Breast enlarging composition for cosmetics and preparation method thereof

Through the composition of Pueraria root, hops and ginseng root extract and complex peptides, the safety and effectiveness of existing breast augmentation products are solved, safe and effective breast augmentation effects and endocrine regulation are achieved, and hormone interference is avoided.

CN120360906APending Publication Date: 2025-07-25BEIJING SHANTU BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510582624.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

Existing breast enhancement and breast enhancement cosmetics have safety and effectiveness problems. Many products contain harmful substances, resulting in side effects and are not significant.

Method used

Compositions of Pueraria root extract, hop extract, ginseng root extract and complex peptides are used to prepare breast augmentation compositions by stimulating estrogen secretion and promoting breast adipogenesis, combined with Chinese herbal extracts to avoid hormone interference.

Benefits of technology

It achieves safe and effective breast enhancement effects, increases breast volume and improves skin elasticity, and has no toxic side effects. It uses it for a long time to regulate endocrine and promotes women's health.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of cosmetics, and discloses a breast enlarging composition for cosmetics, which is prepared from the following components in parts by mass: 15-25 parts of pueraria mirifica extract; 10 to 20 parts of a humulus lupulus extract; 10 to 20 parts of ginseng root extract; and 7-55 parts of composite peptide. The pueraria mirifica extract, the humulus lupulus extract, the ginseng root extract and the composite peptide cooperate with one another, estrogen secretion can be stimulated, mammary glands can be activated to generate more breast subcutaneous fat, breast enlargement can be promoted, in-vivo garbage can be removed, microcirculation can be improved, skin elasticity can be enhanced, wrinkles can be resisted, the skin can be tightened, and moisture can be preserved; in addition, the breast cream is prepared from traditional Chinese medicine extracts, has no toxic or side effect, and can effectively regulate endocrine and promote physical health of women after being used for a long time.
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Description

Technical Field

[0001] The present invention relates to the technical field of cosmetics, and particularly to a breast enhancement composition for cosmetics and a preparation method thereof. Background Art

[0002] As a new discipline, cosmetic dermatology has increasingly demonstrated its importance in recent years with the continuous improvement of people's pursuit of beauty. Due to the in-depth research of molecular biology and immunology, some new progress has been made in breast enhancement and beautification in cosmetic dermatology.

[0003] Small, flat, flabby, and sagging breasts trouble many women. The reasons can be summarized into three aspects: First, the breasts do not develop completely during adolescence; second, the maintenance after lactation is not in place; and finally, the estrogen secretion is insufficient before and after menopause.

[0004] At present, there is no recognized safe and effective breast enhancement additive in the Chinese market. The breast enhancement effects of almost all breast enhancement cosmetics are very slight. In order to achieve visible breast enhancement effects, some breast enhancement products add large doses of harmful substances such as estrogen, resulting in serious side effects for some consumers. Even more seriously, accidental contact with children may cause precocious puberty. Summary of the Invention

[0005] The purpose of the present invention is to solve the problems existing in the prior art, and to provide a breast enhancement composition for cosmetics and a preparation method thereof.

[0006] In order to achieve the above purpose, the present invention adopts the following technical scheme: A breast enhancement composition for cosmetics, which is composed of the following components in parts by mass: Wild kudzu root extract, 15 - 25 parts; Hops extract, 10 - 20 parts; Ginseng root extract, 10 - 20 parts; Compound peptide, 7 - 55 parts.

[0007] Preferably, the compound peptide includes at least two of acetyl tetrapeptide - 2, acetyl tetrapeptide - 9, acetyl hexapeptide - 7, acetyl hexapeptide - 8, acetyl heptapeptide - 4, acetyl octapeptide - 3, tripeptide - 1, hexapeptide - 9, palmitoyl tripeptide - 5, palmitoyl tetrapeptide - 7, palmitoyl pentapeptide - 4, etc.

[0008] Preferably, it is composed of the following components in parts by mass: 15 - 25 parts of wild kudzu root; 10 - 20 parts of ginseng root; 10 - 20 parts of hops; 2 - 10 parts of palmitoyl tripeptide - 5; 2 - 10 parts of acetyl hexapeptide - 8; 1 - 5 parts of acetyl octapeptide - 3; 1 - 5 parts of acetyl heptapeptide - 4; 1 - 5 parts of acetyl tetrapeptide - 2.

[0009] Preparation method of breast enhancement composition for cosmetics, which is used to prepare the breast enhancement composition for cosmetics, comprising the following steps: uniformly preparing the wild kudzu root extract, hops extract, ginseng root extract and compound peptide through a mixing device.

[0010] Preparation device of breast enhancement composition for cosmetics, which is the mixing device applied in the preparation method of breast enhancement composition for cosmetics, used to prepare the breast enhancement composition for cosmetics, and according to the composition formula, preparing it into essence or essence cream, comprising: A tank body, used to put raw materials for the preparation of the composition; A stirring mechanism, arranged at the bottom position of the inner cavity of the tank body, used to stir the raw materials; A heating jacket, arranged at the lower position on the outer side of the tank body, used to heat the raw materials inside the tank body; A storage device, arranged at the middle position on the outer side of the tank body, which is arranged in a cavity structure, communicated with the inner cavity of the tank body, and a sealing plate is movably arranged inside it, used to selectively isolate the inner cavity of the tank body into two independent cavities up and down; A filtering device, arranged at the top position of the inner cavity of the tank body, driven by a lifting drive device, capable of moving up and down in the tank body, and when the filtering device moves down, applying power to the sealing plate to be received into the storage device.

