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Use these wheels for light grinding, deburring, and sharpening.
Designed to stand up to heavy use, these wheels remove more material than our general purpose grinding wheels.
The perforated honeycomb pattern cuts carbide, ceramics, and glass without the need for cleaning.
The silicon carbide abrasive in these wheels is suspended in rubber for a cushioned grind with light material removal.
Use these wheels for precision grinding on surface, cylindrical, and tool and cutter grinders. They are also known as Type 1 wheels and straight wheels.
A more durable abrasive allows these wheels to remove more material and last longer than Norton General Purpose Grinding Wheels. They are also known as Type 1 wheels and straight wheels.
The special shapes of these wheels provide more clearance than typical straight wheels.
Unlike aluminum oxide wheels, these silicon carbide wheels won’t clog when grinding soft metals.
The porous bond leaves more space between abrasive grains so heavy amounts of chips and coolant easily flow through.
A nickel-coated diamond grit and synthetic resin bond make these wheels extremely hard and wear resistant.
A good value for everyday use, these wheels offer an economical balance between heavy material removal and long life. They are also known as Type 27 wheels, raised-hub wheels, and grinding discs.
Wheels are a blend of aluminum oxide and zirconia alumina, which removes more material and lasts three times as long as our General Purpose Grinding Wheels. They are also known as Type 27 wheels, raised-hub wheels, and grinding discs.
A blend of ceramic alumina and zirconia alumina removes material at a 50% faster rate than our Long-Life Grinding Wheels. Wheels are also known as Type 27 wheels, raised-hub wheels, and grinding discs.
The absence of iron, sulfur, and chlorine in these wheels means they won’t corrode or discolor stainless steel. They are also known as INOX wheels, Type 27 wheels, raised-hub wheels, and grinding discs.
Bonded without any wax or rubber filler, these wheels resist material buildup. They are also known as Type 27 wheels, raised-hub wheels, and grinding discs.
The flexible backing on these wheels conforms to curved and rough surfaces.
Heat-dissipating holes reduce material buildup and extend the life of the wheel. Wheels have a semiflexible backing that conforms to curved and rough surfaces.
A large grinding surface, combined with a thick layer of rough abrasive removes more material than other wheels. They are also known as Type 11 wheels, flared-cup wheels, snagging wheels, and cup stones.
Multiple layers of nylon mesh embedded with abrasive provide a cushioned grind. Also known as unitized discs or wheels.
The saucer shape lets you hold these wheels at shallower angles than Type 27 wheels, so they’re more comfortable to handle. They are also known as Type 28 wheels and raised-hub wheels.
A blend of cotton laminate and aluminum oxide creates a smoother surface than other grinding wheels with similar grits. Wheels are also known as Type 27 wheels and raised-hub wheels.
Wheels have a large surface area and a thick layer of rough abrasive for heavy material removal on concrete and stone. They are also known as Type 11 wheels, flared-cup wheels, snagging wheels, and cup stones.
Silicon carbide cuts through concrete and stone without generating much heat. Wheels are also known as Type 27 wheels, raised-hub wheels, and grinding discs.
Use on 7" and 9" angle grinders and sanders to remove paint, rust, and scale from hard surfaces.
Use these wheels for heavy material removal in one spot or along a weld seam. They are also known as Type 1 wheels and snagging wheels.
Wheels remove more material than other grinding wheels with cotton laminate.
A combination of cotton laminate and aluminum oxide abrasive creates a smoother surface than other grinding wheels with similar grits.
Also known as hooded dressers, these cleaners reveal new layers of sharp abrasive and deflect flying chips.
Also known as dressing sticks, these can be used to sharpen a variety of abrasive wheels.
The larger face offers better control, while multiple points provide a finer finish than single-point cleaners.
The single point on these cleaners removes more material than multiple-point cleaners.
Twist the knurled adjustment knob on these cleaners to advance the replaceable point.
A single point removes more material than cleaners with multiple points.
Furnished with multiple points, these clean faster and leave a more uniform finish than single-point cleaners.
