Aerosol-type liquid crystal nano-encapsulated makeup remover mousse and preparation method thereof
Through liquid crystal nano-encapsulation technology and makeup remover mousse in aerosol form, the problems of makeup products being difficult to thoroughly clean and traditional makeup remover oils being inconvenient to use are solved, achieving the effects of powerful makeup removal, refreshing and non-sticky, and quick and thorough cleaning in a wet hands and face environment.
Patent Information
- Application Number
- CN202211368827.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-03
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2042-11-03
AI Technical Summary
Existing makeup products are difficult to thoroughly clean. Traditional makeup remover oils are inconvenient to use and easily emulsify. Double-layer makeup remover mousse needs to be manually emulsified, which is complicated to use and causes friction damage to the skin.
It uses liquid crystal nano-encapsulation technology to form a stable liquid crystal structure through a specific proportion of oily raw materials, plant oils and emulsifiers. It is in the form of an aerosol and can be sprayed directly for use to avoid the influence of water vapor, enhance the makeup removal effect and reduce skin friction.
It can effectively remove makeup with wet hands and face without emulsification. It is refreshing and non-sticky, reduces skin friction, is easy to use and cleans quickly and thoroughly. It is suitable for pregnant women and people with sensitive skin.
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Abstract
Description
Technical Field
[0001] The present invention relates to the field of C09D201 / 00, and in particular to an aerosol type liquid crystal nano-encapsulated makeup remover mousse and a preparation method thereof. Background Art
[0002] Typically, makeup products include BB cream, lipstick, lip gloss, eyebrow pencil, eye shadow, and blush. Due to concerns about sweat and moisture resistance, most makeup products are oil-soluble or oil-dispersible, and contain large amounts of oily ingredients, waxes, or silicone oils. Once applied to the face, these makeup products adhere strongly to the skin, making them difficult to remove with conventional cleansers (such as those formulated with amino acids, soaps, and synthetic surfactants). Therefore, oil-based makeup removers have been designed based on the principle of "like dissolves like."
[0003] CN114712270A discloses a mild makeup remover oil and a preparation method thereof. The oil is mainly composed of a large amount of vegetable oil, and is combined with low-freezing-point oil and antioxidants, thereby increasing the convenience of use for consumers in winter. While ensuring the makeup removal effect, the oil is relatively mild and suitable for sensitive skin. However, when using the makeup remover oil, it should be avoided from premature contact with water, because the intervention of water will cause the oil to emulsify prematurely, thereby reducing the makeup removal effect.
[0004] CN112675048A discloses a double-layer makeup remover mousse with strong makeup removal ability and dense foam, which can thoroughly remove makeup while leaving the skin smooth, non-greasy, refreshed, clean, and moisturized. However, use requires shaking the water and oil phases before using the mousse pump, which is inconvenient. Summary of the Invention
[0005] In response to the above problems, the present invention discloses an aerosol-type liquid crystal nano-encapsulated makeup remover mousse. The preparation raw materials include, by weight: 5-20 parts of oily raw materials, 1-8 parts of vegetable oils and fats, 3-10 parts of emulsifiers, 6-12 parts of emollients, 5-15 parts of moisturizers, 5-20 parts of plant extracts, 0.5-1 parts of preservatives, and 80-150 parts of water.
[0006] Preferably, the raw materials for preparation include, by mass: 15 parts of oily raw materials, 3 parts of vegetable oils and fats, 4 parts of emulsifiers, 8 parts of emollients, 8 parts of moisturizers, 10 parts of plant extracts, 0.8 parts of preservatives, and 100 parts of water.
[0007] In one embodiment, the oily raw material is selected from one or more of hydrogenated polydecene, hydrogenated polyisobutene, C16 isoparaffin, trimethylolpropane trioctanoate, trimethylolpropane triisostearate, PPG-3 caprylyl ether, C12-C14 fatty alcohol, C16-C18 fatty alcohol, octadecanoic acid, myristic acid, lauric acid, erucic acid, oleic acid, and PEG-20 stearate.