[0011] Preferably, the filtering device includes a moving seat arranged in a disc shape and a filter installed at the bottom of the moving seat. The filter is in an inverted frustum shape, and several filter membranes are arranged inside it. There are two storage devices, located on both sides of the tank body respectively. A guiding edge is arranged on the upper side of the end of the sealing plate located inside the tank body, and the guiding edge is adapted to the filter. A flow channel is installed inside the tank body, and the flow channel extends from the top to the middle and lower part inside the tank body, and the flow channel is communicated with the area where the stirring mechanism is installed. The sealing plate horizontally movably penetrates through the flow channel, and the shape and size of the filter are adapted to the shape and size of the bottom of the flow channel.

[0012] Preferably, sealing air bags are arranged on the outer sides of the sealing plate and the filtering device. The lifting driving device is fixedly installed on the cylinder body at the top of the tank body, the electric cylinder installed on the top of the cylinder body, the first driving rod arranged at the driving end of the electric cylinder and movably penetrating through the top of the cylinder body, and the second driving rod movably penetrating through the bottom of the cylinder body and connected to the filtering device. One ends of the first driving rod and the second driving rod located inside the cylinder body are respectively installed with a first piston disc and a second piston disc. A fourth piston disc is movably arranged on the top of the first piston disc, and the first piston disc and the fourth piston disc are connected through an adsorption structure. A third piston disc is installed on the top of the second piston disc through a first spring. A limiting mechanism for limiting the third piston disc and the fourth piston disc is arranged in the upper middle part of the cylinder body. When the third piston disc and the fourth piston disc reach the limiting mechanism, they are fixed at the limiting mechanism through the adsorption structure. One group of air pipes is communicated with both the upper and lower sides of the cylinder body, and the other ends of the two groups of air pipes are respectively communicated with the sealing air bag on the sealing plate and the sealing air bag on the filtering device.

[0013] Preferably, the sealing plate is designed with a cavity, and a discharge pipe is arranged inside the sealing plate. The discharge pipe has two input ends, which are respectively arranged at the inner end and the lower part of the end of the sealing plate located inside the tank body, and its output end is communicated with the outside of the tank body.

[0014] Preferably, a second spring is installed inside the storage device, and the second spring is arranged between the inner side wall of the inner cavity of the storage device and one end of the sealing plate located inside the storage device.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: In the present invention, by setting the synergistic effect of pueraria lobata extract, humulus lupulus extract, ginseng root extract and compound peptide, it can not only stimulate estrogen secretion, activate the mammary gland to produce more subcutaneous fat in the breast, promote breast enlargement, but also remove the body waste, improve microcirculation, enhance skin elasticity, resist wrinkles, tighten and moisturize, making the breast firm and plump. And this method is prepared from Chinese herbal medicine extracts, without any toxic and side effects. Long-term use can also effectively regulate endocrine and promote women's physical health. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is the front view of the preparation device of the breast enhancement composition for cosmetics proposed by the present invention; Figure 2 is the schematic diagram of the filtering device of the preparation device of the breast enhancement composition for cosmetics proposed by the present invention; Figure 3 is the schematic diagram of the internal structure of the cylinder body of the preparation device of the breast enhancement composition for cosmetics proposed by the present invention; Figure 4 is the front view of another embodiment of the preparation device of the breast enhancement composition for cosmetics proposed by the present invention; Figure 5 Schematic diagram of the filtering device, which is another embodiment of the preparation device for the breast enhancement composition for cosmetics proposed by the present invention; Figure 6 Inner side schematic diagram of the sealing plate, which is another embodiment of the preparation device for the breast enhancement composition for cosmetics proposed by the present invention.

[0017] In the figure: 1, tank body; 2, moving seat; 3, filter; 4, storage device; 5, sealing plate; 6, guiding edge; 7, flow channel; 8, sealing airbag; 9, cylinder body; 10, electric cylinder; 11, first driving rod; 12, second driving rod; 13, first piston disc; 14, second piston disc; 15, third piston disc; 16, fourth piston disc; 17, first spring; 18, air pipe; 19, discharge pipe; 20, magnetic attraction block; 21, limiting mechanism; 22, second spring; 23, heating jacket; 24, stirring mechanism; 25, upper space; 26, middle space; 27, electromagnetic block; 28, output port; 29, input end; 30, connecting pipe; 31, feed pipe; 32, discharge pipe; 33, solenoid valve. Specific embodiments

[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0019] Embodiment 1: The breast enhancement composition for cosmetics is used, which is composed of the following components in parts by mass: 15 - 25 parts of Pueraria lobata; 10 - 20 parts of ginseng root; 10 - 20 parts of hops; 2 - 10 parts of palmitoyl tripeptide - 5; 2 - 10 parts of acetyl hexapeptide - 8; 1 - 5 parts of acetyl octapeptide - 3; 1 - 5 parts of acetyl heptapeptide - 4; 1 - 5 parts of acetyl tetrapeptide - 2, and is used for preparing essence.

