CN114557902B - Oily gel capable of suspending particles, full-oil system shower gel and preparation method thereof - Google Patents
Oily gel capable of suspending particles, full-oil system shower gel and preparation method thereof Download PDFInfo
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- A61K8/30—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
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- A61K8/72—Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds
- A61K8/84—Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds obtained by reactions otherwise than those involving only carbon-carbon unsaturated bonds
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- A61K8/72—Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds
- A61K8/84—Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds obtained by reactions otherwise than those involving only carbon-carbon unsaturated bonds
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
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- A61K2800/00—Properties of cosmetic compositions or active ingredients thereof or formulation aids used therein and process related aspects
- A61K2800/40—Chemical, physico-chemical or functional or structural properties of particular ingredients
- A61K2800/48—Thickener, Thickening system
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- A61K2800/00—Properties of cosmetic compositions or active ingredients thereof or formulation aids used therein and process related aspects
- A61K2800/40—Chemical, physico-chemical or functional or structural properties of particular ingredients
- A61K2800/59—Mixtures
- A61K2800/596—Mixtures of surface active compounds
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Abstract
The invention discloses oily gel capable of suspending particles, full-oil system shower gel and a preparation method thereof, wherein the oily gel comprises 1-3 parts of thickening agent, 50-70 parts of surfactant and 28-40 parts of emollient; the thickener is a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer; surfactants include laureth sulfate MIPA salt, laureth-4 and cocamidomethyl MEA; the emollient comprises polar oil 18-25 parts. In the anhydrous cleaning system, the invention realizes the preparation of transparent, viscous and suspendable particle anhydrous cleaning type products by the oil phase thickener (mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone cross-linked polymer), solves the technical problem that polar grease is difficult to thicken and suspend, and has high product stability.
Description
Technical Field
The invention relates to the technical field of daily chemical products, in particular to oily gel capable of suspending particles, full-oil system shower gel and a preparation method thereof.
Background
Bath products come in a variety of forms, but either type of bath product will contain a surfactant component. During the bathing process, dirt on the surface of the body is mainly carried away by the surfactant, and meanwhile, more or less moisture on the surface of the skin can be carried away, so that skin dryness and skin itching are easily caused if the skin is excessively cleaned. Especially in dry areas or autumn and winter, the phenomenon of skin dryness after bathing is relatively more.
In view of this phenomenon, the prior art discloses a bath oil formulation, wherein the bath oil contains more grease, which can protect skin barrier, reduce skin moisture loss and reduce itching after skin bath. For example, patent CN110090182a discloses a mild bath oil and a preparation method thereof, comprising the following components in parts by weight: 10 to 50 parts of surfactant, 1 to 10 parts of humectant, 5 to 20 parts of synthetic grease, 5 to 20 parts of vegetable grease and 0.1 to 1 part of white willow bark extract. The vegetable oil, the humectant, the synthetic oil and the white willow bark extract are matched according to a certain proportion, so that the dry and irritation feeling of the surfactant in the flushing process is greatly reduced, the barrier function of the skin is improved, the loss of skin moisture is reduced, a protective barrier is formed on the skin, and the penetration of the surfactant to the skin is prevented, thereby playing a role in protecting the skin.
However, the product of CN110090182a is only an oil-type product, which has a relatively single and tedious appearance, and cannot achieve the effects of transparency, thickening and suspending particles.
Disclosure of Invention
In order to overcome the defects of the prior art, one of the purposes of the invention is to provide oily gel capable of suspending particles, which has reasonable formula and can form a stable system, and the particles can be stably suspended in the gel phase.
The invention also aims to provide a full-oil system shower gel capable of suspending particles, which is a transparent, viscosity-free and particle-suspending anhydrous cleaning type product, and solves the technical problem that polar grease is difficult to thicken and suspend.
The invention further aims to provide a preparation method of the full-oil system shower gel capable of suspending particles, which is simple in process and easy to realize.