[0008] Preferably, the oily raw material is a compound of trimethylolpropane tricaprylate, C12-C14 fatty alcohol and PEG-20 stearate, with a mass ratio of (8-15):1:(2-5).
[0009] Further preferably, the mass ratio of the trimethylolpropane tricaprylate, C12-C14 fatty alcohol and PEG-20 stearate is 12:1:3.
[0010] In one embodiment, the vegetable oil comprises one or more of sunflower oil, olive oil, camellia oil, and corn oil.
[0011] Preferably, the vegetable oil is olive oil.
[0012] In one embodiment, the emulsifier is selected from one of isomeric tridecanol polyoxyethylene ether and fatty alcohol polyoxyethylene ether.
[0013] Preferably, the emulsifier is fatty alcohol polyoxyethylene ether, such as that purchased from Jinan Qihang Chemical Technology Co., Ltd., with the brand name: AEO-9.
[0014] In the prior art, the use of makeup remover oil is limited to dry hands and dry face. It needs to be emulsified by rubbing with fingers, and can only be used with cleansing products to thoroughly clean the face. Otherwise, the grease composed of thick plant oils makes the skin feel sticky and difficult to rinse. The present invention uses a unique liquid crystal nano-encapsulation technology to encapsulate insoluble grease with a compatible water-oil system to keep it clear and transparent. Wetting hands and wet face does not affect the makeup removal effect at all. The makeup removal power is stronger, rinsing is light, and it is refreshing and non-greasy. To achieve this technology, the oil phase formula is very important. The inventor has found through a lot of creative research that the use of the oily raw materials, plant oils and emulsifier formulas of the present invention can achieve liquid crystals with good stability. The inventor believes that the possible reason is that trimethylolpropane trioctanoate and PEG-20 stearate in the raw materials are ester organics containing a large number of hydroxyl groups and have small steric hindrance. Under the action of high-carbon fatty alcohols and emulsifiers, the electrostatic repulsion effect between molecules is further reduced, so that the oil phase can form a dense, ordered, strong viscoelastic film structure at the interface between the two phases, thereby promoting the formation of liquid crystals. Furthermore, PEG-20 stearate improves the sensory qualities of cosmetics and has a moisturizing effect, leaving the skin hydrated and radiant. It is safe for use by pregnant women, but it is slightly acne-causing. The addition of trimethylolpropane triacrylate and a small amount of olive oil can reduce the acne risk of PEG-20 stearate, making the product gentler and suitable for use by pregnant women and those with sensitive skin. Olive oil also provides a favorable oil phase environment for the formation of liquid crystals, further enhancing their stability. During use, the mousse, through contact with the stratum corneum of the human epidermis, carries nano-scale liquid crystals and penetrates into the epidermis's dermis, pores, furrows, and sweat crevices, stripping away the cosmetic ingredients covering the epidermis. Water and active ingredients replace the cosmetics, achieving cleansing and skincare benefits.
[0015] In one embodiment, the emollient comprises one or more of cetyl ethylhexanoate, PEG-7 glyceryl cocoate, ethylhexyl oliveate, and polyglyceryl-5 trioleate.
[0016] Preferably, the emollient is a compound of cetyl ethylhexanoate and PEG-7 glyceryl cocoate, with a mass ratio of (2-5):1.
[0017] Further preferably, the emollient is a combination of cetyl ethylhexanoate and PEG-7 glyceryl cocoate in a mass ratio of 3:1.
[0018] In one embodiment, the moisturizing agent is selected from one or more of 1,2-propylene glycol, 1,3-propylene glycol, butylene glycol, dipropylene glycol, methylpropylene glycol, glycerin, hyaluronic acid, sodium hyaluronate, sorbitol, amino acid, sodium pyrrolidonecarboxylate, lactic acid, ceramide, and vitamin E.
