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GF-LT Graphite Used in Semiconductor Manufacturing .Without semiconductors, modern life is impossible: Computers, power supply, LEDs, the Internet, and solar cells all require semiconductors to function (e.g. silicon). Specialty graphite components are necessary for various steps in the manufacturing of semiconductors.
This is true for both crystal growth and any subsequent epitaxy or ion implantation finishing. These processes take place in incredibly caustic conditions and at very high temperatures. Highest purity and precise precision are necessary at the same time.
The Global GF-LT Graphite market accounted for $XX Billion in 2021 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2022 to 2030.
In addition to better wear and erosion resistance, Entegris’s GF-LT graphite has the same properties as their GF graphite. This material may be polished to a very high gloss because of its enhanced hardness. In order to boost oxidation resistance by removing metallic contaminants that react with oxygen present during the glass-forming process, they offer purification of each GM-GF material.
According to ash analysis, their purification method lowers contaminants to 5 ppm (99.9995%) or less. A -1 is added after the grade to indicate this process. (GF-LT-1).
RUIYI GRAPHITE’s Pure expanded natural graphite is used to create flexible graphite sheets. The flexible graphite sheet they use as a standard, the GF-LT, has a high pure carbon content of 99.0%. Flexible graphite foil with a higher carbon content has greater chemical resistance, thermal conductivity, and sealing properties.
Their common flexible graphite sheet, designated GF-LT, is suited for most industrial applications. It is frequently manufactured into graphite laminate and reinforced graphite sheets for use as gasket material in a variety of fluid sealing applications, including flange gaskets, spiral wound gaskets, heat exchanger gaskets, etc.
Additionally, it can be utilised as a solid lubricant in applications involving metal stamping and shaping, as a heat liner in industrial furnaces, and in other heating devices.