Shampoo using gold hibiscus extract and manufacturing method thereof
The shampoo formulation using goldenrod flower extract and other natural ingredients addresses the need for effective, eco-friendly hair care by providing nourishment and moisture to damaged hair, enhancing its shine and scalp health.
Patent Information
- Application Number
- PCT/KR2024/016222
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-12-04
- Filing Date
- 2024-10-23
- Publication Date
- 2025-06-12
AI Technical Summary
The increasing demand for effective hair and scalp treatments is not adequately met by chemically formulated products, which often damage hair and scalp with frequent use, prompting a need for natural, eco-friendly alternatives.
A shampoo formulation utilizing a goldenrod flower extract, combined with other natural ingredients such as glycerin, panthenol, and essential oils, is developed through a manufacturing process involving multiple mixing stages and pH adjustment to create a product that nourishes and moisturizes damaged hair.
The shampoo effectively cleanses, moisturizes, and provides shine to damaged hair, while being gentle on the scalp, thus addressing the need for natural, effective hair care products.
Smart Images

Figure KR2024016222_12062025_PF_FP_ABST
Abstract
Description
Shampoo using extract of goldenrod flower and its manufacturing method
[0001] The present invention relates to a shampoo containing a gold leaf extract effective for damaged hair and a method for manufacturing the same.
[0002]
[0003] As modern people's interest in beauty grows, demand for scalp and hair treatments is also on the rise. However, these treatments all utilize chemically formulated products, and frequent hair dryer use inevitably leads to scalp and hair damage. Consequently, demand is growing for functional products that effectively treat damaged hair.
[0004] Therefore, although various shampoo and conditioner products that can provide nutrition to damaged scalp and hair are being released, these days, with the growing interest in veganism and eco-friendliness, functional products using natural compositions are in demand rather than products made only of artificial chemical compositions, and product development for these products is necessary.
[0005] (Patent Document 0001) Korean Patent No. 10-2016-0064950 (July 20, 2015, Composition for improving damaged hair)
[0006]
[0007] The present invention is intended to solve the above problems and to develop an effective shampoo for damaged hair containing various natural compositions including extracts of the goldenrod flower.
[0008]
[0009] A method for manufacturing a shampoo using a gold leaf extract according to an embodiment of the present invention may include a first mixing step of mixing a polyquat powder into purified water; a second mixing step of mixing a surfactant into the material mixed in the first mixing step; a third mixing step of mixing a functional material including a gold leaf extract into the material mixed in the second mixing step; and a pH adjusting step of adding a pH adjusting agent to the material mixed in the third mixing step.
[0010] Additionally, the surfactant may be a mixture of one or more of Les, CDA, cocobetaine, and olive liquid.
[0011] In addition, the functional material may be a mixture of one or more of glycerin, butylene glycol, panthenol, betaine, menthol, iris extract, copper peptide, iris extract, kelp extract, beta-glucan, silk amino acid, EDTA, 1,2 hexanediol, and lavender essential oil with the gold flower extract.
[0012] In addition, the pH adjustment step includes adding the pH adjustment agent until the pH of the material mixed in the third mixing step becomes 6 to 7, and the pH adjustment agent may include citric acid.
[0013] Additionally, the functional material may further include one or more of a perilla extract, hyaluronic acid, and shea butter.
[0014]
[0015] The shampoo using the extract of the goldenrod flower of the present invention contains the extract of the goldenrod flower, so that the scalp feels refreshed, has good cleansing power, and is effective in providing shiny and soft hair and strong moisturizing.
[0016]
[0017] Figure 1 is a flow chart showing a method for manufacturing shampoo using a gold flower extract according to an embodiment of the present invention.
[0018]
[0019] The first mixing step is to mix polyquat powder into purified water;
[0020] A second mixing step of mixing a surfactant into the material mixed in the first mixing step;
[0021] A third mixing step of mixing a functional material including a gold flower extract into the material mixed in the second mixing step; and
[0022] A method for manufacturing a shampoo using a gold leaf flower extract, comprising a pH adjustment step of adding a pH adjuster to the mixed material in the third mixing step.
[0023]
[0024] The following description of the present invention with reference to the drawings is not limited to specific embodiments, and various modifications and embodiments may be made. Furthermore, it should be understood that the contents described below encompass all modifications, equivalents, and alternatives within the spirit and technical scope of the present invention.
[0025] In the following description, terms such as first, second, etc. are used to describe various components, and are not limited in meaning in themselves, but are used only for the purpose of distinguishing one component from another.
[0026] The same reference numbers used throughout this specification represent the same components.
