Soft, glutinous, smooth and waterproof mousse eye shadow and processing method thereof
By improving the composition and processing methods of mousse eyeshadow, a stable moisturizing film and protective barrier are formed, solving the problem of mousse eyeshadow easily fading around the eyes, and achieving mousse eyeshadow with high staying power and skin care effects.
Patent Information
- Application Number
- CN202511250432.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2025-11-11
AI Technical Summary
Mousse eyeshadow tends to melt or shift in the oily eye area, has poor staying power, and is sensitive to changes in humidity, easily smudging due to sweat, making it unsuitable for long-term outdoor activities.
The base is formed using glycerin, cyclopentasiloxane, beeswax and other components. Moisturizers such as trehalose and hyaluronic acid are added to form a moisturizing film. Magnesium aluminum silicate and dimethyl silicone oil are used to modify the colorant. A combined photoaging resistance system of coenzyme Q10, vitamin C and vitamin E is added. The durability and stability are improved by encapsulating coenzyme Q10 with liposomes and ball milling treatment.
This mousse eyeshadow boasts excellent moisturizing properties, strong waterproof and sweatproof performance, long-lasting wear, skincare benefits, and is suitable for extended periods of time outdoors or for outdoor activities. It is also gentle on the delicate skin around the eyes.
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Abstract
Description
Technical Field
[0001] This invention relates to the field of cosmetics, and in particular to a soft, silky, waterproof mousse eyeshadow, as well as a method for processing the eyeshadow. Background Technology
[0002] Mousse eyeshadow's main base is a creamy mousse texture. Its physical form is a light, semi-transparent gel. The texture is delicate and achieves a light feel by incorporating air. Compared to traditional powder eyeshadow, mousse eyeshadow is easier to blend and less prone to fallout. After application, it provides a light and transparent coverage effect, making it suitable for creating everyday nude makeup or fresh eye makeup. It is favored by users who pursue a natural makeup look.
[0003] However, the texture of mousse eyeshadow means it doesn't last as long as traditional powder eyeshadow. Because the eye area has a high concentration of sebaceous glands, it tends to melt or shift more quickly in areas with high oil secretion, such as the eyelids, resulting in patchy makeup. Furthermore, the mousse texture is more sensitive to changes in humidity, especially in the middle of the day, where it is prone to smudging due to sweat and moisture. Its poor staying power means that it requires frequent touch-ups when outdoors for extended periods, which is inconvenient. Summary of the Invention
[0004] In view of the shortcomings of the prior art described above, the purpose of this invention is to provide a soft, silky, waterproof mousse eyeshadow and its processing method.
[0005] This soft, silky, waterproof mousse eyeshadow contains the following components: glycerin, cyclopentamethoxysiloxane, beeswax, moisturizer, dimethicone, acrylate alkanol-acrylate crosspolymer, triethanolamine, colorant, and coenzyme Q10. 10 It is made by mixing vitamin C, vitamin E, active ingredients, preservatives and stabilizers; wherein the mass ratio of glycerol, cyclopentasiloxane and beeswax is 1~2:1~3:1; and the mass ratio of polydimethylsiloxane, acrylate alkanol-acrylate crosspolymer and triethanolamine is 0.6~1:1:1~2.
[0006] As a further improvement to the above scheme, the moisturizer is composed of trehalose, aloe vera, hyaluronic acid and squalane, and the mass ratio of trehalose, aloe vera, hyaluronic acid and squalane is 2~4:0.2~0.6:1~3:0.5~1.5.
[0007] As a further improvement to the above scheme, the amount of the added moisturizer accounts for 60% to 80% of the total amount of glycerin, cyclopentasiloxane, and beeswax. In this invention, the moisturizer is used to maintain the moisture of the eyeshadow cream and prevent it from drying and clumping. The introduced trehalose molecules contain multiple hydroxyl groups and form hydrogen bonds with water molecules, so that the moisture is firmly locked in, forming a moisturizing film to reduce skin moisture evaporation. It can also stabilize the intercellular lipid structure of the stratum corneum and reduce transepidermal water loss. It has the advantages of good moisturizing effect and low cost. The introduced aloe vera plays a role in moisturizing and oil control, the introduced hyaluronic acid plays a role in hydrating and moisturizing, and the introduced squalane plays a role in moisturizing and skin-moisturizing. Among them, trehalose and hyaluronic acid also play a complementary and synergistic role, further enhancing the moisturizing effect.
[0008] As a further improvement to the above scheme, the amount of the acrylate alkanol-acrylate crosspolymer added accounts for 30% to 60% of the humectant.
