Claims
- 1. A composition for coating keratinous fibres comprising, in a cosmetically acceptable medium, at least one volatile solvent and a nonvolatile fraction comprising:
at least one polymer capable of adhering to a keratinous fibres, first solid particles comprising a first at least one amorphous material which is solid at 25° C. and exhibits a glass transition greater than or equal to 60° C., and optionally second solid particles comprising a second material, different from the first material, said second solid particles not being capable of coalescing at a temperature of less than or equal to 40° C.; wherein the first and, where appropriate, the second solid particles are present in the composition in an amount such that the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal to 50% of the total volume of the nonvolatile fraction of the composition.
- 2. The composition according to claim 1, wherein the first at least one amorphous material has a glass transition temperature greater than or equal to 80° C.
- 3. The composition according to claim 1, wherein the first at least one amorphous material has a glass transition temperature greater than or equal to 100° C.
- 4. The composition according to claim 1, wherein the first at least one amorphous material is chosen from polymers.
- 5. The composition according to claim 1, wherein the first at least one amorphous material is chosen from polymers chosen from free-radical polymers and polycondensates.
- 6. The composition according to claim 1, wherein the first at least one amorphous material is chosen from polymers chosen from ethylene polymers, propylene polymers, acrylic polymers, acrylamide polymers, (meth)acrylonitrile polymers, polycarbonates, polyurethanes, polyesters, polyamides, polysulphones, polysulphonamides, and carbohydrates.
- 7. The composition according to claim 1, wherein the first solid particles have a mean size ranging from 10 nm to 50 μm.
- 8. The composition according to claim 7, wherein the first solid particles have a mean size ranging from 20 nm to 1 μm.
- 9. The composition according to claim 1, wherein the composition comprises the first solid particles and the second solid particles.
- 10. The composition according to claim 1, wherein the volume fraction of the first solid particles and, where appropriate, of the second solid particles ranges from 50% to 99% of the total volume of the nonvolatile fraction of the composition.
- 11. The composition according to claim 1, wherein the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal to 60% of the total volume of the nonvolatile fraction of the composition.
- 12. The composition according to claim 11, wherein the volume fraction of the first solid particles and, where appropriate, of the second solid particles ranges from 60% to 99% of the total volume of the nonvolatile fraction of the composition.
- 13. The composition according to claim 1, wherein the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal 70% of the total volume of the nonvolatile fraction of the composition.
- 14. The composition according to claim 13, wherein the volume fraction of the first solid particles and, where appropriate, of the second solid particles ranges from 70% to 95% of the total volume of the non-volatile fraction of the composition.
- 15. The composition according to claim 1, wherein the second solid particles are chosen from:
second primary solid particles, comprising at least one material chosen from crystalline and semicrystalline materials which are solid at 25° C. and exhibit at least one of a first order phase transition, a melting transition, and a combustion transition greater than 100° C., second secondary solid particles comprising at least one wax having a hardness of greater than 6.5 MPa, second tertiary solid particles different from said second primary and said second secondary particles, and mixtures thereof.
- 16. The composition according to claim 1, wherein the second solid particles comprise second primary solid particles comprising at least one material chosen from crystalline and semicrystalline materials which are solid at 25° C. and exhibit at least one of a first order phase transition, a melting transition, and a combustion transition greater than 100° C.
- 17. The composition according to claim 15, wherein the at least one material has a first order phase transition greater than 120° C.
- 18. The composition according to claim 17, wherein the crystalline or semicrystalline material has a first order phase transition greater than 150° C.
- 19. The composition according to claim 15, wherein the at least one material has a Vicker hardness greater than or equal to 10.
- 20. The composition according to claim 19, wherein the at least one material has a Vicker hardness ranging from 10 to 7,500.
- 21. The composition according to claim 15, wherein the at least one material has a Vicker hardness greater than or equal to 200.
- 22. The composition according to claim 21, wherein the at least one material has a Victor hardness ranging from 200 to 7,500.
- 23. The composition according to claim 15, wherein the at least one material has a Vicker hardness greater than or equal to 400.
- 24. The composition according to claim 23, wherein the at least one material has a Vicker hardness ranging from 400 to 7,500.
- 25. The composition according to claim 15, wherein the at least one material is chosen from silica, glass, diamond, copper, boron nitride, ceramics, metal oxides, and polyamides.
- 26. The composition according to claim 25, wherein said metal oxides are chosen from iron oxides.
- 27. The composition according to claim 15, wherein the second primary solid particles have a mean size ranging from 5 nm to 50 μm.
