CN111329221A - Nail clipper based on double rockers - Google Patents

Nail clipper based on double rockers Download PDF

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Publication number
CN111329221A
CN111329221A CN202010305215.XA CN202010305215A CN111329221A CN 111329221 A CN111329221 A CN 111329221A CN 202010305215 A CN202010305215 A CN 202010305215A CN 111329221 A CN111329221 A CN 111329221A
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China
Prior art keywords
rod
grinding
column
fixedly connected
plate
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Granted
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CN202010305215.XA
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Chinese (zh)
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CN111329221B (en
Inventor
郭炜
霍彧聪
张雨婷
董浩哲
蒋欣
张家豪
王浩
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Beijing Institute of Petrochemical Technology
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Beijing Institute of Petrochemical Technology
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Priority to CN202010305215.XA priority Critical patent/CN111329221B/en
Publication of CN111329221A publication Critical patent/CN111329221A/en
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    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D29/00Manicuring or pedicuring implements
    • A45D29/04Nail files, e.g. manually operated
    • A45D29/05Nail files, e.g. manually operated motor-driven

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  • Finish Polishing, Edge Sharpening, And Grinding By Specific Grinding Devices (AREA)

Abstract

The invention discloses a manicure device based on double rockers, which belongs to the field of manicure equipment; wherein the outer shell is clamped above the bottom plate; the reciprocating swing device is arranged on the bottom plate through the first fixing column and the second fixing column, and the micro motor is arranged behind a main beam in the reciprocating swing device through a motor rack and swings together with the main beam; a driving shaft of the reciprocating swing device is connected with a power output shaft of the micro motor through a coupler, and the grinding column is fixedly connected with an output shaft of the reciprocating swing device; the outer shell is provided with an arc-shaped hole with the same reciprocating motion track as that of the grinding column, and the grinding column rotates while continuously reciprocates in the arc-shaped hole. According to the invention, a user can automatically polish the nail without holding a device by hand, coordinating limbs and carefully observing the nail trimming length by only placing a hand or a foot on the finger clamping plate device and placing a finger after determining the position of the finger or the toe.