[0019] Preferably, the humectant is a combination of sodium hyaluronate and ceramide in a mass ratio of 1:(0.5-2).
[0020] Further preferably, the mass ratio of the hyaluronic acid, sodium hyaluronate and ceramide is 1:1.
[0021] In an embodiment, the plant extract is selected from one or more of Rosa damascena flower water, sour cherry extract, aloe extract, Centella asiatica extract, grapefruit extract, hawthorn extract, pueraria extract.
[0022] Preferably, the plant extract is a combination of Rosa damascena flower water and sour cherry extract in a mass ratio of (2-4):1.
[0023] Further preferably, the mass ratio of the Rosa damascena flower water and sour cherry extract is 2.5:1.
[0024] In an embodiment, the preservative is selected from one or more of phenoxyethanol, benzyl alcohol, benzoic acid, salicylic acid, boric acid, sorbic acid, hydroxypropyl benzoate, hydroxybutyl benzoate, 1,2-pentanediol, 1,2-hexanediol, phenylethanol, levulinic acid, anisic acid, 1,2-hexanediol, p-hydroxyacetophenone, glyceryl caprate, sorbitan caprylate, glyceryl undecylenate.
[0025] Preferably, the preservative is a combination of p-hydroxyacetophenone and 1,2-hexanediol in a mass ratio of 1:2.
[0026] The preservative used in the present application is p-hydroxyacetophenone and 1,2-hexanediol, which is a green preservative, has good bacteriostatic and preservative effect, and has little irritation. In addition, the present application has good stability in the water and emulsion system disclosed in the present application. The applicant believes that the possible reason is that p-hydroxyacetophenone and 1,2-hexanediol contain a large number of hydroxyl groups and carbonyl groups, which can form hydrogen bonds, cooperate with the emulsifier in the system, and mix to play the synergistic effect of hydrophilic-lipophilic groups. On the oil-water interface, a complex connected by hydrogen bonds is formed, greatly increasing the interface film strength, thereby further stabilizing the emulsion system.
[0027] Another aspect of the present application discloses a preparation method of the makeup removing mousse, comprising the following preparation methods:
[0028] (1) oil phase configuration;
[0029] (2) water phase configuration;
[0030] (3) emulsification;
[0031] (4) canning.
[0032] In an embodiment, the step (1) comprises mixing the oily raw material, the vegetable fat, and the emulsifier uniformly at a temperature of 60-70°C according to the mass ratio.
[0033] Preferably, the temperature of the step (1) is 62°C.
[0034] In an embodiment, the step (2) comprises mixing the remaining materials to obtain the water phase component at a temperature of 40-55°C according to the mass ratio.
[0035] Preferably, the temperature of the step (2) is 50°C.
[0036] In an embodiment, the step (3) comprises mixing the water and the oil phases in a high-shear mixing emulsifier to obtain the semi-finished product.
[0037] Preferably, the step (3) is performed at a rotation speed of 4000-6000 r / min for 5-8 min.
[0038] Further preferably, the rotation speed is 5000 r / min and the stirring time is 6 min.
[0039] In an embodiment, the step (4) comprises filling the semi-finished product and the propellant at a mass ratio of (4-9): 1 under a pressure of 0.45-0.6 Mpa to obtain the aerosol type liquid crystal nano-encapsulated makeup remover mousse.
[0040] The propellant includes but is not limited to propane, n-butane and isobutane, dimethyl ether, tetrafluoroethane, tetrafluoropropene, which can be selected by those skilled in the art according to the actual situation.
[0041] Through the above process, the water-insoluble fat is nano-encapsulated to be compatible with oil and water, and even after adding several times of water or fat, it can be nano-emulsified, which will not cause the fat to emulsify prematurely and reduce the makeup removal effect, avoiding the hindrance of makeup removal caused by environmental moisture or wet hands and face. Even in a bathroom full of moisture, you don't need to rub and dissolve the makeup remover mousse and makeup on your face in advance, and the mousse won't emulsify prematurely because of the moisture, and you can still achieve excellent makeup removal effect. However, the existing ordinary makeup removal products disclosed in the prior art have complex use steps and must be completely emulsified to thoroughly clean the makeup, which is time-consuming and can cause dry skin and damage the skin barrier due to long-term massage and rubbing. In addition, the ultra-fine nano-emulsified particles can be mixed with water in any ratio without whitening and can maintain the original clarity and transparency of the product.
