WO2022097591A1 - Applicateur - Google Patents
Applicateur Download PDFInfo
- Publication number
- WO2022097591A1 WO2022097591A1 PCT/JP2021/040179 JP2021040179W WO2022097591A1 WO 2022097591 A1 WO2022097591 A1 WO 2022097591A1 JP 2021040179 W JP2021040179 W JP 2021040179W WO 2022097591 A1 WO2022097591 A1 WO 2022097591A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- coating
- toe
- slit
- coated
- liquid
- Prior art date
Links
- 239000011248 coating agent Substances 0.000 claims abstract description 511
- 238000000576 coating method Methods 0.000 claims abstract description 511
- 239000007788 liquid Substances 0.000 claims abstract description 142
- 239000012466 permeate Substances 0.000 claims description 12
- 239000004615 ingredient Substances 0.000 claims 1
- 210000003371 toe Anatomy 0.000 description 172
- 210000003811 finger Anatomy 0.000 description 50
- 210000000282 nail Anatomy 0.000 description 45
- 239000000976 ink Substances 0.000 description 24
- 230000004048 modification Effects 0.000 description 17
- 238000012986 modification Methods 0.000 description 17
- 238000010586 diagram Methods 0.000 description 12
- 239000000049 pigment Substances 0.000 description 12
- 239000003973 paint Substances 0.000 description 11
- 239000000835 fiber Substances 0.000 description 9
- 239000000463 material Substances 0.000 description 9
- 238000000034 method Methods 0.000 description 9
- 229920003002 synthetic resin Polymers 0.000 description 5
- 239000000057 synthetic resin Substances 0.000 description 5
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 5
- 210000004905 finger nail Anatomy 0.000 description 4
- 230000000873 masking effect Effects 0.000 description 4
- IUVCFHHAEHNCFT-INIZCTEOSA-N 2-[(1s)-1-[4-amino-3-(3-fluoro-4-propan-2-yloxyphenyl)pyrazolo[3,4-d]pyrimidin-1-yl]ethyl]-6-fluoro-3-(3-fluorophenyl)chromen-4-one Chemical class C1=C(F)C(OC(C)C)=CC=C1C(C1=C(N)N=CN=C11)=NN1[C@@H](C)C1=C(C=2C=C(F)C=CC=2)C(=O)C2=CC(F)=CC=C2O1 IUVCFHHAEHNCFT-INIZCTEOSA-N 0.000 description 3
- 239000004698 Polyethylene Substances 0.000 description 3
- 239000004743 Polypropylene Substances 0.000 description 3
- 210000004932 little finger Anatomy 0.000 description 3
- 239000003960 organic solvent Substances 0.000 description 3
- 150000001336 alkenes Chemical class 0.000 description 2
- 230000006835 compression Effects 0.000 description 2
- 238000007906 compression Methods 0.000 description 2
- 230000008602 contraction Effects 0.000 description 2
- 229920001971 elastomer Polymers 0.000 description 2
- 239000000839 emulsion Substances 0.000 description 2
- 239000002184 metal Substances 0.000 description 2
- 239000000203 mixture Substances 0.000 description 2
- JRZJOMJEPLMPRA-UHFFFAOYSA-N olefin Natural products CCCCCCCC=C JRZJOMJEPLMPRA-UHFFFAOYSA-N 0.000 description 2
- -1 polypropylene Polymers 0.000 description 2
- 229920005989 resin Polymers 0.000 description 2
- 239000011347 resin Substances 0.000 description 2
- 239000005060 rubber Substances 0.000 description 2
- JOYRKODLDBILNP-UHFFFAOYSA-N Ethyl urethane Chemical compound CCOC(N)=O JOYRKODLDBILNP-UHFFFAOYSA-N 0.000 description 1
- 239000000020 Nitrocellulose Substances 0.000 description 1
- 239000004677 Nylon Substances 0.000 description 1
- 240000007594 Oryza sativa Species 0.000 description 1
- 235000007164 Oryza sativa Nutrition 0.000 description 1
- NIXOWILDQLNWCW-UHFFFAOYSA-N acrylic acid group Chemical group C(C=C)(=O)O NIXOWILDQLNWCW-UHFFFAOYSA-N 0.000 description 1
- 239000000853 adhesive Substances 0.000 description 1
- 230000001070 adhesive effect Effects 0.000 description 1
- 230000001476 alcoholic effect Effects 0.000 description 1
- 239000003086 colorant Substances 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000008020 evaporation Effects 0.000 description 1
- 238000001704 evaporation Methods 0.000 description 1
- 239000004922 lacquer Substances 0.000 description 1
- 229920001220 nitrocellulos Polymers 0.000 description 1
- 229920001778 nylon Polymers 0.000 description 1
- 239000011049 pearl Substances 0.000 description 1
- 230000002093 peripheral effect Effects 0.000 description 1
- 229920000728 polyester Polymers 0.000 description 1
- 229920000573 polyethylene Polymers 0.000 description 1
- 229920001155 polypropylene Polymers 0.000 description 1
- 239000011148 porous material Substances 0.000 description 1
- 235000009566 rice Nutrition 0.000 description 1
- 238000007493 shaping process Methods 0.000 description 1
- 229920002994 synthetic fiber Polymers 0.000 description 1
- 239000012209 synthetic fiber Substances 0.000 description 1
- 125000000391 vinyl group Chemical group [H]C([*])=C([H])[H] 0.000 description 1
- 229920002554 vinyl polymer Polymers 0.000 description 1
Images
Classifications
-
- A—HUMAN NECESSITIES
- A45—HAND OR TRAVELLING ARTICLES
- A45D—HAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
- A45D29/00—Manicuring or pedicuring implements
- A45D29/18—Manicure or pedicure sets, e.g. combinations without case, etui, or the like
-
- A—HUMAN NECESSITIES
- A45—HAND OR TRAVELLING ARTICLES
- A45D—HAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
- A45D34/00—Containers or accessories specially adapted for handling liquid toiletry or cosmetic substances, e.g. perfumes
- A45D34/04—Appliances specially adapted for applying liquid, e.g. using roller or ball
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05C—APPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05C17/00—Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces
-
- A—HUMAN NECESSITIES
- A45—HAND OR TRAVELLING ARTICLES
- A45D—HAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
- A45D29/00—Manicuring or pedicuring implements
- A45D2029/002—French manicure
Definitions
- the present invention relates to an applicator. More specifically, the present invention relates to a coating tool that applies a coating liquid to a toe portion.
- a coating main body made of a porous body that absorbs and holds a liquid has a nail guide portion that guides the tip of the nail and a nail coating portion that is connected to the nail guide and has a flat surface for coating.
- a coating tool for nail art has been proposed (see, for example, Patent Document 1).
- the nail polish is applied by bringing the tip of the nail into contact with the nail guide, the width of the nail polish cannot be adjusted, and the width of the nail polish becomes narrower than the tip of the nail or wider than the tip of the toe. There was a problem that it became.
- nails may be applied not only to the front surface of the toe but also to the back surface, and in this case as well, a coating tool that can be suitably used is required.
- the present invention provides a coating tool having a slit portion formed between a coated member and a non-coated member into which a toe portion can be inserted, and capable of easily applying a coating liquid to the toe portion with a constant width. With the goal.
- the coating portion capable of impregnating the coating liquid or impregnated with the coating liquid and the non-coating portion which is in contact with the coating portion or is arranged so as to face each other at a predetermined distance and does not impregnate or permeate the coating liquid.