A concentrated amount of diamond abrasive produces a finer finish than other multiple-point cleaners.
Use to clean or create rounded shapes on the wheel surface.
Mount these cleaners to the T-slot of your surface grinder or secure them to a magnetic chuck.
Mount these truing cleaners to a T-slot to reshape worn diamond and CBN grinding wheels.
Cleaners maintain a consistent speed for minimal diamond loss. Use to reshape worn diamond and CBN grinding wheels.
Made of aluminum oxide, these bits are well suited for use on most metals and materials that are not heat sensitive.
The abrasive grains in these discs are blended with rubber, which cushions during grinding to produce a smoother surface texture than other discs with similar grits. Discs attach to your grinder with a shank.
Bits thread onto mounted shanks so you can quickly switch head shapes without removing the shank. The abrasive grains are blended with rubber, which cushions during grinding to produce a smoother surface texture than other bits with similar grits.
The bits in this set have rubber blended into the abrasive, which cushions during grinding to produce a smooth to extra-smooth surface texture.
The abrasive grains in these bits are blended with rubber, which cushions during grinding to produce a smoother surface texture than other bits with similar grits.
Set contains a selection of our most popular hex-shank grinding bits. Use them in any drill chuck that accepts a 1/4" hex shank.
Use bits in any drill chuck that accepts a 1/4" hex shank.
Set contains an assortment of tools for grinding, sanding, and cutting on small surface areas.
Similar to diamond, boron nitride is harder than aluminum oxide and lasts longer. Bits are also known as jig grinding pins and mandrels.
Bits stay cool during grinding so they won’t mar or discolor stainless steel.
Each set contains a selection of our most popular grinding bits.
The small 3/32" diameter shank and small head makes these bits good for precise and intricate jobs.
The diamond abrasive in these bits is extremely hard and lasts longer than tungsten carbide. For longer tool life and improved finish, use a water- or oil-soluble mist or coolant.
Almost as hard as diamond, these tungsten carbide bits cut through nonmetals without generating heat.
Sharpen, deburr, and grind metal surfaces.
Convert your threaded grinder spindle into a 5/8"-11 size that's compatible with common grinding wheels and sanding discs.
Longer lasting than grinding bits, these abrasive cones remove heavy amounts of material and leave a rough surface texture. They have a threaded insert that attaches to the spindle on a straight grinder. Use in corners and inside castings.
With more flaps than standard discs, these last 30-40% longer.
Overlapping abrasive flaps bonded to a backing plate provide consistent material removal and even finishes.
These discs have a harder abrasive than standard flap sanding discs.
The abrasive-embedded mesh construction gives you more control over sanding pressure, creating more consistent finishes.
A heavy duty backing plate provides more support than standard discs for heavy material removal.
The flaps alternate between an abrasive to remove material and a lubricant that minimizes heat to reduce discoloration of the work surface.
The backing plate on these discs can be sheared away as the abrasive flaps wear down, allowing you to use more of the disc rather than replacing with a new one.
The flaps wrap around the outer edge of these discs to sand welds at right angles.
These discs have a harder abrasive than standard flap sanding discs for corners.
Set at an angle and widely spaced, the overlapping abrasive flaps reach into corners.
The flaps have an abrasive to remove material and a lubricant that minimizes heat to reduce discoloration of the work surface.
Set at an angle and widely spaced, the flaps reach into corners.
A coating prevents dust and debris from building up on the abrasive surface.
A special fastener on the back of these discs allows you to easily swap one disc for another.
The premium abrasive stays sharp longer.
These discs have a harder abrasive than standard quick-change discs.
The heavy duty construction provides more support than standard discs for heavy material removal.
The outer 3/8" of these discs is extremely flexible to prevent marring or gouging your work when sanding a radius or contour.
These discs have a harder abrasive than standard flexible-edge quick-change discs.
Debur, clean, and blend faster than other nylon mesh discs.
The abrasive-embedded nylon mesh construction gives you more control over sanding pressure.
Thicker, more pliable, and less aggressive than standard nylon mesh quick-change discs, use these for finer sanding on curved surfaces.
