Process for preparing multi-color skin care product and application of multi-color skin care product
Through a new multi-color skin care product production process, the pigments treated with cyclopentadimethylsiloxane and diisostearyl malate are used to disperse triethoxysilane treatment, which solves the problems of complex production process, high cost and poor stability of multi-color skin care products in the prior art, and achieves the improvement of product stability, efficacy and aesthetics.
Patent Information
- Application Number
- CN202510150655.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2025-06-06
AI Technical Summary
The existing multi-color skin care product production process has problems with poor formula stability, complex production process and high cost, uniform distribution of functional ingredients, and visual and functional balance.
A new process for making multi-color skin care products is adopted, with specific steps including accurate weighing of formula ingredients, mixing and grinding, emulsifying, stirring and filtration, filling and drawing patterns. The finished product stability is improved by dispersing the triethoxysilane-treated pigments using cyclopentadimethylsiloxane and diisostearyl malate.
It realizes the stability, efficacy and aesthetics of the ingredients of multi-color skin care products, simplifies the production process, reduces costs, improves the market competitiveness of the products, and ensures the stability and aesthetics of the patterns.
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Abstract
Description
Technical Field
[0001] The invention relates to the field of skin care products, and in particular to a process for making multi-color skin care products and applications thereof. Background Art
[0002] In recent years, as consumers' demands for skin care products have become increasingly diversified, many innovative skin care products have appeared on the market, among which multi-color skin care products have gradually attracted attention and favor. Multi-color skin care products not only have a unique appearance and appeal, but also provide a personalized skin care experience to meet the needs of users with different skin types and different skin care needs. Common multi-color skin care products include multi-layered or multi-color creams, essences, masks, etc. These products have unique visual effects, and also achieve more targeted skin care effects through the cooperation of different color formula ingredients.
[0003] However, the existing production process of multi-color skin care products usually has the following problems: poor formula stability, complex production process and high cost, uniform distribution of effective ingredients, and balance between vision and functionality.
[0004] Therefore, how to develop a multi-color skin care product production process that can ensure the stable coexistence of various skin care ingredients, simplify the production process, reduce costs, and improve skin care effects has become a technical challenge in the current skin care industry. To this end, the industry urgently needs a new multi-color skin care product production process that can solve various technical bottlenecks in the existing process and meet the market demand for efficient, stable, and beautiful multi-color skin care products.
[0005] The purpose of the present invention is to provide a new multi-color skin care product production process, aiming to overcome the shortcomings of the prior art, ensure the stability, efficacy and aesthetics of the various color ingredients in the multi-color skin care products, and simplify the production process, reduce production costs, and improve the market competitiveness of the products. Summary of the invention
[0006] The main purpose of the present invention is to provide a process for making multi-color skin care products and its application, which can effectively solve the problems in the background technology.
