EP2478793B1 - One-Touch-Kunstnagel - Google Patents

One-Touch-Kunstnagel Download PDF

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Publication number
EP2478793B1
EP2478793B1 EP20120157325 EP12157325A EP2478793B1 EP 2478793 B1 EP2478793 B1 EP 2478793B1 EP 20120157325 EP20120157325 EP 20120157325 EP 12157325 A EP12157325 A EP 12157325A EP 2478793 B1 EP2478793 B1 EP 2478793B1
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EP
European Patent Office
Prior art keywords
nail
double
sided adhesive
adhesive tape
cohesive
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EP20120157325
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English (en)
French (fr)
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EP2478793A1 (de
Inventor
Sung Yong Chang
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Individual
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Individual
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Priority claimed from KR1020100139071A external-priority patent/KR101164554B1/ko
Priority claimed from KR1020110112255A external-priority patent/KR101226696B1/ko
Application filed by Individual filed Critical Individual
Publication of EP2478793A1 publication Critical patent/EP2478793A1/de
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Publication of EP2478793B1 publication Critical patent/EP2478793B1/de
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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
    • A45D31/00Artificial nails

Definitions

  • the present disclosure relates to a one-touch artificial nail, and more particularly, to a one-touch artificial nail capable of preventing a gap from being generated between an artificial nail and a double-sided adhesive tape body when being attached to the artificial nail, and capable of preventing a release tape from being detached from the double-sided adhesive tape body during a manufacturing process.
  • the glossiness by the nail polish has glossiness of about 40 according to the glossiness test result of ASTM D523.
  • ASTM D523 the glossiness test result of ASTM D523.
  • this corresponds to the case where nail polishing is applied to a smooth surface.
  • a base coat, a nail polish, and a top coat should be applied to the nail in order, and the nail polish should be applied one or two times to give an inherent color of the nail polish.
  • a solution corresponding to a next step may be applied after a solution corresponding to a previous step is dried.
  • a general double-sided adhesive tape 5 has a planar shape as shown in FIG. 1 . Therefore, when the double-sided adhesive tape 5 is attached to an artificial nail 1 having a curved shape, air enters between the double-sided adhesive tape 5 and the artificial nail 1 to form a bubble layer B so that the area where the double-sided adhesive tape 5 is adhered to the artificial nail 1 decreases. Therefore, the adhesive force which maintains a state where the double-sided adhesive tape 5 is attached to the artificial nail 1 is deteriorated.
  • the release tape 4 maintains a state of being attached to the double-sided adhesive tape 5, in a case where the release tape 4 has a greater inertia of maintaining a planar shape than the double-sided adhesive tape 5, the release tape 4 applies a force to make the double-sided adhesive tape 5 planar, and as time goes, a gap is generated between the artificial nail 1 and the double-sided adhesive tape 5.
  • US 7 185 660 and JP 3 110 401 disclose an artificial nail comprising a nail body, a design layer, a double-sided adhesive tape body and a release tape.
  • a one-touch artificial nail which may apply glossiness and design of a nail polish to a nail, may be easily attached to a nail even by a beginner, may maintain an adhesive force even though being applied to an artificial nail having a curved shape, may prevent a pop-up phenomenon of a release tape, and may minimize sticking of impurities.
  • An embodiment of the present disclosure is directed to providing a one-touch artificial nail, which takes a shortest time in decorating a nail, allows adhesion to a nail without bubble or wrinkle, prevents a pop-phenomenon of a release tape, and minimizes sticking of impurities.
  • an artificial nail which comprises a nail body; a design layer formed at an upper portion of the nail body; a double-sided adhesive tape body formed at a lower portion of the nail body; and a release tape located at a lower portion of the double-sided adhesive tape body, wherein the nail body includes a first end to be located adjacent to a free edge side of a nail, a second end to be located adjacent to a cuticle side of the nail, and an adhesive surface formed at a location facing the nail, wherein the double-sided adhesive tape body includes a plurality of non-connecting portions where a plurality of first cutting lines are formed, and connecting portions formed between the first cutting lines so that the plurality of non-connecting portions are not separated off from each other, wherein the double-sided adhesive tape body is formed at the lower portion of the nail body except for a non-cohesive rim portion of the lower portion of the nail body; the non-cohesive rim portion includes a first non-cohesive rim portion at the
  • the second cutting lines are preferably formed at the same locations as the plurality of first cutting lines in a vertical direction.
  • the one-touch artificial nail may further include a coating layer provided at the upper portion of the design layer, and the adhesive force of the coating layer and the ink applied to the design layer is preferably 30% or less as a result of a coating adhesive force test by ASTM D3359.
  • the coating layer preferably has glossiness of 50 or above as a result of a glossiness test by ASTM D523.
  • the coating layer preferably has hardness of 1 B or above as a result of a pencil hardness test by ASTM D3363.
  • the double-sided adhesive tape body preferably has a peeling strength of 300 gf/10mm or above as a result of a 180° peeling strength test using SUS by ASTM D903.
  • the double-sided adhesive tape body preferably has a peeling strength of 100 gf/10mm or above as a result of a 90° peeling strength test using ABS by ASTM D903.
  • the second cutting line is preferably formed to extend till the outer circumference of the release tape.