- a slit portion that is arranged between the coated portion and the non-applied portion and into which a toe portion can be inserted, and an outer surface of the coated portion that is arranged so as to form an inner surface surface of the slit portion.
- the present invention relates to a coating tool having a coating surface that is in surface contact with the surface of the inserted toe portion and to which the coating liquid can be applied.
- the slit portion can guide the relative movement between the inserted toe portion and the coating tool.
- the applicator of the present invention further has a finger guide portion arranged in a region where the fingertip abuts when the toe portion is inserted into the slit portion on the outer surface of the non-applied portion.
- the finger guide portion abuts on the fingertip when the applicator is moved along the outer edge of the toe portion in a state where the toe portion is inserted into the slit portion. It is preferable to guide the movement of the applicator.
- the coating portion and the non-coating portion have a substantially cylindrical shape extending in the first direction, and the opening in the slit portion is arranged at the end portion in the first direction. Is preferable.
- the opening in the slit portion has a curved shape that swells toward the coating portion.
- the coated portion has higher flexibility than the non-coated portion.
- the coating tool of the present invention when the coating tool and the toe portion are relatively moved in a state where the toe portion is inserted into the slit portion, the coating portion is pressed against the surface of the toe portion and deformed. However, it is preferable to maintain the state in which the coated surface is in surface contact with the surface of the toe portion.
- the applicator of the present invention further includes an outer cylinder portion that houses the coated portion and the non-applied portion in a partially exposed state, and the opening of the slit portion is exposed from the outer cylinder portion. It is preferable that the portion is arranged in the portion where the portion is removed.
- the non-applied portion is connected or fixed to the outer cylinder portion.
- the coating tool of the present invention has an accommodating portion for accommodating the coating liquid and a supply portion capable of supplying the coating liquid contained in the accommodating portion to the coating portion.
- the non-applied portion is arranged so that an operation from the outside can be transmitted to the supply unit, and the supply unit accommodates the operation transmitted from the non-applied portion. It is preferable that the coating liquid to be applied can be supplied to the coating portion.
- a coating tool having a slit portion formed between a coated member and a non-coated member into which a toe portion can be inserted, and a coating liquid can be easily applied to the toe portion with a constant width. can do.
- FIG. 1 is a schematic view illustrating an applicator according to an embodiment, in which (a) a top view of the applicator and (b) a front view of the applicator.
- FIG. 2 is a diagram illustrating a mode of use in the coating tool of the embodiment.
- FIG. 3 is a perspective view illustrating a coating member constituting the coating tool of the embodiment.
- FIG. 4 is a top view for explaining the shape of the opening in the slit portion of the coating member, in which (a) a top view of the slit portion of the embodiment and (b) to (g) a top view of the slit portion of the modified example.
- FIG. 5 is a cross-sectional view illustrating the configuration of the coating member and the shape of the slit portion, which is a cross-sectional view of (a) the slit portion of the embodiment and (b) to (f) a cross-sectional view of the slit portion of the modified example.
- FIG. 6 is a diagram illustrating a method of use in the coating tool of the embodiment.
- FIG. 7 is a diagram showing a mode of use for different fingernails, showing (a) a mode before use, (b) a mode of use for the index finger nail, and (c) a mode of use for the little finger nail. It is a figure.
- FIG. 8 is a diagram illustrating a method of use in the coating tool of the embodiment and a coating state of the toe portion.
- FIG. 9 is a diagram for explaining the operation (deformation) of the coating member when the coating tool is used, and describes (a) before the start of use, (b) to (d) during use, and (e) after use. It is a figure.
- FIG. 10 is a diagram illustrating a method of use in the coating tool of the modified example and a coating state of the toe portion.
- FIG. 11 is a schematic view for explaining the coating tool of the modified example, which is (a) a top view of the coating tool and (b) a front view of the coating tool.
- FIG. 12 is a schematic view illustrating a modified example of the coating portion, which is (a) a top view of the coating portion and (b) a side view of the coating tool.
- FIG. 13 is a schematic view illustrating a modified example of the non-coated portion, which is (a) a top view of the non-coated portion and (b) an LL cross-sectional view of the non-coated portion.
- the coating tool 1 in the embodiment will be described with reference to FIGS. 1 to 5.
- the coating member 10 and the accommodating portion 120 accommodating the coating liquid 110, and the coating liquid 110 contained in the accommodating portion 120 are applied to the coating member 10 (applying portion 11).
- It has a supply unit 60 that can be supplied to the vehicle, and an outer cylinder unit 100 that accommodates the coating member 10, the accommodating unit 120, and the supply unit 60.
- the coating tool 1 is a coating tool that applies the coating liquid 110 so as to form a line having a predetermined width on the surface of the toe portion 220 of the fingernail 210 of the finger 200.
- the applicator 1 is configured to be able to apply the coating liquid 110 so as to form a line having a predetermined width on the surface of the toe portion 220 inserted into the slit portion 20 (described later) in the coating member 10.
- the toe portion 220 is a tip portion of the nail 210 and is a portion extending from the fingertip 201 of the finger 200.
- the applicator 1 is formed on the end face of the non-applied portion 15 and has a finger guide portion 15a (described later) with which the fingertip 201 is in contact during coating. At the time of application, the fingertip 201 comes into contact with the finger guide portion 15a and slides and moves.
- the coating liquid 110 is supplied from the supply unit 60 to the coating member 10 (coating unit 11). Specifically, the coating liquid 110 contained in the accommodating unit 120 is supplied to the coating member 10 (applying unit 11) via the supply unit 60.
- the coating member 10 has a coating portion 11, a non-coating portion 15, a slit portion 20, a coating surface 22, and a finger guide portion 15a.
- the coating member 10 is formed by abutting or arranging the coating portion 11 and the non-coating portion 15 so as to form slit portions 20 at predetermined intervals so as to be opposed to each other by a predetermined distance.
- the coating member 10 is housed and arranged in the outer cylinder portion 100 (tip portion 101).
- the coating member 10 is housed and arranged in the outer cylinder portion 100 so that the opening portion 21 (described later) of the slit portion 20 is exposed to the outside from the outer cylinder portion 100.
- the coating member 10 is housed and arranged in the outer cylinder portion 100 with the coating portion 11 and the non-coating portion 15 partially protruding from the tip portion 101.
- the coating member 10 (coating portion 11) is housed and arranged so as to project from the outer cylinder portion 100 by 0 to 20 mm (see, for example, FIG. 12).
- the coating member 10 may be configured so that one of the end portion of the coating portion 11 or the end portion of the non-coating portion 15 is arranged so as to be more projected.
- the coating member 10 may be formed so that the end face of the coating portion 11 protrudes from the end face of the non-coating portion 15 by about 0 to 15 mm.
- the non-applied portion 15 may be arranged so as to project 1 to 5 mm from the outer cylinder portion 100, and the coated portion 11 may be arranged so as to further project 0 to 15 mm from the non-applied portion 15 (for example,. See FIG. 12).
- the coating member 10 is housed and arranged in the outer cylinder portion 100 so that the non-coating portion 15 can move in the longitudinal direction of the outer cylinder portion 100.
- the non-applied portion 15 is configured to be movable in the longitudinal direction by a pressing operation from the outside or the like so that the operation from the outside can be transmitted to the supply portion 60.
