An anti-pollution lip balm and its preparation method

By using sugar film protective agent UP and skin conditioner ACTICIRE MB in lipstick to form a double-layer protective film, combined with skin conditioner GATULINE IN-TENSE MB, the problem of poor anti-pollution effect of lipstick is solved, and effective pollutant reduction and moisturizing effect is achieved.

CN116211749BActive Publication Date: 2025-07-25SHANGHAI CHUANGMEIYAN COSMETICS TECH CO LTD
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Patent Information

Application Number
CN202310226936.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-10
Publication Date
2025-07-25
Estimated Expiration
2043-03-10

AI Technical Summary

Technical Problem

Existing lipsticks lack effective anti-pollution effects, especially protection against lips and skin, and cannot effectively reduce contaminants' attachment and improve dryness and aging caused by air pollution.

Method used

The sugar film protector UP and the skin conditioner ACTICIRE MB are used to form a double-layer smooth protective film, combined with the skin conditioner GATULINE IN-TENSE MB, firms the skin, enhances the anti-pollution ability of the lips, and forms a protective film through isomer dodecane.

Benefits of technology

Significantly reduce contaminants adhesion, improve dryness and aging of lips skin, and improve smoothness and moisturizing effect of lips skin.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to the technical field of cosmetics. More specifically, it relates to an anti-pollution lip balm and its preparation method. An anti-pollution lip balm is composed of the following components in corresponding compositions: emollient, beeswax, candelilla wax, carnauba wax, antioxidant, sugar film protectant UP, skin conditioner ACTICIRE MB, skin conditioner GATULINE IN-TENSE MB, and isododecane. The sugar film protectant UP and skin conditioner ACTICIRE MB of this application can form a double-layer smooth protection film on the lip skin. The skin conditioner GATULINE IN-TENSE MB can tighten the lip skin, fade lip wrinkles, improve the fullness of the lip skin and the smoothness of the protection film, effectively reduce the attachment of external environmental pollutants to the lips, and is beneficial to improving the ability of the lip skin to resist environmental pollution.
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Description

Technical Field

[0001] This application relates to the technical field of cosmetics, and more specifically, it relates to an anti-pollution lip balm and its preparation method. Background Art

[0002] Lip balm is a kind of lip cosmetic, and its ingredients include oil, fat, wax, pigment, etc. Lip balm can be directly applied to the lips, and has the functions of moisturizing, color adjustment, beautification and protecting the lips.

[0003] At present, with the acceleration of the global industrialization and urbanization process, air pollution and ultraviolet pollution are becoming more and more serious. For example, small molecule harmful substances in air pollution can use hair follicles as channels to enter the deeper layer of the skin, damage healthy skin cells, and cause obvious skin problems such as dryness and premature aging. Therefore, in order to protect the skin, people pay more and more attention to anti-pollution of the skin.

[0004] However, most of the cosmetics with anti-pollution effects on the market are for facial skin use, and there are few cosmetics available for lip anti-pollution. Therefore, in order to maintain lip skin, there is an urgent need to develop a lip balm with anti-pollution effects at present. Summary of the Invention

[0005] In order to improve the anti-pollution effect of lip balm, this application provides an anti-pollution lip balm and its preparation method.

[0006] In the first aspect, this application provides an anti-pollution lip balm, adopting the following technical solution:

[0007] An anti-pollution lip balm is composed of the following components in weight percentage:

[0008] Emollient 52 - 85%;

[0009] Beeswax 10 - 18%;

[0010] Candelilla wax 3 - 5%;

[0011] Carnauba wax 1 - 5%;

[0012] Antioxidant 0.1 - 1.0%;

[0013] Sugar film protector UP 0.1 - 1.0%;

[0014] Skin conditioner ACTICIRE MB 0.1 - 15.0%;

[0015] Skin conditioner GATULINE IN-TENSE MB 0.1 - 3.0%

[0016] Isododecane 0 - 0.8%.

