EP3352619A1 - Assembly for packaging and applying a liquid cosmetic product - Google Patents
Assembly for packaging and applying a liquid cosmetic productInfo
- Publication number
- EP3352619A1 EP3352619A1 EP16767296.3A EP16767296A EP3352619A1 EP 3352619 A1 EP3352619 A1 EP 3352619A1 EP 16767296 A EP16767296 A EP 16767296A EP 3352619 A1 EP3352619 A1 EP 3352619A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- application member
- housing
- assembly according
- reservoir
- application
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
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- 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
- A45D34/042—Appliances specially adapted for applying liquid, e.g. using roller or ball using a brush or the like
- A45D34/045—Appliances specially adapted for applying liquid, e.g. using roller or ball using a brush or the like connected to the cap of the container
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- 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
- A45D2200/00—Details not otherwise provided for in A45D
- A45D2200/10—Details of applicators
- A45D2200/1009—Applicators comprising a pad, tissue, sponge, or the like
- A45D2200/1018—Applicators comprising a pad, tissue, sponge, or the like comprising a pad, i.e. a cushion-like mass of soft material, with or without gripping means
Definitions
- the present invention relates to an assembly for packaging and applying a liquid cosmetic product.
- cosmetic product is understood to mean any product as defined in Regulation (EC) No 1223/2009 of the European Parliament and of the Council of 30 November 2009 on cosmetic products.
- the packaging and application assembly is intended more particularly for the application of a cosmetic product to a human keratin surface, such as the skin, the lips or the nails.
- an assembly for packaging and applying a cosmetic product comprises, on the one hand, a body forming a reservoir which is intended to contain the cosmetic product to be applied and, on the other hand, an applicator comprising an application member that defines an application surface intended to come into contact with a body surface of the user.
- An applicator is referred to as a dip applicator when the loading with cosmetic product takes place by dipping or immersing its application member in said cosmetic product.
- Document FR 2 832 297 describes an assembly for packaging and applying a cosmetic product comprising a reservoir, mounted on which is a porous applicator member that is passed through by the cosmetic product.
- the assembly comprises a cap which, in the closed position, compresses the application member so as to create, on opening, an effect of pumping the cosmetic product that facilitates its diffusion through the application member.
- Documents FR 2 814 651 and FR 2 962 890 show yet another way of loading a product on the application member. More specifically, documents FR 2 814 651 and FR 2 962 990 provide a body which forms a reservoir, said body having a housing capable of receiving the application member and of which a dividing wall with the reservoir has at least one through-orifice in direct fluid communication with said reservoir. By shaking or inverting the assembly, the cosmetic product passes through the openings and impregnates the application member directly on its application surface.
- Document FR 2 814 651 targets an optimal and relatively large loading of the application member.
- document FR 2 814 651 provides a porous application member with open porosity, the orifices for dispensing the cosmetic product being arranged opposite a non-compressed application portion when said application member is in place in the housing.
- the dispensing orifices are distributed substantially over the entire application surface.
- Document FR 2 962 890 itself aims not to overload the application member.
- document FR 2 962 890 provides the combination of precisely located orifices with an application surface formed by a membrane that is not permeable to the product.
- the packaging and application assembly targeted by the present application is very particularly intended for the application of a cosmetic product of lip oil type.
- Such a composition intended more particularly for making up and/or caring for the lips is in a liquid form and comprises for example at least 70% by weight of non-volatile oils, in particular silicone oils, and coloured or colourless solid particles, for example pigments and/or nacres.
- Formulas intended for making up and/or caring for the lips have been known for a very long time and are in varied forms, ranging from fluid formulas such as glosses, to optionally supported solid compositions in the form of a stick, or even compositions in the form of a pencil.
- compositions comprise relatively low contents of solid particles. But in this case, the number of shades that can be attained, and also the intensity thereof, is limited.
- the compositions can also comprise dyes, therefore species that are soluble in the medium in which they are used. However, the number of dyes that can be used in this field is relatively restricted, which does not allow a great deal of extension of the range of colours proposed or of their intensity, whether or not the dyes are combined with coloured solid particles.
- the packaging assembly must in particular allow the solid particles to be resuspended as a homogeneous suspension and ensure a good loading of the applicator for an easy and precise application with an optimal makeup effect.
- Dip applicators are not optimal either since resuspending the particles homogeneously in the cosmetic product is difficult. Furthermore, considering the high colouring power of the pigmented compositions and the high oil contents in the compositions of lip oil type, it is advisable to be able to control the loading of the applicator. In case of excessive loading, it is advantageous for the user to be able to tone down the skin or lip surface in question with a surface of the applicator that is not loaded or that is loaded relatively little.
- a device as described in document FR 2 814 651 has not proved satisfactory either, although it allows a relatively easy resuspension by simple manual shaking of the bottle.
- the present invention aims to attain all or some of these objectives and for this purpose proposes an assembly for packaging and applying a liquid cosmetic product comprising, on the one hand, a body forming a reservoir which is intended to contain the cosmetic product to be applied and, on the other hand, an applicator comprising an application member that defines a convex application surface having at least one apex.
- the body which forms a reservoir comprises a housing capable of receiving the application member and of which a dividing wall with the reservoir has at least one through-orifice in direct fluid communication with the reservoir. Said orifices are located only at at least one end wall of the housing opposite the vicinity of an apex of the application member when said application member is in place in the housing of the body which forms a reservoir.
- the packaging and application assembly is characterized in that the application member is produced from an open-cell porous material.
- an application member defining a convex application surface having an apex or a tip enables in particular a precise application of the product.
- the orifices made in the wall of the housing for receiving the application member enable in particular the loading of the application member with cosmetic product, in particular during a shaking or an inverting of the reservoir.
- ifice located only at at least one end wall of the housing is understood to mean that the remainder of the dividing wall is solid, i.e. not perforated.
- the rest of the application surface in particular a peripheral or lateral zone, may be used to tone down the product applied and refine the makeup.
- the solvent phase in particular the oil, having diffuse through the porous applicator, contributes to a great softness of application over the entire application surface.
- Direct fluid communication is understood to mean that the orifice is not combined with any selective-opening dispensing means of pump or aerosol type that makes it possible to force the passage of the cosmetic product through said orifice.
- the loading of the application member takes place by simple shaking or inverting of the reservoir.
- the present application targets an apex portion extending close to the point-shaped geometric apex. It could be considered that the orifices are located in a zone around the geometric apex representing at most 5% or even 10% of the total surface of the application surface.
- the orifices are located at an end wall of the housing corresponding to an absolute apex of the application member, preferably only at said end wall.
- the wall of the housing has a single orifice.
- the wall of the housing has a plurality of orifices.
- the presence of a plurality of orifices makes it possible to retain orifices of relatively small size making it possible to ensure the passage of an amount of product that is as homogeneous as possible, while ensuring a total passage area that is sufficient for good loading of the application member, after for example only a few shaking movements.
- the size of the orifices is also determined as a function of the size of the solid particles so as to prevent or limit clogging phenomena.
- the latter are preferentially uniformly distributed around the centre of the end wall. This makes it possible to ensure an optimal loading of the application tip.
- the wall of the housing has a central orifice, located at the centre of the end wall.
- the centre of the end wall is understood to mean the point opposite the geometric apex of the applicator.
- all or some of the orifices have a substantially circular cross section.
- Such a cross section of circular shape is very suitable for avoiding clogging phenomena.
- other cross sections may be envisaged.
- the reservoir comprises at least one mixing element, in particular at least one mixing bead.
- the characteristics of the mixing element such as the weight or the size will be chosen as a function of the sedimentation properties of the cosmetic product.
- the application member has an application surface that is at least partially flocked, preferably completely flocked.
- the flock fibres also help with the retaining of the particles and improve the diffusion thereof.
- the applicator is configured to be fastened to the container when not in use, the application member being received in the housing.
- the applicator makes it possible to close the reservoir.
- the application surface has no surface, in particular no concavity, capable of forming a space with the wall of the housing when the application member is received in the housing.
- the application surface has no concavity opposite the orifices. Indeed, the presence of a concavity would be capable of leading to the formation of a cavity between the applicator and the dividing wall of the housing, inside which cavity product could settle, which is undesirable.
- the application member has a conical general shape, in particular with a rounded or hemispherical tip.
- a shape is particularly suitable for an application to the lips.
- the orifices are closed off by the application surface when the applicator is fastened to the container. This makes it possible to avoid any leak of product through the orifices when the applicator is in the closed position.
- the application surface deforms at least partially against the wall of the housing when the applicator is fastened to the container, the application member being slightly compressed.
- the application member it is possible, as a function of the characteristics of the cosmetic product, to place the application member slightly under compression in order to add a pump effect that makes it possible to facilitate the diffusion of the product and in particular the adsorption of the solvent phase or oil.
- This compression also improves the closing off of the orifices by the application member.
- the present application also relates to a packaging and application assembly characterized in that the reservoir comprises a liquid cosmetic product containing solid particles, in particular pigments and/or nacres or even waxes.
- the cosmetic product comprises at least 70% by weight, relative to the weight of the composition, of at least one non-volatile oil or of a single-phase mixture of several non-volatile oils, the composition comprising at least one polar or non-polar non-volatile hydrocarbon-based oil, at least one mineral thickener and at least one nonionic silicone surfactant and at least coloured or colourless solid particles.
- FIG. 1 is a schematic representation, in longitudinal cross section, of a packaging and application assembly according to the invention
- FIG. 2 is a schematic representation, in longitudinal cross section, of an application member equipping the assembly from Figure 1 ,
- FIG. 3 is a schematic representation, in longitudinal cross section, of a ring forming a housing for the application member from Figure 2,
- Figure 4 is a top-view schematic representation of the ring from Figure 3.
- Figure 1 shows an assembly 1 for packaging and applying a liquid cosmetic product P.
- the assembly 1 comprises a body 2 forming a reservoir 3 containing a cosmetic product P to be applied and an applicator 4 comprising an application member 5 that defines a convex application surface 50 having at least one apex 51.
- the body 2 has a free upper edge 21 delimiting an opening 22 of said reservoir 3. More specifically, the opening 22 is situated at a free upper end of a neck 24 of the body 2.
- the body 2 has rotational symmetry.
- the opening 22 has a circular cross section. Obviously other shapes can be envisaged.
- the body 2 has, at the opening 22, a housing 7 capable of receiving the application member 5, said housing 7 being at least partially delimited by a dividing wall 8 with the reservoir 3.
- the dividing wall 8 has at least one through-orifice 9 in direct fluid communication with the reservoir 3.