One of the purposes of the invention is realized by adopting the following technical scheme:
an oily gel capable of suspending particles comprises 1-3 parts of thickening agent, 50-70 parts of surfactant and 28-40 parts of emollient; the thickener is a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer; the surfactant comprises laureth sulfate MIPA salt, laureth-4 and cocoamidomethyl MEA; the emollient comprises 18-25 parts of polar oil.
The technical difficulties of the invention are as follows: 1. the thickening and suspending technology mechanism is endowed by the combination of the hydrogen bond between a high molecular polymer (a thickening agent, a mixture of caprylic/capric triglyceride, a hydrogenated C6-20-hydrocarbon polymer and an HDI/trimethylol hexyl lactone crosslinked polymer) and polar grease, and the specific mechanism is that the hydrogen bond between the polymers and the hydrogen bond between the polymers build a physical network structure in an oil phase, and the oil phase is fixed in the network structure to form a gel phase to thicken and suspend. 2. The thickener (mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone cross-linked polymer) and polar oil in the formula are combined through hydrogen bonding to form a physical network structure, so that the added particles can be stably suspended in the system.
In the invention, the using amount of the thickener is 1-3%, and in the using amount range, the component can exert efficient thickening and suspending effects in the system, ensure the transparency of the system, and if the thickening agent exceeds the range, the problems of overhigh viscosity, reduced transparency and the like of the system are caused.
The emollient of the invention comprises 18-25 parts of polar oil, and the dosage of the polar oil is proper, so that the viscosity of the system is proper and the transparency is high.
The cocoamidomethyl MEA salt is nontoxic, extremely low in irritation, good in stability, good in compounding property with various surfactants, excellent in synergistic thickening effect, good in foamability and foam stability, and good in thickening effect in a system with high grease content. Laureth-4, is nontoxic, odorless and non-irritating. Cocoamidomethyl MEA is a nonionic surfactant with very excellent thickening properties.
Further, the surfactant comprises 25-35 parts of laureth sulfate MIPA salt, 15-25 parts of laureth-4 and 8-12 parts of cocoamidomethyl MEA; preferably, in the surfactant, laureth sulfate MIPA salt is calculated according to weight ratio: laureth-4: cocoamidomethyl mea=25-35: 15-25:8-12; more preferably, laureth sulfate MIPA salt: laureth-4: cocoamidomethyl mea=28-32: 18-22:9-11; most preferably, laureth sulfate MIPA salt: laureth-4: cocoamidomethyl mea=30: 20:10. the invention selects proper surfactant and reasonably sets the dosage, so that the system can finally form transparent products, and has high transparency and high stability.
Further, the polar oil comprises 18-25 parts of caprylic/capric triglyceride, the selection of the type of the oil has great influence on the degree of hydrogen bonding with a thickener (a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer), the caprylic/capric triglyceride is selected as the polar oil, a stable physical network structure is formed, the system is stable, and the particles can be stably suspended.
Further, comprises 1-3 parts of thickener, 50-70 parts of surfactant and 28-40 parts of emollient; the thickener is a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer; the surfactant comprises 25-35 parts of laureth sulfate MIPA salt, 15-25 parts of laureth-4 and 8-12 parts of cocoamidomethyl MEA; the emollient comprises 18-25 parts of caprylic/capric triglyceride, 0.5-2 parts of PEG-7 glycerol cocoate and 10-13 parts of vegetable oil.
Further, the vegetable oil comprises 10-12 parts of grape seed oil, 0-0.1 part of white pond flower seed oil and 0-0.1 part of jojoba seed oil.
The second purpose of the invention is realized by adopting the following technical scheme:
the invention also provides application of the oil gel capable of suspending particles in a washing and caring product, wherein the washing and caring product comprises shower gel.
A full-oil system shower oil gel capable of suspending particles comprises 1-3 parts of thickening agent, 50-70 parts of surfactant, 28-40 parts of emollient, 0.2-1 part of skin conditioner, 2-10 parts of humectant and 0.05-0.5 part of suspending particles; the thickener is a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer; the surfactant comprises 25-35 parts of laureth sulfate MIPA salt, 15-25 parts of laureth-4 and 8-12 parts of cocoamidomethyl MEA; the emollient comprises 18-25 parts of caprylic/capric triglyceride, 0.5-2 parts of PEG-7 glycerol cocoate and 10-13 parts of vegetable oil.