Used for heavy cleaning and stripping, these discs have an abrasive-embedded nylon mesh construction that gives you more control over sanding pressure.
These discs have a long-lasting diamond abrasive.
Fit these discs over your tool's arbor.
Holes in the disc let you see the surface you’re sanding.
The abrasive-embedded mesh construction gives you more control over sanding pressure, creating finer and more consistent finishes.
Fit these discs over your tool’s arbor to sand stainless steel and hard metals.
The premium abrasive stays sharp longer. Holes in the disc let you see the surface you’re sanding.
Used for stripping, these discs eliminate discoloration from heat buildup.
Fit these discs over your tool's arbor to sand masonry, ceramics, and composites.
Fit these discs over your tool's arbor to sand aluminum, soft metals, and nonmetals.
Press onto a compatible sanding tool or backup pad; peel off to remove.
The cushioned construction gives you more control over sanding pressure, creating finer and more consistent finishes.
Holes allow dust removal when used with a vacuum sander.
The thick, abrasive-embedded nylon mesh construction gives you maximum control over sanding pressure.
Made of foam, these discs can conform to contoured shapes, corners, and sharp edges.
These discs are abrasive-embedded cloth with a cushioned layer.
Quickly attach, remove, and reuse these discs with a compatible sanding tool or backup pad.
The premium abrasive lasts longer as well as cuts faster and produces a more consistent finish than standard hook and loop discs.
The mesh backing lets sanding dust and debris escape during use, preventing material build up on the abrasive surface.
Secure the shank into the collet or chuck of your tool.
Use with commercial floor buffing machines to sand wood floors and strip tape from concrete.
Use these discs with commercial floor buffing machines to sand wood floors.
Made of foam, these blocks flex to sand around curves.
These rubber blocks sand flat surfaces.
Secure the shank into the collet or chuck of your tool. Attach the quick-change fastener on the sanding disc to the corresponding fastener on the backup pad.
The flexible edge of the sanding disc overhangs these backup pads.
Thread these pads onto the tool’s arbor.
These pads are designed to channel air flow to the sanding disc for cooler operation, prolonging the life of the disc.
Thread one of these backup pads onto the tool’s arbor, then attach a sanding disc and secure with the disc nut.
Designed to rotate independently of the disc, these pads clear material buildup on the abrasive surface for longer disc life.
Holes in the pad align with holes in the sanding disc for a clearer view of the sanding surface.
Mount one of these pads onto the tool's arbor.
Use screws to attach these pads to a tool.
Secure the shank into the collet or chuck of a tool.
Thread the stud into the tool's spindle.
Thread the stud into the tool's spindle and then press the sanding disc onto the backup pad.
Install cutoff wheels, grinding wheels, and other abrasive discs to the threaded shaft on bench-top motors, grinders, and buffers.
Mount cutoff wheels, grinding wheels, and other abrasive discs to the straight shaft on bench-top motors, grinders, and buffers.
Use these arbors to mount buffing wheels, grinding wheels and other abrasive discs to the tapered shaft on bench-top motors, grinders, and buffers.
Use these adapters to mount toolroom grinding wheels to most surface grinders.
A titanium aluminum nitride (TiAlN) coating provides heat and wear resistance for longer life.
Reach around barriers to cut, grind, shape, and remove sharp edges in hard-to-access spots.
Extend your reach with these 3" to 7¼" long burs.
Specially spaced flutes quickly remove materials such as aluminum, brass, bronze, and plastics without clogging.
Pointed teeth cut wood and rubber quickly without clogging.
Diamond-cut teeth effectively cut hard materials.
Extend your reach with these 6 1/4" to 7" long burs.
Also known as Type 27, raised-hub, and depressed-center cutoff wheels, these wheels outperform Type 1 wheels when making flush cuts in aluminum, iron, stainless steel, and steel.
Switch between cutting and deburring aluminum, iron, stainless steel, and steel without the need to change your wheel.
Made of premium grade abrasives, these wheels are strong and thick for making notches in aluminum, iron, stainless steel, and steel.