- the dividing wall 8 may be added on to the reservoir 3, as illustrated, or be made from a single part by moulding with the body of the reservoir.
- the dividing wall 8 is borne by a ring 60 surmounting the opening
- the ring 60 may be mounted on the body 2 by any means, in particular by clip-fastening or adhesive bonding. It may or may not be removable.
- the ring 60 is capable of engaging with the neck 24.
- the ring 60 comprises an outer peripheral wall 61 and an inner peripheral wall 62 together defining a mounting skirt.
- the mounting skirt also provides leaktightness to the product.
- a ring as represented in Figure 10J of document FR 2 962 890 can also be envisaged.
- the applicator 4 comprises uppermost a gripping portion 41 onto which the application member 5 is mounted.
- the gripping portion 41 forms a cap and is capable of engaging in a removable manner with an upper peripheral wall 63 of the ring 60 thus closing the reservoir 3 in a leaktight manner. More particularly, the peripheral wall 63 of the ring 60 bears an outer thread 64 capable of cooperating with a complementary inner threading 65 of the gripping portion.
- the application member 5 is made from an open-cell porous material, for example from a foam.
- the application member 5 is made from a polyurethane foam, in particular of S90 type (DIN 4102-9 standard).
- the application member 5 is mounted on the gripping portion 41 by any known means, in particular by fitting, clip-fastening or snap-fastening.
- the application member 5 has a substantially cylindrical foot 55 which is introduced inside a corresponding shaft 42 of the gripping portion.
- An end wall 43 of the shaft 42 increases the attachment area.
- the end wall 43 also ensures that translational movement is blocked.
- the application member 5 On the opposite side from the foot 55, the application member 5 has a head 56 that defines the application surface 51.
- the head 56 has a conical general shape.
- the head 56 has a free end or rounded tip forming the apex 51.
- the apex 51 is consequently an absolute apex.
- the head 56 has a base that has a diameter slightly larger than the diameter of the foot 55 and thus has a shoulder 57 capable of bearing against an edge of the shaft 42. This shoulder 57 makes it possible in particular to give the application member a better hold.
- the housing 7 is shaped so as to have a shape that is substantially complementary to the head 56.
- the housing 7 is in communication with the inside of the reservoir 3 by means of the perforated dividing wall 8, which is perforated by the permanently open orifices 9.
- the orifices 9 are located only at at least one end wall of the housing opposite the vicinity of the apex 51 of the application member 5 when said application member 5 is in place in the housing 7 of the body 2 which forms a reservoir 3.
- the wall 8 comprises three orifices 9.
- the orifices 9 are regularly distributed close to and around the centre of the end of the wall 8.
- the orifices have a substantially circular cross section. In this case, the diameter of the orifices is 1.5 mm.
- the total area of the orifice(s) is thus around 5.3 mm 2 .
- the total area of the openings is less than 5.5 mm 2 .
- the total area of each opening is also sufficient to limit or even prevent clogging phenomena.
- each orifice 9 is located at a distance of 4.5 mm from the centre of the end wall corresponding to the apex 51 of the application member.
- the orifices are located at less than 5 mm from the centre of the end wall.
- the application member 5 advantageously closes off all the orifices of the wall
- the reservoir 3 comprises at least one mixing element, in particular at least one mixing bead (not represented).
- the bead makes it possible to facilitate the homogenization of the product or even the resuspension of the particles where appropriate.
- the reservoir comprises a liquid cosmetic product containing solid particles, in particular pigments and/or nacres.
- the cosmetic product is in the form of a liquid at ambient temperature (25°C) and atmospheric pressure (1.013 ⁇ 10 5 Pa). More particularly, the viscosity of the composition varies between 0.2 and 0.8 Pa.s, preferably between 0.3 and 0.7 Pa.s.
- the viscosity measurement is generally carried out at 25°C using a Rheomat RM180 viscometer equipped with a No. 2 spindle, the measurement being carried out after rotating the spindle within the composition for 10 minutes (after which time stabilization of the viscosity and of the rotational speed of the spindle is observed), at 200 revolutions/min (rpm).
- NON- VOLATILE OILS NON- VOLATILE OILS
- the composition therefore comprises at least 70% by weight, relative to the weight of the composition, of at least one non-volatile oil or of a single-phase mixture of several non-volatile oils, at least one of which being chosen from polar or non- polar hydrocarbon-based oils.
- the mixture is said to be single-phase when no phase separation is observed by eye or under a phase-contrast microscope, at ambient temperature (25°C) after homogenization at temperature and mixing on a Rayneri mixer (550 rpm, 10 minutes) and storage while left to stand in a closed receptacle at ambient temperature for 24 hours (and atmospheric pressure). Under these conditions, the term stable single- phase mixture is used.
- oil denotes non-aqueous compounds that are liquid at 25°C and atmospheric pressure (1.013 x 10 5 Pa), and water-immiscible.
- oil denotes non-aqueous compounds that are liquid at 25°C and atmospheric pressure (1.013 x 10 5 Pa), and water-immiscible.
- the term “immiscible” is intended to mean that the mixing of the same amount of water and oil, after mixing (for example Rayneri 550 rpm; 10 minutes), does not result in a stable solution comprising just one phase, under normal temperature and pressure conditions.
- non-volatile oil is intended to mean an oil of which the vapour pressure at 25°C and atmospheric pressure is non-zero and is less than 0.02 mmHg (2.66 Pa) and better still less than 10 "3 mmHg (0.13 Pa).
- hydrocarbon-based oil is intended to mean an oil formed essentially from, or even constituted of, carbon and hydrogen atoms, and optionally oxygen and nitrogen atoms, and not containing any silicon or fluorine atoms.
- non-polar oil is intended to mean an oil chosen from hydrocarbons, i.e. from compounds comprising only carbon and hydrogen atoms.
- Non-polar non-volatile hydrocarbon-based oils are non-polar non-volatile hydrocarbon-based oils
- oils may be of plant, mineral or synthetic origin.
- non-polar non-volatile hydrocarbon-based oil(s) can be chosen from linear or branched hydrocarbons of mineral or synthetic origin.
- polar hydrocarbon-based oils are thus formed from carbon and hydrogen atoms, and comprise at least one or more oxygen or nitrogen atoms, but are free of silicon or fluorine atoms.
- the polar non-volatile hydrocarbon-based oils are, in addition to being free of silicon and fluorine, free of heteroatoms such as nitrogen and phosphorus.
- the polar non-volatile hydrocarbon-based oils therefore comprise one or more oxygen atoms as heteroatom.
- the polar non-volatile hydrocarbon-based oil(s) comprise at least one alcohol function (it is then an "alcohol oil”) or at least one ester function (it is then an "ester oil”).
- the ester oils may in particular be hydroxylated.
- composition may comprise one or more non- volatile hydrocarbon-based oils, in particular chosen from: - saturated or unsaturated, branched or non-branched CI O-CTA, in particular
- C10-C24 and preferably C12-C22 alcohols, more particularly monoalcohols are particularly preferred.
- the C10-C26 alcohols are fatty monoalcohols, which are preferably branched when they comprise at least 16 carbon atoms.
- alcohols of varying length of natural origin for instance coconut (C 12 to C 16 ) or tallow (C 16 to C 18 ) or compounds of diol or cholesterol type.
- fatty alcohols that may preferably be used, mention may be made in particular of lauryl alcohol, isostearyl alcohol, oleyl alcohol, 2- butyloctanol, 2-undecylpentadecanol, 2-hexyldecyl alcohol, isocetyl alcohol and octyldodecanol, and mixtures thereof.
- the alcohol is octyldodecanol.
- hydroxylated diesters of a C 2 -Cs dicarboxylic acid and of a C 2 -Cs alcohol such as, for example, diisopropyl adipate, 2-diethylhexyl adipate, dibutyl adipate or 2-diethylhexyl succinate,
- hydroxylated triesters of a C 2 -Cs tricarboxylic acid and of a C 2 -Cs alcohol such as, for example, citric acid esters, such as trioctyl citrate, triethyl citrate, acetyl tributyl citrate, tributyl citrate or acetyl tributyl citrate;
- esters of a C?-CR polyol and of one or more C?-CR carboxylic acids such as glycol diesters of monoacids, such as in particular neopentyl glycol diheptanoate, propylene glycol dioctanoate, or glycerol triesters of monoacids, such as triacetin;
- ester oils in particular containing at least 18 carbon atoms and even more particularly between 18 and 70 carbon atoms.
- Examples that may be mentioned include monoesters, diesters or triesters.
- the ester oils may be hydroxylated or non-hydroxylated.
- non- volatile ester oil may be chosen, for example, from:
- esters of formula R 1 COOR 2 in which Ri represents a linear or branched fatty acid residue comprising from 4 to 35 carbon atoms and R 2 represents a hydrocarbon-based chain that is in particular branched, containing from 4 to 35 carbon atoms, Ri and R 2 being such that the sum of the carbon atoms of the radicals Ri and R 2 is greater than or equal to 18.
- monoesters in particular containing at least 18 carbon atoms and even more particularly from 18 to 22 carbon atoms, of a fatty acid in particular such as lanolic acid, oleic acid, lauric acid or stearic acid, and of diols such as glycols, for instance propylene glycol monoisostearate;
- diesters in particular containing at least 18 carbon atoms and even more particularly comprising between 18 and 60 carbon atoms in total and in particular between 18 and 50 carbon atoms in total.