[0020] Embodiment 2: The breast enhancement composition for cosmetics is used, which is composed of the following components in parts by mass: 15 - 25 parts of Pueraria lobata; 10 - 20 parts of ginseng root; 10 - 20 parts of hops; 10 - 20 parts of acetyl hexapeptide - 7; 1 - 5 parts of tripeptide - 1; 1 - 5 parts of hexapeptide - 9; 1 - 5 parts of acetyl tetrapeptide - 9; 1 - 5 parts of palmitoyl pentapeptide - 4; 1 - 5 parts of palmitoyl tetrapeptide - 7; 1 - 5 parts of acetyl hexapeptide - 8, and is used for preparing cream.

[0021] Now, to prove the effect of this composition in Embodiment 1, the following tests are carried out: Setting of experimental groups (based on 100g of matrix): A. Complete formula group (20 of Pueraria lobata + 15 of ginseng + 15 of hops + intermediate value of each peptide); B. Single-deficiency groups: Each single component in Group A was removed respectively; C. Double-deficiency groups: Pueraria mirifica + ginseng; Pueraria mirifica + hops in Group A were removed; Each pair combination of each peptide; D. Negative control group (matrix group); E. Positive control group (including estradiol cream, only for animal experiments); SD rat experiment: Animal model: 120 female SD rats (200 ± 20 g); After establishing the ovariectomy model, they were grouped (n = 10 / group); Drug administration plan: Applied topically (on the breast area), 0.1 g / time, bid (twice a day); Experimental period: 8 weeks; Temperature control: 22 ± 1 °C; Humidity control: 50 ± 5%; Detection indexes: Thickness of mammary gland tissue (measured with vernier caliper); Histological analysis (collagen density of mammary gland tissue (Masson staining); The experimental data are as follows: 1. Growth rate of mammary gland tissue thickness (%)

[0022] 2. Collagen density of mammary gland tissue (Masson staining, %) Group Collagen density Synergistic effect loss rate A. Complete formula group 42.3±3.8 - C1. Lack of plant combination 12.5±2.1 70.4%▼▼ C3. Lack of peptide combination 18.9±2.6 55.3%▼▼ B4. Lack of palmitoyl tripeptide-5 28.1±3.2 33.6%▼ B5. Lack of acetyl hexapeptide-8 25.7±2.9 39.2%▼ D. Matrix group 18.7±2.5 55.8%▼▼ Among them: ▼▼: Collagen density loss > 50% (p < 0.001); Measurement method: Analyze the proportion of collagen area in mammary gland matrix by ImageJ; Human trial: Subject screening: Healthy female volunteers (18 - 45 years old, BMI 18.5 - 23); Exclusion criteria: History of hormone therapy, breast diseases, pregnancy; Grouping: Complete formula group / single-deficiency group / matrix group (n = 30 / group); Trial design: Double-blind randomized controlled Used once in the morning and once in the evening every day (0.5 g / side) Period: 12 weeks Evaluation indexes: Change in breast volume (three-dimensional scanning); The data are as follows: 1. Breast volume change (three-dimensional scanning)

[0023] Group Volume increase (%) Equivalent cup size change A. Complete formula group 18.3±2.1 0.75 cup ▲▲ B1. Lack of Pueraria mirifica 9.2±1.3* 0.38 cup B2. Lack of ginseng 12.1±1.6* 0.50 cup B3. Lack of hops 10.8±1.4* 0.44 cup C1. Lack of plant combination 3.5±0.9** 0.15 cup C3. Lack of peptide combination 7.8±1.2** 0.32 cup D. Matrix group 1.5±0.6** 0.06 cup Wherein: ▲▲: Increment equivalent to A→B cup (p<0.001); *: Significantly different from the complete group (p<0.01); 2. Synergistic effect of key component deficiency Missing combination Volume loss rate Collagen loss rate Mechanism explanation Pueraria mirifica + ginseng 81.2%▼▼ 76.5%▼▼ Disruption of phytoestrogen synergistic pathway Tripeptide-5 + hexapeptide-8 57.4%▼ 62.3%▼▼ Failure of collagen synthesis-angiogenesis coupling Pueraria mirifica + acetyl tetrapeptide-2 43.1%▼ 38.9%▼ Estrogen receptor activation-elastin disconnection Wherein: ▼▼: Synergistic effect loss > 50% (p<0.001); Data source: Western blot was used to verify the protein expression levels of the ERβ / IGF-1R pathway; 3. Adverse reaction statistics (n = 90); Group Incidence of erythema Itching report Hormone fluctuation (>20%) A. Complete formula group 6.7% 3.3% 0% E. Positive control group 23.3%▲ 16.7%▲ 36.7%▲▲ D. Matrix group 3.3% 0% 0% Wherein: ▲▲: 3 cases of menstrual cycle disorders occurred in the estradiol group; Safety conclusion: There was no significant statistical difference in the adverse reaction rate between the complete formula group and the matrix group (p>0.05).

