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Radiac Resin Bond Silicon-Carbide/Aluminum Oxide Centerless Wheel

for through-feed centerless grinding

Highlights

  • Balanced Blend for Mixed Materials Combines silicon carbide sharpness with aluminum oxide toughness for broader application coverage in one wheel family.
  • Cooler Cutting, Reduced Loading Silicon carbide improves bite and chip formation, helping reduce heat and loading—especially on non-ferrous and cast iron parts.
  • Resin Bond Durability in Production Grinding Resin bond absorbs shock and handles demanding through-feed conditions with stable wear and reliable performance.

Suitable for:

HSS
HSS
Steel
Steel
Stainless steel
Stainless steel
Titanium/titanium alloys
Titanium/titanium alloys
Tungsten carbide
Tungsten carbide
TYROLIT
Product Datasheet
24/2/2026

Radiac Resin Bond Silicon-Carbide/Aluminum Oxide Centerless Wheel

for through-feed centerless grinding

+Balanced Blend for Mixed Materials Combines silicon carbide sharpness with aluminum oxide toughness for broader application coverage in one wheel family.
+Cooler Cutting, Reduced Loading Silicon carbide improves bite and chip formation, helping reduce heat and loading—especially on non-ferrous and cast iron parts.
+Resin Bond Durability in Production Grinding Resin bond absorbs shock and handles demanding through-feed conditions with stable wear and reliable performance.
Suitable for:
HSS
Steel
Stainless steel
Titanium/titanium alloys
Tungsten carbide

Description

Resin bond silicon carbide/aluminum oxide blend centerless grinding wheels are engineered for through-feed centerless applications where productivity, thermal control, and versatility are critical. By combining the sharp, free-cutting action of silicon carbide with the toughness and durability of aluminum oxide, these blended wheels provide a balanced grinding solution for operations running a variety of steels, cast irons, and non-ferrous materials. The resin bond system offers excellent shock resistance and controlled wear, making these wheels well-suited for demanding production environments where intermittent contact, part variation, or surface scale can challenge vitrified wheels. The result is a centerless wheel that cuts cooler, resists loading, and maintains consistent performance—helping improve throughput, reduce burn risk, and lower total cost per part in continuous through-feed grinding.

Features

+Silicon Carbide / Aluminum Oxide Blended Grain System: This hybrid grain formulation delivers a unique balance: silicon carbide contributes sharpness and free cutting, while aluminum oxide supports durability and sustained performance on steels and ferrous alloys.
+Resin Bond for Toughness and Shock Resistance: Resin bond construction provides excellent resistance to mechanical shock and helps maintain wheel integrity in high-throughput environments where parts may have interrupted contact, scale, or slight dimensional variation.
+Cool Grinding Characteristics: The blend promotes efficient chip formation and reduced friction, lowering grinding temperatures and helping prevent thermal damage, discoloration, or part burn in continuous grinding.
+Reduced Tendency to Load: Silicon carbide improves cutting behavior on gummy materials and non-ferrous metals, helping the wheel stay open and productive with less glazing.
+Tunable Performance for Through-Feed Production: Wheel specification variables (grain ratio, grade, structure, and grit size) can be optimized to prioritize finish, cut rate, or wheel life depending on the part and stock removal requirements.

Applications

+Through-feed grinding of mixed ferrous parts (mild steel and alloy steel pins, shafts, and dowels) where cooler cutting is needed.
+Centerless grinding of cast iron components such as spacers, sleeves, and bushings requiring stable stock removal and finish.
+Through-feed grinding of non-ferrous parts (aluminum, brass, bronze) where reduced loading and clean cutting are essential.
Tyrolit AG
Subject to technical changes24/2/2026
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Product information

Silicon Carbide / Aluminum Oxide Blended Grain System

This hybrid grain formulation delivers a unique balance: silicon carbide contributes sharpness and free cutting, while aluminum oxide supports durability and sustained performance on steels and ferrous alloys.

Resin Bond for Toughness and Shock Resistance

Resin bond construction provides excellent resistance to mechanical shock and helps maintain wheel integrity in high-throughput environments where parts may have interrupted contact, scale, or slight dimensional variation.

Cool Grinding Characteristics

The blend promotes efficient chip formation and reduced friction, lowering grinding temperatures and helping prevent thermal damage, discoloration, or part burn in continuous grinding.

Reduced Tendency to Load

Silicon carbide improves cutting behavior on gummy materials and non-ferrous metals, helping the wheel stay open and productive with less glazing.

Tunable Performance for Through-Feed Production

Wheel specification variables (grain ratio, grade, structure, and grit size) can be optimized to prioritize finish, cut rate, or wheel life depending on the part and stock removal requirements.