- the coating member 10 has a substantially cylindrical shape in which the coating portion 11 and the non-coating portion 15 extend in the longitudinal direction (first direction) of the outer cylinder portion 100, and is configured in a cylindrical shape as a whole.
- the shape of the coating member 10 is not limited to a cylinder, and may be, for example, a polygonal column (cylinder), a cone, a pyramid, a cube, a sphere, an ellipsoid, or the like.
- the diameter of the coating member 10 is, for example, 5 to 15 mm, preferably 7 to 13 mm, more preferably 8 to 11 mm, but is not particularly limited. It can be appropriately set according to usability, appearance, inner diameter of the outer cylinder portion described later, and the like.
- the length of the coating member 10 is, for example, 1 to 10 cm, preferably 2 to 8 cm, more preferably 2 to 5 cm, but is not particularly limited. It can be appropriately set according to usability, appearance, usage mode (use period, disposable, etc.), length of the outer cylinder portion 100, and the like.
- the coating unit 11 is a member capable of impregnating the coating liquid or impregnated with the coating liquid 110.
- the coated portion 11 is in contact with the non-coated portion 15 or is arranged so as to face each other at a predetermined distance.
- the coated portion 11 forms a slit portion 20 together with the non-coated portion 15.
- the coating portion 11 has a coating surface 22 which is an outer surface and is arranged so as to form an inner surface surface of the slit portion 20.
- the coating portion 11 is configured to be deformable according to the shape and movement of the inserted toe portion 220. For example, when a toe portion 220 having a different size or shape of a different finger 200 is inserted into the slit portion 20, the coating portion 11 is configured to be deformable corresponding to the inserted toe portion 220. Further, the coating portion 11 is configured to be pressed against the surface of the toe portion 220 and deformed when the coating tool 1 and the toe portion 220 are relatively moved in a state where the toe portion 220 is inserted into the slit portion 20. ing. The coating portion 11 is deformed according to the shape and movement of the toe portion 220 inserted into the slit portion 20, and maintains a state in which the coating surface 22 is in surface contact with the surface of the toe portion 220.
- the coated portion 11 is more flexible than the non-coated portion 15 in the present embodiment.
- the coated portion 11 has higher elastic deformability (compression and expansion / contraction) than, for example, the non-coated portion 15.
- the coated portion 11 is adjusted to have a higher flexibility than the non-coated portion 15 by adjusting the material, the shape, the shape of the slit portion 20, and the like.
- the coating portion 11 is configured to have flexibility to be deformed according to the size, shape and movement of the toe portion 220 inserted into the slit portion 20.
- the coating portion 11 is preferably one that impregnates and retains the coating liquid 110 by, for example, a capillary force.
- the coating portion 11 is composed of, for example, a molded fiber body (felt, synthetic fiber) or a synthetic resin body having a complicated cross-sectional shape.
- the coating portion 11 is, for example, a synthetic resin body such as a porous body having open cells, or a fibrous body such as a raised body or a hair-planted body, and preferably various fibers are focused and bonded with the synthetic resin.
- the obtained fiber bundle or the like more preferably a fiber bundle having a porosity of 50% or more, and particularly preferably a fiber bundle having a bubble ratio of 50 to 90%.
- the fiber thickness is 2 to 30 denier, preferably 5 to 25 denier.
- the coating portion 11 can be manufactured, for example, by bundling fibers such as polyester, nylon, and urethane, adhering them, and shaping them.
- the coating portion 11 is manufactured so as to have a sponge shape having pores necessary for permeating or impregnating the coating liquid 110.
- the bubble ratio varies depending on the coating liquid 110 used, and is adjusted to, for example, 50 to 90%.
- the fibers are arranged along the longitudinal direction of the coating member 10, and are not easily deformed by the pressing force in the longitudinal direction, but are not easily deformed by the pressing force in the longitudinal direction, but are subjected to the pressing force in the radial direction of the coating member 10. Is easily deformed.
- the coated portion 11 presses the outer surface (applied surface 22) by the convex portion of the curved toe portion 220, but the impregnated ink (or air) is extruded. Therefore, the outer surface (coating surface 22) is deformed according to the surface shape of the toe portion 220. Further, the coating portion 11 has a repulsive elasticity that when the toe portion is pulled out from the slit portion 20, the coating liquid 110 (or air) is impregnated again and restored.
- the coating portion 11 is configured so that the coating surface 22 is deformed according to the shape and movement of the toe portion 220 when the toe portion 220 is inserted into the slit portion 20, and the slit portion is formed.
- the toe portion 220 is removed from 20, it is configured to return to the normal state.
- an olefin-based material may be used, and in this case, PES6-80 (density 80 kg / m 3 ) to PES6-220 (density 220 kg / m 3 ) are preferable.
- the thickness of the fiber is 3 to 10 denier, preferably 5 to 7 denier.
- the coating liquid 110 is, for example, a pigment ink, a dye ink, a paint, a nail polish liquid, or the like.
- the pigment ink is, for example, an oil-based pigment ink, a water-based pigment ink, a solvent-free pigment ink, a gel-like pigment ink, an emulsion pigment ink, or the like.
- the dye ink is, for example, an oil-based dye ink, a water-based dye ink, a solvent-free dye ink, a gel-like dye ink, an emulsion dye ink, or the like.
- the paints are oil-based paints, water-based paints, solvent-free paints, lacquers, synthetic resin paints, alcoholic paints and the like.
- the nail polish liquid is contained in the above-mentioned pigment ink, dye ink, and paint, and is, for example, an oil-based nail polish liquid, an aqueous nail polish liquid, a solvent-free nail polish liquid, and the like.
- the nail polish liquid may be a general nail polish liquid in which a synthetic resin such as acrylic or nitrocellulose is colored and dissolved in an organic solvent, or an aqueous nail polish liquid containing no organic solvent or the like.
- the coating liquid 110 is a pigment ink, a dye ink, a paint or a manicure liquid, preferably a pigment ink, a dye ink, a paint or a manicure liquid containing no organic solvent, and more preferably an aqueous pigment ink. , Dye inks, paints and manicure liquids.
- a water-based pigment ink is used as the coating liquid 110.
- the color of the coating liquid 110 may be any color such as white, red, and vermilion, and may be transparent or translucent. Further, the coating liquid 110 may contain pearls, lame and the like.
- the non-applied portion 15 is a member that does not impregnate or permeate the coating liquid 110.
- the non-applied portion 15 is in contact with the coated portion 11 or is arranged so as to face each other at a predetermined distance.
- the non-coated portion 15 forms a slit portion 20 together with the coated portion 11.
- the end face (all or part of the end face 5a) of the non-applied portion 15 constitutes the finger guide portion 15a.
- the end surface, which is the outer surface of the non-applied portion 15 constitutes the finger guide portion 15a, which is a region where the fingertip 201 abuts when the toe portion 220 is inserted into the slit portion 20.
- the non-coated portion 15 is a member separate from the coated portion 11 and is a member that does not impregnate or permeate the coating liquid 110.
- the non-applied portion 15 does not adhere the coating liquid 110 to the abutting fingertip 201. Further, the non-coating unit 15 does not impregnate or permeate the coating liquid 110 supplied from the supply unit 60.
- the non-applied portion 15 is a member that does not impregnate or permeate the coating liquid 110, and is made of, for example, rubber, resin, metal, or the like.
- the non-coated portion 15 can also be formed by arranging a sheet or plate-shaped member made of rubber, resin, vinyl, metal, or the like on the entire surface.
