KR101661108B1 - Sonic vibration tooth washer - Google Patents

Sonic vibration tooth washer Download PDF

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Publication number
KR101661108B1
KR101661108B1 KR1020160062685A KR20160062685A KR101661108B1 KR 101661108 B1 KR101661108 B1 KR 101661108B1 KR 1020160062685 A KR1020160062685 A KR 1020160062685A KR 20160062685 A KR20160062685 A KR 20160062685A KR 101661108 B1 KR101661108 B1 KR 101661108B1
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KR
South Korea
Prior art keywords
housing
bristles
gap adjusting
tooth
adjusting member
Prior art date
Application number
KR1020160062685A
Other languages
Korean (ko)
Inventor
안택호
Original Assignee
안택호
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Priority to KR1020160062685A priority Critical patent/KR101661108B1/en
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Publication of KR101661108B1 publication Critical patent/KR101661108B1/en

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    • AHUMAN NECESSITIES
    • A46BRUSHWARE
    • A46BBRUSHES
    • A46B9/00Arrangements of the bristles in the brush body
    • A46B9/02Position or arrangement of bristles in relation to surface of the brush body, e.g. inclined, in rows, in groups
    • A46B9/04Arranged like in or for toothbrushes
    • A46B9/045Arranged like in or for toothbrushes specially adapted for cleaning a plurality of tooth surfaces simultaneously
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C17/00Devices for cleaning, polishing, rinsing or drying teeth, teeth cavities or prostheses; Saliva removers; Dental appliances for receiving spittle
    • A61C17/16Power-driven cleaning or polishing devices
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C17/00Devices for cleaning, polishing, rinsing or drying teeth, teeth cavities or prostheses; Saliva removers; Dental appliances for receiving spittle
    • A61C17/16Power-driven cleaning or polishing devices
    • A61C17/20Power-driven cleaning or polishing devices using ultrasonics
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C17/00Devices for cleaning, polishing, rinsing or drying teeth, teeth cavities or prostheses; Saliva removers; Dental appliances for receiving spittle
    • A61C17/16Power-driven cleaning or polishing devices
    • A61C17/22Power-driven cleaning or polishing devices with brushes, cushions, cups, or the like
    • A61C17/222Brush body details, e.g. the shape thereof or connection to handle
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C17/00Devices for cleaning, polishing, rinsing or drying teeth, teeth cavities or prostheses; Saliva removers; Dental appliances for receiving spittle
    • A61C17/16Power-driven cleaning or polishing devices
    • A61C17/22Power-driven cleaning or polishing devices with brushes, cushions, cups, or the like
    • A61C17/228Self-contained intraoral toothbrush, e.g. mouth-guard toothbrush without handle

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  • Health & Medical Sciences (AREA)
  • Dentistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Epidemiology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Brushes (AREA)

Abstract

[0001] The present invention relates to a sonic vibrating tooth cleaner, and more particularly, to a sonic vibrating tooth cleaner having a housing having a tooth insertion groove for insertion of a user's tooth, bristles in a tooth insertion groove, a space adjusting member groove formed in the housing, And a pair of spacing adjusting members each having a hinge member at an intersecting point, the actuating member and the actuating member adjusting the distance between the pair of spacing adjusting members and the spacing adjusting member, The present invention relates to a sonic vibrating tooth cleaner which is adjustable in accordance with a user's mouth structure and is easy to replace a toothbrush when a bristles are worn.

Description

{Sonic vibration tooth washer}

The present invention relates to a sonic vibrating tooth cleaner, which is configured as a mouthpiece type and vibrates a bristles located at a portion where a tooth is inserted, thereby cleaning a user's teeth and providing a mouthpiece- The present invention relates to a sonic vibrating tooth cleaner having an effect of facilitating the replacement of bristles when the bristles are worn by modifying the bristles so that they can be detachably attached to the mouthpiece.

In order to maintain the dental health of a person, it is preferable to remove foreign substances between the teeth through the gargle and remove germs in the mouth.

However, trauma patients or persons with disabilities who are physically uncomfortable can not use these brushes alone, and experience the inconvenience of being assisted by others.

Therefore, various types of tooth cleaners have been developed for those who can not brush their teeth alone.

