The mica powder of HUAJING has the advantage of extremely narrow particle size, and the particle size specifications are complete, such as: 2000 mesh, 1250 mesh, 800 mesh, 400 mesh, 120 mesh, etc. The skin feeling is exquisite.
Applications of Mica Powder
Synthetic mica powder is a man-made version of natural mica, produced through specific processes that closely mimic the structure and characteristics of its natural counterpart. Synthetic mica is typically composed of aluminum silicate, but it can also contain other minerals. The production process allows for a high degree of control over its properties, making it an attractive ingredient in numerous industries.
1. Silica (SiO2) The predominant element in mica, which provides its unique shimmering properties.
Mica powder, known as industrial monosodium glutamate, is widely used. With the continuous development of technology and application market, and some new requirements have been put forward for the quality of mica powder, so synthetic mica powder has been developed. Compared with the natural mica powder processed by natural mica ore, and the synthetic mica powder synthesized by using a variety of raw materials through high temperature reaction and other chemical methods. What are the advantages and differences between them?
Advantages of Mica Powder in Cosmetics
4. Oil Absorption While synthetic fluorphlogopite is primarily used for its visual qualities, it can also absorb excess oil without clogging pores. This aspect makes it a favorable addition to products designed for oily or combination skin, as it helps maintain a matte finish while promoting skin health.
The layered structure of mica provides a unique optical property known as interference, which creates depth and dimension in colors. This quality makes mica pigments particularly popular in the cosmetics industry for creating shimmering eyeshadows, blushes, and lip products that not only deliver color but also a luminous finish.
Modified plastics result from various processes that enhance the properties of the base material. These modifications may include the incorporation of additives, blending with other polymers, or applying treatments that alter the polymer structure. Common types of modified plastics include composites, filled polymers, and blends. Each of these categories serves a unique purpose and caters to different industry needs.