Further, the vegetable oil comprises 10-12 parts of grape seed oil, 0-0.1 part of white pool flower seed oil and 0-0.1 part of jojoba seed oil; the skin conditioner comprises one or any combination of tocopheryl acetate, lactobacillus and soybean milk fermentation product filtrate, chicory root extract, agave-leaf-of-deficiency extract, saccharide hydrolysate, inulin and alpha-glucan oligosaccharides; the humectant includes propylene glycol and/or dipropylene glycol.
Further, the particle-suspendable all-oil system shower oil gel comprises a thickener: 1-3 parts of a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer,
and (2) a surfactant: 25-35 parts of laureth sulfate MIPA salt, 15-25 parts of laureth-4, 8-12 parts of cocoamidomethyl MEA,
an emollient: 18-25 parts of caprylic/capric triglyceride, 0.5-2 parts of PEG-7 glycerol cocoate and 10-13 parts of vegetable oil;
skin conditioning agent: 0.3-0.8 part of tocopheryl acetate, 0-0.05 part of lactobacillus and soybean milk fermentation product filtrate, 0-0.01 part of chicory root extract, 0-0.01 part of agave blade extract, 0-0.01 part of saccharide hydrolysate, 0-0.01 part of inulin and 0-0.01 part of alpha-glucan oligosaccharide;
humectant: 2-10 parts of a mixture of propylene glycol and dipropylene glycol;
fragrance: 0.2-2 parts of essence;
0.05-0.5 part of suspended particles.
Further, the particle-suspendable all-oil system shower oil gel comprises a thickener: 1 part of a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer,
and (2) a surfactant: 30 parts of laureth sulfate MIPA salt, 20 parts of laureth-4, 10 parts of cocoamidomethyl MEA,
an emollient: 20.4 parts of caprylic/capric triglyceride, 1 part of PEG-7 glycerol cocoate and 11 parts of vegetable oil;
skin conditioning agent: 0.5 part of tocopheryl acetate, 0.0001 part of lactobacillus and soybean milk fermentation product filtrate, 0.0001 part of chicory root extract, 0.0001 part of agave blade extract, 0.0001 part of saccharide hydrolysate, 0.0001 part of inulin and 0.0001 part of alpha-glucan oligosaccharides;
humectant: 5 parts of a mixture of propylene glycol and dipropylene glycol;
fragrance: 1 part of essence;
0.1 part of suspended particles.
The third purpose of the invention is realized by adopting the following technical scheme:
a preparation method of a full-oil system shower gel capable of suspending particles comprises the following steps: dividing the emollient into a first emollient, a second emollient and a third emollient; separating the skin conditioning agent into a first skin conditioning agent and a second skin conditioning agent;
adding surfactant, first emollient and first skin conditioner into emulsifying pot, stirring at 15-20 rpm, heating to 85-95deg.C, dissolving transparent and particle-free materials, maintaining for 25-35 min, cooling to below 45deg.C after defoaming, adding thickener, second emollient, third emollient, second skin conditioner, humectant and suspended particles, adding flavoring agent, stirring at 15-20 rpm, stirring, and discharging at 40-50deg.C.
Compared with the prior art, the invention has the beneficial effects that:
(1) The full-oil system shower gel capable of suspending particles provided by the invention realizes the preparation of transparent, viscous and suspendable particle anhydrous cleaning type products by an oil phase thickener (a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer) in an anhydrous cleaning system, solves the technical problem that polar grease is difficult to thicken and suspend, and has high stability. In the prior art, the system with the surfactant and the oil is difficult to achieve the application effects of transparency, thickening and suspending particles, and the invention achieves the application effects.
(2) The full-oil system shower gel capable of suspending particles provided by the invention has the advantages that the thickener (the mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol caprolactone cross-linked polymer) and polar oil in the formula are combined through hydrogen bonding to form a physical network structure, so that the added particles can be stably suspended in the system without bundling and sinking.