[0017] By adopting the above technical solution, in the formula components of the lip balm of the present application, the sugar film protectant UP and the skin conditioner ACTICIRE MB can form a double-layer smooth protective film on the lip skin, which can not only effectively prevent external environmental pollution, improve lip skin dryness and aging caused by environmental pollution, but also lock in moisture for the lip skin, improve lip skin wrinkles and enhance its smoothness. At the same time, the skin conditioner GATULINE IN-TENSE MB has the effect of fading lip lines. Therefore, by compounding the skin conditioner GATULINE IN-TENSE MB with the sugar film protectant UP and the skin conditioner ACTICIRE MB, during the process of the sugar film protectant UP and the skin conditioner ACTICIRE MB forming a double-layer smooth protective film on the lips, the skin conditioner GATULINE IN-TENSE MB promotes the contraction between lip fibroblasts and collagen, tightens the lip skin, fades lip wrinkles, improves the smoothness of the lip skin, effectively reduces the attachment of external environmental pollutants on the lips, is beneficial to improving the ability of the lip skin to resist environmental pollution, and improves the dryness and aging of the lip skin caused by air pollution.

[0018] Preferably, the weight percentage of the sugar film protectant UP is 0.5 - 0.8%.

[0019] By adopting the above technical solution, when testing the attachment rate of pollutants, the average skin roughness change rate, and the relative skin water content of the prepared anti-pollution lip balm, it is found that the average attachment rate of pollutants is as low as 43.2 - 44.3%, the average skin roughness change rate is as high as 5.35 - 5.43%, and the average relative skin water content is as high as 5.50 - 5.61%. It can be seen that this product can preferably improve the ability of the lip skin to resist environmental pollution and improve the dryness and aging of the lip skin caused by air pollution.

[0020] Preferably, the weight percentage of the skin conditioner ACTICIRE MB is 12 - 14.5%.

[0021] By adopting the above technical solution, when testing the attachment rate of pollutants, the average skin roughness change rate, and the relative skin water content of the prepared anti-pollution lip balm, it is found that the average attachment rate of pollutants is as low as 41.00 - 41.50%, the average skin roughness change rate is as high as 5.50 - 5.60%, and the average relative skin water content is as high as 5.75 - 5.85%. It can be seen that this product can preferably improve the ability of the lip skin to resist environmental pollution and improve the dryness and aging of the lip skin caused by air pollution.

[0022] Preferably, the weight percentage of the isododecane is 0.4 - 0.8%.

[0023] By adopting the above technical solution, isododecane can quickly volatilize on the lip skin, which is beneficial to the rapid film formation of the sugar film protectant UP and the skin conditioner ACTICIRE MB on the lips, protecting the lip skin. Therefore, the obtained anti-pollution lip balm has good effects in anti-pollutant adhesion, moisturizing, and improving lip wrinkles.

[0024] Preferably, the weight ratio of the beeswax, carnauba wax, and candelilla wax is 1:(0.4 - 0.6):(0.4 - 0.6).

[0025] By adopting the above technical solution, beeswax, carnauba wax, and candelilla wax, as thickeners, can adjust the viscosity of the lip balm system of the present application. The finally obtained anti-pollution lip balm has good adhesion to the lip skin, can quickly form a double-layer smooth protective film on the lip skin, thereby improving the anti-pollution ability of the lip skin and enhancing the effects of moisturizing and improving lip wrinkles.

[0026] Preferably, the emollient includes triglyceride caprylate / caprate, jojoba seed oil, shea butter, phytosteryl oleate, and bis-diglycerol polyacyl adipate - 2.

[0027] By adopting the above technical solution, triglyceride caprylate / caprate, jojoba seed oil, and phytosteryl oleate can moisten the lip skin and have a fresh and non-greasy skin feel, which is beneficial to improving the use skin feel of the anti-pollution lip balm obtained in the present application.

[0028] Preferably, the antioxidant is antioxidant Tapmix.

[0029] By adopting the above technical solution, antioxidant The components of Tapmix are lecithin, sunflower (HELIANTHUS ANNUUS) seed oil, tocopherol (vitamin E), and ascorbyl palmitate, which can preferably improve the antioxidant performance of the anti-pollution lip balm of the present application.

