Grade EU 10

Mixed branded rods imported from Europe & USA. Best known for Solid, 1/2/3 hole rods.

Grade CH 10

10% Cobalt recycled & virgin raw powder mixture. Best recycled 10% cobalt rods in the market.

Grade MU 10

10% Cobalt rods imported from China, made with the Purest virgin powder available.

Grade MU 12

12% Cobalt grade imported from China giving flexibility for manufacturing special applications.

Solid Carbide Rods

Premium quality solid carbide rods designed for high hardness and wear-resistant tools.

Coolant Hole Rods

Rods featuring helical or straight coolant holes (1, 2, or 3 holes) for optimal heat dispersion.

Custom Cut Pieces

On-site precision cutting services to supply carbide rods cut to exact customer lengths.

Technical Grade Advice

Expert selection guidance on cobalt concentration and geometry to match end-user applications.

EU 10 (High Trust)

Mixed branded rods imported from Europe & USA. Most trusted & purchased grade.

CH 10 (Recycled/Virgin)

Recycled & virgin powder mixture with 10% Cobalt. Sourced from largest factories.

MU 10 (Purest Virgin)

10% Cobalt rods imported from China, made with the purest virgin powder.

MU 12 (Special Tooling)

12% Cobalt grade imported from China giving flexibility for special applications.

Our Features

Designed for engineering workshops seeking premium raw carbide materials

Solid & Coolant Hole Configurations

Rods available in Solid, 1-hole, 2-hole, and 3-hole configurations for advanced tooling coolant delivery.

High Transverse Rupture Strength

TRS parameters up to 4000 N/mm² ensuring excellent fracture toughness and robust tool life.

Strict Quality Testing

Density verification (up to 14.40 g/cm³) and grain size controls (down to 0.6 µm) checked batch-by-batch.

Custom Cut Geometry

On-site precision cutting allows us to supply exact rod lengths, eliminating machining waste.

Application Areas

Providing grades optimized for diverse machining applications

Our Tungsten Carbide Rods are engineered to machine a wide range of materials efficiently, maintaining sharp edge retention and high thermal stability.

Common Steel (EU 10)

Highly recommended up to 55 HRC. Ideal for general milling of common steel and cast iron.

Stainless Steel (MU 10)

Optimal for machining stainless steels, heat-resistant steels, and nickel-base alloys.

Titanium & Superalloys

Sub-micron grain size provides thermal shock resistance required for machining titanium alloys.

Aluminium Alloys

Specialized cobalt binders (e.g., MU 12) enable high-speed aluminium milling without sticking.

Cast Iron & Non-Ferrous

High hardness grades provide the abrasive wear-resistance required for heavy cast iron work.

Custom Tooling Projects

High flexibility in geometries and cut pieces for custom engineering and tooling shops.

Frequently Asked Questions

Technical guidance on Carbide Rod parameters

Find immediate answers regarding chemical compositions, cobalt binders, dimensions, and grade applications.

Need Technical Help?

Contact: +91 8459295165

Cobalt acts as the metal binder for the Tungsten Carbide particles. The concentration (e.g., 10% in EU 10/CH 10/MU 10, or 12% in MU 12) determines the balance between hardness and toughness; a higher cobalt percentage increases impact resistance but slightly lowers hardness.

CH 10 uses a blend of recycled and virgin powder, offering a highly economical 10% Cobalt rod. MU 10 is manufactured using the purest virgin raw powder with a sub-micron grain size (0.6 µm), designed for high-performance machining where tool integrity is critical.

Yes, we provide full on-site cutting flexibility. We can supply all grades of Tungsten Carbide Rods cut to exact customer-specified lengths to help reduce scrap and custom tool manufacturing times.

Grade MU 12 has 12% Cobalt content, a hardness of 92.5 HRA, a density of 14.10 g/cm³, and a Transverse Rupture Strength of 4000 N/mm². It is highly suitable for machining alloy steels, aluminium alloys, and cast iron.

For stainless steels and heat-resistant superalloys, we recommend Grade MU 10. Its fine grain size of 0.6 µm combined with 10% Cobalt binder provides the extreme wear resistance and thermal shock properties needed for tough alloys.

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