Disclosure of Invention
The technical problem to be solved by the invention is to overcome the defects of the prior art, and provide a handheld ultrasonic washing device, wherein the liquid supply device and the battery are arranged in the structure, so that a user does not need to search a power supply and washing water when washing, the use is more convenient, and the relative positions among the liquid supply device, the battery and the handle are reasonably arranged, so that the handheld ultrasonic washing device is more labor-saving to move and use; the ultrasonic wave generating device is arranged at a position far away from the handle, so that discomfort caused by vibration generated by the ultrasonic wave generating device to a user is reduced.
In order to solve the technical problems, the invention adopts the technical scheme that:
a hand-held ultrasonic washing device comprising a body; the ultrasonic generating device is arranged on the body and used for generating ultrasonic waves to wash clothes; a handle connected to the body for enabling a user to manipulate the hand-held ultrasonic washing device; the joint of the handle and the body is provided with a power supply for supplying power to the ultrasonic generating device and/or a liquid supply device for supplying washing water and/or washing liquid for washing.
The handle is provided with a first end and a second end which are connected with the body, and the liquid supply device and the power supply are both arranged on the handle and are respectively close to the first end and the second end;
preferably, the first end is provided with a first mounting part for mounting the liquid supply device, the second end is provided with a second mounting part for mounting the power supply, the first mounting part is assembled with the liquid supply device, the second mounting part is assembled with the power supply, and the liquid supply device and the power supply are mounted on the handle.
The first installation part is a first cavity arranged in the first end of the handle, the second installation part is a second cavity arranged in the second end of the handle, the first cavity and the second cavity are provided with openings, the liquid supply device penetrates through the openings to enter the first cavity and be assembled with the first cavity, and the power supply penetrates through the openings to enter the second cavity and be assembled with the second cavity.
A communication port communicated with the liquid supply device is arranged in the first concave cavity, and a connector electrically connected with a power supply is arranged in the second concave cavity.
The handle is including being used for handheld pole, first linking arm and the second linking arm, and the both ends and the body of handheld pole are connected through first linking arm and second linking arm, first installation department sets up on first linking arm, and the setting of second installation department is on the second linking arm.
The liquid supply device is assembled with the first installation part, and the axis of the handheld rod passes through at least one part of the liquid supply device;
preferably, the liquid supply device includes the liquid reserve tank that is used for holding washing liquid and is used for the liquid discharge's in the liquid reserve tank liquid supply pipeline, the feed liquor end and the liquid reserve tank intercommunication of liquid supply pipeline, go out the liquid end and be close to the setting of ultrasonic wave generating device, liquid reserve tank and first cavity assembly, the axis of handheld pole passes through at least partly of liquid reserve tank.
A power source is assembled with the second mounting portion, and an axis of the hand-held lever passes through at least a part of the power source;
preferably, the power supply is fitted with the second cavity, the axis of the hand-held lever passing through at least part of said power supply.
The washing machine also comprises a detergent putting device used for putting detergent on the clothes, wherein the detergent putting device is adjacent to one of the liquid supply device and the power supply which is smaller in weight;
preferably, the weight of the liquid supply device is less than that of the power supply, the detergent putting device is arranged at one side adjacent to the liquid supply device,
or the weight of the power supply is less than that of the liquid supply device, and the detergent feeding device is arranged on one side adjacent to the power supply.
The detergent feeding device comprises a detergent box for containing detergent, and the detergent box is arranged on the liquid supply pipeline and communicated with the liquid supply pipeline.
The ultrasonic wave generating device is provided with a vibration end for generating ultrasonic waves, and the vibration end of the ultrasonic wave generating device is far away from the handle;
preferably, the handle, the liquid supply device and the power supply are all arranged on the upper portion of the body, and the ultrasonic wave generating device is arranged on the lower portion of the body.
After adopting the technical scheme, compared with the prior art, the invention has the following beneficial effects: (1) the liquid supply device and the battery are arranged in the structure, so that a user does not need to search a power supply and washing water when washing, and the use is more convenient; (2) the relative positions of the liquid supply device, the battery and the handle are reasonably arranged, so that the hand-held ultrasonic washing device is more labor-saving to move and use; (3) through setting up ultrasonic wave generating device in the position of keeping away from the handle, reduce improper (4) that vibrations that ultrasonic wave generating device produced led to the fact the user and accomodate battery and liquid supply device in the cavity, both played the guard action and more pleasing to the eye still practice thrift space (5) more and hold the cavity setting on the handle, make weight concentrate, more conveniently mention.
The following describes embodiments of the present invention in further detail with reference to the accompanying drawings.
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.
