A transparent makeup removing cream and a method for preparing the same
Patent Information
- Application Number
- CN202611246397.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-08-17
- Publication Date
- 2026-09-25
AI Technical Summary
本申请旨在解决现有卸妆膏无法实现完全透明的问题
[0015]有益效果:本申请的透明卸妆膏,摒弃传统透明卸妆产品“液态低稳定、固态必浑浊”的固有缺陷,既能保证常温固态膏体形态,又保留高透明效果,同时不牺牲卸妆清洁力与肤感,克服了现有技术中透明卸妆产品在透明度和膏体稳定性之间难以兼顾的技术难题,为透明卸妆膏的配方设计提供了一种新的技术路径。
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Figure CN122805515A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cosmetic technology, and mainly to a transparent makeup remover balm and its preparation method. Background Technology
[0002] Existing makeup remover products are mainly divided into cleansing oils, cleansing waters, and cleansing balms. Most existing cleansing balm products are opaque or semi-transparent, and there are generally trade-offs between transparency, balm stability, makeup removal performance, and skin feel. Specifically, pursuing high transparency often requires limiting the selection and formulation of oil phases and emulsifiers, leading to insufficient makeup removal power or decreased balm stability; conversely, to ensure makeup removal performance, transparency must be sacrificed. Therefore, current technology still lacks a cleansing balm formula that can simultaneously achieve a completely transparent appearance, stable balm form, highly effective makeup removal performance, and a pleasant skin feel.
[0003] Therefore, existing technologies still need to be improved and developed. Summary of the Invention
[0004] In view of the shortcomings of the prior art, the purpose of this application is to provide a transparent cleansing balm and its preparation method. The transparent cleansing balm of this application is completely transparent, crystal clear, and free of any haze or impurities, exhibiting a high-end visual texture. It differs from conventional opaque and semi-transparent cleansing balms on the market, greatly enhancing the product's appearance and market competitiveness, and meeting consumers' aesthetic demands for high-end beauty products. This application aims to solve the problem that existing cleansing balms cannot achieve complete transparency.
[0005] The technical solution of this application is as follows: A transparent cleansing balm, comprising, by weight, the following ingredients: Polyquaternium-37: 1.0-5.0 parts by weight; Polyglycerol-10 lauryl ester: 3.0-10.0 parts by weight; C12-15 alcohol benzoate: 5.0-20.0 parts by weight; Hony TCB: 20.0-50.0 parts by weight; Water: Add to a total of 100 parts by weight; The Hony TCB, by weight percentage, comprises the following raw materials: Isonononyl isononate 91-95%, hydrogenated poly(C6-20 olefin) 3-5%, castor oil / IPDI copolymer 2-4%.
[0006] The transparent cleansing balm, by weight, further comprises the following ingredients: Auxiliary ingredients: 0.1-4.4 parts by weight; The auxiliary ingredients include one or more of the following: moisturizers, antioxidants, and preservatives.
[0007] The transparent cleansing balm, by weight, comprises the following ingredients: The humectant: 0.5-3.0 parts by weight; The antioxidant: 0.1-0.5 parts by weight; The preservative: 0.4-0.9 parts by weight.
[0008] The transparent makeup remover balm, wherein the moisturizer is glycerin; The antioxidant is tocopherol acetate; The preservative is phenoxyethanol.
[0009] A method for preparing the transparent cleansing balm as described above, comprising the following steps: Polyglycerol-10 laurate, C12-15 alcohol benzoate, and Hony TCB are mixed to form an oil phase; Polyquaternium-37, water, and auxiliary components are mixed to form an aqueous phase; The oil phase and the aqueous phase are mixed and pre-emulsified to obtain a pre-emulsified mixture; The pre-emulsified mixture is emulsified; Cooling, filling.
[0010] The method for preparing the transparent makeup remover balm, wherein the process of mixing polyglycerol-10 laurate, C12-15 benzoyl alcohol, and Hony TCB to form an oil phase is carried out under vacuum, with stirring at 50-100 rpm, heating to 70-80℃, and holding at that temperature for 10-15 minutes.
[0011] The method for preparing the transparent makeup remover balm, wherein the process of mixing polyquaternium-37, water and auxiliary ingredients to form an aqueous phase involves heating the materials to 70-80°C.
