Product Description

High-purity, precision-cast steel billets designed for superior rolling performance and uniform material properties.

Ashok Steel billets are produced using a fully integrated manufacturing process that ensures exceptional purity, consistent composition, and high structural integrity. Each billet is created through continuous casting technology, resulting in a uniform internal structure and stable mechanical properties. Our billets form the foundation of high-quality TMT bars and other steel products, making them a preferred choice for rolling mills, engineering industries, and large-scale infrastructure manufacturers across Nepal.

Key Features of Billets

High Structural Integrity

Uniform internal grain structure ensures stable and predictable performance.

Reliable for Large-Scale Production

Stable material properties allow consistent results in rolling mills and fabrication setups.

Superior Purity

Produced from refined molten steel to minimize impurities and defects.

Continuous Casting Quality

Smooth, defect-free billets ideal for high-quality downstream products.

Excellent Machinability

Consistent composition makes billets suitable for cutting, rolling, and shaping.

Uniform Chemical Composition

Strict spectrometer testing ensures accurate alloy balance in every batch.

Mechanical Properties

PropertyValue
Tensile Strength410–450 N/mm²
Yield Strength250–300 N/mm²
Elongation23–25% (approx.)
Density7.85 g/cm³
Hardness110–150 BHN

 

Chemical Composition

ElementTypical Percentage
Carbon (C)0.15–0.25%
Manganese (Mn)0.50–1.20%
Silicon (Si)0.10–0.30%
Sulphur (S)≤0.040%
Phosphorus (P)≤0.040%
Carbon Equivalent (CE)Within limits for improved workability

Billets

Grade

or “Custom Grades Available” if needed

Sizes Available

100×100 mm, 125×125 mm, 150×150 mm

Applications

TMT Bar Production, Structural Steel Rolling, Mechanical Components, Engineering Products, General Fabrication

Build Stronger With Ashok TMT

Reliable reinforcement steel for every project — from homes to large infrastructure.