[0007] To achieve the above object, the technical solution adopted by the present invention is: A process for making multi-color skin care products, the specific steps are as follows: Step 1: Accurately weigh the ingredients in the formula, clean the production equipment, and thoroughly clean and disinfect the production equipment and required containers; Step 2: Mix the raw materials of phase C and phase A1, add them into a three-roll mill and grind them until they are uniform and fine, repeat the grinding five times; Step 3: Add the phase B raw materials into the emulsifying pot, heat to 85°C, homogenize for 3-5 minutes, keep warm for 30 minutes, cool to 75°C and stir evenly, put into a clean sterilized container for later use, and obtain the aqueous phase raw materials; Step 4: Add the A2 phase raw material into an emulsifying pot, stir and heat to 85°C, add the ground C phase raw material and A1 phase raw material mixture, start homogenization for 2-3 minutes, cool to 75°C, stir evenly and put into a clean sterilized container for later use to obtain the oil phase raw material; Step 5: Put the sterilized water phase into the cleaned and disinfected bucket, stir it with an external mixer (digital display 15-18 speed) and slowly add the treated oil phase. Keep the temperature of the water phase and oil phase above 70℃ during the process; Step 6: Adjust the speed and jog the mixer up and down according to the emulsified consistency. The digital display cannot exceed 18 speeds. Keep the temperature at 70°C and add the D phase raw materials. Start medium-low speed stirring and evacuate. Check that the material consistency is 4000mPa·S, filter and discharge. Step 7: After the material is left to stand at room temperature until it is completely cooled, add the materials of various colors into the preheating pot of the filling machine and heat it to 70°C, fill it into an aluminum tray and draw a special pattern; Step 8: Let it stand at room temperature until it is completely cooled, take samples for testing, and seal them after they pass the test; Wherein, in step 1, the formula components are as follows in terms of mass percentage: A1 phase raw materials: isododecane 1-10%, trimethylsiloxysilicate 0.5-2%, isohexadecane 0.5-3%, quaternary ammonium salt-18 bentonite 1-3%, mineral oil 1-3%, ethylhexyl palmitate 3-7%, polydimethylsiloxane 1-5%, dimethyl silyl silica 1-3%, (polydimethylsiloxane + polydimethylsiloxane alcohol) 0.2-1%, tridecyl trimellitate 1-5% , polyisobutene 0.5-2%, (cyclopentasiloxane + trimethylsiloxysilicate) 0.5-2%, (cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythrityl tetra (di-tert-butyl hydroxyhydrocinnamate) ester) 0.2-1%, PEG-30 dipolyhydroxystearate 0.5-3%, cetyl PEG / PPG-10 / 1 polydimethylsiloxane 0.1-1%; A2 phase raw materials: white beeswax 0.1-1%, white ceresin 1-5%, candelilla wax 2-5%, synthetic wax 0.1-1%; Phase B raw materials: deionized water 20-50%, sodium chloride 0.5-1%, glycerol 1-3%, propylene glycol 1-3%; Phase C raw materials: cyclopentasiloxane 1-5%, diisostearyl malate 0.1-1%, silica 2-5%, (titanium dioxide + silica + alumina + triethoxycaprylylsilane) 6-15%, (CI77492 + triethoxycaprylylsilane) 0.1-1%, (CI77491 + triethoxycaprylylsilane) 0.1-1%, (CI77499 + triethoxycaprylylsilane) 0.01-0.1%; Phase D raw materials: fragrance 0.05-0.2%, (phenoxyethanol + ethylhexylglycerin) 0.2-0.6%.
[0008] Preferably, the formula ingredients described in step 1 are specifically as follows in terms of mass percentage: A1 phase raw materials: isododecane 5-10%, trimethylsiloxysilicate 1-2%, isohexadecane 2-3%, quaternary ammonium salt-18 bentonite 2-3%, mineral oil 2-3%, ethylhexyl palmitate 4-6%, polydimethylsiloxane 2-4%, dimethyl silica silylate 1-2%, (polydimethylsiloxane + polydimethylsiloxane alcohol) 0.5-1%, tridecanol trimellitate 4-5%, polyisobutylene 1-2%, (cyclopentasiloxane + trimethylsiloxysilicate) 1-2%, (cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythrityl tetra (di-tert-butyl hydroxyhydrocinnamate) ester) 0.5-1%, PEG-30 dipolyhydroxystearate 2-3%, cetyl PEG / PPG-10 / 1 polydimethylsiloxane 0.5-0.8%; A2 phase raw materials: white beeswax 0.5-0.8%, white ceresin 3-5%, candelilla wax 2-3%, synthetic wax 0.5-0.8%; Phase B raw materials: deionized water 25-35%, sodium chloride 0.8-1%, glycerol 2-3%, propylene glycol 1-2%; Phase C raw materials: cyclopentasiloxane 3-5%, diisostearyl malate 0.5-1%, silica 3-4%, (titanium dioxide + silica + alumina + triethoxycaprylylsilane) 7-8%, (CI77492 + triethoxycaprylylsilane) 0.5-0.9%, (CI77491 + triethoxycaprylylsilane) 0.1-0.4%, (CI77499 + triethoxycaprylylsilane) 0.05-0.1%; Phase D raw materials: flavor 0.15-0.1%, (phenoxyethanol + ethylhexylglycerin) 0.4-0.5%.