[0012] The method for preparing the transparent makeup remover balm, wherein the process of mixing and pre-emulsifying the oil phase and the water phase involves pumping the oil phase and the water phase into a tubular static mixer at a flow rate controlled at 5-10 liters / minute.
[0013] The method for preparing the transparent makeup remover balm, wherein the process of emulsifying the pre-emulsified mixture involves pumping the pre-emulsified mixture into a vacuum emulsification kettle equipped with a planetary stirring function, and stirring at 100-200 rpm for 15-30 minutes in a vacuum environment and at a temperature of 70-80°C.
[0014] The method for preparing the transparent makeup remover balm includes the following steps: cooling and filling the balm in a vacuum environment with continuous stirring, cooling to 35-40°C, breaking the vacuum, filling the balm at 35-40°C, and allowing it to cool to room temperature.
[0015] Beneficial effects: The transparent cleansing balm of this application overcomes the inherent defects of traditional transparent cleansing products, such as "low stability in liquid form and turbidity in solid form". It can maintain the solid balm form at room temperature and retain the high transparency effect, without sacrificing the cleansing power and skin feel. It overcomes the technical problem of the difficulty in balancing transparency and balm stability in existing transparent cleansing products, and provides a new technical path for the formulation design of transparent cleansing balms. Attached Figure Description
[0016] Figure 1 This is a rendering of the transparent cleansing balm in an embodiment of this application.
[0017] Figure 2 This is a diagram showing the effect before makeup removal in an embodiment of this application.
[0018] Figure 3 This is a diagram illustrating the makeup-dissolving and emulsifying effects of the transparent makeup remover balm in the embodiments of this application.
[0019] Figure 4 This is a diagram showing the effect of makeup removal in an embodiment of this application. Detailed Implementation
[0020] This application provides a transparent makeup remover balm and its preparation method. To make the purpose, technical solution, and effects of this application clearer and more explicit, the following provides a more detailed description. It should be understood that the specific embodiments described herein are merely illustrative of this application and are not intended to limit this application.
[0021] This application provides a transparent cleansing balm. By optimizing the formula compounding system and preparation process, the balm achieves a completely transparent, fog-free, and impurity-free visual effect. It also possesses excellent formability, superior high and low temperature stability, and long-lasting storage without clouding or layering. Furthermore, it retains the advantages of highly effective makeup removal, gentle and low-irritation properties, and easy rinsing, filling a technological gap in the industry. This transparent cleansing balm, with its novel product form and comprehensive performance, can be widely used in high-end cosmetics, professional skincare lines, and affordable luxury daily chemical products, with broad market application prospects.
[0022] Specifically, the transparent cleansing balm of this application comprises the following ingredients by weight: Polyquaternium-37: 1.0-5.0 parts by weight; Polyglycerol-10 lauryl ester: 3.0-10.0 parts by weight; C12-15 alcohol benzoate: 5.0-20.0 parts by weight; Hony TCB: 20.0-50.0 parts by weight; Auxiliary ingredients: 0.1-4.4 parts by weight; Water: Add to a total of 100 parts by weight.
[0023] Hony TCB, by weight percentage, includes the following raw materials: Isonononyl isononate 91-95%, hydrogenated poly(C6-20 olefin) 3-5%, castor oil / IPDI copolymer 2-4%.
[0024] Hony TCB is a pre-formulated composite oil raw material. The preparation method is as follows: Isononyl isononanoate, hydrogenated poly(C6-20 olefin), and castor oil / IPDI copolymer are mixed in proportion, stirred and kept at 70-80℃ under vacuum (pressure maintained at -0.08 MPa to -0.09 MPa) for 10-15 minutes to fully mix and degas, and then cooled for use as a single composite oil.
[0025] Isonononyl isononanoate provides the core refreshing feel, spreadability, and makeup removal properties; hydrogenated poly(C6-20 olefin) acts as a light oil to assist in adjusting the feel and consistency; and castor oil / IPDI copolymer is the structural master for achieving a transparent balm and long-term stability. The three are pre-mixed thoroughly to form a stable, integrated makeup remover base. They work synergistically to form an effective makeup removal system, and also play a role in thickening and maintaining the transparency and stability of the balm. In the embodiments of this application, the hydrogenated poly(C6-20 olefin) used is Oilkemia™ Alpha POF Polymer from Lurunbo; the castor oil / IPDI copolymer used is Polyderm PPI-CO from Alzo International.