Also known as Type 27, raised-hub, and depressed-center cutoff wheels, these wheels outperform Type 1 wheels when making flush cuts.
Made of premium grade abrasives, these wheels make fast, burr-free cuts in stainless steel.
Prevent corrosion and discoloration on stainless steel—these wheels contain less than 0.1% iron, chloride, and sulfur contaminants.
Made of premium grade abrasives, these wheels are strong and thick for making notches in stainless steel.
Made of a combination of ceramic alumina and zirconia alumina, these wheels last up to ten times longer than standard cutoff wheels when cutting hard metal such as Inconel, Hastelloy, and tool steel.
Make cuts in hard, brittle materials such as firebrick, stone, and concrete.
Run these high-density aluminum oxide wheels at higher speeds than standard cutoff wheels to make quick cuts in aluminum, iron, stainless steel, and steel.
Two layers of fiberglass mesh reinforcement give these wheels at least three times the life of standard cutoff wheels when cutting metal such as aluminum, iron, stainless steel, and steel.
These high-density ceramic oxide wheels have two layers of fiberglass mesh reinforcement and last up to twice as long as long-life cutoff wheels when cutting aluminum, iron, stainless steel, and steel.
The combination of ceramic alumina and zirconia alumina in these wheels lasts up to ten times longer than aluminum oxide when cutting hard metal such as Inconel, Hastelloy, and tool steel.
Use these clog-resistant zirconia alumina wheels to make quick cuts in soft metal such as aluminum, brass, and copper.
For quick cuts in stainless steel, run these high-density zirconia alumina wheels at a higher rpm than standard cutoff wheels.
These steel wheels have a diamond grit edge, so they last longer than standard bench-grinder cutoff wheels when cutting hard, nonferrous materials such as carbide, ceramics, and glass.
An extra-fine layer of fiberglass mesh reinforcement allows these wheels to make smoother cuts than standard bench-grinder cutoff wheels when cutting metal such as aluminum, iron, stainless steel, and steel.
These wheels are designed to cut stainless steel. They are reinforced with a layer fiberglass mesh.
Designed to cut sheet metal.
Use these wheels to cut through metal such as aluminum, iron, stainless steel, and steel.
Use these wheels to cut through metal such as iron and steel. They are reinforced with a layer of fiberglass mesh.
These wheels have a blend of aluminum oxide and silicon carbide abrasives for cutting ductile cast iron.
Two layers of fiberglass mesh reinforcement give these fast-cutting, zirconia alumina wheels at least three times the life of standard cutoff wheels when aluminum, iron, stainless steel, and steel.
These non-reinforced aluminum oxide wheels create the nearly polished finish required for testing metal.
These wheels have a zirconia alumina abrasive for cutting ductile cast iron.
These wheels are thinner than standard bench-top cutoff saw wheels, so they cut through aluminum, iron, stainless steel, and steel more quickly.
These wheels are reinforced with fiberglass mesh and designed to last longer than standard wheels when cutting ductile cast iron.
Make fast, burr-free cuts in stainless steel with these premium aluminum oxide wheels.
Use these clog-resistant wheels to make quick cuts in soft metal such as aluminum, brass, and copper.
These steel wheels have a diamond grit edge for making cuts in abrasive materials such as ceramic and tile.
Make cuts in most metal, including aluminum, iron, stainless steel, and steel.
Made of diamond abrasive, these wheels cut ceramics, tile, and other abrasive materials.
A ceramic alumina abrasive cuts through stainless steel.
Use these wheels for cutting soft metal, plastic, stone, and wood.
Remove light-to-medium rust and stains and small burs with these flexible-bristle brushes.
Made of phosphorus bronze that is Factory Mutual approved, these brushes inhibit sparking and are nonmagnetic and corrosion resistant.
Rigid, twisted bristles handle tasks such as edge rounding and removing weld slag, heavy surface contamination, and large burs.
The bristles are twisted all the way to the end so they’re more rigid and clean fastest.
Use on delicate surfaces.