Makeup removal composition as well as preparation method and application thereof

By combining specific oils and surfactants, a water-oil dual-phase makeup remover composition was prepared, which solved the problems of weak cleansing ability, strong irritation, and the need for cotton pads in existing makeup removers. It achieved the effect of highly efficient makeup removal, no need for cotton pads, and suitable for oily skin.

CN120938858APending Publication Date: 2025-11-14KOLMAR COSMETICS (WUXI) CO LTD
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Patent Information

Application Number
CN202510963856.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-11
Publication Date
2025-11-14

AI Technical Summary

Technical Problem

Existing makeup removers have weak cleansing power, require cotton pads for application which can damage the skin, are highly irritating, have a thick texture, and are difficult to use on oily skin.

Method used

A water-oil dual-phase makeup remover composition was prepared by using isononyl isononanoate and isohexadecane as oils, PEG-8 glyceryl isostearate, polyglyceryl-4 decanoate and PEG-7 glyceryl cocoate as surfactants, and sodium carbomer as a thickener, thereby reducing the amount of alkaline neutralizer and surfactant.

Benefits of technology

It effectively removes even the most stubborn makeup products, can be applied directly without cotton pads, reduces skin irritation, and is suitable for various skin types, especially oily skin.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a makeup removing composition and a preparation method and application thereof.The makeup removing composition comprises water, grease, a thickening agent and a surfactant, the grease is composed of isononyl isononanoate and isohexadecane, the surfactant is composed of PEG-8 glyceryl isostearate, polyglycerol-4 decanoate and PEG-7 glyceryl cocoate, the thickening agent comprises carbomer sodium, and the surfactant is composed of sodium dodecyl benzene sulfonate. The preparation method comprises the following steps: uniformly mixing the components; the composition not only has efficient removal capacity for cosmetic products which are difficult to remove and can quickly dissolve waterproof cosmetic products (such as mascara cream and the like), but also does not need to add an alkaline neutralizer, the dosage of a surfactant can be reduced, irritation to skin is reduced, meanwhile, the composition has relatively ideal viscosity, does not need to use makeup cotton, and is convenient to use. The ointment can be directly smeared for use, and damage to skin is reduced. In addition, the makeup removing composition has the characteristic of light and thin texture, can be used for various skin types, and is beneficial for oily skin consumers to use.
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Description

Technical Field

[0001] This invention relates to the field of daily chemical products, specifically to a makeup remover composition, its preparation method, and its application. Background Technology

[0002] With the widespread use of makeup products such as sunscreen, foundation, and mascara, the market demand for makeup removers is gradually increasing. Currently, common makeup removers on the market are roughly divided into five categories: cleansing water, cleansing balm, cleansing oil, cleansing gel, and cleansing milk. Cleansing water's main ingredients are water and surfactants; it has a refreshing texture and is suitable for removing light makeup. The method of use is to pour cleansing water onto a cotton pad and gently wipe the face. However, this method can easily damage the skin, and cleansing water has relatively weak makeup-removing power. Cleansing balms and cleansing oils are both pure oil-based products, with oils and surfactants as their main ingredients. Although their appearance and texture differ, their makeup-removing principle is the same: first, "oil dissolves oil," and then rinsing with water activates the surfactants to wash away the dissolved makeup and skin impurities. Some makeup removers can effectively remove heavy and waterproof makeup, but oily-skinned consumers may experience breakouts when using them. Cleansing milk is an emulsified makeup remover, with main ingredients being water, oil, and emulsifiers. Its makeup removal principle is also "oil dissolves oil," but because it lacks makeup-removing surfactants, its makeup removal power is relatively weak, suitable for light daily makeup, but difficult to remove heavy makeup. Finally, there are cleansing gels. Currently, the main ingredients of most cleansing gels on the market are water, surfactants, and thickeners. They are based on cleansing water but with increased viscosity, allowing for direct application to the face without cotton pads. The texture is light but water-based, and it can only remove light makeup.