[0030] In a second aspect, the present application provides a preparation method of an anti-pollution lip balm, adopting the following technical solution:

[0031] A preparation method of an anti-pollution lip balm includes the following preparation steps:

[0032] S1: Stir and mix the skin conditioner ACTICIRE MB and the sugar film protectant UP to obtain mixture A;

[0033] S2: Mix jojoba seed oil, shea butter, phytosteryl oleate, bis-diglycerol polyacyl adipate - 2, isododecane, antioxidant After mixing Tapmix and the skin conditioner GATULINE IN-TENSE MB, add them to the mixture of caprylic / capric triglyceride, beeswax, candelilla wax and carnauba wax. After stirring and mixing, obtain mixture B;

[0034] S3: Add mixture A to mixture B, stir and mix, and then perform injection molding to obtain the anti-pollution lip balm.

[0035] By adopting the above technical solution, the preparation steps of the anti-pollution lip balm of the present application are less, the process is simple, and it is convenient for large-scale production. At the same time, by mixing the raw materials step by step, the generation of air bubbles in the lip balm paste can be better reduced, and the yield rate of the lip balm can be improved.

[0036] In summary, the present application has the following beneficial effects:

[0037] 1. Among the total raw materials for the preparation of the anti-pollution lip balm of the present application, since the present application uses a compound of the sugar film protectant UP, the skin conditioner ACTICIRE MB and the skin conditioner GATULINE IN-TENSE MB, the sugar film protectant UP and the skin conditioner ACTICIRE MB can form a double-layer smooth protection film on the lip skin. The skin conditioner GATULINE IN-TENSE MB can tighten the lip skin, improve the smoothness of the lip skin, further improve the smoothness of the protection film, effectively reduce the attachment of pollutants on the skin surface, and also enhance the effects of fading lip wrinkles and moisturizing.

[0038] 2. In the present application, by adding isododecane, due to its rapid volatility, it is beneficial for the sugar film protectant UP and the skin conditioner ACTICIRE MB to quickly form a protection film on the lips to protect the lip skin. Therefore, the anti-pollution ability of the lip skin is improved, and the effects of moisturizing and improving lip wrinkles are enhanced. Specific embodiments

[0039] The following further details the present application in conjunction with embodiments.

[0040] Performance detection:

[0041] For the anti-pollution lip balm obtained in the embodiment and the lip balm obtained in the comparative example, detect the attachment rate of pollutants, the change rate of average skin roughness and the moisturizing effect. The detection methods are as follows:

[0042] Attachment rate of pollutants: Apply the lip balms obtained from the examples and comparative examples on artificial skin of 5 cm respectively, then record the weight of the artificial skin after application as the initial weight. Then place the artificial skin after application on a wooden board, with adjacent artificial skins not overlapping and the artificial skin coated with lip balm facing upwards. Place this template at the construction site under construction, retrieve the wooden board after 8 hours, and weigh the artificial skin on the wooden board, which is recorded as the final weight.

[0043] Data processing: Calculate the attachment rate of pollutants on the artificial skin. The calculation formula is as follows.

[0044] Attachment rate of pollutants on the artificial skin = (Final weight - Initial weight) / Initial weight * 100%. The final result is the average value. Among them, the lower the value of the attachment rate of pollutants, the better the anti-pollution effect.

[0045] Detection of average skin roughness change rate and relative skin moisture content: Select 10 female volunteers aged 18 - 35 years old, randomly divide them into two groups with 5 people in each group. Use a cloud mirror intelligent skin detector (brand: Fischmann, model: MLB-H0005, specification: 32 * 33 * 50 cm, purchased from Guangzhou Meilaibao Beauty Equipment Co., Ltd.) to detect the lip skin roughness of each volunteer, which is recorded as the initial roughness. Then use a portable skin detector to detect the moisture content of the lips, which is recorded as the initial moisture content. At the same time, let the volunteers in one group use the anti-pollution lip balm of the example, and the volunteers in the remaining group use the lip balm of the comparative example. Use it continuously for seven days, once in the morning and once in the evening every day. On the morning of the eighth day, after the volunteers clean their lips with clean water for 30 minutes (without using any cosmetics during this period), detect the lip skin roughness of each volunteer, which is recorded as the final roughness, and detect the moisture content of the lips, which is recorded as the final moisture content.

[0046] Data processing:

[0047] 1. Calculate the average skin roughness change rate and relative skin moisture content of each volunteer in each group. The calculation formulas are as follows.

[0048] Average skin roughness change rate = (Initial roughness - Final roughness) / Initial roughness * 100%;

[0049] Relative skin moisture content = (Final moisture content - Initial moisture content) / Initial moisture content * 100%;

[0050] 2. Calculate the total average skin roughness change rate and total relative skin moisture content of each group. The calculation formulas are as follows.