[0009] Preferably, the formula ingredients described in step 1 are specifically as follows in terms of mass percentage: Phase A raw materials: 9% isododecane, 1.5% trimethylsiloxysilicate, 2.1% isohexadecane, 2.1% quaternary ammonium salt-18 bentonite, 2.7% mineral oil, 4.7% ethylhexyl palmitate, 2.8% polydimethylsiloxane, 2% dimethyl silica silylate, 0.7% (polydimethylsiloxane + polydimethylsiloxane alcohol), 5% tridecyl trimellitate, 1.15% polyisobutylene, 1.4% (cyclopentasiloxane + trimethylsiloxysilicate), 0.5% (cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythrityl tetra (di-tert-butyl hydroxyhydrocinnamate), 2.5% PEG-30 dipolyhydroxystearate, 0.5% cetyl PEG / PPG-10 / 1 polydimethylsiloxane; A2 phase raw materials: white beeswax 0.7%, white ceresin 4%, candelilla wax 2.7%, synthetic wax 0.5%; Phase B raw materials: deionized water 31.02%, sodium chloride 1%, glycerol 2.8%, propylene glycol 1.4%; Phase C raw materials: cyclopentasiloxane 4.1%, diisostearyl malate 0.7%, silica 3.5%, (titanium dioxide + silica + alumina + triethoxycaprylylsilane) 7.5%, (CI77492 + triethoxycaprylylsilane) 0.6%, (CI77491 + triethoxycaprylylsilane) 0.19%, (CI77499 + triethoxycaprylylsilane) 0.09%; Phase D ingredients: fragrance 0.1%, (phenoxyethanol + ethylhexylglycerin) 0.45%.
[0010] Preferably, in the phase A raw material, in the combination of dimethicone and dimethicone alcohol, dimethicone accounts for 85% and dimethicone alcohol accounts for 15%.
[0011] Preferably, in the phase A raw material, in the combination of cyclopentasiloxane and trimethylsiloxysilicate, the cyclopentasiloxane accounts for 50% and the trimethylsiloxysilicate accounts for 50%.
[0012] Preferably, in the phase A raw material, in the combination of the cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythritol tetra(di-tert-butyl hydroxyhydrocinnamate), the cetyl PEG / PPG-10 / 1 polydimethylsiloxane accounts for 50%, and the pentaerythritol tetra(di-tert-butyl hydroxyhydrocinnamate) accounts for 50%.
[0013] Preferably, in the C phase raw material: In the combination of CI77492+triethoxyoctylsilane, CI77492 accounts for 97% and triethoxyoctylsilane accounts for 3%; In the combination of CI77491+triethoxyoctylsilane, CI77491 accounts for 97% and triethoxyoctylsilane accounts for 3%; In the combination of CI77499+triethoxyoctylsilane, CI77499 accounts for 97% and triethoxyoctylsilane accounts for 3%.
[0014] Preferably, in the phase D raw material, in the combination of phenoxyethanol+ethylhexylglycerin, the phenoxyethanol accounts for 50% and the ethylhexylglycerin accounts for 50%.
[0015] The skin care product prepared by the process for preparing multi-color skin care products in the present invention is applied to daily skin care.
[0016] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention disperses triethoxysilane-treated titanium dioxide, triethoxysilane-treated CI77491, triethoxysilane-treated CI77492, and triethoxysilane-treated CI77499 by adding cyclopentasiloxane and diisostearyl malate. Since triethoxysilane is a lipophilic group, cyclopentasiloxane and diisostearyl malate have good compatibility with most oils and fats, and have a relatively strong dispersing effect in oils and fats, and can open the triethoxysilane surface treatment agent, disperse triethoxysilane-treated CI77491, ethoxysilane-treated CI77492, triethoxysilane-treated CI77499, and triethoxysilane-treated titanium dioxide, so that the powder is not easy to agglomerate and settle in a fluid state, thereby increasing the stability of the finished skin care product.
[0017] 2. The emulsion thickened by silica dimethyl silylate in the present invention can still maintain a stable viscosity in a fluid state at a temperature of 70°C. Silica dimethyl silylate is soluble in oil and is a non-toxic, tasteless, odorless white powder at room temperature. It has extremely high thermal stability, good chemical stability at high temperatures, and good dispersibility and thickening effects.
