Cosmetic raw material extraction process
By combining the hammering method and extraction device with steam distillation and other methods, herbal raw materials are crushed and extracted, which solves the problem of low crushing efficiency in existing technologies and achieves efficient juice collection and rapid extraction of cosmetic raw materials.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 王小桃
- Filing Date
- 2023-10-09
- Publication Date
- 2026-04-10
AI Technical Summary
The low crushing efficiency of herbal raw materials in existing technologies leads to insufficient extraction efficiency of cosmetic raw materials.
The plant material is crushed by hammering, and the juice is extracted by steam distillation, organic solvent extraction and other methods. The hammer and spherical structure in the extraction device are used to break the cell wall, and the juice is collected quickly by the combination of filter extrusion and inclined channel design.
It improves the extraction efficiency of plant raw material juices, achieves rapid crushing and efficient juice collection, and enhances the skin care capabilities of cosmetics.
Smart Images

Figure CN121818481A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cosmetic raw material extraction technology, and more specifically to a cosmetic raw material extraction process. Background Technology
[0002] Some ingredients in cosmetics are derived from herbal plants. Extracting the nutrients from these plants enhances the skin-care benefits of cosmetics. Existing technology, document CN113893575B, discloses a natural cosmetic ingredient extraction process. This process includes the following steps: Step 1: Selecting dried natural plant materials and mixing them with additives; Step 2: Crushing and stirring the mixed materials; Step 3: Discharging the essence produced during crushing and collecting the more concentrated essence; Step 4: Discharging and collecting the extract produced after extraction. While this method allows for more thorough extraction of natural plant components, it suffers from low efficiency in crushing the plants. To address this issue, this application proposes a cosmetic ingredient extraction process that can rapidly crush plant materials, improving the extraction efficiency of the juices from the plant materials. Summary of the Invention
[0003] To overcome the shortcomings of existing technologies, this invention provides a cosmetic raw material extraction process that can rapidly crush plant raw materials and improve the extraction efficiency of juices from plant raw materials.
[0004] The technical solution adopted by this invention to solve its technical problem is:
[0005] A cosmetic raw material extraction process, comprising the following steps:
[0006] Step 1: After rinsing the plant materials with clean water, put them into the extraction device for pounding;
[0007] Step 2: Filter the plant mud obtained after pounding to obtain juice and purify it;
[0008] Step 3: After mixing the other ingredients evenly in the mixing container, mix the purified juice into the other ingredients;
[0009] Step 4: Let the stirred juice stand with the other ingredients for 24-36 hours before bottling and storing.
[0010] The plant materials mentioned include orchids, lilies, calendula, peonies, geraniums, and evening primroses.
[0011] The other ingredients include milk, pearl powder, emulsifiers, and collagen.
[0012] In step two, the plant mud is placed into a filter screen and wrapped by the screen. The juice is squeezed out of the filter screen, the juice is collected, and the residue is used to make fertilizer.
[0013] The extraction device is capable of gradually adding other plant materials into the pounding process while pounding one plant material.
[0014] In step two, the juice is purified using one of the following methods: steam distillation, organic solvent extraction, or solvent extraction.
[0015] The extraction device includes a material barrel with a bottom hole at the lower end, a baffle that slides at the lower end of the material barrel, and a cylinder fixed on the material barrel. A hammer head is fixedly connected to the cylinder. The lower side of the inner wall of the material barrel has a spherical structure. Attached Figure Description
[0016] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0017] Figure 1 , Figure 2 and Figure 3 All of these are flowcharts of the extraction process in this invention;
[0018] Figure 4 This is a schematic diagram of the extraction device of the present invention;
[0019] Figure 5 This is a schematic diagram of the material barrel structure in this invention;
[0020] Figure 6 This is a schematic diagram of the hammerhead structure in this invention;
[0021] Figure 7 This is a schematic diagram of the tool structure in this invention;
[0022] Figure 8 This is a schematic diagram of the side channel structure in this invention;
[0023] In the diagram: 01. Material bucket; 02. Bottom hole; 03. Baffle; 04. Inclined rail; 05. Cylinder; 06. Hammer; 07. Rack; 08. Side rail; 09. Push plate; 10. Inclined rail; 11. Side frame; 12. Gear; 13. Rotary wheel; 14. Cutting tool. Detailed Implementation
[0024] Through observation Figures 1 to 3 The process for extracting cosmetic raw materials can be derived from the diagram.