A conventional tooth cleaner includes a mouthpiece to which a user's teeth can be inserted and a handle is protruded in front of the mouthpiece. The mouthpiece is provided with bristles at a portion where teeth are inserted, So that the bristles provided on the mouthpiece are operated.

When the user inserts the tooth into the tooth cleaner configured as a mouthpiece type and operates the operation switch provided on the handle, the bristles provided on the mouthpiece are configured to remove foreign substances between the user's teeth through vibration or rotation.

The following are typical prior arts related to a conventional tooth cleaner using sound waves.

Korean Patent Registration No. 10-1495238 discloses a personalized toothbrush comprising a tray having an insertion groove into which a tooth is inserted and having a bristles formed on an inner surface of the insertion groove, an ultrasonic wave generating unit provided inside the insertion groove, Off switch and a power supply for supplying power to the ultrasonic generator when the on-off switch is turned on, one end of the handle connected to the ultrasonic generator of the handle, and the other end of the handle connected to the outer surface of the tray And the ultrasonic vibration is transmitted to the tray through the connection portion, and the bristles formed in the insertion groove by the vibration transmitted thereto transmit the vibration of the bristles The present invention provides a personalized toothbrush which is capable of brushing.

Korean Patent Laid-Open Publication No. 10-2011-0015097 discloses an invention relating to a toothbrush double-sided brush device, in which a brush is provided on an upper housing and a lower housing of a mouthpiece shape, and the front and back surfaces of the upper and lower teeth are automatically The present invention provides a brush device for a tooth configured to be cleaned.

However, in the customized toothbrush of Korean Patent Registration No. 10-1495238, since the tray portion is formed in a fixed form, in order to use the customized toothbrush according to the size of the user's teeth, it is necessary to first form the tray portion according to the size of the user's teeth .

In addition, when the mouthpiece is broken or the device is broken, a process of molding the mouthpiece to the user is required. When the user is a child, the mouth structure changes according to the growth of the mouthpiece. Accordingly, Productivity and high maintenance cost are added, and the bristles provided in the tray are formed integrally with the tray, so that when the bristles are worn out for a long period of time, the entire tray has to be replaced.

Korean Patent Laid-Open Publication No. 10-2011-0015097 discloses a double-sided brush device for a tooth, which can adjust the position of a housing through a stretching part and an adjusting member according to a size of a user's teeth, There is a disadvantage that hands are uncomfortable because of the property of returning to the original position when the force of hand is loosened due to the pressing force by applying the force to the adjusting member.

In addition, the operation principle of the bristles provided for the cleaning of the teeth is the rotation of the motor by the rotation of the motor, and there is a risk of failure due to the breakage and wear of the gear part provided therein and the oil or grease, There is a risk of leakage in the mouth and the replacement of the bristles is inconvenient.

Therefore, it is possible to adjust the mouthpiece-shaped housing into which the user's tooth is inserted according to the structure of the user's tooth structure, so that it is excellent in productivity and is excellent in productivity, and it is convenient to replace worn bristles according to long- It became necessary to develop a tooth cleaner without the risk of leakage of grease.

Korean Registered Patent No. 10-1495238 (Feb. Korean Patent Publication No. 10-2011-0015097 (Feb. 15, 2011)

The ultrasonic vibrating tooth cleaner according to the present invention is a technique for solving the above problems in the related art. In the prior art, the mouthpiece-type housing into which the teeth are inserted is fixed, So that the productivity can be reduced and the bristles provided on the inside can not be replaced. Therefore, when the bristles are worn out, it is required to replace the molding die entirely so that the maintenance cost is required to be high. In order to operate the bristles, The oil or grease of the lubricant may leak to the user's mouth,

In order to solve the problem, the present invention provides a sonic vibrating tooth cleaner which can adjust the structure of the mouthpiece according to the oral structure of the user and can easily replace the bristles and reduce the risk of leakage of oil or grease into the user's mouth. The main purpose is to provide.

The present invention provides a toothbrush comprising a housing having a tooth insertion groove for inserting a user's tooth in order to realize the above-described purpose, a tooth insertion groove for inserting a user's tooth, A pair of spacing adjusting member grooves are formed in the housing, a pair of the pair of spacing adjusting member grooves are formed in the groove, the pair of protruding portions are formed so as to intersect with each other, An operating member for adjusting an interval between the gap adjusting member and the gap adjusting member, and a handle provided inside the operating member.

