Nanomaterialization of cosmetic ingredients in a short time. High-precision nanodispersion, defibrillation, and delamination with accurate pressure control.
Our company offers products equipped with the nano-dispersion technology "Ultra High-Pressure Wet Cavitation," suitable for cosmetic materials that require uniform nano-particles. We are currently providing materials that explain this nano-dispersion technology. By utilizing the shock force generated when bubbles collapse, it is possible to efficiently create high-quality nano-particles. This technology can be applied not only to cosmetic materials such as titanium oxide, iron oxide, cellulose nanofibers, and boron nitride but also to the following types of materials: 【Examples of Materials】 ◎ Metal materials ◎ Magnetic materials ◎ Ceramics ◎ Oxides ◎ Fibers ◎ Carbon materials ◎ Pharmaceuticals ◎ Food ◎ Optical materials … and more *For more details, please refer to the materials. Feel free to contact us with any inquiries.
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Advanced Nano Technology develops, manufactures, and sells ultra-fine grinding equipment capable of research, prototyping, and production of nanomaterials in a wide range of fields such as semiconductors, pharmaceuticals, fine chemicals, health foods, and cosmetics, including new materials and functional materials. Currently, we have incorporated dry jet mills and high-efficiency three-dimensional oscillating bead mills into our product lineup, addressing nano needs across various fields from dry to wet processes.
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*For more details, please refer to the materials. Feel free to contact us as well.*
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Our company has been involved in the development and manufacturing of wet ultra-high pressure micronization equipment for many years, providing a range of devices from testing equipment to production facilities for numerous users. Additionally, in response to our customers' requests, we incorporated dry jet mills into our product lineup last year and high-efficiency three-dimensional oscillating bead mills this year, enabling us to meet a wide range of nano needs in both dry and wet processes.