[0025] A cosmetic raw material extraction process, comprising the following steps:
[0026] Step 1: After rinsing the orchids, lilies, calendulas, peonies, geraniums, and evening primroses with clean water, put them into the extraction device and pound them to obtain plant mud.
[0027] Step 2: Place the plant mud into a filter screen and let it be wrapped by the screen. Squeeze the mud to make the juice flow out of the filter screen. Collect the juice and use the residue for fertilizer production. Then, purify the juice by steam distillation.
[0028] Step 3: After mixing the other ingredients evenly in the mixing container, mix the purified juice into the other ingredients;
[0029] Step 4: Let the stirred juice stand with the other ingredients for 24 hours, then bottle and store.
[0030] Through observation Figures 1 to 3 Another process for preparing cosmetic raw material extraction can be obtained based on the diagram.
[0031] A cosmetic raw material extraction process, comprising the following steps:
[0032] Step 1: After rinsing the orchids, lilies, calendulas, peonies, geraniums, and evening primroses with clean water, put them into the extraction device and pound them to obtain plant mud.
[0033] Step 2: Place the plant mud into a filter screen and let it be wrapped by the screen. Squeeze the mud to make the juice flow out of the filter screen. Collect the juice and use the residue for fertilizer production. Then, purify the juice by organic solvent extraction.
[0034] Step 3: After mixing the other ingredients evenly in the mixing container, mix the purified juice into the other ingredients;
[0035] Step 4: Let the stirred juice stand with the other ingredients for 24 hours, then bottle and store.
[0036] Through the above process, the cell walls of plant materials can be broken by hammering during the extraction of plant juice, allowing the juice to flow out quickly. At the same time, hammering can break up the hard parts of the plant materials, increasing the juice flow and thus improving the extraction efficiency of plant materials.
[0037] Through observation Figures 4 to 8 An exemplary working process for pounding plant materials, as shown in the figure, is as follows:
[0038] The extraction device includes a material barrel 01 with a bottom hole 02 at the lower end, a baffle 03 sliding at the lower end of the material barrel 01, and a cylinder 05 fixed on the material barrel 01. A hammer head 06 is fixedly connected to the cylinder 05. The lower side of the inner wall of the material barrel 01 has a spherical structure. The cleaned plant material is put into the material barrel 01. At this time, the baffle 03 slides at the lower end of the material barrel 01 to block the bottom hole 02. Then, the cylinder 05 can drive the hammer head 06 to repeatedly rise and fall to enter the material barrel 01 to pound the plant material, thereby destroying the cell wall of the plant material and allowing the juice of the plant material to flow out smoothly.
[0039] Furthermore, both the hammerhead 06 and the lower inner wall of the material bucket 01 have spherical structures. These spherical structures allow the plant materials to be pushed upwards along the spherical structure on the lower inner wall of the material bucket 01 when impacted by the hammerhead 06. This continuous tumbling of the plant materials during the pounding process ensures that they are pounded more evenly.
[0040] Meanwhile, the bottom hole 02 of the material bucket 01 is fixedly connected to an inclined chute 04; after the tamping is completed, the baffle 03 can be pulled forward to slide out of the bottom hole 02, opening the bottom hole 02, so that the plant mud obtained after tamping can smoothly slide down from the bottom hole 02 into the inclined chute 04, and slide into the collection container under the guidance of the inclined chute 04.
[0041] Through observation Figures 4 to 8 An exemplary working process for adding raw materials, as shown in the diagram, is as follows:
[0042] The material hopper 01 is fixedly connected to side frames 11 at both ends, and side channels 08 are fixedly connected to both side frames 11. A push plate 09 is slidably connected in the side channel 08, and a spring is fixedly connected between the side channel 08 and the push plate 09. An inclined channel 10 is provided at the inner end of the side channel 08. During the tamping process, the push plate 09 is first pulled outward to compress the spring. Then, the raw material to be added is put into the side channel 08. The push plate 09 is then released, and the spring's reset is used to push the push plate 09 to push the raw material in the side channel 08, causing it to slide down the inclined channel 10 into the material hopper 01. This allows for flexible addition of raw materials and avoids the safety hazards and interference problems that would occur if the raw material were directly put into the material hopper 01 during the repeated up and down movement of the hammer head 06.