Further, the bristles provided in the housing are provided with a plurality of bristles to provide a sonic vibrating tooth cleaner comprising one toothbrush module for easy replacement.

In the ultrasonic vibration washing machine according to the present invention as described above, the gap between both ends of the housing can be adjusted by inserting a gap adjusting member into the mouthpiece-shaped housing, so that the shape of the housing can be adjusted according to the user's oral cavity structure The bristles can be detachably attached by a separate toothbrush module, so that it is convenient to replace the bristles when worn. By cleaning the bristles by vibrating them, the structure of the apparatus is simplified and a gear device is provided inside the mouthpiece for driving the bristles The risk of oil or grease leaking due to lack thereof is reduced.

1 is a perspective view of a preferred sonic vibrating tooth cleaner according to a first embodiment of the present invention;
FIG. 2 is an exploded perspective view of a preferred sonic vibrating tooth cleaner according to the first embodiment of the present invention; FIG.
3 is a plan view showing an operation state of a preferable gap adjusting member and a gap adjusting member according to the first embodiment of the present invention;
FIG. 4 is a partially enlarged view of a preferred rotation protrusion and supporting protrusion according to the first embodiment of the present invention; FIG.
5 is an exploded perspective view of a preferred operating member according to the first embodiment of the present invention.
6 is an exploded perspective view of a sonic vibrating tooth cleaner according to a second embodiment of the present invention.
FIG. 7 is an internal plan view of a sonic vibrating tooth cleaner according to a second embodiment of the present invention; FIG.

The present invention relates to a sonic vibrating tooth cleaner, which comprises a tooth insertion groove (13) for inserting a user's tooth for insertion of a user's tooth, a housing (10) having a toothbrush (14) And a space adjusting member groove 17 is formed in the housing 10 so as to be inserted into the space adjusting member groove 17 and partly protruding to one side of the housing 10, A pair of spacing adjusting members 30 each having a hinge member 31 at an intersecting point and an operating member 40 for adjusting the distance between the spacing adjusting members 30 and an operating member 40 And a handle 20 provided to be inserted into the inside of the apparatus.

The bristles (14) provided in the housing (10) are composed of a plurality of bristles (14) and a toothbrush module (15) for easy exchange.

The present invention has been made in view of the above-described problems, and it is an object of the present invention to provide a toothbrush device and a toothbrush device, which are low in productivity due to individual molding of a mouthpiece of a tooth cleaner, Structure and discomfort when adjusting the spacing between both ends of the mouthpiece.

DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, a first embodiment of an ultrasonic vibration washing machine according to the present invention will be described in detail with reference to the accompanying drawings.

First, in the housing 10 of the present invention,

As shown in FIG. 1, a tooth insertion groove 13 having a plurality of bristles 14 on at least one surface of a user's tooth is inserted and abutted with a tooth is formed in a U-shape .

Inside the housing 10, a gap adjusting member groove 17 into which a gap adjusting member 30 described later in detail may be inserted may be formed.

More specifically, the housing 10 may include an upper housing 11 and a lower housing 12, and the upper housing 11 may include a horseshoe mouthpiece having a shape similar to the teeth And a U-shaped outer circumference, an inner circumference and a bottom, so that the outer and inner surfaces and the bottom surface of the tooth are enclosed when the tooth is inserted, and both ends are opened to facilitate insertion of the molar teeth.

The tooth insertion groove 13 has a plurality of bristles 14 on at least one surface contacting the tooth, that is, a surface contacting the teeth of the outer circumference, the inner circumference and the bottom, so that the pressure acts on the tooth direction of the user , The bristles 14 may be configured to rotate the user's teeth by rotating or vibrating, but more preferably, configured to clean the user's teeth through vibration.

At this time, the structure for vibrating the bristles 14 may include a device for generating vibration, such as the ultrasonic generator 16 described in detail later.