[0026] The core of this formulation lies in two mechanisms: "dual-phase synergistic thickening" and "refractive index synergistic optimization," which aim to solve the problem of balancing transparency, balm form stability, and makeup removal performance in transparent cleansing balms.
[0027] (1) Two-phase synergistic thickening Polyquaternium-37 is the main thickener. Polyquaternium-37 is a cationic thickening polymer whose molecular chain contains quaternary ammonium cationic groups and hydrophobic segments. This structure can effectively bind water molecules to form a three-dimensional thickening network in the aqueous phase, and can also work with the interfacial liquid crystal structure to stably disperse oil droplets.
[0028] Polyglycerol-10-laurate is used in liquid crystal structures. Polyglycerol-10-laurate is a high-HLB nonionic emulsifier with a molecular structure containing a hydrophilic polyglycerol head with multiple hydroxyl groups and a hydrophobic tail of long-chain fatty acids. Under appropriate concentrations, oil-to-water ratios, and temperatures, polyglycerol-10-laurate can self-assemble at the oil-water interface to form a liquid crystal structure. This liquid crystal structure is a highly ordered, anisotropic mesophase that effectively stabilizes oil and water droplets and provides additional structural strength and stability to the paste. More importantly, the liquid crystal structure itself has high transparency because its internal microstructure size is much smaller than the wavelength of visible light, thus preventing light scattering.
[0029] Hony TCB serves as a makeup remover. The raw materials of Hony TCB can form a transparent three-dimensional gel network in the oil phase through supramolecular hydrogen bonding. This network, along with the aqueous network of polyquaternium-37 and the liquid crystal structure of polyglycerol-10 laurate, interpenetrates and synergistically enhances the structural strength and morphological stability of the cream.
[0030] Synergistic Effect: The three-dimensional network formed by polyquaternium-37 and the liquid crystal structure formed by polyglycerol-10 laurate do not exist independently, but rather synergistically. Polyquaternium-37 provides macroscopic skeletal support and bulk viscosity for the entire system, preventing the overall collapse of the paste; while the liquid crystal structure forms a high-strength interfacial film at the oil-water interface, reducing the aggregation of oil or water droplets and enhancing the internal orderliness of the paste. The oil-phase gel network formed by the castor oil / IPDI copolymer in Hony TCB further enhances the internal cohesion of the system. This multi-synergistic thickening mechanism of "macroscopic framework + microscopic order + oil-phase gel" allows the paste to maintain high transparency while exhibiting superior morphological stability and shear resistance, effectively avoiding the problems of softness, collapse, or water seepage that may occur with traditional single thickeners.
[0031] (2) Refractive index synergistic optimization C12-15 benzoate is used to adjust the refractive index. C12-15 benzoate is a moderately polar ester oil with a refractive index of approximately 1.48-1.50. In the formulation, it is blended in an appropriate ratio with isononyl isononanoate (refractive index approximately 1.435) from Hony TCB, which acts as a makeup remover, to make the average refractive index of the mixed oil phase more consistent with the refractive index of the liquid crystal structure. By appropriately adjusting the amount of C12-15 benzoate, the refractive index homogenization within the oil phase can still be achieved. This homogenization of the refractive index within the oil phase reduces light scattering within the oil phase and at the oil-liquid crystal interface, thereby improving the overall light transmittance of the cream.
[0032] Through the synergistic effect of polyglycerol-10 laurate and static pre-emulsification, the oil phase is dispersed into submicron to micron-sized droplets. Combined with gentle stirring in a vacuum emulsification vessel, these droplets are further homogenized and stabilized within the liquid crystal structure. Although the droplet size does not reach the nanometer scale, the uniformity of the refractive index within the oil phase and the high orderliness of the liquid crystal structure itself significantly suppress light scattering as it passes through the paste, thus achieving high transparency.
[0033] Synergistic effect: The biphase synergistic thickening network provides a stable physical structure for the cream, effectively preventing the dispersion droplets from agglomerating, coalescing, or coarsening during storage. This maintains the uniformity and stability of the submicron to micron-scale dispersion, avoids droplet size distribution broadening, and thus ensures the optical transparency of the cream. In Hony TCB, isononyl isononanoate, as the main cleansing oil ingredient, combines excellent makeup removal ability with a refreshing feel, further optimizing the product's user experience.