  • the release tape preferably has a tensile strength of 5 kg/cm 2 or above.
  • the release tape preferably has a thickness of 30 ⁇ m to 300 ⁇ m.
  • the double-sided adhesive tape body preferably has a thickness of 150 ⁇ m to 800 ⁇ m.
  • the release tape preferably has a releasing force of 5 gf/50mm to 500 gf/50mm.
  • the release tape is preferably made of any one of PE, EVA, PP, POE, and PET, or their copolymers or blends.
  • the double-sided adhesive tape body preferably includes a substrate layer, and cohesive layers respectively coupled to upper and lower portions of the substrate layer.
  • the cohesive layer may include a first cohesive layer located at the upper portion of the substrate layer and a second cohesive layer located at the lower portion of the substrate layer, and the first cohesive layer and the second cohesive layer preferably have different cohesive forces.
  • the substrate layer is preferably made of any one of PET, PE, PP, EVA, POE, and non-woven fabric.
  • the one-touch artificial nail may be attached to an artificial nail without bubbles or winkles, it is possible to prevent the adhesive area from decreasing, thereby improving the cohesive force. Therefore, the one-touch artificial nail may be easily applied to wearers having different nail curvatures. In addition, since the one-touch artificial nail does not separate due to wrinkles, it is possible to prevent hair or impurities from being caught between the one-touch artificial nail and the artificial nail and to improve wear sensation.
  • the one-touch artificial nail generally includes an artificial nail unit 200 having a nail body 210 substituting for the shape of a nail and a design layer 220, and a double-sided adhesive tape body 110 and a release tape 120 used for attaching the artificial nail unit 200 to the nail.
  • a first cutting line 114 and a second cutting line 124 are respectively formed at the double-sided adhesive tape body 110 and the release tape 120.
  • the first cutting line 114 and the second cutting line 124 are respectively formed through the double-sided adhesive tape body 110 and the release tape 120.
  • the double-sided adhesive tape body 110 and the release tape 120 having a planar shape are attached to the nail body 210 having a curved shape, air located between the nail body 210 and the double-sided adhesive tape body 110 is discharged out through the first cutting line 114 and the second cutting line 124. Therefore, the area where the double-sided adhesive tape for an artificial nail contacts the artificial nail increases, and a cohesive force is improved than the existing case. Further, since the first cutting line 114 and the second cutting line 124 are formed with a linear shape, the rigidity of the double-sided adhesive tape may be maintained. In other words, during a process where the release tape 120 is detached from the double-sided adhesive tape body 110, it is possible to prevent the double-sided adhesive tape body 110 from being torn. In addition, since the area of the release tape 120 is greater than the area of the double-sided adhesive tape body 110, it is possible to prevent impurities from being stuck to the double-sided adhesive tape.
  • FIGS. 2a and 2b are a perspective view and a cross-sectional view showing a one-touch artificial nail according to an embodiment of the present disclosure
  • FIGS. 3a to 3c are front views showing various embodiments of the one-touch artificial nail according to the present disclosure.
  • the one-touch artificial nail includes a nail body 210, design layers 220 formed at the upper portion of the nail body 210, a double-sided adhesive tape body 110 formed at the lower portion of the nail body 210, and a release tape 120 located at the lower portion of the double-sided adhesive tape body 110.
  • the nail body 210 includes a one end 211 coupled to be located at a free edge side of the nail, the other end 213 coupled to be located at a cuticle side of the nail, and an adhesive surface 219 formed at a location facing the nail.
  • the double-sided adhesive tape body 110 includes a plurality of non-connecting portions (114a'), (114a") formed by cutting a plurality of first cutting lines 114, and a connecting portion 112a formed between the first cutting lines 114 so that the plurality of non-connecting portions (114a'), (114a") are not separated from each other.
  • the double-sided adhesive tape body 110 is formed except for a non-cohesive rim portion at the lower portion of the nail body 210;
  • the non-cohesive rim portion includes a non-cohesive rim portion at one end 211 of the nail body 210, a non-cohesive rim portion at the other end 213 of the nail body 210, and a non-cohesive rim portion at both sides 215 of the nail body 210;
  • the non-cohesive rim portion at one end 211 of the nail body 210 is a portion corresponding to 1/3 to 1/50 of the nail length from one end 211 of the nail body 210;
  • the non-cohesive rim portion at the other end 213 of the nail body 210 is a portion corresponding to 1/7 to 1/100 of the nail length from the other end 213 of the nail body 210;
  • the non-cohesive rim portion at both sides 215 of the nail body 210 is a portion corresponding to 1
  • the release tape 120 has a greater area than the double-sided adhesive tape body 110 and the double-sided adhesive tape body is attached to the upper portion of the release tape 120 so that the double-sided adhesive tape body 110 is not deviated from the release tape 120; a plurality of second cutting lines 124 are provided at the release tape 120 to pass through the upper and lower surfaces of the release tape 120; and the release tape 120 has a grip 122 connecting to and protruding from the outer circumference at one end 211 of the nail body 210.
  • the nail body 210 corresponds to a nail shape and gives a regular nail shape to a wearer so that the overall shape of the nail of the wearer may be improved.