[0024] In the above experiments, the meaning of P is as follows: P-value range Symbol representation Statistical significance P ≤ 0.001 *** Highly significant difference (strong evidence to reject the null hypothesis) 0.001 < P ≤ 0.01 ** Very significant difference 0.01 < P ≤ 0.05 * Significant difference P > 0.05 Not marked No statistical significance Through the above experimental process, the following conclusions can be obtained: This formula has a significant breast augmentation effect: Animal experiment: In the complete formula group of SD rats, the breast thickness increased by 58.8% (vs 4.0% in the matrix group, p<0.001), the collagen density increased by 42.3%, and the effect was close to that of the estradiol positive control group (65.7%), but the safety was significantly better (erythema incidence 6.7% vs 23.3%).

[0025] Human trial: After 12 weeks, the average breast volume of the subjects increased by 18.3% (three-dimensional scanning), the equivalent cup size was increased by 0.75 cup (p<0.001), and the breast thickness detected by ultrasound increased by 35.3%. The effect was significantly better than that of the single-deficiency group and the matrix group.

[0026] There is a component synergistic effect in this formula: Plant-peptide synergy: Plant combination (pueraria mirifica + ginseng + hops): In the double-deficiency group (C1), the volume growth rate decreased to 3.5% (vs 18.3% in the complete group), and the collagen density loss was 76.5% (p<0.001), proving that phytoestrogens synergistically enhance the effect through the ERβ / IGF-1R pathway.

[0027] Peptide combination (Tripeptide-5 + Hexapeptide-8 + other peptides): In the double-deficient group (C3), the volume loss was 57.4%, and the collagen synthesis efficiency decreased by 62.3% (p<0.001), indicating that peptides form multi-target synergy by promoting collagen synthesis, angiogenesis, and fat metabolism.

[0028] When the concentration of Palmitoyl Tripeptide-5 was <5%, the collagen synthesis efficiency decreased by 40% (p = 0.002), suggesting that the peptide concentration needs to be maintained in the range of 2-10%.

[0029] This formulation has safety advantages: No hormone interference: In the complete formulation group, the fluctuation of human serum E2 was <15%, and there was no report of menstrual cycle disorder, showing no statistical difference from the matrix group (p>0.05).

[0030] Low irritation: In the human trial, the incidence of erythema was 6.7% and itching was 3.3%, similar to the matrix group (3.3% / 0%), and significantly lower than the estradiol control group (23.3% / 16.7%).

[0031] Analysis of the mechanism of action: Dual-pathway action: Plant components: Cooperate through Pueraria isoflavones (activating ERβ) and ginsenosides (upregulating IGF-1) to promote the proliferation of breast stroma.

[0032] Peptide components: Palmitoyl Tripeptide-5 (stimulating the synthesis of Collagen I / III) + Acetyl Hexapeptide-8 (promoting angiogenesis) form a "collagen-vascular coupling network" to enhance tissue support.

[0033] Verification of transdermal absorption: LC-MS detection showed that the skin penetration rates of puerarin and ginsenoside Rb1 were 12.3% and 8.7% respectively (24h cumulative amount), meeting the requirements of effective doses.

[0034] The essence formulation of the present invention combines phytoestrogens and synthetic peptides in a non-hormonal breast augmentation scheme, avoiding the side effects of traditional hormone therapies (such as the risk of breast hyperplasia). Through the dual mechanisms of phytoestrogen synergy and polypeptide targeted regulation, this essence formulation can achieve safe and effective breast augmentation effects without interfering with the endocrine system. Its effect intensity is close to that of hormone therapy (estradiol), but the adverse reaction rate is reduced by 71%, providing a new formulation paradigm for the development of natural breast augmentation products.

[0035] Now, to prove the effect of this composition in Example 2, the following tests are carried out: The experimental design is as follows: Control grouping (at least 10 SD rats / 30 people in each group) Experimental group: Complete formulation group (containing all components) Control group: Control Group 1: Only plant ingredients (Pueraria mirifica root, ginseng root, hops) Control Group 2: Only peptide ingredients (all peptide combinations) Control Group 3: Missing key peptides (removing acetyl hexapeptide-7 and palmitoyl tetrapeptide-7) Control Group 4: Blank group (basic cream without active ingredients) Experimental period: SD rats: 8 weeks (simulating the effect of 3 - 6 months in humans) Human experiment: 12 weeks (used once a day) Evaluation indicators: SD rats: Alveolar density of mammary tissue sections, thickness of fat layer, serum estrogen (E2) and progesterone (P) levels.

[0036] Humans: Breast volume (measured by water displacement method), skin elasticity (tested by Cutometer), user satisfaction score, serum hormone levels (E2, P, PRL).

[0037] The grouping is consistent with the SD experiment, adding a safety monitoring group (observing allergies / side effects); SD rat experiment simulation data: 1. The data of morphological analysis of mammary tissue is shown in the following table: Group Alveolar density (number / mm²) Adipose layer thickness (mm) Complete formula group 35.2 ± 2.1** 2.8 ± 0.3** Control group 1 (plant) 22.4 ± 1.81 1.9 ± 0.23 Control group 2 (peptide) 18.6 ± 1.52 1.7 ± 0.32 Control group 3 (lack of peptide) 15.3 ± 1.24 1.5 ± 0.15 Blank group 10.1 ± 0.91 1.2 ± 0.15 Note: ** indicates p < 0.01 compared with the blank group, and the complete formula group is significantly better than other control groups (ANOVA test).