- diesters of a dicarboxylic acid and of monoalcohols comprising more than 8 carbon atoms preferably such as diisostearyl malate, diisostearyl adipate; or glycol diesters of monocarboxylic acids, such as, for example, neopentyl glycol diheptanoate, diethylene glycol diisononanoate; or polyglyceryl-2 diisostearate (in particular such as the compound sold under the commercial reference Dermol DGDIS by the company Akzo);
- hydroxylated monoesters and diesters preferably with a total carbon number of at least 18 carbon atoms and even more particularly ranging from 18 to 70, such as in particular polyglyceryl-3 diisostearate, isostearyl lactate, octyl hydroxystearate, octyldodecyl hydroxystearate, diisostearyl malate or glyceryl stearate;
- triesters in particular containing at least 35 carbon atoms and even more particularly comprising between 35 and 70 carbon atoms in total, in particular such as triesters of a tricarboxylic acid, such as, for example, triisostearyl citrate, or tridecyl trimellitate, or glyceryl triesters of monocarboxylic acids such as polyglyceryl-2 triisostearate;
- a tricarboxylic acid such as, for example, triisostearyl citrate, or tridecyl trimellitate
- glyceryl triesters of monocarboxylic acids such as polyglyceryl-2 triisostearate
- tetraesters in particular containing at least 35 carbon atoms and even more particularly with a total carbon number ranging from 35 to 70, such as, for example, pentaerythrityl or polyglyceryl tetraesters of a monocarboxylic acid, for instance pentaerythrityl tetrapelargonate, pentaerythrityl tetraisostearate, pentaerythrityl tetraisononanoate, glyceryl tris(2-decyl)tetradecanoate, polyglyceryl-2 tetraisostearate or pentaerythrityl tetrakis(2-decyl)tetradecanoate;
- pentaerythrityl or polyglyceryl tetraesters of a monocarboxylic acid for instance pentaerythrityl tetrapelargonate, pentaerythrityl tetraisostear
- polyesters obtained by condensation of an unsaturated fatty acid dimer and/or trimer and of diols such as those described in patent application FR 0 853 634 may comprise from 28 to 44 carbon atoms, 2 carboxylic acid functions and 2 to 4 unsaturations; the unsaturated fatty acid trimer may comprise from 42 to 66 carbon atoms, 3 carboxylic acid functions and also 3 to 6 unsaturations.
- the diol comprises from 2 to 10 carbon atoms and two hydroxyl functions.
- esters of dilinoleic acid and of 1,4-butanediol or propanediol may also be used.
- esters and polyesters of diol dimer and of monocarboxylic or dicarboxylic acid such as esters of diol dimer and of fatty acid and esters of diol dimer and of dicarboxylic acid dimer, in particular which may be obtained from a dicarboxylic acid dimer derived in particular from the dimerization of an unsaturated fatty acid in particular of Cs to C34, in particular of C 16 to C20 and more particularly esters of dilinoleic diacids and of dilinoleic diol dimers, for example sold by the company Nippon Fine Chemical under the trade names Lusplan DD-DA5® and DD-DA7 ® ; * polyesters resulting from the esterification of at least one triglyceride of hydroxylated carboxylic acid(s) with an aliphatic monocarboxylic acid and with an aliphatic dicarboxylic acid, which is optionally unsaturated, for instance the succinic acid and iso
- triglyceride oils of natural or synthetic origin for instance hydrocarbon- based plant oils such as, for example, jojoba oil; and unsaturated triglycerides such as castor oil, olive oil, ximenia oil or pracaxi oil; fatty acid triglycerides (which are liquid at ambient temperature and atmospheric pressure), in particular of fatty acids, which are saturated or unsaturated, containing at least 7 carbon atoms and even more particularly containing from 7 to 40 carbon atoms, such as heptanoic or octanoic acid triglycerides or saturated triglycerides such as caprylic/capric acid triglyceride and mixtures thereof, for example such as the product sold under the reference Myritol 318 from Cognis, glyceryl triheptanoate, glyceryl trioctanoate, and Cis-36 acid triglycerides such as those sold under the reference Dub TGI 24 by Stearineries Dubois
- Cy?-C?fi fatty acids preferably C 12 -C 22 fatty acids, which are preferably unsaturated, such as oleic acid, linoleic acid or linolenic acid, and mixtures thereof;
- dialkyl carbonates the 2 alkyl chains possibly being identical or different, such as dicaprylyl carbonate sold under the name Cetiol CC ® by Cognis;
- composition may optionally comprise at least one non- volatile phenyl silicone oil.
- phenyl silicone oil denotes a silicone oil bearing at least one phenyl substituent. These non-volatile phenyl silicone oils may be chosen from those also bearing at least one dimethicone fragment, or from those not bearing any.
- divalent siloxane fragment denotes a divalent siloxane group in which the silicon atom bears two methyl radicals, this group not being located at the ends of the molecule. It may be represented by the following formula: -(Si(CH 3 ) 2 -0)-.
- the non-volatile phenyl silicone oil may thus be chosen from:
- the groups R which are monovalent or divalent, represent, independently of each other, a methyl, methylene, phenyl or phenylene, with the proviso that at least one group R represents a phenyl.
- the phenyl silicone oil of formula (I) comprises at least three, for example at least four, advantageously at least five or at least six, phenyl groups; b) phenyl silicone oils optionally bearing a dimethicone fragment corresponding to formula (II) below:
- groups R represent, independently of each other, a methyl or a phenyl, with the proviso that at least one group R represents a phenyl.
- the compound of formula (II) comprises at least three, for example at least four or at least five, phenyl groups.
- phenyl silicone oils not bearing any dimethicone fragments with at least 4 or at least 5 radicals R representing a phenyl radical, the remaining radicals representing methyls.
- non-volatile phenyl silicone oils are preferably trimethylpentaphenyltrisiloxane or tetramethyltetraphenyltrisiloxane, for example PH- 1555 HRI or Dow Corning 555 Cosmetic Fluid (INCI name: trimethyl pentaphenyltrisiloxane), and Dow Corning 554 Cosmetic Fluid by Dow Corning (INCI name: tetramethyl-tetraphenyl-trisiloxane), sold by the company Dow Corning.
- - Ri to Rio independently of each other, are saturated or unsaturated, linear, cyclic or branched C1-C30 hydrocarbon-based radicals,
- n, p and q are, independently of each other, integers between 0 and 900, with the proviso that the sum m+n+q is other than 0.
- the sum m+n+q is between 1 and 100.
- the sum m+n+p+q is between 1 and 900 and preferably between 1 and 800.
- q is equal to 0.
- Ri to Rio independently of each other, represent a saturated or unsaturated, preferably saturated, linear or branched C1-C30 hydrocarbon-based radical, and in particular a preferably saturated C1-C20, in particular Ci-Cis, hydrocarbon-based radical, or a monocyclic or polycyclic C 6 -Ci4, and in particular C10-C13, aryl radical, or an aralkyl radical, the alkyl part of which is preferably C1-C3 alkyl.
- Ri to Rio may each represent a methyl, ethyl, propyl, butyl, isopropyl, decyl, dodecyl or octadecyl radical, or alternatively a phenyl, tolyl, benzyl or phenethyl radical.
- Ri to Rio may in particular be identical, and in addition may be a methyl radical.
- phenyl silicone oils optionally bearing at least one dimethicone fragment corresponding to formula (VI) below, and mixtures thereof:
- - Ri to Re independently of each other, are saturated or unsaturated, linear, cyclic or branched C1-C30 hydrocarbon-based radicals, a preferably C 6 -Ci4 aryl radical or an aralkyl radical, the alkyl part of which is C1-C3 alkyl,
- n and p are, independently of each other, integers between 0 and 100, with the proviso that the sum n+m is between 1 and 100.
- Ri to 5 independently of each other, represent a C1-C20, in particular Ci-Cis, hydrocarbon-based, preferably alkyl, radical, or a C 6 -Ci4 aryl radical which is monocyclic (preferably C 6 ) or polycyclic and in particular C10-C13, or an aralkyl radical (preferably the aryl part is C 6 aryl; the alkyl part is C1-C3 alkyl).
- a C1-C20 in particular Ci-Cis, hydrocarbon-based, preferably alkyl, radical, or a C 6 -Ci4 aryl radical which is monocyclic (preferably C 6 ) or polycyclic and in particular C10-C13, or an aralkyl radical (preferably the aryl part is C 6 aryl; the alkyl part is C1-C3 alkyl).
- Ri to 5 may each represent a methyl, ethyl, propyl, butyl, isopropyl, decyl, dodecyl or octadecyl radical, or alternatively a phenyl, tolyl, benzyl or phenethyl radical.
- Ri to R 6 may in particular be identical, and in addition may be a methyl radical.
- m 1 or 2 or 3
- oils corresponding to compounds of formula (VI) in which:
- n and p are, independently of each other, integers between 1 and
- Ri to R 6 are methyl radicals.
- the silicone oil is preferably chosen from a diphenyl dimethicone such as KF-54 from Shin-Etsu (400 cSt), KF54HV from Shin- Etsu (5000 cSt), KF-50-300CS from Shin-Etsu (300 cSt), KF-53 from Shin-Etsu (175 cSt) or KF-50-100CS from Shin-Etsu (100 cSt).
- a diphenyl dimethicone such as KF-54 from Shin-Etsu (400 cSt), KF54HV from Shin- Etsu (5000 cSt), KF-50-300CS from Shin-Etsu (300 cSt), KF-53 from Shin-Etsu (175 cSt) or KF-50-100CS from Shin-Etsu (100 cSt).
- non-volatile phenyl silicone bearing at least one dimethicone fragment p is between 1 and 1000.
- m is more particularly such that the compound (VII) is a non-volatile oil.
- Use may be made, for example, of trimethylsiloxyphenyl dimethicone, sold in particular under the reference Belsil PDM 1000 by the company Wacker.
- non- volatile phenyl silicone not bearing a dimethicone fragment p is equal to 0.
- m is between 1 and 1000, and in particular is such that the compound (VII) is a non- volatile oil.
- Phenyltrimethylsiloxytrisiloxane sold in particular under the reference Dow Corning 556 Cosmetic Grade Fluid (DC556) by the company Dow Corning, may, for example, be used.
- DC556 Cosmetic Grade Fluid
- R independently of each other, are saturated or unsaturated, linear, cyclic or branched C1-C30 hydrocarbon-based radicals, preferably R is a C1-C30 alkyl radical, preferably a C 6 -Ci4 aryl radical, or an aralkyl radical, the alkyl part of which is C1-C3 alkyl,
- n are, independently of each other, integers between 0 and 100, with the proviso that the sum n+m is between 1 and 100.
- R independently of each other, represent a saturated or unsaturated, preferably saturated, linear or branched C1-C30 hydrocarbon-based radical, and in particular a preferably saturated, C1-C20, in particular C1-C18 and more particularly C 4 -C 10 , hydrocarbon-based radical, a monocyclic or polycyclic C 6 -C 14 , and in particular C10-C13, aryl radical, or an aralkyl radical of which preferably the aryl part is C 6 aryl and the alkyl part is C1-C3 alkyl.
- the R may each represent a methyl, ethyl, propyl, butyl, isopropyl, decyl, dodecyl or octadecyl radical, or alternatively a phenyl, tolyl, benzyl or phenethyl radical.
- the radicals R may in particular be identical, and in addition may be a methyl radical.
- n 1 or 2 or 3
- n is an integer between 0 and 100 and m is an integer between 1 and 100, with the proviso that the sum n+m is between 1 and 100, in formula (VIII).
- R is a methyl radical.