[0027] As used herein, singular expressions include plural expressions unless the context clearly dictates otherwise. In addition, terms such as "comprise," "include," or "have" used herein should be interpreted to indicate the presence of a feature, number, step, operation, component, part, or combination thereof described in the specification, and should be understood to not preclude the possibility of the presence or addition of one or more other features, numbers, steps, operations, components, parts, or combinations thereof.
[0028] Unless otherwise defined, all terms used herein, including technical or scientific terms, have the same meaning as commonly understood by those of ordinary skill in the art to which this invention pertains. Terms defined in commonly used dictionaries should be interpreted as having a meaning consistent with their meaning in the context of the relevant technology, and will not be interpreted in an idealized or overly formal sense unless explicitly defined herein.
[0029] In addition, when describing with reference to the attached drawings, identical components will be assigned the same reference numerals regardless of the drawing numbers, and redundant descriptions thereof will be omitted. When describing the present invention, if a detailed description of a related known technology is judged to unnecessarily obscure the gist of the present invention, the detailed description will be omitted.
[0030] Hereinafter, with reference to FIG. 1, a shampoo using a gold flower extract according to an embodiment of the present invention and a method for manufacturing the same will be described in detail.
[0031]
[0032] Figure 1 is a flow chart showing a method for manufacturing shampoo using a gold flower extract according to an embodiment of the present invention.
[0033] Referring to FIG. 1, a method for manufacturing a shampoo using a gold flower extract according to an embodiment of the present invention may include a first mixing step (S1) of mixing purified water into a polyquater powder, a second mixing step (S2) of mixing a surfactant into the material mixed in the first mixing step (S1), a third mixing step (S3) of mixing a functional material including a gold flower extract into the material mixed in the second mixing step (S2), and a pH adjusting step (S4) of adding a pH adjusting agent to the material mixed in the third mixing step (S3).
[0034] The first mixing step (S1) is a step of mixing polyquat powder into purified water, and may be a step of slowly heating 40 to 45 parts by weight of purified water to 40 to 45°C while completely dissolving 0.3 to 0.7 parts by weight of polyquat powder until transparent.
[0035] Here, purified water can be a solvent in which other ingredients, including polyquat powder, can dissolve. If purified water is mixed in at less than 40 parts by weight, the other ingredients in the shampoo may not mix well, and if it exceeds 45 parts by weight, the mixture may become diluted.
[0036] Polyquat is a cationized form of natural cellulose that increases the viscosity of shampoos, conditioners, and other hair care products and prevents hair from becoming frizzy. If polyquat powder is mixed in at less than 0.3 parts by weight, the mixture may have a low viscosity, while if it exceeds 0.7 parts by weight, the mixture may be excessively sticky.
[0037] The second mixing step (S2) is a step of mixing a surfactant into the material mixed in the first mixing step (S1), and the surfactant may include Les, CDA, cocobetaine, and olive liquid.
[0038] In detail, the second mixing step (S2) may be a step of mixing 30 to 35 parts by weight of Les, 5 to 7 parts by weight of CDA, 1 to 3 parts by weight of cocobetaine, and 0.5 to 1.5 parts by weight of olive liquid into the material mixed in the first mixing step (S1).
[0039] Les is a plant-based surfactant made from palm oil, succinic acid, and other ingredients. As an anionic surfactant, it is mild, increases viscosity, and produces soft, rich foam. It is primarily used in liquid soaps. Less than 30 parts by weight of Les may result in insufficient foaming, while more than 35 parts by weight may result in excessive foaming.
[0040] CDA is a nonionic surfactant made by refining lauric acid, a fatty acid extracted from coconut. It is used as a thickener, foaming agent, and stabilizer in shampoos and body washes. Mixing less than 5 parts by weight of CDA can cause foaming and a decrease in viscosity, while mixing more than 7 parts by weight can increase the viscosity of the mixture.
[0041] Cocobetaine is an amphoteric surfactant extracted from coconut oil. Because it causes minimal skin irritation, it's widely used in cosmetics for sensitive skin and mild cleansing. Furthermore, in slightly acidic solutions, it exhibits positive ions, providing antibacterial, antistatic, and conditioning properties. Adding less than 1 part by weight of cocobetaine may reduce the conditioning effect, while adding more than 3 parts by weight may leave hair feeling greasy after shampooing.
[0042] Olive liquid is a non-ionic surfactant derived from olives. Its skin-friendly structure prevents dryness and its compatibility with anionic surfactants allows it to be used as an auxiliary emulsifier in shampoos. It also has excellent compatibility with vegetable oils, exhibits excellent cleansing and conditioning properties, and is also used as a hair conditioner. Adding less than 0.5 parts by weight of olive liquid may cause separation in the shampoo mixture, while adding more than 1.5 parts by weight may leave hair feeling greasy after shampooing.
