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Steel 55Cr3 · temper · default condition

Steel 55Cr3 Annealed

Properties of the Annealed condition, compared with the other 55Cr3 tempers.

Stock condition for machining, cold forming and pre-heat-treat blanks; hardness capped at 248 HB by EN 10089.

CNC machiningSheet metalStandard cost $$

What is 55Cr3 Annealed?

55Cr3 Annealed is 55Cr3 in the Annealed temper — stock condition for machining, cold forming and pre-heat-treat blanks; hardness capped at 248 HB by EN 10089. 55Cr3 Annealed has a yield strength of 480 MPa (69.6 ksi) and a tensile strength of 800 MPa (116 ksi) — stronger than 60% of steel grades. Elongation at break is 16% and the elastic modulus is 206 GPa (29.9 Msi). 55Cr3 Annealed has a density of 7.85 g/cm³ (0.284 lb/in³), heavier than 56% of steel grades. It melts at 1,420°C (2,588 °F).

Limitations

  • Limited service temperature — 250°C (482 °F), worse than 85% of steel grades
  • Difficult to weld — 25/100, worse than 77% of steel grades

55Cr3 Annealed properties

Typical room-temperature values for 55Cr3 Annealed — 8 properties are specific to this condition; the rest are grade-level values shared by every 55Cr3 temper. Each bar shows where the value sits among the steel grades in FabDigit's library — further right is higher.

Physical3

55Cr3 Annealed has a density of 7.85 g/cm³ (0.284 lb/in³), heavier than 56% of steel grades. It melts at 1,420°C (2,588 °F).

Density7.85 g/cm³0.28 lb/in³
Melting Point (Solidus)1,420°C2,588 °F
Liquidus Temperature1,490°C2,714 °F

Mechanical13

55Cr3 Annealed has a yield strength of 480 MPa (69.6 ksi) and a tensile strength of 800 MPa (116 ksi) — stronger than 60% of steel grades. Elongation at break is 16% and the elastic modulus is 206 GPa (29.9 Msi).

Elastic (Young's) Modulus206 GPa29.9 Msi
Shear Modulus79.5 GPa11.5 Msi
Bulk Modulus160 GPa23.2 Msi
Poisson's Ratio0.29
Tensile Strength (Ultimate)800 MPa116 ksi
Yield Strength (0.2% offset)480 MPa69.6 ksi
Elongation at Break16%
Reduction in Area40%
Shear Strength500 MPa72.5 ksi
Fatigue Strength (Endurance Limit)360 MPa52.2 ksi
Charpy V-Notch Impact (RT)30 J22.1 ft·lbf
Hardness, Brinell225 HB
Hardness, Vickers236 HV

Thermal6

55Cr3 Annealed is rated for continuous service to 250°C (482 °F). It conducts heat at 44 W/m·K (25.4 BTU/hr·ft·°F), better than 57% of steel grades. Thermal expansion is 12.5 µm/m·K (6.94 µin/in·°F).

Thermal Conductivity44 W/m·K25.4 BTU/hr·ft·°F
Specific Heat Capacity465 J/kg·K0.11 BTU/lb·°F
Thermal Expansion (CTE, 20–100 °C)12.5 µm/m·K6.9 µin/in·°F
Latent Heat of Fusion250 J/g107 BTU/lb
Max Service Temperature (continuous)250°C482 °F
Min Service Temperature-40°C-40 °F

Electrical2

55Cr3 Annealed has an electrical resistivity of 2.2×10⁻⁷ Ω·m.

Electrical Resistivity2.2×10⁻⁷ Ω·m8.66 µΩ·in
Magnetic Responseferromagnetic

Chemical & Environmental2

Corrosion resistance is not recommended (10/100), worse than 87% of steel grades.

Corrosion ResistanceNot recommended10/100
Chemical Resistance SummaryRusts freely in moist air and rapidly in salt spray; requires phosphate+paint, zinc/epoxy coating or oiling. Prone to hydrogen embrittlement from acid pickling and electroplating at spring hardness; avoid chlorides and caustic under stress.

Sustainability4

Producing a kilogram of 55Cr3 Annealed takes about 26 MJ of energy and emits 2 kg of CO₂ — less than 64% of steel grades. Typical recycled content is 30%.

Embodied Energy (primary production)26 MJ/kg11,178 BTU/lb
Embodied Carbon (primary production)2 kg CO₂/kg
Embodied Water45 L/kg5.4 gal/lb
Typical Recycled Content30%

Manufacturability7

55Cr3 Annealed's machinability is fair (50/100, worse than 53% of steel grades); weldability poor (25/100); formability fair (45/100).