[0042] The nano-clear makeup remover mousse disclosed in the present invention breaks through the barrier that oil products cannot foam. It releases the makeup remover oil in the form of mousse through aerosol form, which is different from the traditional cream lotion. The mousse can be used directly on the face, effectively expanding the use area. Only the fingers need to gently move the mousse to the various parts that need to remove makeup, better acting on the makeup on the face, enhancing the cleaning effect, and is more convenient to use than the double-layer makeup remover mousse disclosed in CN112675048A. In addition, it can also avoid long-term manual emulsification, reduce facial friction, and reduce damage to the skin. The unique ratio makes it easy to rinse, refreshing and non-greasy, without the need for secondary cleaning, saving time and worry to protect the skin barrier, and completing deep cleansing of the skin in 1 minute.
[0043] The nano-clear makeup remover mousse disclosed in the present invention is an aerosol product. The contents are sealed in a container equipped with a valve and sprayed in the form of a foam mousse under the pressure of a propellant. It is a single-use product and does not require secondary filling. During use, because the product is pressurized, there is no chance of external air or contaminants contaminating the unused product in the can. When the actuator is pressed, the valve opens, and the can's contents, under the action of gas pressure, are directed upward through the liquid guide tube and sprayed out of the nozzle. There is only one channel, and unlike conventional packaging, there is no shrinkage phenomenon. This fully guarantees the quality of the contents and prevents contamination.
[0044] Beneficial effects:
[0045] 1. The present invention ensures that the oil phase can form a dense, ordered, strong viscoelastic film structure at the interface between the two phases by selecting the oil phase components and regulating the mass ratio, thereby ensuring the formation of liquid crystals.
[0046] 2. By adding a small amount of olive oil, the present invention can reduce the acne risk of PEG-20 stearate, making the product more gentle and suitable for pregnant women and people with sensitive skin. In addition, olive oil can provide a good oil phase environment for the formation of liquid crystals, thereby further improving the stability of liquid crystals.
[0047] 3. The present invention uses unique liquid crystal nano-encapsulation technology to encapsulate insoluble grease with a compatible water-oil system, keeping it clear and transparent. Even when used in a bathroom full of moisture, there is no need to rub the makeup remover mousse and facial makeup in advance to dissolve them. The makeup removal power is stronger, and rinsing is easy, refreshing and non-greasy.
[0048] 4. The present invention uses unique liquid crystal nano-encapsulation technology to obtain a liquid crystal emulsion that will not turn white when mixed with water in any proportion, and can also maintain the product's original clarity and transparency.
[0049] 5. The present invention uses an aerosol form to apply the mousse directly to the face, effectively expanding the use area, making it more convenient to use and eliminating the need for secondary cleaning. This saves time and effort in protecting the skin barrier and allows for deep skin cleansing in 1 minute.
[0050] 6. The present invention is a disposable product in the form of an aerosol, and does not require secondary filling. The contents are sealed in a container equipped with a valve, and there is no shrinkage phenomenon like ordinary packaging, which fully guarantees the quality of the inner material and prevents contamination. BRIEF DESCRIPTION OF THE DRAWINGS
[0051] Figure 1 Product pictures of Comparative Example 2 and Example 3, a is the state without adding water, b is after adding water.
[0052] Figure 2 Comparative Example 2 usage diagram.
[0053] Figure 3 Example 3 usage diagram.
[0054] Figure 4 Observation results of the liquid crystal system of Example 3 under a common microscope.
[0055] Figure 5 The liquid crystal morphology of Example 3 is observed under a polarizing microscope.