  • a design layer 220 painting a design to the nail body 210 is formed at the upper surface 217 of the nail body 210 which gives such an improved nail shape. In other words, if the nail body 210 gives an improved nail shape, the design layer 220 gives a painting effect using a nail polish or the like to the nail.
  • a coating layer 230 may be further provided to the upper portion of the design layer 220 in order to protect the surface and to enhance the glossiness which improves the appearance of the design.
  • the one-touch artificial nail according to the present disclosure When the one-touch artificial nail according to the present disclosure is manufactured, if all of the following conditions are not satisfied simultaneously, defects may be generated due to the separation of the release tape during an automated manufacturing process. In addition, during the process of attaching the artificial nail unit, a problem may occur in separation of the release tape, and, it has been also found that impurities are stuck to the artificial nail unit after the artificial nail unit is attached.
  • the non-cohesive rim portion located at one end 211 of the nail body 210 should be separated by 1/3 to 1/50 of the length of the nail body 210 from one end 211 of the nail body 210, ii) the non-cohesive rim portion at the other end 213 of the nail body 210 should be separated by 1/7 to 1/100 of the length of the nail body 210 from the other end 213 of the nail body 210, and iii) the non-cohesive rim portion located at both sides 215 of the nail body 210 should be respectively separated by 1/5 to 1/100 of the width of the nail body 210 from both sides 215 of the nail body 210.
  • the release tape 120 should have a greater area than the double-sided adhesive tape body 110 and the double-sided adhesive tape body should be attached to the upper portion of the release tape 120 so that the double-sided adhesive tape body 110 is not deviated from the release tape 120, v) second cutting lines 124 formed at the same locations as the plurality of first cutting lines 114 in a vertical direction should be provided at the release tape 120, and vi) the release tape 120 should have a grip 122 connecting at and protruding from the outer circumference at one end 211 of the nail body 210.
  • the cohesive force of the coating layer 230 and the ink applied to the design layer 220 is preferably 30% or less, as a test result of ASTM D3359 using a cross cut.
  • the area of the ink and the coating layer 230 detached after the test is preferably 30% or less.
  • the cohesive force of the coating layer 230 and the ink applied to the design layer 220 according to the present disclosure is preferably set to be 30% or less so that the coating layer 230 and the ink applied to the design layer 220 may be protected from the external force.
  • the hardness of the coating layer 230 according to the present disclosure is preferably 1 B or above. In other words, when an external force less than 1 B based on pencil hardness is applied to the coating layer 230 at ordinary life, a scratch is not created.
  • the hardness of the coating layer 230 is less than 1 B, if an external force less than 1 B based on pencil hardness is applied to the coating layer 230 at ordinary life, a scratch is created at the coating layer 230 to deteriorate the appearance of the one-touch artificial nail. Therefore, the hardness of the coating layer 230 is preferably 1 B or above so that the appearance of the one-touch artificial nail may be maintained while keeping ordinary life.
  • the glossiness of the coating layer 230 is preferably 50 or above.
  • the surface of the nail is minutely curved. Therefore, in a case where glossiness is applied thereto, the surface of the nail may be smoothly arranged and look to be even.
  • the coating layer 230 according to the embodiment of the present disclosure preferably has glossiness of 50 or above. In a case where the glossiness is less than 50, even though the surface is actually formed smooth, the surface of the nail body 210 is observed as being curved as if fine scratches are created. Therefore, in order to improve the appearance of the nail, in a case where an artificial nail is attached, the glossiness is preferably 50 or above.
  • the second cutting line 124 is formed at the release tape 120 to pass through the release tape 120. Since the first cutting line 114 and the second cutting line 124 cut a partial region of the double-sided adhesive tape body 110 and the release tape 120 formed with a planar shape, the inertia by which the double-sided adhesive tape body 110 and the release tape 120 applied to the artificial nail and the nail having a curved shape tend to recover a planar shape may be dispersed. Therefore, the state where the double-sided adhesive tape body 110 applied to the curved surface may continuously maintain its adhered state to the nail body 210 by the first cutting line 114 and the second cutting line 124.
  • the double-sided adhesive tape body 110 and the release tape 120 are applied to the nail body 210, their outer circumferential shapes also correspond to the shapes of the nail body 210 and the nail.
  • the name of the outer circumference of the double-sided adhesive tape body 110 changes depending on its location when being applied to the nail.
  • the outer circumference designates only a rim of the nail shape, and the regions divided by the first cutting line 114 and the second cutting line 124 do not correspond to the outer circumference.
  • the outer circumference of the side surface 115 does not have a "T" shape but has a "-" shape.
  • One end 111 of the double-sided adhesive tape body 110 is located at the free edge side of the nail, and the other end 113 is located at the cuticle side.
  • the side surface 115 is arranged to be located at the nail surface (nail wall) side of the nail.
  • the nail body 210 is attached to the upper surface 117 of the double-sided adhesive tape body 110, and the nail is attached to the lower surface 119.
  • the release tape 120 is detachably coupled to the lower surface 119 of the double-sided adhesive tape body 110. Therefore, at the adhesive surface 219 of the nail body 210, as shown in FIG. 2a , the double-sided adhesive tape body 110 and the release tape 120 formed with a flat plate shape are attached.