[0009] As a further improvement to the above solution, the active ingredient is composed of chamomile extract and honeysuckle extract, with a mass ratio of chamomile extract to honeysuckle extract of 0.5~1.5:1, and the amount of the active ingredient added accounts for 5%~10% of the moisturizer. In this invention, the introduction of active ingredients enables the eyeshadow to have skin care effects, making it more suitable for the relatively delicate skin around the eyes. Chamomile extract plays a role in soothing the skin around the eyes, while honeysuckle extract plays a role in antibacterial and skin beautifying effects.
[0010] As a further improvement to the above scheme, the colorant is at least one of mineral pigments and synthetic fluorescent pigments, and the amount of colorant added is 1 to 3 times that of acrylate alkanol-acrylate crosslinked polymer; in this invention, the added colorant serves to present color.
[0011] As a further improvement to the above solution, the mineral pigment is in powder form and uses iron oxide and / or titanium dioxide; in this invention, iron oxide mainly provides four basic colors: red, yellow, brown, and black, such as iron oxide red and iron oxide yellow, while titanium dioxide provides a white base.
[0012] As a further improvement to the above solution, the synthetic fluorescent agent is pearl powder or glitter; the present invention introduces synthetic fluorescent agents to enhance the three-dimensionality of eye makeup, such as adding pearl powder to give eye makeup a pearly luster, and adding glitter to make eyeshadow shimmer.
[0013] As a further improvement to the above solution, the mass ratio of the preservative to the stabilizer is 1:1, and the amount of stabilizer added accounts for 4% to 8% of the total amount of glycerin, cyclopentasiloxane and beeswax. In this invention, if the amount of stabilizer added is higher than this range, the eyeshadow product will become viscous and stringy, and if it is lower than this range, the ideal thickening effect will not be achieved.
[0014] As a further improvement to the above solution, the preservative is phenoxyethanol; in this invention, phenoxyethanol inhibits the growth of microorganisms to extend the shelf life of the eye ointment.
[0015] As a further improvement to the above solution, the stabilizer is carbomer; in this invention, the stabilizer serves to ensure the stability of the eyeshadow paste and prevent separation.
[0016] As a further improvement to the above scheme, the coenzyme Q... 10 The mass ratio of vitamin C and vitamin E is 1:0.5~1:0.5~1, and coenzyme Q is also included. 10 The amount added accounts for 10% to 20% of the moisturizer; in this invention, coenzyme Q is introduced. 10 Utilizing its triple effects of anti-oxidation and anti-photoaging, repairing photodamage, and promoting collagen synthesis, it reduces UV damage to the skin around the eyes, forming a better protective barrier. In addition, it uses Coenzyme Q10. 10 Vitamin C and Vitamin E work together to form a protective system against photoaging, along with Coenzyme Q. 10 It strengthens the skin barrier, and vitamins C and E provide antioxidant protection, thus exerting a more comprehensive effect in preventing photoaging.
[0017] A method for processing the aforementioned mousse eyeshadow includes the following steps: (1) Take the coloring agent and perform hydrophobic treatment; (2) Take Coenzyme Q 10 Liposome encapsulation was performed to obtain coenzyme Q. 10 Liposomes; (3) Mix polydimethylsiloxane, acrylate alkanol-acrylate crosslinking polymer and triethanolamine evenly to obtain an emulsion; (4) Mix glycerin, cyclopentasiloxane and beeswax, heat and melt them, stir evenly, then add moisturizer, colorant obtained in step (1), emulsion obtained in step (3), vitamin C, vitamin E and active ingredients in sequence, and stir thoroughly until the color is uniform. (5) Continue to add the coenzyme Q obtained from step (2). 10 Liposomes, preservatives, and stabilizers are stirred until a smooth and even paste is formed, resulting in mousse eyeshadow.
[0018] As a further improvement to the above scheme, in step (1), magnesium aluminum silicate and dimethyl silicone oil are used to modify the colorant hydrophobically. Magnesium aluminum silicate, dimethyl silicone oil and colorant are mixed in a ratio of 0.2~0.7:0.5~1:1 and then ball-milled. In this invention, magnesium aluminum silicate and dimethyl silicone oil are introduced to synergistically modify the surface of the colorant. Adding magnesium aluminum silicate improves the viscosity, making the eyeshadow cream smooth and easy to use. On the other hand, it suspends and disperses the colorant, making the eyeshadow product have better color and finer texture. Magnesium aluminum silicate and water associate to form a gel network structure, which plays a role in stabilizing and suspending solid particles and emulsions, preventing layering, making the components evenly dispersed, and improving the quality of the obtained mousse eyeshadow. Adding dimethyl silicone oil to encapsulate the colorant, using the weak interaction between the alkyl groups in the dimethyl silicone oil molecule and water molecules, makes it difficult for water molecules to adhere to the surface of the colorant, thereby forming a hydrophobic layer on the surface of the colorant, effectively isolating water penetration and improving the durability of the eye makeup. Ball milling process results in uniform dispersion of colorants, a decrease in average particle size, and an increase in specific surface area, leading to better fineness and thus improving the colorfastness and longevity of mousse eyeshadow.