- the material and shape of the non-coated portion 15 are adjusted so that the deformability is lower than that of the coated portion 11. It is preferable that the non-applied portion 15 does not deform when the toe portion 220 is moved while being inserted into the slit portion 20.
- the non-applied portion 15 is arranged so that an operation from the outside can be transmitted to the supply unit 60.
- the non-applied portion 15 is housed and arranged in the outer cylinder portion 100 so as to be movable in the longitudinal direction of the outer cylinder portion 100.
- the non-applied portion 15 is configured to be able to move in the longitudinal direction by a pressing operation from the outside or the like to transmit an operation from the outside to the supply portion 60.
- the slit portion 20 is formed from the surface to the inside of the end surface 5 of the coating member 10.
- the slit portion 20 is arranged between the coated portion 11 and the non-coated portion 15.
- the slit portion 20 is configured so that the toe portion 220 can be inserted.
- the slit portion 20 has an opening portion 21 formed in the end surface 5 of the coating member 10.
- the outer surface of the coating portion 11 arranged so as to form the inner surface surface of the slit portion 20 constitutes a coating surface 22 to which the coating liquid 110 can be applied by surface contact with the surface of the inserted toe portion 220. ..
- the opening 21 of the slit portion 20 is arranged on the end surface 5 (end portion in the first direction) of the coating member 10.
- the slit portion 20 is arranged so that the opening portion 21 is exposed to the outside from the outer cylinder portion 100. Further, the slit portion 20 is formed on an end surface 5 in which the opening portion 21 is arranged so as to project from the outer cylinder portion 100 (tip portion 101).
- the opening 21 of the slit portion 20 has a curved shape that swells toward the coating portion 11.
- the shape of the slit portion 20 is such that the opening portion 21 is curved and the depth at any position of the opening portion 21 is the same.
- the shape of the slit portion 20 is not limited to this, and for example, the opening portion 21 may be further curved or linear, and in the direction in which the opening portion 21 extends, the central side is deep and both ends are deep. It may have a shallow shape.
- the cross-sectional shape of the slit portion 20 may have a cross section parallel to the depth direction or may have a cross section inclined with respect to the depth direction. As a modification of the coating member 10, an example having a slit portion 20 having a different shape will be described later.
- the width of the slit portion 20 (distance between the coated portion 11 and the non-coated portion 15) is not particularly limited as long as the toe portion 220 can be inserted, but can be set to, for example, 0 to 5 mm, preferably 0 to 2 mm. .. Further, by adjusting the width of the slit portion 20, it is possible to maintain a state in which the coated surface 22 does not abut on the non-coated portion 15.
- the depth of the slit portion 20 (distance from the end surface 5 to the bottom surface 27, the distance from the surface including the finger guide portion 15a to the bottom surface 27) is set to a depth corresponding to the width of the coating line, and is not particularly limited. For example, it can be set to 2 to 10 mm, preferably 4 to 8 mm.
- the position, shape, width and depth of the slit portion 20 are set according to the applicability to the toe portion 220.
- the position, shape, width and depth of the slit portion 20 include the size of the toe portion 220 to be inserted (type of finger, etc.), the width of the coating line, and the deformability of the coating portion 11 (elastic deformability, toe portion). It is adjusted from the viewpoint of surface followability, etc.).
- the slit portion 20 can guide the relative movement between the inserted toe portion 220 and the coating tool 1 (coating member 10). Further, when the applicator 1 and the toe portion 220 are relatively moved while the toe portion 220 is inserted in the slit portion 20, the coating portion 11 forming the slit portion 20 is pressed against the surface of the toe portion 220 and deformed. do.
- the slit portion 20 corresponds to the movement of the toe portion 220 and is deformed so that the coating surface 22 which is the inner surface of the slit portion 20 maintains the surface contact with the surface of the toe portion 220. Therefore, the coating tool 1 can preferably form a coating line having a predetermined width on the toe portion 220.
- the slit portion 20 is configured to be able to apply the coating liquid 110 to the surface of the toe portion 220 so as to sandwich the inserted toe portion 220. Since the slit portion 20 sandwiches the inserted toe portion 220, the movement of the coating tool 1 can be suitably guided, and the coating liquid 110 can be applied to the surface of the toe portion 220. Since the slit portion 20 sandwiches the inserted toe portion 220, the applicator 1 can be slowly and gradually moved, and a desired line of the coating liquid 110 can be easily formed on the toe portion 220.
- the coating surface 22 is an outer surface of the coating portion 11 arranged so as to form an inner surface surface of the slit portion 20.
- the coating surface 22 is a portion where the coating liquid 110 can be applied by surface contact with the surface of the inserted toe portion 220.
- the coating surface 22 is an inner surface of the slit portion 20 (outer surface of the coating portion 11) and abuts on the surface of the toe portion 220 inserted with the fingertip 201 in contact with the finger guide portion 15a to abut the coating liquid. Is a coating surface on which the coating can be applied.
- the coated surface 22 is maintained in a state of being in surface contact with the surface of the toe portion 220 due to the deformation of the coated portion 11 corresponding to the movement of the toe portion 220.
- the shape of the coating surface 22 is a curved surface, but the shape is not limited to this, and may be a plane shape, a wavy shape, or a shape having one or a plurality of protrusions.
- the distance between the coated surface 22 and the non-coated portion 15 (width of the slit portion 20) is not particularly limited as long as it is a distance into which the toe portion 220 can be inserted.
- the shape and deformability of the coated surface 22 differ depending on the position, shape, width and depth of the slit portion 20.
- the coating surface 22 is set according to the applicability to the toe portion 220.
- the coating surface 22 has a suitable shape by adjusting the position, shape, width and depth of the slit portion 20 according to the size of the toe portion 220 to be inserted (type of finger, etc.), the width of the coating line, and the like. It will be adjusted.
- the coating surface 22 is adjusted to follow the surface of the toe portion 220.
- the width of the coating line is set by the length of the coating surface 22 in the depth direction (distance from the end surface 5 to the bottom surface of the slit portion 20).
- the finger guide portion 15a is arranged on the outer surface (end surface) of the non-applied portion 15.
- the finger guide portion 15a is arranged in a region where the fingertip 201 abuts when the toe portion 220 is inserted into the slit portion 20.
- the finger guide portion 15a is arranged in the vicinity of the opening portion 21 of the slit portion 20 in the end surface 5 of the coating member 10. Since the finger guide portion 15a is formed on the end surface of the non-coating portion 15 through which the coating liquid 110 does not permeate or permeate, the finger guide portion 15a is configured to be able to prevent the coating liquid 110 from adhering to the abutting fingertip 201.
- the finger guide portion 15a is arranged in the vicinity of the opening 21 in the slit portion 20 along the direction in which the opening 21 extends.
- the outer edge of the finger guide portion 15a constitutes the outer edge of the opening 21 of the slit portion 20.
- the finger guide portion 15a abuts on the fingertip 201 to move the applicator 1. Guide.
- the finger guide portion 15a guides the movement of the coating tool 1 in the work of applying the coating liquid 110 to the toe portion 220.
- the finger guide portion 15a guides the movement of the applicator 1 from one end of the fingertip 201 of the applicator 1 to the other end in the work of applying the coating liquid 110 to the toe portion 220.