[0003] In other words, current makeup removers still have some of the following problems to varying degrees: weak cleansing power, making it difficult to quickly dissolve waterproof makeup products (such as mascara); requiring the use of cotton pads, which can easily damage the skin; strong irritation, making them unsuitable for sensitive skin; and a heavy texture, for example, some pure oil-based products can remove makeup, but oily-skinned consumers may experience breakouts when using them. In summary, there is a need for a makeup remover that is safe for oily skin to use, has good makeup removal power, does not require the use of cotton pads, and does not irritate the skin barrier. Summary of the Invention

[0004] The purpose of this invention is to overcome one or more shortcomings in the prior art and provide a new makeup removal composition that has strong cleaning power, can be applied directly, has a light texture, and is less irritating.

[0005] The present invention also provides a method for preparing the above-mentioned makeup removal composition and its application in the preparation of makeup removal products, such as makeup removal gel.

[0006] To achieve the above objectives, the present invention employs the following technical solution:

[0007] A makeup remover composition comprising water, oil, thickener, and surfactant, wherein the oil is composed of isononyl isononanoate and isohexadecane, wherein the mass ratio of isononyl isononanoate to isohexadecane is 1.5-8:1; the surfactant is composed of PEG-8 glyceryl isostearate, polyglycerol-4-decanoate, and PEG-7 glyceryl cocoate, wherein the mass ratio of PEG-8 glyceryl isostearate, polyglycerol-4-decanoate, and PEG-7 glyceryl cocoate is 4-10:1.5-8:1; and the thickener comprises sodium carbomer.

[0008] In some embodiments of the present invention, the oil comprises 5%-15% by weight in the makeup remover composition. Further, the oil comprises 6%-10% by weight in the makeup remover composition.

[0009] In some embodiments of the present invention, the surfactant comprises 5%-15% by weight in the makeup remover composition. Further, the surfactant comprises 6%-10% by weight in the makeup remover composition.

[0010] In some embodiments of the present invention, the thickener comprises 1%-3% by weight in the makeup remover composition. Further, the thickener comprises 1.5%-2% by weight in the makeup remover composition.

[0011] In some embodiments of the present invention, the mass ratio of isononyl isononanoate to isohexadecane is 1.6-7:1.

[0012] In some embodiments of the present invention, the mass ratio of the PEG-8 glyceryl isostearate, the polyglycerol-4 decanoate, and the PEG-7 glyceryl cocoate is 5-9:2-7.5:1.

[0013] In some embodiments of the present invention, the mass ratio of the oil, the surfactant and the thickener is 4.0-5.2:4.05-5.4:1.

[0014] In some embodiments of the present invention, the makeup remover composition further comprises one or more of polyols, preservatives, and chelating agents.

[0015] Furthermore, the polyol may include, but is not limited to, butanediol.

[0016] Furthermore, the preservative may include, but is not limited to, 1,2-hexanediol and / or p-hydroxyacetophenone.

[0017] Furthermore, the chelating agent may include, but is not limited to, disodium ethylenediaminetetraacetate (EDTA disodium).

[0018] According to certain aspects of the present invention, the makeup remover composition comprises, by weight: 70-80 parts water, 4-8 parts isononyl isononanoate, 3-10 parts butylene glycol, 3-5 parts PEG-8 glyceryl isostearate, 2-5 parts polyglycerol-4 decanoate, 1-3 parts isohexadecane, 1-3 parts sodium carbomer, 0.5-2 parts 1,2-hexanediol, 0.3-1 part p-hydroxyacetophenone, 0.1-1 part PEG-7 glyceryl cocoate, and 0.01-0.1 parts disodium ethylenediaminetetraacetate.

[0019] Another technical solution provided by the present invention is a method for preparing the above-mentioned makeup removal composition, the preparation method comprising: mixing the components evenly to prepare a makeup removal composition.

