The present invention generally relates to motorized nail files.
In one embodiment there is an apparatus comprising: a housing having a shape and size suitable for being held in a single hand of a user; a nail file head coupled to the housing; an electric drive device contained within the housing and configured to rotationally oscillate the nail file head about an axis; and an abrasive surface coupled to the nail file head and configured to trim or smooth a fingernail or toenail when the nail file head is oscillated, the abrasive surface extending around and facing radially away from the axis.
In one embodiment, the abrasive surface is a first abrasive surface, the apparatus further comprising: a second abrasive surface, the second abrasive surface being generally perpendicular to the first abrasive surface. In one embodiment, the second abrasive surface is circular. In one embodiment, the first abrasive surface has a different grit than the second abrasive surface. In one embodiment, the first and second abrasive surfaces are comprised of sandpaper. In one embodiment, a distal portion of the nail file head extends radially from the axis further than the abrasive surface extends from the axis. In one embodiment, the distal radial portion of the nail file head includes a cutting surface. In one embodiment, the abrasive surface is cylindrically shaped.
In another embodiment there is an apparatus comprising: a nail file head configured to rotationally oscillate about an axis; an abrasive surface coupled to the nail file head and configured to trim or smooth a fingernail or toenail when the nail file head is oscillated; and a stem extending from the nail file head and configured to releasably couple the nail file head to a housing, the stem including one or more radially extending features configured to mate with one or more corresponding radially extending features of the housing.
In one embodiment, the one or more radially extending features includes one or more axially extending grooves. In one embodiment, the stem is configured to couple with the housing in two or more different, predetermined, radial positions. In one embodiment, the stem is configured to couple with the housing in four or more different, predetermined, radial positions. In one embodiment, the stem is coupled to a clutch that is configured to allow a user to twist the nail file head between two or more different, predetermined, radial positions relative to the housing. In one embodiment, the stem is configured to snap fit into the housing. In one embodiment, the stem is configured to snap fit into the housing upon an initial coupling between the stem and the housing and not snap fit into the housing upon subsequent coupling between the stem and the housing. In one embodiment, a proximal end of the stem includes a bulbous tip. In one embodiment, the abrasive surface is cylindrically shaped. In one embodiment, the abrasive surface includes a cylindrically shaped sidewall portion and a planar, circular, distal end portion.
In another embodiment there is an apparatus comprising: a nail file head configured to rotationally oscillate about an axis; a first abrasive surface coupled to the nail file head and configured to trim or smooth a fingernail or toenail when the nail file head is oscillated; a second abrasive surface coupled to the nail file head and configured to trim or smooth a fingernail or toenail when the nail file head is oscillated; and a stem extending from the nail file head and configured to releasably couple the nail file head to a housing, the stem including two or more axially extending grooves and a bulbous proximal tip, the two or more axially extending grooves configured to mate with one or more corresponding axially extending projections of the housing, the bulbous proximal tip configured to snap fit into the housing upon coupling the nail file head with the housing.
In another embodiment there is a method of filing or trimming a fingernail or toenail comprising: oscillating a nail file head about an axis, a distal end and a proximal end, the proximal end of the nail file head configured to be coupled to a housing, the nail file head having a first abrasive surface coupled to a distal end of the nail file head and perpendicular to the axis and a second abrasive surface coupled to the nail file head, the second abrasive surface extending around and facing radially away from the axis; and contacting one of the first or second abrasive surfaces with the fingernail or toenail to trim or file the fingernail or toenail. In a further embodiment, the method includes rotating the nail file head at least 45 degrees relative to the housing; oscillating the nail file head about the axis; and contacting one of the first or second abrasive surfaces with the fingernail or toenail to trim or file the fingernail or toenail.
The foregoing summary, as well as the following detailed description of embodiments of the motorized nail files, will be better understood when read in conjunction with the appended drawings of exemplary embodiments. It should be understood, however, that the invention is not limited to the precise arrangements and instrumentalities shown.
In the drawings:
Motorized nail files are used to apply a moving abrasive surface to a finger or toe nail. Oscillating tools are able to accomplish this task while lessening the potential of physical damage (e.g., cuts, bleeding, bruising) to surrounding skin. Motorized nail files are particularly useful to trim nails of others including pets, children, the elderly, patrons at a salon and the infirm. A motorized nail file is disclosed in U.S. Pat. No. 7,188,628, which is hereby incorporated by reference in its entirety.
Referring to the drawings in detail, wherein like reference numerals indicate like elements throughout, there is shown in
Referring to
In one embodiment, nail file 10 is a small handheld battery powered or corded device that safely trims people's nails by leveraging certain physical properties of the skin and nail tissue. In one embodiment, a trimming action is driven by a motor 28 of appropriate speed and torque and a mechanism that converts the rotation of the motor shaft to an oscillating action. In one embodiment, nail file head 12 oscillates with a frequency and stroke that optimizes the trimming of the nail while not adversely affecting surrounding skin. Because of the soft and supple nature of the skin, the oscillating action of nail file head 12 vibrates or shifts the skin back and forth while the more rigid nail 20 is filed or trimmed.