[0051] Total average skin roughness change rate = Average skin roughness change rate of the 1st volunteer + Average skin roughness change rate of the 2nd volunteer + Average skin roughness change rate of the 3rd volunteer + Average skin roughness change rate of the 4th volunteer + Average skin roughness change rate of the 5th volunteer;

[0052] Total relative skin moisture content = Relative skin moisture content of the 1st volunteer + Relative skin moisture content of the 2nd volunteer + Relative skin moisture content of the 3rd volunteer + Relative skin moisture content of the 4th volunteer + Relative skin moisture content of the 5th volunteer;

[0053] 3. Calculate the average skin roughness change rate and average relative skin moisture content for each group. The calculation formulas are as follows:

[0054] Average skin roughness change rate = Total average skin roughness change rate / 5;

[0055] Average relative skin moisture content = Total relative skin moisture content / 5;

[0056] Among them, the higher the value of the average skin roughness change rate, the better the improvement effect of the lip balm on the roughness of the lip skin. The larger the value of the average relative skin moisture content, the better the moisturizing effect of the lip balm on the lip skin.

[0057] Examples

[0058] Example 1

[0059] An anti-pollution lip balm, its components and their corresponding weights are shown in Table 1, and it is obtained by the following steps:

[0060] S1: Melt the skin conditioner ACTICIRE MB at 80 - 85 °C (80 °C in the examples of this application), stir at 40 r / min for 15 min, then add the sugar film protector UP, homogenize and stir-mix at 1500 r / min for 1 - 2 min (2 min in the examples of this application), then stir-mix at 40 - 50 r / min (50 r / min in the examples of this application) for 2 min, and then naturally cool to 20 - 25 °C to obtain mixture A;

[0061] In the examples of this application, the sugar film protector UP is composed of water, 1,2 - hexanediol, and biosaccharide gum - 4, and is purchased from Shanghai Yadai Biotechnology Co., Ltd.;

[0062] The skin conditioner ACTICIRE MB is obtained by mixing jojoba esters, sunflower seed wax, green wattle flower wax, and polyglycerol - 3, and then through polyglycerolation and transesterification reactions. The skin conditioner ACTICIRE MB is purchased from Shanghai Pu'en Biochemistry Technology Co., Ltd.;

[0063] S2: After mixing triglyceride caprylate / caprate, beeswax, candelilla wax and carnauba wax, stir and mix them at 90 °C and 20 - 30 r / min (30 r / min in the embodiment of the present application) for 10 min to obtain mixture B1;

[0064] Mix jojoba seed oil, shea butter, phytosteryl oleate, bis - diglycerol polyacyl adipate - 2, isododecane, antioxidant Tapmix and skin conditioner GATULINE IN - TENSE MB, then add them to mixture B1, and stir and mix at 85 °C and 20 - 30 r / min (30 r / min in the embodiment of the present application) for 3 min to obtain mixture B;

[0065] In the embodiment of the present application, the jojoba seed oil has the brand name JOJOBA OIL GOLDEN VIRGIN and is purchased from Shanghai Pu'en Biochemical Technology Co., Ltd.;

[0066] Phytosteryl oleate has the brand name PUEN PES and is purchased from Shanghai Pu'en Biochemical Technology Co., Ltd.;

[0067] Bis - diglycerol polyacyl adipate - 2 has the brand name 649 and is purchased from Shanghai Dike Fine Chemical Co., Ltd.;

[0068] Isododecane, cosmetic grade, with a density of 748 kg / m 3 ;

[0069] Antioxidant Tapmix is composed of lecithin, sunflower seed oil, tocopherol (vitamin E) and ascorbyl palmitate, and is purchased from Shanghai Pu'en Biochemical Technology Co., Ltd.;

[0070] Skin conditioner GATULINE IN - TENSE MB is composed of triglyceride caprylate / caprate and centaurea cyanus extract, and is purchased from Shanghai Pu'en Biochemical Technology Co., Ltd.;

[0071] S3: Cool mixture B to 70 °C, add mixture A to mixture B, then stir and mix at 20 - 30 r / min (25 r / min in the present application) for 5 min, then cool to 65 °C, pour it into a lip balm mold, and refrigerate at 5 - 8 °C for 24 - 48 h (24 h in the present application) to form, thus obtaining the anti - pollution lip balm.

