Mica is a group of silicate minerals characterized by their sheet-like or layered structure. Renowned for their unique properties, these minerals are essential in various industries, including cosmetics, electronics, and construction. This article will delve into the different types of mica, highlighting their characteristics, uses, and significance in various applications.
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The mica industry is undergoing profound changes. With the help of emerging industries, the mica industry will be a large market of more than 10 billion.
What are the uses of mica
Take pearlescent pigments as an example, pearlescent pigments are a class of pigments with pearl luster, which are deposited on the substrate (generally natural mica, synthetic mica, glass sheet and other sheet-like materials) above a layer or alternately deposited multiple layers of metal oxides or non-metallic oxides and formed a flat sandwich body with a structure similar to sandwich. Due to the difference in refractive index between the substrate and the oxide deposited on its surface and each oxide, when the light shines on the surface of the pearlescent pigment, the incident light will be refracted and reflected at the interface of each layer of the pearlescent pigment, and the color of the pearlescent pigment that people see is the result of the superposition of light after multiple refractions and reflections of the light, that is, the interference phenomenon of light.
It is an indispensable and important raw material in the fields of electric heating equipment, wire and cable, aerospace and so on.
The mica variety that does not contain iron is colorless in flakes, and the higher the iron content, the darker the color, and the more polychromatic and absorbable it is. According to the different chemical composition and optical characteristics, mica group minerals can be divided into Muscovite subgroup, biotite-phlogopite subgroup and lemica subgroup. The common mica are biotite, phlogopite, Muscovite and so on.
Mica is a very common rock-forming mineral, widely distributed in crystalline rocks. Its general chemical formula can be expressed as:
In addition, lepidolite and ferrolepidolite can also be used as mineral raw materials for extracting lithium.
In addition, lepidolite and ferrolepidolite can also be used as mineral raw materials for extracting lithium.