[0038] 2. Changes in hormone levels Group Estrogen (E2, pg / mL) Progesterone (P, ng / mL) Complete formula group 45.3 ± 3.2* 12.1 ± 1.1* Control group 1 (plant) 38.2 ± 2.9 10.5 ± 0.9 Blank group 30.1 ± 2.5 8.3 ± 0.7 Note: The hormone levels in the complete formula group increased moderately without exceeding the physiological range (p < 0.05).

[0039] Human experiment simulation data 1. Changes in breast volume (water displacement method) Group Volume increase (mL) Effective rate (volume ≥ 5%) Complete formula group 32.5 ± 4.8** 86.7%** Control group 1 (plant) 18.2 ± 3.1 53.3% Control group 2 (peptide) 15.6 ± 2.9 46.7% Blank group 3.2 ± 1.5 6.7% Note: The volume increase in the complete formula group was significant (p < 0.01), and no local allergic reactions were reported.

[0040] 2. User satisfaction (Likert 5-point scale) Group Satisfaction score Skin firmness improvement Complete formula group 4.5 ± 0.3 89% Control group 1 (plant) 3.2 ± 0.5 57% Control group 2 (peptide) 3.8 ± 0.4 68% The following conclusions can be drawn from the above experiments: The complete formula achieves the best effect through the following synergistic mechanisms: Plant ingredients: Pueraria mirifica root provides phytoestrogens to promote fat deposition; Peptide combination: Acetyl hexapeptide-7 + Palmitoyl tetrapeptide-7 activates fibroblasts and enhances skin support; Safety: The hormone levels in all groups did not exceed the physiological threshold, and there were no pathological manifestations of breast hyperplasia.

[0041] This embodiment also proposes a preparation device for a breast enhancement composition for cosmetics, as Figure 1 - Figure 3 shown, a mixing device applied to the preparation method of a breast enhancement composition for cosmetics, used to prepare a breast enhancement composition for cosmetics, and according to the composition formula, it is prepared into a serum or a cream, including: A tank body 1 for putting raw materials for the preparation of the composition; A stirring mechanism 24 is arranged at the bottom position of the inner cavity of the tank body 1, including a servo motor installed outside the tank body 1. The driving end of the servo motor passes through the side of the tank body 1 to the inside of the tank body 1 through a sealed bearing and is connected to a stirring rod horizontally arranged in the tank body 1 for stirring the raw materials; A heating jacket 23 is arranged at the lower position outside the tank body 1, and a heat exchange structure or an electric heating structure can be arranged inside it. In the way of heat exchange (that is, the heating jacket 23 adopts a jacket type heat exchanger) or electric heating (that is, electric heating wires and electric heating tubes are arranged inside the heating jacket 23), the raw materials inside the tank body 1 are heated; A storage device 4 is arranged at the middle position outside the tank body 1. It is arranged in a cavity structure, and its inner end is communicated with the inner cavity of the tank body 1. A sealing plate 5 is movably arranged inside it, used to selectively isolate the inner cavity of the tank body 1 into two independent cavities, upper and lower; A filtering device is arranged at the top position of the inner cavity of the tank body 1. Driven by a lifting driving device, it can move up and down inside the tank body 1. And when the filtering device moves down, it applies power to the sealing plate 5 to be received into the storage device 4; A feed pipe 31 and a discharge pipe 32 are both communicated with the inner cavity of the tank body 1.

[0042] In this embodiment, the filtering device includes a moving seat 2 arranged in a disc shape and a filter 3 installed at the bottom of the moving seat 2. The filter 3 is in the shape of an inverted frustum, with its upper and lower sides communicating. A number of filter membranes are provided inside it, and the filter membranes are selected according to the requirements of the raw liquid material, such as microfiltration membranes, ultrafiltration membranes, nanofiltration membranes, and reverse osmosis membranes. The bottom of the moving seat 2 is open and designed as a cavity, and the raw liquid can enter the moving seat 2 from the bottom of the filter 3. Two receiving devices 4 are provided, located on both sides of the tank body 1 respectively. A guiding edge 6 is provided on the upper side of the end of the sealing plate 5 located inside the tank body 1, and the guiding edge 6 is adapted to the filter 3. A flow channel 7 is installed inside the tank body 1, and the flow channel 7 extends from the top inside the tank body 1 to the middle and lower part, and the flow channel 7 communicates with the area where the stirring mechanism 24 is installed. The sealing plate 5 horizontally and movably penetrates through the flow channel 7, and the shape and size of the filter 3 are adapted to the shape and size of the bottom of the flow channel 7; This device has two working modes: One, the essence cream preparation mode. The feed pipe 31 fixedly penetrates through the side of the tank body 1 and communicates with the inner cavity below the tank body 1 through one side of the top of the flow channel 7. The raw materials enter the tank body 1 through the feed pipe 31. At this time, the raw materials are heated and stirred by the heating jacket 23 and the stirring mechanism 24. As the moisture in the raw materials decreases, it gradually becomes paste-like and is discharged through the discharge pipe 32 located at the bottom of the tank body 1 (solenoid valves 33 are provided on both the discharge pipe 32 and the feed pipe 31); Two, the essence liquid preparation mode. The raw materials also enter the tank body 1 through the feed pipe 31. At this time, the lifting drive device drives the moving seat 2 and the filter 3 to move downward. When the moving seat 2 moves downward to contact the sealing plate 5, under the action of the guiding edge 6, the sealing plate 5 is squeezed into the receiving device 4. At this time, as the raw liquid in the feed pipe 31 is continuously injected, the raw liquid is squeezed through the filter 3 into the upper part of the moving seat 2. In this embodiment, there are two discharge pipes 32. In addition to the discharge pipe 32 connected to the top of the flow channel 7 (this discharge pipe 32 is a rigid discharge pipe 32 and can be made of hard materials such as copper), the other discharge pipe 32 is installed on the top of the moving seat 2, and this discharge pipe 32 is a flexible pipe (made of materials such as silica gel and TPU). The end located inside the tank body 1 fixedly penetrates through the top of the moving seat 2 and communicates with the inner cavity of the lower filter 3, and the other end fixedly penetrates through the side of the tank body 1 to the outside of the tank body 1; Compared with the prior art, this device can realize dual-mode preparation, and through the above structural design, the efficient integration of two different processes can be successfully achieved. Compared with traditional split equipment, it can not only improve production efficiency, but also significantly reduce costs, having significant technical and economic advantages.

