Natural mica powder and synthetic mica powder also have great differences in electrical insulation, mechanical properties, chemical stability, application range and cost. Natural mica powder has good electrical insulation, but the volume resistivity is lower than that of synthetic mica. Synthetic mica powder has better electrical insulation properties, high volume resistivity and stable dielectric constant, and is suitable for high performance electrical insulation materials. The hardness of natural mica powder is relatively low (2-3), and it has good elasticity and peeling property. The hardness of synthetic mica powder is higher (between 3 and 4), and the tensile strength and compressive strength are better than that of natural mica powder. Natural mica powder is stable in acid-base solution, but it is easy to decompose at high temperature. Synthetic mica powder is stable to acid and base at room temperature, but will be slowly corroded by sulfuric acid above 300℃. Better thermal stability, not easy to release gas. Natural mica powder is widely used in electrical appliances, welding rods, rubber, plastics, paper making, paint and other fields. Synthetic mica powder is mainly used in high-end electrical insulation materials, aviation, aerospace, national defense industry and other high-tech fields. Because synthetic mica powder needs to be produced through complex chemical processes, its production cost is usually higher than that of natural mica powder. Therefore, in the market, the price of synthetic mica powder is often higher than that of natural mica powder. However, with the continuous progress of production technology and the gradual emergence of scale effects, the price of synthetic mica powder is expected to gradually decrease.
The rapid development of new energy vehicles, batteries and other emerging industries also provides a new application scenario for mica products, such as power battery modules and energy storage system of mica cover plate, mica partition, mica monitoring board and composite mica tape and other products, the application of mica provides the industry with a fire safety solution.
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.
In contrast, synthetic mica is engineered in laboratories and offers a more controlled and sustainable alternative. While it may not have the exact same properties as natural mica, synthetic mica serves as a viable substitute in many applications. This method does not involve the environmental degradation associated with traditional mining, positioning it as a more ethical choice.
Diverse Product Range
Mica is a very common rock-forming mineral, widely distributed in crystalline rocks. Its general chemical formula can be expressed as:
3. Electronics Given their excellent insulating properties, mica chips are used in electrical and electronic applications. They act as dielectric materials, aiding in the production of capacitors and insulators. Their heat resistance is critical in devices that operate at high temperatures, as they help prevent overheating and subsequent failures.
As consumers, being informed is key. Understanding the ingredients in food products, knowing how they are sourced, and being aware of any personal sensitivities can guide us in making safe choices. The artistic appeal of mica-based pigments can enhance our culinary experiences, but safety should always take precedence. By ensuring that we choose products that comply with safety regulations, we can enjoy both the beauty and safety that these pigments offer.