[0056] Figure 6 Graph showing changes in the liquid crystal morphology of Example 3 during use. DETAILED DESCRIPTION
[0057] Example 1
[0058] On the one hand, this embodiment 1 discloses an aerosol-type liquid crystal nano-encapsulated makeup remover mousse, which is prepared from the following raw materials, by weight: 5 parts of oily raw materials, 1 part of vegetable oil, 3 parts of emulsifier, 6 parts of emollient, 5 parts of moisturizer, 5 parts of plant extract, 0.5 part of preservative, and 80 parts of water.
[0059] The oily raw material is a compound of trimethylolpropane trioctanoate, C12-C14 fatty alcohol and PEG-20 stearate, with a mass ratio of 8:1:5.
[0060] The C12-C14 fatty alcohol was purchased from Huainan Kedi Chemical Technology Co., Ltd., CAS No.: 112-53-8.
[0061] The vegetable oil is olive oil.
[0062] The emulsifier is fatty alcohol polyoxyethylene ether, purchased from Jinan Qihang Chemical Technology Co., Ltd., with the brand name: AEO-9.
[0063] The emollients are cetyl ethylhexanoate and PEG-7 glyceryl cocoate, with a mass ratio of 2:1.
[0064] The moisturizing agents are sodium hyaluronate and ceramide, with a mass ratio of 1:0.5.
[0065] The sodium hyaluronate was purchased from Bloomage Biotechnology Co., Ltd., CAS No.: 9067-32-7.
[0066] The ceramide was purchased from Chongqing Zhihe Biopharmaceutical Co., Ltd. with the brand name NP1.
[0067] The plant extract is Rosa damascena flower water and sour cherry extract, with a mass ratio of 2:1.
[0068] The Rosa tauricola floral water was purchased from Guangzhou Yunli Biotechnology Co., Ltd., item number 03.
[0069] The sour cherry extract was purchased from Xi'an Virgin, with the product number being WZSW912.
[0070] The preservative is a compound of p-hydroxyacetophenone and 1,2-hexanediol in a mass ratio of 1:2.
[0071] The undisclosed parts of the raw materials are all commercially available.
[0072] On the other hand, this embodiment 1 discloses a preparation method of the makeup remover mousse, and the preparation method is as follows:
[0073] (1) Oil phase preparation: Mix the oily raw materials, vegetable oils and emulsifiers at 60°C according to the mass requirements.
[0074] (2) Water phase preparation: According to the mass requirements, the remaining materials are mixed to obtain the water phase component. The mixing temperature is 40°C.
[0075] (3) Emulsification: In a high shear mixing emulsifier, the speed is 6000r / min, the stirring time is 5min, and the water and oil phases are mixed to obtain a semi-finished product.
[0076] (4) Canning: can the semi-finished product and propane at a mass ratio of 9:1, and control the pressure to 0.45-0.6 MPa to obtain an aerosol type liquid crystal nano-encapsulated makeup remover mousse.
[0077] Example 2
[0078] On the one hand, this embodiment 2 discloses an aerosol-type liquid crystal nano-encapsulated makeup remover mousse, which is prepared from the following raw materials, by mass: 20 parts of oily raw materials, 8 parts of vegetable oils and fats, 10 parts of emulsifiers, 12 parts of emollients, 15 parts of moisturizers, 20 parts of plant extracts, 1 part of preservatives, and 150 parts of water.
[0079] The oily raw material is a compound of trimethylolpropane trioctanoate, C12-C14 fatty alcohol and PEG-20 stearate, with a mass ratio of 15:1:2.
[0080] The vegetable oil is olive oil.
[0081] The emulsifier is fatty alcohol polyoxyethylene ether.
[0082] The emollient is a compound of cetyl ethylhexanoate and PEG-7 glyceryl cocoate, with a mass ratio of 5:1.
[0083] The moisturizing agent is a compound of sodium hyaluronate and ceramide, with a mass ratio of 1:2.