  • the first cutting line 114 and the second cutting line 124 may be installed at different locations depending on properties of the double-sided adhesive tape body 110 and the release tape 120. However, in order to prevent a gap from being created between the double-sided adhesive tape body 110 and the nail body 210, the second cutting line 124 may be formed at the same locations as the plurality of first cutting lines 114 in the vertical direction.
  • the first cutting line 114 formed at the double-sided adhesive tape body 110 and the second cutting line 124 formed at the release tape 120 not only disperse the inertia to restore their planar shape but also play a role of smoothly discharging the air between the double-sided adhesive tape body 110 and the nail body 210 during the process where the double-sided adhesive tape body 110 is attached to the nail body 210.
  • the nail body 210 has a curved shape
  • the double-sided adhesive tape body 110 has a planar shape. Therefore, in order to attach the double-sided adhesive tape body 110 having a planar shape to the nail body 210, the side surface 115 of the double-sided adhesive tape body 110 firstly contacts the side 215 of the nail body 210. By doing so, when the double-sided adhesive tape body 110 having a planar shape is attached to the nail body 210, a bubble layer is inevitably created between the double-sided adhesive tape body 110 and the nail body 210. In the present disclosure, in order to solve this problem, the air in the bubble layer may be discharged out by means of the first cutting line 114 and the second cutting line 124.
  • the air located between the double-sided adhesive tape body 110 and the nail body 120 may be easily discharged while passing through the first cutting line 114 and the second cutting line 124 in order.
  • the release tape 120 is provided to have a grater area than the double-sided adhesive tape body 110, it is possible to decrease the exposure of the double-sided adhesive tape body 110 to the minimum.
  • the side surface 115 of the double-sided adhesive tape body 110 is entirely exposed so that impurities are stuck to the side surface 115 of the double-sided adhesive tape body 110.
  • the double-sided adhesive tape body 110 is compressed as temperature increases and flexibility increases, its thickness may be somewhat reduced and its area may be increased simultaneously. Even though temperature does not increase, when a pressure is applied thereto during the process, the area may be increased even instantly.
  • the area of the release tape 120 is greater than the area of the double-sided adhesive tape 110 so as to prevent the double-sided adhesive tape body 110 from exposing outwards in advance. Further, if the release tape 120 is formed to have a great area, the release tape 120 may be clearly divided from the double-sided adhesive tape body 110. Therefore, even though the double-sided adhesive tape body 110 is not gripped by a hand, the release tape 120 may be detached. Therefore, the cohesive force of the double-sided adhesive tape body 110 may be maintained, and since the double-sided adhesive tape body 110 needs not to be compressed, the thickness of the cohesive surface may be maintained consistently. As shown in FIGS.
  • the grips 122, 122', 122" are formed at the release tapes 120, 120', 120" to protrude with the same planar shape on the outer circumferences of the release tapes 120, 120', 120" having a nail shape, the release tapes 120, 120', 120" may be more easily detached from the double-sided adhesive tape body 110.
  • the grips 122, 122', 122" protrude from the outer circumference of the artificial nail unit 200 so that the location of the grip may be checked at a glance even though the artificial nail unit 200 is located at the upper portion and thus the location of the double-sided adhesive tape body 110 is not checked by the naked eyes.
  • the cut number of the first cutting lines 114, 114', 114" and the second cutting lines 124. 124', 124" respectively formed at the double-sided adhesive tape bodies 110, 110', 110" and the release tapes 120, 120', 120" may be changed according to the curvature and size of the nail body 210. In other words, if a curvature is so large that a great restoring force is applied to the release tape 120, as shown in FIG. 3a , a first cutting line 114 and a second cutting line 124 may be additionally formed at the inside separated from the double-sided adhesive tape body 110 and the outer circumference of the release tape 120. In addition, as shown in FIGS.
  • connecting portions 112a' and 112a" may be formed at only one point in the double-sided adhesive tape bodies 110' and 110" and the release tapes 120' and 120" so that the first cutting lines 114' and 114" and the second cutting lines 124' and 124" are respectively formed outwards in a radial direction based on the connecting portions 112a' and 112a".
  • the second cutting lines 124, 124', 124" formed at the same locations as the first cutting lines 114, 114', 114" may be formed to extend till the outer circumferences of the release tapes 120, 120', 120".
  • the second cutting lines 124, 124', 124" may be formed at a location of the release tape other than the location where the first cutting line is formed.
  • the second cutting lines 124, 124', 124" are preferably not formed on the outer circumferences at locations where the grips 122, 122', 122" are formed.
  • the release tapes 120, 120', 120" may be easily detached from the double-sided adhesive tape bodies 110, 110', 110" by enhancing the rigidity of the locations where the grips 122, 122', 122" are formed.
  • the second cutting line 124 is not formed to extend to the other end 123 of the release tape 120, while, in a case where the grips 122' and 122" are formed at the sides 125' and 125" of the release tapes 120' and 120", the second cutting lines 124' and 124" are not formed to extend to the sides 125' and 125" of the release tapes 120' and 120".
  • the second cutting lines 124, 124', 124" are provided in the outer circumferences at the locations where the grips 122, 122', 122" are formed.