Description

Nail clipper based on double rockers
Technical Field
The invention belongs to the technical field of manicure equipment, and particularly relates to a manicure device based on double rockers.
Background
At present, the fingernails and the toenails are trimmed by mainly using nail clippers to shorten the fingernails or the toenails and then using a small file to grind the fingernails or the toenails flat. The scissors body anterior segment of traditional nail scissors has a pair of corresponding cutting edge, presses the board through round pin swing joint in the scissors body front portion, presses the board stroke to act on the anterior lever of scissors body during the use, uses the cutting edge to open and shut and prune nail or toenail, and is time-consuming, hard. As the age increases, the nails of the human body become harder, and especially after the middle-aged and the elderly, it is inconvenient to use the conventional nail clipper because of the visual deterioration and the reduced flexibility of the coordination of the limbs, and it becomes difficult to cut the nails. In the aspect of the electric nail clippers, research at home and abroad is still in the beginning, but in the aspect of the electric nail clippers at home and abroad, mature technologies are available, such as the research on polishing materials, transmission mechanisms and protection mechanisms. At present, various nail trimmers such as electric nail clippers, full-automatic nail clippers and the like are manufactured abroad, but the problem of complicated trimming process is only solved, and the trimming of toenails of old people is still not convenient, so a corresponding scheme is not provided for the problem of trimming toenails of old people.
In order to overcome the defect that the existing electric nail clippers cannot trim the nails of the old, the invention provides a nail polisher which can care about the old, the device can determine the radius and the distance according to the length of the nails, automatically polishes in a reciprocating mode according to the track, and meanwhile, polishing materials can only polish the nails under high-speed rotation without damaging the fingers.
Disclosure of Invention
Aiming at the problems in the background art, the invention provides a nail clipper based on a double rocker, which is characterized by comprising the following components: the grinding machine comprises a base plate, an outer shell, a micro motor, a coupler, a reciprocating swing device and a grinding column, wherein the outer shell is clamped above the base plate; the reciprocating swing device is arranged on the bottom plate through the first fixing column and the second fixing column, and the micro motor is arranged behind a main beam in the reciprocating swing device through a motor rack and swings together with the main beam; a driving shaft of the reciprocating swing device is connected with a power output shaft of the micro motor through a coupler, and the grinding column is fixedly connected with an output shaft of the reciprocating swing device; the outer shell is provided with an arc-shaped hole with the same reciprocating motion track as that of the grinding column, and the grinding column rotates while continuously reciprocates in the arc-shaped hole.
The reciprocating swing device comprises: the device comprises a motor rack, a main beam, a driving shaft, an output shaft, a first fixing column, a second fixing column, a fixing rod, a connecting rod, a turbine, a bevel gear, a T-shaped swing rod, a bearing mounting seat and an auxiliary beam; the main beam and the auxiliary beam are L-shaped, and the main beam main connecting plate is fixedly connected with the rear motor fixing plate integrally; the motor frame is fixedly connected to the rear end face of the motor fixing plate, and the left side face of the main connecting plate is fixedly connected with a connecting support rod in a T-shaped swing rod; the auxiliary beam is formed by integrally and fixedly connecting a longer grinding column mounting plate and a shorter swing rod connecting plate, and the swing rod connecting plate in the auxiliary beam is fixedly connected with the upper side surface of the connecting support rod;
two bearing mounting seats are mounted on the left side face of the main connecting plate, the driving shaft is in bearing connection with the two bearing mounting seats, a worm is arranged on the front half portion of the driving shaft, and the two bearing mounting seats are respectively arranged in the front and the back of the worm; the front end of the driving shaft is provided with a bevel gear, the output shaft is arranged at the front part of the grinding column mounting plate through a bearing, the lower end of the output shaft is also provided with a bevel gear, and the two bevel gears are meshed with each other;
the front end and the rear end of a swinging rod in the T-shaped swinging rod are respectively in rotating connection with a turbine shaft and a first fixed column; the two ends of the fixed rod are fixedly connected with a first fixed column and a second fixed column respectively, a turbine meshed with the worm is connected with a turbine shaft key, the turbine shaft is fixedly connected with one end of a connecting rod, the other end of the connecting rod is rotatably connected with one end of a side link, and the other end of the side link is rotatably connected with the second fixed column.
The length of the T-shaped swinging rod, the length of the fixed rod and the length of the connecting frame are in a ratio of 5:5:4: 1.
And a safety protection shell is arranged outside the right side surface of the main beam.
The main connecting plate, the grinding column mounting plate and the motor fixing plate are perpendicular to each other.
The grinding column is in the shape of a cylinder with a conical part at the upper end, three circumference rubbing materials with different roughness, namely a lower part rubbing surface, a middle part rubbing surface and an upper part rubbing surface, are sequentially arranged along the periphery of the cylindrical part of the grinding column from bottom to top, the outer diameters of the lower part rubbing surface, the middle part rubbing surface and the upper part rubbing surface are the same, and the roughness of each circumference rubbing material is different.
And a V-shaped groove is arranged between the adjacent circumferential twisting materials.
A conical filing material for polishing the edge of the nail is arranged outside the conical part at the upper end of the grinding column.
The filing teeth used by the conical filing material are the same as those outside the upper filing surface.
The shell is provided with a finger placing device.
The invention has the beneficial effects that:
