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Military insulation field

Fluorophlogopite mica (also known as artificial mica, synthetic mica large crystal), belongs to the silicate artificial mica crystal, is in the high temperature state of 1500 ℃, through strict process conditions and material ratio, in the platinum crucible smelting mica single crystal.Military insulation field Fluorophlogopite, a type of mica mineral, is garnering attention for its potential applications in military insulation. With its remarkable thermal stability, low thermal conductivity, and resistance to high temperatures, fluorophlogopite presents itself as a promising material for military insulation systems.

Military radar field

Fluorophlogopite mica (also known as artificial mica, synthetic mica large crystal), belongs to the silicate artificial mica crystal, is in the high temperature state of 1500 ℃, through strict process conditions and material ratio, in the platinum crucible smelting mica single crystal.Military radar field Fluorophlogopite, a type of mica mineral, has demonstrated potential relevance in the military radar field. Its properties, including high thermal and chemical stability, low dielectric loss, and excellent electrical insulation characteristics, make it a candidate material for use in radar systems.

Fluorophlogopite mica for two-dimensional nano-material substrate,Fluorophlogopite fluorphlogopite substrate

Fluorophlogopite mica (also known as artificial mica, synthetic mica large crystal), belongs to the silicate artificial mica crystal, is in the high temperature state of 1500 ℃, through strict process conditions and material ratio, in the platinum crucible smelting mica single crystal. Its chemical formula is KMg3(AlSi3O10)F2, its melting point is 1375 ℃, and it can be used for a long time at a temperature of up to 1100 ℃. Surface roughness <0.6 nm; Colorless and transparent; It does not react with strong acid and alkali; Fluorophlogopite fluorphlogopite substrate is a type of mica mineral that exhibits excellent properties for serving as a substrate in various applications. As a substrate, fluorophlogopite offers a flat, stable surface that is conducive to the growth and manipulation of two-dimensional materials such as graphene.

Performance curve of fluorophlogopite mica


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Coefficient of linear expansion

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Volume resistivity at high temperature

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The relationship between dielectric loss and temperature and frequency.

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Relationship between thickness and breakdown strength

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Vacuum air release curve at high temperature

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Infrared transmittance curve

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