HI-CARB DC Foundry Wheel

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The CUMI HI-CARB DC Foundry Wheel is engineered for high-performance grinding in foundry and forging environments. Designed specifically for ductile iron and cast iron applications, this wheel delivers consistent material removal with reduced effort and extended service life. Its robust construction ensures safe, stable grinding even under demanding industrial conditions.
Key Specifications
Dia 180, 230
Thickness 5.3, 5.5, 7, 7.1, 7.15
Bore 16, 22.23 mm
Brand: Hicarb

Information Material:

Additional Details

MoS 80
Primary Pack (QTY) 0
Shelf Life 2 Years from the Date of Manufacture
Product Colour Brown

Product Information

Benefits
- High grinding performance in Di/CI
Features
- Comfortable grinding wheel with minimum Effort
Advantages
- Sturdy design extended better saftey
- Extended service life reduces total cost per component

Product Uses

Materials
Machines
Product Description

The HI-CARB DC Foundry Wheel is a heavy-duty depressed centre grinding wheel engineered for demanding foundry and metal grinding applications. Designed with premium silicon carbide abrasive grains and a robust bond structure, this wheel delivers aggressive stock removal on cast iron and ductile iron components.

Its optimized grinding composition enables faster material removal while maintaining operator comfort and control during extended grinding operations. The wheel’s sturdy construction enhances stability and safety, making it suitable for industrial environments where consistent grinding performance is essential.

Widely used in foundries, forging units, and steel processing industries, the HI-CARB DC Foundry Wheel is ideal for grinding cast iron surfaces, removing excess material, and preparing components for further machining or finishing operations. With its long service life and efficient grinding capability, this wheel helps reduce operational downtime and overall grinding costs in high-volume industrial applications.

Feature, Benefit, and Advantage 

High-performance DC grinding wheel designed for foundry applications—Delivers efficient grinding on cast iron and ductile iron—Ensures faster stock removal with a consistent surface finish.
Premium abrasive formulation optimized for DI/CI—Provides smooth grinding with minimal operator effort—Improves productivity while reducing fatigue.
Sturdy wheel construction with enhanced bond strength—maintains wheel stability during high-load grinding and enhances safety and operational confidence.
Extended service life design – Reduces frequency of wheel changeovers – Lowers total grinding cost per component.





FAQs
01.
What is the HI-CARB DC Foundry Wheel used for? The HI-CARB DC Foundry Wheel is used for heavy-duty cutting and grinding operations in foundry environments, particularly for removing excess metal, cutting cast components, and preparing metal surfaces after casting.
02.
Where can the HI-CARB DC Foundry Wheel be applied? It is primarily used in foundries, metal casting plants, and steel processing units where aggressive cutting and grinding of cast iron and heavy metal parts are required.
03.
Who should use the HI-CARB DC Foundry Wheel? Foundry workers, metal fabrication professionals, and industrial maintenance teams handling cast metal components can use this wheel for efficient material removal and finishing operations.
04.
Why is a foundry-specific DC wheel required? Foundry wheels are designed to withstand high pressure, heat, and heavy grinding loads. The HI-CARB DC Foundry Wheel provides durability, stable performance, and longer wheel life under demanding foundry conditions.
05.
When should the HI-CARB DC Foundry Wheel be selected instead of a standard cutting wheel? It should be selected when working with cast iron, heavy castings, or rough metal surfaces where standard cutting wheels may wear out quickly.
06.
How does the HI-CARB DC Foundry Wheel improve productivity in foundry operations? Its high-strength abrasive composition and durable bond system allow faster material removal and longer wheel life, reducing frequent wheel changes and improving operational efficiency.

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