The bristles (14) are configured to be in contact with the teeth through appropriate pressure for smooth cleaning of the teeth. For this purpose, the bristles (14) are configured such that the lengths of the bristles Or the distance between the outer circumference and the inner circumference of the portion where the front teeth, canines and molar teeth of the upper housing 11 are located may be different from each other.

That is, a plurality of the bristles 14 may be provided, and the bristles 14 may have different lengths, or may be constructed such that the bristles 14 are brought into contact with the user's teeth through appropriate pressure based on the structural characteristics of the tooth- .

2, a lower housing 12 is attached to the lower surface of the upper housing 11, and a gap between the upper housing 11 and the lower housing 12 A gap adjusting member groove 17 into which the member 30 can be inserted can be formed.

At this time, the gap adjusting member groove 17 is formed to extend from a position spaced apart from the left end of the lower housing 12 by a predetermined distance, so that the gap adjusting member 30 is inserted and the right side is symmetrical with the left side So that the gap adjusting members 30 can be inserted into a pair.

That is, the housing 10 is configured such that the upper housing 11 configured to insert teeth and the lower housing 12, in which the gap adjusting member 30 is located, are coupled together.

2, the bristles 14 provided in the housing 10 may include a plurality of bristles 14 to facilitate the exchange of toothbrushes.

More specifically, the upper housing 11 is formed in a U-shape in which teeth of the user are inserted into the tooth insertion groove 13 along the outer shape and both ends thereof are opened. In the tooth insertion groove 13, A toothbrush module 15 having the same shape as the upper housing 11 and having a plurality of bristles 14 on one or more surfaces abutting teeth may be inserted.

That is, a plurality of bristles 14 are not integrally formed in the tooth insertion groove 13 but can be inserted into the tooth insertion groove 13 by forming a separate toothbrush module 15, 14 are worn, only the toothbrush module 15 can be replaced, and the maintenance cost is reduced.

In addition, since the toothbrush module 15 is separately configured, the length and the elasticity of the bristles 14 provided on the toothbrush module 15 can be variously configured. Therefore, according to the user's preference, (15) can be purchased and installed, so that it is possible to apply appropriate pressure to the user's teeth.

Therefore, since the toothbrush module 15 is separately constructed from the upper housing 11, it is difficult to connect a mechanical device to the bristles 14, so that the bristles 14 are configured to clean teeth through vibration, A configuration of a device for vibrating the bristles 14 is required.

2, the housing 10 is configured such that the ultrasonic wave generator 16 is positioned between the upper housing 11 and the lower housing 12, and the ultrasonic wave generator 16 is inserted into the upper housing 11, To the toothbrush module 15 through the ultrasonic vibration, so that the bristles 14 provided on the toothbrush module 15 are vibrated to clean the user's teeth.

The ultrasonic wave generating unit 16 may include an oscillating unit that generates ultrasonic waves and oscillates the generated ultrasonic waves. The oscillating unit may be made of metal or other minerals so that the oscillation of the ultrasonic waves is sufficient. However, More preferable.

At this time, since the ultrasonic wave generator 16, the oscillating portion, and the piezoelectric ceramic are well-known techniques, detailed description thereof will be omitted in the present invention.

The ultrasonic wave generator 16 may be disposed inside the housing 10 or inside the handle 20 to transmit vibration to the gap adjusting member 30.

Although the housing 10 of the present invention is composed of the upper housing 11 and the lower housing 12, it may be formed of an elastic member made of synthetic resin such as rubber, silicone, urethane or the like, do.

Accordingly, in the injection molding of the housing 10, the gap adjusting member 30 is positioned at a position corresponding to the gap adjusting member groove 17, and the upper housing 11 and the lower housing 12 ) Without any distinction.

In addition, although the housing 10 of the present invention is configured to be capable of cleaning only one row of teeth, the tooth insertion groove 13 may be provided on both sides to simultaneously clean two teeth of the upper and lower teeth when cleaning the teeth .

Next, the gap adjusting member 30 of the present invention,

(17), and a part thereof protrudes to one side of the housing (10).

More specifically, the gap adjusting member 30 is inserted into the gap adjusting member groove 17 formed in the lower housing 12 so that the lower housing 12 is coupled with the upper housing 11, When the housing 10 is constructed, the gap adjusting member 30 is positioned inside the housing 10.