[0043] The third mixing step (S3) is a step of mixing a functional material including a gold flower with the material mixed in the second mixing step (S2). The functional material may be a mixture of a gold flower extract, glycerin, butylene glycol, panthenol, betaine, menthol, iris extract, copper peptide, iris extract, kelp extract, beta-glucan, silk amino acid, EDTA, 1,2 hexanediol, and lavender essential oil.
[0044] In detail, the third mixing step (S3) is to add 3 to 5 parts by weight of gold flower extract, 0.5 to 1.5 parts by weight of glycerin, 0.05 to 0.2 parts by weight of butylene glycol, 0.5 to 1.5 parts by weight of panthenol, 0.5 to 1.5 parts by weight of betaine, 0.5 to 1.5 parts by weight of menthol, 1 to 3 parts by weight of iris extract, 0.05 to 0.2 parts by weight of copper peptide, 0.3 to 0.7 parts by weight of iris extract, 0.5 to 1.5 parts by weight of kelp extract, 0.5 to 1.5 parts by weight of beta-glucan, 0.5 to 1.5 parts by weight of silk amino acid, 0.5 to 1.5 parts by weight of EDTA (10% sol.), 1,2 It may be a step of mixing 0.1 to 0.3 parts by weight of hexanediol and 0.05 to 0.2 parts by weight of lavender essential oil.
[0045] Golden hibiscus, also known as kumhwagyu, is a type of hibiscus. It has anti-inflammatory and fatigue-relieving properties, and its high content of plant-based collagen helps maintain moisture and elasticity. If kumhwagyu flower extract is mixed in amounts less than 3 parts by weight, the effect of improving hair elasticity may be minimal. If it exceeds 5 parts by weight, the increase in effect may be minimal.
[0046] Glycerin is a colorless, odorless liquid with high viscosity and a high moisture content, making it effective at moisturizing. Therefore, it is primarily used in cosmetics, soaps, hair essences, and other beauty products. If glycerin is mixed in amounts less than 0.5 parts by weight, the mixture may feel dry after shampooing, while exceeding 1.5 parts by weight may increase the viscosity of the mixture.
[0047] Butylene glycol is manufactured from fatty acids extracted from fermented sugarcane and serves to dissolve cosmetic ingredients. It also has moisture-attracting properties, making it useful as a moisturizer, skin conditioner, and viscosity-reducing agent. If butylene glycol is mixed in amounts less than 0.05 parts by weight, the mixture may not mix well, and if it exceeds 0.2 parts by weight, the mixture's viscosity may decrease.
[0048] Panthenol is an alcohol derivative of vitamin B. When absorbed into the body, it is converted to vitamin B5. Pantothenic acid, a complex of converted vitamin B5, has a moisture-attracting effect and is therefore used as a moisturizer. It also adds shine to hair. If panthenol is mixed in amounts less than 0.5 parts by weight, the moisturizing effect may be diminished, and if it exceeds 1.5 parts by weight, the increase in effectiveness may be minimal.
[0049] Betaine is a quaternary ammonium compound that exists as a cation in the tissues of plants and animals, and is known as a natural moisturizing agent. Furthermore, when used in hair products, betaine helps prevent hair damage and enhances shine. If betaine is mixed in amounts less than 0.5 parts by weight, the moisturizing effect may be diminished, and if it exceeds 1.5 parts by weight, the increase in effect may be minimal.
[0050] Menthol, a volatile compound extracted from mint, raises the threshold temperature of cold spots. This means it facilitates the perception of coldness, and its distinctive refreshing sensation is why it's often used as a spice. If menthol is mixed in amounts below 0.5 parts by weight, the cooling sensation may be diminished, while if it exceeds 1.5 parts by weight, a chilling sensation may be felt.
[0051] Aloe vera is a plant that grows in wetlands near lakes and ponds. Its roots help cleanse pores and hair follicles, and their massage properties, when used in hair products, nourish hair and strengthen hair roots. They are also effective in relieving itching and adding shine to hair. If aloe vera extract is mixed in at less than 1 part by weight, the root strengthening effect may be minimal, and if it exceeds 3 parts by weight, the increase in effect may be minimal.
