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60CrMo3-1

EN 10089 · 1.7192

SpringChromium Molybdenum

60CrMo3-1 is a spring steel (Chromium-Molybdenum family) to EN 10089 (1.7192). It has a specified 0.2 % proof stress of 1300 MPa and a typical tensile strength of about 1550 MPa, with a uniform elongation of 6 %. Nominal carbon content is around 0.56 %. For nonlinear FEA, a bilinear model uses E = 210 GPa up to yield and a tangent modulus of 4825 MPa above it. The Cr–Mo alloying provides good hardenability and creep/temper resistance.

0.2% proof Rp0.2
1300MPa
UTS Rm (typ)
1550MPa
Uniform elong. εu
6.0%
Condition / basis
tempered

Bilinear material model — nonlinear FEA

Elastic modulus E
210GPa
0.2% proof Rp0.2
1300MPa
UTS Rm (typ)
1550MPa
Tangent modulus Et
4825MPa

Uniform elongation εu = 6.0% · conservative analysis limit ½εu = 3.0%

Bilinear (BISO) approximation. Elastic modulus E up to the 0.2% proof stress R_p0.2, then a single tangent slope Eₜ to the ultimate tensile strength: Eₜ = (Rₘ − R_p0.2) / (εu − R_p0.2/E − 0.002), where εu is the uniform elongation and Rₘ is a typical (nominal) UTS within the specified band. The half-εu figure is a conservative strain limit for the analysis. Treat these as guidance for first-pass models; for critical work use a measured true stress–strain curve for the actual product and condition.

Ratings — engineering judgement

Weldabilitypoor

Higher carbon (~0.56%) raises the risk of HAZ cracking — preheat and PWHT are usually required, if welding is advisable at all.

Machinabilitygood

Machines well, particularly in the normalised or pre-tempered condition.

Corrosion resistancepoor

No inherent corrosion resistance — protect by paint, galvanising or plating in exposed use.

Hardenabilitygood

Responds well to quench-and-temper (and, for the case-hardening/nitriding grades, to surface treatment).

Toughnessmoderate

Adequate toughness for general use at ambient temperature.

Indicative ratings derived from composition and family — engineering guidance, not specification values.

Physical properties

Density7850kg/m³
Elastic modulus210GPa
Shear modulus80.8GPa
Poisson's ratio0.30
Thermal expansion12.0×10⁻⁶/°C
Thermal conductivity48W/(m·K)
Specific heat470J/(kg·K)
MagneticYes

Typical values for chromium-molybdenum steel — use the mill certificate for the specific product.

Chemical composition (wt %)

C
0.56–0.64
Cr
0.70–1.00
Mo
0.25–0.35

Nominal composition per EN 10089 for 60CrMo3-1 — confirm exact limits against the standard.

Available forms

wireexcellent
patented / oil-tempered
Primary form for coil springs.
stripgood
cold-rolled
For flat and clock springs.
bargood
round
For heavy springs and torsion bars.

Common applications

  • Coil, leaf and torsion springs
  • Suspension and valve springs
  • Clips, clutches and resilient components

History

Spring steels are medium-to-high-carbon steels, often with silicon, chromium and vanadium, heat-treated to a high elastic limit and fatigue strength so they store and return energy without taking a set. Silicon raises the yield-to-tensile ratio; Cr and V add hardenability and fatigue resistance.

  1. 1900
    Silicon-manganese and Cr–V spring steels developed for vehicle suspension
  2. 1960
    Oil-tempered and valve-spring qualities refine fatigue performance

This profile is generated from the grade's core data and family. Composition is decoded from the designation where its naming system defines it; physical properties are family-typical and ratings are indicative. Confirm critical values against the governing standard or the mill certificate. Equivalents, historical designations and hand-written expert notes are added per grade over time.