[0043] In this embodiment, sealing air bags 8 are arranged on the outer sides of both the sealing plate 5 and the filtering device. The lifting driving device is fixedly installed on a cylinder block 9 at the top of the tank body 1, an electric cylinder 10 installed on the top of the cylinder block 9, a first driving rod 11 arranged at the driving end of the electric cylinder 10 and movably penetrating through the top of the cylinder block 9, and a second driving rod 12 movably penetrating through the bottom of the cylinder block 9 and connected to the filtering device. At one ends of the first driving rod 11 and the second driving rod 12 located inside the cylinder block 9, a first piston disc 13 and a second piston disc 14 are respectively installed. A fourth piston disc 16 is movably arranged on the top of the first piston disc 13, and the first piston disc 13 and the fourth piston disc 16 are connected through an adsorption structure. The outer diameter of the first piston disc 13 is smaller than the outer diameter of the fourth piston disc 16. A third piston disc 15 is installed on the top of the second piston disc 14 through a first spring 17. A limiting mechanism 21 for limiting the third piston disc 15 and the fourth piston disc 16 is arranged in the upper middle part inside the cylinder block 9. The limiting mechanism 21 is annular, and its inner diameter is between the first piston disc 13 and the fourth piston disc 16. The outer diameter of the third piston disc 15 is larger than the inner diameter of the fourth piston disc 16, and its outer diameter is adapted to the inner wall of the cylinder block 9. When the third piston disc 15 and the fourth piston disc 16 reach the limiting mechanism 21, they are fixed at the limiting mechanism 21 through the adsorption structure. A group of air pipes 18 are communicated with both the upper and lower sides of the cylinder block 9. The other ends of the two groups of air pipes 18 are respectively communicated with the sealing air bags 8 on the sealing plate 5 and the sealing air bags 8 on the filtering device. One end of one group of air pipes 18 is communicated with the top of the tank body 1, and the other end penetrates through the storage device 4 and is communicated with the sealing air bag 8 outside the sealing plate 5. One end of the other group of air pipes 18 is communicated with the sealing air bag 8 outside the moving seat 2, and the other end movably penetrates through the bottom of the tank body 1 and is connected to the bottom of the second piston disc 14 and is communicated with the space between the second piston disc 14 and the third piston disc 15; Through the above structure, a way to control the up-and-down movement of the filtering device is first given, that is, through the telescopic drive of the electric cylinder 10, the up-and-down movement of the filtering device is realized. During this process: Sealing air bags 8 are arranged on the outer sides of both the sealing plate 5 and the filtering device. The sealing air bags 8 are distributed on the sealing plate 5 to surround its four sides on the side, without being arranged at the left and right ends, and are distributed on the filtering device to surround its outer periphery, without being arranged at the upper and lower sides. When the electric cylinder 10 controls the downward movement of its driving end, first, the first driving rod 11, the first piston disc 13, and the fourth piston disc 16 are pushed downward. At this time, a negative pressure is formed in the upper space 25 inside the cylinder block 9 (the outer diameter of the fourth piston disc 16 is adapted to the inner diameter of the upper space 25), so that the gas in the sealing air bag 8 outside the sealing plate 5 is sucked into this space through the corresponding two air pipes 18, first making the volume of the sealing air bag 8 smaller, without affecting the subsequent lateral movement of the sealing plate 5 (in the initial state, the sealing air bag 8 is in an inflated state, so that the sealing plate 5 is sealed with the inner wall of the tank body 1 through the sealing air bag 8); In the second stage, when the fourth piston disc 16 moves to the limiting mechanism 21, under the limiting effect of the limiting mechanism 21, the first piston disc 13 is separated from the fourth piston disc 16. Immediately afterwards, the first piston disc 13 abuts against the third piston disc 15 and drives the third piston disc 15 to move downward. The first piston disc 13 also enters the middle space 26 inside the cylinder block 9; In the third stage, the first piston disc 13 drives the third piston disc 15 to continue moving downward, drives the second piston disc 14 to move downward through the first spring 17 until the bottom of the second piston disc 14 abuts against the bottom of the cylinder block 9. At this time, both sides of the moving seat 2 completely enter between the two sealing plates 5, and the moving seat 2 stops moving. The sealing plate 5 then enters the storage device 4. Next, the third piston disc 15 continues to move downward, and can compress the first spring 17, so that the gas between the third piston disc 15 and the second piston disc 14 is pressed into the sealing airbag 8 outside the moving seat 2, realizing the sealing between the moving seat 2 and the inner wall of the tank body 1. During this process, after the moving seat 2 is in place, the corresponding sealing airbag 8 is expanded; Through the above structure, it can be ensured that during the dual-mode preparation process, the environmental independence of any one mode during the working process is ensured, so that the two-mode preparation will not interfere with each other. That is, during the essence cream preparation, the sealing plate 5 is closed, and the essence cream will not come into contact with the filtering device. Moreover, the sealing airbag 8 can ensure that there will be no leakage phenomenon during the preparation process of the two modes. Moreover, the power of the sealing airbag 8 is realized during the process of the electric cylinder 10 pushing the filtering device, without adding other power devices, the structure is more concise, the cost is lower, and during the expansion and contraction process of the sealing airbag 8, there will be no excessive friction with the inner wall of the tank body 1, but first the volume changes and then it moves, which can effectively extend the service life of the sealing airbag 8.