[0052] Cooper peptide is a naturally occurring compound that combines copper ions with small peptides, short chains of amino acids. It possesses anti-aging, wound healing, antioxidant, and anti-inflammatory properties, making it a popular choice for a variety of skincare products in the cosmetics industry. It is also widely used in hair products because it stimulates hair follicles, promoting hair growth and increasing hair thickness. If copper peptide is mixed at less than 0.05 parts by weight, the hair thickness growth effect may be minimal, and if it exceeds 0.2 parts by weight, the increase in effect may be minimal.
[0053] The plant, also known as the berry of the Asteraceae family, is known to be used to treat various inflammations. When the extract of the chrysanthemum is mixed at a concentration of less than 0.3 parts by weight, the effect of alleviating scalp inflammation may be minimal. When the concentration exceeds 0.7 parts by weight, the effect may be minimal.
[0054] Kelp is rich in vitamins C and E, making it effective for skin care. It also promotes healthy hair and hair growth, making it widely used in hair care products. However, mixing kelp extract in amounts less than 0.5 parts by weight may have minimal effects on damaged hair, and exceeding 1.5 parts by weight may result in minimal increases in effectiveness.
[0055] Beta-glucan, a polysaccharide found in grains, mushrooms, and other products, is known to have immune-boosting properties. While the source of beta-glucan is not limited, it is preferably extracted from cauliflower mushrooms. If beta-glucan is mixed in amounts less than 0.5 parts by weight, the scalp-strengthening effect may be minimal. If it exceeds 1.5 parts by weight, the increase in effectiveness may be minimal.
[0056] Silk amino acids are silk produced by silkworms and made for human consumption or use. They contain 18 amino acids, including eight essential amino acids. When used in hair products, silk amino acids effectively nourish hair and repair damaged hair. If silk amino acids are mixed in amounts less than 0.5 parts by weight, the hair damage repair effect may be minimal, and if they exceed 1.5 parts by weight, the increase in effectiveness may be minimal.
[0057] EDTA is an abbreviation for ethylenediaminetetraacetic acid. It is a chelating agent that blocks the activity of metal ions and is used to prevent oxidation, deterioration, and discoloration caused by metal components. It is recommended to use 10% EDTA sol, and if EDTA is mixed in less than 0.5 parts by weight, oxidation due to metal ions may occur, and if it exceeds 1.5 parts by weight, the increase in effect may be minimal.
[0058] 1,2-Hexanediol is a preservative used as an alternative to parabens after their use in cosmetics was banned. It has excellent moisturizing properties and is also used as an antibacterial agent. It also mixes well with water and has emulsifying properties, creating a stable texture. If 1,2-Hexanediol is mixed in amounts less than 0.1 part by weight, the preservative effect may be minimal, and if it exceeds 0.3 parts by weight, the increase in effect may be minimal.
[0059] Lavender essential oil is a key ingredient used in aromatherapy, known for its calming and relaxing effects. If lavender essential oil is mixed in amounts less than 0.05 parts by weight, the lavender scent may not be noticeable, and if it exceeds 0.2 parts by weight, hair may feel greasy after shampooing.
[0060] Additionally, the functional material may further include yulpi extract, hyaluronic acid, and shea butter.
[0061] Accordingly, the third mixing step (S3) may be a step of further mixing 3 to 5 parts by weight of a perilla extract, 2 to 4 parts by weight of hyaluronic acid, and 1 to 2 parts by weight of shea butter into the functional material described above.
[0062] Chestnut skin, the thin inner skin that covers the chestnut fruit, is rich in polyphenols, which have antioxidant properties that remove free radicals from the body. It also has anti-aging and pore-tightening effects. If chestnut skin extract is mixed in amounts less than 3 parts by weight, the pore-tightening effect may be minimal. If it exceeds 5 parts by weight, the increase in effect may be minimal.
[0063] Hyaluronic acid is known to be an excellent moisturizing agent, possessing the highest water-holding capacity among substances of the same molecular weight. However, mixing less than 2 parts by weight of hyaluronic acid may result in minimal moisturizing effects, and exceeding 4 parts by weight may result in minimal increases in effectiveness.
[0064] Shea butter, a vegetable oil derived from the fruit of the shea tree, is oily, smooth, and has excellent moisturizing properties, making it a common ingredient in cosmetics like lotions and creams. It also has antioxidant and anti-inflammatory properties, as well as UV protection. It stimulates capillaries to moisturize hair and scalp, and increases nutrition and regenerative properties, making it a popular hair conditioner. Mixing less than 1 part by weight of shea butter may have minimal nutritional benefits, while mixing more than 2 parts by weight can cause hair to become greasy after shampooing.
[0065] The pH control step (S4) is a step of adding a pH control agent to the material mixed in the third mixing step (S3), and may be a step of adding the pH control agent until the pH of the material mixed in the third mixing step (S3) becomes 6 to 7.