Example one
As shown in fig. 1-2, a hand-held ultrasonic washing device includes a body 1; an ultrasonic wave generating device 400 disposed on the body 1 for generating ultrasonic waves to wash the laundry; a handle 100 connected to the body 1 for enabling a user to manipulate the hand-held ultrasonic washing apparatus; the joint of the handle 100 and the body 1 is provided with a power supply 300 for supplying power to the ultrasonic wave generating device 400 and/or a liquid supply device 200 for supplying washing water and/or washing liquid for washing.
By arranging the power supply 300 for supplying power to the ultrasonic wave generating device 400 and/or the liquid supply device 200 for supplying washing water and/or washing liquid for washing at the connection position, the power supply 300 and/or the liquid supply device 200 for supplying washing water and/or washing liquid for washing are closer to the force application point, so that the power supply is more labor-saving and convenient to hold and move.
Preferably, the handle 100 is located between the power source 300 and the liquid supply device 200.
The washing liquid may be washing water or a mixed liquid of washing water and a washing liquid.
Compare with the ultrasonic washing device through the socket power supply, set up power 300 on ultrasonic washing device, it is more convenient to accomodate, use and carry, and the applicable range is wider in some places that are not convenient for use socket moreover very much. The power source is typically removably connected to the hand-held ultrasonic cleaning device or may be fixedly connected to the hand-held ultrasonic cleaning device.
Since the liquid supply device 200 and the power supply 300 are the two components with the largest weight in the hand-held ultrasonic washing device, if the two components are not arranged in the washing device properly, the washing device will be lifted and operated with great effort. According to the invention, the handle 100 is positioned between the liquid supply device 200 and the power supply 300, so that on one hand, the weight is distributed at two ends of the handle 100, the operation and the use are more labor-saving, and on the other hand, the whole washing device is stressed in a balanced manner and is not easy to incline or even topple. Because if the ultrasonic washing device inclines, a part of the vibration end can be contacted with the clothes, and the other end is not contacted with the clothes, the contact area of the vibration end and the clothes is reduced, the washing effect is seriously influenced, if the vibration end is balanced by artificial force application, the vibration end is too tired, and discomfort can be caused by vibration.
Wherein, the handle 100 and the body 1 can be detachably connected or integrally formed; the power source 300 may be a removable battery, which may be a rechargeable battery 300 or a dry cell battery 300.
Further, the handle 100 has a first end 101 and a second end 102 connected to the body 1, the first end 101 is provided with a first mounting portion for mounting the liquid supply device 200, the second end 102 is provided with a second mounting portion for mounting a battery, the first mounting portion is assembled with the liquid supply device 200, the second mounting portion is assembled with the battery, and the liquid supply device 200 and the battery are mounted on the handle 100.
By providing the first mounting portion and the second mounting portion, the liquid supply device 200 and the battery are disposed on the handle 100, so that lifting is more labor-saving, and direction switching is more convenient.
Further, the first mounting portion is a first cavity 106-1 disposed in the first end 101 of the handle 100, the second mounting portion is a second cavity 107-1 disposed in the second end 102 of the handle 100, the first cavity 106-1 and the second cavity 107-1 each have an opening through which the liquid supply device 200 enters the first cavity 106-1 and is assembled with the first cavity 106-1, and the battery 300 enters the second cavity 107-1 through the opening and is assembled with the second cavity 107-1.
The liquid supply device 200 is accommodated in the first cavity 106-1 through the assembly of the liquid supply device 200 and the first cavity 106-1, and the battery is accommodated in the second cavity 107-1 through the assembly of the battery and the second cavity 107-1, so that the installation and the fixation are realized on one hand, and the battery 300 and the liquid supply device 200 are protected on the other hand.
Further, the liquid supply device 200 is clamped with the first cavity 106-1, and the battery 300 is clamped with the second cavity 107-1. Of course, a rotatable connection, such as a hinge, may be used.
Further, a cover 108 is provided on the opening to close the opening. The cover 108 is detachably connected to the opening, and may be screwed, hinged or clamped.
Further, a communication port 110 communicated with the liquid supply device 200 is arranged in the first cavity 106-1, a connector 109 electrically connected with a power supply is arranged in the second cavity 107-1, and when a battery is inserted, an electrode of the battery 300 is in contact conduction with the connector 109.
Further, the lower portion of the second cavity 107-1 is provided with a control device 301, and the control device 301 is electrically connected with the connector 109.
The control device and the liquid supply device are separately arranged, so that circuit damage caused by liquid leakage is reduced.
