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High-Quality Magnesia Bricks from China Suppliers - Durable Heat Resistant & Corrosion-Proof Factory Products
Superior Heat Resistance
With a refractoriness under load (RUL) of ≥1700℃ and low thermal conductivity, it effectively retains heat, reduces energy consumption, and maintains structural integrity even in long-term high-temperature operations.
Strong Corrosion Resistance
High magnesia content (≥92%) enables excellent resistance to alkaline slags, molten metals, and chemical reagents, minimizing wear and extending service life in aggressive industrial environments.
Exceptional Mechanical Strength
Dense structure and high compressive strength (≥25MPa) prevent cracking and spalling caused by thermal shock, ensuring stable performance during temperature fluctuations.
Eco-Friendly & Compliant
Produced with low-pollution processes, free of harmful substances, and compliant with ISO 9001 standards, meeting global environmental and quality requirements.
Customizable Specifications
We offer tailored sizes, shapes, and magnesia content to fit specific furnace designs and industrial needs, providing personalized refractory solutions.
| Item | Magnesia Bricks | ||||||
| DMZ-98A | DMZ-98B | DMZ-97A | DMZ-97B | DMZ-96 | DMZ-95 | DMZ-92 | |
| MgO % | 97.5 | 97.3 | 97 | 96.5 | 96 | 95 | 92 |
| CaO% | 1.3 | 1.6 | 1.5 | 1.8 | 1.8 | 2.0 | 2.5 |
| SiO₂ % | 0.7 | 0.8 | 0.8 | 1.0 | 2.0 | 2.4 | 3.0 |
| Bulk Density (g/cm³) | 3.05 | 3.03 | 3.0 | 2.98 | 2.98 | 2.95 | 2.92 |
| Apparent Porosity (%) | 14.5 | 16 | 15 | 15.50 | 15.50 | 16 | 17 |
| Cold Crushing Strength (MPa) | 95 | 95 | 95 | 95 | 90 | 90 | 90 |
| Refractoriness Under Load ℃ (0.2MPa, 0.6%) | 1700 | 1700 | 1700 | 1700 | 1680 | 1620 | 1540 |
| Thermal Shock Stability (950℃ cooling) times | 10 | 10 | 10 | 10 | 10 | 10 | 10 |
1 Glass Industry
◎ Our magnesia bricks are widely applied in glass furnace regenerators and melting furnaces, with targeted performance for harsh working conditions. In regenerators, high-purity magnesia bricks (MgO ≥ 97%) are used for upper checker bricks and upper walls, while medium-grade ones (MgO 95%-96%) fit the middle and lower checker bricks (800-1000℃ area). They excel in heat storage and transfer at 1100-1300℃, boosting furnace thermal efficiency. With low apparent porosity and strong corrosion resistance, they resist alkali metal oxides, sulfides, and soot erosion, avoiding loose intercrystalline structure caused by low-melting substances. Also suitable for regenerator flues and breast walls, and melting furnace crowns/walls, adapting to float glass and bottle glass furnaces, ensuring stable glass quality and long service life.
2 Cement Industry
◎ Applied in the burning zone and transition zone of rotary kilns for cement production. Withstands high temperatures and erosion from cement clinker and alkaline dust, reducing lining replacement frequency and improving production efficiency. Ideal for large-scale cement plants pursuing continuous operation.
3 Steel Industry
◎ Widely used in the lining of steelmaking furnaces, including electric arc furnaces, basic oxygen furnaces (BOF), and ladles. It resists erosion from molten steel and alkaline slags, ensuring the furnace lining's long service life and stable steel quality. Suitable for slag lines, tapping mouths, and other key parts with high wear and corrosion.
4 Non-Ferrous Metallurgy Industry
◎ Suitable for the lining of furnaces used in copper, aluminum, and zinc smelting. Withstands erosion from molten non-ferrous metals and acidic/alkaline slags, ensuring stable smelting processes and reducing production losses. Applied in blast furnaces, reverberatory furnaces, and electrolytic cells.
5 Other High-Temperature Industries
◎ Also used in waste incinerators, petroleum coke calcination furnaces, and ceramic kilns. Its excellent heat resistance and corrosion resistance make it adaptable to various harsh high-temperature environments, providing reliable refractory protection for industrial production.
Contact us now for a quote and experience the difference of working with the best in the business.
Q What is the maximum operating temperature for Magnesia Bricks?
Our high-purity Magnesia Bricks (DMZ-98A/98B series) feature a refractoriness under load (RUL) of ≥1700℃ at 0.2MPa, making them suitable for the most demanding high-temperature industrial applications including glass furnaces, steelmaking furnaces, and cement rotary kilns.
Q What MgO content levels are available, and how does it affect performance?
We offer Magnesia Bricks ranging from MgO 92% to 97.5%. Higher MgO content (≥97%) provides superior heat resistance, better corrosion resistance to alkaline slags, and higher refractoriness under load — ideal for the most critical zones. Medium-grade (95%-96%) bricks suit areas with moderate thermal and chemical demands, offering a cost-effective solution.
Q Can Magnesia Bricks be customized to specific sizes and shapes?
Yes. We provide fully customizable specifications including sizes, shapes, and MgO content to match your specific furnace design and operational requirements. Our engineering team works closely with clients to deliver tailored refractory solutions for unique industrial needs.
Q Are your Magnesia Bricks compliant with international quality and environmental standards?
Yes. Our Magnesia Bricks are manufactured using low-pollution processes and are free of harmful substances. They are fully compliant with ISO 9001 quality management standards, ensuring they meet global environmental and quality requirements for industrial use.
Q Which industries are Magnesia Bricks most suitable for?
Magnesia Bricks are widely used across multiple high-temperature industries including the glass industry (regenerators, melting furnaces), cement industry (rotary kiln burning zones), steel industry (electric arc furnaces, BOF, ladles), non-ferrous metallurgy (copper, aluminum, zinc smelting), as well as waste incinerators, petroleum coke calcination furnaces, and ceramic kilns.
Q How does the thermal shock stability of Magnesia Bricks affect their service life?
All grades of our Magnesia Bricks achieve a thermal shock stability of ≥10 times (tested at 950℃ water cooling cycle). Combined with a high cold crushing strength of ≥90MPa and a dense microstructure, they effectively resist cracking and spalling during rapid temperature fluctuations, significantly extending furnace lining service life and reducing maintenance downtime.








