locking and separation of the ultrasonic assembly 1 and the water containing member 2 with each other.
  • the lock key 33 includes a connected pressing portion 331 and a lock hook portion 332.
  • the elastic member is arranged between the lock cover 31 and the pressing portion 331, and the lock key 33 is not pressed until it is unlocked. In the position, the lock hook portion 332 abuts against the ultrasonic component 1, and when the lock key 33 is pressed to the unlocking position, the lock hook portion 332 releases abutment against the ultrasonic component 1.
  • the elastic member can also be arranged between the lock cover 31 and the lock hook portion 332. Those skilled in the art can flexibly set the position of the elastic member in practical applications, as long as the elastic member can be used to realize when the lock key 33 is pressed. And when the pressing force disappears, the lock key 33 can automatically return to the position when the lock key 33 is not pressed under the action of the elastic force of the elastic member.
  • a first guide portion 333 is provided on the lock key 33
  • a second guide portion 311 is provided on the lock cover 31, and the first guide portion 333 and the second guide portion 311 are guided and matched, so that The lock key 33 can only move in the direction of locking/unlocking the ultrasonic component 1.
  • the first guide portion 333 and the second guide portion 311 may be guide ribs and guide grooves, guide posts and guide sleeves, etc. Those skilled in the art can flexibly set the first guide portion 333 and the second guide portion in practical applications.
  • the location and specific structure of the 311 can be realized by the first guide portion 333 and the second guide portion 311 so that the lock key 33 can only move in the direction of locking/unlocking the ultrasonic component 1.
  • the first guide portion 333 is a guide rib provided on the lock key 33
  • the second guide portion 311 is a guide groove formed on the lock cover 31; or, the first guide portion 333 is formed on
  • the guide groove on the lock key 33 and the second guide portion 311 are guide ribs provided on the lock cover 31.
  • the elastic member (not shown in the figure) is a first spring
  • the lock cover 31 is provided with a first limiting shaft 312, and a part of the first spring is sleeved on the first limiting shaft 312 on.
  • the first limit shaft 312 may also be provided on the lock key 33, or both the lock cover 31 and the lock key 33 are provided with the first limit shaft 312, of course, the first limit shaft may not be provided. 312.
  • the first spring is directly arranged between the lock cover 31 and the lock key 33.
  • the elastic member can be set at Between the lock cover 31 and the lock key 33, and enables the elastic member to realize that when the lock key 33 is pressed and the pressing force disappears, the lock key 33 can automatically return to the lock key 33 not being pressed under the elastic force of the elastic member When the position is sufficient.
  • the elastic member may also be a rubber block, etc.
  • the ultrasonic device further includes a drainage member 4, and the drainage member 4 can receive the liquid flowing out of the water containing member 2.
  • the drainage member 4 can be a drainage box, a drainage pan, a drainage box and/or a drainage groove, etc. Those skilled in the art can flexibly set the specific structure of the drainage member 4 in practical applications, as long as the drainage member 4 can receive the water-containing member 2 The liquid that flows out is sufficient.
  • the water containing member 2 is provided with a drain 21. In a possible situation, the drain 21 is provided on the bottom wall of the water containing member 2, and the drain member 4 is provided below the water containing member 2.
  • the drain 21 When the drain 21 is opened The liquid in the water containing member 2 flows into the drain member 4 through the drain 21; in another possible situation, the drain 21 is provided on the left and right side walls of the water containing member 2, and the drain member 4 is provided on the side wall of the water containing member 2. Below, and the drainage member 4 is provided at a position capable of receiving the liquid flowing out from the drainage port 21; in another possible situation, the drainage port 21 is provided on the rear side wall of the water containing member 2, and the drainage member 4 is provided on the container. Below the water member 2, and the drain member 4 is provided at a position capable of receiving the liquid flowing out from the drain port 21 (this is the case shown in FIGS. 6, 7, 32, and 33).
  • the drainage member 4 can also be arranged above the water-containing member 2, and the drainage of the water-containing member 2
  • the port 21 communicates with the drainage member 4 through a pipe, and a water pump is arranged on the pipe.
  • the liquid in the water containing member 2 can be pumped to the drainage member 4 by starting the water pump.
  • Those skilled in the art can flexibly set the position of the drainage opening 21 on the water containing member 2 and the relative position of the water containing member 2 and the drainage member 4 in practical applications, as long as the liquid in the water containing member 2 can be removed through the drainage opening 21. What is necessary is to drain it into the drainage member 4.
  • the water containing member 2 may not be provided with a drain 21.
  • the liquid in the water containing member 2 can be pumped out by a water pump. The following will only take the water containing member 2 as an example for illustration.
  • the water containing member 2 is slidably provided on the drain member 4.
  • the water containing member 2 is provided with a first sliding portion 22
  • the drainage member 4 is provided with a second sliding portion 41
  • the first sliding portion 22 and the second sliding portion 41 are slidingly fitted.
  • the first sliding part 22 and the second sliding part 41 can be a slider and a sliding groove, a sliding track and a pulley, etc., and those skilled in the art can flexibly set the first sliding part 22 and the second sliding part 41 in practical applications.
  • the specific structure of the water-containing member 2 can be slidably arranged on the drainage member 4 through the first sliding portion 22 and the second sliding portion 41.
  • the drainage member 4 is provided with a reinforcing portion 42 connected to the second sliding portion 41.
  • the reinforcing portion 42 can be a reinforcing rib, a reinforcing bracket, etc., and those skilled in the art can flexibly set the specific structure of the reinforcing portion 42 in practical applications, as long as the reinforcing portion 42 can be used to make the second sliding portion 41 less likely to be damaged or damaged. Deform it.
  • there are multiple reinforcement ribs and the multiple reinforcement ribs are arranged in sequence along the length direction of the second sliding portion 41, so that the overall strength of the second sliding portion 41 can be strengthened.
  • the drainage member 4 is formed with a water guiding portion 43 and a drainage portion 44, and the water guiding portion 43 is arranged obliquely downward in a direction close to the drainage portion 44.
  • the water guiding portion 43 can be a flat structure (this is the case shown in FIG. 10) or a curved structure.
  • the drainage portion 44 can be configured as a hole, a pipe, etc.
  • Those skilled in the art can flexibly set the specific structure of the drainage portion 44 in practical applications, as long as the drainage portion 44 can discharge the liquid.
  • the drain part 44 of the drain member 4 may be provided to communicate with the drain pipe of the laundry treatment apparatus.
  • the liquid in the drainage member 4 can be directly discharged through the drainage pipe of the laundry treatment equipment, and there is no need to set another drainage pipe independent of the aforementioned drainage pipe, thereby saving more space and making the laundry treatment equipment
  • the structure is more compact.
  • the ultrasonic device further includes an opening and closing assembly configured to prevent the liquid in the water-containing member 2 from flowing out in the closed state and to allow the water-containing member 2 in the open state
  • the opening and closing component can be opened and closed manually, and can also be opened and closed automatically.
  • the opening and closing assembly includes a swing motor and a cover plate connected to the swing motor. The swing motor can drive the cover plate to rotate so that the cover plate opens the drain 21 or shut down.
  • the opening and closing assembly includes a sliding bracket 51, an opening and closing member, and an elastic structure.
  • the sliding bracket 51 is slidably connected to the water containing member 2, and the opening and closing member is arranged on the sliding bracket 51.
  • the structure is arranged between the sliding bracket 51 and the water-containing member 2, the opening and closing member is slidably arranged in the drain 21, and the sliding bracket 51 is arranged to compress and drive the elastic structure when sliding to the first position relative to the water-containing member 2
  • the opening and closing member is configured to open the drain opening 21, and the elastic structure is configured to enable the sliding bracket 51 to slide to the second position relative to the water containing member 2 through an elastic reset function, and thus the sliding bracket 51 drives the opening and closing member to close the drain opening 21 .
  • the sliding bracket 51 can be slid to the first position relative to the water containing member 2 by external force (as shown in FIGS. 11 and 13 is the case where the sliding bracket 51 slides to the first position relative to the water containing member 2)
  • the opening and closing member conducts the drain 21, and the liquid in the water containing member 2 can flow out through the drain 21.
  • the elastic structure provided between the sliding bracket 51 and the water containing member 2 is in a compressed state, When the external force gradually becomes smaller, the elastic structure will gradually return to its original length, and at the same time drive the sliding bracket 51 to slide relative to the water-containing member 2.
  • the sliding bracket 51 slides to the second position relative to the water-containing member 2, and when in the second position At this time, the opening and closing member closes the drain port 21 so that the liquid cannot flow out through the drain port 21.
  • the opening and closing assembly is a rubber plug. Manually plug the rubber plug into the drain port 21 of the water containing member 2 to prevent the liquid in the water containing member 2 from flowing out, and the rubber plug is drained from the water. When the port 21 is removed, the liquid in the water-containing member 2 can be allowed to flow out.
  • the opening and closing assembly can flexibly set the specific structure of the opening and closing assembly in practical applications, as long as the opening and closing assembly can prevent or allow the liquid in the water-containing member 2 to flow out.
  • the opening and closing member is a sliding shaft 52.
  • the sliding shaft 52 is formed with a drain portion 521 and a blocking portion 522.
  • the sliding bracket 51 slides relative to the water containing member 2 to the first Position (shown in the drawings are all situations where the sliding bracket 51 slides to the first position relative to the water-containing member 2), the drain portion 521 conducts the drain 21, and the sliding bracket 51 is opposite to the water-containing member 2 When sliding to the second position, the blocking portion 522 closes the drain 21.
  • the water outlet 21 is circular and the sliding shaft 52 is approximately cylindrical, those skilled in the art can flexibly set the water outlet 21 and the sliding shaft 52 in practical applications.
  • the shape of the water outlet 21 and the adjustment and change of the shape of the sliding shaft 52 does not constitute a limitation of the present invention, and should be limited within the protection scope of the present invention.
  • the drain portion 521 includes two drain openings 5211, and the two drain openings 5211 are arranged along the circumferential direction of the sliding shaft 52.
  • the drain portion 521 may also include one or more drain ports 5211.
  • the drain port 5211 may not be provided along the circumferential direction of the sliding shaft 52, for example, the drain port 5211 is provided along the length direction of the sliding shaft 52.
  • the water discharge portion 521 includes three water discharge openings 5211, two of which are slid along the water discharge opening 5211 (hereinafter referred to as the first discharge opening and the second discharge opening).
  • the shaft 52 is provided in the circumferential direction, another drain 5211 (hereinafter referred to as the third drain) is provided at the rear end of the sliding shaft 52, and the third drain is connected to the first drain provided along the circumference of the sliding shaft 52 It communicates with the second drain port, as shown in FIG. 13.