Further, the liquid supply device 200 includes a liquid storage tank 201 for containing washing liquid and a liquid supply pipeline 202 for discharging liquid in the liquid storage tank 201, a liquid inlet end of the liquid supply pipeline 202 is communicated with the liquid storage tank 201, and a liquid outlet end is arranged near the ultrasonic wave generation device 400.
Specifically, the communication port 110 has an upper end connected to the liquid outlet 2 of the liquid storage tank 201 and a lower end connected to the liquid inlet end of the liquid supply line 202, and communicates the liquid supply line 202 with the liquid storage tank 201.
Specifically, the handle 100 includes a hand-held lever 111 for holding, a first connecting arm 106 and a second connecting arm 107, both ends of the hand-held lever 111 are connected to the body 1 through the first connecting arm 106 and the second connecting arm 107, the first mounting portion is provided on the first connecting arm 106, and the second mounting portion is provided on the second connecting arm 107.
As shown in fig. 1, the first cavity 106-1 is disposed in the first connecting arm 106, the second cavity 107-1 is disposed in the second connecting arm 107, the first cavity 106-1 and the second cavity 107-1 both have upward openings, the liquid storage tank 201 passes through the openings and enters the first cavity 106-1, the batteries pass through the openings and enter the second cavity 107-1 from top to bottom, the liquid storage tank 201 and the batteries are accommodated in the cavities, and the openings are sealed by the cover 108, so that the appearance is more attractive.
Further, the liquid supply device 200 is assembled with the first mounting portion, and the axis 103 of the hand-held rod 111 passes through at least a portion of the liquid supply device 200.
Specifically, the tank 201 engages the first cavity 106-1 and the axis 103 of the hand-held lever 111 passes through at least a portion of the tank 201.
This configuration brings the axis 103 of the hand-held lever 111 closer to the center of gravity of the tank 201, making it more labor-efficient for the user to move, rotate and lift the ultrasonic cleaning apparatus when in use.
Further, the battery 300 is fitted with the second mounting portion, and the axis 103 of the hand-held lever 111 passes through at least a part of the battery 300.
Specifically, after battery 300 is opened into second cavity 107-1, battery 300 is engaged with second cavity 107-1, and battery 300 is mounted in second connecting arm 107, and axis 103 of hand-held lever 111 passes through at least a portion of battery 300.
This configuration brings the axis 103 of the hand-held lever 111 closer to the center of gravity of the battery 300, making it more labor-efficient for the user to move, rotate and lift the ultrasonic cleaning apparatus during use.
The ultrasonic wave generating device 400 has a vibration end generating ultrasonic waves, and the vibration end of the ultrasonic wave generating device is disposed away from the handle 100.
Further, the ultrasonic wave generating device 400 is disposed away from the handle 100. Since the vibration generated by the vibration part of the ultrasonic generator 400 is large and may cause discomfort when being held in the hand for a long time, the vibration of the user is reduced by disposing the ultrasonic generator 400 away from the handle 100, and the use is more comfortable.
Further, the ultrasonic wave generating device 400 may be disposed away from the handle 100 in a horizontal direction, or may be disposed away from the handle 100 in a vertical direction. However, if the ultrasonic washing device is far from the handle 100 in the horizontal direction, the user needs to hold the ultrasonic washing device all the time, which is hard, and if the ultrasonic washing device is far from the handle 100 in the vertical direction, the ultrasonic washing device can be directly placed on the horizontally paved clothes to be washed, so that the use is more convenient.
Further, the handle 100, the liquid supply device 200 and the power supply are all arranged on the upper portion of the body 1, and the ultrasonic wave generating device is arranged on the lower portion of the body 1.
According to the structure of the invention, a user only needs to place the ultrasonic washing device at the part to be washed of clothes without holding the ultrasonic washing device for a long time, and the ultrasonic washing device can be directly moved when the part to be washed needs to be replaced, so that the ultrasonic washing device is convenient to use and move due to the structure.
Further, the ultrasonic wave generator 400 includes a vibration end, and the vibration end vibrates to generate ultrasonic waves, which is an aspect of the ultrasonic cleaning principle and structure and is not a main point of the present invention, and therefore redundant description is not repeated. Since the vibration end is immersed in water to transmit ultrasonic waves in the water, the energy of the ultrasonic waves is easily absorbed by soft clothes, and the cleaning energy is reduced, the clothes to be cleaned are contacted with the vibration end of the ultrasonic wave generating device 400 during the washing, and the washing effect is improved.
The ultrasonic wave generating device 400 comprises an ultrasonic wave generator 401 and an ultrasonic wave vibrator 402, wherein the ultrasonic wave vibrator 402 forms an ultrasonic wave vibration end, and the ultrasonic wave vibrator 402 is electrically connected with the ultrasonic wave generator 401.