- phenyl silicone oils optionally bearing at least one dimethicone fragment correspondin to the following formula, and mixtures thereof:
- Ri, R 2 , R5 and R6, which may be identical or different, are an alkyl radical containing 1 to 6 carbon atoms,
- R 3 and R4 which may be identical or different, are an alkyl radical containing from 1 to 6 carbon atoms or an aryl radical (preferably C6-C14), with the proviso that at least one of R 3 and R4 is a phenyl radical,
- X is an alkyl radical containing from 1 to 6 carbon atoms, a hydroxyl radical or a vinyl radical, n and p are integers greater than or equal to 1, chosen so as to give the oil a weight-average molecular mass of less than 200 000 g/mol, preferably less than 150 000 g/mol and more preferably less than 100 000 g/mol. f) and a mixture thereof
- the composition therefore comprises at least 70% by weight, relative to the weight of the composition, of a non-volatile oil or of a single-phase mixture of several non-volatile oils, at least one of which is a polar or non-polar, non-volatile hydrocarbon-based oil. More particularly, the content of non-volatile oil(s) represents from 70%) to 90%> by weight, more specifically from 75% to 90%> by weight and preferably from 75% to 85% by weight relative to the weight of the composition.
- composition comprises at least one non- volatile phenyl silicone oil
- its content preferably does not exceed 20%> by weight, more advantageously does not exceed 15% by weight, and even more preferentially does not exceed 10%> by weight, relative to the weight of the composition.
- the composition does not comprise any non-volatile phenyl silicone oil.
- the composition comprises a mixture of non- volatile oil(s)
- said mixture is preferably single-phase. More particularly, the mixture is said to be single-phase when no phase separation is observed by eye or under a phase- contrast microscope, at ambient temperature (25°C) after homogenization at temperature and mixing on a Rayneri mixer (550 rpm, 10 minutes) and storage while left to stand in a closed receptacle at ambient temperature (and atmospheric pressure) for 24 hours.
- the composition comprises at least one polar non- volatile hydrocarbon-based oil, more particularly chosen from ester oils, in particular hydroxylated or non-hydroxylated monoesters and diesters comprising at least 18 carbon atoms in total, triesters, in particular containing at least 35 carbon atoms, tetraesters, in particular containing at least 35 carbon atoms, and mixtures thereof.
- the composition preferably comprises, moreover, at least one non-polar nonvolatile hydrocarbon-based oil, more particularly chosen from hydrogenated or non- hydrogenated polybutenes, hydrogenated or non-hydrogenated polyisobutenes, hydrogenated or non-hydrogenated polydecenes, and mixtures thereof.
- the composition comprises a mixture of polar and non-polar hydrocarbon-based oils.
- the weight proportion of polar non-volatile hydrocarbon-based oil(s) relative to the non-polar non-volatile hydrocarbon-based oil(s) is greater than or equal to 1 , more advantageously greater than or equal to 2.
- the composition comprises at least one mineral thickener more particularly chosen from optionally modified organophilic clays, silicas, which are preferably hydrophobic, and mixtures thereof.
- the composition comprises at least one preferably modified organophilic clay, chosen from montmorillonite, bentonite, hectorite, attapulgite, sepiolite, and mixtures thereof.
- the clay is more advantageously a bentonite or a hectorite.
- These clays are modified with a chemical compound chosen from quaternary amines, tertiary amines, amine acetates, imidazolines, amine soaps, fatty sulfates, alkylarylsulfonates and amine oxides, and mixtures thereof.
- hectorites modified with a quaternary amine more specifically with a Cio to C 22 fatty acid ammonium halide, such as a chloride, such as hectorite modified with distearyldimethylammonium chloride (CTFA name: Disteardimonium hectorite), for instance the product sold under the name Bentone
- Bentone 38V ® Bentone 38V CG or Bentone EW CE by the company Elementis, or stearalkonium hectorites, such as Bentone 27 V.
- quaternium-18 bentonites such as those sold under the names Bentone 34 by the company Elementis, Tixogel VP by the company United Catalyst and Claytone 40 by the company Southern Clay; stearalkonium bentonites, such as those sold under the names Tixogel LG by the company United
- the thickener is chosen from optionally modified organophilic clays, in particular organophilic hectorites in particular modified with benzyldimethylammonium stearate chloride or with distearyldimethylammonium chloride .
- composition may also comprise, as mineral thickener, at least one preferably hydrophobic silica, chosen from fumed silicas, which are preferably hydrophobically treated, silica aerogels, and mixtures thereof.
- silica preferably hydrophobically treated at the surface, the size of the particles of which is more particularly less than 1 ⁇ . It is possible in particular to replace silanol groups with hydrophobic groups, such as in particular:
- “Silica silylate” according to the CTFA (6th edition, 1995). They are sold, for example, under the references Aerosil R812 ® by the company Degussa, and Cab-O- Sil TS-530 ® by the company Cabot;
- Silicas thus treated are known as "Silica dimethyl silylate" according to the CTFA (6th edition, 1995). They are sold, for example, under the references Aerosil R972 ® and Aerosil R974 ® by the company Degussa, and Cab-O- Sil TS-610 ® and Cab-O-Sil TS-720 ® by the company Cabot.
- the hydrophobic fumed silica in particular has a particle size ranging, for example, from 5 to 200 nm.
- Silica aerogels are porous materials obtained by replacing (by drying) the liquid component of a silica gel with air.
- the hydrophobic silica aerogel particles that can be used have a specific surface area per unit mass (S M ) ranging from 500 to 1500 m 2 /g, preferably from 600 to 1200 m 2 /g and better still from 600 to 800 m 2 /g, and a size expressed as the volume mean diameter (D[0.5]) ranging from 1 to 1500 ⁇ , better still from 1 to 1000 ⁇ , preferably from 1 to 100 ⁇ , in particular from 1 to 30 ⁇ , more preferably from 5 to 25 ⁇ , better still from 5 to 20 ⁇ and even better still from 5 to 15 ⁇ .
- S M specific surface area per unit mass
- D[0.5] volume mean diameter
- the hydrophobic silica aerogel particles that are suitable have a size expressed as the volume mean diameter (D[0.5]) ranging from 1 to 30 ⁇ , preferably from 5 to 25 ⁇ , better still from 5 to 20 ⁇ and even better still from 5 to 15 ⁇ .
- D[0.5] volume mean diameter
- the specific surface area per unit mass may be determined by the nitrogen absorption method, known as the BET (Brunauer-Emmett-Teller) method, described in The Journal of the American Chemical Society, vol. 60, page 309, February 1938 and corresponding to international standard ISO 5794/1 (annex D).
- BET Brunauer-Emmett-Teller
- the BET specific surface area corresponds to the total specific surface area of the particles under consideration.
- the sizes of the silica aerogel particles can be measured by static light scattering using a commercial particle size analyser of MasterSizer 2000 type from Malvern.
- the data are processed on the basis of the Mie scattering theory.
- This theory which is exact for isotropic particles, makes it possible to determine, in the case of non-spherical particles, an "effective" particle diameter.
- This theory is in particular described in the publication by Van de Hulst, H.C., Light Scattering by Small Particles, Chapters 9 and 10, Wiley, New York, 1957.
- the hydrophobic silica aerogel particles that can be used have a specific surface area per unit mass (S M ) ranging from 600 to 800 m 2 /g and a size expressed as the volume mean diameter (D[0.5]) ranging from 5 to 20 ⁇ and even better still from 5 to 15 ⁇ .
- the aerogels used are aerogels of hydrophobic silica, preferably of silylated silica (INCI name: silica silylate).
- “Hydrophobic silica” is intended to mean any silica, the surface of which is treated with silylating agents, for example with halogenated silanes, such as alkylchlorosilanes, siloxanes, in particular dimethylsiloxanes, such as hexamethyldisiloxane, or silazanes, so as to functionalize the OH groups with silyl groups Si-Rn, for example trimethylsilyl groups.
- silylating agents for example with halogenated silanes, such as alkylchlorosilanes, siloxanes, in particular dimethylsiloxanes, such as hexamethyldisiloxane, or silazanes
- hydrophobic silica aerogel particles modified at the surface by silylation As regards the preparation of hydrophobic silica aerogel particles modified at the surface by silylation, reference may be made to the document US 7 470 725. Use will preferably be made of hydrophobic silica aerogel particles modified at the surface by trimethylsilyl groups.
- hydrophobic silica aerogels which can be used in the invention, for example, of the aerogel VM-2260 sold by Dow Corning (INCI name: Silica silylate: mean size of around 1000 ⁇ ; specific surface area per unit mass: 600 to 800 m 2 /g); AEROGEL TLD 201, AEROGEL OGD 201, AEROGEL TLD 203, ENOVA® AEROGEL MT 1100, ENOVA AEROGEL MT 1200, sold by Cabot.
- the aerogel VM-2270 sold by Dow Corning (INCI name: Silica silylate: mean size: 5-15 ⁇ ; specific surface area per unit mass: 600 to 800 m 2 /g).
- the mineral thickeners are chosen from organophilic clays, in particular modified hectorites.
- the content of mineral thickener, expressed as active material ranges from 0.2% to 2% by weight, preferably from 0.3% to 1.5% by weight, relative to the weight of the composition.
- the composition may comprise at least one linear or branched, preferably saturated, monoalcohol comprising from 2 to 8 carbon atoms, especially from 2 to 6 carbon atoms, and in particular from 2 to 4 carbon atoms.
- ethanol isopropanol, propanol or butanol, and preferably ethanol.
- the content of C 2 -Cs monoalcohol is less than or equal to 6%> by weight, preferably less than or equal to 4% by weight, relative to the weight of the composition.
- composition may not comprise any abovementioned C 2 -Cs monoalcohol.
- the composition comprises moreover at least one non-ionic silicone surfactant in particular chosen from oxyalkylenated and preferably oxyethylenated polydimethylsiloxanes, alkyl or alkoxy dimethicone copolyols, and mixtures thereof.
- the silicone surfactants are advantageously not silicone elastomers.
- the silicone surfactant comprises polyoxyalkylene chains, more particularly chains of polyoxy ethylene or of polyoxypropylene or combinations thereof, on the main chain (side or pendent polyoxyethylene or polyoxypropylene chains).
- the number of ethylene oxide units can range from 0 to 100, preferably from 2 to 50 and even more particularly from 5 to 20; the number being strictly positive when the compound contains only ethylene oxide units.
- the number of propylene oxide units can range from 0 to 80; preferably, the compound does not contain only propylene oxide units.
- Such silicone surfactants are in particular those called PEG- 10 dimethicone sold by Shin-Etsu under the name KF-6017.