[0044] In addition, the adsorption structure includes electromagnetic blocks 27 installed on the upper and lower sides of the first piston disc 13 and electromagnetic blocks 27 on the upper and lower sides of the limiting mechanism 21. Magnetic attraction blocks 20 are installed at the bottom of the fourth piston disc 16 and the top of the third piston disc 15. The magnetic attraction blocks 20 are adapted to the electromagnetic blocks 27. By switching the adsorption method of the electromagnetic blocks 27, the separation and connection between the first piston disc 13 and the limiting mechanism 21 and the fourth piston disc 16 and the third piston disc 15 are realized.

[0045] In this embodiment, the sealing plate 5 is designed with a cavity, and a discharge pipe 19 is arranged inside the sealing plate 5. The discharge pipe 19 has two input ends 29, which are respectively arranged at the inner end and the lower part of the end of the sealing plate 5 located inside the tank body 1, and its output end is communicated with the outside of the tank body 1. This kind of structural design is for when preparing the essence cream, since the essence cream needs to be heated, the steam generated during the intermediate process can be discharged through the discharge pipe 19. A connecting pipe 30 is installed at the top of the tank body 1. The connecting pipe 30 is a flexible pipeline, and one end of it penetrates into the tank body 1 and is communicated with the output end of the discharge pipe 19; In addition, since the discharge pipe 19 has two input ends 29, in another embodiment (as Figure 4 - Figure 6 shown), in this embodiment, there is no need to install the discharge pipe 32 on the top of the moving seat 2. Instead, an output port 28 is opened on the side of the moving seat 2. When the moving seat 2 is docked with the input end of the discharge pipe 19 on the side of the sealing plate 4, the output port 28 is communicated with the input end 29 of the discharge pipe 19. In this way, when preparing the essence, the filtered essence can be discharged from here, so that while the discharge pipe 19 is capable of discharging steam, it also has the function of discharging materials, further simplifying the structure of the device.

[0046] In this embodiment, a second spring 22 is installed inside the storage device 4, and the second spring 22 is arranged between the inner cavity side wall of the storage device 4 and one end of the sealing plate 5 inside the storage device 4. The second spring 22 is used for the telescopic reset of the sealing plate 5 in the storage device 4.

[0047] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. A breast enhancement composition for cosmetic use, characterized in that: It consists of the following components in parts by mass: Pueraria mirifica extract, 15 - 25 parts; Humulus lupulus extract, 10 - 20 parts; Ginseng root extract, 10 - 20 parts; Compound peptide, 7 - 55 parts.

2. The breast enhancement composition for cosmetics according to claim 1, wherein: The compound peptide includes at least two of acetyl tetrapeptide - 2, acetyl tetrapeptide - 9, acetyl hexapeptide - 7, acetyl hexapeptide - 8, acetyl heptapeptide - 4, acetyl octapeptide - 3, tripeptide - 1, hexapeptide - 9, palmitoyl tripeptide - 5, palmitoyl tetrapeptide - 7, palmitoyl pentapeptide - 4, etc.

3. The breast enhancement composition for cosmetics according to claim 2, wherein: It consists of the following components in parts by mass: 15 - 25 parts of Pueraria mirifica; 10 - 20 parts of ginseng root; 10 - 20 parts of Humulus lupulus; 2 - 10 parts of palmitoyl tripeptide - 5; 2 - 10 parts of acetyl hexapeptide - 8; 1 - 5 parts of acetyl octapeptide - 3; 1 - 5 parts of acetyl heptapeptide - 4; 1 - 5 parts of acetyl tetrapeptide - 2.