  • the drain port 21 is provided on the rear side wall of the water containing member 2, and when the sliding bracket 51 slides to the first position relative to the water containing member 2 , The third drain port is located in the drain port 21, so that the liquid flowing out from the drain port 5211 can flow out of the water containing member 2 through the drain port 21.
  • the drain 521 includes two drains 5211.
  • the drain 5211 is provided at the rear of the sliding shaft 52 and extends to the rear end of the sliding shaft 52 (of course, the drain 5211 can also be It does not extend to the rear end surface of the sliding shaft 52).
  • the drain 21 is provided on the rear side wall of the water-containing member 2, and when the sliding bracket 51 slides to the first position relative to the water-containing member 2, the sliding shaft 52
  • the rear side wall of the water containing member 2 is protruded and a part of the drain opening 5211 also protrudes from the rear side wall of the water containing member 2 so that the liquid flowing out of the drain 5211 can flow out of the water containing member 2 through the drain 21.
  • Those skilled in the art can flexibly set the number and location of the water discharge opening 5211 in practical applications, as long as the liquid in the water containing member 2 can be discharged through the water discharge opening 5211.
  • a sealing ring 523 is sleeved on the blocking portion 522.
  • the sealing ring 523 is located between the drain 21 and the blocking portion 522 .
  • the sealing ring 523 may not be provided on the blocking portion 522.
  • the blocking portion 522 may be made of a material that can achieve sealing, such as rubber.
  • the size of the blocking portion 522 should be large enough at this time so that when the blocking portion 522 is in the drainage When the port 21 is in, the drain port 21 can be sealed to prevent the liquid in the water containing member 2 from flowing out through the drain port 21.
  • the blocking portion 522 is provided with an annular groove 5221, and a part of the sealing ring 523 is arranged in the annular groove 5221.
  • the annular groove 5221 may not be provided on the blocking portion 522, and the sealing ring 523 is directly sleeved on the blocking portion 522.
  • the elastic structure is a second spring 53, a second limiting shaft 511 is provided on the sliding bracket 51, and a part of the second spring 53 is sleeved on the second limiting shaft 511.
  • the second limiting shaft 511 may also be provided on the water-containing member 2, or both the sliding bracket 51 and the water-containing member 2 may be provided with the second limiting shaft 511.
  • the second limiting shaft 511 may not be provided.
  • Position shaft 511, the second spring 53 is directly arranged between the sliding bracket 51 and the water-containing member 2.
  • the elastic structure is arranged between the sliding bracket 51 and the water-containing member 2 and enables the elastic structure to slide the sliding bracket 51 to the second position relative to the water-containing member 2 through its elastic reset function.
  • the elastic structure may also be a rubber block, etc.
  • Those skilled in the art can flexibly set the specific structure of the elastic structure in practical applications, as long as the elastic structure can achieve the sliding bracket 51 relative to the water containing member 2 through its elastic reset function. Just slide to the second position.
  • the water containing member 2 is provided with a port structure 23, the sliding bracket 51 is provided with a drain switch 512, and the drain switch 512 is slidably arranged in the port structure 23 to drain water
  • the switch 512 is configured to enable the sliding bracket 51 to slide relative to the water containing member 2 under the action of external force. Since the drain switch 512 is arranged on the sliding bracket 51, and the sliding bracket 51 is slidably connected to the water containing member 2, when an external force is applied to the drain switch 512, the drain switch 512 moves to drive the sliding bracket 51 to move, thereby causing the sliding The bracket 51 slides with respect to the water containing member 2.
  • the port structure 23 can also be provided on the sliding bracket 51.
  • the drain switch 512 is provided on the water containing member 2.
  • Those skilled in the art can flexibly set the port structure 23 and the drain switch in practical applications.
  • the setting position of the 512 can be achieved through the port structure 23 and the drain switch 512 to enable the sliding bracket 51 to slide relative to the water containing member 2 when the drain switch 512 is subjected to an external force.
  • the ultrasonic device further includes a housing 6, and the ultrasonic component 1 is slidably connected to the housing 6, so that the ultrasonic component 1 and the water-containing member 2 can be pulled out of the housing 6 together when locked by the lock component 3. And is pushed into the housing 6.
  • the ultrasonic device may not have a housing, for example, a housing cavity is formed on the box or the tray of the clothes processing equipment, and the ultrasonic assembly 1 is slidably connected to the housing cavity.
  • a receiving cavity is formed on the inner rear side of the disk base, and the ultrasonic component 1 is slidingly connected to the receiving cavity.
  • the ultrasonic component 1 is provided with a third sliding part
  • the housing 6 is provided with a fourth sliding part
  • the third sliding part is in sliding engagement with the fourth sliding part.
  • the third sliding part and the fourth sliding part can be a slider and a sliding groove, a sliding track and a pulley, etc., and those skilled in the art can flexibly set the specific structure of the third sliding part and the fourth sliding part in practical applications As long as the ultrasonic component 1 and the housing 6 can be slidably connected through the third sliding part and the fourth sliding part.
  • the third sliding part is a first sliding seat 11 provided on the ultrasonic component 1
  • the fourth sliding part is a first sliding through groove 61 formed on the housing 6.
  • an opening 63 is provided on the front of the housing 6, and a door 7 is provided on the opening 63.
  • the door body 7 is a transparent door body.
  • the door body 7 may also be an opaque door body.
  • the door body 7 can be directly arranged on the opening 63 of the housing 6, or can be arranged on the opening 63 through the door drive assembly 8 (this is the case shown in FIG. 1).
  • the connection mode of the door body 7 and the housing 6 can be flexibly set in the middle, as long as the door body 7 can be arranged on the opening 63.
  • the ultrasonic device further includes a door drive assembly 8.
  • the door drive assembly 8 is connected between the first sliding seat 11 and the door body 7, and the door drive assembly 8 is configured to act as the ultrasonic assembly 1.
  • the door body 7 can be housed in the housing 6 when the water containing member 2 is locked by the lock assembly 3 and the water containing member 2 is pulled out of the housing 6. It should be noted that, in the present invention, taking the housing 6 as a hexahedron as an example, the door 7 is stored in the housing 6 can be the door 7 stored in the six side walls of the housing 6 (that is, the door 7 is located on the upper side at the same time).
  • the door 7 is housed in the housing 6 or the door 7 is only housed on the left Between the side wall and the right side wall, or the door body 7 is only stored between the upper side wall and the lower side wall, or the door body 7 is only stored between the front side wall and the rear side wall. It is understood that the door 7 is housed in the housing 6, which will be further described in combination with specific circumstances. As shown in Figure 4, the upper edge of the left side wall and the upper edge of the right side wall of the housing 6 are both higher than the upper side wall.
  • the door body 7 can be stored above the upper side wall but located between the left side wall and the right side wall. At this time, the door body 7 should also be understood as being stored in the housing 6. Of course, in this case, the door body 7 can also be stored under the upper side wall.
  • Those skilled in the art can flexibly set the specific structure of the door drive assembly 8 in practical applications, as long as the door drive assembly 8 can store the door body 7 in the housing 6 when the water containing member 2 is pulled out of the housing 6.
  • the door transmission assembly 8 includes a telescopic mechanism 83 rotatably connected to the housing 6, a second sliding seat 84 connected to the door body 7, and a second sliding through groove 85 provided on the housing 6.
  • the second sliding seat 84 is in sliding fit with the second sliding through groove 85
  • the second sliding through groove 85 is arranged in parallel with the first sliding through groove 61
  • both ends of the telescopic mechanism 83 are respectively connected to the first sliding seat 11 and the second sliding seat 84 articulated.
  • the second sliding through groove 85 and the first sliding through groove 61 can also be arranged at a certain angle, as long as it does not prevent the ultrasonic component 1 and the water containing member 2 being locked by the locking assembly 3 and the water containing member 2 is pulled out of the housing. 6
  • the door body 7 can be stored in the housing 6.
  • the door drive assembly 8 includes a rope 81 connecting the first sliding seat 11 and the door body 7 at both ends, and the housing 6 is provided with a protrusion 82.
  • the first sliding seat 11 slides along the first sliding through groove 61 from the rear of the housing 6 to the opening 63.
  • the rope 81 contacts the protrusion 82 and is blocked by the protrusion 82, and then the rope 81 slides relative to the protrusion 82 and pulls the door 7 to house the door 7 in the housing 6.
  • Those skilled in the art can flexibly set the specific structural form of the door drive assembly 8 in practical applications, as long as the door drive assembly 8 can achieve when the ultrasonic assembly 1 and the water containing member 2 are locked in the locked assembly 3 and the water containing member 2 is locked.
  • the door 7 can be stored in the housing 6 when the housing 6 is pulled out.
  • the telescopic mechanism 83 includes a first transmission rod 831 and a second transmission rod 832.
  • the first end of the first transmission rod 831 is slidably hinged with the first sliding seat 11, and the first transmission rod 831
  • the second end of the second transmission rod is hinged to the housing 6 and is slidably engaged with the first end of the second transmission rod 832, and the second end of the second transmission rod 832 is hinged to the second sliding seat 84.
  • a fifth sliding portion 8311 is provided on the first transmission rod 831
  • a sixth sliding portion 8322 is provided on the second transmission rod 832
  • the fifth sliding portion 8311 is slidingly engaged with the sixth sliding portion 8322. .
  • the fifth sliding portion 8311 and the sixth sliding portion 8322 may be a slider and a sliding groove, a slideway and a pulley, etc., and those skilled in the art can flexibly set the fifth sliding portion 8311 and the sixth sliding portion 8322 in practical applications. As long as the fifth sliding portion 8311 and the sixth sliding portion 8322 can realize the sliding fit between the second end of the first transmission rod 831 and the first end of the second transmission rod 832, the specific structure form of.
  • the first transmission rod 831 and the second transmission rod 832 are respectively configured as piston mechanisms, that is, the telescopic mechanism 83 includes a first cylinder, a first piston, a first piston rod, and a first piston. Two cylinders, a second piston, and a second piston rod.
  • the first piston is arranged in the first cylinder.
  • the first piston can reciprocate in the first cylinder.
  • the second piston is arranged in the second cylinder.
  • the piston can reciprocate in the second cylinder, the first end of the first cylinder is slidingly hinged with the first sliding seat 11, the first end of the first piston rod is connected with the first piston, and the second end of the first piston rod It protrudes from the second end of the first cylinder and is hinged to the housing 6, the first end of the second piston rod is connected with the second piston, and the second end of the second piston rod protrudes from the first end of the second cylinder , And the second end of the first piston rod is provided with a sliding groove, the second end of the second piston rod is provided with a sliding block, the sliding block and the sliding groove are slidingly matched, and the second end of the second cylinder body and the second sliding The seat 84 is hinged.
  • the second sliding through groove 85 is provided above the first sliding through groove 61, when the ultrasonic component 1 and the water containing member 2 are locked by the locking assembly 3 and the water containing member 2 is pulled out of the housing When 6 is outside, the door 7 moves from the front of the housing 6 to the top of the housing 6.