- alkyl or alkoxy dimethicone copolyols bearing an alkyl or alkoxy chain that is pendent or at the end of the silicone backbone, for example containing from 6 to 22 carbon atoms.
- the surfactant may be a C8-C22 alkyl dimethicone copolyol, i.e. an oxypropylenated and/or oxyethylenated polymethyl(Cs-
- cetyl dimethicone copolyol (INCI name: Cetyl PEG/PPG-10/1 Dimethicone), such as the product sold under the name Abil EM -90 by the company Evonik Goldschmidt.
- the non-ionic silicone surfactant is chosen from oxyalkylenated and preferably oxyethylenated polydimethylsiloxanes.
- the content of non-ionic silicone surfactant(s) is at least 1% by weight, relative to the weight of the composition.
- the content of non- ionic silicone surfactant ranges from 1% to 3% by weight, preferably from 1% to 2% by weight, relative to the weight of the composition.
- the composition sediments when it is stored.
- the composition has the advantage of being able to be easily resuspended, by simple manual shaking of the container in which it is packaged.
- composition is said to sediment when it allows the appearance of a supernatant liquid after standing for 48 hours at 25°C, measured under the following conditions:
- a cylindrical polyethylene terephthalate receptacle the height of which is 46.9 mm and the radius of which is 15 mm, comprising two steel balls 6.35 mm in diameter, and fitted with a stopper.
- the composition is introduced such that the height in the bottle reaches 3.5 cm (which represents approximately 4.5 g of composition) and the bottle is stoppered.
- Said bottle is left for 48 hours at a temperature of 25°C.
- the composition sediments when the height of supernatant liquid represents at least 5% of the total height of the composition, preferably at least 15% of the total height of the composition.
- the composition comprises a content of non- ionic silicone surfactant(s) of less than 1% by weight, relative to the weight of the composition.
- the content of non-ionic silicone surfactant ranges from 0.2% to less than 1% by weight, preferably from 0.2%> to 0.9%> by weight, relative to the weight of the composition.
- the composition is stable and does not sediment under the conditions indicated previously.
- the composition comprises at least coloured or non- coloured solid particles.
- the solid particles are chosen from pigments and fillers, which are preferably platelet-shaped, alone or as mixtures.
- pigments More particularly, mineral, organic or composite pigments, and mixtures thereof, are referred to as pigments.
- pigments should be understood as meaning white or coloured particles or particles which afford a colour effect, which are insoluble in the medium of the composition, and which are intended to colour and/or opacify the composition and/or the deposit produced with the composition.
- the pigments may thus be chosen from monochromatic mineral pigments, organic lakes, nacres, and pigments with an optical effect, for instance reflective pigments and goniochromatic pigments.
- the mineral pigments may be chosen from metal oxide pigments, chromium oxides, iron oxides, titanium dioxide, zinc oxides, cerium oxides, zirconium oxides, manganese violet, Prussian blue, ultramarine blue, ferric blue and chromium hydrate, and mixtures thereof.
- pigments having a structure that may be, for example, of sericite/brown iron oxide/titanium dioxide/silica type.
- a pigment is sold, for example, under the reference Coverleaf NS or JS by the company Chemicals and Catalysts, and has a contrast ratio in the region of 30.
- Organic lakes are organic pigments formed from a dye attached to a substrate. They may be chosen, for example, from:
- organic pigments of azo dyes include anthraquinone dyes, indigoid dyes, xanthene dyes, pyrene dyes, quinoline dyes, triphenylmethane dyes or fluoran dyes.
- organic pigments that may in particular be mentioned are those known under the following names: D&C Blue No. 4, D&C Brown No. 1, D&C Green No. 5, D&C Green No. 6, D&C Orange No. 4, D&C Orange No. 5, D&C Orange No. 10, D&C Orange No. 11, D&C Red No. 6, D&C Red No. 7, D&C Red No. 17, D&C Red No. 21, D&C Red No. 22, D&C Red No. 27, D&C Red No.
- the organic lakes may also be supported on an organic support such as rosin or aluminium benzoate, for example.
- organic lakes that may be mentioned in particular are those known under the following names: D&C Red No. 2 Aluminium lake, D&C Red No. 3 Aluminium lake, D&C Red No. 4 Aluminium lake, D&C Red No. 6 Aluminium lake, D&C Red No. 6 Barium lake, D&C Red No. 6 Barium/Strontium lake, D&C Red No.
- Aluminium lake D&C Orange No. 17 Barium lake, D&C Yellow No. 5 Aluminium lake, D&C Yellow No. 5 Zirconium lake, D&C Yellow No. 6 Aluminium lake, D&C Yellow No. 7 Zirconium lake, D&C Yellow No. 10 Aluminium lake, FD&C Blue No. 1 Aluminium lake, FD&C Red No. 4 Aluminium lake, FD&C Red No. 40 Aluminium lake, FD&C Yellow No. 5 Aluminium lake, FD&C Yellow No. 6 Aluminium lake.
- the pigments may also have been subjected to a hydrophobic treatment.
- the hydrophobic treatment agent may be chosen from silicones such as methicones, dimethicones and perfluoroalkylsilanes; fatty acids such as stearic acid; metal soaps such as aluminium dimyristate, the aluminium salt of hydrogenated tallow glutamate, perfluoroalkyl phosphates, perfluoroalkylsilanes, perfluoroalkylsilazanes, polyhexafluoropropylene oxides, polyorganosiloxanes comprising perfluoroalkyl perfluoropolyether groups, amino acids; N-acylamino acids or salts thereof; lecithin, isopropyl triisostearyl titanate, and mixtures thereof.
- silicones such as methicones, dimethicones and perfluoroalkylsilanes
- fatty acids such as stearic acid
- metal soaps such as aluminium dimyristate, the aluminium salt of hydrogenated tallow
- the N-acylamino acids may comprise an acyl group containing from 8 to 22 carbon atoms, for instance a 2-ethylhexanoyl, caproyl, lauroyl, myristoyl, palmitoyl, stearoyl or cocoyl group.
- the salts of these compounds may be aluminium, magnesium, calcium, zirconium, zinc, sodium or potassium salts.
- the amino acid may be, for example, lysine, glutamic acid or alanine.
- alkyl mentioned in the compounds cited above in particular denotes an alkyl group containing from 1 to 30 carbon atoms and preferably containing from 5 to 16 carbon atoms.
- the colourant may also comprise a pigment having a structure which may be, for example, of the type such as silica microspheres containing iron oxide.
- a pigment having this structure is the product sold by the company Miyoshi under the reference PC Ball PC-LL-100 P, this pigment being constituted of silica microspheres containing yellow iron oxide.
- the nacres are more particularly coloured particles of any form, which may or may not be iridescent, in particular produced by certain molluscs in their shell, or alternatively synthesized, and which have a colour effect via optical interference.
- nacres include nacreous pigments such as titanium mica coated with an iron oxide, mica coated with bismuth oxychloride, titanium mica coated with chromium oxide, titanium mica coated with an organic dye in particular of the abovementioned type, and also nacreous pigments based on bismuth oxychloride. They can also be mica particles, at the surface of which are superposed at least two successive layers of metal oxides and/or of organic colourants.
- the nacres may more particularly have a yellow, pink, red, bronze, orange, brown, gold and/or coppery colour or glint.
- nacres that may be introduced as interference pigments into the first composition
- composition may also contain, as coloured particles, at least one material with a specific optical effect.
- This effect is different from a simple conventional hue effect, i.e. a unified and stabilized effect as produced by standard coloured particles, for instance monochromatic pigments.
- stabilized means devoid of an effect of variability in the colour with the angle of observation or alternatively in response to a change in temperature.
- this material may be chosen from particles with a metallic glint, goniochromatic colouring agents, diffractive pigments, thermochromic agents, optical brighteners, and also fibres, in particular interference fibres. Needless to say, these various materials may be combined so as to afford the simultaneous manifestation of two effects, or even of a novel effect.
- the content of coloured particles, in particular of pigments, of nacres alone or as mixtures ranges from 0.001% to 10% by weight and preferably from 0.01% to 8% by weight relative to the weight of the composition.
- the fillers are more particularly organic, mineral or mixed, and may be present alone or as a mixture.
- fillers should be understood as meaning colourless or white solid particles of any form, which are in an insoluble and dispersed form in the medium of the composition, and which are not intended to colour the composition, but at the very most to opacify it.
- the fillers may be, for example, platelet-shaped, spherical, oblong or fibrous, or of any other form intermediate between these forms, irrespective of the crystallographic form (for example sheet, cubic, hexagonal, orthorhombic, etc.).
- the fillers used are platelet-shaped.
- fillers are different from the mineral thickener previously mentioned.
- the fillers that can be used may or may not be surface-coated, and in particular they can be surface-treated with silicones, amino acids, fluoro derivatives or any other substance which promotes the dispersion and compatibility of the filler in the composition.
- mineral fillers examples include talc, mica, perlite, kaolin, hollow silica microspheres, precipitated calcium carbonate, magnesium carbonate, magnesium hydrogen carbonate, hydroxyapatite, boron nitride, glass or ceramic microcapsules, or composites of silica and of titanium dioxide, for instance the TSG series sold by Nippon Sheet Glass.
- organic fillers examples include polyamide powders (Nylon ® Orgasol from Atochem), polyethylene powders, polymethyl methacrylate powders, polytetrafluoroethylene (Teflon) powders, acrylic acid copolymer powders (Polytrap from the company Dow Corning), lauroyl lysine, hollow polymer microspheres such as those of polyvinylidene chloride/acrylonitrile, for instance Expancel (Nobel Industrie), hexamethylene diisocyanate/trimethylol hexyllactone copolymer powder (Plastic Powder from Toshiki), silicone resin microbeads (for example Tospearls from Toshiba), synthetic or natural micronized waxes, metal soaps derived from organic carboxylic acids containing from 8 to 22 carbon atoms and preferably from 12 to 18 carbon atoms, for example zinc stearate, magnesium stearate, lithium stearate, zinc laurate or magnesium myristate, Polyamide powders (
- It may in particular be a hexamethylene diisocyanate/trimethylol hexyllactone polymer.
- Such particles are in particular commercially available, for example, under the name Plastic Powder D-400® or Plastic Powder D-800® from the company Toshiki, and mixtures thereof.
- organic filler mention may also be made of powders of crosslinked organopolysiloxane coated with silicone resin, in particular with silsesquioxane resin, as described, for example, in patent US 5 538 793.