In one embodiment, nail file 10 includes a housing 16. In one embodiment, housing 16 is shape and size suitable for being held in a single hand 26 of a user. In one embodiment, nail file head 12 is coupled to housing 16 via a boss 14. In one embodiment, nail file head 12 is releasably coupled to housing 16 as described further below. In one embodiment, a release button 18 extends from housing 16. In one embodiment, release button 18 is used to release nail file head 12 from boss 14. In one embodiment, nail file 10 includes a power switch 32. In one embodiment, power switch 32 turns motor 28 ON/OFF. In other embodiments, the speed of motor 28 is controlled by switch 32 or an additional control such as a speed control.
In one embodiment, nail file head 12 oscillates about axis A. In other embodiments, nail file head 12 oscillates side to side or about an arc. In one embodiment, nail file head 12 oscillates at a generally constant frequency. In one embodiment, nail file head 12 oscillates at approximately 15 hertz to approximately 20,000 hertz. In one embodiment, a rotary output from motor 28 is converted to the oscillation of nail file head 12. In other embodiments, motor 28 is configured to oscillate. In one embodiment, axis A is generally orthogonal with a longitudinal axis B of housing 16. In one embodiment, axis A is at an oblique angle α with respect to axis B. In one embodiment, angle a as shown is approximately 40 degrees. In one embodiment, angle a is fixed. In one embodiment, angle α is adjustable. In another embodiment, the axis of oscillation is perpendicular to axis A and axis B as shown in
Referring to
In one embodiment, nail file head 12 includes any number and configuration of surfaces to file, trim and smooth nail 20. In one embodiment, nail file head 12 includes at least one abrasive surface 22a. In one embodiment, nail file head 12 includes two abrasive surfaces 22a, 22b. In one embodiment, nail file head 12 includes a buffing surface. In one embodiment, abrasive surface 22b is planar. In one embodiment, the sidewall portion of nail file head 12 is cylindrical. In one embodiment, distal end 12b of nail file head 12 is circular. In one embodiment, abrasive surface 22b is circular. In one embodiment, distal end 12b of nail file head 12 and/or abrasive surface 22b is semi-spherical, conical or pointed. In one embodiment, abrasive surface 22b is perpendicular to axis A. In one embodiment, abrasive surface 22b is the distal most surface extending from nail file head 12. In one embodiment, abrasive surface extends from axis A to an outer perimeter 22c. In one embodiment, abrasive surface 22b includes an aperture 22d (see
In one embodiment, abrasive surface 22a extends around and faces radially away from axis A. In one embodiment, abrasive surface 22a is cylindrically shaped. In other embodiments, abrasive surface 22a is a non-cylindrical shape such as rectangular, hourglass or cone. In one embodiment abrasive surface 22a is symmetrical about axis A. In one embodiment, a cylindrically shaped abrasive surface 22a provides an abrasive surface along the axial length that moves at a single speed as opposed to abrasive surface 22b that has a surface that moves at different speeds depending on the distance from axis A. In one embodiment, abrasive surface 22a is generally perpendicular to abrasive surface 22b.
In one embodiment, abrasive surface 22a has a different grit than abrasive surface 22b. In one embodiment, abrasive surfaces 22a, 22b are comprised of sandpaper. In one embodiment, abrasive surfaces 22a, 22b are comprised of stearate coated aluminum oxide paper. In one embodiment, abrasive surface 22a is a different grit than abrasive surface 22b. In one embodiment, abrasive surface 22a has the same grit than abrasive surface 22b. In one embodiment, abrasive surface 22a is approximately 60 grit to approximately 400 grit. In one embodiment, abrasive surface 22b is approximately 60 grit to approximately 400 grit. In one embodiment, abrasive surface 22b is attached to abrasive surface 22a. In one embodiment, abrasive surface 22b is attached to abrasive surface 22a by an adhesive. In another embodiment, abrasive surface 22b is integral with abrasive surface 22a.
