SIMO TECHNOLOGY INDUSTRY NEWS AND INFORMATION
It is widely applied in fields such as precious metal smelting, electrical discharge machining, photovoltaics, semiconductors, metal casting, hot bending glass molds, aerospace, etc.
The six common types of graphite and their core applications (2026 Practical Guide)
The system comprehensively categorizes six types of graphite: natural flake graphite, microcrystalline graphite, cryptocrystalline graphite, artificial graphite, isostatic graphite, and flexible graphite. By integrating physical properties, purity grades, and typical industrial application scenarios, it assists in material selection and technology application decisions.
View DetailsProgress in domestic high-purity graphite breakthrough: From import dependence to self-controlled technical path
Focus on the key breakthroughs in China's high-purity graphite industry from 2023 to 2026, review the progress made by leading enterprises in core technologies such as isostatic pressing molding, purification at temperatures above 2800℃, and control of low boron and low metal impurities, and analyze the current status and challenges of domestic substitution in strategic fields such as semiconductors, nuclear power, and photovoltaic single-crystal furnaces.
View DetailsThe definition, preparation process and core application fields of high-purity graphite are elaborated.
This article systematically analyzes the technical definition of high-purity graphite (with a carbon content of ≥ 99.99%), the mainstream preparation methods (such as high-temperature graphitization + halogen purification), and the key performance indicators (ash content < 10 ppm, control of B/C/N impurities). It also provides an in-depth introduction to its indispensable role in high-end fields such as semiconductor single crystal furnaces, nuclear reactor moderators, high-temperature vacuum
View DetailsThe crucial role of high-purity graphite in the semiconductor single-crystal silicon growth furnace and the failure analysis thereof
In-depth analysis of the functional principles of high-purity graphite as the core thermal field material (crucible, insulation cylinder, heater) in the growth furnace for monocrystalline silicon, detailed explanation of the influence mechanisms of trace impurities such as boron, phosphorus, and aluminum on the oxygen content, resistivity uniformity, and micro-defects of the silicon wafer, and provision of typical failure cases and prevention strategies.
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