1. the manicuring mode of the convenient user, especially the old people, to the nail that can maximize, the user only needs to put hand or foot on finger splint device, places the finger after confirming the position of finger or toe, need not hand-held device, need not the coordinate cooperation of limbs, need not carefully to observe nail pruning length, can polish automatically.
2. The nail polishing device can visually display the nail polishing process, and can study the influence of the polishing radius and the polishing distance on the polishing effect through experiments.
3. The influence of the change of parameters such as wear resistance, hardness, heat dissipation, rotating speed and the like of the grinding material on the grinding effect can be researched.
4. Other materials can be directly selected to observe the quality of the polishing performance. Not only is easy to operate, but also has visual use effect.
Drawings
FIG. 1 is a schematic external view of a double-rocker-based manicure device according to an embodiment of the present invention;
FIG. 2 is a schematic structural view of the embodiment of the invention with the outer shell and the safety protection shell omitted;
FIG. 3 is a cross-sectional view of an embodiment of the present invention;
FIG. 4 is an enlarged view of a portion of a grinding wheel in an embodiment of the present invention;
fig. 5 is a schematic structural view of the embodiment of the present invention with the bottom plate and the outer case omitted.
Description of reference numerals:
1-bottom plate, 2-outer shell, 3-micro motor, 4-coupler, 5-reciprocating swing device, 6-grinding column, 7-finger placing device, 301-motor switch, 501-motor frame, 502-main beam, 503-driving shaft, 504-output shaft, 505-first fixed column, 506-second fixed column, 507-fixed rod, 508-connecting rod, 509-connecting rod, 510-turbine, 511-bevel gear, 512- "T" -shaped oscillating bar, 513-safety protection shell, 514-auxiliary beam, 515-bearing mounting seat, 603-V-shaped groove, 601A-lower part filing surface, 601B-middle part filing surface, 601C-upper part filing surface, 601D-conical filing material, 5021-main connecting plate, 5022-a motor fixing plate, 5101-a turbine shaft, 5031-a worm, 5141-a grinding column mounting plate, 5142-a swing rod connecting plate, 5121-a connecting supporting rod and 5122-a swing rod.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The embodiment of the present invention shown in fig. 1 to 4 includes: the grinding device comprises a bottom plate 1, an outer shell 2, a micro motor 3, a coupler 4, a reciprocating swing device 5 and a grinding column 6, wherein the bottom plate 1 is a flat plate, the outer shell 2 is a rectangular shell with an open lower part, and the outer shell 2 is clamped above the bottom plate 1; the reciprocating swing device 5 is installed on the bottom plate 1 through a first fixing column 505 and a second fixing column 506, and the micro motor 3 is installed behind a main beam 502 in the reciprocating swing device 5 through a motor rack 501 and swings together with the main beam 502; a driving shaft 503 of the reciprocating swing device 5 is connected with a power output shaft of the micro motor 3 through a coupler 4, and a grinding column 6 is fixedly connected with an output shaft 504 of the reciprocating swing device 5; an arc-shaped hole with the same reciprocating motion track as that of the grinding column 6 is formed in the outer shell 2, and the grinding column 6 rotates while continuously reciprocating in the arc-shaped hole; a finger placing device 7 is also arranged on the outer shell 2 near the arc circle in the arc hole;
in this embodiment, the finger placement device 7 is a splint; it will be readily appreciated that any finger (digit) placement device with adjustable height and grip width may be substituted as desired.
In this embodiment, the motor frame 501 is a metal mounting case wrapped outside the micro motor 3 and having an external shape similar to that of the micro motor 3.
The micro motor 3 shown in fig. 2, 3 and 5 is connected with the motor switch 301 and the power supply through wires, wherein the motor switch 301 is installed outside the base plate 1;
in the present embodiment, the rotation speed of the spindle of the micro motor 3 is 1400 r/min.
The reciprocal swinging means 5 shown in fig. 1 to 3 includes: the device comprises a motor frame 501, a main beam 502, a driving shaft 503, an output shaft 504, a first fixing column 505, a second fixing column 506, a fixing rod 507, a connecting rod 508, a connecting rod 509, a turbine 510, a bevel gear 511, a T-shaped swing rod 512, a bearing mounting seat 515 and an auxiliary beam 514; the main beam 502 and the auxiliary beam 514 are L-shaped in side view, the main beam 502 is formed by integrally and fixedly connecting a main connecting plate 5021 with smaller front length and larger thickness and a motor fixing plate 5022 with larger rear length and smaller thickness, and a connecting strut 5121 in a T-shaped swing rod 512 is fixedly connected to the left side surface of the main connecting plate 5021; the auxiliary beam 514 is formed by integrally and fixedly connecting a longer grinding column mounting plate 5141 and a shorter swing link connecting plate 5142, the swing link connecting plate 5142 in the auxiliary beam 514 is fixedly connected with the upper side surface of the connecting support rod 5121, and the main connecting plate 5021, the grinding column mounting plate 5141 and the motor fixing plate 5022 are vertical in pairs; two bearing mounting seats 515 are mounted on the left side surface of the main connecting plate 5021;
the motor frame 501 is fixedly connected to the rear end face of the motor fixing plate 5022; a driving shaft 503 sequentially passes through a motor fixing plate 5022, a bearing mounting seat 515, a swing link connecting plate 5142 and another bearing mounting seat 515 which are parallel to each other, and is in bearing connection with the two bearing mounting seats 515, a worm 5031 is arranged at the front half part of the driving shaft 503, and the two bearing mounting seats 515 are respectively arranged at the front and the rear parts of the worm 5031; the front end of the driving shaft 503 is provided with a bevel gear 511, the output shaft 504 is arranged in front of the grinding column mounting plate 5141 through a bearing, the lower end of the output shaft 504 is also provided with one bevel gear 511, and the two bevel gears 511 are meshed with each other;