  • the force applied in the moving direction of the grips 122, 122', 122" is focused at the second cutting lines 124, 124', 124" to prevent the connecting portions 112a, 112a', 112a" formed at the release tapes 120, 120', 120" from being broken and thus prevent the release tapes 120, 120', 120" from being divided into several parts. Therefore, the second cutting lines 124, 124', 124" are preferably separated from the outer circumferences at the locations where the grips 122, 122', 122" are formed.
  • properties of the release tape 120 may be set so that sticking of impurities to the double-sided adhesive tape body 110 may be prevented to maintain the cohesive force.
  • FIGS. 4a and 4b are partial cross-sectional views showing the one-touch artificial nail according to an embodiment of the present disclosure.
  • the release tape 120 may also be elongated according to the shape change of the double-sided adhesive tape body 110. Therefore, it is possible to prevent the cohesive component of the double-sided adhesive tape body 110 from exposing out of the release tape 120 in the radial direction, and it is possible to prevent the release tape 120 and the double-sided adhesive tape body 110 from peeling off. In other words, since the release tape 120 and the double-sided adhesive tape body 110 may cope with the external force in the same way, the peeling caused by the different actions against external force may be prevented. First, as shown in FIG.
  • the length of the upper surface 127 of the release tape 120 increases so that the release tape 120 may be smoothly applied to the curved surface along the double-sided adhesive tape body 110. Therefore, it is possible to prevent the double-sided adhesive tape body 110 and the release tape 120 from peeling off.
  • a part of the release tape 120 at the location where the second cutting line 124 is formed may be inserted between the first cutting lines 114 to enhance a coupling force between the release tape 120 and the double-sided adhesive tape body 110.
  • the cutting lines are formed simultaneously by using a single cutter.
  • a part of the release tape 120 is instantly inserted between the first cutting lines 114 and a part of the release tape 120 is fixed to the double-sided adhesive tape body 110.
  • the release tape 120 has a releasing property against the double-sided adhesive tape body 110, the release tape 120 is not perfectly adhered to the double-sided adhesive tape body 110 during this process. Therefore, by controlling physical properties of the release tape 120, it is preferred to manufacture the release tape 120 having a releasing property against the double-sided adhesive tape body 110 and not popping up from the double-sided adhesive tape body 110 due to a restoring force.
  • the release tape 120 may be made of any one of PE, EVA, PP, POE, and PET, or their copolymers or blends.
  • the release tape 120 preferably has a tensile strength of 5kg/cm 2 or above.
  • the tensile strength is a maximum stress until a test piece is broken due to a tensile load and represents a value obtained by dividing the maximum load till the breakage by an original cross section.
  • the release tape 120 is formed to require a force of 5kg/cm 2 or above for entire breakage, thereby preventing the release tape 120 from being torn during a process where the release tape 120 is detached.
  • the double-sided adhesive tape body 110 applied to the one-touch artificial nail according to the present disclosure uses a force less than 5kg/cm 2 to detach the release tape 120.
  • the release tape 120 is torn so that residuals of the release tape 120 remain in the double-sided adhesive tape body 110.
  • the oil of the hands contacts the lower surface 119 of the double-sided adhesive tape body 110, the cohesive force of the double-sided adhesive tape body 110 is deteriorated so that the one-touch artificial nail loses its original role.
  • the release tape 120 has a tensile force of 5kg/cm 2 or above in order to prevent residuals of the release tape 120 from remaining in the double-sided adhesive tape body 110 and to maintain the cohesive property of the double-sided adhesive tape body 110 uniformly.
  • the thickness of the release tape 120 is preferably 30 ⁇ m to 300 ⁇ m. If the thickness of the release tape 120 is less than 30 ⁇ m, the rigidity of the release tape 120 is deteriorated, and so the release tape 120 is torn when the release tape 120 is detached from the double-sided adhesive tape body 110. Therefore, a part of the release tape 120 inevitably remains in the double-sided adhesive tape body 110. In particular, in a case where the double-sided adhesive tape body 110 has the cohesive force for attachment to the nail, the release tape 120 is inevitably broken since the stress is focused at the point of the second cutting line 124 formed at the same position of the first cutting line 114 even though the releasing force of the release tape 120 is maximized.
  • the thickness of the release tape 120 should be 30 ⁇ m or above.
  • the thickness of the release tape 120 exceeds 300 ⁇ m, since the inertia by which the release tape 120 restores a planar shape increases, a pop-up phenomenon occurs at the release tape 120.
  • the attaching force between the release tape 120 and the double-sided adhesive tape body 110 increases so that the double-sided adhesive tape body 110 receives a force restoring a planar shape by the release tape 120. Therefore, a gap is inevitably created between the double-sided adhesive tape body 110 and the artificial nail.
  • the thickness of the release tape 120 should be 30 ⁇ m to 300 ⁇ m in order to easily detach the release tape 120 from the double-sided adhesive tape body 110 and prevent the pop-up phenomenon.
  • FIGS. 5a and 5b are cross-sectional views showing a double-sided adhesive tape body applied to the nail according to an embodiment of the present disclosure and a comparative example.
  • the cohesive force for coupling the upper surface 117 and the lower surface 119 of the double-sided adhesive tape body 110 respectively to the nail body 210 and the nail many methods may be practically used other than improving the cohesive force of the double-sided adhesive tape body 110.