[0020] Furthermore, during the preparation process:

[0021] Water, preservatives, and chelating agents are mixed to form phase A;

[0022] Polyols and thickeners are mixed to form phase B;

[0023] Oils and surfactants are mixed to form phase C;

[0024] Under homogeneous conditions, phase B is added to phase A and dispersed evenly. Then phase C is added and mixed to prepare a makeup remover composition.

[0025] Another technical solution provided by the present invention: the application of the above-described makeup removal composition in the preparation of makeup removal products.

[0026] Due to the application of the above technical solution, the present invention has the following advantages compared with the prior art:

[0027] Addressing the shortcomings of existing makeup removers, such as weak cleansing power, the need for cotton pads, high irritation, and heavy texture, this invention innovatively provides a water-oil dual-phase makeup remover composition. This composition, through a combination of specific oils, surfactants, thickeners, and water, not only effectively removes stubborn makeup products and quickly dissolves waterproof makeup (such as mascara), but also eliminates the need for alkaline neutralizers, reducing surfactant usage and minimizing skin irritation. Furthermore, it possesses ideal viscosity, allowing for direct application without cotton pads, thus minimizing skin damage. In addition, the makeup remover composition of this invention has a lightweight texture, making it suitable for various skin types, especially oily skin. Attached Figure Description

[0028] Figure 1 These are test images of the makeup removal compositions of Examples 1-4 of the present invention removing mascara.

[0029] Figure 2 These are test images of the makeup removal compositions of Examples 1-4 of the present invention removing lipstick, eyeshadow, and cushion cream.

[0030] Figure 3 These are test images of the makeup removal compositions used in Examples 1 and 1-5 of the present invention to remove mascara.

[0031] Figure 4 These are test images of the makeup removal compositions used in Examples 1 and 6-8 of the present invention to remove mascara. Detailed Implementation

[0032] The above-mentioned solution will be further described below with reference to specific embodiments; it should be understood that these embodiments are used to illustrate the basic principles, main features and advantages of the present invention, and the present invention is not limited to the scope of the following embodiments; the implementation conditions used in the embodiments can be further adjusted according to specific requirements, and the implementation conditions not specified are usually the conditions in conventional experiments.

[0033] Unless otherwise specified in the following examples, all raw materials are commercially available or prepared by conventional methods in the art.

[0034] Isonononyl isononanoate, purchased from SEIL INTERNATIONAL LTD, brand name DUB ININ A; isohexadecane, purchased from LANXESSDISTRIBUTION GMBH, brand name PUROLAN IHD; mineral oil, purchased from HANYUENERGY LTD., brand name WO-70; glyceryl tri(ethylhexanoate), purchased from PT MUSIM MAS, brand name MASESTER E2590; PEG-8 glyceryl isostearate, purchased from NIHON EMULSION, brand name EMALEX GWIS-108; polyglycerol-4-decanoate, purchased from EVONIK NUTRITION & CAREGMBH GOLDSCHMIDTSTR. 100D-45127ESSEN, brand name... PC 41MB; PEG-7 glyceryl cocoate, purchased from BASF, brand name HE; PEG-6 caprylic / capric triglycerides, purchased from IIOLEO GMBH, brand name 767; Octyl / decyl glucoside, purchased from SEPPIC, brand name ORAMIX CG 110; Sodium carbomer, purchased from SUMITOMO SEIKA CHEMICALS CO.LTD., brand name AQUPEC MG N40R; Butylene glycol, purchased from OQ CHEMICALSCORPORATION, brand name 1,3-BG (Cosmetic Quality).

[0035] Example 1

[0036] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 1.

[0037] Table 1

[0038]

[0039] The preparation method of this makeup remover composition includes:

[0040] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0041] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0042] Isononyl isononanoate, isohexadecane, PEG-8 glyceryl isostearate, polyglycerol-4 decanoate, and PEG-7 glyceryl cocoate were mixed and dispersed to obtain phase C.

[0043] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0044] Example 2

[0045] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 2.

[0046] Table 2

[0047]

[0048]

[0049] The preparation method of this makeup remover composition is the same as in Example 1.

[0050] Example 3

[0051] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 3.