[0019] As a further improvement to the above scheme, the ball milling process is carried out at a rotation speed of 60-80 r / min for 2-4 h; the diameter of the grinding balls used in the ball milling process is 20-40 mm, and the grinding balls are equivalent to 40%-50% of the total mass of magnesium aluminum silicate, dimethyl silicone oil and colorant; the present invention refines the particle size of the colorant by optimizing the ball milling conditions to obtain pigment powder with uniform dispersion, small particle size and large specific surface area.
[0020] As a further improvement to the above scheme, in step (2), the liposome encapsulation method is specifically operated as follows: Coenzyme Q is encapsulated... 10 Soybean lecithin was dispersed in water and ultrasonically mixed to obtain a suspension. The suspension was then mixed with soybean lecithin and ground. PBS phosphate buffer was added in multiple portions, and grinding was continued until homogeneous. The mixture was then transferred to an autoclave, where supercritical CO2 was introduced. The autoclave was treated with ultrasound and shearing for 40-60 minutes to release CO2. The particles on the inner wall of the autoclave were rinsed with PBS phosphate buffer, and the final product, after filtration, was coenzyme Q. 10 Liposomes.
[0021] As a further improvement to the above scheme, the amount of water used is coenzyme Q. 10 The ultrasonic power is 100-200W, and the mixing time is 10-15 minutes. The soybean lecithin and suspension are mixed at a ratio of 3-5:1. The mixture of soybean lecithin and suspension is ground, and 10 mL of 0.2 mol / L PBS (pH 6.0) is added three times, each time, and the mixture is ground until homogeneous before being transferred to an autoclave. This invention utilizes liposome-encapsulated coenzyme Q.10 It has better stability and can be slowly released when applying eye makeup, resulting in better penetration and easier absorption by the skin around the eyes.
[0022] Compared with the prior art, the beneficial effects of the present invention are: This invention produces a mousse eyeshadow with stable quality and good moisturizing properties. When applied to the eye area, it effectively isolates moisture and sweat penetration, exhibiting excellent waterproof and sweatproof performance. The mousse eyeshadow also boasts good color payoff and staying power, resulting in long-lasting eye makeup that is well-suited for extended periods of outdoor activities. Furthermore, it incorporates three effective ingredients that combat photoaging and repair photodamage, working synergistically to form a protective skin barrier to reduce UV damage to the skin around the eyes. It is gentle on the delicate skin around the eyes and offers a certain degree of repair.
[0023] The processing method of this invention can produce mousse eyeshadows that are soft and smooth to the touch, apply makeup silkily without drying out the skin, are waterproof and sweatproof, have long-lasting properties, and have skin-repairing effects. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to embodiments. Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. It should be understood that the following description is merely illustrative and not intended to limit the invention.
[0025] The specific embodiments of the present invention will be described in detail below.
[0026] Example 1
[0027] This embodiment provides a soft, silky, waterproof mousse eyeshadow, which comprises the following components: mousse eyeshadow glycerin, cyclopentamethoxysiloxane, beeswax, moisturizer, polydimethylsiloxane, acrylate alkanol-acrylate crosspolymer, triethanolamine, colorant, and coenzyme Q10. 10 The product is prepared by mixing vitamin C, vitamin E, active ingredients, phenoxyethanol, and carbomer; wherein the mass ratio of glycerin, cyclopentasiloxane, and beeswax is 1:1:1. In this embodiment, glycerin, cyclopentasiloxane, and beeswax form the base of the mousse eyeshadow. Glycerin gives the eyeshadow a smooth texture, cyclopentasiloxane enhances spreadability and reduces fallout, resulting in a pleasant feel and silky application. Beeswax stabilizes the texture and improves the adhesion of the eyeshadow.
[0028] The moisturizer is composed of trehalose, aloe vera, hyaluronic acid, and squalane, with a mass ratio of 2:0.2:1:0.5. The amount of moisturizer added accounts for 60% of the total amount of glycerin, cyclopentasiloxane, and beeswax. In this embodiment, the introduced trehalose molecules contain multiple hydroxyl groups, which form hydrogen bonds with water molecules, thus locking in moisture and forming a moisturizing film to reduce skin moisture evaporation. It can also stabilize the intercellular lipid structure of the stratum corneum, reducing transepidermal water loss. It has the advantages of good moisturizing effect and low cost. The introduced aloe vera plays a role in moisturizing and oil control, the introduced hyaluronic acid plays a role in hydrating and moisturizing, and the introduced squalane plays a role in moisturizing and skin-softening. Among them, trehalose and hyaluronic acid also play a complementary and synergistic role, further enhancing the moisturizing effect.
