The present disclosure relates to a technical field of nail polishers, and in particular to a nail polisher with UV lamp.
The nail polisher is a product used to polish nails. The nail polisher drives the transmission shaft to rotate through the rotation of the motor, thereby driving the rotor to rotate. The sandpaper and other materials attached to the turner remove dirt and grease from the nail surface, making the nail surface smooth and adhesion strengthened. Traditional nail polishers use mechanical gear changes to adjust the speed.
In the existing technology, the traditional nail polisher only supports the polishing of nails. However, in actual use, the nail polisher is used to polish nails for manicure. To do manicure, you need UV lamp for drying. Traditional nail polisher requires additional purchase of UV lamp for use, which is difficult to meet the actual needs of users. Secondly, due to its large area, traditional manicure lamps also bake the skin other than the nails at the same time, which can easily cause surface damage to the skin on the back of the hand. Therefore, avoiding damage to the skin on the back of the hands and being able to complete the entire manicure process with one product have become technical issues that need to be solved urgently.
In order to solve a technical problem that a single device being unable to complete the manicure process alone, increasing costs, and causing damage to the skin on the back of the hands; the present disclosure provides the nail polisher with UV lamp, comprising: a shell; a nail polishing assembly; a motor; a UV lamp assembly; a PCB board; a power supply assembly; wherein the shell is provided with an accommodation cavity, and both ends of the shell are respectively provided with a first through hole and a second through hole communicating with the accommodation cavity; the nail polishing assembly comprises a transmission mechanism installed in the accommodation cavity, and a polishing head that penetrates the first through hole and is detachably connected to the output end of the transmission mechanism; the motor is installed in the accommodation cavity, the output end of the motor is connected to the transmission mechanism, and the motor is used to drive the transmission mechanism to rotate; the UV lamp assembly is provided in the accommodation cavity and close to the second through hole for curing nail polish; the PCB board is arranged in the accommodation cavity and is electrically connected to the motor; the power supply assembly is provided on the side of the PCB board for supplying energy to the internal structure of the shell.
Furthermore, the nail polisher also comprises a stepless speed control component, and the stepless speed control component comprises a potentiometer; the potentiometer is arranged on the side of the PCB board and is in close contact with the PCB board; a roller is rotatably connected to the power output shaft of the potentiometer, part of the rollers penetrates the shell and is arranged outside the shell.
Furthermore, the transmission mechanism comprises a main shaft, and the outside of the main shaft is engaged with the inner wall of the shell; the main shaft has a cavity connected inside and outside, and a rotating shaft body is installed in the cavity.
Furthermore, the rotating shaft body comprises a first rotating shaft, a second rotating shaft and a third rotating shaft, one end of the first rotating shaft is connected to the output end of the motor, and the other end is recessed with a first jack along its inner direction, the first jack is plugged into one end of the second rotating shaft; the other end of the second rotating shaft is recessed with a second jack along its inner direction; one end of the third rotating shaft is plugged into the second jack, and the other end penetrates the cavity and is located on the top of the main shaft.
Furthermore, the outside of the insertion joints of the second rotating shaft and the third rotating shaft are equipped with buffer springs.
Furthermore, a plurality of collars is sleeved on the outside of the third rotating shaft located in the cavity, the outer portions of the plurality of collars are engaged with the inner wall surface of the main shaft.
Furthermore, the UV lamp assembly comprises a TYPE-C board, a UV curing lamp and a tail cover; one side of the UV curing lamp is disposed on the side of the TYPE-C board, and the other side faces the direction of the second through hole; the tail cover is installed on the second through hole.
Furthermore, the shell comprises an upper shell, a lower shell, a pen tip shell and a decorative ring; the upper shell and the lower shell are snapped together to form a half shell; the half shell has an open end; the pen tip shell is sealed and assembled with the open end through the decorative ring.
Furthermore, the end of the half shell is the second through hole, and the end of the pen tip shell is the first through hole.
Furthermore, the outside of the half shell is provided with a UV lamp switch, a nail polishing switch and a USB socket.
The nail polisher with UV lamp provided by the present disclosure has beneficial effects as follows.
The shell is provided with the accommodation cavity, and the transmission mechanism and the polishing head detachably connected to the output end of the transmission mechanism are installed in the accommodation cavity. With the connection and cooperation between the motor output end and the transmission mechanism, the motor can drive the transmission mechanism to rotate, and then drive the polishing head to rotate, thereby polishing the nails. Secondly, there is a UV lamp assembly installed in the accommodation cavity, which can only cure the nail polish on the nails without damaging other skin on the back of the hand. The above design saves costs. There is no need for multiple devices to complete the manicure process. Only one device is needed to polish nails and cure nail polish. At the same time, safety is also guaranteed and improved.
In order to more clearly illustrate technical solutions in embodiments of the present disclosure, drawings required in description or prior art are briefly introduced below, and obviously, the drawings in the following description are merely some embodiments of the present disclosure. For a person having ordinary skill in art, other drawings may be obtained of the drawings without creative efforts.