  • the second sliding through groove 85 can also be arranged below the first sliding through groove 61. In this case, when the ultrasonic component 1 and the water-containing member 2 are locked by the locking component 3 and the water-containing member 2 is pulled out When the housing 6 is outside, the door 7 moves from the front of the housing 6 to the bottom of the housing 6.
  • the top of the housing 6 may be the outer top of the housing 6 or the inner top of the housing 6.
  • the upper edge of the left side wall and the upper edge of the right side wall of the housing 6 are both higher than the plane of the upper side wall, and the door 7 is housed above the upper side wall but is located on the left side. Between the side wall and the right side wall is a situation where the door 7 is stored in the outer top of the housing 6. When the door 7 is stored below the upper side wall, the door 7 is stored in the inner top of the housing 6.
  • the ultrasonic component 1 is provided with a seventh sliding portion 12
  • the housing 6 is provided with an eighth sliding portion 62
  • the seventh sliding portion 12 and the eighth sliding portion 62 are slidingly fitted.
  • the seventh sliding portion 12 and the eighth sliding portion 62 can be a slider and a sliding groove (this is the case shown in FIG. 25), a sliding track and a pulley, etc., and those skilled in the art can be flexible in practical applications.
  • the specific structure of the seventh sliding portion 12 and the eighth sliding portion 62 can be provided as long as the ultrasonic component 1 and the housing 6 can be slidably connected through the seventh sliding portion 12 and the eighth sliding portion 62.
  • the bottom of the door body 7 is provided with an overlapping part that matches with the front part of the water-containing member 2; or, the front part of the water-containing member 2 is provided with an overlapping part that matches with the bottom of the door 7; or
  • the front part of the water member 2 is provided with a first overlap portion 24, and the bottom of the door body 7 is provided with a second overlap portion 71.
  • the first overlap portion 24 and the second overlap portion 71 cooperate (shown in Figure 2 This is the situation).
  • FIG. 2 shows a possible situation of the specific arrangement of the first overlapping portion 24 and the second overlapping portion 71.
  • the front portion of the water-containing member 2 extends upward to form a first overlapping portion.
  • the door body 7 (in the closed state) extends downward to the first overlapping portion 24, and the position on the door body 7 corresponding to the first overlapping portion 24 is the second overlapping portion 71.
  • the lap part may be a part extending from the bottom of the door body 7 (the second lap part 71 shown in FIG.
  • the 2 is exactly extending from the bottom of the door body 7 Part), it can also be a component (such as a lap board, a lap block, etc.) that is detachably connected to the bottom of the door body 7 (such as bonding, clamping), and those skilled in the art can flexibly set
  • the specific structural form of the overlap portion as long as the overlap portion enables the water-containing member 2 to slightly lift the door 7 when the water-containing member 2 is pulled out of the housing 6.
  • a smooth transition 72 is formed on the inner side of the top of the door body 7, so that when the ultrasonic assembly 1 and the water-containing member 2 are locked by the locking assembly 3 and the water-containing member 2 is pulled out of the housing 6 , The door 7 can smoothly move from the front of the housing 6 to the top of the housing 6.
  • the smooth transition portion 72 needs to have a matching member to be able to achieve when the ultrasonic component 1 and the water-containing member 2 are locked by the locking component 3 and the water-containing member 2 is pulled out of the housing 6.
  • the door 7 can smoothly move from the front of the housing 6 to the top of the housing 6.
  • the component that cooperates with the smooth transition portion 72 is the housing 6.
  • the housing 6 is provided with a smooth transition portion 72.
  • those skilled in the art can flexibly set the member that cooperates with the smooth transition portion 72 in practical applications, as long as the smooth transition portion 72 and the member can pass through The cooperation can realize that when the ultrasonic component 1 and the water-containing member 2 are locked by the lock assembly 3 and the water-containing member 2 is pulled out of the housing 6, the door 7 smoothly moves from the front of the housing 6 to the top of the housing 6, that is can.
  • a first overlap portion 24 is provided at the front of the water-containing member 2
  • a second overlap portion 71 is provided on the bottom of the door body 7, and the first overlap portion 24 and the second overlap portion 71 cooperate as an example.
  • the first overlapping portion 24 of the water containing member 2 pushes the second overlapping portion 71 of the door 7 , So that the door body 7 is turned upwards and gradually leaves the opening 63 of the housing 6, and the smooth transition portion 72 slides under the support of the matching portion 64.
  • the first sliding seat 11 provided on the ultrasonic component 1 moves along the first
  • the sliding through groove 61 moves in the direction of the opening 63 along with the ultrasonic component 1
  • the first transmission rod 831 rotates under the drive of the first sliding seat 11, and the first transmission rod 831 passes through the fifth sliding portion 8311 and the sixth sliding portion 8322
  • Drive the second transmission rod 832 to also rotate with the rotation of the first transmission rod 831, thereby driving the second sliding seat 84 to move along the second sliding through groove 85 from the front of the water-containing member 2 to the rear of the water-containing member 2, and then Pull the door 7 to move from the front of the housing 6 to the top of the housing 6.
  • the door body 7 is provided with a smooth transition part 72.
  • the smooth transition portion 72 needs to have a matching member (such as the matching portion 64 on the housing 6) to be able to achieve when the ultrasonic component 1 and the water-containing member 2 are locked by the locked component 3 and the water-containing member 2 is locked.
  • the housing 6 is pulled out, the door body 7 can smoothly move from the front of the housing 6 to the top of the housing 6.
  • the ultrasonic device further includes a mounting member, a rotating member 9 and a torsion spring 10.
  • the mounting member is connected to the housing 6, the door 7 is fixedly connected to the rotating member 9, and the rotating member 9 is rotatably arranged at
  • the torsion spring 10 is sleeved on the rotating member 9, the mounting member is provided with a first limiting structure 842, the rotating member 9 is provided with a second limiting structure, and the first locking end 101 of the torsion spring 10 is clamped Placed on the first limiting structure 842, the second clamping end 102 of the torsion spring 10 is clamped on the second limiting structure, and the torsion spring 10 is set to enable the door 7 to close the opening 63 of the housing 6 through an elastic reset function.
  • the mounting member may be plate-shaped or block-shaped.
  • the rotating member 9 can be cylindrical or cuboid. Those skilled in the art can flexibly set the specific structure of the rotating member 9 in practical applications. The adjustment and change of the specific structure of the rotating member 9 does not constitute an impact.
  • the limitations of the invention should all be limited within the protection scope of the invention.
  • the mounting member and the housing 6 can be fixedly connected or movably connected, such as a sliding connection.
  • first limit structure 842 and the second limit structure can adopt limit plates (the second limit structure shown in FIG. 28 and the first limit structure shown in FIG.
  • the door body 7 moves from the opening 63 at the front of the housing 6 to the top of the housing 6 under the action of the door drive assembly 8.
  • the rotating member 9 follows the door body 7 is rotated, and because the first locking end 101 of the torsion spring 10 is locked on the first limiting structure 842, the second locking end 102 of the torsion spring 10 is locked on the second limiting structure of the rotating member 9. In terms of structure, the torsion spring 10 is compressed and twisted.
  • the door body 7 When the water-containing member 2 is pushed into the housing 6, the door body 7 first moves toward the front of the housing 6 under the action of the door drive assembly 8, and the rear door body 7 By rotating back to the front of the housing 6 and covering the opening 63, during the rotation of the door body 7, the torsion spring 10 gradually returns to the untwisted state while applying a torque to the door body 7 so that the door body 7 is covering the housing The opening 63 of 6 can be closed in place.
  • the mounting member is a second sliding seat 84, and the second sliding seat 84 is provided with a through hole 841.
  • the rotating member 9 includes a rotating shaft 91 and a fastener 92.
  • the rotating shaft 91 It is arranged on the door body 7 and sequentially passes through the second sliding through groove 85 and the through hole 841.
  • the buckle 92 is arranged on the second sliding seat 84 and is arranged at the end of the rotating shaft 91 away from the door body 7, and the rotating shaft 91 faces the buckle.
  • the engaging member 92 is provided with a first abutting structure 911, and the side of the engaging member 92 facing the shaft 91 is provided with a second abutting structure 921 that cooperates with the first abutting structure 911, and the torsion spring 10 is provided in the buckle.
  • the second limiting structure 922 is disposed on the fastening member 92.
  • the rotating shaft 91 and the fastener 92 can be integrated (for example, welding, integral casting, etc.), or detachable connection (for example, screw connection, snap connection, etc.). Of course, the rotating shaft 91 and the fastener 92 are integrated.
  • the shape of the second abutting structure 921 (of course, those skilled in the art can understand that the shapes of the first abutting structure 911 and the second abutting structure 921 do not have to be exactly the same), which is different from the first abutting structure 911
  • the adjustment and change of the shape of the second abutting structure 921 and the second abutting structure 921 do not constitute a limitation to the present invention, and should be limited within the protection scope of the present invention.
  • a connecting shaft 843 is provided on the second sliding seat 84, a limiting protrusion 8431 is provided on the connecting shaft 843, and the second end of the second transmission rod 832 is sleeved on the connecting shaft 843 and restricted.
  • a connecting shaft is provided on the second end of the second transmission rod 832, a limiting protrusion 8431 is provided on the connecting shaft, and the second sliding seat 84 is sleeved on the connecting shaft 843 and is limited to the limiting protrusion 8431 and the second transmission rod 832.
  • the connecting shaft 843 is integrated with the second sliding seat 84, and the second transmission rod 832 is provided with a passing structure 8321 that allows the connecting shaft 843 and the limiting protrusion 8431 to pass through together during assembly.
  • the connecting shaft 843 and the second sliding seat 84 are provided as a whole means that the connecting shaft 843 and the second sliding seat 84 are arranged as an inseparable whole, for example: when the connecting shaft 843 and the second sliding seat 84 are welded together Make it into a whole, or adopt a casting method so that the connecting shaft 843 and the second sliding seat 84 become a whole after the casting is completed.
  • the limiting protrusion 8431 and the connecting shaft 843 may be integrally provided (for example, welding, integral casting, etc.), or may be detachably connected (for example, screw connection, snap connection, etc.).
  • the connecting shaft 843 is detachably connected, it may be that the second transmission rod 832 is provided with a passing structure 8321 that allows the connecting shaft 843 to pass through during assembly.
  • the second end of the second transmission rod 832 needs to be sleeved on the connecting shaft 843, and then the limiting protrusion 8431 is fixed to the connecting shaft 843, for example: the limiting protrusion can be welded
  • the 8431 is fixed on the connecting shaft 843, and the limiting protrusion 8431 can also be fixed on the connecting shaft 843 by screws.