- Such elastomer powders are sold under the names KSP-100 ® , KSP-101 ® , KSP-102 ® , KSP-103 ® , KSP-104 ® and KSP-105 ® by the company Shin-Etsu; mention may also be made of crosslinked organopolysiloxane elastomer powders coated with silicone resin, such as powders of hybrid silicone functionalized with fluoro alkyl groups, sold in particular under the name KSP-200 by the company Shin-Etsu; or hybrid silicone powders functionalized with phenyl groups, sold in particular under the name KSP-300 by the company Shin-Etsu.
- mineral fillers which are advantageously platelet-shaped, and even more preferentially mica.
- the content of fillers ranges from 0.001% to 5% by weight, preferably from 0.05%> to 3% by weight, relative to the weight of the composition.
- composition can optionally comprise water.
- the water content does not exceed 1% by weight, more particularly does not exceed 0.5%> by weight, and preferably does not exceed 0.4%> by weight, relative to the weight of the composition.
- composition may also comprise at least one volatile oil, preferably, chosen from volatile hydrocarbon-based oils, which are preferably non-polar, and volatile silicone oils.
- the volatile silicone oil(s) may be chosen in particular from silicone oils with a flash point ranging from 40°C to 102°C, preferably greater than 55°C and less than or equal to 95°C, and even more particularly from 65°C to 95°C.
- volatile silicone oils mention may be made of dimethicones with viscosities of 5 and 6 cSt, octamethylcyclotetrasiloxane, decamethylcyclopentasiloxane, dodecamethylcyclohexasiloxane, heptamethylhexyltrisiloxane, heptamethyloctyltrisiloxane, hexamethyldisiloxane, octamethyltrisiloxane, decamethyltetrasiloxane and dodecamethylpentasiloxane, and mixtures thereof.
- the volatile hydrocarbon-based oil(s) which are preferably non-polar, are chosen from oils of which the flash point ranges from 40°C to 102°C, preferably from 40°C to 55°C, and even more particularly from 40°C to 50°C.
- hydrocarbons containing from 8 to 16 carbon atoms and mixtures thereof, and in particular:
- Cs-Ci6 alkanes such as Cs-Ci6 isoalkanes (also known as isoparaffms), isododecane, isodecane and isohexadecane, and, for example, the oils sold under the trade name Isopar or Permethyl,
- the composition comprises at least one volatile hydrocarbon-based oil, which is more particularly non-polar, at least one volatile silicone oil, and preferably a mixture of these two types of volatile oils.
- the content of volatile hydrocarbon-based oil(s), volatile silicone oil(s) or mixtures thereof is less than or equal to 10% by weight, more particularly less than or equal to 8% by weight, advantageously between 1% and 8% by weight, relative to the weight of the composition.
- the composition comprises a mixture of non-volatile oil(s) and volatile oil(s), then said mixture is single-phase. More particularly, the mixture is said to be single-phase when no phase separation is observed by eye or under a phase-contrast microscope, at ambient temperature (25°C) after homogenization at temperature and mixing on a Rayneri mixer (550 rpm, 10 minutes) and storage while left to stand in a closed receptacle at ambient temperature (and atmospheric pressure) for 24 hours.
- composition may optionally comprise at least one silicone polymer chosen from: (i) silicone resins of MQ type;
- polymer is understood here to mean a compound having one or more repeat unit(s) and preferably at least 2 repeat units.
- resin is understood to mean a compound, the structure of which is three-dimensional.
- Silicone resins are also known as “siloxane resins”. Thus, within the meaning of the present invention, a polydimethylsiloxane is not a silicone resin.
- silicone resins are known under the name "MDTQ", the resin being described as a function of the various siloxane monomer units that it comprises, each of the letters “MDTQ” characterizing a type of unit.
- the silicon atom being connected to only one oxygen atom in the polymer comprising this unit.
- the letter “D” signifies a Difunctional unit R 1 R 2 Si0 2 /2 in which the silicon atom is connected to two oxygen atoms.
- T represents a Trifunctional unit of formula R'SiC ⁇ .
- the letter "Q" signifies a tetrafunctional unit S1O4/2 in which the silicon atom is bonded to four oxygen atoms, which are themselves bonded to the remainder of the polymer.
- R 1 , R 2 and R 3 represent a hydrocarbon radical (in particular an alkyl radical) having from 1 to 10 carbon atoms, a phenyl group, a phenylalkyl group or else a hydroxyl group.
- silicone resins of MQ type which can be used, of the alkylsiloxysilicates of formula [(Ri) 3 SiOi/2] x (Si04/2) y (MQ units) in which x and y are integers ranging from 50 to 80, and such that the Ri group represents a radical as defined above and is preferably an alkyl group having from 1 to 8 carbon atoms or a hydroxyl group, preferably a methyl group.
- silicone resins comprising MQ siloxysilicate units
- phenylalkylsiloxysilicate resins such as phenylpropyldimethylsiloxysilicate (Silshine 151 sold by General Electric).
- the preparation of such resins is described in particular in patent US 5 817 302.
- silsesquioxane resins that can be used in the compositions in accordance with the invention, mention may be made of the alkyl silsesquioxane resins which are homopolymers and/or copolymers of silsesquioxane containing an average siloxane unit of formula R ln SiO (4-n y 2 , in which each Ri independently denotes a hydrogen atom or a Ci-Cio alkyl group, where more than 80 mol% of the Ri radicals represent a C 3 -Cio alkyl group, n is a number from 1.0 to 1.4, and more particularly, use will be made of a silsesquioxane copolymer in which more than 60 mol% comprises units RiSi0 3 / 2 in which Ri has the definition previously indicated.
- the silsesquioxane resin is chosen such that Ri is a Ci-Cio alkyl group, preferably a C1 -C4 alkyl group, and more particularly a propyl group.
- Ri is a Ci-Cio alkyl group, preferably a C1 -C4 alkyl group, and more particularly a propyl group.
- Use will more particularly be made of a polypropylsilsesquioxane or t-propyl silsesquioxane resin (INCI name: Polypropylsilsesquioxane (and) Isododecane) such as the product sold under the trade name Dow Corning® 670 Fluid by the company Dow Corning.
- Vinyl polymers grafted with a carbosiloxane dendrimer Vinyl polymers grafted with a carbosiloxane dendrimer
- silicone polymers comprising at least one unit derived from carbosiloxane dendrimer.
- the vinyl polymer has a backbone and at least one side chain, which side chain comprises a unit derived from carbosiloxane dendrimer exhibiting a carbosiloxane dendrimer structure.
- carbosiloxane dendrimer structure represents a molecular structure possessing branched groups having high molecular weights, said structure having high regularity in the radial direction starting from the bond to the backbone.
- Such carbosiloxane dendrimer structures are described in the form of a highly branched siloxane-silylalkylene copolymer in laid-open Japanese patent application Kokai 9-171 154.
- a vinyl polymer according to the invention may contain units derived from carbosiloxane dendrimers that may be represented by the following general formula (I):
- R 1 represents an aryl group having from 5 to 10 carbon atoms or an alkyl group having from 1 to 10 carbon atoms;
- R 1 is as defined above in the formula (I),
- R 2 represents an alkylene radical having from 2 to 10 carbon atoms
- R 3 represents an alkyl group having from 1 to 10 carbon atoms
- a 1 is an integer from 0 to 3;
- - Y represents a radically polymerizable organic group chosen from:
- organic groups comprising a methacrylic group or an acrylic group, said organic groups being represented by the formulae:
- H 2 C C-C-0-
- R 5 - H 2 C C-C- N- R 5 - i or ⁇
- R 4 represents a hydrogen atom or an alkyl group containing from 1 to 10 carbon atoms
- R 5 represents an alkylene group containing from 1 to 10 carbon atoms, such as a methylene group, an ethylene group, a propylene group or a butylene group, methylene and propylene groups being preferred;
- organic groups comprising a styryl group of formula:
- R 6 represents a hydrogen atom or an alkyl group containing from 1 to 10 carbon atoms, such as a methyl group, an ethyl group, a propyl group or a butyl group, the methyl group being preferred;
- R 7 represents an alkyl group containing from 1 to 10 carbon atoms
- R 8 represents an alkylene group containing from 1 to 10 carbon atoms, such as a methylene group, an ethylene group, a propylene group or a butylene group, the ethylene group being preferred;
- * b is an integer from 0 to 4.
- R 1 can represent an aryl group possessing from 5 to 10 carbon atoms or an alkyl group possessing from 1 to 10 carbon atoms.
- the alkyl group can preferably be represented by a methyl group, an ethyl group, a propyl group, a butyl group, a pentyl group, an isopropyl group, an isobutyl group, a cyclopentyl group or a cyclohexyl group.
- the aryl group can preferably be represented by a phenyl group and a naphthyl group. The methyl and phenyl groups are more particularly preferred, and the methyl group is most preferred.
- R 2 represents an alkylene group possessing from 2 to 10 carbon atoms, in particular a linear alkylene group, such as an ethylene, propylene, butylene or hexylene group; or a branched alkylene group, such as a methylmethylene, methylethylene, 1-methylpentylene or 1 ,4-dimethylbutylene group.
- a linear alkylene group such as an ethylene, propylene, butylene or hexylene group
- a branched alkylene group such as a methylmethylene, methylethylene, 1-methylpentylene or 1 ,4-dimethylbutylene group.
- the ethylene, methylethylene, hexylene, 1-methylpentylene and 1,4- dimethylbutylene groups are most preferred.
- R 3 is chosen from methyl, ethyl, propyl, butyl and isopropyl groups.
- i indicates the number of generations and thus corresponds to the number of repetitions of the silylalkyl group.
- the carbosiloxane dendrimer can be represented by the general formula shown below, in which Y, R 1 , R 2 and R 3 are as defined above, R 12 represents a hydrogen atom or is identical to R 1 and a 1 is identical to a 1 .
- the total average number of OR 3 groups in a molecule is within the range from 0 to 7.
- the carbosiloxane dendrimer can be represented by the general formula below, in which Y, R 1 , R 2 , R 3 and R 12 are the same as defined above, and a 1 and a 2 represent the a 1 of the indicated generation.
- the total average number of OR 3 groups in a molecule is within the range from 0 to 25.
- the carbosiloxane dendrimer is represented by the general formula below, in which Y, R 1 , R 2 , R 3 and R 12 are the same as defined above, and a 1 , a 2 and a 3 represent the a 1 of the indicated generation.
- the total average number of OR 3 groups in a molecule is within the range from 0 to 79.