[0052] Table 3

[0053]

[0054] The preparation method of this makeup remover composition is the same as in Example 1.

[0055] Example 4

[0056] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 4.

[0057] Table 4

[0058]

[0059]

[0060] The preparation method of this makeup remover composition is the same as in Example 1.

[0061] Comparative Example 1

[0062] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 5.

[0063] Table 5

[0064]

[0065] The preparation method of this makeup remover composition includes:

[0066] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0067] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0068] Isohexadecane, PEG-8 glyceryl isostearate, polyglycerol-4 decanoate, and PEG-7 glyceryl cocoate were mixed and dispersed to obtain phase C;

[0069] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0070] Comparative Example 2

[0071] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 6.

[0072] Table 6

[0073]

[0074] The preparation method of this makeup remover composition includes:

[0075] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0076] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0077] Isononyl isononanoate, PEG-8 glyceryl isostearate, polyglycerol-4 decanoate, and PEG-7 glyceryl cocoate were mixed and dispersed to obtain phase C.

[0078] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0079] Comparative Example 3

[0080] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 7.

[0081] Table 7

[0082]

[0083]

[0084] The preparation method of this makeup remover composition includes:

[0085] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0086] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0087] PEG-8 glyceryl isostearate, polyglycerol-4 decanoate, and PEG-7 glyceryl cocoate were mixed and dispersed to obtain phase C;

[0088] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0089] Comparative Example 4

[0090] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 8.

[0091] Table 8

[0092]

[0093] The preparation method of this makeup remover composition includes:

[0094] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0095] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0096] Mineral oil, isohexadecane, PEG-8 glyceryl isostearate, polyglycerol-4 decanoate, and PEG-7 glyceryl cocoate were mixed and dispersed to obtain phase C.

[0097] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0098] Comparative Example 5

[0099] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 9.

[0100] Table 9

[0101]

[0102] The preparation method of this makeup remover composition includes:

[0103] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0104] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0105] Mineral oil, glyceryl tri(ethylhexanoate), PEG-8 glyceryl isostearate, polyglyceryl-4 decanoate, and PEG-7 glyceryl cocoate were mixed and dispersed to obtain phase C;

[0106] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0107] Comparative Example 6

[0108] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 10.

[0109] Table 10

[0110]

[0111] The preparation method of this makeup remover composition includes:

[0112] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0113] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0114] Isononyl isononanoate, isohexadecane, polyglycerol-4-decanoate, PEG-7 glyceryl cocoate, and octyl / decyl glucoside were mixed and dispersed to obtain phase C.

[0115] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0116] Comparative Example 7

[0117] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 11.

[0118] Table 11

[0119]

[0120]

[0121] The preparation method of this makeup remover composition includes:

[0122] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0123] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0124] Isononyl isononanoate, isohexadecane, PEG-8 glyceryl isostearate, octyl / decyl glucoside, and PEG-7 glyceryl cocoate were mixed and dispersed to obtain phase C.

[0125] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0126] Comparative Example 8

[0127] This example provides a makeup removal composition and its preparation method. The formulation of the makeup removal composition is shown in Table 12.

[0128] Table 12

[0129]

[0130] The preparation method of this makeup remover composition includes:

[0131] Water, p-hydroxyacetophenone, 1,2-hexanediol, and disodium EDTA are added to a manufacturing pot and heated to 45-50°C until completely dissolved to obtain phase A.

[0132] Butanediol and sodium carbomer were mixed and dispersed to obtain phase B;

[0133] Isononyl isononanoate, isohexadecane, PEG-6 octanoic / decanoic glycerides, octyl / decyl glucoside, and PEG-7 glyceryl cocoate were mixed and dispersed to obtain phase C.

[0134] Under homogenization conditions (homogenization speed of 3400±200 rpm, homogenization temperature of 45-50℃), phase B was added to phase A and dispersed evenly. Then phase C was added, stirred evenly, and cooled to room temperature to prepare a makeup removal composition.