[0034] Furthermore, auxiliary ingredients may include one or more of the following: moisturizers, antioxidants, preservatives, etc.
[0035] Preferably, the auxiliary ingredients include moisturizers, antioxidants, and preservatives. The transparent cleansing balm of this application comprises the following ingredients by weight: Moisturizer: 0.5-3.0 parts by weight; Antioxidant: 0.1-0.5 parts by weight; Preservative: 0.4-0.9 parts by weight.
[0036] In the embodiments of this application, the moisturizer is glycerin, the antioxidant is tocopheryl acetate, and the preservative is phenoxyethanol.
[0037] This application also provides a method for preparing the above-mentioned transparent cleansing balm, including the following steps: (1) Oil phase premixing: Polyglycerol-10 laurate, C12-15 benzoyl alcohol, and Hony TCB are added to a premixing tank and stirred at low speed (50-100 rpm) under vacuum (pressure maintained at -0.08 MPa to -0.09 MPa). The mixture is heated to 70-80℃ and kept at that temperature for 10-15 minutes to ensure thorough dispersion and uniform mixing, forming a homogeneous oil phase system.
[0038] Operating in a vacuum environment is primarily to remove any dissolved air from the oil phase beforehand, reducing the generation of bubbles in subsequent processes. Heating to 70-80℃ and holding for 10-15 minutes reduces the viscosity of the oil phase, promotes thorough mixing and dispersion of the components, and allows polyglycerol-10 laurate to achieve an ordered arrangement in the oil phase, laying a foundation for the subsequent formation of the liquid crystal structure.
[0039] (2) Aqueous phase premixing: In another container, polyquaternium-37, water, and auxiliary components are mixed and heated to 70-80°C to form an aqueous phase.
[0040] (3) Static mixing and pre-emulsification: The preheated oil and water phases are pumped into a tubular static mixer at a flow rate of 5-10 liters per minute to obtain a pre-emulsified mixture.
[0041] Mixing in a static mixer allows for efficient and uniform initial emulsification, avoiding air entrapment.
[0042] (4) Vacuum emulsification and liquid crystal structure formation: Pump the pre-emulsified mixture into a vacuum emulsifying vessel equipped with planetary stirring (pressure maintained at -0.08 MPa to -0.09 MPa), and planetarily stir at a low to medium speed (100-200 rpm) for 15-30 minutes at a temperature of 70-80°C.
[0043] In a vacuum environment, microbubbles can be continuously removed. Planetary stirring ensures uniform stress on the system, promoting the formation of a stable liquid crystal structure between polyquaternium-37 and polyglycerol-10 laurate at the oil-water interface. (5) Vacuum cooling and filling: Under vacuum and continuous low-speed stirring, the mixture is cooled to 35-40℃, the vacuum is broken, it is filled, and allowed to cool to room temperature. The paste then solidifies into its final stable paste form.
[0044] The paste is filled into packaging containers at 35-40℃. After solidifying into a stable paste form, it remains stable under storage conditions from -5℃ to 45℃, without stratification or oil seepage.
[0045] (6) Quality inspection: Check the product's transparency (light transmittance ≥ 95%), viscosity, and other indicators. Once the product is confirmed to be qualified, it will be packaged and put into storage. The transparent cleansing balm of this application has the following significant advantages: (1) High transparency: Through the combination of "dual-phase synergistic thickening" and "refractive index synergistic optimization", this formula can achieve a completely transparent cleansing balm with a light transmittance of over 95%, which is significantly better than existing wax-containing or traditional emulsified transparent cleansing balm systems, meeting consumers' demand for a high-end visual experience.
[0046] (2) Good stability of paste form: The synergistic thickening network formed by polyquaternium-37 and polyglycerol-10 laurate gives the paste excellent structural strength and elasticity. Even at different temperatures (e.g., 5°C to 40°C), the paste can maintain a stable form and is not easy to collapse, release water or harden, which significantly extends the shelf life and service life of the product.
[0047] (3) Highly efficient makeup removal performance: Polyquaternium-37 and polyglycerol-10 laurate can better encapsulate and emulsify oily makeup, improving makeup removal efficiency. At the same time, C12-15 benzoyl alcohol, as an auxiliary solvent for makeup remover oil, helps to dissolve stubborn makeup and ensures thorough makeup removal.
