Titanium Diboride

Conductive, Ultra‑Hard Ceramic for Extreme Service

From aluminum smelting lines operating in molten metal to conductive wear parts in harsh industrial settings, product components face severe heat, corrosion, abrasion, and electrical demands. Traditional ceramics and metals often solve one constraint while failing another.

Leeta’s titanium diboride addresses all three–hardness, conductivity, and corrosion resistance-in a single material system. Drawing on advanced ceramic processing and application–driven design, Leeta tailors TiB₂ microstructures and formats to deliver dependable performance in environments where failure is not an option.

KEY PERFORMANCE ADVANTAGES

Ultra-High Hardness

Exceptional wear resistance in abrasive environments.

Excellent Electrical Conductivity

Enables use in electrodes and conductive wear parts.

Outstanding Corrosion Resistance

Especially resistant to attack from molten metals.

High Thermal Stability

Maintains strength and dimensional integrity at extreme temperatures.

Tailored Microstructure

Grain size, densification route, and composite/cermet architectures tuned to specific applications.

SUITABLE APPLIcATIONS

Aluminum Smelting and Molten Metal Components

Cathodes, linings, and critical parts for aluminum production and molten metal handling.

Electrical Contacts and Conductive Tooling

Wear-resistant, high-conductivity components for demanding electrical applications.

Armor and Defense Systems

Lightweight, ultra-hard materials for protective and structural defense applications.

Molten Metal Nozzles and Injection Systems

High-temperature, corrosion-resistant components for precise molten metal processing.

Cutting Tools & Wear Parts

Durable tooling for machining non-ferrous metals and abrasive composite materials.

SUITABLE APPLIcATIONS

Custom Engineer Your Next-Generation Solution

Our titanium diboride materials are engineered for unmatched performance in high-wear, high-temperature, and conductive applications. Partner with Leeta Materials to design a solution that meets exact performance targets.