| Aluminum Oxide Cutting Disc | Aluminum oxide, usually fused alumina | Resin-bonded, fiberglass-reinforced wheel with abrasive grain, resin bond and reinforcing layers | Mild steel, carbon steel, structural steel, steel tubing and general ferrous metals | Flat cutting wheel; commonly classified as Type 1 or EN 41 | Approximately 0.8–3.2 mm, depending on diameter and intended use | Balanced cutting performance and cost; suitable for everyday fabrication and maintenance work | Select the correct diameter, arbor size, wheel speed rating and steel compatibility; thinner wheels generally cut faster but can be more sensitive to side loading |
| Zirconia Alumina Cutting Disc | Zirconia alumina, often blended with aluminum oxide | Resin-bonded and fiberglass-reinforced construction | Stainless steel, high-strength steel and other demanding ferrous-metal applications | Flat cutting wheel; commonly Type 1 or EN 41 | Approximately 1.0–3.2 mm | High fracture toughness and good grain retention; can provide longer service life in difficult steel-cutting work | Choose a grade designed for stainless or high-alloy steel when lower contamination and improved durability are required |
| Stainless-Steel Cutting Disc | Usually aluminum oxide or zirconia alumina formulated for stainless steel | Resin-bonded, reinforced and commonly produced with low-iron, low-sulfur and low-chlorine specifications | Stainless steel sheet, pipe, profiles, fittings and fabricated components | Flat Type 1 or EN 41; some products use a depressed-center cutting design | Approximately 0.8–2.5 mm for many handheld applications | Designed to reduce discoloration, corrosion-related contamination and loading when cutting stainless steel | Check the product marking for stainless-steel suitability and contaminant restrictions; do not use a wheel previously used on ordinary carbon steel if contamination must be avoided |
| Thin Precision Cutting Disc | Fine aluminum oxide, zirconia alumina or a blended abrasive | Thin resin-bonded wheel with fiberglass reinforcement | Sheet metal, thin-wall tubing, small profiles, bolts and light-gauge steel components | Flat Type 1 or EN 41 | Approximately 0.8–1.2 mm | Fast kerf penetration, low material loss and relatively low heat input when used with controlled pressure | Use only with stable equipment and straight cuts; avoid twisting, bending or side pressure because thin wheels are more vulnerable to impact and flexing |
| Heavy-Duty Cut-Off Disc | Coarse aluminum oxide, zirconia alumina or a hybrid grain | Thicker resin-bonded wheel with multiple fiberglass reinforcement layers | Heavy carbon-steel sections, thick-wall pipe, rebar, rails and large structural profiles | Flat Type 1 or EN 41; some machine-cutting wheels use specialized profiles | Approximately 2.0–4.0 mm for common portable applications | Greater mechanical stability and durability for demanding cuts, with a wider kerf and usually slower penetration than thin discs | Confirm that the grinder or cut-off machine has adequate power and that the wheel diameter and maximum RPM match the equipment |
| Silicon Carbide Cutting Disc | Silicon carbide | Resin-bonded, reinforced construction; formulation varies by application | Cast iron, some non-ferrous metals and selected abrasive or difficult-to-cut materials | Usually flat Type 1 or EN 41 | Approximately 1.0–3.2 mm | Very hard, sharp abrasive grain; can cut certain brittle or non-ferrous materials effectively, but is not the default choice for general steel | Verify the wheel specification for the exact metal; use a steel-rated aluminum-oxide or zirconia disc when cutting ordinary ferrous steel |
| Diamond-Embedded Metal Cutting Disc | Industrial diamond particles | Metal-bonded, vacuum-brazed or sintered construction, depending on the product design | Typically carbide, abrasive composites and selected non-ferrous or specialty materials; not a general-purpose choice for steel | Flat or segmented specialty wheel | Commonly approximately 1.0–3.5 mm, depending on design | Very long abrasive retention in suitable materials; diamond is generally unsuitable for prolonged cutting of ferrous steel because high-temperature chemical wear can rapidly degrade the diamond | Use only when the wheel specification explicitly identifies the target material; do not assume that a diamond wheel is suitable for all metals |
| Machine Cut-Off Wheel | Aluminum oxide, zirconia alumina or other application-specific abrasive | Reinforced resin-bonded wheel manufactured for stationary, chop-saw or automated cutting equipment | Steel bar, tube, profiles, billets and production-line metal components | Flat Type 1 or EN 41; machine-specific forms may also be available | Approximately 2.0–6.0 mm, depending on machine, diameter and workpiece | Optimized for repeatable cutting, rigidity and controlled feed rates rather than handheld flexibility | Match the wheel to machine RPM, flange design, workpiece shape, coolant requirements and the manufacturer’s approved cutting method |
| Depressed-Center Cutting Disc | Aluminum oxide or zirconia alumina | Reinforced resin-bonded wheel with a recessed hub that provides clearance around the mounting flange | Structural steel, stainless steel and fabrication work where flange clearance is useful | Depressed-center cutting wheel; commonly Type 27 or EN 42 when specified by the manufacturer | Approximately 1.6–3.2 mm | Provides mounting clearance and can be useful for certain grinder configurations; it is still intended for cutting, not conventional side grinding | Confirm that the disc is specifically marked for cutting and that the guard, flange and machine orientation are compatible with the wheel type |