- a vinyl polymer having at least one unit derived from carbosiloxane dendrimer has a molecular side chain containing a carbosiloxane dendrimer structure and can result from the polymerization of:
- the monomer of vinyl type which is the component (A) in the vinyl polymer having at least one unit derived from carbosiloxane dendrimer is a monomer of vinyl type which comprises a radically polymerizable vinyl group.
- this monomer of vinyl type methyl methacrylate, ethyl methacrylate, n-propyl methacrylate, isopropyl methacrylate or a methacrylate of lower alkyl analogue; glycidyl methacrylate; butyl methacrylate, butyl acrylate, n-butyl methacrylate, isobutyl methacrylate, tert-butyl acrylate, tert- butyl methacrylate, n-hexyl methacrylate, cyclohexyl methacrylate, 2-ethylhexyl acrylate, 2-ethylhexyl methacrylate, octyl methacrylate, lauryl methacrylate, stearyl acrylate, stearyl methacrylate or a higher methacrylate analogue; vinyl acetate, vinyl propionate or a vinyl ester of a lower fatty acid
- Multifunctional monomers of vinyl type can also be used.
- trimethylolpropane trimethacrylate pentaerythrityl trimethacrylate, ethylene glycol dimethacrylate, tetraethylene glycol dimethacrylate, polyethylene glycol dimethacrylate, 1,4- butanediol dimethacrylate, 1,6-hexanediol dimethacrylate, neopentyl glycol dimethacrylate, ethoxylated trimethylolpropane trimethacrylate, tris(2- hydroxyethyl)isocyanurate dimethacrylate, tris(2-hydroxyethyl)isocyanurate trimethacrylate, polydimethylsiloxane capped with styryl groups possessing divinylbenzene groups on both ends, or analogous silicone compounds containing unsaturated groups.
- a carbosiloxane dendrimer which is the component (B), can be represented by the formula (I) as defined above.
- Y group of the formula (I) an acryloyloxymethyl group, a 3-acryloyloxypropyl group, a methacryloyloxymethyl group, a 3-methacryloyloxypropyl group, a 4-vinylphenyl group, a 3-vinylphenyl group, a 4-(2-propenyl)phenyl group, a 3-(2-propenyl)phenyl group, a 2-(4- vinylphenyl)ethyl group, a 2-(3-vinylphenyl)ethyl group, a vinyl group, an allyl group, a methallyl group and a 5-hexenyl group.
- a carbosiloxane dendrimer according to the present invention may be represented by the formulae having the average structures below:
- the carbosiloxane dendrimer of the composition according to the present invention is represented by the following formula:
- Y, R 1 , R 2 and R 3 are as defined in the formulae (I) and (II) above;
- a 1 , a 2 and a 3 correspond to the definition of a 1 according to the formula (II);
- R 12 is H, an aryl group having from 5 to 10 carbon atoms or an alkyl group having from 1 to 10 carbon atoms.
- the carbosiloxane dendrimer of the composition according to the present invention is represented by one of the following formulae:
- the vinyl polymer comprising the carbosiloxane dendrimer that can be used may be manufactured according to the process for manufacturing a branched silalkylene siloxane described in Japanese patent application Hei 9-171 154.
- the vinyl polymer can be a dispersion of a polymer of vinyl type having a carbosiloxane dendrimer structure in its molecular side chain, in a liquid such as a silicone oil, an organic oil, an alcohol or water.
- the silicone oil may be a dimethylpolysiloxane having the two molecular ends capped with trimethylsiloxy groups, a copolymer of methylphenylsiloxane and of dimethylsiloxane having the two molecular ends capped with trimethylsiloxy groups, a copolymer of methyl-3,3,3-trifluoropropylsiloxane and of dimethylsiloxane having the two molecular ends capped with trimethylsiloxy groups, or similar unreactive linear silicone oils, and also hexamethylcyclotrisiloxane, octamethylcyclotetrasiloxane, decamethylcyclopentasiloxane, dodecamethylcyclohexasiloxane or a similar cyclic compound.
- modified polysiloxanes containing functional groups such as silanol groups, amino groups and polyether groups on the ends or within the molecular side chains may be used.
- the organic oils can be isododecane, liquid paraffin, isoparaffin, hexyl laurate, isopropyl myristate, myristyl myristate, cetyl myristate, 2-octyldodecyl myristate; isopropyl palmitate, 2-ethylhexyl palmitate, butyl stearate, decyl oleate, 2- octyldodecyl oleate, myristyl lactate, cetyl lactate, lanolin acetate, stearyl alcohol, cetearyl alcohol, oleyl alcohol, avocado oil, almond oil, olive oil, cocoa oil, jojoba oil, gum oil, sunflower oil, soybean oil, camelia oil, squalane, castor oil, cottonseed oil, coconut oil, egg yolk oil, polypropylene glycol monooleate, neopentyl glycol 2- ethylhexanoate
- the alcohol may be any type that is suitable for use in combination with a cosmetic product starting material.
- it can be methanol, ethanol, butanol, isopropanol or analogous lower alcohols.
- the solutions and dispersions can be easily prepared by mixing a vinyl polymer having at least one unit derived from carbosiloxane dendrimer with a silicone oil, an organic oil, an alcohol or water.
- the liquids can be present in the polymerization stage.
- the unreacted residual vinyl monomer should be completely removed by heat treatment of the solution or dispersion under atmospheric pressure or reduced pressure.
- the dispersity of the polymer of vinyl type can be improved by adding a surfactant.
- Such an agent may be hexylbenzenesulfonic acid, octylbenzenesulfonic acid, decylbenzenesulfonic acid, dodecylbenzenesulfonic acid, cetylbenzenesulfonic acid, myristylbenzenesulfonic acid or anionic surfactants of the sodium salts of these acids; octyltrimethylammonium hydroxide, dodecyltrimethylammonium hydroxide, hexadecyltrimethylammonium hydroxide, octyldimethylbenzylammonium hydroxide, decyldimethylbenzylammonium hydroxide, dioctadecyldimethylammonium hydroxide, beef tallow-trimethylammonium hydroxide, coconut oil- trimethylammonium hydroxide, or a similar cationic surfactant; a polyoxyalkylene alkyl ether, a
- a vinyl polymer contained in the dispersion or the solution can have a concentration within a range of between 0.1% and 95% by weight and preferably between 5% and 85% by weight. However, to facilitate the handling and the preparation of the mixture, the range should preferably be between 10% and 75% by weight.
- a vinyl polymer suitable for the invention can also be one of the polymers described in the examples of patent application EP 0 963 751.
- a vinyl polymer grafted with a carbosiloxane dendrimer can result from the polymerization:
- the monomers (Al) and (Bl) correspond respectively to specific monomers (A) and (B).
- a vinyl polymer having at least one unit derived from carbosiloxane dendrimer can comprise a unit derived from tris [tri(trimethy Isilo xy)sily lethy Idimethy Isilo xy] sily Ipropy 1 carbosilo xane dendrimer corresponding to one of the formulae:
- H 2 C C— C— 0-C 3 H 6 — Si 0— Si— C 2 H— Si- -Si-C
- a vinyl polymer having at least one unit derived from carbosiloxane dendrimer used in the invention comprises at least one butyl acrylate monomer.
- a vinyl polymer can additionally comprise at least one fluorinated organic group.
- polymerized vinyl units constitute the backbone and carbosiloxane dendritic structures and also fluorinated organic groups are attached to side chains are particularly preferred.
- the fluorinated organic groups can be obtained by replacing with fluorine atoms all or some of the hydrogen atoms of methyl, ethyl, propyl, isopropyl, butyl, isobutyl, tert-butyl, pentyl, neopentyl, hexyl, cyclohexyl, heptyl, octyl, nonyl, decyl, undecyl, dodecyl, tridecyl, tetradecyl, hexadecyl and octadecyl groups and of other alkyl groups of 1 to 20 carbon atoms, and also alkyloxyalkylene groups of 6 to 22 carbon atoms.
- the groups represented by the formula -(CH 2 ) x -(CF 2 )y-R 13 are suggested as examples of fluoroalkyl groups obtained by substituting fluorine atoms for hydrogen atoms of alkyl groups.
- the subscript "x" is 0, 1, 2 or 3
- "y" is an integer from 1 to 20.
- R 13 is an atom or a group chosen from a hydrogen atom, a fluorine atom, -CH(CF 3 ) 2 - or CF(CF 3 ) 2 .
- Such fluorine-substituted alkyl groups are exemplified by linear or branched polyfluoroalkyl or perfluoroalkyl groups represented by the formulae presented below:
- fluoroalkyloxyfluoroalkylene groups obtained by substituting fluorine atoms for hydrogen atoms of alkyloxyalkylene groups.
- the subscript "m” is 0 or 1
- "n” is 0, 1, 2, 3, 4 or 5
- R 14 is a fluorine atom or CF 3 .
- fluoroalkyloxyfluoroalkylene groups are exemplified by the perfluoroalkyloxyfluoroalkylene groups represented by the formulae presented below:
- the number-average molecular weight of the vinyl polymer used in the present invention may be between 3000 and 2 000 000 and more preferably between 5000 and 800 000.
- a fluorinated vinyl polymer can be one of the polymers described in the examples of application WO 03/045337.
- a vinyl polymer grafted in the sense of the present invention may be conveyed in an oil or a mixture of oils, which are preferably volatile, chosen in particular from volatile silicone oils and volatile hydrocarbon-based oils, and mixtures thereof.
- a silicone oil suitable for the invention can be cyclopentasiloxane.
- a hydrocarbon-based oil suitable for the invention can be isododecane.
- Vinyl polymers grafted with at least one unit derived from carbosiloxane dendrimer which can be particularly suitable for the present invention are the polymers sold under the names TIB 4-100, TIB 4-101, TIB 4-120, TIB 4-130, TIB 4- 200, FA 4002 ID (TIB 4-202), TIB 4-220 and FA 4001 CM (TIB 4-230) by Dow Corning.
- the silicone polymer(s) are chosen from:
- the silicone polymer is a polypropylsilsesquioxane or t-propyl silsesquioxane resin (INCI name: Polypropylsilsesquioxane (and) Isododecane).
- the composition according to the invention comprises at least one silicone polymer in a content, expressed as active material of polymer, of from 0.1% to 4% by weight, preferably from 0.2% to 3% by weight, relative to the weight of the composition.
- compositions intended for lip treatment may also comprise additional cosmetic ingredients conventionally used in compositions intended for lip treatment.