The number of the ultrasonic vibrators 402 may be plural, and the plural ultrasonic vibrators 402 are arranged in a staggered manner to form a resonance surface, thereby increasing the washing area.
Further, the gravity centers of the liquid supply device 200 and the battery 300 are equally high in the vertical direction, and the axis 103 of the handle 100 penetrates through the gravity centers of the liquid supply device 200 and the battery 300, so that the arrangement mode is more labor-saving for users to use.
Example two
As shown in fig. 3-4, the present embodiment is different from the first embodiment in that the handle 100 is fixed on the outer wall of the body 1 and located at the upper part of the body 1, and the handle 100 is integrally formed with the body 1 or detachably connected.
The detachable connection is, for example, a handle 100 comprising a hand-held rod and a mounting arm 104 disposed at the lower part of the hand-held rod, wherein the upper end of the mounting arm 104 is integrally formed with the hand-held rod or detachably connected thereto, and the lower end is detachably connected to the body 1, preferably by a screw, to fix the handle 100 to the body 1.
The first end 101 of the handheld rod 111 is provided with a first mounting portion for mounting the liquid storage box 201, the liquid storage box 201 is assembled with the first mounting portion to fix the liquid storage box 201 on the handle 100, the second end 102 is provided with a second mounting portion for mounting the battery 300, and the battery 300 is assembled with the second mounting portion to fix the battery 300 on the second mounting portion.
The first installation part comprises a first installation plate 101-1, two ends of the first installation plate 101-1 extend in the direction away from the handle 100 to form a first clamping plate 101-2, namely the first clamping plate 101-2 and the first installation plate 101-1 jointly form the first installation part, the liquid storage box 201 is clamped on the first installation part from top to bottom, the liquid storage box 201 is clamped on the handle 100, the first clamping plate 101-2 is an arc-shaped plate, a water tank is surrounded inside the first clamping plate, the fixing is firmer, and the liquid storage box 201 is prevented from being loosened due to vibration.
The bottom wall of the liquid storage tank 201 is provided with a liquid outlet 201-1, and the water inlet end of the liquid supply pipeline 202 extends out of the body 1 to be assembled with the liquid outlet 201-1, so that water can be discharged through the drainage pipeline to soak clothes.
Furthermore, a clamp is arranged between the liquid supply pipeline 202 and the liquid storage tank 201, and the water inlet end of the liquid supply pipeline 202 is tightly pressed with the liquid outlet 201-1.
Further, the card and the member are a snap.
The second mounting portion comprises a second mounting plate 102-1, two ends of the second mounting plate 102-1 extend in a direction away from the handle 100 to form a second clamping plate 102-2, the second clamping plate 102-2 and the second mounting plate 102-1 jointly form the second mounting portion, and the battery 300 is clamped on the handle 100 from top to bottom in the second mounting portion.
When charging is required, the battery 300 is removed from the handle 100, moved to a convenient position for charging, and then inserted into the handle 100 to electrically connect the battery 300 to the ultrasonic generator 400.
Further, a control switch 105 is disposed on a side of the handle 100 close to the body 1, and the control switch 105 controls the on/off of the ultrasonic wave generating device 400. The control switch 105 is preferably a press switch, when the control switch 105 is turned on, the ultrasonic generator 400 is turned on by pressing the control switch 105, when the control switch 105 is turned off, the control switch 105 is pressed to turn off, because the control switch 105 is arranged on the hand-held rod 111 close to one side of the body 1, when the control switch 105 is turned on, the washing device can be lifted slightly, and the control switch 105 is turned on by using the weight of the washing device, so that the use is convenient and labor-saving. The pressing switch has one pressing end near the heavier one of the washing device and the battery.
As shown in fig. 3, in general, the battery 300 has a heavier weight than the tank 201, the thumb is positioned toward the battery (right side in fig. 3), and the side of the push switch 105 higher is close to the side of the battery 300 (right side in fig. 3) for easy pushing.
The liquid supply pipeline 202 is provided with a control valve 202-3, when the clothes need to be soaked, the control valve 202-3 is opened, and the control valve 202-3 is closed after the clothes are soaked. The control valve 202-3 is preferably an electromagnetic valve, a control device 301 is disposed in the body 1 or the handle 100, the electromagnetic valve, the controller and the battery 300 are electrically connected in sequence, and the controller controls the opening/closing of the electromagnetic valve.
The ultrasonic generator 400 is disposed in the body 1, or disposed at the lower part of the body 1, the body 1 has a bottom wall 3, and the vibration end of the ultrasonic generator 400 protrudes from the bottom wall 3 of the body 1. That is, the ultrasonic transducer 402 is provided in such a manner that the end thereof protrudes from the bottom wall 3 of the body 1, and the vibration end is spaced apart from the handle 100, thereby providing a small vibration.