(3) The full-oil system shower gel capable of suspending particles provided by the invention is a cleaning product which is full-oil, has viscosity, turns milky white when meeting water, has fine bubble and ultra-dazzle appearance, integrates moisturizing and cleaning, and is a preferable product in autumn and winter. Whereas conventional bath cleaning products are typically surfactant-free products, super-degreasing can cause itching.
Drawings
FIG. 1 is a physical diagram of a full oil system shower gel capable of suspending particles provided in example 1 of the present invention;
FIG. 2 is a diagram of a sample emulsified with water according to example 1 of the present invention;
fig. 3 is a schematic diagram of the kneading and foaming of the sample according to example 1 of the present invention.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and detailed description, wherein it is to be understood that, on the premise of no conflict, the following embodiments or technical features may be arbitrarily combined to form new embodiments.
In the examples described below, the thickener may be selected from the group consisting of the thickeners available from the company Bolboron advanced materials under the raw material name Oilkemia5S CC, which is a mixture of caprylic/capric triglyceride (and hydrogenated poly (C6-20 olefin) (and) HDI/trimethylol hexyl lactone crosslinked polymer.
The 11 # raw material skin conditioner can be selected from an European Li Si/Axialys company raw material name OPTIMEALTH 10W skin conditioner, which is a mixture of water, lactobacillus/soybean milk fermentation product filtrate, butanediol and 1, 2-pentanediol, wherein the component contains more than 500 active molecules, can maintain skin pH, enable skin to be in a healthy environment, reduce the growth of harmful bacteria, reduce oxidation reaction, ease skin, reduce allergy, preserve moisture, increase the instantaneous water content and elasticity of skin, repair skin and promote the generation of collagen and hyaluronic acid.
The skin conditioner number 12 stock may be selected from the group consisting of the skin conditioner of the company Xianting/SETHIC under the name of Obena Heterophylla UP, which is a mixture of chicory (CICHORIUM INTYBUS) root extract, agave TEQUILANA) leaf extract, and sugar hydrolysates, which is beneficial in reestablishing a biological protective barrier on the skin surface.
The No. 13 raw material can be selected from European Li Si/AxiALYS company raw material name is ecological nutrient solution (FLORASKIN L), which is a mixture of inulin, water and alpha-glucan oligosaccharides, and can protect, repair and strengthen a microbial protection film, promote the growth of skin probiotics, protect skin from external stimulus, and inhibit the growth of Propionibacterium acnes.
The No. 15 raw material can be selected from essence of blackberry and laurel leaf B053021686, which are available from Tianjin Shuangma essence and spice stock.
The No. 16 material may be selected from yellow appearance modifier (YPS 6003B (30-40) available from Chongqing pellet Biotechnology Co., ltd.) as particles of corn (ZEA MAYS) starch, microcrystalline cellulose, sucrose, lactose, hydroxypropyl methylcellulose and ferric oxide.
In the embodiment of the invention, the technical difficulty is that the thickener, the grease and the surfactant are matched, and the specific type and the dosage of the thickener, the grease and the surfactant are very critical; and the operation of the preparation process are also very critical. Firstly, the thickener (Oilkemia 5 scc) was used in combination with the amount of grease: the amount of thickener (oikemia 5 scc) has a great influence on the viscosity and transparency of the system, and furthermore the choice of the type of grease has a great influence on the degree of hydrogen bonding with the thickener (oikemia 5 scc). Secondly, selecting a surfactant: the type and proportion of suitable surfactants have a great influence on the final transparency and stability of the system. In addition, the process steps are as follows: improper process operation can result in failure of the product to be prepared and requires specific temperatures, stirring rates, discharge temperatures and modes to form the clear, viscosity, suspendable particles of the anhydrous cleaning formulation of the present invention.
Examples 1 to 3
A full-oil system shower gel capable of suspending particles is prepared from thickening agent, surfactant, emollient, skin conditioner, humectant, aromatic and appearance modifier, and has the specific formula shown in table 1 below.