the front end and the rear end of a swinging rod 5122 in the T-shaped swinging rod 512 are respectively connected with the turbine shaft 5101 and the first fixed column 505 in a rotating manner; a first fixing column 505 and a second fixing column 506 are fixedly connected to two ends of the fixing rod 507 respectively, and bottom surfaces of the first fixing column 505 and the second fixing column 506 are fixedly connected with the bottom plate 1; the turbine 510 engaged with the worm 5031 is connected with the turbine shaft 5101 in a key mode, the turbine shaft 5101 is fixedly connected with one end of a connecting rod 509, the other end of the connecting rod 509 is rotatably connected with one end of a connecting rod 508, and the other end of the connecting rod 508 is rotatably connected with a second fixing column 506;
in this embodiment, the length of the "T" shaped swing link 512 (i.e. the link length of the swing link 5122), the length of the fixing link 507, the ratio of the length of the link lever 508 to the length of the link 509 is 5:5:4: 1; the gear ratio between the worm wheel 510 and the worm is 1: 27; the coefficient of snap-back is about 1, thereby damping the vibration shock.
In the present embodiment, the two bevel gears 511 are of the same model;
when the reciprocating swing device 5 in this embodiment works, the power supply provides power for the micro motor 3 fixed on the rear end face of the motor frame 501, and the micro motor 3 drives the driving shaft 503 to rotate. The bevel gear 511 positioned at the front end of the driving shaft 503 drives the bevel gear 511 mounted at the lower end of the output shaft 504 to rotate, meanwhile, the worm 13 positioned at the front side of the driving shaft 503 drives the worm wheel 15 and the connecting rod 509 to rotate, the worm wheel 15 is fixed at one end of the T-shaped swing rod 512, so that the T-shaped swing rod 512, the connecting rod 509, the fixing rod 507 and the connecting rod 508 become a crank to drive the double-rocker mechanism to move, and the fixing rod 507 serves as a frame, therefore, according to the rotation of the crank (the connecting rod 509), two swing rods ("T-shaped swing rod 512 and the connecting rod 508) in the double-rocker mechanism perform; meanwhile, the motor fixing plate 5022 fixedly connected with the T-shaped swing rod 512 swings back and forth. Because the output shaft 504 rotates endlessly through the engagement between the two bevel gears 511, the grinding column 6 arranged at the front end of the grinding column mounting plate 5141 through the output shaft 504 swings back and forth in the direction of the "T" -shaped swing rod 512 while rotating endlessly, thereby polishing and trimming the nails placed on the fingers of the finger placement device 7 according to the original route (arc shape).
The grinding cylinder 6 shown in fig. 1 to 4 has a cylindrical shape with a conical part at the upper end, three circumferential rubbing materials with different roughness, namely a lower filing surface 601A, a middle filing surface 601B and an upper filing surface 601C, are sequentially arranged along the circumference of the cylindrical part of the grinding cylinder 6 from bottom to top, the outer diameters of the lower filing surface 601A, the middle filing surface 601B and the upper filing surface 601C are the same, the roughness of each circumferential rubbing material is different, and a V-shaped groove 603 is formed between the adjacent circumferential rubbing materials;
in the embodiment, the material used in the grinding column 6 is titanium-aluminum alloy to ensure the wear resistance, hardness and heat dissipation of the grinding column 6;
in this embodiment, the diameters and heights of the three circumferential twisting materials of the lower portion filing surface 601A, the middle portion filing surface 601B and the upper portion filing surface 601C are 25mm and 12mm, respectively; the coarse mesh number of the lower filing surface 601A used for the external filing material is 100, and the lower filing surface is used for rough machining; the fine mesh of the filing teeth used by the upper filing surface 601C is 240, so that the upper filing surface is used for polishing; the mesh number of the filing teeth used by the middle filing surface 601B is 180, and the thickness is medium, so that the middle filing surface is used for semi-finishing;
in the present embodiment, the height of the V-shaped groove 603 is 4 mm;
in this embodiment, a conical filing material 601D for polishing the edge of a nail is provided outside the conical portion at the upper end of the grinding cylinder 6, the bottom surface of the conical filing material 601D has the same outer diameter as the upper filing surface 601C, the height of the conical filing material 601D is 14mm, and the filing teeth used for the conical filing material 601D are the same as those outside the upper filing surface 601C. The conical filing material 601D is matched with the three circumferential rubbing materials, so that the nail can be repaired at multiple angles.
The safety protection casing 513 as shown in fig. 1, 3 and 5 is fixedly connected to the right side surface of the main beam 502, and the grinding column 6 penetrates through the safety protection casing 513; in operation, the protective safety housing 513 swings with the main beam 502. The safety shield 513 is used to ensure that nail chips falling from the arc-shaped holes during operation do not further fall into the reciprocal swinging device 5, thereby interfering with the engagement and rotation of the reciprocal swinging device 5.
The working process of the invention is as follows:
placing the bottom plate 1 in parallel, placing the finger (finger or toe) to be polished on the finger placing device 7, and then adjusting the position of the finger and slightly bending the finger so that the nail cover lightly touches the lower filing surface 601A in the grinding column 6;
the manual switch 11 is turned on, the power supply provides power for the micro motor 3, the micro motor 3 drives the driving shaft 503 to rotate, and the grinding column 6 does reciprocating swing according to the reciprocating swing direction of the T-shaped swing rod 512 while continuously rotating;
after the nail cover is polished to the required length, the relative position of the middle part filing surface 601B or the upper part filing surface 601C is adjusted to be continuously polished; the finger can then be removed from the finger placement device 7 and contacted with the conical filing 601D at the desired angle for further detail polishing.
Until reaching the thickness degree satisfied by the user; the manual switch 11 is closed and the fingers are replaced as required.
The device has simple structure, only needs one motor for driving, is convenient to use, and is safe and reliable; and can be placed on the ground, saves time and labor, is suitable for different age groups, and is very convenient and fast to use when the old bends over to trim toe nails.