[0029] The mass ratio of polydimethylsiloxane, acrylate-based alkanol-acrylate crosspolymer, and triethanolamine is 0.6:1:1, and the amount of acrylate-based alkanol-acrylate crosspolymer added accounts for 30% of the moisturizer. In this embodiment, polydimethylsiloxane, acrylate-based alkanol-acrylate crosspolymer, and triethanolamine together form an oil-in-water emulsion system, which allows the oil phase and water phase in the eyeshadow to blend well. Among them, polydimethylsiloxane and acrylate-based alkanol-acrylate crosspolymer play a long-lasting film-forming role, forming a protective barrier on the skin surface to prevent sweat or moisture from penetrating and dissolving the eye makeup.
[0030] The active ingredients consist of chamomile extract and honeysuckle extract, with a mass ratio of 0.5:1. The amount of active ingredients added accounts for 5% of the moisturizer. In this embodiment, the introduction of active ingredients enables the eyeshadow to have skin care effects, making it more suitable for the delicate skin around the eyes. Chamomile extract soothes the skin around the eyes, while honeysuckle extract has antibacterial and skin-beautifying effects.
[0031] In this embodiment, the colorant is a mineral pigment, and the amount of colorant added is 1 times that of the acrylate alkanol-acrylate crosslinked polymer. The added colorant serves to present the color. The mineral pigment is in powder form and is made of iron oxide and / or titanium dioxide. In this embodiment, iron oxide mainly provides four basic colors: red, yellow, brown, and black, such as iron oxide red and iron oxide yellow, which will not be described in detail here. Titanium dioxide provides a white base.
[0032] The mass ratio of phenoxyethanol to carbomer is 1:1, and the amount of carbomer added accounts for 4% of the total amount of glycerin, cyclopentasiloxane and beeswax. Phenoxyethanol plays a role in inhibiting the growth of microorganisms to extend the shelf life of eyeshadow, while carbomer plays a role in ensuring the stability of eyeshadow paste and preventing separation.
[0033] Coenzyme Q 10 The mass ratio of vitamin C and vitamin E is 1:0.5:0.5, and coenzyme Q is also included. 10 The amount added accounts for 10% of the moisturizer; the mousse eyeshadow of this embodiment introduces coenzyme Q. 10Utilizing its triple effects of anti-oxidation and anti-photoaging, repairing photodamage, and promoting collagen synthesis, it reduces UV damage to the skin around the eyes, forming a better protective barrier. In addition, it uses Coenzyme Q10. 10 Vitamin C and Vitamin E work together to form a protective system against photoaging, along with Coenzyme Q. 10 It strengthens the skin barrier, and vitamins C and E provide antioxidant protection, thus exerting a more comprehensive effect in preventing photoaging.
[0034] The processing method of the mousse eyeshadow in this embodiment includes the following steps: (1) The colorant is hydrophobically modified by using magnesium aluminum silicate and dimethyl silicone oil. Magnesium aluminum silicate, dimethyl silicone oil and colorant are mixed in a ratio of 0.2:0.5:1 and then ball-milled. The ball milling speed is 60 r / min and the time is 4 h. The diameter of the grinding ball used in the ball milling is 20 mm and the grinding ball is equivalent to 40% of the total mass of magnesium aluminum silicate, dimethyl silicone oil and colorant.
[0035] In this embodiment, magnesium aluminum silicate and dimethyl silicone oil are introduced to synergistically modify the surface of the pigment powder. Adding magnesium aluminum silicate improves viscosity, making the eyeshadow cream smooth and easy to use. It also suspends and disperses the pigment powder and other components, resulting in better color and a finer texture. The magnesium aluminum silicate and water associate to form a gel network structure, stabilizing and suspending solid particles and emulsions, preventing stratification, and ensuring uniform dispersion of all components, thus improving the quality of the resulting mousse eyeshadow. Adding dimethyl silicone oil encapsulates the pigment powder. The weak interaction between the alkyl groups in the dimethyl silicone oil molecules and water molecules makes it difficult for water molecules to adhere to the pigment powder surface, forming a hydrophobic layer that effectively prevents water penetration and improves the longevity of the eye makeup. The use of mixed ball milling ensures uniform dispersion of the pigment powder, reduces the average particle size, and increases the specific surface area, resulting in better fineness and thus improving the colorfastness and adhesion of the mousse eyeshadow.