[0072] Examples 2 - 3

[0073] An anti - pollution lip balm, which is different from Example 1 in that the components and their corresponding weights are shown in Table 1.

[0074] Table 1 Components and Their Weights (kg) in Examples 1-3

[0075]

[0076] For the anti-pollution lip balms obtained in Examples 1-3, the attachment rate of pollutants, the change rate of average skin roughness, and the moisturizing effect were detected. The detection results are shown in Table 2

[0077] Table 2 Performance Detection Results of Examples 1-3

[0078]

[0079] By analyzing the data in the above table, it can be seen that for the anti-pollution lip balms obtained in Examples 1-3 of this application, the average attachment rate of pollutants is as low as 45.1-48.35%, the average change rate of skin roughness is as high as 5.15-5.26%, and the average relative skin water content is as high as 5.24-5.89%.

[0080] Examples 4-6

[0081] An anti-pollution lip balm, which is different from Example 3 in that the weights of the sugar film protectant UP and triglyceride caprylate / caprate are shown in Table 3

[0082] Table 3 Weights (kg) of Sugar Film Protectant UP and Triglyceride Caprylate / Caprate in Examples 4-6

[0083]

[0084] For the anti-pollution lip balms obtained in Examples 4-6, anti-pollution detection and relative skin water content detection were carried out. The detection results are shown in Table 4

[0085] Table 4 Performance Detection Results of Examples 4-6

[0086]

[0087] By analyzing the data in the above table, it can be seen that for the anti-pollution lip balms obtained in Examples 4-6 of this application, the average attachment rate of pollutants is as low as 43.2-44.3%, the average change rate of skin roughness is as high as 5.35-5.43%, and the average relative skin water content is as high as 5.50-5.61%.

[0088] Combined with the above table, by comparing the anti-pollution lip balms obtained in Examples 4-6 with the anti-pollution lip balm obtained in Example 3, it can be seen that the average pollutant adhesion rate is relatively reduced by 1.77-4.21%, the average skin roughness change rate is relatively increased by 1.71-3.23%, and the average relative skin moisture content is relatively increased by 2.61-4.66%. At the same time, although the weight of the sugar film protectant UP in Example 6 is greater than the weight of the sugar film protectant UP in Example 5, the various performances of Example 6 are close to those of Example 5. This shows that in the total raw materials for preparing the anti-pollution lip balm of the present application, the weight percentage of the sugar film protectant UP is 0.7-0.95%, which can improve the ability of the finally obtained anti-pollution lip balm to resist pollutant adhesion, and improve the lip elasticity and the effect of moisturizing and hydrating the lips.

[0089] Examples 7-9

[0090] An anti-pollution lip balm, which is different from that of Example 5 in that the weights of the skin conditioner ACTICIRE MB and the triglyceride of caprylic acid / capric acid are as shown in Table 5.

[0091] Table 5 Weights (kg) of the skin conditioner ACTICIRE MB and the triglyceride of caprylic acid / capric acid in Examples 7-9

[0092]

[0093]

[0094] For the anti-pollution lip balms obtained in Examples 7-9, the pollutant adhesion rate, the average skin roughness change rate and the moisturizing and hydrating effect were detected, and the detection results are shown in Table 6.

[0095] Table 6 Performance detection results of Examples 7-9

[0096]

[0097] By analyzing the data in the above table, it can be seen that for the anti-pollution lip balms obtained in Examples 7-9 of the present application, the average pollutant adhesion rate is as low as 41.00-41.50%, the average skin roughness change rate is as high as 5.50-5.60%, and the average relative skin moisture content is as high as 5.75-5.85%.

[0098] Combined with the above table, the anti-pollution lip balm obtained in Examples 7-9 is compared with the anti-pollution lip balm obtained in Example 5. It can be seen that the average pollutant adhesion rate is relatively reduced by 3.94-5.09%, the average skin roughness change rate is relatively increased by 1.66-3.51%, and the average skin relative water content is relatively increased by 2.68-4.46%. At the same time, although the weight of the skin conditioner ACTICIRE MB in Example 9 is greater than the weight of the skin conditioner ACTICIRE MB in Example 8, the various properties of Example 9 are close to those of Example 8. This shows that in the total raw materials for the preparation of the anti-pollution lip balm of the present application, the weight percentage of the skin conditioner ACTICIRE MB is 12-14.5%, which can improve the ability of the final anti-pollution lip balm to resist the adhesion of pollutants, reduce lip wrinkles, and improve the effect of moisturizing and hydrating the lips.