[0135] Performance testing

[0136] (1) Patch test

[0137] Test substance: Makeup remover compositions of Examples 1-4 (diluted with water at a ratio of 1:9)

[0138] Negative control: blank

[0139] Participants: A total of 10 participants, 9 females and 1 male, aged 24-31 years, who met the criteria for voluntary participation.

[0140] Patch test method: Select a qualified patch tester and apply 0.020-0.025 mL of the test substance into the patch tester using the closed patch test method. Remove the test substance after 24 hours. Observe the skin reaction at 0.5, 24 and 48 hours after removal. Record the results according to the skin reaction grading standard in the "Cosmetic Safety Technical Specifications" (2015 edition). See Table 13 for the skin reaction grading standard of closed patch test.

[0141] Table 13

[0142]

[0143] The test results are shown in Table 14.

[0144] Table 14

[0145]

[0146]

[0147] (2) Makeup removal ability test

[0148] (2-1) Examples 1-4 Mascara Removal Test

[0149] Test substance: Makeup removal compositions of Examples 1-4;

[0150] Negative control: water;

[0151] Test method: Apply the mascara sample evenly to the arm, and after the mascara dries, use the makeup removal composition of Examples 1-4 to test the makeup removal power and compare it with the negative control group.

[0152] See test results Figure 1 As can be seen from the above, the makeup removal compositions of Examples 1-4 of the present invention can dissolve mascara, and after rinsing with water, the makeup is removed very cleanly, indicating that the present invention can effectively remove difficult-to-remove makeup products - hair removal cream.

[0153] (2-2) Examples 1-4: Tests on removing lipstick, eyeshadow, and cushion products

[0154] Test substance: Makeup removal compositions of Examples 1-4

[0155] Test method: Apply lipstick, eyeshadow, and cushion cream samples evenly to the arm. After the makeup dries, use the makeup removal compositions of Examples 1-4 to test the makeup removal power and observe the removal power of the examples.

[0156] See test results Figure 2 As shown, the makeup removal compositions of Examples 1-4 of the present invention have good dissolving ability for lipstick, eyeshadow and cushion cream products, and after washing, they are removed very cleanly, indicating that the present invention can effectively remove a variety of difficult-to-remove makeup products such as lipstick, eyeshadow and cushion cream, and has a wide range of applications.

[0157] (2-3) Mascara Removal Tests in Examples 1 and Comparative Examples 1-5

[0158] Test substances: Makeup removal compositions of Examples 1 and Comparative Examples 1-5

[0159] Test method: Apply the mascara sample evenly to the arm, and after the mascara dries, use the makeup removal composition of Example 1 and Comparative Examples 1-5 to test the makeup removal power for comparison.

[0160] See test results Figure 3As shown, the makeup removal composition of Example 1 of the present invention can dissolve mascara and removes it very cleanly after rinsing with water; while Comparative Examples 1 and 3 have the worst removal performance, Comparative Example 2 has a relatively good removal ability, and Comparative Example 4, after replacing isononyl isononanoate with the commonly used makeup removal ingredient mineral oil, has a greatly weakened removal ability and does not remove the makeup cleanly. Comparative Example 5, based on Comparative Example 4, further replaces isohexadecane with triglyceride (ethylhexanoate), but still has the problem of not removing the makeup cleanly. This indicates that the combination of isononyl isononanoate and isohexadecane of the present invention has better makeup removal ability.

[0161] (2-4) Mascara Removal Tests in Examples 1 and 6-8

[0162] Test substances: Makeup removal compositions of Examples 1 and Comparative Examples 6-8

[0163] Test method: Apply the mascara sample evenly to the arm, and after the mascara dries, use the makeup removal composition of Example 1 and Comparative Examples 6-8 to test the makeup removal power for comparison.

