High Quality Rp Ordinary Power Graphite Electrode - Regular power Graphite electrode – Hexi
High Quality Rp Ordinary Power Graphite Electrode - Regular power Graphite electrode – Hexi Detail:
The main raw material of ordinary power graphite electrode body is high-quality petroleum coke, which is mainly used in electric arc furnace for steelmaking. The production process includes calcination, batching, kneading, forming, roasting, graphitization and machining. The raw materials of nipple are needle coke and high-quality petroleum coke, and the production process includes one impregnation and two roasting.
Hexi Carbon is a manufacturing company that produces, sells, exports and provides graphite electrodes for wide application.
Our ordinary power graphite electrode is mainly used for electric arc furnace steelmaking. Our price is fair and competitive. Our company promises free consultation and installation, free after-sales tracking and unconditional return of quality problems.
The standard of regular power graphite electrode and nipple
RP Graphite electrode Permissible current load
Product detail pictures:
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Assume full responsibility to meet all demands of our clients; achieve continuous advancements by promoting the growth of our clients; become the final permanent cooperative partner of clients and maximize the interests of clients for High Quality Rp Ordinary Power Graphite Electrode - Regular power Graphite electrode – Hexi, The product will supply to all over the world, such as: Guinea, Sudan, Bogota, Our solutions are produced with the best raw materials. Every moment, we constantly improve the production programme. In order to ensure better quality and service, we now have been focusing on the production process. We have got high praise by partner. We are looking forward to establishing business relationship with you.
By Zoe from Madagascar - 2018.06.18 19:26
We are really happy to find such a manufacturer that ensuring product quality at the same time the price is very cheap.
By April from Japan - 2017.03.07 13:42