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Ramming Paste Carbon Electrode Paste Self Baking Electrode Paste for Furnace Linings
Product Description
Item | Electrode Paste | ||
Si | <0.28% | Fe | <0.25% |
P | <0.004% | ||
Ash Content | 2-10% | Resistivity | 55-90 uΩm |
V.M | 10.0-15.0% | Density | >1.46g/cm3 |
Compression Strength | >18Mpa | Extensibility | 45463 |
Apparent Density | >1.42g/cm3 | Rupture Strength | >4.0 |
Real Density | >1.98g/cm3 | Fluidity Coefficient | 1.10-2.10 |
Carbon electrode paste is a self-baking electrode used in submerged arc furnaces for delivering power to the charge mix. Electrode Paste is added to the top of the electrode column in either cylindrical or briquette form.
The Paste is first fed in the upper part of the electrode. As the paste move downwards in the electrode it softens and melts and takes the form of the electrode casing. The flow of the Carbon Paste is essential for proper operation of the electrode, hence it is important that the Paste flows at a reasonable temperature and fills the casing of the electrode maintaining a consistent mixture of ingredients. The Paste then gets baked into a solid mass as it moves down and becomes capable of passing the required current for the furnace charge. The plasticity is a measure of its flowability which is controlled in a mixer by adjusting the Binder content or percentage of coke fines. The lower baked part of the electrode is the final electrode product. The physical properties of the Paste are of vital importance to ensure proper electrode operation without breakages.
The ash content is a strict control index of the carbon electrode paste, which directly decides the sintering quality of the electrode, and has a great influence on the conductivity, oxidation resistance and sintering density of the electrode. The ash content of electrode paste produced by our company is as low as 3%, the consumption is very low, and other indicators are also very good. It is especially suitable for large submerged arc furnace.
Application
Carbon Electrode paste is a self-baking electrode used in mineral heat furnace to produce calcium carbide, ferroalloy, yellow phosphorus and other metals or nonmetals.
EASTMATE Advantage
Tianjin Eastmate Carbon Co.,Ltd is located in Tianjin City, which is specialized in exporting varieties of cokes in China , including Graphite Electrode , petroleum coke, calcined coke, graphite petroleum coke,graphite electrode,artificial graphite anode material and so on. We stick to the "quality first" to guarantee the goods with the competitive price in different specifications, at the same time. We can also ensure the quantity you required because of our huge coke plants. Surely,we have our own specialized logistics team to reduce the cost at the maximum. With the strong technological team, we can always provide the reliable service to make your purchasing be much more easier. We can provide solutions to any industry where energy is of essence and cost optimization is possible.
Our company has five major production bases, including Lanzhou in Gansu, Linyi in Shandong, Binhai in Tianjin, Ulanqab in Inner Mongolia, and Binzhou in Shandong. The annual output is 200,000 tons of calcined coke, 150,000 tons of graphitized carburizer, and 20,000 tons of silicon carbide,80,000 of artificial graphite anode material,80,000 carbon & graphite electrode,50,000 of carbon electrode paste,and other carbon products including carbon electrode paste ,graphite crucible
FAQ
1. Your specification is not very suitable for us.
Please offer us specific indicators by TM or email. we will give you feedback as soon as possible.
2.When can i get the price?
We usually quote within 24 hours after getting your detailed requirements, like size, quantity etc.
If it is an urgent order, you can call us directly.
3. Do you provide samples?
Yes, samples are available for you to check our quality.
Samples delivery time will be about 3-10 days.
4. What about the lead time for mass product?
The lead time is based on the quantity,about 7-15 days. For graphite product, apply dual-use items license need about 15-20 working days.