
High Alumina Dimple Tiles: Durable Wear & Heat-Resistant Lining Solutions for Heavy-Duty Industries
Industrial systems exposed to high temperatures, abrasion, and mechanical impact require lining materials that can withstand extreme operating conditions. High Alumina Dimple Tiles are engineered to meet these demands, offering superior durability, excellent thermal stability, and long service life in harsh industrial environments.

What Are High Alumina Dimple Tiles?
High Alumina Dimple Tiles are refractory ceramic tiles manufactured from high-purity alumina. They feature a dimpled or indented surface on the reverse side, which improves mechanical anchoring and bonding with backing materials such as castables or mortars.
This unique design enhances adhesion strength, preventing tile displacement under thermal and mechanical stress.
Key Features of High Alumina Dimple Tiles
1. High Alumina Content
Provides excellent resistance to high temperatures, slag attack, and chemical corrosion.
2. Superior Wear & Abrasion Resistance
Ideal for applications involving material flow and mechanical impact.
3. Enhanced Bonding Strength
Dimpled design ensures strong interlocking with backing refractories.
4. Thermal Shock Resistance
Performs reliably under rapid heating and cooling cycles.
5. Long Service Life
Reduces frequency of replacement and maintenance shutdowns.
Applications of High Alumina Dimple Tiles
These tiles are widely used in:
Cement plant cyclones and ducts
Steel and metallurgical units
Power plant coal handling systems
Material transfer chutes and hoppers
Kilns and incinerators
Advantages of Using High Alumina Dimple Tiles
1. Improved Lining Stability
Prevents tile loosening and premature failure.
2. High-Temperature Performance
Maintains structural integrity under extreme heat.
3. Cost-Effective in the Long Term
Reduced maintenance and downtime lower overall operating costs.
4. Versatile Installation
Can be installed with castables, mortars, or adhesives.
5. Reliable Protection
Protects equipment from abrasion, erosion, and thermal damage.
Installation & Selection Guidelines
For optimal performance:
Select appropriate alumina content
Ensure proper backing and anchoring
Maintain correct tile alignment
Follow recommended curing and drying practices
Proper installation is critical to maximize service life.
Why Choose High Alumina Dimple Tiles?
High Alumina Dimple Tiles offer a perfect balance of strength, heat resistance, and bonding reliability. Their proven performance makes them an ideal choice for industries seeking durable and efficient lining solutions in severe operating conditions.
Conclusion
High Alumina Dimple Tiles are a trusted refractory lining solution for heavy-duty industrial applications. Their enhanced bonding design, superior wear resistance, and thermal stability ensure long-lasting protection and improved operational reliability. Contact Us Now!
Frequently Asked Questions (FAQs)
What are High Alumina Dimple Tiles?
High Alumina Dimple Tiles are refractory ceramic tiles made from high-purity alumina. They feature a dimpled back surface that enhances bonding strength with castables or mortars, ensuring stable and long-lasting linings.
What is the alumina content of these tiles?
High Alumina Dimple Tiles typically have alumina content ranging from 85% to 95%, depending on application requirements.
Where are High Alumina Dimple Tiles commonly used?
They are widely used in:
Cement plant cyclones and ducts
Steel and metallurgical furnaces
Power plant coal handling systems
Material transfer chutes and hoppers
Incinerators and kilns
Why do these tiles have a dimpled design?
The dimpled surface improves mechanical interlocking and bonding strength, preventing tile detachment under thermal and mechanical stress.
Can High Alumina Dimple Tiles withstand high temperatures?
Yes. They are designed to perform reliably in high-temperature environments and maintain structural integrity under extreme heat.
Are High Alumina Dimple Tiles resistant to abrasion and wear?
Absolutely. Their high alumina content provides excellent resistance to abrasion, erosion, and mechanical impact.
.png)



