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Alloy Steel

Steel

Steel alloyed with elements like chromium, molybdenum, or vanadium to enhance strength, hardness, or toughness beyond plain carbon steel.

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Tool Steel

Steel

High-carbon steel alloyed for hardness, abrasion resistance, and heat resistance, used to make cutting, shaping, and forming tools.

8 Legierungen Empfohlen

Copper Alloy

Copper

Copper combined with tin (bronze), zinc (brass), or other elements to improve corrosion resistance, conductivity, or machinability.

Nickel Alloy

Nickel

Nickel-based alloys known for exceptional heat and corrosion resistance, widely used in aerospace turbines and chemical processing.

Structural Steel

Steel

Carbon-manganese steel produced in standard shapes (I-beam, angle, channel) for load-bearing construction and infrastructure applications.

12 Legierungen Empfohlen

Carbon Steel

Steel

Iron-carbon alloy where carbon content (0.05–2.1%) primarily determines hardness and tensile strength. The most widely produced steel type.

9 Legierungen Empfohlen

Spring Steel

Steel

Medium-to-high carbon steel with high yield strength, allowing it to flex repeatedly under load and return to its original shape.

2 Legierungen Empfohlen

Stainless Steel

Stainless Steel

Iron-carbon alloy containing at least 10.5% chromium, which forms a passive oxide layer that resists corrosion and staining.

43 Legierungen Empfohlen

Bearing Steel

Steel

High-carbon, high-chromium steel engineered for extreme hardness, wear resistance, and fatigue life in rolling-element bearings.

3 Legierungen Empfohlen

High-Entropy Alloy (MPEA)

Other

Multi-principal element alloys with 5+ elements in near-equiatomic ratios.

585 Legierungen

Titanium Alloy

Titanium

Titanium combined with aluminum, vanadium, or other metals to achieve a high strength-to-weight ratio with excellent corrosion resistance.

Aluminum Alloy

Aluminum

Aluminum combined with copper, magnesium, silicon, or zinc to improve strength and machinability while retaining low density.

57 Legierungen Empfohlen