[0099] Examples 10-12

[0100] An anti-pollution lip balm, which differs from Example 8 in that the weights of isododecane and caprylic / capric triglyceride are as shown in Table 7.

[0101] Table 7 Weight of isododecane and caprylic / capric triglyceride in Examples 10-12 (kg)

[0102]

[0103] The anti-pollution lip balms obtained in Examples 10-12 were tested for the adhesion rate of pollutants, the average skin roughness change rate, and the moisturizing effect. The test results are shown in Table 8.

[0104] Table 8 Performance test results of Examples 10-12

[0105]

[0106] Through the data analysis of the above table, it can be seen that the anti-pollution lip balms obtained in Examples 10-12 of the present application have an average pollutant adhesion rate as low as 39.72-39.80%, and an average skin roughness change rate as high as 5.65-5.70%.

[0107] In combination with the above table, the anti-pollution lip balm obtained in Examples 10-12 is compared with the anti-pollution lip balm obtained in Example 8, and it can be seen that the average pollutant adhesion rate is relatively reduced by 2.93-3.12%, and the average skin roughness change rate is relatively increased by 1.07-1.97%. This shows that when the weight percentage of isododecane added to the total raw materials for the preparation of the anti-pollution lip balm of the present application is 0.4-0.8%, the anti-pollutant adhesion effect of the obtained lip balm can be improved, and lip wrinkles can be significantly improved.

[0108] The reason may be that isododecane can quickly volatilize on the lip skin, which is beneficial to the rapid film formation of the sugar film protectant UP and the skin conditioner ACTICIRE MB on the lips, thereby protecting the lip skin. Therefore, compared with the anti-pollution lip balm obtained in Example 8, the anti-pollution lip balms obtained in Examples 10-12 have better effects in anti-pollutant adhesion and improving lip wrinkles.

[0109] Examples 13-15

[0110] An anti-pollution lip balm, which is different from that in Example 11 in that the weights of beeswax, carnauba wax and candelilla wax are as shown in Table 9.

[0111] Table 9 Components and their weights (kg) in Examples 13-15

[0112]

[0113] For the anti-pollution lip balms obtained in Examples 13-15, the pollutant adhesion rate, the average skin roughness change rate and the moisturizing effect were detected, and the detection results are shown in Table 10.

[0114] Table 10 Performance test results of Examples 13-15

[0115]

[0116]

[0117] By analyzing the data in the above table, it can be seen that for the anti-pollution lip balms obtained in Examples 13-15 of the present application, the average pollutant adhesion rate is as low as 39.30-39.42%, the average skin roughness change rate is as high as 5.75-5.78%, and the average relative skin water content is as high as 6.00-6.03%.

[0118] Combined with the above table, by comparing the anti-pollution lip balms obtained in Examples 13-15 with those obtained in Example 11, it can be seen that the average pollutant adhesion rate is relatively reduced by 0.76-1.06%, the average skin roughness change rate is relatively increased by 1.23-1.76%, and the average relative skin water content is relatively increased by 1.52-2.03%. This shows that in the total raw materials for preparing the anti-pollution lip balm of the present application, when the weight ratio of beeswax, carnauba wax and candelilla wax is 1:(0.4-0.6):(0.4-0.6), the anti-pollutant adhesion effect of the obtained lip balm can be significantly improved.

[0119] Comparative Examples

[0120] Comparative Examples 1-6

[0121] A lip balm, which is different from that of Example 3 in that the components and their corresponding weights are shown in Table 11.

[0122] Table 11 Components and their weights (kg) in Comparative Examples 1-6

[0123]

[0124] For the lip balms obtained in Comparative Examples 1-6, the adhesion rate of pollutants, the change rate of average skin roughness, and the moisturizing effect were detected, and the detection results are shown in Table 12.