[0036] (2) Coenzyme Q 10 Dispersed in water, the amount of water used is Coenzyme Q. 10 The mixture was prepared by ultrasonic mixing at 100W for 15 minutes to obtain a suspension. Soybean lecithin and the suspension were mixed in a 3:1 ratio and ground. 10 mL of 0.2 mol / L PBS (pH 6.0) was added three times, and the mixture was ground until homogeneous. The mixture was then transferred to an autoclave. Under conditions of 3000 r / min shear rate and 45℃, supercritical CO2 was introduced into the autoclave until the set pressure was reached. Ultrasonic treatment was then initiated at 18W, and both ultrasonic and shearing processes were maintained for 50 minutes. Heating, shearing, and ultrasonication were then sequentially stopped. CO2 was released, and the particles on the inner wall of the autoclave were rinsed with PBS. After filtration, coenzyme Q was obtained.10 Liposomes. In this embodiment, coenzyme Q is encapsulated in liposomes. 10 It has better stability and can be slowly released when applying eye makeup, resulting in better penetration and easier absorption by the skin around the eyes.
[0037] (3) Mix polydimethylsiloxane, acrylate alkanol-acrylate crosspolymer and triethanolamine evenly to obtain an emulsion.
[0038] (4) Mix glycerin, cyclopentasiloxane and beeswax, heat and melt them, stir evenly, then add moisturizer, colorant obtained in step (1), emulsion obtained in step (3), vitamin C, vitamin E and active ingredients in sequence, and stir thoroughly until the color is uniform.
[0039] (5) Continue to add the coenzyme Q obtained from step (2). 10 Liposomes, phenoxyethanol, and carbomer were stirred until a smooth and fine paste was formed to obtain Mousse Eyeshadow #1.
[0040] The mousse eyeshadow prepared by the processing method of this embodiment has a gel-like texture, a soft and smooth feel, and is not prone to falling powder or caking when applied. It has good adhesion, is relatively silky and does not dry out the skin. It does not contain any irritating or sensitizing ingredients such as fragrance or alcohol, and is gentle on the delicate skin around the eyes.
[0041] Example 2
[0042] This embodiment provides a soft, silky, waterproof mousse eyeshadow, which comprises the following components: mousse eyeshadow glycerin, cyclopentamethoxysiloxane, beeswax, moisturizer, polydimethylsiloxane, acrylate alkanol-acrylate crosspolymer, triethanolamine, colorant, and coenzyme Q10. 10 It is made from a mixture of vitamin C, vitamin E, active ingredients, phenoxyethanol and carbomer, wherein the mass ratio of glycerin, cyclopentasiloxane and beeswax is 1.5:2:1.
[0043] The moisturizer is composed of trehalose, aloe vera, hyaluronic acid, and squalane, with a mass ratio of 3:0.5:2:1.1. The moisturizer accounts for 70% of the total amount of glycerin, cyclopentamethoxysiloxane, and beeswax; the mass ratio of polydimethylsiloxane, acrylate alkanol-acrylate crosspolymer, and triethanolamine is 0.7:1:1.5, and the acrylate alkanol-acrylate crosspolymer accounts for 50% of the moisturizer.
[0044] The active ingredients consist of chamomile extract and honeysuckle extract, with a mass ratio of 1.2:1. The amount of active ingredients added accounts for 8% of the moisturizer. In this embodiment, the colorant uses mineral pigments and synthetic fluorescent pigments, and the amount of colorant added is twice that of acrylate alkanol-acrylate crosspolymer. The mineral pigments are in powder form and are made of iron oxide and titanium dioxide. The synthetic fluorescent agents include pearl powder or glitter. In this embodiment, synthetic fluorescent agents are introduced to enhance the three-dimensionality of the eye makeup. For example, adding pearl powder gives the eye makeup a pearly luster, and adding glitter makes the eyeshadow shimmer.
[0045] The mass ratio of phenoxyethanol to carbomer is 1:1, and the amount of carbomer added accounts for 6% of the total amount of glycerol, cyclopentasiloxane, and beeswax. Coenzyme Q10 is also present. 10 The mass ratio of vitamin C and vitamin E is 1:0.7:0.6, and coenzyme Q is also included. 10 The amount added accounts for 15% of the moisturizer.
[0046] The processing method of the mousse eyeshadow in this embodiment includes the following steps: (1) The colorant is hydrophobically modified by using magnesium aluminum silicate and dimethyl silicone oil. Magnesium aluminum silicate, dimethyl silicone oil and colorant are mixed in a ratio of 0.5:0.8:1 and then ball-milled. The ball milling speed is 70 r / min and the time is 3 h. The diameter of the grinding ball used in the ball milling is 30 mm and the grinding ball is equivalent to 45% of the total mass of magnesium aluminum silicate, dimethyl silicone oil and colorant.