  • a third limiting structure 111 is provided on the first sliding seat 11, and a fourth limiting structure is provided at the end of the first sliding through groove 61 near the opening 63. 611, the third limiting structure 111 and the fourth limiting structure 611 are in a limiting cooperation with each other so that the first sliding seat 11 is limited at the end of the first sliding through groove 61 close to the opening 63.
  • the housing 6 is provided with a first avoiding groove 65 that allows the fourth limiting structure 611 to move in at a position close to the fourth limiting structure 611.
  • the first avoidance groove 65 may not be provided.
  • the part of the fourth limiting structure 611 that is in contact with the third limiting structure 111 or the third limiting structure 111 may be in contact with the fourth limiting structure.
  • the part where the structure 611 is in contact is set (or the foregoing two are set at the same time) made of a slightly elastic material.
  • the elasticity of the material should be so large that there is no first escape groove 65 to make the third limiting structure 111 and the fourth The extent to which the restricting structures 611 restrict and cooperate with each other.
  • a fifth limiting structure 112 is provided on the first sliding seat 11, and a sixth limiting structure 612 is provided at the end of the first sliding through groove 61 away from the opening 63.
  • the fifth limiting structure 112 and the sixth limiting structure 612 are in a limiting cooperation with each other so that the first sliding seat 11 is limited at the end of the first sliding through groove 61 away from the opening 63.
  • the housing 6 is provided with a second avoiding groove 66 that allows the sixth limiting structure 612 to move in at a position close to the sixth limiting structure 612.
  • the second avoidance groove 66 may not be provided.
  • the part of the sixth limiting structure 612 that is in contact with the fifth limiting structure 112 or the fifth limiting structure 112 may be in contact with the sixth limiting structure.
  • the part where the structure 612 is in contact is set (or the foregoing two are set at the same time) made of a slightly elastic material.
  • the elasticity of the material should be so large that there is no second escape groove 66 to make the fifth limiting structure 112 and the sixth The extent to which the restricting structures 612 restrict and cooperate with each other.
  • a third limiting structure 111 is provided on the first sliding seat 11, and a fourth limiting structure 111 is provided on the end of the first sliding through groove 61 close to the opening 63.
  • a limiting structure 611, a fifth limiting structure 112 is also provided on the first sliding seat 11, a sixth limiting structure 612 is provided at the end of the first sliding through slot 61 away from the opening 63, and the third limiting structure 111 is connected to
  • the fourth limiting structure 611 is in position-limiting cooperation with each other, the first sliding seat 11 can be limited to the end of the first sliding through groove 61 close to the opening 63, and the fifth limiting structure 112 and the sixth limiting structure 612 are limited to each other When matched, the first sliding seat 11 can be restricted at the end of the first sliding through groove 61 away from the opening 63.
  • the housing 6 is provided with a first avoidance groove 65 at a position close to the fourth limiting structure 611 that allows the fourth limiting structure 611 to move in, and the housing 6 is provided with a permitting groove at a position close to the sixth limiting structure 612.
  • a handle 25 is provided at the front of the water containing member 2.
  • a non-slip structure 251 is provided on the inner wall of the handle 25.
  • a protrusion structure 252 is provided on the outer wall of the handle 25.
  • the inner wall of the handle 25 is not provided with an anti-slip structure 251, but the outer wall of the handle 25 is provided with a protruding structure 252.

Abstract

一种超声波装置,包括超声波组件(1)、容水构件(2)和锁组件(3),锁组件(3)设置在超声波组件(1)与容水构件(2)之间,锁组件(3)设置为在锁定状态下能够将超声波组件(1)与容水构件(2)彼此锁定以及在解锁状态下允许超声波组件(1)与容水构件(2)彼此分离。该超声波装置能够实现超声波组件(1)与容水构件(2)的彼此分离,使得用户可以对超声波组件(1)和容水构件(2)分别独立地进行清洗,便于用户进行清洗操作,且便于超声波装置的维修和零部件更换。

Description

超声波装置和衣物处理设备 技术领域
本发明属于超声波技术领域,具体提供一种超声波装置和衣物处理设备。
背景技术
超声波是一种频率高于20000赫兹的声波,其具有如下特点:1)能在各种不同媒质中传播,且可传播足够远的距离;2)与传声媒质的相互作用适中,易于携带有关传声媒质状态的信息诊断或对传声媒质产生效用;3)可在气体、液体、固体、固熔体等介质中有效传播;4)可传递很强的能量;5)会产生反射、干涉、叠加和共振现象。就超声波的用途而言,其可用于测距、测速、清洗、焊接、碎石、杀菌、消毒、切削、焊接等。
以衣物处理设备为例,衣物处理设备是能够对衣物等进行洗涤、烘干、杀菌和/或护理等的设备,如:洗衣机、干衣机和洗干一体机等。现有的具备洗涤功能的衣物处理设备中,大部分仅能够对衣物进行整体清洗,无法对衣领、衣袖等污渍较多且顽固的部位单独地进行有针对性地清洗,若需将衣领、衣袖等部位清洗干净仅能通过增加洗涤剂剂量、延长洗涤时间、延长洗涤前的浸泡时间等方式实现,然而采用以上方式必然使得衣物的磨损以及因洗涤剂造成的损坏更加严重。因此,一些衣物处理设备中增设了超声波装置,当洗涤衣物时,首先通过超声波装置对衣物上污渍较多的部位进行预洗,其次再进行正常的洗涤、漂洗等程序,然而现有的超声波装置虽然能够实现对衣物的局部进行预洗,但是用户对超声波装置本身的清洗不便,超声波装置长时间不清洗易滋生细菌,不但无法有助于对衣物进行预洗,而且会对衣物造成二次污染,影响用户的正常使用。