Reference number in the figures:
In order to make objectives, technical solutions, and advantages of the present disclosure clearer, the present disclosure is further described in details below with reference to accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely used to explain the present disclosure, and are not intended to limit the present disclosure.
It should be noted that when an element is referred to as being “fixed to” or “disposed on” another element, the element may be directly on the other element or the element may be indirectly fixed to or disposed on the other element by means of a third component. When an element is referred to as being “connected to” another element, the element may be directly connected to the other element or the element may be indirectly connected to the other element by means of a third component.
In addition, the terms “first” and “second” are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating a number of indicated technical features. Thus, features defined with “first” and “second” may explicitly or implicitly include one or more of the features. In description of the present disclosure, “a plurality of” means two or more, unless specifically defined otherwise.
The present disclosure provides a nail polisher with UV lamp, which is used in nail art technology. Referring to
In the present embodiment, referring to
In the embodiment, it should be noted that the surface of the polishing head is provided with sandpaper for sanding the nail surface, and secondly, the polishing head is plugged into the transmission mechanism 2. This design facilitates the replacement of polishing heads of different sizes. Of course, in other embodiments, the end of the polishing head can also be clamped on the transmission mechanism 2. Obviously, it only needs to satisfy the requirements that the polishing head does not break away from the transmission mechanism 2 when rotating and it is convenient to replace it.
Specifically, the transmission mechanism 2 is further described. Referring to
The rotating shaft body 22 comprises a first rotating shaft 221, a second rotating shaft 222 and a third rotating shaft 223, one end of the first rotating shaft 221 is connected to the output end of the motor 3, and the other end is recessed with a first jack along its inner direction, the first jack is plugged into one end of the second rotating shaft 222; the other end of the second rotating shaft 222 is recessed with a second jack along its inner direction; one end of the third rotating shaft 223 is plugged into the second jack, and the other end penetrates the cavity and is located on the top of the main shaft 21. Obviously, the first rotating shaft 221, the second rotating shaft 222 and the third rotating shaft 223 are driven by the motor 3 to rotate synchronously.
Furthermore, in order to ensure the stability of the rotation of the first rotating shaft 221, the second rotating shaft 222 and the third rotating shaft 223, the outside of the insertion joints of the second rotating shaft 222 and the third rotating shaft 223 are equipped with buffer springs 23 to reduce the impact of vibration. Secondly, in order to further ensure the stability of the rotation of the third rotating shaft 223, the end of the third rotating shaft 223 located at the first through hole 11 is plugged and fixed with the polishing head. A plurality of collars 24 are sleeved on the outside of the third rotating shaft 223 located in the cavity, the outer portions of the plurality of collars 24 are engaged with the inner wall surface of the main shaft 21, thereby allowing the third rotating shaft 223 to rotate along a predetermined route in a stable environment.
In the embodiment, referring to
In the embodiment, referring to
Furthermore, further elaboration will be given on the shell 1 wrapping the above structure. Referring to
In essence, please refer to
In the present embodiment, referring to
A further description of the working principle of the nail polisher: first, the battery module supplies energy to the internal structure of the nail polisher. When work is required, the operator pushes the nail polishing switch 1312. The motor 3 drives the rotating shaft 22 to rotate, causing the polishing head connected with it to rotate accordingly to polish the nails. Secondly, when you want to adjust the rotation speed of the grinding head, you can adjust the stepless speed control component 7, that is, rotate the roller 71 that is rotated to drive the rotation of the potentiometer to control the output voltage of the PCB board 5, adjust the power of the motor 3, and then adjust the rotation speed of the rotating shaft 22 in the transmission mechanism 2. Thereby adjusting the rotation speed of the polishing head, polishing the nails in an optimal way to make the nail surface smooth and strengthen the adhesion. After applying nail polish to the nails, the nail polish needs to be dried, that is, the nail polish is cured. At this time, turn on the UV lamp switch 1311, and the UV curing lamp 42 will emit purple light to bake the nails in a small range, thereby quickly drying the nail polish. This design has a small baking range, and the UV curing lamp 42 focuses on the nail cap to avoid damage to the skin on the back of the hand, which greatly facilitates customers' manicure needs.
Above are only preferred embodiments of the present disclosure and are not intended to limit the present disclosure. Any modification, equivalent replacement and improvement made within spirit and principle of the present disclosure should be included in protection scope of the present disclosure.
Number | Name | Date | Kind |
---|---|---|---|
20210100332 | Hsieh | Apr 2021 | A1 |
20220128841 | Jung | Apr 2022 | A1 |
20230134504 | Haile | May 2023 | A1 |
Number | Date | Country |
---|---|---|
114711531 | Jul 2022 | CN |
219982335 | Nov 2023 | CN |
19619778 | Dec 1996 | DE |