In one embodiment, nail file head 12 includes a stem 34. In one embodiment, stem 34 couples nail file head 12 to housing 16. In one embodiment, stem 34 releasably couples nail file head 12 to housing 16. In one embodiment, once stem 34 is coupled with housing 16, nail file head 12 is not released until button 18 (see
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In one embodiment, nail file 10 includes one or more predetermined operating positions. In one embodiment, nail file 10 includes two to four predetermined operating positions. In one embodiment, nail file 10 includes two to four predetermined operating positions. In one embodiment, nail file 10 includes two to ten predetermined operating positions. In one embodiment, nail file 10 includes two predetermined operating positions where the nail file head 12 is operable, the first operating position being 180 degrees from the second operating position. In one embodiment, nail file 10 includes three predetermined operating positions where the nail file head 12 is operable, the first operating position being 120 degrees from the second operating position. In one embodiment, nail file 10 includes four predetermined operating positions where the nail file head 12 is operable, the first operating position being 90 degrees from the second operating position. In one embodiment, nail file 10 includes five predetermined operating positions where the nail file head 12 is operable, the first operating position being 72 degrees from the second operating position. In one embodiment, nail file 10 includes six predetermined operating positions where the nail file head 12 is operable, the first operating position being 60 degrees from the second operating position. In one embodiment, nail file 10 includes seven predetermined operating positions where the nail file head 12 is operable, the first operating position being approximately 51 degrees from the second operating position. In one embodiment, nail file 10 includes eight predetermined operating positions where the nail file head 12 is operable, the first operating position being 45 degrees from the second operating position. In one embodiment, nail file 10 includes nine predetermined operating positions where the nail file head 12 is operable, the first position being 40 degrees from the second operating position. In one embodiment, nail file 10 includes ten predetermined operating positions where the nail file head 12 is operable, the first operating position being 36 degrees from the second operating position. In other embodiments, the number of nail file 10 operative positions is not predetermined and includes any number of selectable operating positions.
Referring to
In one embodiment, boss 14 includes one or more radially extending features 48. In one embodiment, boss 14 includes two or more radially extending features 48. In one embodiment, boss 14 includes four radially extending features 48. In one embodiment, radially extending features 48 are evenly spaced around the inner surface of sleeve 50. In one embodiment, radially extending features 48 are projections that project radially inwardly from sleeve 50 and extend axially. In other embodiments, radially extending features 48 are outwardly projecting grooves on the inner surface of sleeve 50. In some embodiments, radially extending features 48 include a mix of projections and grooves. In one embodiment, radially extending features 48 are triangular projections (see
Referring to
In one embodiment, radially extending features 42 are flared toward their proximal end 42a. In one embodiment, the flared proximal end 42a helps to align radially extending feature 42 with radially extending feature 48 when inserting stem 34 into boss 14 (see
Referring to
In one embodiment, removing nail file head 12 from boss 14 without actuating button 18 removes or decreases the snap fit between nail file head 12 and boss 14 in subsequent couplings. In one embodiment, boss 14 is comprised of a material having a hardness greater than the stem 34. In one embodiment, boss 14 is comprised of metal such as steel or aluminum. In one embodiment, the underside of tapered surface 50b is more abrupt than the top such that pulling stem 34 out of boss 14 deforms or partially removes tip 36. In one embodiment, stem 34 and/or boss 14 are configured such that stem 34 can only be positioned in each of the predetermined radial positions relative to boss 14 only once. Removing or reducing the coupling indicator between stem 34 and boss 14 such as the snap fit or by preventing repositioning of nail file head 12 prevents reuse of used portions of abrasive surface 22a.
Referring to
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In one embodiment, once the user is ready to use cutting tool 44, nail file head 12 is rotated relative to housing 16 such that cutting tool 44 is placed into the operating position. In one embodiment, one or both of a portion of abrasive surface 22a proximate cutting tool 44 or a portion of abrasive surface 22e facing away from cutting tool 44 includes indicia to indicate the position of cutting tool 44 relative to housing 16. For example, portion of abrasive surface 22a facing away from cutting tool 44 may be green and the abrasive surface 22a proximate cutting tool 44 may be red so that the user positions the red surface toward the operating position when using the cutting tool 44 and positions the green surface toward the operating position when not using the cutting tool 44.
Referring to
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It will be appreciated by those skilled in the art that changes could be made to the exemplary embodiments shown and described above without departing from the broad inventive concept thereof. It is understood, therefore, that this invention is not limited to the exemplary embodiments shown and described, but it is intended to cover modifications within the spirit and scope of the present invention as defined by the claims. For example, specific features of the exemplary embodiments may or may not be part of the claimed invention and features of the disclosed embodiments may be combined. Unless specifically set forth herein, the terms “a”, “an” and “the” are not limited to one element but instead should be read as meaning “at least one”.
It is to be understood that at least some of the figures and descriptions of the invention have been simplified to focus on elements that are relevant for a clear understanding of the invention, while eliminating, for purposes of clarity, other elements that those of ordinary skill in the art will appreciate may also comprise a portion of the invention. However, because such elements are well known in the art, and because they do not necessarily facilitate a better understanding of the invention, a description of such elements is not provided herein.
This application claims the benefit of U.S. Provisional Patent Application No. 61/672,079 filed Jul. 16, 2012 entitled “Motorized Nail File”, incorporated by reference herein in its entirety.
Filing Document | Filing Date | Country | Kind |
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PCT/US2013/050219 | 7/12/2013 | WO | 00 |
Number | Date | Country | |
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61672079 | Jul 2012 | US |