[0018] 3. In the present invention, a unique formula ratio and preparation process are adopted, and the fluid adhesion drawing technology is used to draw the pattern of the color material. The pattern has a unique shape, moist skin feel, soft texture, good blemish-covering effect, and there will be no pattern dislocation problem during mass production and filling. DETAILED DESCRIPTION
[0019] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0020] The present invention discloses a process for preparing multi-color skin care products, and the specific preparation steps are as follows: Step 1: Accurately weigh the ingredients in the formula, clean the production equipment, and thoroughly clean and disinfect the production equipment and required containers; Step 2: Mix the raw materials of phase C and phase A1, add them into a three-roll mill and grind them until they are uniform and fine, repeat the grinding five times; Step 3: Add the phase B raw materials into the emulsifying pot, heat to 85°C, homogenize for 3-5 minutes, keep warm for 30 minutes, cool to 75°C and stir evenly, put into a clean sterilized container for later use, and obtain the aqueous phase raw materials; Step 4: Add the A2 phase raw material into an emulsifying pot, stir and heat to 85°C, add the ground C phase raw material and A1 phase raw material mixture, start homogenization for 2-3 minutes, cool to 75°C, stir evenly and put into a clean sterilized container for later use to obtain the oil phase raw material; Step 5: Put the sterilized water phase into the cleaned and disinfected bucket, stir it with an external mixer (digital display 15-18 speed) and slowly add the treated oil phase. Keep the temperature of the water phase and oil phase above 70℃ during the process; Step 6: Adjust the speed and jog the mixer up and down according to the emulsified consistency. The digital display cannot exceed 18 speeds. Keep the temperature at 70°C and add the D phase raw materials. Start medium-low speed stirring and evacuate. Check that the material consistency is 4000mPa·S, filter and discharge. Step 7: After the material is left to stand at room temperature until it is completely cooled, add the materials of various colors into the preheating pot of the filling machine and heat it to 70°C, fill it into an aluminum tray and draw a special pattern; Step 8: Let it stand at room temperature until it is completely cooled, take samples for testing, and seal them after passing the test.
[0021] Among them, the formula disclosed in the present invention is preferably as follows according to mass percentage: A1 phase raw materials: isododecane 1-10%, trimethylsiloxysilicate 0.5-2%, isohexadecane 0.5-3%, quaternary ammonium salt-18 bentonite 1-3%, mineral oil 1-3%, ethylhexyl palmitate 3-7%, polydimethylsiloxane 1-5%, dimethyl silyl silica 1-3%, (polydimethylsiloxane + polydimethylsiloxane alcohol) 0.2-1%, tridecyl trimellitate 1-5% , polyisobutene 0.5-2%, (cyclopentasiloxane + trimethylsiloxysilicate) 0.5-2%, (cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythrityl tetra (di-tert-butyl hydroxyhydrocinnamate) ester) 0.2-1%, PEG-30 dipolyhydroxystearate 0.5-3%, cetyl PEG / PPG-10 / 1 polydimethylsiloxane 0.1-1%; A2 phase raw materials: white beeswax 0.1-1%, white ceresin 1-5%, candelilla wax 2-5%, synthetic wax 0.1-1%; Phase B raw materials: deionized water 20-50%, sodium chloride 0.5-1%, glycerol 1-3%, propylene glycol 1-3%; Phase C raw materials: cyclopentasiloxane 1-5%, diisostearyl malate 0.1-1%, silica 2-5%, (titanium dioxide + silica + alumina + triethoxycaprylylsilane) 6-15%, (CI77492 + triethoxycaprylylsilane) 0.1-1%, (CI77491 + triethoxycaprylylsilane) 0.1-1%, (CI77499 + triethoxycaprylylsilane) 0.01-0.1%; Phase D raw materials: fragrance 0.05-0.2%, (phenoxyethanol + ethylhexylglycerin) 0.2-0.6%.
[0022] It should be noted that the chemical name of CI77491 is iron oxide red, the chemical name of CI77492 is iron oxide yellow, and the chemical name of CI77499 is iron oxide black. They are all common pigments in cosmetics and personal care products, and are usually used as pigments in cosmetics, skin care products, hair care products, etc.
[0023] The present application is described in detail below according to different embodiment ratios. The specific ratios of different raw materials in embodiments 1-7 are shown in the table below: The present invention establishes three comparative examples based on the above-mentioned embodiments 1-7.
[0024] Specifically, the ratios of different raw materials in Comparative Examples 1-3 are shown in the following table: In combination with the above-mentioned Examples 1-7 and Comparative Examples 1-3, the present application conducted the following stability tests, the cold resistance test was conducted at a temperature of -10°C, the heat resistance test was conducted at 48°C, and the hot and cold cycles were conducted at -15°C and 45°C. The results are shown in the following table; In combination with the above-mentioned Examples 1-7 and Comparative Examples 1-3, the present application conducted the following pattern stability test. The pattern stability test tested its changes every seven days for a total of three months. The results are shown in the following table: From the stability test results in the table, it can be seen that the multi-color skin care products of Examples 1-7 of the present invention have qualified heat resistance, cold resistance and hot and cold cycle stability, but Comparative Examples 1-3 will have pattern deformation in the pattern stability test, which will cause the product appearance to be destroyed. It can be seen that the stability of the multi-color skin care products of the present invention is better than that of the multi-color skin care products in the comparative examples.