- the finger guide portion 15a is formed on the end face of the non-applying portion 15 through which the coating liquid 110 does not permeate or permeate, the finger guide portion 15a is moved when the coating tool 1 for applying the coating liquid 110 to the toe portion 220 is moved. It prevents the coating liquid 110 from adhering to the fingertip 201 that slides and moves relatively in contact with the 15a.
- the finger guide unit 15a functions as an operation unit for pressing the non-applied unit 15 because the non-applied unit 15 is arranged so as to be able to transmit an operation from the outside to the supply unit 60.
- the non-applied portion 15 moves to the supply section 60 side, and the pressing operation is transmitted to the supply section 60 (pressing receiving section 61).
- FIG. 4A shows a top view of the coating member 10 of the present embodiment.
- the slit portion 20 in the coating member 10 of the present embodiment is formed in a curved shape in which the shape of the opening portion 21 swells toward the coating portion 11.
- the coating member 10 of the present embodiment has a curved slit portion 20 corresponding to the shape of the toe portion 220.
- FIG. 4B shows a top view of the coating member 10A of the modified example A.
- the slit portion 20A in the coating member 10A of the modified example A is formed in a curved shape in which the shape of the opening portion 21A further swells toward the coating portion 11A.
- the opening portion 21A is formed in a curved shape having a larger degree of curvature than the opening portion 21 of the present embodiment.
- the coating member 10A of the modification A has a curved slit portion 20A corresponding to the shape of the more curved toe portion 220.
- FIG. 4C shows a top view of the coating member 10B of the modified example B.
- the slit portion 20B in the coating member 10B of the modified example B is formed so that the position of the opening 21B is on the left side in FIG. 4C with respect to the coating member 10 of the present embodiment. ..
- the slit portion 20B is formed at a position where the coating portion 11B has a narrower width (length in the radial direction) than the coating portion 11 (see FIG. 4A) of the coating member 10.
- the coating portion 11B in the modified example B is formed so as to have higher deformability than the coating portion 11 in the present embodiment.
- FIG. 4D shows a top view of the coating member 10C of the modified example C.
- the shape of the opening portion 21C is formed linearly.
- FIG. 4 (e) shows a top view of the coating member 10A1 of the modified example A1.
- the slit portion 20A1 in the coating member 10A1 of the modified example A1 has a shape in which the coating portion 11A1 and the non-coating portion 15A1 are in contact with each other on both ends of the opening portion 21A1.
- the slit portion 20A1 in the modified example A1 is formed such that the coated portion 11A1 and the non-coated portion 15A1 are separated from each other in the central portion, and the coated portion 11A1 and the non-coated portion 15A1 are in contact with each other on both ends.
- the degree of curvature of the coated surface 21A1 on the coated portion 11A side is increased so that both ends of the coated surface 22A1 come into contact with the non-coated portion 15A1.
- the coating liquid 110 is also suitable for both ends of the toe portion 220 where it is difficult to apply the coating liquid 110. Can be applied.
- FIG. 4 (f) shows a top view of the coating member 10A2 of the modified example A2.
- the slit portion 20A2 in the coating member 10A2 of the modified example A2 has a shape in which the width is narrow at the central portion of the opening 21A2 and the width is wide at both ends.
- the coated portion 11A2 and the non-coated portion 15A2 are arranged closer to each other in the central portion, and the coated portion 11A2 and the non-coated portion 15A2 are arranged on both ends. However, they are arranged more apart.
- the degree of curvature on the coated surface 22A2 on the coated portion 11A2 side is reduced, and the non-coated portion 15A2 is arranged close to the coated portion 11A2.
- the modification A2 since the width of both ends of the opening 21A2 is wide, the toe portion 220 can be easily inserted. Further, according to the modified example A2, since the width of the central portion of the opening 21A2 is narrowed, the coating liquid 110 can be suitably applied so as to firmly sandwich the inserted toe portion 220.
- FIG. 4 (g) shows a top view of the coating member 10A3 of the modified example A3.
- the slit portion 20A3 in the coating member 10A3 of the modified example A3 has a shape in which the width on both end sides of the opening portion 21A3 is very wide.
- the non-coated portion 15A3 has a cylindrical shape (circular when viewed from above).
- the slit portion 20A3 in the modified example A3 has the coated portion 11A3 and the non-coated portion 15A3 arranged more apart from each other on both ends.
- the non-coated portion 15A3 has a cylindrical shape (circular in top view) having a diameter (diameter) smaller than the diameter (diameter) of the coated portion 11A3.
- the width of both ends of the opening 21A3 is very wide, so that the toe portion 220 is easier to insert.
- the non-applied portion 15A3 is cylindrical (circular in the top view)
- the toe portion is in a state where the inner side surface of the toe portion 220 is in contact with the side surface of the non-applied portion 15A3.
- FIG. 5A shows a cross-sectional view (AA cross-sectional view in FIG. 4A) of the coating member 10 of the present embodiment.
- the cross-sectional view in the following modification is a cross-sectional view corresponding to the cross-sectional view taken along the line AA of FIG. 4A in the top view (not shown) in each modification.
- the inner surface of the coating portion 11 and the inner surface of the non-coating portion 15 are arranged substantially in parallel, and the bottom surface 27 is both.
- the bottom surface 27 of the slit portion 20 is formed by a part of the coating portion 11.
- the coating portion 11 is formed so that the end surface 6 side opposite to the end surface 5 of the coating member 10 becomes thicker in the radial direction.
- the coating member 10D of the modified example D has the same basic structure as the coating member 10 of the present embodiment, but the slit portion 20D is the slit portion of the present embodiment.
- the coating member 10D of the modified example D can form, for example, a coating line having a narrower width than the coating member 10 of the present embodiment.
- the coating member 10E of the modified example E has the same basic structure as the coating member 10 of the present embodiment, but has the length of the coating portion 11E (coating member 10E).
- the end surface 11aE of the coating portion 11 is arranged so as to project in the longitudinal direction from the finger guide portion 15a which is the end surface of the non-coating portion 15 (arranged on the upper side in FIG. 5C).
- the coating member 10D of the modified example D can form, for example, a coating line having a wider width than the coating member 10 of the present embodiment.
- the coating member 10D of the modification D can form, for example, a (wide) coating line in a region including a part of the central portion of the nail in addition to the toe portion 220.
- the coating member 10F of the modified example F has the same basic structure as the coating member 10 of the present embodiment, but the bottom surface 27F of the slit portion 20F is a non-coated portion. It is a modified example different in that it is formed by a part of 15F. The non-coated portion 15F is formed so that the end surface 6F side opposite to the end surface 5 of the coating member 10F becomes thicker in the radial direction.
- the coating member 10G of the modified example G is the coating member 10 of the present embodiment in that the coating portion 11G and the non-coating portion 15G are bonded by the bonding portion 19.
- the coating member 10G is a modified example different in that the width of the slit portion 20G is formed to be narrower than the width of the slit portion 20 of the present embodiment.
- the bottom surface 27G of the slit portion 20G is composed of the upper surface of the bonding portion 19.
- the adhesive portion 19 may be made of a material that can permeate or impregnate the coating liquid 110, or may be made of a material that does not permeate or impregnate the coating liquid 110.
- the coating member 10H of the modified example H is a modified example different in that the coated surface 22H, which is the outer surface of the coated portion 11H, is inclined with respect to the longitudinal direction. ..
- the coating member 10H is a different modification in that the inner surface surface (coating surface 22H) of the slit portion 20H on the coating portion 11H side is inclined so as to be separated from the non-coating portion 15H toward the end surface 5H side.