[0047] (2) Coenzyme Q 10 Dispersed in water, the amount of water used is Coenzyme Q. 10 The concentration was 1.5 times that of soybean lecithin. A suspension was obtained by ultrasonic mixing at 150W for 12 minutes. Soybean lecithin and the suspension were mixed at a ratio of 4:1 and ground. 10 mL of 0.2 mol / L PBS (pH 6.0) was added three times, and grinding continued until homogeneous. The mixture was then transferred to an autoclave. Under conditions of 3000 r / min shear rate and 45℃, supercritical CO2 was introduced into the autoclave until the set pressure was reached. Ultrasonic treatment was then initiated at 18W, and both ultrasonication and shearing were performed for 50 minutes. Heating, shearing, and ultrasonication were then stopped sequentially. CO2 was released, and the particles on the inner wall of the autoclave were rinsed with PBS. After filtration, coenzyme Q was obtained. 10 Liposomes.
[0048] (3)~(5), same as in Example 1, to obtain #2 mousse eyeshadow.
[0049] Example 3
[0050] This embodiment provides a soft, silky, waterproof mousse eyeshadow, which comprises the following components: glycerin, cyclopentamethoxysiloxane, beeswax, moisturizer, dimethicone, acrylate alkanol-acrylate crosspolymer, triethanolamine, colorant, and coenzyme Q10. 10 It is made from a mixture of vitamin C, vitamin E, active ingredients, phenoxyethanol and carbomer, wherein the mass ratio of glycerin, cyclopentasiloxane and beeswax is 2:3:1.
[0051] The moisturizer is composed of trehalose, aloe vera, hyaluronic acid and squalane, and the mass ratio of trehalose, aloe vera, hyaluronic acid and squalane is 4:0.6:3:1.5. The amount of moisturizer added accounts for 80% of the total amount of glycerin, cyclopentamethoxysiloxane and beeswax. The mass ratio of polydimethylsiloxane, acrylate alkanol-acrylate crosspolymer and triethanolamine is 1:1:2, and the amount of acrylate alkanol-acrylate crosspolymer added accounts for 60% of the moisturizer.
[0052] The active ingredients consist of chamomile extract and honeysuckle extract, with a mass ratio of 1.5:1. The amount of the active ingredients added accounts for 10% of the moisturizer. In this embodiment, mineral pigments are used as the colorant, and the amount of the colorant added is three times that of the acrylate-alkanol-acrylate crosspolymer. The mineral pigments are in powder form and are made of iron oxide and / or titanium dioxide. The mass ratio of phenoxyethanol to carbomer is 1:1, and the amount of carbomer added accounts for 8% of the total amount of glycerin, cyclopentasiloxane, and beeswax. Coenzyme Q 10 The mass ratio of vitamin C and vitamin E is 1:1:1, and coenzyme Q is also included. 10 The amount added accounts for 20% of the humectant.
[0053] The processing method of the mousse eyeshadow in this embodiment includes the following steps: (1) The colorant is hydrophobically modified by using magnesium aluminum silicate and dimethyl silicone oil. Magnesium aluminum silicate, dimethyl silicone oil and colorant are mixed in a ratio of 0.7:1:1 and then ball-milled. The ball milling speed is 80 r / min and the time is 2 h. The diameter of the grinding ball used in the ball milling is 40 mm and the grinding ball is equivalent to 50% of the total mass of magnesium aluminum silicate, dimethyl silicone oil and colorant.
[0054] (2) Coenzyme Q 10 Dispersed in water, the amount of water used is Coenzyme Q. 10The mixture was twice the volume of the original material and ultrasonically mixed for 10 minutes at 200W to obtain a suspension. Soybean lecithin and the suspension were mixed at a 5:1 ratio and ground. 10 mL of 0.2 mol / L PBS (pH 6.0) was added three times, and the mixture was ground until homogeneous. The mixture was then transferred to an autoclave. Under conditions of 3000 r / min shear rate and 45℃, supercritical CO2 was introduced into the autoclave until the set pressure was reached. Ultrasonic treatment was then initiated at 18W, and both ultrasonication and shearing were performed for 50 minutes. Heating, shearing, and ultrasonication were then stopped sequentially. CO2 was released, and the particles on the inner wall of the autoclave were rinsed with PBS. After filtration, coenzyme Q was obtained. 10 Liposomes.
[0055] (3)~(5), same as in Example 1, to obtain #3 mousse eyeshadow.
[0056] Comparative Example 1 The only difference between this comparative example and Example 2 is that coenzyme Q was not added. 10 Similar to Example 2, 4# mousse eyeshadow was prepared.
[0057] Comparative Example 2 The only difference between this comparative example and Example 2 is that vitamin C and vitamin E were not added; otherwise, they are the same as in Example 2, and a mousse eyeshadow of #5 was prepared.
