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High-Quality Silica Brick for Industrial Furnaces | China Suppliers & Factory
High Silicon Content & Premium Purity
SiO₂ content ranges from 94% to 96%, with extremely low harmful impurities (Fe₂O₃ ≤1.5%). The high purity ensures excellent refractory performance and minimizes pollution to molten materials such as glass liquid.
Exceptional High-Temperature Resistance
Load softening temperature reaches 1640–1680℃, close to the melting point of tridymite and cristobalite. It can maintain structural integrity and no deformation under long-term high-temperature and high-load conditions.
Strong Acid Corrosion Resistance
As an acidic refractory material, it has strong resistance to acid slag and acidic gas erosion, and performs significantly better than clay bricks and ordinary high-alumina bricks in acidic working environments.
Stable High-Temperature Volume
After special firing process, the main mineral composition is tridymite and cristobalite. The residual expansion is small (0–0.2% at 1450℃×2h), which can make the masonry joints tight and ensure good airtightness.
Excellent Thermal Conductivity
Thermal conductivity is higher than that of clay bricks and high-alumina bricks, which is conducive to rapid heat storage and heat release of furnace equipment, improving energy utilization efficiency.
| Item | BG-94 | BG-95 | BG-96A | BG-96B |
|---|---|---|---|---|
| SiO₂ % | ≥94 | ≥95 | ≥96 | ≥96 |
| Fe₂O₃ % | ≤1.50 | ≤1.50 | ≤0.80 | ≤0.70 |
| Apparent Porosity % | ≤22 | ≤21 | ≤21 | ≤21 |
| True Density g/cm³ | ≤2.38 | ≤2.38 | ≤2.34 | ≤2.34 |
| Cold Crushing Strength MPa | ≥25 | ≥29 | ≥35 | ≥35 |
| Refractoriness Under Load ℃ (0.2MPa, 0.6%) | ≥1630 | ≥1650 | ≥1680 | ≥1680 |
◎ Silica brick is the core refractory material for modern large-scale coke ovens, which is used in key parts such as regenerator walls, slopes, carbonization chamber bottoms, furnace walls, and furnace tops. Coke ovens need to operate continuously at 950–1050℃ for dry distillation of coal. The high temperature resistance, stable volume, and good thermal conductivity of silica brick can increase the temperature of the combustion chamber, shorten the coking time, improve the production capacity of the coke oven, and extend the service life of the coke oven to more than 20 years. It is especially suitable for large coke ovens with carbonization chamber height above 6m.
◎ Silica brick is the most widely used and important brick type in float glass furnaces, mainly used in the melting section, working section roof swan, breast wall, front and rear end walls, regenerator top swan, and regenerator upper partition wall. The glass furnace gas temperature can reach above 1615℃, and the silica brick can withstand gravity, mechanical stress and high temperature load. It has slight erosion after absorbing a small amount of alkali components, which will not reduce the structural strength of the furnace top. At the same time, its low impurity content (Fe₂O₃ ≤0.8%) can avoid polluting the glass liquid and ensure the quality of glass products.
◎ Silica brick is used for masonry of high-temperature parts of blast furnace hot blast furnaces. Under the working conditions of long-term high temperature and high air pressure, it has stable volume and low creep rate, and can be used continuously for 1–2 blast furnace generations. Its excellent thermal conductivity is conducive to rapid heat storage and heat release, improving the temperature of hot air and the thermal efficiency of the blast furnace. It is suitable for the high-temperature bearing parts of hot blast furnaces and acidic blast furnace tops.
We provide customized services for different furnace types and working conditions to meet the personalized needs of customers. With professional R&D team and after-sales service system, we are committed to providing customers with high-quality silica brick products and comprehensive technical support.
Contact us now for a quote and experience the difference of working with the best in the business.
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What is the SiO₂ content range of your silica bricks, and why does it matter?Our silica bricks contain 94%–96% SiO₂, depending on the grade (BG-94, BG-95, BG-96A, BG-96B). Higher SiO₂ content directly translates to better refractory performance, lower contamination risk to molten materials such as glass liquid, and improved resistance to acidic slag and gases.
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What is the maximum service temperature of your silica bricks?The refractoriness under load (0.2 MPa, 0.6% deformation) reaches up to 1680℃ for BG-96A and BG-96B grades. The load softening temperature ranges from 1640℃ to 1680℃, making them suitable for the most demanding high-temperature furnace environments, including glass furnaces operating above 1615℃.
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Which industries and furnace types are silica bricks most suitable for?Silica bricks are widely used in coke ovens (regenerator walls, carbonization chambers), float glass furnaces (melting section, breast walls, regenerator partitions), and hot blast furnaces (high-temperature load-bearing sections). They are also applicable in steel, chemical, and ceramic industries wherever acidic refractory performance is required.
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How does silica brick compare to clay bricks or high-alumina bricks in performance?Silica brick offers superior acid corrosion resistance, higher thermal conductivity, and more stable volume at high temperatures compared to clay bricks and ordinary high-alumina bricks. In acidic working environments and furnaces requiring tight joint airtightness, silica brick consistently outperforms both alternatives.
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Do you offer customized silica brick products for special furnace requirements?Yes. We provide full customization services tailored to different furnace types, working conditions, and dimensional requirements. Our professional R&D team works closely with clients to develop solutions that meet specific temperature, load, and chemical resistance demands, backed by a comprehensive after-sales technical support system.
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What quality certifications or testing standards do your silica bricks comply with?Our silica bricks are manufactured and tested in accordance with international refractory standards, covering key parameters including SiO₂ purity, Fe₂O₃ content, apparent porosity, true density, cold crushing strength, and refractoriness under load. All products undergo rigorous quality inspection before shipment to ensure consistent performance and reliability in demanding industrial applications.