Further, a liquid outlet 2 is arranged on the bottom wall of the body 1, and the water outlet end of the liquid supply pipeline 202 is communicated with the liquid outlet 2, so that the washing water is discharged to the clothes to be washed through the liquid outlet 2.
The center of gravity of the liquid storage tank 201 and the center of gravity of the battery 300 are both located on the axis 103, so that when the washing device is lifted up, the liquid storage tank 201 and the battery 300 are both located on two sides of the handle 100, torsion cannot be generated, and labor is saved.
EXAMPLE III
As shown in fig. 1 to 4, based on the first and second embodiments, the handheld ultrasonic washing device of the present embodiment further includes a detergent dispensing device for dispensing detergent onto the laundry, the detergent dispensing device being adjacent to the one of the liquid supply device 200 and the battery 300 which is smaller in weight.
Since the weight of the detergent dispenser is small relative to the battery 300 and the liquid supply device 200, but it is also a heavy component of the ultrasonic washing apparatus, the detergent dispenser is disposed adjacent to the light component of the liquid supply device 200 and the battery 300, so that the components with heavy weight are uniformly distributed on the washing apparatus.
Specifically, since the liquid supply device 200 only needs to wet the clothes, the water storage capacity of the liquid storage tank 201 in the liquid supply device 200 is not large, the battery 300 needs to supply power to the ultrasonic wave generating device 400, and the weight of the battery 300 is large, the detergent dispensing device is generally disposed near one side of the liquid supply device 200.
If a large amount of water needs to be stored in the tank 201 as needed, it is also possible that the weight of the tank exceeds the weight of the battery, in which case the arrangement is still made according to the above rule, making the ultrasonic washing apparatus more labor-saving.
The detergent putting device is preferably arranged between the liquid supply device 200 and the battery 300, so that the common gravity center of the battery, the liquid storage tank and the detergent putting device is closer to the center of the ultrasonic washing device, and the ultrasonic generating device 400 is convenient to arrange subsequently.
The detergent feeding device is arranged between the liquid supply device 200 and the ultrasonic wave generating device 400. Such an arrangement makes the detergent dispenser, the ultrasonic wave generator 400, the liquid supply device 200, and the battery 300 more concentrated, and makes the center of gravity of the washing apparatus closer to the center of gravity, thereby making the center of gravity more stable.
The detergent dispenser is preferably disposed below the liquid supply device 200.
Further, the ultrasonic generator 400 is close to the common center of gravity of the handle 100, the battery 300, the liquid supply device 200 and/or the detergent dispenser, so that the washing device is more stable.
Furthermore, the gravity centers of the handle 100, the liquid supply device 200, the battery 300 and/or the detergent feeding device are vertically collinear with the ultrasonic wave generating device 400, so that the gravity center of the washing device in the horizontal direction is not deviated, the shaking caused by the vibration of the washing device is reduced, the stability of the washing device is improved, and the ultrasonic washing device is not easy to incline.
Further, the detergent dispensing device includes a detergent box 500 for containing detergent, and the detergent box 500 is communicated with the liquid supply pipeline 202.
The detergent in the detergent box 500 flows through the liquid supply line 202 to the laundry.
Further, the detergent box 500 is disposed on the liquid supply line 202 and detachably connected to the liquid supply line 202.
Specifically, the liquid supply line 202 includes a first line section 202-1 and a second line section 202-2, an upper end of the first line section 202-1 is communicated with the liquid storage tank 201 to discharge the water in the liquid storage tank 201 into the liquid supply line 202, a lower end of the first line section 202-1 is communicated with the detergent box 500, an upper end of the second line section 202-2 is communicated with a bottom wall of the detergent box 500, a lower end is communicated with the liquid outlet 2 on the body 1 to flush the detergent out by the water in the liquid storage tank, and the detergent box 500 has a mixing function.
The lower end of the first pipe section 202-1 is inserted into the detergent box 500, the upper end of the second pipe section 202-2 is inserted into the bottom wall of the detergent box 500, and the detergent box 500 is disposed on the liquid supply pipe 202 and is communicated with the liquid supply pipe 202.
The second pipe section may be provided with a plurality of second pipe ends, the liquid outlets 2 correspond to the water outlet ends of the second pipe section 202-2 one by one, and the plurality of liquid outlets 2 are disposed around the ultrasonic wave generating device 400 to uniformly distribute the washing water flowing out from the second pipe section 202-2 on the laundry.
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.