[0058] Comparative Example 3 The only difference between this comparative example and Example 2 is that the colorant was not treated in step (1), otherwise it is the same as Example 2, and 6# mousse eyeshadow is obtained.
[0059] Comparative Example 4 The only difference between this comparative example and Example 2 is that coenzyme Q was not used in step (2). 10 The liposome encapsulation process was repeated as in Example 2 to obtain mousse eyeshadow #7.
[0060] The following evaluation experiments were conducted on the #1 to #7 mousse eyeshadows prepared in Examples 1-3 and Comparative Examples 1-4. The evaluation experiments included two parts: makeup retention and efficacy evaluation. Women of the same age group from the same region were recruited and seven groups were formed. Each group used the #1 to #7 mousse eyeshadows, with three participants in each group, and the average value was taken. After the subjects applied the eyeshadows, they ran on a treadmill at 35°C and a speed of 10 km / h. After 10 minutes of running, all subjects began to sweat. After every 20 minutes of running, they rested for 10 minutes. After 3 hours, they stopped exercising and observed the makeup removal. Women from the same region were recruited. Those with spots around their eyes were marked as Group A, and those without spots were marked as Group B. Both Group A and Group B consisted of seven people. Each of the seven people used the #1 to #7 mousse eyeshadows and maintained three hours of outdoor activity daily for two months. On the first and last days of the experiment, photos of the skin around the eyes were taken after cleansing, and the changes in the skin around the eyes were observed by comparing the photos. The specific experimental process will not be described in detail here. The experimental results are shown in Table 1.
[0061] Table 1. Experimental Results of the Wearing Power and Efficacy Evaluation of Mousse Eyeshadows #1 to #7
[0062] In Table 1, the higher the score, the better the makeup lasts and the better the effect of reducing fine lines.
[0063] In the aforementioned makeup retention evaluation test, a running scenario at 35℃ until sweating was used to simulate the makeup retention effect of the mousse eyeshadow in actual use under high temperature and humidity conditions such as summer. Analyzing Table 1, mousse eyeshadows #1 to #3 showed good results in makeup retention, fine line reduction, and pigmentation improvement. The highest score was 9-10 points for makeup retention, indicating that even under high temperature and humidity conditions at 35℃, the eyeshadow did not show significant patchiness. This reflects that the mousse eyeshadow of this invention effectively isolates moisture and sweat penetration, improving its waterproof and sweatproof performance. The mousse eyeshadow also exhibits good colorfastness and longevity. Mousse eyeshadow #6 showed the worst makeup retention. This demonstrates that the synergistic surface treatment of pigment powder with magnesium aluminum silicate and dimethyl silicone oil in this invention effectively isolates moisture and sweat penetration, improving the colorfastness and longevity of the mousse eyeshadow, resulting in less makeup smudging and high makeup longevity.
[0064] Compared to the #2 mousse eyeshadow, the #4 mousse eyeshadow showed a significantly reduced effect in diminishing fine lines, and the dark spots were noticeably darker. This proves that the invention contains coenzyme Q. 10 The mousse eye cream helps repair skin elasticity and reduce fine lines, while the #5 mousse eyeshadow is better than #4 but worse than #2 in skin repair. This indicates that Coenzyme Q10... 10Vitamins C and E have a positive synergistic effect on skin repair. Although the effect on repairing existing pigmentation around the eyes was not significant in users, this may be because pigmentation formation is not solely influenced by ultraviolet radiation from sun exposure, but is also significantly affected by endocrine and genetic factors. However, the use of products containing coenzyme Q10 may improve the results. 10 The mousse eye cream, compared to those without added coenzyme Q, 10 In comparison, the degree of pigmentation worsening is lower, which also indicates that the mousse eye cream of this invention has the effect of preventing pigmentation worsening; the #7 mousse eyeshadow is better than #2 but worse than #4 in skin repair, which indicates that the coenzyme Q treated with liposomes... 10 It achieves better penetration, is more easily absorbed by the skin, and thus forms a better protective barrier.
[0065] The above embodiments are merely preferred embodiments of the present invention. Any simple modifications, alterations, and substitutions made to the above embodiments based on the technical essence of the present invention shall fall within the scope of the technical solution of the present invention.
Claims
1. A soft, silky, waterproof mousse eyeshadow, characterized by: The mousse eyeshadow comprises the following components: glycerin, cyclopentasiloxane, beeswax, moisturizer, polydimethylsiloxane, acrylate alkanol-acrylate crosspolymer, triethanolamine, colorant, and coenzyme Q. 10 It is made by mixing vitamin C, vitamin E, active ingredients, preservatives and stabilizers; wherein the mass ratio of glycerol, cyclopentasiloxane and beeswax is 1~2:1~3:1; and the mass ratio of polydimethylsiloxane, acrylate alkanol-acrylate crosspolymer and triethanolamine is 0.6~1:1:1~2.