That is, the housing 10, which is formed by the coupling of the upper housing 11 and the lower housing 12, is formed of an elastic member, so that the gap adjusting member 30 inserted into the housing 10 protrudes to one side of the housing 10 So that both ends of the housing 10 are broken or opened when the position of the gap adjusting member 30 is adjusted.

Meanwhile, the gap adjusting member 30 may include a hinge member 31 at an intersecting point, and the hinge member 31 may be formed at a portion of the gap adjusting member 30 that protrudes from one side of the housing 10 to intersect with each other.

That is, the gap adjusting member 30 is configured to protrude partly out of the user's mouth when the user's teeth are inserted into the tooth insertion groove 13, and the protruding gap adjusting members 30 are configured to intersect with each other The hinge member 31 is provided at the intersecting point, and when the protruded gap adjusting member 30 is applied in the lateral direction, the same operation as the scissors is performed, so that both ends of the housing 10 are broken or opened .

In this case, when the horizontal adjustment surface of the gap adjusting member 30 is defined as the xy plane and the height direction is the z axis, the gap adjusting member 30 is provided inside the housing 10, When they are provided in pairs on a plane, interference occurs at intersections.

Therefore, as shown in FIG. 3, in order to provide the hinge member 31 at the intersection so as to perform an operation like a scissor, the distance adjusting member 30, which is formed of a pair, The thickness should be different for the z-axis.

That is, the thickness of one protruding part of the gap adjusting member 30, which is provided as a pair, is removed on the basis of the center, and the thickness of the other protruding part is removed A part of the gap adjusting member 30 protruding to one side of the housing 10 is configured such that each of the gap adjusting members 30 is half in thickness and the center plane with respect to the z axis is in contact with each other.

A part of the gap adjusting member 30 protruding to one side of the housing 10 is crossed with the center surface so that the hinge member 31 is provided at the intersection, So as to perform the same operation as the scissors.

Accordingly, the gap adjusting member 30 is formed in an arcuate shape passing through the intersection point, and is located inside the handle 20, which will be described in detail later.

In addition, the gap adjusting member 30 located inside the handle 20 is formed on the outer side surface of the opposite side, not on the center plane abutting each other, as shown in FIG. 4, And a rotation protrusion 32 for generating a protrusion in a circular shape may be formed on the cut surface. One end of a compression spring (not shown) is coupled to the rotation protrusion 32.

At this time, the rotation protrusions and the compression springs are inserted into the rotation groove 24 provided in the handle 20, and are formed in a cylindrical shape from the wall surface of the handle 20 in the rotation groove 24, And the other end of the compression spring is coupled to the projection 33 so as to assist the operation of the gap adjusting member 30.

Next, in the handle 20 of the present invention,

A pair of spacing adjusting members 30 protruding from one side of the housing 10 are inserted into the pair of spacing adjusting members 30 so that the pair of spacing adjusting members 30 are press- 40 are provided.

More specifically, a part of the pair of gap adjusting members 30 in the portion to be inserted into the handle 20 is curved and overlapped to be symmetrical to each other to form an arcuate shape at the center, Since the width of the arcuate shape changes according to the position of the operation member 40 because the operation member 40 is positioned at the center of the shape of the operation member 40, .

The lower end of the operation member 40 is slidably inserted into the guide groove 21 provided in the inside of the handle 20 and the upper end of the operation hole is slidably inserted into the sliding hole 22 And is configured to be engaged with the sliding switch 23 so that the user can operate the operating member 40 through the sliding switch 23. [

In addition, protrusions having the same size are regularly arranged on the side surface of the sliding hole 22, and an upper side surface of the operating member 40 inserted into the sliding hole 22 is operated to correspond to the protrusions The elastic member may be provided to allow the user to adjust the sliding operation of the operation member 40 step by step. Such a structure is well known in the art and will not be described in detail.

The operating member 40 is configured to be operated in a sliding manner within the handle 20 and a roller shaft 41 is vertically disposed in a direction in which the operating member 40 is in contact with the gap adjusting member 30 And an upper roller 43 and a lower roller 44 are coupled to the upper and lower ends of the roller shaft 41 so as to be rotatable through the center.