[0043] Through observation Figures 4 to 8 An exemplary working process for gradually obtaining raw materials, as shown in the figure, is as follows:
[0044] A gear 12 is rotatably connected to the side frame 11. A rotating wheel 13 located in the inclined chute 10 is fixedly connected to the front side of the gear 12. A cutter 14 is provided on the side of the rotating wheel 13. Two racks 07 are fixedly connected to the hammer head 06, each meshing with one of the two gears 12. After another material is fed into the side chute 08, the spring drives the push plate 09 to push the material. At this time, the rotating wheel 13 blocks the outlet position of the push plate 09 in the inclined chute 10, so that the material contacts the rotating wheel 13 from the position of the inclined chute 10. As the hammer head 06 moves up and down, the racks 07 can mesh and drive the gear 12 to rotate. Thus, when the racks 07 move upward, the gear 12 rotates and drives the rotating wheel 13 to rotate clockwise. When the cutter 14 on 13 passes through the inclined chute 10, it cuts the raw material in the inclined chute 10, and pushes a portion of the cut material into the material bucket 01 for mixing. When the hammer head 06 moves downward, while pounding the raw material, the gear 12 drives the rotating wheel 13 to rotate counterclockwise, so that the cutter 14 on the rotating wheel 13 is reset to prepare for the next cutting of the raw material. In this way, other raw materials can be continuously added to the pounding process in small batches while the raw material is being pounded continuously. This avoids the problem that it is difficult to pound the raw material after most of the raw material has entered or that the pounding force needs to be increased. All raw materials can be pounded and mixed gradually while the pounding force remains constant.
Claims
1. A cosmetic raw material extraction process, characterized in that, The process includes the following steps: Step 1: After rinsing the plant materials with clean water, put them into the extraction device for pounding; Step 2: Filter the plant mud obtained after pounding to obtain juice and purify it; Step 3: After mixing the other ingredients evenly in the mixing container, mix the purified juice into the other ingredients; Step 4: Let the stirred juice stand with the other ingredients for 24-36 hours before bottling and storing.
2. The cosmetic raw material extraction process according to claim 1, characterized in that: The plant materials mentioned include orchids, lilies, calendula, peonies, geraniums, and evening primroses.
3. The cosmetic raw material extraction process according to claim 2, characterized in that: The other ingredients include milk, pearl powder, emulsifiers, and collagen.
4. The cosmetic raw material extraction process according to claim 3, characterized in that: In step two, the plant mud is placed into a filter screen and wrapped by the screen. The juice is squeezed out of the filter screen, the juice is collected, and the residue is used to make fertilizer.
5. The cosmetic raw material extraction process according to claim 4, characterized in that: The extraction device is capable of gradually adding other plant materials into the pounding process while pounding one plant material.
6. The cosmetic raw material extraction process according to claim 5, characterized in that: In step two, the juice is purified using one of the following methods: steam distillation, organic solvent extraction, or solvent extraction.
7. The cosmetic raw material extraction process according to claim 6, characterized in that: The extraction device includes a material barrel (01) with a bottom hole (02) at the lower end, a baffle (03) that slides on the lower end of the material barrel (01), and a cylinder (05) fixed on the material barrel (01). A hammer (06) is fixedly connected to the cylinder (05). The lower side of the inner wall of the material barrel (01) has a spherical structure.
8. The cosmetic raw material extraction process according to claim 7, characterized in that: The bottom hole (02) of the material bucket (01) is fixedly connected to the inclined channel (04).
9. The cosmetic raw material extraction process according to claim 8, characterized in that: The material bucket (01) is fixedly connected to both the left and right ends with side frames (11), and side channels (08) are fixedly connected to both side frames (11). A push plate (09) is slidably connected in the side channel (08), and a spring is fixedly connected between the side channel (08) and the push plate (09). An inclined channel (10) is provided at the inner end of the side channel (08).
10. The cosmetic raw material extraction process according to claim 9, characterized in that: The side frame (11) is rotatably connected to a gear (12), and a rotating wheel (13) located in the inclined rail (10) is fixedly connected to the front side of the gear (12). A cutter (14) is provided on the side of the rotating wheel (13); two racks (07) are fixedly connected to the hammer head (06) and mesh with the two gears (12) respectively.
Citation Information
Patent Citations
A natural cosmetic raw material extraction process
CN113893575B