2. The soft, silky, waterproof mousse eyeshadow according to claim 1, characterized in that, The moisturizer is composed of trehalose, aloe vera, hyaluronic acid, and squalane, and the mass ratio of trehalose, aloe vera, hyaluronic acid, and squalane is 2~4:0.2~0.6:1~3:0.5~1.5; the amount of the moisturizer added accounts for 60%~80% of the total amount of glycerin, cyclopentasiloxane, and beeswax; the amount of the acrylate alkanol-acrylate crosspolymer added accounts for 30%~60% of the moisturizer.
3. The soft, silky, waterproof mousse eyeshadow according to claim 1 or 2, characterized in that, The active ingredient consists of chamomile extract and honeysuckle extract, with a mass ratio of chamomile extract to honeysuckle extract of 0.5 to 1.5:
1. The amount of the active ingredient added accounts for 5% to 10% of the moisturizer.
4. The soft, silky, waterproof mousse eyeshadow according to claim 2, characterized in that, The colorant is at least one of mineral pigments and synthetic fluorescent pigments, and the amount of colorant added is 1 to 3 times that of the acrylate alkanol-acrylate crosslinked polymer; the mineral pigment is in powder form and is made of iron oxide and / or titanium dioxide; the synthetic fluorescent agent is pearl powder or glitter.
5. The soft, silky, waterproof mousse eyeshadow according to claim 1, characterized in that, The mass ratio of the preservative to the stabilizer is 1:1, and the amount of stabilizer added accounts for 4% to 8% of the total amount of glycerol, cyclopentasiloxane and beeswax; the preservative is phenoxyethanol; and the stabilizer is carbomer.
6. The soft, silky, waterproof mousse eyeshadow according to claim 1, characterized in that, The coenzyme Q 10 The mass ratio of vitamin C and vitamin E is 1:0.5~1:0.5~1, and coenzyme Q is also included. 10 The amount added should be 10% to 20% of the humectant.
7. A method for processing mousse eyeshadow as described in any one of claims 1 to 6, characterized in that, Includes the following steps: (1) Take the coloring agent and perform hydrophobic treatment; (2) Take Coenzyme Q 10 Liposome encapsulation was performed to obtain coenzyme Q. 10 Liposomes; (3) Mix polydimethylsiloxane, acrylate alkanol-acrylate crosslinking polymer and triethanolamine evenly to obtain an emulsion; (4) Mix glycerin, cyclopentasiloxane and beeswax, heat and melt them, stir evenly, then add moisturizer, colorant obtained in step (1), emulsion obtained in step (3), vitamin C, vitamin E and active ingredients in sequence, and stir thoroughly until the color is uniform. (5) Continue to add the coenzyme Q obtained from step (2). 10 Liposomes, preservatives, and stabilizers are stirred until a smooth and even paste is formed, resulting in mousse eyeshadow.
8. The processing method according to claim 7, characterized in that, In step (1), magnesium aluminum silicate and dimethyl silicone oil are used to modify the colorant hydrophobically. Magnesium aluminum silicate, dimethyl silicone oil and colorant are mixed in a ratio of 0.2~0.7:0.5~1:1 and then ball-milled. The ball milling speed is 60~80 r / min and the time is 2~4 h. The diameter of the grinding balls used in the ball milling is 20~40 mm and the grinding balls are equivalent to 40%~50% of the total mass of magnesium aluminum silicate, dimethyl silicone oil and colorant.
9. The processing method according to claim 7, characterized in that, In step (2), the liposome encapsulation process is specifically performed as follows: Coenzyme Q is encapsulated... 10 Soybean lecithin was dispersed in water and ultrasonically mixed to obtain a suspension. The suspension was then mixed with soybean lecithin and ground. PBS phosphate buffer was added in multiple portions, and grinding was continued until homogeneous. The mixture was then transferred to an autoclave, where supercritical CO2 was introduced. The autoclave was treated with ultrasound and shearing for 40-60 minutes to release CO2. The particles on the inner wall of the autoclave were rinsed with PBS phosphate buffer, and the final product, after filtration, was coenzyme Q. 10 Liposomes.
10. The processing method according to claim 9, characterized in that, The amount of water used is coenzyme Q. 10 The ultrasonic power is 100-200W, and the mixing time is 10-15 minutes. The soybean lecithin and suspension are mixed in a ratio of 3-5:
1. The soybean lecithin and suspension are mixed and then ground. 10 mL of 0.2 mol / L PBS phosphate buffer with pH 6.0 is added three times each time and ground until homogeneous. The mixture is then transferred to an autoclave.