[0084] The plant extract is Rosa damascena flower water and sour cherry extract, with a mass ratio of 4:1.
[0085] The preservative is a compound of p-hydroxyacetophenone and 1,2-hexanediol in a mass ratio of 1:2.
[0086] The raw material purchasing information is the same as that in Example 1.
[0087] On the other hand, this embodiment 2 discloses a preparation method of the makeup remover mousse, and the preparation method is as follows:
[0088] (1) Oil phase preparation: according to the mass requirements, mix the oily raw materials, vegetable oils and emulsifiers at a temperature of 70°C.
[0089] (2) Water phase preparation: According to the mass requirements, the remaining materials were mixed to obtain the water phase component. The mixing temperature was 55°C.
[0090] (3) Emulsification: In a high shear mixing emulsifier, the rotation speed is 4000 r / min, the stirring time is 8 min, and the water and oil phases are mixed to obtain a semi-finished product.
[0091] (4) Canning: can the semi-finished product and butane at a mass ratio of 4:1, and control the pressure to 0.45-0.6 MPa to obtain an aerosol type liquid crystal nano-encapsulated makeup remover mousse.
[0092] Example 3
[0093] On the one hand, this Example 3 discloses an aerosol-type liquid crystal nano-encapsulated makeup remover mousse, which is prepared from the following raw materials, by mass: 15 parts of oily raw materials, 3 parts of vegetable oils and fats, 4 parts of emulsifiers, 8 parts of emollients, 8 parts of moisturizers, 10 parts of plant extracts, 0.8 parts of preservatives, and 100 parts of water.
[0094] The oily raw materials are trimethylolpropane trioctanoate, C12-C14 fatty alcohol and PEG-20 stearate in a mass ratio of 12:1:3.
[0095] The vegetable oil is olive oil.
[0096] The emulsifier is fatty alcohol polyoxyethylene ether.
[0097] The emollient is a compound of cetyl ethylhexanoate and PEG-7 glyceryl cocoate, with a mass ratio of 3:1.
[0098] The moisturizing agent is a compound of sodium hyaluronate and ceramide, with a mass ratio of 1:1.
[0099] The plant extract is Rosa damascena flower water and sour cherry extract, with a mass ratio of 2.5:1.
[0100] The preservative is a compound of p-hydroxyacetophenone and 1,2-hexanediol in a mass ratio of 1:2.
[0101] The raw material purchasing information is the same as that in Example 1.
[0102] On the other hand, this embodiment 3 discloses a preparation method of the makeup remover mousse, and the preparation method is as follows:
[0103] (1) Oil phase preparation: Mix the oily raw materials, vegetable oils and emulsifiers at 62°C according to the mass requirements.
[0104] (2) Water phase preparation: According to the mass requirements, the remaining materials are mixed to obtain the water phase component. The mixing temperature is 50°C.
[0105] (3) Emulsification: In a high shear mixing emulsifier, the speed is 5000r / min, the stirring time is 6min, and the water and oil phases are mixed to obtain a semi-finished product.
[0106] (4) Canning: The semi-finished product and isobutane are canned at a mass ratio of 6:1, and the pressure is controlled at 0.45-0.6 MPa to obtain an aerosol type liquid crystal nano-encapsulated makeup remover mousse.
[0107] Comparative Example 1
[0108] Comparative Example 1 discloses an aerosol-type liquid crystal nano-encapsulated makeup remover mousse. The raw materials for the preparation are, by weight, 18 parts of oily raw materials, 4 parts of emulsifiers, 8 parts of emollients, 8 parts of moisturizers, 10 parts of plant extracts, 0.8 parts of preservatives, and 100 parts of water.
[0109] The oily raw materials are trimethylolpropane trioctanoate and PEG-20 stearate in a mass ratio of 12:4.
[0110] The rest is the same as Example 3.