因此,本领域需要一种超声波装置和相应的衣物处理设备来解决上述问题。
发明内容
为了解决现有技术中的上述问题,即为了解决现有的超声波装置不便于清洗的问题,本发明提供了一种超声波装置,该超声波装置包括超声波组件、容水构件和锁组件,锁组件设置在超声波组件与容水构件之间,锁组件设置为在锁定状态下能够将超声波组件与容水构件彼此锁定以及在解锁状态下允许超声波组件与容水构件彼此分离。
在上述超声波装置的优选技术方案中,锁组件包括锁盖、弹性构件和锁键,锁盖设置在容水构件上,弹性构件设置在锁盖与锁键之间,锁键设置为在未被按压至解锁位置时与超声波组件抵靠以将超声波组件与容水构件彼此锁定以及在被按压至解锁位置时与超声波组件解除抵靠以允许超声波组件与容水构件彼此分离。
在上述超声波装置的优选技术方案中,锁键包括相连的按压部和锁钩部,弹性构件设置在锁盖与按压部之间,在锁键未被按压至解锁位置时,锁钩部与超声波组件抵靠,在锁键被按压至解锁位置时,锁钩部与超声波组件解除抵靠。
在上述超声波装置的优选技术方案中,锁键上设置有第一导向部,锁盖上设置有第二导向部,第一导向部与第二导向部导向配合,使得锁键仅能够沿将超声波组件锁定/解锁的方向移动。
在上述超声波装置的优选技术方案中,弹性构件为弹簧,锁盖上设置有限位轴,弹簧的一部分套设在限位轴上。
在上述超声波装置的优选技术方案中,超声波装置还包括排水构件,排水构件能够接纳容水构件流出的液体。
在上述超声波装置的优选技术方案中,容水构件滑动地设置在排水构件上。
在上述超声波装置的优选技术方案中,排水构件上形成有导水部和排水部,导水部沿靠近排水部的方向向下倾斜设置。
在上述超声波装置的优选技术方案中,超声波装置还包括外壳,超声波组件与外壳滑动连接,使得超声波组件和容水构件在被锁组件锁定的情形下能够一起被拉出外壳外以及被推入外壳内。
在另一方面,本发明还提供了一种衣物处理设备,该衣物处理设备包括箱体和设置在箱体上的盘座,衣物处理设备还包括如前所述的任一种超声波装置,超声波装置设置在箱体和/或盘座上。
本领域技术人员能够理解的是,在本发明的优选技术方案中,以衣物处理设备中具备超声波装置为例,在超声波组件和容水构件之间设置锁组件,使得超声波组件与容水构件能够彼此锁定或分离,通过这样的设置,一方面,超声波组件与容水构件能够彼此锁定,首先,便于大件衣物(如外套、长裤等)的局部进行预洗,以及便于对小件衣物(如领带、袖套等)进行超声波洗涤,其次,能够实现超声波装置工作时其超声波组件无法与容水构件脱离,从而避免了衣物放入超声波装置中进行预洗但没有被洗到的情况;另一方面,超声波组件与容水构件能够彼此分离,使得用户可以对超声波组件和容水构件分别独立地进行清洗,便于用户进行清洗操作,且便于超声波装置的维修和零部件更换。
进一步地,锁组件包括锁盖、弹性构件和锁键,锁键设置为在未被按压至解锁位置时超声波组件与容水构件彼此锁定以及在被按压至解锁位置时超声波组件与容水构件彼此分离,且锁盖与锁键之间设置弹性构件,通过这样的设置,使得通过按压锁键即可使超声波组件与容水构件分离,便于用户操作,且当锁键被按压后且按压力消失时,锁键能够在弹性构件的弹性力作用下自动回复至锁键未被按压时的位置,用户无需对锁键进行操作将锁键恢复至原位,简化用户的操作,提升用户体验。
进一步地,锁键上设置有第一导向部,锁盖上设置有第二导向部,且第一导向部与第二导向部导向配合,通过这样的设置,使得锁键与锁盖能够相对移动,且仅能够沿将超声波组件锁定/解锁的方向移动,避免了锁键被按压时锁键在偏离被按压的方向上移动,从而为用户的按压操作提供一定的容错空间,即,用户在按压锁键时即使位置稍有偏差也能够顺利地实现超声波组件与容水构件的解锁,进一步便捷用户的操作,进一步提升用户体验。
进一步地,弹性构件为弹簧,弹簧套设在锁盖的限位轴上,通过这样的设置,能够避免弹簧发生径向形变,保证锁键复位操作的正常进行,从而便于实现超声波组件与容水构件的彼此锁定,进而不影响用户的正常使用。
进一步地,排水构件上形成有导水部和排水部,导水部沿靠近排水部的方向向下倾斜设置,通过这样的设置,在排水构件接纳容水构件的液体之后,导水部能够将液体导流至排水部,从而使得液体能够顺利地从排水部流出,进而避免了排水构件中的液体积聚在排水构件中,避免使排水构件滋生细菌。
进一步地,超声波组件与超声波装置的外壳滑动连接,通过这样的设置,使得超声波组件与容水构件在彼此锁定时能够一同被平顺地拉出或推入,从而使得用户可以在外壳外进行超声波组件和容水构件的解锁和锁定操作,进而便捷用户的操作,进一步提升用户体验。
在另一方面,本发明还提供了一种衣物处理设备,超声波装置设置在衣物处理设备的箱体和/或盘座上,通过这样的设置,使得衣物处理设备能够针对衣物中污渍较多的部位进行预洗,从而避免通过增加洗涤剂剂量、延长洗涤时间、延长洗涤前的浸泡时间等方式实现对衣物上污渍较多的部位的清洁,进而减轻了在衣物洗涤过程中对衣物的伤害,提升用户体验。
附图说明
下面结合具有超声波装置的衣物处理设备来阐述本发明的优选实施方式,附图中:
图1是本发明的超声波装置实施例的结构示意图一(示出了门体);
图2是图1中A处的局部放大图;
图3是图1中B处的局部放大图;
图4是本发明的超声波装置实施例的结构示意图二(未示出门体);
图5是本发明的超声波装置的锁组件的结构示意图一;
图6是本发明的超声波装置的锁组件的结构示意图二;
图7是图6中C处的局部放大图;
图8是本发明的超声波装置的锁组件的结构示意图三;
图9是本发明的超声波装置的锁盖的结构示意图;
图10是本发明的超声波装置的排水构件的结构示意图;
图11是本发明的超声波装置的开闭组件的结构示意图一;
图12是图11中D处的局部放大图;
图13是本发明的超声波装置的开闭组件的结构示意图二;
图14是图13中E处的局部放大图;
图15是本发明的超声波装置的滑动支架的结构示意图;
图16是本发明的超声波装置的滑动轴的结构示意图一;
图17是本发明的超声波装置的滑动轴的结构示意图二;
图18是本发明的超声波装置的滑动轴的结构示意图三;
图19是本发明的超声波装置的门传动组件的一种情形的结构示意图;
图20是图19中F处的局部放大图;
图21是图19中G处的局部放大图;
图22是本发明的超声波装置的第一传动杆与第二传动杆的结构示意图;
图23是本发明的超声波装置的第一滑动座的结构示意图;
图24是本发明的超声波装置的门传动组件的另一种情形的结构示意图;
图25是本发明的超声波装置的第七滑动部与第八滑动部的结构示意图;
图26是本发明的超声波装置的门体与转动构件设置关系的示意图;
图27是图26中H处的局部放大图;
图28是本发明的超声波装置的扣合件的结构示意图;
图29是本发明的超声波装置的门体与扣合件的结构示意图;
图30是本发明的超声波装置的第二滑动座的结构示意图;
图31是本发明的超声波装置实施例的结构示意图三;
图32是本发明的容水构件与排水构件的结构示意图;
图33是图32中I处的局部放大图。
附图标记:
1、超声波组件;11、第一滑动座;111、第三限位结构;112、第五限位结构;12、第七滑动部;2、容水构件;21、排水口;22、第一滑动部;23、通口结构;24、第一搭接部;25、抠手;251、防滑结构;252、凸起结构;3、锁组件;31、锁盖;311、第二导向部;312、第一限位轴;33、锁键;331、按压部;332、锁钩部;333、第一导向部;4、排水构件;41、第二滑动部;42、加强部;43、导水部;44、排水部;51、滑动支架;511、第二限位轴;512、泄水开关;52、滑动轴;521、泄水部;5211、泄水口;522、阻隔部;5221、环形槽;523、密封圈;53、第二弹簧;6、外壳;61、第一滑动通槽;611、第四限位结构;612、第六限位结构;62、第八滑动部;63、开口;64、配合部;65、第一避让槽;66、第二避让槽;7、门体;71、第二搭接部;72、平滑过渡部;8、门传动组件;81、绳子;82、凸起;83、伸缩机构;831、第一传动杆;8311、第五滑动部;832、第二传动杆;8321、通过结构;8322、第六滑动部;84、第二滑动座;841、通孔;842、第一限位结构;843、连接轴;8431、限位凸起;85、第二滑动通槽;9、转动构件;91、转轴;911、第一抵靠结构;92、扣合件;921、第二抵靠结构;922、第二限位结构;10、扭簧;101、第一卡置端;102、第二卡置端。
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,虽然本发明是结合具有超声波装置的衣物处理设备来阐述说明的,但是,本发明的超声波装置显然还适用于除衣物处理设备的其他设备(例 如电子探测设备、开采设备和医疗设备等),这种应用对象的调整和改变不构成对本发明的限制,均应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”、“前”、“后”、“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”、“第三”、“第四”、“第五”、“第六”、“第七”、“第八”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”、“相连”、“连接”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;可以是机械连接,也可以是电连接;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具有超声波洗涤功能的衣物处理设备其超声波装置不便于清洗的问题,本发明提供了一种具有超声波装置的衣物处理设备,旨在便于用户对超声波装置进行清洗,并且便于超声波装置的维修和零部件更换。
需要说明的是,本发明的衣物处理设备可以包括箱体和设置在箱体上的盘座,超声波装置设置在箱体和/或盘座上,其中,超声波装置可以仅设置在箱体上,或者仅设置在盘座上,或者一部分设置在箱体上、另一部分设置在盘座上。本发明的衣物处理设备还可以不具有盘座,此时超声波装置设置在箱体上。进一步说明地,上述中超声波装置在衣物处理设备的部件上的具体设置位置仅是示例性的,本领域技术人员可以在实际应用中根据衣物处理设备的具体结构灵活地设置超声波装置的具体位置,这种超声波装置的具体设置位置的调整和改变不构成对本发明的限制,均应限定在本发明的保护范围之内。此外,还需要说明的是,本发明的衣物处理设备可以为洗衣机,也可以为干衣机,又可以为洗干一体机,又可以为鞋洗机,又可以为衣物护理机等,这种衣物处理设备具体类型的调整和改变也不构成对本发明的限制,均应限定在本发明的保护范围之内。下面对超声波装置的具体结构作进一步说明。
具体地,如图1、4、5和6所示,本发明的超声波装置包括超声波组件1、容水构件2和锁组件3,锁组件3设置在超声波组件1与容水构件2之间,锁组件3设置为在锁定状态下能够将超声波组件1与容水构件2彼此锁定以及在解锁状态下允许超声波组件1与容水构件2彼此分离。其中,超声波组件1能够产生超声波。超声波组件1可以采用超声波棒、探头、探针等,本领域技术人员可以在实际应用中灵活地设置超声波组件1的具体结构形式,只要能够通过超声波组件1实现产生超声波即可。当然,超声波组件1中除了上述超声波棒、探头、探针等将超声波传送出来的部件之外,还可能包括用于设置超声波棒、探头、探针等的固定架和/或固定座等部分。容水构件2能够容置液体(如:水、水与洗涤剂的混合液等)以及放置待预洗的衣物。容水构件2可以采用容水盒、容水盘(图5中所示的正是这种结构形式)、容水箱和/或容水槽等,本领域技术人员可以在实际应用中灵活地设置容水构件2的具体结构形式,只要通过容水构件2能够容置液体以及衣物即可。当用户洗涤大件衣物(如外套、长裤等)时,可以将待预洗的大件衣物上污渍较多的部位放置于容水构件2的液体中,超声波组件1与容水构件2中的液体接触,超声波通过液体传递至衣物,对衣物进行预洗,当用户洗涤小件衣物(如领带、袖套等)时,可以将小件衣物全部或部分放入容水构件2中,通过超声波的作用对衣物进行超声波洗涤。另外,该超声波装置不限于只对衣物进行清洗,除衣物外,本发明的超声波装置也可以对其他物品进行洗涤,比如眼镜、戒指等,只要该物品能够通过超声波进行洗涤即可。