- 28. The composition according to claim 27, wherein the second primary solid particles have a mean size ranging from 20 nm to 50 μm.
- 29. The composition according to claim 1, wherein the composition further comprises second secondary particles comprising at least one wax having a hardness greater than or equal to 6.5 MPa.
- 30. The composition according to claim 29, wherein the at least one wax has a melting point ranging from 30° C. to 99° C.
- 31. The composition according to claim 30, wherein the at least one wax has a melting point ranging from 40° C. to 99° C.
- 32. The composition according to claim 29, wherein the at least one wax has a melting point greater than or equal to 30° C. and less than 77° C.
- 33. The composition according to claim 32, wherein the at least one wax has a melting point greater than or equal to 30° C. and less than 60° C.
- 34. The composition according to claims 29, wherein the at least one wax has a hardness ranging from 6.5 MPa to 20 MPa.
- 35. The composition according to claim 34, wherein the at least one wax has a hardness ranging from 9.7 MPa to 20 MPa.
- 36. The composition according to claim 35, wherein the at least one wax has a hardness ranging from 10 MPa to 12 MPa.
- 37. The composition according to claim 29, wherein the at least one wax has a hardness ranging from 10 to 20 MPa.
- 38. The composition according to claim 29, wherein the at least one wax is chosen from Candelilla wax, hydrogenated jojoba wax, sumac wax, ceresin, octacosanyl stearate, tetracontanyl stearate, Shellac wax, behenyl fumarate, di(1,1,1-trimethylolpropane) tetrastearate, di(1,1,1-trimethylolpropane) tetrabehenate, ozokerites, the wax obtained by hydrogenation of olive oil esterified with stearyl alcohol, and waxes obtained by hydrogenation of castor oil esterified with cetyl alcohol.
- 39. The composition according to claim 29, wherein the at least one wax is chosen from di(1,1,1-trimethylolpropane) tetrastearate and the olive wax obtained by hydrogenation of olive oil esterified with stearyl alcohol.
- 40. The composition according to claim 29, wherein the second secondary solid particles have a mean size ranging from 50 nm to 50 μm.
- 41. The composition according to claim 40, wherein the second secondary solid particles have a mean size ranging from 50 nm to 10 μm.
- 42. The composition according to claim 1, wherein the second solid particles comprise second tertiary solid particles.
- 43. The composition according to claim 1, wherein the volume fraction of the first solid particles and, where appropriate, of the second solid particles ranges from 50% to 99% of the total volume of the nonvolatile fraction of the composition.
- 44. The composition according to claim 1, wherein the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal to 60%of the total volume of the nonvolatile fraction of the composition.
- 45. The composition according to claim 44, wherein the volume fraction of the first solid particle and, where appropriate, of the second solid particles ranges from 60% to 99% of the total volume of the nonvolatile fraction of the composition.
- 46. The composition according to claim 1, wherein the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal to 70% of the total volume of the nonvolatile fraction of the composition.
- 47. The composition according to claim 46, wherein the volume fraction of the first solid particle and, where appropriate, of the second solid particle ranges from 70% to 95% of the total volume of the nonvolatile fraction of the composition.
- 48. The composition according to claim 1, wherein the volume fraction of the first solid particles is greater than or equal to 10% of the total volume fraction of the first and second solid particles.
- 49. The composition according to claim 48, wherein the volume fraction of the first solid particles ranges from 10% to 100% of the total volume fraction of the first and second solid particles.
- 50. The composition according to claim 1, wherein the volume fraction of the first solid particles is greater than or equal to 20% of the total volume fraction of the first and second solid particles.
- 51. The composition according to claim 50, wherein the volume fraction of the first solid particles ranges from 20% to 100% of the total volume fraction of the first and second solid particles.
- 52. The composition according to claim 1, wherein the volume fraction of the first solid particles is greater than or equal to 30% of the total volume fraction of the first and second solid particles.
- 53. The composition according to claim 52, wherein the volume fraction of the first solid particles ranges from 30% to 100% of the total volume fraction of the first and second solid particles.
- 54. The composition according to claim 1, wherein the volume fraction of the first solid particles and of the second primary solid particles is greater than or equal to 10.05% of the total volume of the first and second solid particles.
- 55. The composition according to claim 54, wherein the volume fraction of the first solid particles and of the second primary solid particles is greater than or equal to 20.05% of the total volume of the first and second solid particles.