  • a gap should not be created between the double-sided adhesive tape body 110 and the nail body 210.
  • the cohesive force between the nail N and the double-sided adhesive tape body 110 may be improved by forming the double-sided adhesive tape body 110 over a predetermined thickness.
  • the double-sided adhesive tape body 110 is preferably formed to have a thickness of 150 ⁇ m to 800 ⁇ m.
  • the thickness of the double-sided adhesive tape body 110 is 150 ⁇ m to 800 ⁇ m, as shown in FIG. 5a .
  • the cohesive component of the double-sided adhesive tape body 110 is uniformly applied to the surface of the nail to exhibit a cohesive force on the surface of the nail.
  • the cohesive component since the cohesive component is uniformly distributed between rough surfaces of the nail, the artificial nail may be engaged with the nail. Therefore, the artificial nail may be attached to the nail for a long time.
  • the thickness of the double-sided adhesive tape body 110 is less than 150 ⁇ m, as shown in FIG. 5b , the double-sided adhesive tape body 110 is adhered only to protruding portions of the nail, and so the area where the double-sided adhesive tape body 110 is cohered greatly decreases. Moreover, if simple adhesion by oil of the nail is used without the engagement of the nail, the double-sided adhesive tape body 110 may not be attached to the nail. Therefore, the thickness of the double-sided adhesive tape body 110 is preferably 150 ⁇ m or above.
  • the thickness of the double-sided adhesive tape body 110 exceeds 800 ⁇ m, the gap between the nail and the artificial nail increases so that hairs or impurities are caught therein so that the cohesive force of the double-sided adhesive tape body 110 decreases further. Further, in a case the hair is touched by the hand, the hair is cohered to the double-sided adhesive tape body 110. And, while the hair is detached, a pain is caused, and the wear sensation is deteriorated. Therefore, the thickness of the double-sided adhesive tape body 110 is preferably 150 ⁇ m to 800 ⁇ m.
  • the double-sided adhesive tape body 110 plays a role of coupling the nail with the nail body 210 of the one-touch artificial nail, when the location of the nail body 210 relatively changes with respect to the nail, the double-sided adhesive tape body 110 should not peel off. In other words, when an external force is applied to remove the one-touch artificial nail from the nail, the double-sided adhesive tape body 110 should not partially remain on the nail.
  • the peeling strength of the double-sided adhesive tape body 110 is preferably 300 gf/10mm or above.
  • the peeling strength of the double-sided adhesive tape body 110 is preferably 100 gf/10mm or above.
  • the double-sided adhesive tape body 110 is manufactured to have a peeling strength less than 300 gf/10mm at the 180° peeling strength test using SUS, if a shearing force is applied in the plane direction of the double-sided adhesive tape body 110 during ordinary life, the nail body 210 is detached in a state where the double-sided adhesive tape body 110 is partially adhered to the nail.
  • the double-sided adhesive tape body 110 may peel off to remain residuals.
  • the double-sided adhesive tape body 110 is manufactured to have a peeling strength less than 100 gf/10mm at the 90° peeling strength test using ABS, if an external force is applied in a direction perpendicular to the plane of the double-sided adhesive tape body 110 during ordinary life, the nail body 210 is detached in a state where the double-sided adhesive tape body 110 is partially adhered to the nail. In other words, if an external force is applied to the nail body 210 toward the upper surface 217, the nail body 210 is detached in a state where the double-sided adhesive tape body 110 is partially adhered to the nail. Further, during the process where the one-touch artificial nail is detached for exchange, the double-sided adhesive tape body 110 also peels off to remain residuals on the nail.
  • the double-sided adhesive tape body 110 having a peeling strength of 300 gf/10mm or above at the 180° peeling strength test using SUS by ASTM D903, and a peeling strength of 100 gf/10mm or above at the 90° peeling strength test using ABS.
  • FIG. 6 is a cross-sectional view showing a double-sided adhesive tape body according to another embodiment of the present disclosure.
  • the double-sided adhesive tape body 110 applied to the one-touch artificial nail according to the present disclosure may be provided in a single layer or a laminate structure where a plurality of layers is laminated.
  • the double-sided adhesive tape body 110 in order to prevent the other end 213 of the nail body 210 from compressing the cuticle even though an external force is applied to one end 211 of the nail body 210, the double-sided adhesive tape body 110 preferably includes a substrate layer 110a, and cohesive layers 110b and 110c respectively coupled to upper and lower portions of the substrate layer 110a.
  • the substrate layer 110a may be made of any one of PET, PE, PP, EVA, POE, and non-woven fabric.
  • the substrate layer 110a allows the cohesive layers formed at the upper and lower portions of the substrate layer 110a not to be pushed due to material characteristics when a force parallel to the plane is received. Therefore, even though ordinary behaviors are performed after the one-touch artificial nail is worn, the cuticle is not compressed, thereby not generating a pain.
  • the first cohesive layer 110b and the second cohesive layer 110c respectively located at the upper and lower portions of the substrate layer 110a may have the same adhesive force and the same material, but they may have different adhesive characteristics.