[0025] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments. The above embodiments and descriptions are only for explaining the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention to be protected. The scope of protection of the present invention is defined by the attached claims and their equivalents.
Claims
1. A process for making multi-color skin care products, characterized in that: Step 1: Accurately weigh the ingredients in the formula, clean the production equipment, and thoroughly clean and disinfect the production equipment and required containers; Step 2: Mix the raw materials of phase C and phase A1, add them into a three-roll mill and grind them until they are uniform and fine, repeat the grinding five times; Step 3: Add the phase B raw materials into the emulsifying pot, heat to 85°C, homogenize for 3-5 minutes, keep warm for 30 minutes, cool to 75°C and stir evenly, put into a clean sterilized container for later use, and obtain the aqueous phase raw materials; Step 4: Add the A2 phase raw material into an emulsifying pot, stir and heat to 85°C, add the ground C phase raw material and A1 phase raw material mixture, start homogenization for 2-3 minutes, cool to 75°C, stir evenly and put into a clean sterilized container for later use to obtain the oil phase raw material; Step 5: Put the sterilized water phase into the cleaned and disinfected bucket, stir it with an external mixer (digital display 15-18 speed) and slowly add the treated oil phase. Keep the temperature of the water phase and oil phase above 70℃ during the process; Step 6: Adjust the speed and jog the mixer up and down according to the emulsified consistency. The digital display cannot exceed 18 speeds. Keep the temperature at 70°C and add the D phase raw materials. Start medium-low speed stirring and evacuate. Check that the material consistency is 4000mPa·S, filter and discharge. Step 7: After the material is left to stand at room temperature until it is completely cooled, add the materials of various colors into the preheating pot of the filling machine and heat it to 70°C, fill it into an aluminum tray and draw a special pattern; Step 8: Let it stand at room temperature until it is completely cooled, take samples for testing, and seal them after they pass the test; Wherein, in step 1, the formula components are as follows in terms of mass percentage: A1 phase raw materials: isododecane 1%~10%, trimethylsiloxysilicate 0.5-2%, isohexadecane 0.5-3%, quaternary ammonium salt-18 bentonite 1-3%, mineral oil 1-3%, ethylhexyl palmitate 3-7%, polydimethylsiloxane 1-5%, dimethyl silylate silica 1-3%, (polydimethylsiloxane + polydimethylsiloxane alcohol) 0.2-1%, tridecyl trimellitate 1-5% , polyisobutene 0.5-2%, (cyclopentasiloxane + trimethylsiloxysilicate) 0.5-2%, (cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythrityl tetra (di-tert-butyl hydroxyhydrocinnamate) ester) 0.2-1%, PEG-30 dipolyhydroxystearate 0.5-3%, cetyl PEG / PPG-10 / 1 polydimethylsiloxane 0.1-1%; A2 phase raw materials: white beeswax 0.1-1%, white ceresin 1-5%, candelilla wax 2-5%, synthetic wax 0.1-1%; Phase B raw materials: deionized water 20-50%, sodium chloride 0.5-1%, glycerol 1-3%, propylene glycol 1-3%; Phase C raw materials: cyclopentasiloxane 1-5%, diisostearyl malate 0.1-1%, silica 2-5%, (titanium dioxide + silica + alumina + triethoxycaprylylsilane) 6-15%, (CI77492 + triethoxycaprylylsilane) 0.1-1%, (CI77491 + triethoxycaprylylsilane) 0.1-1%, (CI77499 + triethoxycaprylylsilane) 0.01-0.1%; Phase D raw materials: fragrance 0.05-0.2%, (phenoxyethanol + ethylhexylglycerin) 0.2-0.6%.