More specifically, as shown in FIG. 5, when the point of contact with the gap adjusting member 30 of the operation member 40 is referred to as a front, the front portion may be configured to have a trapezoidal shape.

At this time, since the front portion is formed in a trapezoidal shape, the upper roller 43 and the lower roller 44 are provided, and when the gap adjusting member 30 is pressed, a pair of gap adjustment It is possible to prevent the member 30 from being interfered with a part thereof.

The upper roller 43 and the lower roller 44 are formed in a trapezoidal shape so that the roller shaft hole 42 in which the roller shaft 41 is inserted is provided at the center of the front portion, The roller shaft hole 42 may be formed to have an opening smaller than the shaft diameter in the front direction so that the roller shaft 41 can be easily engaged.

This is to prevent the roller shaft 41 from being displaced by the pressing force when the operation member 40 presses the gap adjusting member 30 so that the coupling is conveniently performed, Effect.

The side surface of the operation member 40 is opened at the center so that the upper roller 43 and the lower roller 44 can be inserted and the upper roller 43 and the lower roller 44 are opened So as not to be interfered with the rotation of the disc.

That is, the upper roller 43 and the lower roller 44 configured as described above abut the arcuate side surface located at the lower end of the gap adjusting member 30, so that the operating member 40 is moved forward and backward The upper roller 43 and the lower roller 44 are configured to abut the different gap adjusting members 30 so that the forward and backward movement of the actuating member 40 of the frictional force And the backward movement can be smoothly performed.

In the meantime, since a certain space is spaced between the housing 10 and the handle 20 of the present invention, a supplementary structure such as an auxiliary cover or a bellows hose may be provided, and the ultrasonic wave generating unit Such as an electric wire connected for the operation of the handle 16 may be inserted into the interior of the auxiliary cover or the bellows hose located between the housing 10 and the handle 20.

Next, an ultrasonic vibration washing machine according to a second embodiment of the present invention will be described.

First, in the second housing 210 according to the second embodiment,

A tooth insertion groove 13 in which a user's tooth is inserted and a plurality of bristles 14 is formed is formed and an operation member hole 211 is provided on one side. More specifically, as shown in FIG. 6, The second handle 220 is provided on the front side and the operation member hole 211 is further formed on one side of the second handle 220 which is coupled with the second handle 220. [

A second gap adjusting member groove 217 is formed in the second housing 210 and a second gap adjusting member groove 217 is formed in a shape of a loop to allow the teeth of the second housing 210 (13) and has one side communicating with the operating member hole (211).

The second gap regulating member groove 217 has a second gap regulating member 230 inserted therein and the actuating member hole 211 communicates with the second gap regulating member groove 217 The second operation member 240, which will be described later in detail, is inserted into the second housing 210 to press the second gap adjusting member 230.

In order to assist and fix the rotation of the second gap adjusting member 230, a fixed hinge member 212 may be additionally formed at the lower end of the second hinge member 212. In addition, A hinge hole 213 and a rotation hinge hole 231 may be formed.

In addition, the second housing 210 is provided with a tooth insertion groove 11 in the same shape as the housing 10 so that the toothbrush module 15 can be detachably attached to the tooth insertion groove 11 .

Next, the second gap adjusting member 230,

The second gap regulating member groove 217 is formed in a pair and is formed into a half horseshoe shape in which the horseshoe is divided into left and right halves, and the oblique cut surface 232 is formed on the cut surface.

That is, the second gap adjusting member 230 is formed by a sloped cut surface 232 having a half angle of a right and a left half with respect to the center of the U-shaped housing, And the second gap adjusting members 230 are formed as a pair, so that the slanting cut surface 232 located in the second housing 210 forms a trapezoidal shape.

The pivot hinge hole 231 is located at a predetermined distance from the slanting cut surface 232 so that the second gap adjusting member 230 is inserted into the second actuating member 240 So that the distance between both ends of the second housing 210 can be adjusted.

In addition, the rotation hinge hole 231 of the second gap adjusting member 230 has the effect of supporting the rotation of the second gap adjusting member 230 by inserting the fixed hinge member 212.

Next, the second handle 220 of the present invention

And an actuating device for actuating the second gap adjusting member 230 is mounted.