[0111] Comparative Example 2
[0112] Commercially available makeup remover oil, Shu Uemura Amber Essential Cleansing Oil, 150mL.
[0113] Performance testing:
[0114] 1. Stability test: The semi-finished products prepared in Examples 1-3 and Comparative Example 1 were placed at 50°C for 3 weeks and at 5°C for 3 weeks to observe whether they delaminated. The results are recorded in Table 1 below.
[0115] Table 1
[0116] 50℃ 10℃ Example 1 No delamination, good stability No delamination, good stability Example 2 No delamination, good stability No delamination, good stability Example 3 No delamination, good stability No delamination, good stability Comparative Example 1 Delamination, poor stability Delamination, poor stability
[0117] 2. Example 3 was subjected to microbiological standard test GB7918.3-1987, and the results are recorded in Table 2 below.
[0118] Table 2
[0119]
[0120] 3. Physical and chemical tests were performed on Example 3. The results and test methods are shown in Table 3 below.
[0121]
[0122] 4. Performance test: Compare the products of Example 3 with those of Comparative Example 2. Figure 1 It can be seen that the semi-finished product obtained in Example 3 remains clear after adding water, while the makeup remover oil product in Comparative Example 2 separates into layers after adding water.
[0123] Figure 2 For the makeup removal effect of comparative example 2, cleaning is affected by water and requires repeated rubbing and secondary cleaning.
[0124] Figure 3 The makeup removal effect is the same as in Example 3, which can easily emulsify the surface containing water and thoroughly rinse the makeup on the surface without the need for secondary cleaning.
[0125] 5. Liquid crystal morphology observation: according to Figure 4-Figure 6 , we can see the liquid crystal state in Example 3, there are a lot of liquid crystals, the shapes are irregular, and the emulsion is delicate.
Claims
1. An aerosol type liquid crystal nano-encapsulated makeup remover mousse, characterized in that: The raw materials for the preparation include, by weight: 5-20 parts of oily raw materials, 1-8 parts of vegetable oils and fats, 3-10 parts of emulsifiers, 6-12 parts of emollients, 5-15 parts of moisturizers, 5-20 parts of plant extracts, 0.5-1 parts of preservatives, and 80-150 parts of water; The oily raw material is a compound of trimethylolpropane trioctanoate, C12-C14 fatty alcohol and PEG-20 stearate, with a mass ratio of (8-15):1:(2-5); The vegetable oil is olive oil; The emulsifier is fatty alcohol polyoxyethylene ether; The emollient is a compound of cetyl ethylhexanoate and PEG-7 glyceryl cocoate, with a mass ratio of (2-5):1; The moisturizing agent is a compound of sodium hyaluronate and ceramide, with a mass ratio of 1: (0.5-2).
2. The makeup remover mousse according to claim 1, characterized in that The plant extract is selected from one or more of Rosa damascena flower water, sour cherry extract, aloe extract, Centella asiatica extract, grapefruit extract, hawthorn extract, and Pueraria root extract.
3. A method for preparing the makeup remover mousse according to any one of claims 1 to 2, characterized in that: The preparation method includes the following steps: (1) preparing the oil phase: uniformly mixing the oily raw materials, vegetable oils and emulsifiers at a temperature of 60°C according to the mass requirements; (2) preparing the water phase: mixing the remaining materials at a mass ratio of 40°C to obtain the water phase component; (3) emulsifying; and (4) canning.
4. The makeup remover mousse according to claim 3, characterized in that The step (3) comprises mixing water and oil in a high shear mixing emulsifier to obtain a semi-finished product.
5. The makeup remover mousse according to claim 3, characterized in that The step (4) comprises canning the semi-finished product and the propellant at a mass ratio of (4-9):1, and controlling the pressure to be 0.45-0.6 MPa to obtain an aerosol type liquid crystal nano-encapsulated makeup remover mousse.
Citation Information
Patent Citations
Double-layer makeup removing mousse and preparation method thereof
CN112675048A
Emulsion composition
JP2012055888A