The full oil system shower gels of examples 1-3, in which particles can be suspended, were prepared as follows:
adding the raw materials of the phase A and the phase B into an emulsifying pot, setting the stirring speed to be 18 revolutions per minute, uniformly stirring, heating the emulsifying pot to 90 ℃, dissolving the raw materials of the phase A and the phase B into transparent particles, preserving heat for 30 minutes, cooling to below 45 ℃ after defoaming is completed, adding the raw materials of the phase C and the phase D, setting the stirring speed to be 18 revolutions per minute, uniformly stirring, and controlling the discharging temperature to be 40 ℃.
Comparative example 1
Comparative example 1 differs from example 1 in that: the thickener material was changed by selecting cyclopentadimethicone (and) dimethicone/vinyl dimethicone cross polymer as the thickener (trade name PURESIL BSG-350) in the same amount as in example 1. The remainder was the same as in example 1.
Comparative example 2
Comparative example 2 was different from example 1 in that the amount of the thickener was changed, the amount of the thickener was adjusted to 0.5 part, the raw material was unchanged, and the rest was the same as in example 1.
Comparative example 3
Comparative example 3 was different from example 1 in that the amount of thickener was changed, the amount of thickener was adjusted to 3.5 parts, the raw material was unchanged, and the rest was the same as in example 1.
Comparative example 4
Comparative example 4 differs from example 1 in that the source of emollient No. 5 source was changed, isononyl isononanoate was selected as emollient No. 5, the amount was unchanged, and the remainder was the same as in example 1.
Comparative example 5
Comparative example 5 differs from example 1 in that the amount of emollient 5 to be used was changed, the amount was adjusted to 15 parts, the raw materials were unchanged, and the rest was the same as in example 1.
Comparative example 6
Comparative example 6 differs from example 1 in that the amount of emollient 5 was changed, the amount was adjusted to 28 parts, the raw materials were unchanged, and the rest was the same as in example 1.
Comparative example 7
Comparative example 7 differs from example 1 in that the No. 6 raw emollient grape (VITIS VINIFERA) seed oil was omitted and the remainder was the same as example 1.
Comparative example 8
Comparative example 8 differs from example 1 in that the starting material for the surfactant was changed, the surfactant No. 2 was replaced with sodium cocoyl isethionate, the surfactants No. 3 and 4 were unchanged, and the remainder was the same as in example 1.
Comparative example 9
Comparative example 9 differs from example 1 in that the starting material of the surfactant was changed, the surfactant No. 3 was replaced with decyl glucoside, the surfactants No. 2 and 4 were unchanged, and the rest was the same as in example 1.
Comparative example 10
Comparative example 10 differs from example 1 in that the amounts of surfactants No. 2, no. 3 and No. 4 were all varied, the amount of laureth sulfate MIPA salt was 22 parts, the amount of laureth-4 was 28 parts, the amount of cocoamidomethyl MEA was 6 parts, and the ratio of the amounts exceeded 25-35:15-25:8-12, the remainder being the same as in example 1.
Comparative example 11
Comparative example 11 differs from example 1 in that the skin conditioning agent was omitted from the formulation, and the remainder was the same as example 1.
Comparative example 12
Comparative example 12 differs from example 1 in that: the preparation method is different, and concretely comprises the following steps: adding surfactant, first emollient and first skin conditioner into emulsifying pot, stirring at 30 r/min, heating to 80deg.C, keeping warm for 20 min, cooling to 50deg.C, adding thickener, second emollient, third emollient, second skin conditioner, humectant and suspended particles, if aromatic, stirring at 30 r/min, and discharging at 45deg.C.
The formulation was the same as in example 1.
Effect verification
1. Description of appearance
Samples were obtained according to the formulations and preparation methods of examples 1 to 3 and comparative examples 1 to 12, respectively, and appearance evaluation was performed on the obtained samples, and the results are shown in table 2 below.
Table 2 appearance record table
The sample obtained in example 1 is shown in fig. 1, and the sample diagrams in examples 2 to 3 are similar to those in example 1, and are not described here again.
2. Stability test
The heat resistance was measured at 50℃and the whole oil system shower gels of the suspendable particles obtained in examples 1 to 3 were respectively placed in transparent glass bottles, each sample was kept in parallel for 3 months at 50℃and the stability of the formulation was observed. The results are recorded in table 3 below.