- active ingredients for instance plant extracts which are preferably soluble in the composition, non- volatile, phenyl or non-phenyl silicone oils, which do not result in a single-phase mixture with the non-volatile oil or the mixture of non-volatile oils previously mentioned (conditions described in detail above), preservatives, antioxidants, sweeteners, fragrances, sunscreens, bactericides, liposoluble dyes, and also mixtures thereof.
- the additive contents are those conventionally used in the field under consideration, and for example range from 0.01% to 5% by weight relative to the weight of the composition.
- non-volatile oil if one of the additives is a non-volatile oil, or several of them, then the total content of non-volatile oils present in the composition advantageously remains within the ranges previously given in detail.
- the packaging and application assembly 1 is used in the following way:
- the assembly 1 being in closed configuration, the user shakes or inverts the assembly, in particular for the purpose of homogenizing the cosmetic product.
- product is projected through the orifices 9 of the dividing wall 8 and impregnates the application member 5 very locally at an apex 51 of its application surface.
- the user unscrews the applicator 4 and grasps said applicator 4 by the gripping portion 41 and separates it from the reservoir 3.
- the application member 5 is extracted from the housing 7 and the application surface is accessible to the user who can then carry out the application.
- the user brings the apex portion of the application member in contact with the application surface to be covered, for example a surface of the lips, in order to deposit a layer of cosmetic product thereon.
- the user can use a lateral portion of the application surface in order to tone down or spread the product.
Landscapes
- Cosmetics (AREA)
- Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
- Coating Apparatus (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR1559092A FR3041510B1 (en) | 2015-09-25 | 2015-09-25 | PACKAGING AND APPLICATION ASSEMBLY OF A LIQUID COSMETIC PRODUCT |
| PCT/EP2016/072334 WO2017050782A1 (en) | 2015-09-25 | 2016-09-20 | Assembly for packaging and applying a liquid cosmetic product |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3352619A1 true EP3352619A1 (en) | 2018-08-01 |
| EP3352619B1 EP3352619B1 (en) | 2020-12-23 |
Family
ID=54783810
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP16767296.3A Active EP3352619B1 (en) | 2015-09-25 | 2016-09-20 | Assembly for packaging and applying a liquid cosmetic product |
Country Status (8)
| Country | Link |
|---|---|
| US (1) | US20190000213A1 (en) |
| EP (1) | EP3352619B1 (en) |
| JP (1) | JP2018531675A (en) |
| KR (1) | KR20180053729A (en) |
| CN (1) | CN108024611A (en) |
| ES (1) | ES2858751T3 (en) |
| FR (1) | FR3041510B1 (en) |
| WO (1) | WO2017050782A1 (en) |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR3070120B1 (en) | 2017-08-16 | 2021-02-19 | Oreal | PACKAGING AND DISTRIBUTION DEVICE FOR A PRODUCT, ESPECIALLY A LIQUID COSMETIC PRODUCT |
| JP7516004B2 (en) * | 2018-10-02 | 2024-07-16 | 三菱鉛筆株式会社 | Application container |
| FR3091983B1 (en) | 2019-01-28 | 2021-04-30 | Texen Services | Application of a product to a superficial part of the human body |
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| FR853634A (en) | 1938-04-29 | 1940-03-23 | Ericsson Telefon Ab L M | Measuring devices |
| US2676182A (en) | 1950-09-13 | 1954-04-20 | Dow Corning | Copolymeric siloxanes and methods of preparing them |
| US3627851A (en) | 1970-10-23 | 1971-12-14 | Dow Corning | Flexible coating composition |
| BE786656A (en) | 1971-07-30 | 1973-01-24 | Ici Ltd | SILOXANES |
| DE3717073A1 (en) | 1987-05-21 | 1988-12-08 | Wacker Chemie Gmbh | SILICONE RESIN POWDER AND METHOD FOR THE PRODUCTION THEREOF |
| US5082706A (en) | 1988-11-23 | 1992-01-21 | Dow Corning Corporation | Pressure sensitive adhesive/release liner laminate |
| US5248739A (en) | 1991-10-18 | 1993-09-28 | Dow Corning Corporation | Silicone pressure sensitive adhesives having enhanced adhesion to low energy substrates |
| JP2666661B2 (en) | 1992-06-18 | 1997-10-22 | 信越化学工業株式会社 | Method for producing organopolysiloxane powder |
| FR2701818B1 (en) * | 1993-02-22 | 1995-06-16 | Oreal | APPLICATOR. |
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| JP2832143B2 (en) | 1993-12-28 | 1998-12-02 | 信越化学工業株式会社 | Silicone fine particles and method for producing the same |
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| JPH09171154A (en) | 1995-12-19 | 1997-06-30 | Nippon Sheet Glass Co Ltd | Image input optical system and image input device using the same |
| FR2754458B1 (en) * | 1996-10-15 | 1998-11-27 | Oreal | SET OF APPLICATIONS OF A PRODUCT SUITABLE FOR SOLUBILIZING OR GELLING ON THE SURFACE IN CONTACT WITH A LIQUID COMPOSITION |
| DE19648798C2 (en) | 1996-11-26 | 1998-11-19 | Hoechst Ag | Process for the production of organically modified aerogels by surface modification of the aqueous gel (without prior solvent exchange) and subsequent drying |
| FR2759873B1 (en) * | 1997-02-21 | 1999-04-23 | Oreal | DEVICE FOR APPLYING A MAKE-UP PRODUCT OF KERATINIC FIBERS, IN PARTICULAR EYELASHES, AND PACKAGING AND APPLICATION ASSEMBLY USING SUCH A DEVICE |
| JPH11246357A (en) * | 1998-02-24 | 1999-09-14 | Nippon Bussei Kk | Foundation excellent in effect for providing appearance of thin face and firm feeling of face outline, and maintenance of air permeability, and compact formed into set |
| US6280748B1 (en) | 1998-06-12 | 2001-08-28 | Dow Corning Toray Silicone, Ltd. | Cosmetic raw material cosmetic product and method for manufacturing cosmetic products |
| JP3631927B2 (en) | 1999-09-22 | 2005-03-23 | ロレアル | Gel composition and its use in cosmetics, etc. |
| US6447191B1 (en) * | 1999-09-24 | 2002-09-10 | The Bridgeport Metal Goods Manufacturing Company | Facial cosmetics container and applicator |
| BR0106967B1 (en) * | 2000-07-12 | 2009-05-05 | device for wrapping and / or applying a cosmetic and / or care product to be applied to the skin, hair or nails and device manufacturing process. | |
| US6945723B1 (en) * | 2000-09-21 | 2005-09-20 | L'oréal | Packaging and application device |
| FR2814651B1 (en) * | 2000-10-03 | 2003-08-15 | Oreal | PACKAGING AND APPLICATION DEVICE COMPRISING A COMPRESSIBLE APPLICATION ELEMENT FOR APPLYING THE PRODUCT AND HOUSING FOR RECEIVING THE APPLICATION ELEMENT LOADED IN PRODUCT |
| FR2823726B1 (en) * | 2001-04-20 | 2003-06-27 | Oreal | SET FOR PACKAGING AND APPLICATION OF A PARTICULARLY COSMETIC OR CARE PRODUCT |
| FR2825903A1 (en) * | 2001-06-15 | 2002-12-20 | Michel Ferrandez | Nail varnish applicator has cap with brush and guide point to engage edge of nail and guide brush |
| FR2832297B1 (en) | 2001-11-19 | 2004-08-06 | Oreal | PACKAGING AND APPLICATION SET OF A PRODUCT |
| JP4693330B2 (en) | 2001-11-28 | 2011-06-01 | 東レ・ダウコーニング株式会社 | Cosmetic raw materials, cosmetics and methods for producing cosmetics |
| JP2005029243A (en) * | 2003-07-11 | 2005-02-03 | Tokyo Parts Kk | Container for liquid |
| FR2872999B1 (en) | 2004-07-13 | 2007-09-07 | Oreal | DEVICE FOR PACKAGING AND APPLYING A COSMETIC OR CARE PRODUCT |
| FR2882506B1 (en) * | 2005-02-25 | 2007-05-18 | Oreal | MAKE-UP PROCESS USING A VIBRANT APPLICATOR |
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| JP6124496B2 (en) * | 2007-06-20 | 2017-05-10 | サン・ケミカル・コーポレーション | Multicolored glossy pearlescent pigment |
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| US9216145B2 (en) * | 2009-10-27 | 2015-12-22 | The Procter & Gamble Company | Semi-permanent cosmetic concealer |
| KR200457163Y1 (en) * | 2010-05-10 | 2011-12-08 | 주식회사 태성산업 | Cosmetic Container |
| FR2962890B1 (en) | 2010-07-22 | 2012-09-21 | Oreal | MEMBRANE APPLICATOR |
| FR2962990B1 (en) | 2010-07-23 | 2012-09-14 | Henri Pierre Roussel | SAS FOR WASTE COLLECTOR DEVICE AND WASTE CONTAINER PROVIDED WITH A COLLECTION DEVICE PROVIDED WITH SUCH A SAS. |
| FR3003448B1 (en) * | 2013-03-25 | 2015-03-06 | Oreal | DIPOSITIVE COMPRISING A LIQUID LIQUID RED COMPOSITION IN THE FORM OF A REVERSE EMULSION AND A POROUS APPLICATION MEMBER |
-
2015
- 2015-09-25 FR FR1559092A patent/FR3041510B1/en not_active Expired - Fee Related
-
2016
- 2016-09-20 EP EP16767296.3A patent/EP3352619B1/en active Active
- 2016-09-20 CN CN201680051534.4A patent/CN108024611A/en active Pending
- 2016-09-20 KR KR1020187010511A patent/KR20180053729A/en not_active Ceased
- 2016-09-20 WO PCT/EP2016/072334 patent/WO2017050782A1/en not_active Ceased
- 2016-09-20 ES ES16767296T patent/ES2858751T3/en active Active
- 2016-09-20 JP JP2018515264A patent/JP2018531675A/en active Pending
- 2016-09-20 US US15/752,376 patent/US20190000213A1/en not_active Abandoned
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| Publication number | Publication date |
|---|---|
| CN108024611A (en) | 2018-05-11 |
| FR3041510A1 (en) | 2017-03-31 |
| KR20180053729A (en) | 2018-05-23 |
| ES2858751T3 (en) | 2021-09-30 |
| US20190000213A1 (en) | 2019-01-03 |
| JP2018531675A (en) | 2018-11-01 |
| EP3352619B1 (en) | 2020-12-23 |
| FR3041510B1 (en) | 2019-12-20 |
| WO2017050782A1 (en) | 2017-03-30 |
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