- the coating member 10H of the modified example H can be more preferably coated on the tip end side of the toe portion 220 than the coating member 10 of the present embodiment.
- the supply unit 60 is configured to be able to supply the coating liquid 110 contained in the storage unit 120 to the coating unit 11 in response to the operation transmitted from the non-coating unit 15.
- the supply unit 60 absorbs the pressing unit 61, the lid portion 63 connected to the pressing receiving unit 61 and moves integrally, and the coating liquid 110 from the liquid passing hole 122 of the accommodating unit 120, and is applied to the coating unit 11. It has a liquid absorbing portion 65 capable of supplying the liquid 110.
- the pressing receiving portion 61 is arranged between the coating member 10 (coating portion 11, non-coating portion 15) and the accommodating portion 120.
- the pressing receiving unit 61 receives a pressing operation on the non-applied unit 15.
- the pressing receiving portion 61 is configured to be pressed by the non-applied portion 15 that moves in response to the pressing operation and to move toward the accommodating portion 120.
- the pressing receiving portion 61 is held in a normal position (position shown in FIG. 1) by a liquid absorbing portion 65 made of a sponge material or the like in a normal state, but is moved to the accommodating portion 120 side due to the movement of the non-applied portion 15. Moved to the supply position.
- the lid portion 63 is also moved from the closed position to the open position, which will be described later.
- the lid portion 63 moves integrally with the connected pressing receiving portion 61.
- the lid portion 63 is connected to the pressing receiving portion 61 by a connecting portion 62 inserted through a through hole formed in the liquid absorbing portion 65.
- the lid portion 63 is located at a closed position that closes the liquid passage hole 122 of the accommodating portion 120 in a state where the pressing receiving portion 61 is located at the normal position, and the liquid absorbing portion 65 of the coating liquid 110 accommodated in the accommodating portion 120. Regulate the passage of liquid to the side.
- the lid portion 63 is located at an open position that does not block the liquid passage hole 122 of the accommodating portion 120 in a state where the pressing receiving portion 61 is located at the supply position. As a result, the coating liquid 110 accommodated in the accommodating portion 120 is supplied to the liquid absorbing portion 65 via the liquid passing hole 122.
- the liquid absorbing unit 65 is configured to be able to absorb the coating liquid 110 from the liquid passing hole 122 of the accommodating unit 120 and supply the coating liquid 110 to the coating unit 11. Further, in the present embodiment, the liquid absorbing portion 65 has a function of holding the pressing receiving portion 61 and the lid portion 63 at predetermined positions. The liquid absorbing portion 65 absorbs and holds the coating liquid 110 supplied from the liquid passing hole 122 by moving the lid portion 63 to the open position by the pressing operation on the non-applied portion 15. Then, the liquid absorbing unit 65 is configured to be able to supply the held coating liquid 110 to the coating unit 11.
- the liquid absorbing portion 65 may directly contact the coating portion 11 to supply the coating liquid 110, or may supply the coating liquid 110 via a liquid absorbing supply member (not shown) arranged between the liquid absorbing portion 65 and the coating portion 11.
- the coating liquid 110 may be indirectly supplied to the water.
- the accommodating portion 120 accommodating the coating liquid 110 is accommodated and arranged in the main body portion 105 of the outer cylinder portion 100.
- the accommodating unit 120 is configured to be able to supply the coating liquid 110 to the coating unit 11 via the above-mentioned supply unit 60.
- the accommodating unit 120 of the present embodiment is unitized with the supply unit 60. When the coating liquid 110 runs out, it can be easily and integrally replaced. Further, by exchanging the accommodating portion 120 before the start of use, it is possible to use coating liquids having different colors and properties.
- the outer cylinder portion 100 accommodates the coating member 10, the accommodating portion 120, and the supply portion 60.
- the outer cylinder portion 100 has a tip portion 101 and a main body portion 105.
- the tip portion 101 holds the coating member 10.
- the tip portion 101 holds the coating member 10 by a plurality of holding portions 130 formed on the inner side surface.
- the tip portion 101 holds the coating member 10 in a state where the end surface 5 is exposed to the outside. Further, the tip portion 101 holds the coating member 10 in a state where the end portion on the end face 5 side is projected from the end portion of the tip portion 101.
- the coating operator holds the coating tool 1 at a predetermined angle and inserts the toe portion 220 into the slit portion 20. Since the shape of the opening 21 in the slit portion 20 is curved, the toe portion 220 is smoothly inserted.
- the slit portion 20 is deformed according to the size and shape of the toe portion 220.
- the slit portion 20 (coating portion 11) is deformed so that the coating surface 22 is in surface contact with the surface of the toe portion 220.
- the normal state shown in FIG. 7 (a) is transformed into the used state shown in FIG. 7 (b) or FIG. 7 (c).
- FIG. 7B is a diagram showing a state in which the toe portion 220A of the index finger is inserted, and the slit portion 20 (coating portion 11) is deformed corresponding to the shape of the wide toe portion 220A.
- FIG. 7C is a diagram showing a state in which the little finger toe portion 220B is inserted, and the slit portion 20 (applied portion 11) is deformed corresponding to the shape of the toe portion 220B having a narrow width and a large degree of curvature. do.
- the applicator 1 is configured to be compatible with toe portions having different sizes and shapes by appropriately deforming the slit portion 20 (applying portion 11).
- the coating operator brings the fingertip 201 into contact with the finger guide portion 15a.
- the tip (outer edge) of the toe portion 220 does not abut on the bottom surface 27 of the slit portion 20.
- the applicator moves the applicator 1 along the outer edge of the toe portion 220 with the toe portion 220 inserted in the slit portion 20.
- the applicator 1 can form a curved coating line with a predetermined width on the toe portion 220.
- the coating tool 1 can form a coating line on the entire surface of the toe portion 220.
- the coating operator inserts the slit portion 20 into the slit portion 20 from one end side of the toe portion 220 so that the coating tool 1 rotates along the outer edge of the toe portion 220.
- the operation (deformation) of the coating member when it is moved to the other end side will be described.
- the coating member 10 changes from the normal state of FIG. 9A to the deformed state of FIG. 9B. do. Specifically, as shown in FIG. 9B, the slit portion 20 (coating portion 11) is deformed so that the width of one end 20a side is widened.
- the slit portion 20 (coating portion 11) is deformed so that the coating surface 22 comes into surface contact with the surface of the toe portion 220 inserted at one end on the 20a side.
- the coating worker rotates the coating tool 1 from one end side to the tip side along the outer edge of the toe portion 220, so that the coating member 10 is moved from the deformed state of FIG. 9B to FIG. 9 (b). It changes to the deformed state of c). Specifically, as shown in FIG. 9C, the slit portion 20 (coating portion 11) is deformed so as to correspond to the shape of the toe portion 220. The slit portion 20 (coating portion 11) is deformed so that the coating surface 22 comes into surface contact with the entire surface of the toe portion 220.
- the coating worker rotates the coating tool 1 from the tip end side to the other end side along the outer edge of the toe portion 220, so that the coating member 10 is moved from the deformed state of FIG. 9 (c) to FIG. It changes to the deformed state of (d).
- the slit portion 20 (coating portion 11) is deformed so that the width on the other end 20b side is widened.
- the slit portion 20 (coating portion 11) is deformed so that the coating surface 22 comes into surface contact with the surface of the toe portion 220 inserted on the other end 20b side.
