Special Design for Graphite Electrodes Eaf - Ultra High Power Graphite Electrode – Hexi

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The business keeps to the operation concept "scientific management, premium quality and efficiency primacy, customer supreme for High Power Carbon Graphite Electrodes, Low Specific Resistance Graphite Electrodes, High Density Electrode, As a key enterprise of this industry, our company makes efforts to become a leading supplier, based on the faith of professional quality & worldwide service.
Special Design for Graphite Electrodes Eaf - Ultra High Power Graphite Electrode – Hexi Detail:

The main raw materials of ultra- high power graphite electrodes body are import oil needle coke. The production process include crushing, screening, Dosing,kneading,forming, baking,impregnation, second time baking, graphitization and machining. The raw material of nipples is import oil needle coke, the production process include three times impregnation and four times baking.

600a 600b

The standard of ultra-high power graphite electrode and nipple

The main raw materials of ultra- high power graphite electrodes body are import oil needle coke. The production process include crushing, screening, Dosing,kneading,forming, baking,impregnation, second time baking, graphitization and machining. The raw material of nipples is import oil needle coke, the production process include three times impregnation and four times baking.

UHP Graphite electrode Permissible current load

The main raw materials of ultra- high power graphite electrodes body are import oil needle coke. The production process include crushing, screening, Dosing,kneading,forming, baking,impregnation, second time baking, graphitization and machining. The raw material of nipples is import oil needle coke, the production process include three times impregnation and four times baking.

Ultra-high-power graphite electrode produced by Hexin Carbon is produced by high-grade needle coke, and its graphitization heat treatment is carried out in an internal series graphitization furnace, and the graphitization temperature is as high as 2800〜3000°C, so the resistivity is lower, allowing a larger current density, a smaller linear expansion coefficient and excellent thermal shock resistance. It is a special ultra-high power graphite electrode for electric arc furnace and ladle refining furnace. The ultra-high power graphite electrode of Hexi Carbon Company adopts the most advanced technology and is produced in strict accordance with the global standards, which basically meets the world-class quality standards. Our company promises free consultation and installation, free after-sales tracking and unconditional return of quality problems.


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Special Design for Graphite Electrodes Eaf - Ultra High Power Graphite Electrode  – Hexi detail pictures

Special Design for Graphite Electrodes Eaf - Ultra High Power Graphite Electrode  – Hexi detail pictures


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Gaining customer satisfaction is our company's aim forever. We will make great efforts to develop new and top-quality products, meet your special requirements and provide you with pre-sale, on-sale and after-sale services for Special Design for Graphite Electrodes Eaf - Ultra High Power Graphite Electrode – Hexi, The product will supply to all over the world, such as: Costa rica, Bogota, Mexico, After 13 years of researching and developing products, our brand can represent wide range of products with outstanding quality in world market. We have completed big contracts from many countries such as Germany, Israel, Ukraine, United Kingdom, Italy, Argentina, France, Brazil, and so on. You probably feel secure and satisfy when copperate with us.
  • This company has the idea of "better quality, lower processing costs, prices are more reasonable", so they have competitive product quality and price, that's the main reason we chose to cooperate.
    5 Stars By Miranda from Uzbekistan - 2018.05.15 10:52
    It is not easy to find such a professional and responsible provider in today's time. Hope that we can maintain long-term cooperation.
    5 Stars By Lisa from Dubai - 2018.05.15 10:52

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