SENs can prevent molten water from re-oxidation,they are divided into internal installed type and external installed type according to the difference of the structure.
Sub-entry Nozzles for Bloom&Round Billet Caster
SENs can prevent molten water from re-oxidation,they are divided into internal installed type and external installed type according to the difference of the structure.
Basic Info
| Items | Body | Slag Line | |
| Chemcal Composition(%) | Al2O3 | ≥45 | |
| C+SiC | ≥25 | ≥15 | |
| ZrO2 | --- | ≥75 | |
| Bulk Density (g/cm³ ) | ≥2.45 | ≥3.6 | |
| Apparent Porosity(%) | ≤18 | ≤18 | |
| Cold Crushing Strength(MPa) | ≥20 | ≥20 | |
| Modulus of Rupture-Room Temp(MPa) | ≥7 | ≥7 | |
| Thermal Shock Resistance (sequence) | ≥5 | ≥5 | |
Core Highlights
1.The flange adopts compound materials,better anti-corrosion property,and also easy for flow control.
2.The body adopts Al-C materials with perfect anti-thermal shock property.
3.Al-Zr-C compound materials has perfect anti-slag property.
4.It adopts anti-corrosion inner layer,decreases the expanding speed of the inner hole of the nozzles,increases the service life.
5.Insulating fiber keeps the temperature effectively and prevents molten water from condensation.
FAQ
Q: Slow Heat Conduction
A: 1. Not preheating according to the standard procedure.
2. Slag influences heat conduction.
3. The crucible has reached its service life.
Q: Crucibe corrosion
A: 1. Adding flux before metal is molten or excessive use of flux.
2. Certain fluxes contain corrosion substances.
3. Fuel containing corrosive substance.
4. Abnormal high-temperature operation may result in glaze layer smelting resembling corrosion.
Q: Top problems
A: 1. Repeatedly top impacted on top area cause oxidation.
2.Slags accumulated arround the top area or between the top area and the furnace cover.
3.Small gape between the top and the furnace cover. 4. Low temperature on top area.
5. Contacting with some matels with lager heat exchanging coefficients.
6. Excentral installation cause not enough space between the top and furnace.
Q: Excessive oxidation
A: 1. Flame in furnace against the bottom of the crucible directly.
2. Low temperature in the top area. 3.Overheated working temperature.
4. Hoisting or moving improperly damages glaze layer.
5. The emergent drain hole is open.
Q: Explosion
A: 1.Heating rapidly while the crucible has damped during transportation or storage.
2. Over rapid heating-up during preheating procedure.
3. The added materials are not completely dried.
Q: Middle or bottom craks
A: 1.Impacted during transportation or installation.
2. Crucible should be placed in the middle of the furnace stack smoothly and stably.
3. An improper graphite stand is used.
4. The existence of great thermal difference in the furnace.
5.Matel ingots in the crucible filled horizontally or diagonally.Metal materials overfilled.
6. Leftover slag or molten matal in the crucible.
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