[0048] (4) Good skin feel: The stable cream is not greasy and provides a smooth application during makeup removal. It emulsifies quickly after contact with water, is easy to rinse, and leaves no residue, thus improving the overall user experience.
[0049] The present application will be further described below through specific embodiments.
[0050] Example This embodiment provides a transparent makeup remover balm, which, by weight, comprises the following ingredients: Polyquaternium-37: 3.0 parts by weight; Polyglycerol-10 lauryl ester: 6.0 parts by weight; C12-15 alcohol benzoate: 12.0 parts by weight; Hony TCB: 35.0 parts by weight; Glycerin: 2.0 parts by weight; Tocopherol acetate: 0.5 parts by weight; Phenoxyethanol: 0.8 parts by weight; Water: Add to a total of 100 parts by weight.
[0051] Hony TCB, by weight percentage, includes the following raw materials: Isonononyl isononate 93%, hydrogenated poly(C6-20 olefin) 4%, castor oil / IPDI copolymer 3%.
[0052] Hony TCB is a pre-formulated composite oil raw material. The preparation method is as follows: isononyl isononanoate, hydrogenated poly(C6-20 olefin), and castor oil / IPDI copolymer are mixed in proportion, stirred and kept at 75℃ under vacuum (pressure maintained at -0.08 MPa to -0.09 MPa) for 15 minutes to fully mix and degas, and then cooled for use as a single composite oil.
[0053] The preparation method of the product is as follows: (1) Oil phase premixing: Polyglycerol-10 laurate, C12-15 benzoyl alcohol, and Hony TCB were added to a premixing tank and stirred at low speed (80 rpm) under vacuum (pressure maintained at -0.08 MPa to -0.09 MPa). The mixture was heated to 75°C and kept at that temperature for 10 minutes to ensure thorough dispersion and uniform mixing, forming a homogeneous oil phase system.
[0054] (2) Aqueous phase premixing: In another container, polyquaternium-37, water, glycerol, tocopheryl acetate, and phenoxyethanol are mixed and heated to 75°C to form an aqueous phase.
[0055] (3) Static mixing and pre-emulsification: The preheated oil and water phases are pumped into a tubular static mixer at a flow rate of 8 liters per minute to obtain a pre-emulsified mixture.
[0056] (4) Vacuum emulsification and liquid crystal structure formation: The pre-emulsified mixture was pumped into a vacuum emulsifying vessel equipped with planetary stirring (pressure maintained at -0.08 MPa to -0.09 MPa) and planetarily stirred at a medium-low speed (150 rpm) for 20 minutes at 75°C.
[0057] (5) Vacuum cooling and filling: Under vacuum and continuous low-to-medium speed stirring, the mixture is cooled to 40°C, the vacuum is broken, and it is filled at 40°C. After standing and cooling to room temperature, the paste solidifies into its final stable paste form.
[0058] (6) Quality inspection: Check the product’s transparency, viscosity, stability and other indicators.
[0059] (a) Transparency: Transmittance was measured using a spectrophotometer at a wavelength of 550 nm and with a cuvette using a 1 cm optical path: transmittance 96.8%. The prepared transparent paste is as follows: Figure 1 As shown, the left image is a top-down view, and the right image is a side view. From Figure 1 As can be seen, the ointment prepared in this embodiment has a transparent, hazy, and impurity-free visual effect.
[0060] (b) Viscosity, rotational viscometer method, using Brookfield DV-II+ Pro rotational viscometer, rotor RV4, rotation speed 10 rpm, measured for 1 minute at 25°C: 48200 mPa.s.
[0061] (c) Stability: High temperature stability: After placing the sample in an environment of 40℃ for 24 hours and then restoring it to room temperature, observe whether there is a significant difference in shape between the sample and before the experiment: no layering, no turbidity, and the appearance remains transparent; Low-temperature stability: After placing the sample in an environment of 5℃ for 24 hours and then restoring it to room temperature, observe whether there is a significant difference in shape between the sample and before the experiment: no layering, no oil-water separation, and the appearance remains transparent.