- the coating worker pulls out the other end side of the toe portion 220 from the other end 20b side of the slit portion 20, so that the coating member 10 is in the deformed state of FIG. 9 (d) to the normal state of FIG. 9 (e). Changes to.
- the coating surface 22 has a toe tip corresponding to the size, shape and movement of the toe portion 220 inserted into the slit portion 20. It is configured to be deformable so as to maintain a state of surface contact with the surface of the portion 220.
- the coating tool 1J of the modified example J With reference to FIG. 10, a method of using the coating tool 1J of the modified example J will be described.
- the depth of the slit portion 20J is shallower than that of the slit portion 20 of the present embodiment, and the end surface of the non-applied portion 15J (finger guide portion 15Ja, not shown) is higher than the end surface of the coating portion 11J (longitudinal direction).
- the coating tool 1J is a modified example suitable for forming a coating line having a narrow coating region.
- the coating operator inserts the toe portion 220 into the slit portion 20J of the coating tool 1J. Since the shape of the opening 21 in the slit portion 20J is curved, the toe portion 220 is smoothly inserted.
- the coating operator brings the fingertip 201 into contact with the finger guide portion 15a.
- the tip (outer edge) of the toe portion 220 abuts on the bottom surface of the slit portion 20J.
- the applicator moves the applicator 1J so as to rotate along the outer edge of the toe portion 220 in a state where the toe portion 220 is inserted into the slit portion 20J.
- a curved coating line having a predetermined width can be formed on the toe portion 220.
- a coating line having a predetermined width can be formed not on the entire toe portion 220 but on the outer edge side of the toe portion 220.
- FIG. 11 will explain the coating tool 1K of the modified example K.
- the applicator 1K is a modified example different from the applicator 1 of the present embodiment in that the non-applied portion 15K is integrally configured with the outer cylinder portion 100K (tip portion 101K).
- the applicator 1K is an applicator capable of integrally forming a non-applied portion 15K and an outer cylinder portion 100K.
- the finger guide portion 15Ka which is the end surface of the non-applied portion 15K, and the end portion of the outer cylinder portion 100K (tip portion 101K) are formed so as to form continuous identical surfaces. Therefore, the area of the finger guide portion 15Ka can be increased.
- the finger guide portion 15Ka which is the end surface of the non-applied portion 15K, and the end portion of the outer cylinder portion 100K (tip portion 101K) may not form the same surface.
- the coating tool of the present embodiment may be used. It may be the same as the positional relationship in 1.
- the coating tool 1K of the modified example K may have another member for operating the supply unit 60K.
- the applicator 1K adjusts the positional relationship and shape of the supply unit 60K, the accommodating unit 120K, and the outer cylinder portion 100K, and presses the finger guide portion 15Ka against the non-applied portion 15K and the outer cylinder portion 100K. All or part of it may be configured to move to operate the supply unit 60K.
- the applicator is placed in contact with the coating portion capable of impregnating the coating liquid or impregnated with the coating liquid and facing the coating portion or separated by a predetermined distance, and impregnates the coating liquid.
- the coating portion capable of impregnating the coating liquid or impregnated with the coating liquid and facing the coating portion or separated by a predetermined distance, and impregnates the coating liquid.
- the outer surface of the coated portion which is arranged so as to form the inner surface of the slit portion. It has a coating surface on which the coating liquid can be applied by a surface contact with the surface of the inserted toe portion. As a result, the coating operator can easily apply the coating liquid to the toe portion with a constant width by inserting the toe portion into the slit portion.
- the slit portion can guide the relative movement between the inserted toe portion and the coating tool (coating member).
- the coating worker can easily move the inserted toe portion and the coating tool (coating member) relative to each other, for example, by moving the coating tool toward the outer edge of the toe portion, so that the coating tool is easily fixed to the toe portion.
- the coating liquid can be applied with the width of.
- the applicator further has a finger guide portion arranged in a region where the fingertip abuts when the toe portion is inserted into the slit portion on the outer surface of the non-applied portion.
- the coating operator can easily apply the coating liquid to the toe portion with a constant width.
- a coating worker can easily form a coating line with a constant width on the toe even when working with a non-dominant hand.
- the coating tool is configured to be able to form a coating line on the toe portion without adhering the coating liquid on the fingertip.
- the finger guide portion abuts on the fingertip to cover the applicator. Guide the movement.
- the coating operator can easily apply the coating liquid to the toe portion with a constant width.
- a coating worker can easily form a coating line with a constant width on the toe even when working with a non-dominant hand.
- the coating tool is configured to be able to form a coating line on the toe portion without adhering the coating liquid on the fingertip.
- the coated member (coated portion and non-coated portion) has a substantially cylindrical shape extending in the longitudinal direction (first direction), and the slit portion is an end face (first direction) in the longitudinal direction (first direction). Placed at the end).
- the applicator further has an outer cylinder portion for accommodating the coating member (applied portion and non-applied portion) in a partially exposed state, and the opening of the slit portion is a portion exposed from the outer cylinder portion. Is located in.
- the coating liquid can be easily applied to the toe portion with a constant width.
- the applicator becomes a pen-type applicator, and the applicator workability is improved. This is particularly suitable for a coating worker who has become accustomed to a penta-type coating tool.
- the opening in the slit portion has a curved shape that swells toward the coating portion.
- the coating worker can easily insert the toe portion into the slit portion.
- the applicator simplifies the application work and simplifies the work of applying the coating liquid to the toe portion with a certain width.
- the applicator is configured to be able to apply the coating liquid to the surface of the toe portion so as to sandwich the toe portion inserted (by the coated portion and the non-applied portion) by the slit portion. ..
- the applicator can apply the coating liquid to the surface of the toe portion and sandwiches the toe portion inserted by the slit portion, so that the coating work can be suitably performed.
- the applicator moves the applicator so as to rotate along the outer edge of the toe to apply the applicator, but since the toe is sandwiched between the slits, the applicator may shake. It is difficult to do, and a clean application line can be formed.
- the slit portion (applied portion, non-applied portion and coated surface) has a function of guiding the movement of the applicator together with the finger guide portion.
- the applicator is configured so that the coated portion is more flexible than the non-applied portion.
- the coated portion is adjusted to have higher elastic deformability (compression and expansion / contraction) than the non-coated portion by adjusting the material, shape, shape of the slit portion, and the like.
- the coating portion is configured to have the flexibility to deform according to the size, shape and movement of the toe portion inserted into the slit portion. Thereby, the coating operator can suitably apply the coating liquid to the toe portion with a constant width by inserting the toe portion into the slit portion.
- the applicator is pressed against the surface of the toe portion when the applicator is in a state where the toe portion is inserted into the slit portion and the applicator and the toe portion are relatively moved. It is configured to be deformed and maintain a state in which the coated surface is in surface contact with the surface of the toe portion.
- the coating operator can suitably apply the coating liquid to the toe portion with a constant width by inserting the toe portion into the slit portion.
- the coating tool has an accommodating portion for accommodating the coating liquid and a supply portion capable of supplying the coating liquid contained in the accommodating portion to the coating portion.
- the applicator can be used for a long period of time.
- the coating tool can suitably hold the coating liquid in the coating portion, the coating liquid can be more preferably applied to the toe portion with a constant width.
- the non-applying portion is arranged so that the operation from the outside can be transmitted to the supply unit, and the supply unit accommodates the application in response to the operation transmitted from the non-applying portion. It is configured so that the liquid can be supplied to the coating part.