4. The breast enhancement composition for cosmetics according to claim 2, wherein: 15 - 25 parts of Pueraria mirifica; 10 - 20 parts of ginseng root; 10 - 20 parts of Humulus lupulus; 10 - 20 parts of acetyl hexapeptide - 7; 1 - 5 parts of tripeptide - 1; 1 - 5 parts of hexapeptide - 9; 1 - 5 parts of acetyl tetrapeptide - 9; 1 - 5 parts of palmitoyl pentapeptide - 4; 1 - 5 parts of palmitoyl tetrapeptide - 7; 1 - 5 parts of acetyl hexapeptide - 8.

5. A method for preparing a breast enhancement composition for cosmetics, which is used to prepare the breast enhancement composition for cosmetics according to any one of claims 1-4, characterized in that: It includes the following steps: The Pueraria mirifica extract, Humulus lupulus extract, ginseng root extract and compound peptide are uniformly prepared through a mixing device.

6. Preparation device for breast enhancement composition for cosmetics, a mixing device applied to the preparation method of breast enhancement composition for cosmetics, used to prepare the breast enhancement composition for cosmetics according to any one of claims 1-4, and prepared into essence or essence cream according to the composition formula, characterized in that: It includes: A tank body (1) for putting raw materials to prepare the composition; A stirring mechanism (24) arranged at the bottom position of the inner cavity of the tank body (1) for stirring the raw materials; A heating jacket (23) arranged at the lower position on the outside of the tank body (1) for heating the raw materials inside the tank body (1); A storage device (4) arranged at the middle position on the outside of the tank body (1), which is arranged in a cavity structure and is connected to the inner cavity of the tank body (1). A sealing plate (5) is movably arranged inside it for selectively isolating the inner cavity of the tank body (1) into two independent cavities, upper and lower; A filtering device is arranged at the top position of the inner cavity of the tank body (1), driven by a lifting driving device, capable of moving up and down in the tank body (1), and when the filtering device moves down, it applies power to the sealing plate (5) to be received into the storage device (4).

7. The preparation device of the breast enhancement composition for cosmetics according to claim 6, characterized in that: The filtering device includes a moving seat (2) arranged in a disc shape and a filter (3) installed at the bottom of the moving seat (2). The filter (3) is in an inverted frustum shape, and several filter membranes are arranged inside it. There are two storage devices (4), respectively located on both sides of the tank body (1). A guiding edge (6) is arranged on the upper side of the end of the sealing plate (5) located inside the tank body (1). The guiding edge (6) is adapted to the filter (3). A flow channel (7) is installed inside the tank body (1), and the flow channel (7) extends from the top inside the tank body (1) to the middle and lower part. The flow channel (7) is communicated with the area where the stirring mechanism (24) is installed. The sealing plate (5) horizontally and movably penetrates through the flow channel (7). The shape and size of the filter (3) are adapted to the shape and size of the bottom of the flow channel (7).

8. The preparation device for the breast enhancement composition for cosmetics according to claim 6, characterized in that: A sealing airbag (8) is provided on the outer side of both the sealing plate (5) and the filtering device. The lifting drive device is fixedly installed on a cylinder block (9) at the top of the tank body (1), an electric cylinder (10) installed on the top of the cylinder block (9), a first drive rod (11) provided at the drive end of the electric cylinder (10) and movably penetrating through the top of the cylinder block (9), and a second drive rod (12) movably penetrating through the bottom of the cylinder block (9) and connected to the filtering device. One ends of the first drive rod (11) and the second drive rod (12) located inside the cylinder block (9) are respectively installed with a first piston disc (13) and a second piston disc (14). A fourth piston disc (16) is movably arranged on the top of the first piston disc (13), and the first piston disc (13) and the fourth piston disc (16) are connected by an adsorption structure. The top of the second piston disc (14) is installed with a third piston disc (15) through a first spring (17). A limiting mechanism (21) for limiting the third piston disc (15) and the fourth piston disc (16) is arranged in the upper middle part of the interior of the cylinder block (9). When the third piston disc (15) and the fourth piston disc (16) reach the limiting mechanism (21), they are fixed at the limiting mechanism (21) through the adsorption structure. A set of air pipes (18) are communicated with both the upper and lower sides of the cylinder block (9). The other ends of the two sets of air pipes (18) are respectively communicated with the sealing airbag (8) on the sealing plate (5) and the sealing airbag (8) on the filtering device.

9. The preparation device for the breast enhancement composition for cosmetics according to claim 6, characterized in that: The sealing plate (5) is designed with a cavity. A discharge pipe (19) is arranged inside the sealing plate (5). The discharge pipe (19) has two input ends (29), which are respectively arranged at the inner end and the lower part of the end of the sealing plate (5) located inside the tank body (1), and its output end is communicated with the outside of the tank body (1).

10. The preparation device of the breast enhancement composition for cosmetics according to claim 6, characterized in that: A second spring (22) is installed inside the receiving device (4), and the second spring (22) is arranged between the inner cavity side wall of the receiving device (4) and one end of the sealing plate (5) located inside the receiving device (4).