2. A process for making multi-color skin care products according to claim 1, characterized in that: The formula components described in step 1 are specifically as follows in terms of mass percentage: A1 phase raw materials: isododecane 5-10%, trimethylsiloxysilicate 1-2%, isohexadecane 2-3%, quaternary ammonium salt-18 bentonite 2-3%, mineral oil 2-3%, ethylhexyl palmitate 4-6%, polydimethylsiloxane 2-4%, dimethyl silica silylate 1-2%, (polydimethylsiloxane + polydimethylsiloxane alcohol) 0.5-1%, tridecanol trimellitate 4-5%, polyisobutylene 1-2%, (cyclopentasiloxane + trimethylsiloxysilicate) 1-2%, (cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythrityl tetra (di-tert-butyl hydroxyhydrocinnamate) ester) 0.5-1%, PEG-30 dipolyhydroxystearate 2-3%, cetyl PEG / PPG-10 / 1 polydimethylsiloxane 0.5-0.8%; A2 phase raw materials: white beeswax 0.5-0.8%, white ceresin 3-5%, candelilla wax 2-3%, synthetic wax 0.5-0.8%; Phase B raw materials: deionized water 25-35%, sodium chloride 0.8-1%, glycerol 2-3%, propylene glycol 1-2%; Phase C raw materials: cyclopentasiloxane 3-5%, diisostearyl malate 0.5-1%, silica 3-4%, (titanium dioxide + silica + alumina + triethoxycaprylylsilane) 7-8%, (CI77492 + triethoxycaprylylsilane) 0.5-0.9%, (CI77491 + triethoxycaprylylsilane) 0.1-0.4%, (CI77499 + triethoxycaprylylsilane) 0.05-0.1%; Phase D raw materials: flavor 0.15-0.1%, (phenoxyethanol + ethylhexylglycerin) 0.4-0.5%.
3. A process for making multi-color skin care products according to claim 2, characterized in that: The formula components described in step 1 are specifically as follows in terms of mass percentage: Phase A raw materials: 9% isododecane, 1.5% trimethylsiloxysilicate, 2.1% isohexadecane, 2.1% quaternary ammonium salt-18 bentonite, 2.7% mineral oil, 4.7% ethylhexyl palmitate, 2.8% polydimethylsiloxane, 2% dimethyl silica silylate, 0.7% (polydimethylsiloxane + polydimethylsiloxane alcohol), 5% tridecyl trimellitate, 1.15% polyisobutylene, 1.4% (cyclopentasiloxane + trimethylsiloxysilicate), 0.5% (cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythrityl tetra (di-tert-butyl hydroxyhydrocinnamate), 2.5% PEG-30 dipolyhydroxystearate, 0.5% cetyl PEG / PPG-10 / 1 polydimethylsiloxane; A2 phase raw materials: white beeswax 0.7%, white ceresin 4%, candelilla wax 2.7%, synthetic wax 0.5%; Phase B raw materials: deionized water 31.02%, sodium chloride 1%, glycerol 2.8%, propylene glycol 1.4%; Phase C raw materials: cyclopentasiloxane 4.1%, diisostearyl malate 0.7%, silica 3.5%, (titanium dioxide + silica + alumina + triethoxycaprylylsilane) 7.5%, (CI77492 + triethoxycaprylylsilane) 0.6%, (CI77491 + triethoxycaprylylsilane) 0.19%, (CI77499 + triethoxycaprylylsilane) 0.09%; Phase D ingredients: fragrance 0.1%, (phenoxyethanol + ethylhexylglycerin) 0.45%.
4. A process for making multi-color skin care products according to claim 3, characterized in that: In the phase A raw material, in the combination of dimethicone and dimethiconol, dimethicone accounts for 85% and dimethicone accounts for 15%.
5. The process for making multi-color skin care products according to claim 3, characterized in that: In the phase A raw material, in the combination of cyclopentasiloxane and trimethylsiloxysilicate, the cyclopentasiloxane accounts for 50% and the trimethylsiloxysilicate accounts for 50%.
6. The process for making multi-color skin care products according to claim 3, characterized in that: In the phase A raw material, in the combination of the cetyl PEG / PPG-10 / 1 polydimethylsiloxane + pentaerythritol tetra(di-tert-butyl hydroxyhydrocinnamate), the cetyl PEG / PPG-10 / 1 polydimethylsiloxane accounts for 50% and the pentaerythritol tetra(di-tert-butyl hydroxyhydrocinnamate) accounts for 50%.
7. The process for making multi-color skin care products according to claim 3, characterized in that: In the C phase raw material: In the combination of CI77492+triethoxyoctylsilane, CI77492 accounts for 97% and triethoxyoctylsilane accounts for 3%; In the combination of CI77491+triethoxyoctylsilane, CI77491 accounts for 97% and triethoxyoctylsilane accounts for 3%; In the combination of CI77499+triethoxyoctylsilane, CI77499 accounts for 97% and triethoxyoctylsilane accounts for 3%.
8. The process for making multi-color skin care products according to claim 3, characterized in that: In the phase D raw material, in the combination of phenoxyethanol+ethylhexylglycerin, the phenoxyethanol accounts for 50% and the ethylhexylglycerin accounts for 50%.
9. Use of the skin care product prepared by the process for preparing multi-color skin care products according to any one of claims 1 to 8 in daily skin care.