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Also known as mild steel, low-carbon steel is easy to machine, form, and weld. It's widely fabricated into parts that don’t require high strength.
The galvannealed coating allows these steel sheets to be painted without prepping the surface. They're easier to weld and more scratch resistant than zinc-galvanized steel sheets. Use them for outdoor signs, cabinets, and doors.
Coated with an aluminum-silicon alloy, these sheets resist corrosion while withstanding long-term exposure to high temperatures. Use in drying ovens, furnaces, and smokestacks.
A silver-filled resin coating on one side of these sheets protects from degradation caused by bacteria and fungi.
In addition to good corrosion resistance, the nickel coating provides better wear resistance than the zinc-galvanized coating.
These sheets and bars are zinc galvanized for good corrosion resistance.
These rods are precision ground and held to a strict straightness tolerance, so they're ready for turning in a lathe.
The matte plating on these rods increases corrosion resistance and wear resistance.
These rods are zinc galvanized for good corrosion resistance.
Coated with PVC for corrosion resistance, this carbon steel wire will stand up to outdoor use.
Also known as black-annealed wire.
This wire is zinc galvanized for good corrosion resistance.
Stronger than low-carbon steel with equally good machinability, 1045 carbon steel is widely used for bolts, studs, and shafts.
The lead additive acts as a lubricant, which allows 12L14 carbon steel to withstand very fast machining. It's used to fabricate a wide variety of machine parts.
Ready for turning in a lathe, these rods are precision ground and held to a strict straightness tolerance.
Often called Stressproof, these rods are stress-relieved to minimize warping during machining.
These rods are precision ground and held to a strict straightness tolerance, so they're all set for turning applications in your lathe.
Also known as Fatigueproof, these rods have enhanced strength and resistance to breaking from repeated impact compared to High-Strength Easy-to-Machine 1144 Carbon Steel Rods.
A lead-free alternative to 12L14, 1215 carbon steel contains the same amount of sulfur and phosphorus for excellent machinability. It is often used for shaft couplings, studs, and pins.
Precision ground and held to a strict tightness tolerance, these rods are ready for turning in a lathe.
1117 carbon steel responds to surface-hardening heat treatment better than other easy-to-machine carbon steels. Use it to fabricate shaft couplings, studs, pins, and universal joints.
The same steel used in automobile bodies, this AHSS (advanced high-strength steel) allows you to fabricate high-strength parts using thinner material than you could with other types of steel. It is formable, weldable, and more economical than alloy steel.
Also known as chrome-moly steel, this versatile 4140 alloy steel is used for a wide range of parts, such as gears, axles, shafts, collets, and die holders. It resists fracturing from repeated stress.
Ready for turning in your lathe, these rods are precision ground and held to a strict straightness tolerance.
Often called ETD-150, these rods are made from a modified version of 4140 alloy steel and have been drawn at high temperatures for excellent strength.
These rods are hardened for increased abrasion and impact resistance. Also known as chrome-moly steel, 4140 alloy steel resists fracturing from repeated stress.
4130 alloy steel has a low carbon content that provides good weldability. It's often used for gears, fasteners, and structural applications.
4130 alloy steel has a low carbon content for good weldability. It's often used for gears, fasteners, and structural applications.
4130 alloy steel has a low carbon content that provides good weldability. It's often used for structural applications.
While the low carbon content makes 8620 alloy steel easy-to-weld, it's the nickel, chromium, and molybdenum content that provides wear resistance.
The addition of lead gives 41L40 the best machinability of all the alloy steel we offer.
Also known as chrome steel, 52100 is an extremely hard and wear-resistant material. These balls are often used in bearings.
Also known as chrome steel, 52100 is an extremely hard and wear-resistant material. This wire is often used for small-diameter bearings, bushings, and punches.
Easier to machine than 52100 alloy steel rods, these extremely hard and wear-resistant tubes are often used to create bearings, bushings, and other cylindrical parts that are under constant stress. They’re also known as chrome steel.
Also known as chrome steel, 52100 is an extremely hard and wear-resistant material. It’s used for parts such as bearings, bushings, and punches.
Often used for gears, shafts, and ball screws, 4150 alloy steel resists wear from friction and abrasion.
Use for power transmission and structural applications that involve extreme impact, heat, and wear.
Containing more carbon than low-carbon steel—but less than 1095 spring steel—1050 spring steel is easily formed into parts such as washers, brackets, and springs before being hardened for use.
These sheets have a softened temper, which is also known as annealed, so they can be easily formed into shape and then heat treated for spring properties.
Also known as blue-tempered steel.
This wire is coated with oil for corrosion resistance and lubricity. Use it for bundling and as tag wire.
Also known as music wire.
Also known as scaleless steel.
Always have the right size wire on hand with a 72-piece assortment.
Containing 3% silicon, this electrical steel forms the laminated cores of electromagnetic devices to improve performance. It’s extremely thin, reducing energy loss for better overall efficiency.
These sheets and bars are precision ground to a tight thickness tolerance.
The thickness, length, and width are oversized for finishing to your exact requirements.
These precision-ground sheets and bars are held to a tight thickness tolerance.
This S2 tool steel has been hardened for excellent strength and impact resistance. It has a tough core that resists breaking under shock loads.
Hardened for increased abrasion and impact resistance.