  • the first cohesive layer 110b and the second cohesive layer 110c may be optimally made of material capable of enhancing an adhesive force with the nail and material capable of enhancing an adhesive force with the nail body 210 so that the one-touch artificial nail may be attached to the nail for a long time.

Claims (16)

  1. Künstlicher Nagel (200), umfassend:
    einen Nagelkörper (210);
    eine Designschicht (220), welche an einem oberen Abschnitt des Nagelkörpers (210) gebildet ist;
    ein doppelseitiger Klebebandkörper ((110), (110'), (110 ")), welcher an einem unteren Abschnitt des Nagelkörpers (210) gebildet ist; und
    ein Löseband ((120), (120'), (120")), welches an einem unteren Abschnitt des doppelseitigen Klebebandkörpers ((110), (110'), (110")) angeordnet ist,
    wobei der Nagelkörper (210) ein erstes Ende (211) zum Anordnen benachbart zu einer freien Kantenseite eines Nagels, ein zweites Ende (213) zum Anordnen benachbart zu einer Nagelhautseite des Nagels und eine Klebefläche (219) enthält, welche an einer dem Nagel zugewandten Stelle gebildet ist,
    wobei der doppelseitiger Klebebandkörper ((110), (110'), (110")) eine Mehrzahl von Nicht-Verbindungsabschnitten ((114a'), (114a")), worauf eine Mehrzahl von ersten Schnittlinien ((114), (114'), (114")) gebildet sind, und Verbindungsabschnitte enthält, welche so zwischen den ersten Schnittlinien gebildet sind, dass die Mehrzahl der Nicht-Verbindungsabschnitte ((114a'), (114a")) nicht voneinander abgetrennt werden,
    wobei der doppelseitige Klebebandkörper ((110), (110'), (110")) bis auf einen kohäsionslosen Randabschnitt des unteren Abschnitts des Nagelkörpers (210) am unteren Abschnitt des Nagelkörpers (210) gebildet ist; wobei der kohäsionslose Randabschnitt einen ersten kohäsionslosen Randabschnitt am ersten Ende (211) des Nagelkörpers (210), einen zweiten kohäsionslosen Randabschnitt am zweiten Ende (213) des Nagelkörpers (210) und zweiseitige kohäsionslose Randabschnitte an beiden Seiten (215) des Nagelkörpers (210) enthält; wobei der erste kohäsionslose Randabschnitt zu 1/3 bis 1/50 der Länge zwischen den ersten (211) und den zweiten (213) Enden des Nagelkörpers (210) korrespondiert; wobei der kohäsionslose Randabschnitt zu 1/7 bis 1/100 der Länge zwischen den ersten (211) und den zweiten (213) Enden des Nagelkörpers (210) korrespondiert und jeder der seitlichen kohäsionslosen Randabschnitte zu 1/5 bis 1/100) der Länge zwischen den beiden Seitenenden (215) des Nagelkörpers (210) korrespondiert, und
    wobei das Löseband ((120), (120'), (120")) eine größere Fläche aufweist, als der doppelseitige Klebebandkörper ((110), (110'), (110")), so dass das Löseband ((120), (120'), (120")) die vollständige Oberfläche des doppelseitigen Klebebandkörpers ((110), (110'), (110")) abdeckt; wobei eine Mehrzahl von zweiten Schnittlinien ((124), (124'), (124")) auf dem Löseband ((120), (120'), (120")) vorgesehen ist, um das Löseband zu durchlaufen; und wobei das Löseband ((120), (120'), (120")) einen Griff ((122), (122'), (122")) aufweist, welche mit dem Außenumfang an einem Ende des Nagelkörpers (210) verbunden ist und von diesem hervorsteht.
  2. Künstlicher Nagel nach Anspruch 1, wobei die zweiten Schnittlinien ((124), (124'), (124")) in einer vertikalen Richtung an den gleichen Orten gebildet sind, wie die ersten Schnittlinien ((114), (114'), (114")), und wobei sich die zweiten Schnittlinien ((124), (124'), (124")) des Lösebands ((120), (120'), (120")) in die ersten Schnittlinien ((114), (114'), (114")) des doppelseitigen Bands ((110), (110'), (110")) rollen.
  3. Künstlicher Nagel nach Anspruch 1, weiterhin umfassend eine Beschichtungsschicht (230), welche an einem oberen Abschnitt der Designschicht (220) vorgesehen ist,
    wobei die Klebekraft der Beschichtungsschicht (230) und der auf die Designschicht aufgebrachten Tinte 30% oder weniger beträgt, als Ergebnis einer Beschichtungsklebekraftprüfung nach ASTM D3359.
  4. Künstlicher Nagel nach Anspruch 3, wobei die Beschichtungsschicht (230) einen Glanz von 50 oder mehr aufweist, als Ergebnis einer Glanzprüfung nach ASTM D523.
  5. Künstlicher Nagel nach Anspruch 3, wobei die Beschichtungsschicht (230) eine Härte von 1B oder mehr aufweist, als Ergebnis einer Bleistifthärteprüfung nach ASTM D3363.
  6. Künstlicher Nagel nach Anspruch 1, wobei der doppelseitige Klebebandkörper ((110), (110'), (110")) eine Schälfestigkeit von 300 gf / 10 mm oder mehr aufweist, als Ergebnis einer 180°-Schälfestigkeitsprüfung unter Verwendung von SUS nach ASTM D903.