Here, the operating unit refers to a configuration including the motor 224, the shaft 221, and the operation member 240.

More specifically, the second handle 220 of the present invention is configured to be coupled to one side of the second housing 210 and has a knob hole 211 corresponding to the operation member hole 211, The second actuating member 240 is configured to be operated in a sliding manner.

In addition, the second operation member 240 is formed with a screw hole 241 having a screw thread therein, and a guide hole 242 is provided separately from the screw hole 241.

The second actuating member 240 is configured to allow the screw hole 241 and the guide hole 242 to pass through the shaft 221 and the guide bar 222 provided in the second handle 220 And the shaft 221 is connected to a motor 224 provided inside the handle 20 through a coupling 223.

The shaft 221 and the guide bar 222 are provided inside the handle and connected to the inside of the second housing 210 through the operating member hole 211 of the second housing 210 And the second actuating member 240 is configured to press the second gap adjusting member 230 provided in the second housing 210 through the actuating member hole 211 according to the operation of the motor 224 do.

7, when the shaft 221 is rotated according to the rotation of the motor 224 due to the formation of the threaded hole, the second actuating member 240 is inserted into the screw hole 241 and the shaft 221 so as to push the inclined cut surface 232 of the second gap adjusting member 230.

Therefore, the forward and backward distances of the second actuating member 240 are controlled by the threads of the shaft 221, which is rotated together with the motor 224 by the motor 224, 2 intervals between both ends of the housing 210 can be finely and easily adjusted.

In addition, a structure such as a battery and a control unit for operating the motor 224 may be provided inside the second handle 220.

On the other hand, in the ultrasonic wave generator for generating vibration according to the second embodiment,

The bristles 14 are provided inside the second housing 210 so as to vibrate the bristles 14 or vibrate the bristles 14 through the shaft 221 and the second actuating member 240, 2 spacing member 230 to vibrate the bristles 14 therethrough.

As described above, the structure of the ultrasonic vibration washing machine according to the first and second embodiments of the present invention has been described. The ultrasonic vibration washing machine according to the present invention is configured to adjust the distance between both ends of the housing 10 And therefore, the same procedure as the molding of a separate oral structure is unnecessary at the time of production of the product, so that the productivity is improved.

Incidentally, although the housing 10 of the present invention is represented in such a manner that both ends are horizontally aligned in the drawing, it is preferable that the housing 10 is formed in a shape that the both ends thereof come out to the center.

The bristles 14 are not integrally formed in the tooth insertion groove 13 but are constituted by separate toothbrush modules 15 so that the brush bristles 14 are configured to be easily replaceable so that only the toothbrush module 15 It is possible to purchase and replace the toothbrush module 15, and the user can select properties, effects, and the like in purchase of the toothbrush module 15.

In addition, the operation of the bristles 14 for cleaning the teeth is not an operation due to a mechanical device, but a device using vibration, which is also helpful for smooth cleaning according to the excitation of the bristles 14 and the prevention of periodontal disease, The elimination of the mechanical structure for operation of the housing 14 has an effect of reducing the risk of leakage of grease or lubricating oil from the housing 10 to the user's mouth.

While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it is to be understood that the invention is not limited to the disclosed exemplary embodiments, but, on the contrary, But may be embodied in other forms.

100: Sound wave vibration tooth washer
10: Housing
11: upper housing 12: lower housing
13: tooth insertion groove 14: bristles
15: toothbrush module 16: ultrasonic generator
17:
20: Handle
21: guide groove 22: sliding hole
23: Sliding switch 24:
30:
31: hinge member 32:
33: support projection
40:
41: roller shaft 42: roller shaft hole
43: upper roller 44: lower roller
200: sound wave vibration tooth cleaner according to the second embodiment
210: second housing
211: actuating member hole 212: fixed hinge member
213: fixed hinge coupling groove 217: second interval adjusting member groove
220: second handle
221: shaft 222: guide bar
223: Coupling 224: Motor
230: second spacing member
231: rotation hinge hole 232: inclined cut surface
240: second operating member
241: screw hole 242: guide hole

Claims (6)