- 56. The composition according to claim 55, wherein the volume fraction of the first solid particles and of the second primary solid particles is greater than or equal to 30.05% of the total volume of the first and second solid particles.
- 57. The composition according to claim 56, wherein the volume fraction of the first solid particles and of the second primary solid particles is greater than or equal to 40.05% of the total volume of the first and second solid particles.
- 58. The composition according to claim 57, wherein the volume fraction of the first solid particles and of the second primary solid particles is greater than or equal to 50.05% of the total volume of the first and second solid particles.
- 59. The composition according to claim 1, wherein at least one volatile solvent is chosen from water, volatile organic solvents, and volatile oils.
- 60. The composition according to claim 1, wherein the at least one polymer capable of adhering to said keratinous fibres is chosen from vinyl polymers, polyurethanes, polyesters, polyamides, polyureas, and cellulose polymers.
- 61. The composition according-to claim 1, wherein the at least one polymer capable of adhering to said keratinous fibres is chosen from film-forming polymers at a temperature of less than or equal to 40° C.
- 62. The composition according to claim 1, wherein the at least one polymer capable of adhering to a keratinous materials is a polymer capable of forming a deposit producing, at a concentration of 7% in water, a retraction of the isolated stratum corneum of more than 1% at 30° C. at a relative humidity of 40%.
- 63. The composition according to claim 62, wherein the retraction of the stratum corneum is of more than 1.2%.
- 64. The Composition according to claim 63, wherein the retraction of the stratum corneum is of more than 1.5%.
- 65. The composition according to claim 1, wherein the at least one polymer capable of adhering to a keratinous material is present in an amount ranging from 0.1% to 50% by weight, relative to the total weight of the composition.
- 66. The composition according to claim 65, wherein the at least one polymer capable of adhering to a keratinous material is present in an amount ranging from 0.5% to 40% by weight, relative to the total weight of the compositon.
- 67. The composition according to claim 66, wherein the at least one polymer capable of adhering to a keratinous material is present in an amount ranging from 1% to 30% by weight, relative to the total weight of the compositon.
- 68. The composition according to claim 1, wherein the composition further comprises an aqueous phase.
- 69. The composition according to claim 1, wherein the composition further comprises an aqueous phase chosen from water and a mixture of water and water-miscible organic solvent.
- 70. The composition according to claim 69, wherein the water-miscible organic solvent is chosen from lower monoalcohols having from 1 to 5 carbon atoms, glycols having from 2 to 8 carbon atoms, C3-C4 ketones, and C2-C4 aldehydes.
- 71. The composition according to claim 69, wherein the aqueous phase is present in an amount ranging from 1% to 95% by weight, relative to the total weight of the composition.
- 72. The composition according to claim 71, wherein the aqueous phase is present in an amount ranging from 3% to 80% by weight, relative to the total weight of the composition.
- 73. The composition according to claim 72, wherein the aqueous phase is present in an amount ranging from 5% to 60% by weight, relative to the total weight of the composition.
- 74. The composition according to claim 69, wherein the at least one polymer capable of adhering to a keratinous material is solubilized in the aqueous phase.
- 75. The composition according to claim 69, wherein the at least one polymer capable of adhering to a keratinous material is in the form of solid particles in aqueous dispersion.
- 76. The composition according to any claim 1, wherein the composition further comprises at least one volatile oil.
- 77. The composition according to claim 76, wherein at least one volatile oil is chosen from hydrocarbon oils, silicone oils, and fluorinated oils.
- 78. The composition according to claim 76, wherein the at least one volatile oil is present in an amount ranging from 0.1% to 98% by weight, relative to the total weight of the composition.
- 79. The composition according to claim 76, wherein the at least one volatile oil is present in an amount ranging from 1% to 65% by weight, relative to the total weight of the composition.
- 80. The composition according to claim 1, wherein the composition further comprises at least one nonvolatile oil.
- 81. The composition according to claim 80, wherein the at least one nonvolatile oil is present in an amount ranging from 0.1% to 50% by weight relative to the total weight of the composition.
- 82. The composition according to claim 81, wherein the at least one nonvolatile oil is present in an amount ranging from 0.1% to 30% by weight, relative to the total weight of the composition.
- 83. The composition according to claim 82, wherein the at least one nonvolatile oil is present in an amount ranging from 0.1% to 20% by weight, relative to the total weight of the composition.
- 84. The composition according to claim 1, wherein the at least one polymer capable of adhering to a keratinous material is solubilized or dispersed in the form of surface-stabilized particles in a liquid fatty phase.
