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SiO2 Siliceous Flow Guiding Sand Refractories For Steel Making Molten Steel Erosion Resistance

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SiO2 Siliceous Flow Guiding Sand Refractories For Steel Making Molten Steel Erosion Resistance

SiO2 Siliceous Flow Guiding Sand Refractories For Steel Making Molten Steel Erosion Resistance
SiO2 Siliceous Flow Guiding Sand Refractories For Steel Making Molten Steel Erosion Resistance

Large Image :  SiO2 Siliceous Flow Guiding Sand Refractories For Steel Making Molten Steel Erosion Resistance

Product Details:

Place of Origin: Henan China
Brand Name: Jundao(Henan)
Certification: ISO9001:2015 ISO14001:2015
Model Number: Flow guiding sand

Payment & Shipping Terms:

Minimum Order Quantity: 20t
Price: Negotiate
Packaging Details: Ton bag with rain film and 25kg small bags inside or as customers' requirements
Payment Terms: L/C, T/T
Supply Ability: 3000Ton/mon
Detailed Product Description
SiO2(%): ≥90 C(%): 1-3
Bulk Density (g/cm3): 1.0-1.2 Water Content (%): ≤2
Feature: Good Fluidity Application: Ladle
High Light:

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high alumina refractory

SiO2 Siliceous Flow guiding sand Good fluidity refractory for Ladle

 

The flow guiding sand is divided into various series of products such as chrome, zirconium and siliceous, and the products suitable for production are selected according to the different conditions of each steel plant.

Flow guiding sand is a kind of bulk refractory material filled in the ladle block brick and the upper nozzle. It has good fluidity, chemical stability, moderate grain size, good compaction and high temperature performance, and its quality greatly restricts the level of automatic pouring rate of ladle.

Advantages of siliceous flow guiding sand for ladle:

1. It has the advantages of good fluidity, large specific gravity and fast speed.

2. Strong resistance to molten steel erosion.

3. High refractoriness, easy to produce mild sintering with molten steel, without blocked.

Notice:

(1) The flow guiding sand is in a high temperature state for a long time in the ladle nozzle, so the sintered layer is required to have high refractoriness.

(2) After the flow guiding sand is filled into the nozzle, it is directly in contact with the molten steel, and the initial sintering temperature should not be too high to avoid the accident caused by the floating of flow guiding sand when adding molten steel.

(3) During the use process, the flow guiding sand is subjected to a large static pressure of molten steel. In order to prevent the material from

being stretched, the flow guiding sand is required to have very good fluidity, and the friction between the particles is as small as possible.

(4) At high temperature, the flow guiding sand should be prevented from falling automatically or unable to effectively support the upper material during the process of use.

(5) In the high temperature and long-term smelting state, the liquid surface can not be sintered too thick in order to achieve automatic pouring, improve production efficiency, reduce molten steel pollution, reduce flue gas consumption and improve production safety factor.

Flow guiding sand JD-YLS-1 JD-YLS-2
Composition (%) ≥ SiO2 90 35-40
Cr2O3 / 13-30
C 1-3 1-3
Bulk density (g/cm3) 1.0-1.2 ≥2.0
Water content (%) ≤ 2 2
Granularity (mm) 0.5-2.0 0.5-2.0

 

SiO2 Siliceous Flow Guiding Sand Refractories For Steel Making Molten Steel Erosion Resistance 0

 

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