[0164] See test results Figure 4 As shown, the makeup removal composition of Example 1 of the present invention can dissolve mascara, and after rinsing with water, it removes the makeup very cleanly. Comparative Examples 6 and 7 each replaced one component of the present invention, resulting in a decrease in makeup removal power, incomplete removal, and more obvious makeup marks. Comparative Example 8 replaced the original two surfactant components. Although it still maintained the makeup removal ability, it was less complete than Example 1. This indicates that the surfactant combination of the present invention performs better in terms of makeup removal ability under the system of the present invention.

[0165] The above embodiments are only for illustrating the technical concept and features of the present invention, and are intended to enable those skilled in the art to understand the content of the present invention and implement it accordingly. They should not be construed as limiting the scope of protection of the present invention. All equivalent changes or modifications made in accordance with the spirit and essence of the present invention should be covered within the scope of protection of the present invention.

[0166] The endpoints and any values ​​of the ranges disclosed herein are not limited to the precise ranges or values, and these ranges or values ​​should be understood to include values ​​close to these ranges or values. For numerical ranges, the endpoint values ​​of the various ranges, the endpoint values ​​of the various ranges and individual point values, and individual point values ​​can be combined with each other to obtain one or more new numerical ranges, which should be considered as specifically disclosed herein.

Claims

1. A makeup remover composition, characterized in that, The makeup remover composition comprises water, oil, thickener, and surfactant. The oil is composed of isononyl isononanoate and isohexadecane, with the mass ratio of isononyl isononanoate to isohexadecane being 1.5-8:

1. The surfactant is composed of PEG-8 glyceryl isostearate, polyglycerol-4-decanoate, and PEG-7 glyceryl cocoate, with the mass ratio of PEG-8 glyceryl isostearate, polyglycerol-4-decanoate, and PEG-7 glyceryl cocoate being 4-10:1.5-8:

1. The thickener comprises sodium carbomer.

2. The makeup remover composition according to claim 1, characterized in that, The oil comprises 5%-15% by weight in the makeup remover composition; and / or the surfactant comprises 5%-15% by weight in the makeup remover composition; and / or the thickener comprises 1%-3% by weight in the makeup remover composition.

3. The makeup remover composition according to claim 2, characterized in that, The oil comprises 6%-10% by weight in the makeup remover composition; and / or, the surfactant comprises 6%-10% by weight in the makeup remover composition; and / or, the thickener comprises 1.5%-2% by weight in the makeup remover composition.

4. The makeup remover composition according to claim 1, characterized in that, The mass ratio of isononyl isononanoate to isohexadecane is 1.6-7:

1.

5. The makeup remover composition according to claim 1 or 4, characterized in that, The mass ratio of the PEG-8 glyceryl isostearate, the polyglycerol-4 decanoate, and the PEG-7 glyceryl cocoate is 5-9:2-7.5:

1.

6. The makeup remover composition according to claim 1, characterized in that, The mass ratio of the oil, the surfactant, and the thickener is 4.0-5.2:4.05-5.4:

1.

7. The makeup remover composition according to claim 1, characterized in that, The makeup remover composition also includes one or more of polyols, preservatives, and chelating agents; The polyol includes butanediol, the preservative includes 1,2-hexanediol and / or p-hydroxyacetophenone, and the chelating agent includes disodium ethylenediaminetetraacetate.

8. The makeup remover composition according to claim 1, characterized in that, The makeup remover composition comprises, by weight, 70-80 parts water, 4-8 parts isononyl isononanoate, 3-10 parts butylene glycol, 3-5 parts PEG-8 glyceryl isostearate, 2-5 parts polyglycerol-4 decanoate, 1-3 parts isohexadecane, 1-3 parts sodium carbomer, 0.5-2 parts 1,2-hexanediol, 0.3-1 part p-hydroxyacetophenone, 0.1-1 part PEG-7 glyceryl cocoate, and 0.01-0.1 parts disodium EDTA.

9. A method for preparing the makeup remover composition according to any one of claims 1-8, characterized in that, The preparation method includes: mixing the ingredients evenly to form a makeup remover composition.

10. The use of the makeup removal composition according to any one of claims 1-8 in the preparation of a makeup removal product.