优选地,如图5、6和8所示,锁组件3包括锁盖31、弹性构件和锁键33,锁盖31设置在容水构件2上,弹性构件(图中未示出)设置在锁盖31与锁键33之间,锁键33设置为在未被按压至解锁位置时与超声波组件1抵靠以将超声波组件1与容水构件2彼此锁定以及在被按压至解锁位置时与超声波组件1解除抵靠以允许超声波组件1与容水构件2彼此分离。其中,锁盖31也可以设置在超声波组件1上,此时,锁键33设置为在未被按压至解锁位 置时与容水构件2抵靠以将超声波组件1与容水构件2彼此锁定以及在被按压至解锁位置时与容水构件2解除抵靠以允许超声波组件1与容水构件2彼此分离。上述优选技术方案的一种替代方案是,锁组件3包括具有弹性的第一卡接件和具有弹性的第二卡接件,第一卡接件设置在容水构件2上,第二卡接件设置在超声波组件1上,第一卡接件与第二卡接件能够相互卡合以使得超声波组件1与容水构件2彼此锁定,第一卡接件与第二卡接件能够解除卡合以使得超声波组件1与容水构件2彼此分离,由于第一卡接件和第二卡接件均是具有弹性的,因此,可以通过用手将第一卡接件和第二卡接件分开的方式使第一卡接件与第二卡接件解除卡合。本领域技术人员可以在实际应用中灵活地设置锁组件3的具体结构形式,只要能够通过锁组件3实现使超声波组件1与容水构件2能够彼此锁定、分离即可。
优选地,继续参照图5、6和8,锁键33包括相连的按压部331和锁钩部332,弹性构件设置在锁盖31与按压部331之间,在锁键33未被按压至解锁位置时,锁钩部332与超声波组件1抵靠,在锁键33被按压至解锁位置时,锁钩部332与超声波组件1解除抵靠。当然,弹性构件也可以设置在锁盖31与锁钩部332之间,本领域技术人员可以在实际应用中灵活地设置弹性构件的设置位置,只要能够通过弹性构件实现当锁键33被按压后且按压力消失时,锁键33能够在弹性构件的弹性力作用下自动回复至锁键33未被按压时的位置即可。
优选地,如图8和9所示,锁键33上设置有第一导向部333,锁盖31上设置有第二导向部311,第一导向部333与第二导向部311导向配合,使得锁键33仅能够沿将超声波组件1锁定/解锁的方向移动。其中,第一导向部333与第二导向部311可以是导向筋与导向槽、导向柱与导向套等,本领域技术人员可以在实际应用中灵活地设置第一导向部333与第二导向部311的设置位置以及具体结构形式,只要能够通过第一导向部333与第二导向部311实现使得锁键33仅能够沿将超声波组件1锁定/解锁的方向移动即可。当然,更为优选的是,第一导向部333为设置在锁键33上的导向筋,第二导向部311为形成于锁盖31上的导向槽;或者,第一导向部333为形成于锁键33上的导向槽,第二导向部311为设置在锁盖31上的导向筋。
优选地,如图9所示,弹性构件(图中未示出)为第一弹簧,锁盖31上设置有第一限位轴312,第一弹簧的一部分套设在第一限位轴312上。其中,也可以是第一限位轴312设置在锁键33上,还可以是锁盖31和锁键33上均设置有第一限位轴312,当然,也可以不设置第一限位轴312,直接将第一弹簧设置在锁盖31与锁键33之间,本领域技术人员可以在实际应用中灵活地设置第一限位轴312的设置位置以及数量,只要能够将弹性构件设置在锁盖31与锁键33之间,且使得弹性构件能够实现当锁键33被按压后且按压力消失时,锁键33能够在弹性构件的弹性力作用下自动回复至锁键33未被按压时的位置即可。此外,弹性构件也可以为橡胶块等,本领域技术人员可以在实际应用中灵活地设置弹性构件的具体结构,只要能够通过弹性构件实现当锁键33被按压后且按压力消失时,锁键33能够在弹性构件的弹性力作用下自动回复至锁键33未被按压时的位置即可。
优选地,如图1、7、10和31所示,超声波装置还包括排水构件4,排水构件4能够接纳容水构件2流出的液体。排水构件4可以采用排水盒、排水盘、排水箱和/或排水槽等,本领域技术人员可以在实际应用中灵活地设置排水构件4的具体结构形式,只要通过排水构件4能够接纳容水构件2流出的液体即可。容水构件2上设置有排水口21,在一种可能的情形中,排水口21设置在容水构件2的底壁,排水构件4设置在容水构件2的下方,当排水口21打开时容水构件2中的液体经排水口21流入排水构件4中;在另一种可能的情形中,排水口21设置在容水构件2的左右侧壁,排水构件4设置在容水构件2的下方,且排水构件4设置在能够接到从排水口21流出的液体的位置;在又一种可能的情形中,排水口21设置在容水构件2的后侧壁,排水构件4设置在容水构件2的下方,且排水构件4设置在能够接到从排水口21流出的液体的位置(图6、7、32和33中所示的正是这种情形)。当然,在上述三种可能的情形以及在容水构件2具有顶壁且排水口21设置在顶壁的情形中,排水构件4也可以设置在容水构件2的上方,容水构件2的排水口21通过管道与排水构件4连通,并且该管道上设置有水泵,启动水泵即可将容水构件2中的液体泵送至排水构件4中。本领域技术人员可以在实际应用中灵活地设置容水构件2上排水口21的设置位置以及容水构件2与排水构件 4的相对位置,只要能够通过排水口21将容水构件2中的液体排出至排水构件4中即可。当然,容水构件2上也可以不设置排水口21,比如,可以通过水泵将容水构件2中的液体抽出,下面仅以容水构件2上设置有排水口为例进行阐述。
优选地,容水构件2滑动地设置在排水构件4上。进一步优选地,如图10和11所示,容水构件2上设置有第一滑动部22,排水构件4上设置有第二滑动部41,第一滑动部22与第二滑动部41滑动配合。其中,第一滑动部22与第二滑动部41可以是滑块与滑槽、滑道与滑轮等,本领域技术人员可以在实际应用中灵活地设置第一滑动部22与第二滑动部41的具体结构形式,只要能够通过第一滑动部22与第二滑动部41实现容水构件2滑动地设置在排水构件4上即可。
优选地,如图10所示,排水构件4上设置有与第二滑动部41连接的加强部42。其中,加强部42可以为加强筋、加强支架等,本领域技术人员可以在实际应用中灵活地设置加强部42的具体结构形式,只要能够通过加强部42实现使第二滑动部41不易损坏或变形即可。在一种更为优选的情形中,加强筋为多个,多个加强筋沿第二滑动部41的长度方向依次排列设置,使得第二滑动部41整体强度都能够得到加强。
优选地,继续参照图10,排水构件4上形成有导水部43和排水部44,导水部43沿靠近排水部44的方向向下倾斜设置。其中,导水部43可以是平面结构(图10中所示的正是这种情形),也可以是曲面结构,本领域技术人员可以在实际应用中灵活地设置导水部43的具体结构形式,只要能够通过导水部43实现将排水构件4中的液体导流至排水部44即可。排水部44可以设置为孔、管道等,本领域技术人员可以在实际应用中灵活地设置排水部44的具体结构形式,只要能够通过排水部44实现将液体排出即可。
优选地,排水构件4的排水部44可以设置为与衣物处理设备的排水管连通。通过这样的设置,使得排水构件4中的液体可以直接经衣物处理设备的排水管排出,无需再设置一根独立于前述排水管的另一根排水管,从而更加节省空间同时也使得衣物处理设备的结构更紧凑。
优选地,如图11至13、15所示,超声波装置还包括开闭组件,开闭组件设置为在关闭状态下阻止容水构件2中的液体流出以及在开启状态下允许容水构件2中的液体流出。其中,开闭组件可以为手动实现开启和关闭,还可以为自动实现开启和关闭。开闭组件设置为自动实现开启和关闭的一种可能的情形是,开闭组件包括摆动电机和与摆动电机连接的盖板,摆动电机能够驱动盖板转动从而使得盖板将排水口21打开或关闭。
优选地,如图11至13、15所示,开闭组件包括滑动支架51、开闭构件和弹性结构,滑动支架51与容水构件2滑动连接,开闭构件设置在滑动支架51上,弹性结构设置在滑动支架51与容水构件2之间,开闭构件滑动地设置在排水口21中,滑动支架51设置为在相对于容水构件2滑动到第一位置时使弹性结构压缩并带动开闭构件以将排水口21打开,弹性结构设置为能够通过弹性复位作用使滑动支架51相对于容水构件2滑动到第二位置并因此使滑动支架51带动开闭构件以将排水口21关闭。
在上述中,通过外力作用能够使得滑动支架51相对于容水构件2滑动到第一位置(如图11和13所示即为滑动支架51相对于容水构件2滑动到第一位置的情形),此时开闭构件将排水口21导通,容水构件2中的液体能够经排水口21流出,与此同时,设置在滑动支架51与容水构件2之间的弹性结构处于压缩状态,当外力逐渐变小时,弹性结构将逐渐恢复原长,同时带动了滑动支架51相对于容水构件2滑动,最终,滑动支架51相对于容水构件2滑动到第二位置,当处于第二位置时,开闭构件将排水口21封闭,使得液体不能经排水口21流出。
上述优选技术方案的一种替代方案是,开闭组件是橡胶塞,手动将橡胶塞塞在容水构件2的排水口21中即可阻止容水构件2中的液体流出,将橡胶塞从排水口21中取下即可允许容水构件2中的液体流出。本领域技术人员可以在实际应用中灵活地设置开闭组件的具体结构形式,只要能够通过开闭组件实现阻止或允许容水构件2中的液体流出即可。
优选地,如图13、15至18所示,开闭构件为滑动轴52,滑动轴52上形成有泄水部521和阻隔部522,在滑动支架51相对于容水构件2滑动到第一位置(附图中示出的 均为滑动支架51相对于容水构件2滑动到第一位置的情形)时,泄水部521将排水口21导通,在滑动支架51相对于容水构件2滑动到第二位置时,阻隔部522将排水口21封闭。需要说明的是,虽然附图中示出的均是排水口21为圆形,滑动轴52设置为近似圆柱状,但是本领域技术人员可以在实际应用中灵活地设置排水口21以及滑动轴52的形状,这种对于排水口21以及滑动轴52形状的调整和改变不构成对本发明的限制,均应限定在本发明的保护范围之内。
优选地,泄水部521包括两个泄水口5211,两个泄水口5211沿滑动轴52的周向设置。当然,泄水部521也可以包括一个或两个以上泄水口5211,此外,泄水口5211也可以是不沿滑动轴52的周向设置,比如泄水口5211沿滑动轴52的长度方向设置。在一种可能的情形中,如图16至18所示,泄水部521包括三个泄水口5211,其中两个泄水口5211(下述称为第一泄水口、第二泄水口)沿滑动轴52的周向设置,另一个泄水口5211(下述称为第三泄水口)设置在滑动轴52的后端,且第三泄水口与沿滑动轴52的周向设置的第一泄水口和第二泄水口连通,如图13所示,在此种情形中,排水口21设置于容水构件2的后侧壁,且当滑动支架51相对于容水构件2滑动到第一位置时,第三泄水口位于排水口21中,以使得从泄水口5211流出的液体能够经排水口21流出容水构件2。在另一种可能的情形中,泄水部521包括两个泄水口5211,泄水口5211设置于滑动轴52的后部,且一直延伸至滑动轴52的后端面(当然,泄水口5211也可以是未延伸至滑动轴52的后端面),此时,排水口21设置于容水构件2的后侧壁,且在滑动支架51相对于容水构件2滑动到第一位置时,滑动轴52伸出容水构件2的后侧壁且部分泄水口5211也伸出容水构件2的后侧壁,以使得从泄水口5211流出的液体能够经排水口21流出容水构件2。本领域技术人员可以在实际应用中灵活地设置泄水口5211的数量以及设置位置,只要能够通过泄水口5211实现将容水构件2中的液体排出即可。