The cold resistance was measured at-15℃and the whole oil system shower gels of the suspendable particles obtained in examples 1-3 were respectively placed in clear glass bottles, each sample was kept in parallel for 3 months at-15℃and the stability of the formulation was observed. The results are recorded in table 3 below.
Table 3 examples 1-3 stability test results record table
From the results shown in Table 3, the full-oil system shower gel capable of suspending particles provided by the embodiment of the invention reasonably selects the thickening agent, the surfactant and the emollient, and reasonably sets the dosage of the thickening agent, the surfactant and the emollient, and simultaneously accurately grasps the preparation method, so that the obtained product has high stability, and the particles can be stably suspended in the system in high-temperature and low-temperature tests.
3. Trial test for volunteers
In winter of 12 months 2021, 45 female volunteers with healthy body skin were selected, age distribution was 25-28 years, and the average was divided into 15 groups of 3 volunteers, each group of volunteers was tested with the full oil system shower gels of examples 1-3 and comparative examples 1-12, respectively, and the cleanliness, moisturization, irritation sensitivity and comfort were scored in the range of 1-10 points, the higher the score, the better the evaluation, the average value of each group of volunteers was calculated, and the average value was recorded in table 3.
The test index is defined as follows:
cleanliness: the skin dirt is removed after the skin is used up, and the skin is clean and free of dirt;
degree of moisturizing: moistening, keeping moisture, not drying, and no itching after use;
stimulus sensitivity: no irritation, no discomfort and no allergy;
comfort level: refreshing, non-greasy, non-sticky, non-dry and non-tight.
Table 4 sensory test results record table
As can be seen from the records in table 4, the volunteer evaluates the full-oil system shower gel of the example of the present invention more highly, while the formulation of the full-oil system shower gels of comparative examples 1-11 changed, and the evaluation was less, which indicates that the full-oil system shower gel provided by the example of the present invention has a reasonable formulation, and can provide a more perfect use experience for the user. The preparation method of the full-oil system shower gel of the comparative example 12 is changed, and the use experience is also slightly reduced.
Fig. 2 is a physical diagram of the sample of example 1 emulsified in water, and fig. 3 is a physical diagram of the sample of example 1 kneaded and foamed, and it can be seen that the product of example 1 can generate abundant bubbles and has excellent experience. Embodiments 2-3 are similar to the usage effect diagram of embodiment 1, and will not be repeated.
The above embodiments are only preferred embodiments of the present invention, and the scope of the present invention is not limited thereto, but any insubstantial changes and substitutions made by those skilled in the art on the basis of the present invention are intended to be within the scope of the present invention as claimed.
Claims (8)
1. An oily gel capable of suspending particles is characterized by comprising 1-3 parts of thickening agent, 50-70 parts of surfactant and 28-40 parts of emollient; the thickener is a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer; the surfactant comprises 25-35 parts of laureth sulfate MIPA salt, 15-25 parts of laureth-4 and 8-12 parts of cocoamidomethyl MEA; the emollient comprises 18-25 parts of caprylic/capric triglyceride, 0.5-2 parts of PEG-7 glycerol cocoate and 10-13 parts of vegetable oil.
2. The oil-based particle-suspendable gel as claimed in claim 1 wherein the vegetable oil comprises 10-12 parts of grape seed oil, 0-0.1 parts of white pond flower seed oil, and 0-0.1 parts of jojoba seed oil.
3. Use of the oil gel of the suspendable particles as claimed in any one of claims 1 to 2 for the preparation of a washing and care product, wherein the washing and care product comprises a shower gel.
4. The full-oil system shower gel capable of suspending particles is characterized by comprising 1-3 parts of thickening agent, 50-70 parts of surfactant, 28-40 parts of emollient, 0.2-1 part of skin conditioner, 2-10 parts of humectant and 0.05-0.5 part of suspended particles; the thickener is a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer; the surfactant comprises 25-35 parts of laureth sulfate MIPA salt, 15-25 parts of laureth-4 and 8-12 parts of cocoamidomethyl MEA; the emollient comprises 18-25 parts of caprylic/capric triglyceride, 0.5-2 parts of PEG-7 glycerol cocoate and 10-13 parts of vegetable oil.