Claims (10)

1. The utility model provides a repair first ware based on two rockers which characterized in that includes: the grinding machine comprises a base plate (1), an outer shell (2), a micro motor (3), a coupler (4), a reciprocating swing device (5) and a grinding column (6), wherein the outer shell (2) is clamped above the base plate (1); the reciprocating swing device (5) is arranged on the bottom plate (1) through a first fixed column (505) and a second fixed column (506), and the micro motor (3) is arranged behind a main beam (502) in the reciprocating swing device (5) through a motor rack (501) and swings together with the main beam (502); a driving shaft (503) of the reciprocating swing device (5) is connected with a power output shaft of the micro motor (3) through a coupler (4), and a grinding column (6) is fixedly connected with an output shaft (504) of the reciprocating swing device (5); the outer shell (2) is provided with an arc-shaped hole with the same reciprocating motion track as that of the grinding column (6), and the grinding column (6) rotates while continuously reciprocating in the arc-shaped hole.
2. A double-rocker-based manicure instrument as claimed in claim 1, wherein said reciprocal swinging means (5) comprises: the device comprises a motor rack (501), a main beam (502), a driving shaft (503), an output shaft (504), a first fixed column (505), a second fixed column (506), a fixed rod (507), a side link (508), a connecting rod (509), a turbine (510), a bevel gear (511), a T-shaped swing rod (512), a bearing mounting seat (515) and an auxiliary beam (514); wherein the main beam (502) and the auxiliary beam (514) are L-shaped, and the main connecting plate (5021) of the main beam (502) is fixedly connected with the rear motor fixing plate (5022) integrally; the motor rack (501) is fixedly connected to the rear end face of the motor fixing plate (5022), and the left side face of the main connecting plate (5021) is fixedly connected with a connecting support rod (5121) in a T-shaped swing rod (512); the auxiliary beam (514) is formed by integrally and fixedly connecting a longer grinding column mounting plate (5141) and a shorter swing rod connecting plate (5142), and the swing rod connecting plate (5142) in the auxiliary beam (514) is fixedly connected with the upper side surface of the connecting support rod (5121);
two bearing installation seats (515) are installed on the left side face of the main connecting plate (5021), the driving shaft (503) is in bearing connection with the two bearing installation seats (515), a worm (5031) is arranged at the front half part of the driving shaft (503), and the two bearing installation seats (515) are respectively arranged in the front and the rear of the worm (5031); the front end of the driving shaft (503) is provided with a bevel gear (511), the output shaft (504) is arranged at the front part of the grinding column mounting plate (5141) through a bearing, the lower end of the output shaft (504) is also provided with the bevel gear (511), and the two bevel gears (511) are meshed with each other;
the front end and the rear end of a swinging rod (5122) in the T-shaped swinging rod (512) are respectively connected with a turbine shaft (5101) and a first fixed column (505) in a rotating way; a first fixed column (505) and a second fixed column (506) are fixedly connected to two ends of the fixed rod (507) respectively, a turbine (510) meshed with the worm (5031) is connected with a turbine shaft (5101) in a key mode, the turbine shaft (5101) is fixedly connected with one end of a connecting rod (509), the other end of the connecting rod (509) is rotatably connected with one end of a connecting rod (508), and the other end of the connecting rod (508) is rotatably connected with the second fixed column (506).
3. The double-rocker-based manicure device as claimed in claim 2, wherein the ratio of the length of the "T" -shaped rocker (512), the length of the fixing rod (507), the length of the side link (508) and the length of the connecting rod (509) is 5:5:4: 1.
4. A double rocker based manicure instrument as in claims 1 or 2, wherein a safety shield (513) is mounted outside the right side of the main beam (502).
5. The manicure device based on the double rocker as recited in claim 2, wherein the main connecting plate (5021), the grinding column mounting plate (5141) and the motor fixing plate (5022) are perpendicular to each other.
6. The manicuring device based on the double-rocker as claimed in claim 1, wherein the grinding cylinder (6) is a cylinder with a conical part at the upper end, three circumferential rubbing materials with different roughness, namely a lower rubbing surface (601A), a middle rubbing surface (601B) and an upper rubbing surface (601C), are sequentially arranged along the circumference of the cylindrical part of the grinding cylinder (6) from bottom to top, the outer diameters of the lower rubbing surface (601A), the middle rubbing surface (601B) and the upper rubbing surface (601C) are the same, and the roughness of each circumferential rubbing material is different.
7. A double rocker based manicure device as in claim 6, wherein between adjacent circumferential twine is provided a V-groove (603).
8. A manicure device based on double rockers as claimed in one of claims 6 or 7, characterized in that a conical filing material (601D) for polishing the edge of the nail is provided outside the conical part of the upper end of the grinding cylinder (6).
9. The manicure device based on double rockers as claimed in claim 8, wherein the conical material (601D) is the same as the upper surface (601C) with the same teeth.
10. A double rocker based manicure instrument as in claim 1, wherein the outer housing (2) is provided with finger placement means (7).
CN202010305215.XA 2020-04-17 2020-04-17 Manicuring device based on double rocking bars Active CN111329221B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010305215.XA CN111329221B (en) 2020-04-17 2020-04-17 Manicuring device based on double rocking bars