- the coating tool can supply the coating liquid to the coating portion by the coating operator pressing the non-applying portion (finger guide portion).
- the applicator is configured so that, for example, the coating liquid can be supplied to the coating portion by a simple operation during the coating operation. As a result, the applicator further improves the coating workability.
- the non-applied portion of the applicator may be connected or fixed to the outer cylinder portion (tip portion).
- the applicator is excellent in manufacturability because the non-applied portion can be integrally molded with the outer cylinder portion.
- the applicator can be formed so that the finger guide portion, which is the end surface of the non-applied portion, and the end portion of the outer cylinder portion (tip portion) form a continuous and identical surface. As a result, the area of the finger guide portion 15Ka can be increased. As a result, the applicator can more easily apply the coating liquid to the toe portion with a constant width.
- the present invention is not limited to the above-described embodiment, and modifications, improvements, and the like to the extent that the object of the present invention can be achieved are included in the present invention.
- the number of slits is one, but the number of slits is not limited to one, and the number of slits may be plural.
- the outer circumferences of the openings of the slit portions facing each other have substantially the same shape, but the outer circumferences are not limited to this, and may be outer circumferences having different degrees of curvature. That is, the inner side surfaces of the slit portions facing each other may have curved surface shapes different from each other. In other words, the outer surface (applied surface) of the coated portion constituting the inner surface of the slit portion and the outer surface of the non-applied portion constituting the inner surface of the slit portion may have different curved surface shapes. These shapes can be appropriately adjusted from the viewpoint of applicability to the toe portion.
- the end face of the coating portion is on a flat surface, but the present invention is not limited to this, and may be a curved surface.
- the outer edge of the end surface of the coating portion 11L may be formed so as to have a curved surface in which the central portion protrudes. ..
- the groove in the central portion of the slit portion is deep and the end portion side is shallow, corresponding to the shape of the toe portion, and the coating liquid can be suitably applied to the toe portion.
- FIG. 12 when viewed from the side of the non-applied portion 15L in the coating tool 1L, the outer edge of the end surface of the coating portion 11L may be formed so as to have a curved surface in which the central portion protrudes. ..
- the groove in the central portion of the slit portion is deep and the end portion side is shallow, corresponding to the shape of the toe portion, and the coating liquid can be suitably applied to the toe portion.
- the non-applied portion 15L is arranged so as to project 1 to 5 mm from the outer cylinder portion 100L, and the coated portion 11L is arranged so as to further project 0 to 15 mm from the non-applied portion 15L.
- the coating member 10 (coating portion 11) is accommodated and arranged so as to project from the outer cylinder portion 100 by 0 to 20 mm.
- the end face of the non-coated portion is formed in a planar shape parallel to the lateral direction (diametrical direction, horizontal direction in each drawing) of the non-coated portion, but the present invention is not limited to this, and for example. , It may be formed by a combination of a plurality of planes having a curved shape or a different inclination angle with respect to the lateral direction.
- the end surface (finger guide portion 15a) of the non-coated portion 15 is inclined toward the other end side (downward in FIG. 13) toward the coated portion 11L side (slit side). It may be configured to include a curved surface or a flat surface.
- the finger guide portion 15aL may be inclined so that a part of the coating portion 11L side (slit side) faces downward in the side view (LL cross section).
- the finger guide portion 15aL has a shape corresponding to the shape of the fingertip to be abutted, and the surface of the toe portion is arranged parallel to the coating surface in a state where the fingertip is in contact with the finger guide portion 15aL, and the toe portion The surface of the surface can be brought into close contact with the coated surface.
- the applicator can suitably apply the coating liquid to the toe portion.
- the non-applied portion may have one or a plurality of grooves formed on the outer surface.
- the plurality of grooves may be formed along the longitudinal direction of the non-applied portion, may be formed along the lateral direction (outer peripheral direction), and may be formed so as to intersect in the longitudinal direction or the lateral direction. It may have been done.
- the one or more grooves are formed so as to be able to hold the coating liquid.
- the groove portion is formed so as to be able to hold the coating liquid supplied to the coating portion.
- the applicator applying member
- the groove portion holds the coating liquid by utilizing the capillary phenomenon, and is formed so that the coating time in the coating tool (coating portion) can be adjusted.
- the operation from the outside to the non-applied portion is not limited to the pressing operation, and for example, the operation content set so that the supply unit can accept such as a pulling operation, a slide operation, a rotation operation, and a twisting operation. If so, it is not particularly limited.
- the above-mentioned coating tool can suppress evaporation of the coating liquid from the coating portion, and the coating tool may further have a removable cap portion.
- Coating tool 5 End surface 10 Coating member 11 Coating part 15 Non-coating part 15a Finger guide part 20 Slit part 21 Opening part 22 Coating surface 60
- Supply part 100 Outer cylinder part 101 Tip part 110 Coating liquid 120 Storage part 220 Toe part
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Abstract
Priority Applications (1)
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KR1020227025132A KR102809299B1 (ko) | 2020-11-05 | 2021-10-29 | 도포구 |
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JP2020185468A JP2022074977A (ja) | 2020-11-05 | 2020-11-05 | 塗布具 |
JP2020-185468 | 2020-11-05 |
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Citations (5)
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JPH0515409A (ja) * | 1991-03-08 | 1993-01-26 | Rodriguez Manuel Garcia | ネールマニキユア塗布用具 |
FR2836029A1 (fr) * | 2002-02-21 | 2003-08-22 | Oreal | Dispositif pour appliquer un produit sur les ongles |
JP2006204332A (ja) * | 2005-01-25 | 2006-08-10 | Aubex Corp | ネイルアート用塗布具 |
WO2013105669A1 (fr) * | 2012-01-13 | 2013-07-18 | 三菱鉛筆株式会社 | Outil applicateur |
US20200205546A1 (en) * | 2017-10-26 | 2020-07-02 | Outinfutures Co., Ltd. | Eye liner |
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JPS6145272B2 (fr) * | 1981-12-04 | 1986-10-07 | Burroughs Corp | |
US20170112260A1 (en) * | 2015-10-23 | 2017-04-27 | Connie Stanton | Nail Polishing Assembly |
-
2020
- 2020-11-05 JP JP2020185468A patent/JP2022074977A/ja active Pending
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2021
- 2021-10-29 WO PCT/JP2021/040179 patent/WO2022097591A1/fr active Application Filing
- 2021-10-29 KR KR1020227025132A patent/KR102809299B1/ko active Active
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Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
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JPH0515409A (ja) * | 1991-03-08 | 1993-01-26 | Rodriguez Manuel Garcia | ネールマニキユア塗布用具 |
FR2836029A1 (fr) * | 2002-02-21 | 2003-08-22 | Oreal | Dispositif pour appliquer un produit sur les ongles |
JP2006204332A (ja) * | 2005-01-25 | 2006-08-10 | Aubex Corp | ネイルアート用塗布具 |
WO2013105669A1 (fr) * | 2012-01-13 | 2013-07-18 | 三菱鉛筆株式会社 | Outil applicateur |
US20200205546A1 (en) * | 2017-10-26 | 2020-07-02 | Outinfutures Co., Ltd. | Eye liner |
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KR102809299B1 (ko) | 2025-05-16 |
KR20220125261A (ko) | 2022-09-14 |
JP2024040267A (ja) | 2024-03-25 |
JP2022074977A (ja) | 2022-05-18 |
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