A housing (10) provided with a tooth insertion groove (13) for inserting a user 's tooth and having a bristles (14) in the tooth insertion groove (13);
Inside the housing 10, a gap adjusting member groove 17 is formed, a portion of the gap adjusting member groove 17 is protruded to one side of the housing 10, A pair of spacing members (30) having hinge members (31) at crossing points;
An operation member (40) for adjusting the interval of the gap adjusting member (30);
And a handle (20) provided to allow the operation member (40) to be inserted into the interior.
The method according to claim 1,
The bristles (14) provided in the housing (10)
And a toothbrush module (15) provided with a plurality of bristles (14) for easy exchange.
The method according to claim 1,
In the lower end of the tooth insertion groove (13) of the housing (10)
The ultrasonic vibration generator (16) according to claim 1, further comprising an ultrasonic wave generator (16).
The method according to claim 1,
The operation member (40)
A roller shaft 41 is vertically engageable with the gap adjusting member 30,
Wherein the upper roller (43) and the lower roller (44) are rotatably coupled to the roller shaft (41) so as to be slidably operated within the handle (20).
A second housing (210) having a tooth insertion groove (13) for inserting a user 's tooth and having a bristles (14) in the tooth insertion groove (13);
A second gap adjusting member groove 217 is formed in the second housing 210 and a pair of second gap adjusting members 230 are provided in the second gap adjusting member groove 217;
A second handle 220 having an actuating device for actuating the second gap adjusting member 230; And an ultrasonic vibrator for vibrating the ultrasonic vibrator.
6. The method of claim 5,
The second gap adjusting member (230)
And the shaft (221) slides the second actuating member (240) by the rotation of the motor (224) to adjust the gap.
KR1020160062685A 2016-05-23 2016-05-23 Sonic vibration tooth washer KR101661108B1 (en)

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CN108542532A (en) * 2018-05-17 2018-09-18 广东小天才科技有限公司 A kind of intelligent toothbrush
KR102129118B1 (en) 2019-03-22 2020-07-01 김경수 oral insertable electric toothbrush
KR20220078877A (en) * 2020-12-04 2022-06-13 웰스메디텍 주식회사 Mouthpiece Structure For Treatment Using The Light
KR102489670B1 (en) * 2021-09-06 2023-01-18 웰스메디텍 주식회사 Easy-to-clean mouthpiece structure

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KR20110015097A (en) 2009-08-07 2011-02-15 이승호 Brush apparatus of double side for brushing teeth
KR101365381B1 (en) * 2013-06-10 2014-02-20 김기수 Vibration clip device for orthodontic
KR101431098B1 (en) * 2013-11-18 2014-08-21 유희장 Mouthpiece type electric toothbrush
JP2015500729A (en) * 2011-12-22 2015-01-08 コーニンクレッカ フィリップス エヌ ヴェ Mouthpiece for cleaning teeth with adjustable arc length and / or arc width
KR101495238B1 (en) 2013-10-16 2015-02-25 이상일 Personalized toothbrush

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KR20110015097A (en) 2009-08-07 2011-02-15 이승호 Brush apparatus of double side for brushing teeth
JP2015500729A (en) * 2011-12-22 2015-01-08 コーニンクレッカ フィリップス エヌ ヴェ Mouthpiece for cleaning teeth with adjustable arc length and / or arc width
KR101365381B1 (en) * 2013-06-10 2014-02-20 김기수 Vibration clip device for orthodontic
KR101495238B1 (en) 2013-10-16 2015-02-25 이상일 Personalized toothbrush
KR101431098B1 (en) * 2013-11-18 2014-08-21 유희장 Mouthpiece type electric toothbrush

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108542532A (en) * 2018-05-17 2018-09-18 广东小天才科技有限公司 A kind of intelligent toothbrush
KR102129118B1 (en) 2019-03-22 2020-07-01 김경수 oral insertable electric toothbrush
KR20220078877A (en) * 2020-12-04 2022-06-13 웰스메디텍 주식회사 Mouthpiece Structure For Treatment Using The Light
KR102456141B1 (en) * 2020-12-04 2022-10-18 웰스메디텍 주식회사 Mouthpiece Structure For Treatment Using The Light
KR102489670B1 (en) * 2021-09-06 2023-01-18 웰스메디텍 주식회사 Easy-to-clean mouthpiece structure

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