5. The full oil system shower gel of claim 4, wherein said vegetable oil comprises grape seed oil 10-12 parts, white pool flower seed oil 0-0.1 parts, jojoba seed oil 0-0.1 parts; the skin conditioner comprises one or any combination of tocopheryl acetate, lactobacillus and soybean milk fermentation product filtrate, chicory root extract, agave-leaf-of-deficiency extract, saccharide hydrolysate, inulin and alpha-glucan oligosaccharides; the humectant includes propylene glycol and/or dipropylene glycol.
6. The particle-suspendable all-oil system shower gel as claimed in claim 4 comprising a thickener: 1-3 parts of a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer,
and (2) a surfactant: 25-35 parts of laureth sulfate MIPA salt, 15-25 parts of laureth-4, 8-12 parts of cocoamidomethyl MEA,
an emollient: 18-25 parts of caprylic/capric triglyceride, 0.5-2 parts of PEG-7 glycerol cocoate and 10-13 parts of vegetable oil;
skin conditioning agent: 0.3-0.8 part of tocopheryl acetate, 0-0.05 part of lactobacillus and soybean milk fermentation product filtrate, 0-0.01 part of chicory root extract, 0-0.01 part of agave blade extract, 0-0.01 part of saccharide hydrolysate, 0-0.01 part of inulin and 0-0.01 part of alpha-glucan oligosaccharide;
humectant: 2-10 parts of a mixture of propylene glycol and dipropylene glycol;
fragrance: 0.2-2 parts of essence;
0.05-0.5 part of suspended particles.
7. The particle-suspendable all-oil system shower gel as claimed in claim 6 comprising a thickener: 1 part of a mixture of caprylic/capric triglyceride, hydrogenated C6-20-hydrocarbon polymer and HDI/trimethylol hexyl lactone crosslinked polymer,
and (2) a surfactant: 30 parts of laureth sulfate MIPA salt, 20 parts of laureth-4, 10 parts of cocoamidomethyl MEA,
an emollient: 20.4 parts of caprylic/capric triglyceride, 1 part of PEG-7 glycerol cocoate and 11 parts of vegetable oil;
skin conditioning agent: 0.5 part of tocopheryl acetate, 0.0001 part of lactobacillus and soybean milk fermentation product filtrate, 0.0001 part of chicory root extract, 0.0001 part of agave blade extract, 0.0001 part of saccharide hydrolysate, 0.0001 part of inulin and 0.0001 part of alpha-glucan oligosaccharides;
humectant: 5 parts of a mixture of propylene glycol and dipropylene glycol;
fragrance: 1 part of essence;
0.1 part of suspended particles.
8. A method of preparing a full oil system shower gel of suspendable particles as claimed in any one of claims 4 to 7 comprising the steps of: dividing the emollient into a first emollient, a second emollient and a third emollient; separating the skin conditioning agent into a first skin conditioning agent and a second skin conditioning agent;
the first emollient comprises caprylic/capric triglyceride and grape seed oil, the second emollient comprises PEG-7 glycerol cocoate, and the third emollient comprises Begonia seed oil and jojoba seed oil;
the first skin conditioning agent comprises tocopheryl acetate; the second skin conditioner comprises a mixture of water, lactobacillus/soy milk fermentation product filtrate, butylene glycol and 1, 2-pentanediol, a mixture of chicory root extract, tequila leaf extract and saccharide hydrolysate, and a mixture of inulin, water and alpha-glucan oligosaccharides;
adding surfactant, first emollient and first skin conditioner into emulsifying pot, stirring at 15-20 rpm, heating to 85-95deg.C, dissolving transparent and particle-free materials, maintaining for 25-35 min, cooling to below 45deg.C after defoaming, adding thickener, second emollient, third emollient, second skin conditioner, humectant and suspended particles, adding flavoring agent, stirring at 15-20 rpm, stirring, and discharging at 40-50deg.C.
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