[0062] (d) Makeup removal efficiency test: Common cosmetic products were applied to the subject's arm from top to bottom in the following order: long-lasting foundation, lipstick, eyeliner, and waterproof mascara. After leaving the product on for 10 minutes, the transparent makeup remover balm of this embodiment was applied in a circular motion. Water was added and the product was continued to be applied in a circular motion to emulsify the product. The product was then rinsed with running water.
[0063] like Figures 2-4 As shown, Figure 2 The images show the before and after makeup removal (the left image shows the effect before applying the cleansing balm, and the right image shows the effect before applying the cleansing balm but before emulsifying). Figure 3 The images show the makeup-dissolving and emulsifying effects of the transparent cleansing balm (left image shows the makeup-dissolving effect, right image shows the emulsifying effect). Figure 4 These are before-and-after photos after makeup removal (left image shows the result after rinsing with running water, right image shows the result after wiping with a tissue). From Figure 2-4 As you can see, the cream melts on the skin's surface, emulsifies quickly upon contact with water, and leaves no greasy film after rinsing. The skin feels refreshed, moisturized, and not tight, and there is no makeup residue after removal.
[0064] It should be understood that the application of this application is not limited to the examples above. Those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of this application.
Claims
1. A transparent makeup remover balm, characterized in that, By weight, it includes the following ingredients: Polyquaternium-37: 1.0-5.0 parts by weight; Polyglycerol-10 lauryl ester: 3.0-10.0 parts by weight; C12-15 alcohol benzoate: 5.0-20.0 parts by weight; Hony TCB: 20.0-50.0 parts by weight; Water: Add to a total of 100 parts by weight; The Hony TCB, by weight percentage, comprises the following raw materials: Isonononyl isononate 91-95%, hydrogenated poly(C6-20 olefin) 3-5%, castor oil / IPDI copolymer 2-4%.
2. The transparent makeup remover balm according to claim 1, characterized in that, By weight, it also includes the following ingredients: Auxiliary ingredients: 0.1-4.4 parts by weight; The auxiliary ingredients include one or more of the following: moisturizers, antioxidants, and preservatives.
3. The transparent makeup remover balm according to claim 2, characterized in that, By weight, it includes the following ingredients: The humectant: 0.5-3.0 parts by weight; The antioxidant: 0.1-0.5 parts by weight; The preservative: 0.4-0.9 parts by weight.
4. The transparent makeup remover balm according to claim 3, characterized in that, The humectant is glycerin; The antioxidant is tocopherol acetate; The preservative is phenoxyethanol.
5. A method for preparing a transparent makeup remover balm as described in any one of claims 2-4, characterized in that, Includes the following steps: Polyglycerol-10 laurate, C12-15 alcohol benzoate, and Hony TCB are mixed to form an oil phase; Polyquaternium-37, water, and auxiliary components are mixed to form an aqueous phase; The oil phase and the aqueous phase are mixed and pre-emulsified to obtain a pre-emulsified mixture; The pre-emulsified mixture is emulsified; Cooling, filling.
6. The method for preparing the transparent makeup remover balm according to claim 5, characterized in that, The process of mixing polyglycerol-10 laurate, C12-15 benzoyl alcohol, and Hony TCB to form an oil phase is carried out under vacuum, with stirring at 50-100 rpm, heating to 70-80℃, and holding at that temperature for 10-15 minutes.
7. The method for preparing the transparent makeup remover balm according to claim 5, characterized in that, The process of mixing polyquaternium-37, water, and auxiliary components to form an aqueous phase involves heating the material to 70-80°C.
8. The method for preparing the transparent makeup remover balm according to claim 5, characterized in that, The process of mixing and pre-emulsifying the oil phase and the water phase involves pumping the oil phase and the water phase into a tubular static mixer at a flow rate controlled at 5-10 liters / minute.
9. The method for preparing the transparent makeup remover balm according to claim 5, characterized in that, The process of emulsifying the pre-emulsified mixture involves pumping the pre-emulsified mixture into a vacuum emulsification vessel equipped with a planetary stirrer, and stirring it at 100-200 rpm for 15-30 minutes in a vacuum environment and at a temperature of 70-80°C.
10. The method for preparing the transparent makeup remover balm according to claim 5, characterized in that, The cooling and filling steps specifically involve cooling to 35-40°C under vacuum and continuous stirring, breaking the vacuum, filling at 35-40°C, and allowing to cool to room temperature.