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Application Number Priority Date Filing Date Title
CN202010305215.XA CN111329221B (en) 2020-04-17 2020-04-17 Manicuring device based on double rocking bars

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CN111329221A true CN111329221A (en) 2020-06-26
CN111329221B CN111329221B (en) 2024-04-26

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06277114A (en) * 1993-03-24 1994-10-04 Meito Kk Attachment for nail polisher
KR20070007695A (en) * 2005-07-11 2007-01-16 곽영철 multipurpose automatic nail and toe·nail cut
CN102058230A (en) * 2011-01-28 2011-05-18 浙江陆发微电机有限公司 Electric nail file
CN201870000U (en) * 2010-08-10 2011-06-22 中山火炬开发区奥斯塑料包装厂 Nail polisher
JP3222688U (en) * 2019-06-07 2019-08-15 ロゼンスター株式会社 Foot nail sharpener
CN212325750U (en) * 2020-04-17 2021-01-12 北京石油化工学院 Nail clipper based on double rockers

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06277114A (en) * 1993-03-24 1994-10-04 Meito Kk Attachment for nail polisher
KR20070007695A (en) * 2005-07-11 2007-01-16 곽영철 multipurpose automatic nail and toe·nail cut
CN201870000U (en) * 2010-08-10 2011-06-22 中山火炬开发区奥斯塑料包装厂 Nail polisher
CN102058230A (en) * 2011-01-28 2011-05-18 浙江陆发微电机有限公司 Electric nail file
JP3222688U (en) * 2019-06-07 2019-08-15 ロゼンスター株式会社 Foot nail sharpener
CN212325750U (en) * 2020-04-17 2021-01-12 北京石油化工学院 Nail clipper based on double rockers

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