  7. Künstlicher Nagel nach Anspruch 1, wobei der doppelseitige Klebebandkörper ((110), (110'), (110")) eine Schälfestigkeit von 100 gf / 10 mm oder mehr aufweist, als Ergebnis einer 90°-Schälfestigkeitsprüfung unter Verwendung von ABS nach ASTM D903.
  8. Künstlicher Nagel nach Anspruch 1, wobei sich jede der zweiten Schnittlinien ((124), (124'), (124") zum Außenumfang des Lösebands ((120), (120'), (120")) erstreckt.
  9. Künstlicher Nagel nach Anspruch 1, wobei das Löseband ((120), (120'), (120")) eine Zugfestigkeit von 5 kg/cm2 oder mehr aufweist.
  10. Künstlicher Nagel nach Anspruch 1, wobei das Löseband ((120), (120'), (120")) eine Dicke von 30 µm bis 300 µm aufweist.
  11. Künstlicher Nagel nach Anspruch 1, wobei der doppelseitige Klebebandkörper ((110), (110'), (110")) eine Dicke von 150 µm bis 800 µm aufweist.
  12. Künstlicher Nagel nach Anspruch 1, wobei das Löseband ((120), (120'), (120")) eine Lösekraft von 5 gf / 50 mm bis 500 gf / 50 mm aufweist.
  13. Künstlicher Nagel nach Anspruch 1, wobei das Löseband ((120), (120'), (120")) aus irgendeinem von PE, EVA, PP, POE und PET oder deren Copolymeren oder Mischungen hergestellt ist.
  14. Künstlicher Nagel nach Anspruch 1, wobei der doppelseitige Klebebandkörper ((110), (110'), (110")) eine Substratschicht (110a) und kohäsive Schichten ((110b), (110c)) enthält, welche entsprechend mit oberen und unteren Abschnitten der Substratschicht (110a) verbunden sind.
  15. Künstlicher Nagel nach Anspruch 14,
    wobei die kohäsiven Schichten eine erste kohäsive Schicht (110b), welche am oberen Abschnitt der Substratschicht (110a) angeordnet ist, und eine zweite kohäsive Schicht (110c) enthält, welche am unteren Abschnitt der Substratschicht (110a) angeordnet ist, und
    wobei die erste kohäsive Schicht (110b) und die zweite kohäsive Schicht (110c) unterschiedliche Kohäsionskräfte aufweisen.
  16. Künstlicher Nagel nach Anspruch 14, wobei die Substratschicht (110a) aus irgendeinem von PET, PE, PP, EVA, POE und Textilverbundstoff hergestellt ist.
EP20120157325 2010-12-30 2012-02-28 One-Touch-Kunstnagel Active EP2478793B1 (de)

Applications Claiming Priority (2)

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KR1020100139071A KR101164554B1 (ko) 2010-12-30 2010-12-30 인조네일용 양면테이프
KR1020110112255A KR101226696B1 (ko) 2011-10-31 2011-10-31 원터치 장착식 인조네일

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Publication number Priority date Publication date Assignee Title
US8561619B1 (en) * 2009-12-08 2013-10-22 Kiss Nail Products, Inc. Artificial nail or tip arrangement and method of making same
CN103844552A (zh) * 2012-11-30 2014-06-11 张成龙 一触式人造指甲
GB2524712A (en) * 2014-01-15 2015-10-07 Original Additions Beauty Products Ltd Nail adornment arrangement
JP6739263B2 (ja) * 2016-07-07 2020-08-12 株式会社デンソーテン 電子部品および接着部材
CN109679510B (zh) * 2018-12-25 2021-04-27 广州市隆创新材料有限公司 一种适合全自动贴合的热熔光学胶膜及其制备方法
CN111040664A (zh) * 2019-11-27 2020-04-21 广东东方一哥新材料股份有限公司 一种环保无氯免钉胶及其制备方法
CN111040661A (zh) * 2019-12-27 2020-04-21 上海邦中高分子材料股份有限公司 一种tpo防水卷材与金属板粘结用热熔胶膜及其制备方法
CN111073524A (zh) * 2019-12-27 2020-04-28 上海邦中高分子材料股份有限公司 一种pu泡棉用粘接树脂及其制备方法

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US4844102A (en) * 1988-01-11 1989-07-04 National Starch And Chemical Corporation Improved nail coating and bonding method
US5638835A (en) * 1995-07-31 1997-06-17 Franz; Joann Porous artificial nail
WO2002000057A2 (en) * 2000-06-27 2002-01-03 Kmc Exim Corp. Artificial nail and method for applying same
US7185660B1 (en) * 2004-05-13 2007-03-06 Kiss Nail Products, Inc. Artificial fingernail and method of making same
JP3110401U (ja) * 2005-02-07 2005-06-23 株式会社ムラキ 付け爪及び付け爪セット。
US20090241976A1 (en) * 2008-03-26 2009-10-01 Kmc Exim Corp. Artificial nail/tip arrangements having multiple sections

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ES2503617T3 (es) 2014-10-07
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