优选地,如图16所示,阻隔部522上套设有密封圈523,在滑动支架51相对于容水构件2滑动到第二位置时,密封圈523位于排水口21与阻隔部522之间。当然,阻隔部522上也可以不设置密封圈523,此时,阻隔部522可以采用能够实现密封的材料,如橡胶,当然,此时阻隔部522的尺寸应足够大使得当阻隔部522在排水口21中时能够将排水口21密封以避免容水构件2中的液体经排水口21流出。
优选地,如图17和18所示,阻隔部522上设置有环形槽5221,密封圈523的一部分设置在环形槽5221中。当然,阻隔部522上也可以不设置环形槽5221,密封圈523直接套设在阻隔部522上。
优选地,如图12和图15所示,弹性结构为第二弹簧53,滑动支架51上设置有第二限位轴511,第二弹簧53的一部分套设在第二限位轴511上。其中,也可以是第二限位轴511设置在容水构件2上,还可以是滑动支架51和容水构件2上均设置有第二限位轴511,当然,也可以不设置第二限位轴511,直接将第二弹簧53设置在滑动支架51与容水构件2之间,本领域技术人员可以在实际应用中灵活地设置第二限位轴511的设置位置以及数量,只要能够将弹性结构设置在滑动支架51与容水构件2之间,且使得弹性结构能够实现通过其弹性复位作用使滑动支架51相对于容水构件2滑动到第二位置即可。此外,弹性结构也可以为橡胶块等,本领域技术人员可以在实际应用中灵活地设置弹性结构的具体结构,只要能够通过弹性结构实现通过其弹性复位作用使滑动支架51相对于容水构件2滑动到第二位置即可。
优选地,如图13至15所示,容水构件2上设置有通口结构23,滑动支架51上设置有泄水开关512,泄水开关512滑动地设置在通口结构23中,泄水开关512设置为在外力作用下能够使滑动支架51相对于容水构件2滑动。由于泄水开关512设置在滑动支架51上,且滑动支架51与容水构件2滑动连接,因此,当对泄水开关512施加外力时泄水开关512移动从而带动滑动支架51移动,进而使得滑动支架51相对于容水构件2滑动。其中,通口结构23也可以设置在滑动支架51上,此时,泄水开关512设置在容水构件2上,本领域技术人员可以在实际应用中灵活地设置通口结构23和泄水开关512的设置位置,只要能够通过通口结构23和泄水开关512实现当泄水开关512受到外力作用时能够使滑动支架51相对于容水构件2滑动即可。
优选地,如图4所示,超声波装置还包括外壳6,超声波组件1与外壳6滑动连接,使得超声波组件1和容水构件2在被锁组件3锁定的情形下能够一起被拉出外壳6外以 及被推入外壳6内。当然,在实际应用中,超声波装置还可以不具有外壳,例如衣物处理设备的箱体或者盘座上形成有容纳腔,超声波组件1与容纳腔滑动连接。在一种可能的情形中,盘座的内后侧形成有容纳腔,超声波组件1与容纳腔滑动连接。
优选地,如图1和5所示,超声波组件1上设置有第三滑动部,外壳6上设置有第四滑动部,第三滑动部与第四滑动部滑动配合。其中,第三滑动部与第四滑动部可以是滑块与滑槽、滑道与滑轮等,本领域技术人员可以在实际应用中灵活地设置第三滑动部与第四滑动部的具体结构形式,只要能够通过第三滑动部与第四滑动部实现超声波组件1与外壳6滑动连接即可。更为优选地,如图1和5所示,第三滑动部为设置在超声波组件1上的第一滑动座11,第四滑动部为形成于外壳6上的第一滑动通槽61。
优选地,如图1和4所示,外壳6的前部设置有开口63,开口63上设置有门体7。优选地,门体7为透明门体。当然,门体7也可以是不透明门体。此外,门体7可以直接设置于外壳6的开口63上,也可以通过门传动组件8设置于开口63上(图1中所示的正是这种情形),本领域技术人员可以在实际应用中灵活地设置门体7与外壳6的连接方式,只要能够使得门体7设置于开口63上即可。
优选地,如图1、19和24所示,超声波装置还包括门传动组件8,门传动组件8连接于第一滑动座11与门体7之间,门传动组件8设置为当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时能够将门体7收纳于外壳6中。需要说明的是,在本发明中,以外壳6为六面体为例,门体7收纳于外壳6中可以为门体7收纳于外壳6的六个侧壁之内(即门体7同时位于上侧壁与下侧壁之间、左侧壁与右侧壁之间以及前侧壁与后侧壁之间),当然,门体7收纳于外壳6中也可以为门体7仅收纳于左侧壁和右侧壁之间,或者门体7仅收纳于上侧壁与下侧壁之间,又或者门体7仅收纳于前侧壁和后侧壁之间,这几种情形均应理解为门体7收纳于外壳6中,再结合具体情形来进一步说明,如图4所示,外壳6的左侧壁的上沿和右侧壁的上沿均高出上侧壁所处的平面,门体7可以收纳于上侧壁的上方但是位于左侧壁和右侧壁之间,此时门体7也应理解为收纳于外壳6中,当然,在这种情形中,门体7也可以收纳于上侧壁的下方。本领域技术人员可以在实际应用中灵活地设置门传动组件8的具体结构,只要通过门传动组件8在容水构件2被拉出外壳6外时能够将门体7收纳于外壳6中即可。
优选地,如图1和19所示,门传动组件8包括与外壳6转动连接的伸缩机构83、与门体7连接的第二滑动座84以及设置在外壳6上的第二滑动通槽85,第二滑动座84与第二滑动通槽85滑动配合,第二滑动通槽85与第一滑动通槽61平行设置,伸缩机构83的两端分别与第一滑动座11和第二滑动座84铰接。当然,第二滑动通槽85与第一滑动通槽61也可以设置为存在一定角度,只要不妨碍当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时门传动组件8将门体7收纳于外壳6中即可。上述优选技术方案的一种替代方案是,如图24所示,门传动组件8包括两端分别连接第一滑动座11和门体7的绳子81,外壳6上设置有凸起82,当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时,第一滑动座11沿第一滑动通槽61从外壳6后部向开口63滑动,某一时刻,绳子81与凸起82接触并被凸起82挡住,之后绳子81相对于凸起82滑动,并将门体7拉动以将门体7收纳于外壳6中。本领域技术人员可以在实际应用中灵活地设置门传动组件8的具体结构形式,只要能够通过门传动组件8实现当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时能够将门体7收纳于外壳6中即可。
优选地,如图1和19所示,伸缩机构83包括第一传动杆831和第二传动杆832,第一传动杆831的第一端与第一滑动座11滑动铰接,第一传动杆831的第二端与外壳6铰接且与第二传动杆832的第一端滑动配合,第二传动杆832的第二端与第二滑动座84铰接。优选地,如图22所示,第一传动杆831上设置有第五滑动部8311,第二传动杆832上设置有第六滑动部8322,第五滑动部8311与第六滑动部8322滑动配合。其中,第五滑动部8311与第六滑动部8322可以是滑块与滑槽、滑道与滑轮等,本领域技术人员可以在实际应用中灵活地设置第五滑动部8311与第六滑动部8322的具体结构形式,只要能够通过第五滑动部8311与第六滑动部8322实现第一传动杆831的第二端与第二传动杆832的第一端滑动配合即可。上 述优选技术方案的一种替代方案是,将第一传动杆831和第二传动杆832分别设置为活塞机构,即,伸缩机构83包括第一缸体、第一活塞、第一活塞杆、第二缸体、第二活塞、第二活塞杆,第一活塞设置于第一缸体中,第一活塞能够在第一缸体中往复移动,第二活塞设置于第二缸体中,第二活塞能够在第二缸体中往复移动,第一缸体的第一端与第一滑动座11滑动铰接,第一活塞杆的第一端与第一活塞连接,第一活塞杆的第二端从第一缸体的第二端伸出且与外壳6铰接,第二活塞杆的第一端与第二活塞连接,第二活塞杆的第二端从第二缸体的第一端伸出,且第一活塞杆的第二端上设置有滑槽,第二活塞杆的第二端上设置有滑块,滑块与滑槽滑动配合,第二缸体的第二端与第二滑动座84铰接。本领域技术人员可以在实际应用中灵活地设置伸缩机构83的具体结构形式,只要能够通过伸缩机构83实现第一滑动座11向开口63的方向滑动时第二滑动座84沿相反方向滑动即可。
优选地,如图1所示,第二滑动通槽85设置在第一滑动通槽61的上方,当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时,门体7从外壳6的前部移动至外壳6的顶部。当然,第二滑动通槽85也可以设置在第一滑动通槽61的下方,在此种情形中,当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时,门体7从外壳6的前部移动至外壳6的底部。需要说明的是,以门体7从外壳6的前部移动至外壳6的顶部为例,外壳6的顶部可以是外壳6的外顶部,也可以是外壳6的内顶部。如前述0086段的一种情形中,外壳6的左侧壁的上沿和右侧壁的上沿均高出上侧壁所处的平面,门体7收纳于上侧壁的上方但是位于左侧壁和右侧壁之间即为门体7收纳于外壳6的外顶部的一种情形,在门体7收纳于上侧壁的下方时即为门体7收纳于外壳6的内顶部。
优选地,如图25所示,超声波组件1上设置有第七滑动部12,外壳6上设置有第八滑动部62,第七滑动部12与第八滑动部62滑动配合。其中,第七滑动部12与第八滑动部62可以是滑块与滑槽(图25中所示的正是这种情形)、滑道与滑轮等,本领域技术人员可以在实际应用中灵活地设置第七滑动部12与第八滑动部62的具体结构形式,只要能够通过第七滑动部12与第八滑动部62实现超声波组件1与外壳6滑动连接即可。
优选地,门体7的底部设置有与容水构件2的前部配合的搭接部;或者,容水构件2的前部设置有与门体7的底部配合的搭接部;或者,容水构件2的前部设置有第一搭接部24,门体7的底部设置有第二搭接部71,第一搭接部24与第二搭接部71配合(图2中所示的正是这种情形)。具体而言,图2示出了第一搭接部24与第二搭接部71具体设置方式的一种可能的情形,在图2中,容水构件2的前部向上延伸形成第一搭接部24,门体7(关闭状态下)向下延伸至第一搭接部24处,门体7上与第一搭接部24相对应的位置为第二搭接部71。以门体7的底部设置搭接部为例,搭接部可以是从门体7的底部延伸出来的部分(图2中所示的第二搭接部71正是从门体7底部延伸出来的部分),也可以是与门体7底部可拆卸连接(比如:粘接、卡接)的部件(如搭接板、搭接块等),本领域技术人员可以在实际应用中灵活地设置搭接部的具体结构形式,只要通过搭接部能够实现在容水构件2被拉出外壳6外时,容水构件2使得门体7稍微抬起即可。
优选地,如图27所示,门体7的顶部内侧形成有平滑过渡部72,使得当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时,门体7能够平滑地从外壳6的前部移动至外壳6的顶部。当然,本领域技术人员可以理解的是,平滑过渡部72需要有与之配合的构件才能够实现当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时,门体7能够平滑地从外壳6的前部移动至外壳6的顶部,例如,与平滑过渡部72配合的构件是外壳6,此时,外壳6上设置有与平滑过渡部72配合的配合部64(图27中示出的正是这种情形),当然,本领域技术人员可以在实际应用中灵活地设置与平滑过渡部72配合的构件,只要能够通过平滑过渡部72与构件的配合能够实现当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时,门体7平滑地从外壳6的前部移动至外壳6的顶部即可。