[0066] Additionally, the pH adjuster may be, but is not limited to, citric acid, and any substance capable of adjusting acidity, such as lemon juice, may be used.
[0067] Here, citric acid is an organic acid found abundantly in fruits such as lemons and tangerines, also called citric acid. It dissolves well in water and alcohol and is used in soft drinks, pharmaceutical additives, and acidity regulators.
[0068] In the above manufacturing method, mixing can be done using a hand blender, but is not limited thereto, and any tool capable of mixing raw materials can be used.
[0069]
[0070] A shampoo using a gold flower extract and a method for manufacturing the same according to an embodiment of the present invention can provide a shampoo using a gold flower extract manufactured by the above manufacturing method.
[0071] A shampoo using a gold leaf extract according to an embodiment of the present invention can be manufactured by mixing polyquat powder into purified water, mixing a surfactant, mixing a functional material, and mixing a pH adjuster.
[0072] Specifically, 40 to 45 parts by weight of purified water is slowly heated to 40 to 45°C, 0.3 to 0.7 parts by weight of polyquat powder is completely dissolved until transparent, and 30 to 35 parts by weight of Les, a surfactant, 5 to 7 parts by weight of CDA, 1 to 3 parts by weight of cocobetaine, and 0.5 to 1.5 parts by weight of olive liquid are mixed.
[0073] In addition, the functional materials such as 3 to 5 parts by weight of a gold flower extract, 0.5 to 1.5 parts by weight of glycerin, 0.05 to 0.2 parts by weight of butylene glycol, 0.5 to 1.5 parts by weight of panthenol, 0.5 to 1.5 parts by weight of betaine, 0.5 to 1.5 parts by weight of menthol, 1 to 3 parts by weight of agarwood extract, 0.05 to 0.2 parts by weight of copper peptide, 0.3 to 0.7 parts by weight of agarwood extract, 0.5 to 1.5 parts by weight of kelp extract, 0.5 to 1.5 parts by weight of beta-glucan, 0.5 to 1.5 parts by weight of silk amino acid, 0.5 to 1.5 parts by weight of EDTA (10% sol.), and 0.05 to 0.2 parts by weight of lavender essential oil can be mixed into the mixture.
[0074] In addition, the functional material may further include 3 to 5 parts by weight of yulpi extract, 2 to 4 parts by weight of hyaluronic acid, and 1 to 2 parts by weight of shea butter.
[0075] Additionally, a pH regulator such as citric acid can be added to the mixture and mixed until the pH of the mixture becomes 6 to 7.
[0076]
[0077] Although the embodiments of the present invention have been described above with reference to the attached drawings, those skilled in the art will understand that the present invention can be implemented in other specific forms without altering the technical spirit or essential features of the present invention. Therefore, the embodiments described above are illustrative in all respects and are not limiting.
[0078]
[0079] [Explanation of symbols]
[0080] S1: First mixing stage
[0081] S2: Second mixing stage
[0082] S3: Third mixing stage
[0083] S4: pH control stage
Claims
1. First mixing step of mixing polyquat powder into purified water; A second mixing step of mixing a surfactant into the material mixed in the first mixing step; A third mixing step of mixing a functional material including a gold-flower extract into the material mixed in the second mixing step; and A method for manufacturing shampoo using a gold-colored flower extract, comprising a pH adjustment step of adding a pH adjustment agent to the mixed material in the third mixing step.
2. In paragraph 1, The above surfactant is, A method for manufacturing a shampoo using a gold-flower extract, characterized in that it comprises mixing at least one of Les, CDA, cocobetaine, and olive liquid.
3. In paragraph 1, The above functional material is, A method for manufacturing a shampoo using a gold flower extract, characterized in that the gold flower extract is mixed with at least one of glycerin, butylene glycol, panthenol, betaine, menthol, licorice extract, copper peptide, licorice extract, kelp extract, beta-glucan, silk amino acid, EDTA, 1,2 hexanediol, and lavender essential oil.
4. In paragraph 1, The above pH adjustment step is, In the third mixing step, the pH regulator is added until the pH of the mixed material becomes 6 to 7. A method for manufacturing a shampoo using a gold leaf extract, characterized in that the pH adjusting agent comprises citric acid.
5. In paragraph 3, A method for manufacturing a shampoo using a gold-flower extract, characterized in that the functional material further includes at least one of a yulpi extract, hyaluronic acid, and shea butter.
6. Shampoo using a gold-flower extract manufactured by the manufacturing method of any one of clauses 1 to 5.
Citation Information
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