Norton
Norton® 66252911717 3SGP Straight Toolroom Wheel, 7 in Dia x 1/2 in THK, 1-1/4 in Center Hole, 46 Grit, Ceramic Alumina/Friable Aluminum Oxide Abrasive
66252911717
MFG #: 66252911717
$193.64
/ EA
Non-Stock Item
- Abrasive Material: Ceramic Alumina/Friable Aluminum Oxide
- Applicable Materials: 400 Series Stainless, Hard Carbon Steel, Tool Steel, Titanium, Super Alloy, Cast Iron, Ductile Iron and Gray Iron
- Bond Type: Vitrified
- Center Hole Size: 1-1/4 in
- Country of Origin: US
- Grade: Medium
- Grit: 46
- Manufacturer Name: Saint-Gobain
- Maximum Speed: 3600 rpm
- Request For Quote: No
- Series: 3SGP
- Type: Straight
- Wheel Diameter: 7 in
- Wheel Hardness: G
- Wheel Thickness: 1/2 in
- Wheel Type Number: Type 1
Work efficiently with the SG 3SGP CA Type 01 toolroom wheel, which has a self-sharpening abrasive to minimize burn and dressing and ensure a long wheel life. Made from a blend of ceramic alumina and friable aluminum oxide, this abrasive blend lasts three to five times longer than standard aluminum oxide wheels. A porous vitrified bond pairs with the abrasive for fast stock removal and precise cutting, ideal for grinding heat sensitive materials, as well as tough to grind steels with a very high tensile strength or hardness.
- Item Features
- Application
- Exceptionally high performance ceramic alumina and friable aluminum oxide abrasive blend for fast stock removal, cool, superior cutting 3 to 5 times more life than aluminum oxide wheels
- Proven porous vitrified bond, especially recommended for toolroom and surface grinding on medium to wide areas of contact and heat sensitive materials
- Self-sharpening abrasive minimizes burn and dressing, to maximize sharp edge on tools and dies for longer life in production
- Recommended for narrow area of contact, high grinding forces and very difficult to grind steels that have a very high hardness or tensile strength
- Best choice for high productivity, low total per part grinding cost
Stock Removal, Surface Grinding, Tool Sharpening, Tool and Cutter Grinding