以容水构件2的前部设置有第一搭接部24,门体7的底部设置有第二搭接部71,第一搭接部24与第二搭接部71配合的情形为例,当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时,容水构件2的第一搭接部24推动门体7的第二搭 接部71,从而使得门体7向上翻转并逐渐离开外壳6的开口63,且平滑过渡部72在配合部64的支撑下滑动,与此同时,设置在超声波组件1上的第一滑动座11沿第一滑动通槽61随超声波组件1一同向开口63的方向移动,第一传动杆831在第一滑动座11的带动下发生转动,第一传动杆831通过第五滑动部8311和第六滑动部8322带动第二传动杆832也随第一传动杆831的转动而转动,从而带动第二滑动座84沿第二滑动通槽85从容水构件2的前部向容水构件2的后部移动,进而拉动门体7从外壳6的前部移动至外壳6的顶部。
当然,需要说明的是,也可以是,门体7和容水构件2上均没有搭接部,但是门体7上设置有平滑过渡部72,当然,如前所述,本领域技术人员可以理解的是,平滑过渡部72需要有与之配合的构件(如:外壳6上的配合部64)才能够实现当超声波组件1和容水构件2在被锁组件3锁定且容水构件2被拉出外壳6外时,门体7能够平滑地从外壳6的前部移动至外壳6的顶部。
优选地,如图3和26所示,超声波装置还包括安装构件、转动构件9和扭簧10,安装构件与外壳6连接,门体7与转动构件9固定连接,转动构件9转动地设置在安装构件上,扭簧10套设在转动构件9上,安装构件上设置有第一限位结构842,转动构件9上设置有第二限位结构,扭簧10的第一卡置端101卡置于第一限位结构842上,扭簧10的第二卡置端102卡置于第二限位结构上,扭簧10设置为能够通过弹性复位作用使门体7将外壳6的开口63关闭。其中,安装构件可以是板状,也可以是块状,本领域技术人员可以在实际应用中灵活地设置安装构件的具体结构形式,这种安装构件的具体结构形式的调整和改变不构成对本发明的限制,均应限定在本发明的保护范围之内。转动构件9可以是圆柱状,也可以是长方体状,本领域技术人员可以在实际应用中灵活地设置转动构件9的具体结构形式,这种转动构件9的具体结构形式的调整和改变不构成对本发明的限制,均应限定在本发明的保护范围之内。安装构件与外壳6可以是固定连接,也可以是活动连接,比如滑动连接,本领域技术人员可以在实际应用中灵活地设置安装构件与外壳6的连接方式,只要安装构件与外壳6的连接方式不影响扭簧10通过弹性复位作用使门体7将外壳6的开口63关闭即可。此外,第一限位结构842和第二限位结构可以采用限位板(图28中所示的第二限位结构以及图30中所示的第一限位结构正是这种结构形式)、限位柱等,本领域技术人员可以在实际应用中灵活地设置第一限位结构842和第二限位结构的具体结构形式,只要能够使得扭簧10的第一卡置端101卡置于第一限位结构842上,扭簧10的第二卡置端102卡置于第二限位结构上即可。
当容水构件2被拉出外壳6外时,门体7在门传动组件8的作用下从外壳6的前部的开口63移动至外壳6的顶部,与此同时,转动构件9随门体7的转动而转动,且由于扭簧10的第一卡置端101卡置于第一限位结构842上,扭簧10的第二卡置端102卡置于转动构件9上的第二限位结构上,因此扭簧10被压缩扭转,当容水构件2被推入外壳6内,门体7在门传动组件8的作用下先是向朝外壳6的前部的方向运动,而后门体7通过转动回到外壳6的前部并覆盖开口63,门体7在转动过程中,扭簧10逐渐恢复至未被扭转时的状态同时对门体7施加一个转矩使得门体7在覆盖外壳6的开口63时能够盖合到位。
优选地,如图3、26、28至30所示,安装构件为第二滑动座84,第二滑动座84上设置有通孔841,转动构件9包括转轴91和扣合件92,转轴91设置在门体7上且依次穿过第二滑动通槽85和通孔841,扣合件92设置在第二滑动座84上且设置在转轴91远离门体7的端部,转轴91朝向扣合件92的一侧设置有第一抵靠结构911,扣合件92朝向转轴91的一侧设置有与第一抵靠结构911配合的第二抵靠结构921,扭簧10设置在扣合件92与第二滑动座84之间,第二限位结构922设置在扣合件92上。其中,转轴91与扣合件92可以是一体设置(例如焊接、一体铸造等),也可以是可拆卸式连接(例如螺接、卡接等),当然,转轴91与扣合件92是一体设置时,可以不设置第一抵靠结构911与第二抵靠结构921。此外,虽然图28和29中示出的第一抵靠结构911和第二抵靠结构921的形状均为半圆柱状,但是本领域技术人员可以在实际应用中灵活地设置第一抵靠结构911和第二抵靠结构921的形状(当然,本领域技术人员可以理解的是,第一抵靠结构911和第二抵靠结构921的形状不必完全相同),这种对于第一抵靠结构911和第二抵靠结构921形状的调整和改变不构成对本发明的限制,均应限定在本发明的保护范围之内。
优选地,如图3所示,第二滑动座84上设置有连接轴843,连接轴843上设置有限位凸起8431,第二传动杆832的第二端套设在连接轴843上并且限位于限位凸起8431与第二滑动座84之间。当然,也可以是,第二传动杆832的第二端上设置有连接轴,连接轴上设置有限位凸起8431,第二滑动座84套设在连接轴843上并且限位于限位凸起8431与第二传动杆832之间。
优选地,继续参照图3,连接轴843与第二滑动座84设置为一体,第二传动杆832上设置有在装配时允许连接轴843和限位凸起8431共同穿过的通过结构8321。其中,连接轴843与第二滑动座84设置为一体是指连接轴843与第二滑动座84设置为不可分离的一个整体,比如:通过将连接轴843与第二滑动座84焊接在一起时使之成为一个整体,或者采用铸造的方式使得铸造完成后连接轴843与第二滑动座84便是一个整体。此外,可以是限位凸起8431与连接轴843可以是一体设置(例如焊接、一体铸造等),也可以是可拆卸式连接(例如螺接、卡接等),在限位凸起8431与连接轴843可拆卸式连接的情形中,可以是,第二传动杆832上设置有在装配时允许连接轴843穿过的通过结构8321。在装配时,需要先将第二传动杆832的第二端套设在连接轴843上,然后再将限位凸起8431固定于连接轴843上,比如:可以是通过焊接将限位凸起8431固定于连接轴843上,也可以通过螺钉将限位凸起8431固定于连接轴843上等。
在一种可能的情形中,如图21和23所示,第一滑动座11上设置有第三限位结构111,第一滑动通槽61靠近开口63的端部设置有第四限位结构611,第三限位结构111与第四限位结构611彼此限位配合以使得第一滑动座11被限制在第一滑动通槽61靠近开口63的端部。优选地,外壳6上靠近第四限位结构611的位置处设置有允许第四限位结构611移入的第一避让槽65。当然,也可以不设置第一避让槽65,此种情形中,可以将第四限位结构611上与第三限位结构111相接触的部分或者第三限位结构111上与第四限位结构611相接触的部分设置为(或者前述二者同时设置为)由略有弹性的材料,当然该材料的弹性应大到没有第一避让槽65也能够使得第三限位结构111与第四限位结构611彼此限位配合的程度。
在另一种可能的情形中,如图20所示,第一滑动座11上设置有第五限位结构112,第一滑动通槽61远离开口63的端部设置有第六限位结构612,第五限位结构112与第六限位结构612彼此限位配合以使得第一滑动座11被限制在第一滑动通槽61远离开口63的端部。优选地,外壳6上靠近第六限位结构612的位置处设置有允许第六限位结构612移入的第二避让槽66。当然,也可以不设置第二避让槽66,此种情形中,可以将第六限位结构612上与第五限位结构112相接触的部分或者第五限位结构112上与第六限位结构612相接触的部分设置为(或者前述二者同时设置为)由略有弹性的材料,当然该材料的弹性应大到没有第二避让槽66也能够使得第五限位结构112与第六限位结构612彼此限位配合的程度。
在又一种可能的情形中,如图20、21和23所示,第一滑动座11上设置有第三限位结构111,第一滑动通槽61靠近开口63的端部设置有第四限位结构611,且第一滑动座11上还设置有第五限位结构112,第一滑动通槽61远离开口63的端部设置有第六限位结构612,第三限位结构111与第四限位结构611彼此限位配合时能够使得第一滑动座11被限制在第一滑动通槽61靠近开口63的端部,第五限位结构112与第六限位结构612彼此限位配合时能够使得第一滑动座11被限制在第一滑动通槽61远离开口63的端部。优选地,外壳6上靠近第四限位结构611的位置处设置有允许第四限位结构611移入的第一避让槽65,且外壳6上靠近第六限位结构612的位置处设置有允许第六限位结构612移入的第二避让槽66。
优选地,如图1所示,容水构件2的前部设置有抠手25。进一步优选地,如图6所示,抠手25的内壁上设置有防滑结构251。再进一步优选地,抠手25的外壁上设置有凸起结构252。当然,也可以是抠手25的内壁上没有设置防滑结构251,但是抠手25的外壁上设置有凸起结构252。
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. 一种超声波装置,其特征在于,所述超声波装置包括超声波组件、容水构件和锁组件,所述锁组件设置在所述超声波组件与所述容水构件之间,所述锁组件设置为在锁定状态下能够将所述超声波组件与所述容水构件彼此锁定以及在解锁状态下允许所述超声波组件与所述容水构件彼此分离。
  2. 根据权利要求1所述的超声波装置,其特征在于,所述锁组件包括锁盖、弹性构件和锁键,所述锁盖设置在所述容水构件上,所述弹性构件设置在所述锁盖与所述锁键之间,所述锁键设置为在未被按压至解锁位置时与所述超声波组件抵靠以将所述超声波组件与所述容水构件彼此锁定以及在被按压至所述解锁位置时与所述超声波组件解除抵靠以允许所述超声波组件与所述容水构件彼此分离。
  3. 根据权利要求2所述的超声波装置,其特征在于,所述锁键包括相连的按压部和锁钩部,所述弹性构件设置在所述锁盖与所述按压部之间,
    在所述锁键未被按压至所述解锁位置时,所述锁钩部与所述超声波组件抵靠,
    在所述锁键被按压至所述解锁位置时,所述锁钩部与所述超声波组件解除抵靠。
  4. 根据权利要求2所述的超声波装置,其特征在于,所述锁键上设置有第一导向部,所述锁盖上设置有第二导向部,所述第一导向部与所述第二导向部导向配合,使得所述锁键仅能够沿将所述超声波组件锁定/解锁的方向移动。
  5. 根据权利要求2所述的超声波装置,其特征在于,所述弹性构件为弹簧,所述锁盖上设置有限位轴,所述弹簧的一部分套设在所述限位轴上。
  6. 根据权利要求1所述的超声波装置,其特征在于,所述超声波装置还包括排水构件,所述排水构件能够接纳所述容水构件流出的液体。
  7. 根据权利要求6所述的超声波装置,其特征在于,所述容水构件滑动地设置在所述排水构件上。
  8. 根据权利要求6所述的超声波装置,其特征在于,所述排水构件上形成有导水部和排水部,所述导水部沿靠近所述排水部的方向向下倾斜设置。
  9. 根据权利要求1至8中任一项所述的超声波装置,其特征在于,所述超声波装置还包括外壳,所述超声波组件与所述外壳滑动连接,使得所述超声波组件和所述容水构件在被所述锁组件锁定的情形下能够一起被拉出所述外壳外以及被推入所述外壳内。
  10. 一种衣物处理设备,其特征在于,所述衣物处理设备包括箱体和设置在所述箱体上的盘座,
    所述衣物处理设备还包括权利要求1至9中任一项所述的超声波装置,
    所述超声波装置设置在所述箱体和/或所述盘座上。
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