HT
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🔥 High Temperature

Teradur Tech™
HT

High Temperature Wear Overlay

"Maintains hardness and resists oxidation where standard overlays soften and fail."

Key Specifications
Hardness
60–65 HRC
Surface HRC
Carbide %
>50%
Volume fraction
Min Thickness
6mm (3+3)
Base + overlay
Product Overview

What is Teradur Tech™ HT?

Teradur Tech™ HT is our high temperature overlay, engineered for applications where abrasion occurs simultaneously with elevated temperatures — conditions that cause standard chromium carbide overlays to rapidly soften, oxidise, and lose their wear resistance.

The HT formulation incorporates vanadium (1–2%), tungsten (1–3%), molybdenum (1–2%), and niobium (1–3%) — a combination that stabilises the carbide microstructure at elevated temperatures and forms a protective oxide layer that resists scaling. These additions maintain overlay hardness at temperatures where standard grades would be ineffective.

Teradur Tech™ HT is the specified solution for sinter plants, hot ore handling, clinker conveying, and any other application where material temperatures regularly exceed 300°C.

Ideal For
High temperature abrasion Hot ore and clinker handling Sinter plant equipment Elevated temperature conveying Oxidising environments Hot material chutes Kiln inlet components Heat-exposed wear surfaces
Availability
Thickness from 6mm (3+3) to custom maximum
Available in standard and custom plate sizes
Rated for continuous elevated temperature service
Consult technical team for specific temperature range requirements
Technical Specifications

Full Chemistry & Properties.

All values represent the controlled range achieved through our advanced manufacturing process. Actual batch reports available on request.

Element / PropertySymbolRange / ValueRole in Performance
Carbide Volume Fraction >50% High-density wear-resistant phase network
Carbon C 4–5% Carbide formation and matrix hardness
Chromium Cr 20–25% Chromium carbide matrix base and oxidation resistance
Molybdenum Mo 1–2% High temperature carbide stability
Niobium Nb 1–3% Refractory carbide formation, temperature resistance
Vanadium V 1–2% Fine carbide formation, hot hardness retention
Tungsten W 1–3% Refractory hard phase, elevated temperature performance
Surface Hardness HRC 60–65 HRC As-deposited overlay surface hardness
The Science

How It Protects.

01
Refractory Alloy Additions

Vanadium, tungsten, molybdenum, and niobium are all refractory elements — metals that retain their properties at high temperatures. Their carbides remain stable and hard at temperatures that would cause standard chromium carbides to dissolve into the matrix.

02
Oxidation Resistance

The combined effect of elevated chromium and the refractory alloy additions creates a surface that forms a stable, adherent oxide layer at high temperatures — preventing the scaling and material loss that shortens the life of standard overlays in hot environments.

03
Hot Hardness Retention

Unlike standard grades that soften progressively above 300°C, the HT chemistry maintains overlay hardness through the temperature range typically encountered in sinter plants, clinker handling, and hot ore conveying.

Where It's Used

Industries & Applications.

🏗
Steel & Iron
Sinter crusher liners, hot ore transfer chutes, sinter cooler components, and pellet plant equipment operating at elevated temperatures
🏭
Cement
Clinker crusher liners, clinker conveyor chutes, kiln inlet components, and hot meal handling equipment in rotary kiln cement plants
Power Generation
Bottom ash handling equipment, hot clinker conveyors, and high-temperature zones in thermal power plant material handling systems
🔥
General High Temperature
Any application where bulk material temperatures exceed 300°C and simultaneous abrasion requires a wear-resistant surface
Next Step

Is Teradur Tech™ HT Right for Your Application?

High temperature wear requires a precise solution. Our team will assess your operating temperature range and abrasive conditions to specify the correct grade and thickness.