- 85. The composition according to claim 1, wherein the composition further comprises an additional wax different from the wax of the third solid particles.
- 86. The composition according to claim 85, wherein the additional wax is present in the composition in an amount ranging from 0.1% to 50% by weight, relative to the total weight of the composition.
- 87. The composition according to claim 86, wherein the additional wax is present in the composition in an amount ranging from 0.5% to 30% by weight, relative to the total weight of the composition.
- 88. The composition according to claim 87, wherein the additional wax is present in the composition in an amount ranging from 1% to 20% by weight, relative to the total weight of the composition.
- 89. The composition according to claim 85, wherein the additional wax is in the form of particles having a mean size ranging from 50 nm to 50 μm.
- 90. The composition according to claim 89, wherein the additional wax is in the form of particles having a mean size ranging from 50 nm to 10 μm.
- 91. The composition according to claim 1, wherein the composition further comprises a surfactant.
- 92. The composition according to claim 1, wherein the composition further comprises at least one additive chosen from colouring substances, antioxidants, fillers, preservatives, perfumes, neutralizing agents, thickeners, cosmetic active agents, sunscreens, coalescing agents, and plasticizers.
- 93. The composition according to claim 1, wherein the composition is a mascara.
- 94. A method for applying make-up to or a nontherapeutic treatment of keratinous fibres comprising applying to said keratinous fibre a composition comprising, in a cosmetically acceptable medium, at least one volatile solvent and a nonvolatile fraction comprising:
at least one polymer capable of adhering to said keratinous fibres; first solid particles comprising a first at least one amorphous material which is solid at 25° C. and exhibits a glass transition greater than or equal to 60° C.; and optionally second solid particles comprising a second material, different from the first material, said second solid particles not being capable of coalescing at a temperature of less than or equal to 40° C.; wherein the first and, where appropriate, the second solid particles are present in the composition in an amount such that the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal to 50% of the total volume of the nonvolatile fraction of the composition.
- 95. The method or treatment according to claim 94, wherein said keratinous fibres are eyelashes.
- 96. A method for curling keratinous fibres comprising applying to said keratinous fibres a composition comprising, in a cosmetically acceptable medium, at least one volatile solvent and a nonvolatile fraction comprising:
at least one polymer capable of adhering to said keratinous fibres; first solid particles comprising a first at least one amorphous material which is solid at 25° C. and exhibits a glass transition greater than or equal to 60° C.; and optionally second solid particles comprising a second material, different from the first material, said second solid particles not being capable of coalescing at a temperature of less than or equal to 40° C.; wherein the first and, where appropriate, the second solid particles are present in the composition in an amount such that the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal to 50% of the total volume of the nonvolatile fraction of the composition.
- 97. The method according to claim 96, wherein said keratinous fibres are eyelashes.
- 98. A method for curling keratinous fibres comprising applying to said keratinous fibres a mascara comprising, in a cosmetically acceptable medium:
first solid particles of a first at least one amorphous material which is solid at 25° C. and has a glass transition temperature greater than 60° C.; optionally second solid particles of a second material, different from said first material, said second solid particles not being capable of coalescing at a temperature of less than or equal to 40° C.; at least one volatile solvent; and a nonvolatile fraction comprising at least one polymer capable of adhering to said keratinous fibres wherein the first solid particles and, where appropriate, the second solid particles are present in the composition in an amount such that the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal 50% of the total volume of the nonvolatile fraction of the composition.
- 99. The method according to claim 98, wherein the keratinous fibres are eyelashes.
- 100. A composition for coating keratinous fibres comprising, in a cosmetically acceptable medium, at least one volatile solvent and a nonvolatile fraction comprising:
first solid particles comprising a first at least one amorphous material which is solid at 25° C. and exhibits a glass transition greater than or equal to 60° C., and optionally second solid particles comprising a second material, different from the first material, said second solid particles not being capable of coalescing at a temperature of less than or equal to 40° C.; wherein the first and, where appropriate, the second solid particles are present in the composition in an amount such that the volume fraction of the first solid particles and, where appropriate, of the second solid particles is greater than or equal to 50% of the total volume of the nonvolatile fraction of the composition, wherein at least a portion of at least one of said first solid particles and said optional second solid particles comprises at least one polymer capable of adhering to said keratinous fibres.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 01 09503 |
Jul 2001 |
FR |
|
Parent Case Info
[0001] This application claims priority of U.S. Provisional Application No. 60/306,445, filed Jul. 20, 2001.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60306445 |
Jul 2001 |
US |