[0125] Table 12 Performance detection results of Comparative Examples 1-6

[0126]

[0127]

[0128] By analyzing the data in the above table, it can be seen that for the lip balms obtained in Comparative Examples 1-6 of the present application, the average adhesion rate of pollutants is as high as 72.53-90.21%, the average change rate of skin roughness is as low as 1.56-2.00%, and the average relative skin water content is as low as 3.80-4.29%.

[0129] Combined with the above table, comparing the lip balms prepared in Comparative Examples 1-3 using the sugar film protectant UP, the skin conditioner ACTICIRE MB, or the skin conditioner GATULINE IN-TENSE MB with the anti-pollution lip balm prepared in Example 3 by mixing the sugar film protectant UP, the skin conditioner ACTICIRE MB, and the skin conditioner GATULINE IN-TENSE MB, it can be seen that the average adhesion rate of pollutants has increased relatively by 70.49-100.02%, the average change rate of skin roughness has decreased relatively by 66.18-71.64%, and the average relative skin water content has decreased relatively by 31.92-35.48%.

[0130] Comparing the lip balms prepared in Comparative Examples 4-6 using one or two of the sugar film protectant UP, the skin conditioner ACTICIRE MB, and the skin conditioner GATULINE IN-TENSE MB with the anti-pollution lip balm prepared in Example 3 by mixing the sugar film protectant UP, the skin conditioner ACTICIRE MB, and the skin conditioner GATULINE IN-TENSE MB, it can be seen that the average adhesion rate of pollutants has increased relatively by 60.82-92.22%, the average change rate of skin roughness has decreased relatively by 63.64-70.73%, and the average relative skin water content has decreased relatively by 27.16-32.43%.

[0131] Based on the comprehensive analysis of the data in the above table, in the total raw materials for the preparation of the anti-pollution lip balm of the present application, the compounding of the sugar film protectant UP, the skin conditioner ACTICIRE MB and the skin conditioner GATULINE IN-TENSE MB has a synergistic effect, which can improve the ability of the finally obtained anti-pollution lip balm to resist the attachment of pollutants, fade lip wrinkles and improve the effect of moisturizing and hydrating the lips.

[0132] This specific embodiment is only an explanation of the present application and is not a limitation of the present application. Those skilled in the art can make modifications without creative contributions to this embodiment according to needs after reading this specification, but as long as they are within the scope of the claims of the present application, they are protected by the patent law.

Claims

1. An anti-pollution lip balm, characterized in that, Composed of components in the following weight percentages: Emollient 52 - 85%; Beeswax 10 - 18%; Candelilla wax 3 - 5%; Carnauba wax 1 - 5%; Antioxidant 0.1 - 1.0%; Sugar film protectant UP 0.1 - 1.0%; Skin conditioner ACTICIRE MB 0.1 - 15.0%; Skin conditioner GATULINE IN-TENSE MB 0.1 - 3.0%; Isohexadecane 0 - 0.8%; Sugar film protectant UP is composed of a mixture of water, 1,2 - hexanediol, and biosaccharide gum - 4; Skin conditioner ACTICIRE MB is prepared by mixing jojoba esters, sunflower seed wax, mimosa flower wax, and polyglycerol - 3, and then through polyglycerolation and transesterification reactions; Skin conditioner GATULINE IN-TENSE MB is composed of a mixture of caprylic / capric triglyceride and centaurea cyanus extract; The weight percentage of the sugar film protectant UP is 0.7 - 0.95%; The weight percentage of the skin conditioner ACTICIRE MB is 12 - 14.5%.

2. The anti-pollution lip balm according to claim 1, wherein The weight percentage of the isohexadecane is 0.4 - 0.8%.

3. The anti-pollution lip balm according to claim 1, characterized in that, The weight ratio of the beeswax, carnauba wax, and candelilla wax is 1:(0.4 - 0.6):(0.4 - 0.6).

4. The anti-pollution lip balm according to claim 1, characterized in that, The emollient includes caprylic / capric triglyceride, jojoba seed oil, shea butter, phytosteryl oleate, and bis - diglyceryl polyacyladipate - 2.

5. The anti-pollution lip balm according to claim 1, wherein The antioxidant is antioxidant Cosphaderm® Tapmix, which is composed of a mixture of lecithin, sunflower seed oil, tocopherol, and ascorbyl palmitate.

Citation Information

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