MachinabilityFair50/100
Machinability Rating (AISI 1212 = 100 %)55%
WeldabilityPoor25/100
Formability (cold)Fair45/100
Brazeability / SolderabilityFair40/100
PolishabilityGood60/100
Anodizing Responsen/a — ferrous alloy; use phosphating, zinc or zinc-nickel plating (with bake-out) or paint

Common Calculations5

Specific Strength (UTS / density)calculated102 kN·m/kg
Specific Stiffness (E / density)calculated26.2 MN·m/kg
Modulus of Resiliencecalculated559 kJ/m³
Thermal Diffusivitycalculated12.1 mm²/s
Thermal Shock Resistance Indexcalculated14

Values are nominal handbook figures for design screening. Certified mill or lot data ships with every FabDigit order on request.

Other 55Cr3 tempers and conditions

55Cr3 is also supplied in 8 other conditions. The full side-by-side table is on the 55Cr3 overview.

Working with 55Cr3 Annealed

Is 55Cr3 easy to machine?

Machine in the annealed (+A) state with rigid setups and carbide tooling; at 45–50 HRC only grinding, hard turning with CBN or EDM is practical.

Can 55Cr3 be welded?

Effectively unweldable for structural use (Ceq ≈ 0.85); if unavoidable, preheat 300–350 °C, low-hydrogen consumables and immediate post-weld temper, then re-heat-treat.

Can 55Cr3 be formed, bent or molded?

Coil and bend hot (850–1050 °C) or in the annealed condition; harden from ~840–860 °C in oil and temper 400–480 °C, then stress-relieve set springs at ~250–300 °C.

What surface finishes work on 55Cr3?

Always shot-peen loaded surfaces for fatigue life; protect by phosphate + epoxy/powder paint or zinc-rich coating — avoid acid pickling and standard electroplating without a 190–210 °C hydrogen bake-out.

55Cr3 chemical composition (wt %)

Limits by weight percent from the governing specification, written the way the spec states them — a single maximum for impurities, a range for alloying elements, and the base element as balance. Nominal is the typical mid-range value.

ElementSpec limit (wt %)Nominal
CEN 100890.52 – 0.590.55
Si0.15 – 0.40.25
Mn0.7 – 10.85
Cr0.7 – 10.85
P≤ 0.03
S≤ 0.03
Febalance

55Cr3 Annealed — frequently asked

What is 55Cr3 Annealed used for?

55Cr3 Annealed is typically used for leaf springs, heavy coil springs, torsion bars, stabiliser (anti-roll) bars, spring clips and retainers and agricultural tine springs. In short: spring chromium bar.

What is the yield strength of 55Cr3 Annealed?

55Cr3 Annealed has a typical yield strength of 480 MPa (69.6 ksi) and a tensile strength of 800 MPa (116 ksi) — stronger than 60% of steel grades. Strength varies by condition: see the 9 listed tempers.

Is 55Cr3 Annealed easy to machine?

Reasonably — machinability is rated fair (50/100, worse than 53% of steel grades). Machine in the annealed (+A) state with rigid setups and carbide tooling; at 45–50 HRC only grinding, hard turning with CBN or EDM is practical.

Can 55Cr3 Annealed be welded?

Not readily — weldability is rated poor (25/100). Effectively unweldable for structural use (Ceq ≈ 0.85); if unavoidable, preheat 300–350 °C, low-hydrogen consumables and immediate post-weld temper, then re-heat-treat.

What surface finishes work on 55Cr3 Annealed?

Always shot-peen loaded surfaces for fatigue life; protect by phosphate + epoxy/powder paint or zinc-rich coating — avoid acid pickling and standard electroplating without a 190–210 °C hydrogen bake-out.

Can 55Cr3 Annealed be formed, bent or molded?

Coil and bend hot (850–1050 °C) or in the annealed condition; harden from ~840–860 °C in oil and temper 400–480 °C, then stress-relieve set springs at ~250–300 °C.

What is the maximum service temperature of 55Cr3 Annealed?

55Cr3 Annealed is rated for continuous use to about 250°C (482 °F). Strength falls off well before that limit — check the elevated-temperature data for load-bearing parts.

What is the difference between 55Cr3 Annealed and 55Cr3-AC?

Annealed is the default condition — stock condition for machining, cold forming and pre-heat-treat blanks; hardness capped at 248 HB by EN 10089. AC: 1.7176 annealed to globular carbides — the softest delivery state, used for cold heading, cold extrusion and heavy machining before hardening. Yield strength is 480 MPa in Annealed versus 380 MPa in AC.

Can FabDigit make parts in 55Cr3 Annealed?

Yes — 55Cr3 Annealed is available for CNC machining and sheet metal with instant online pricing. Upload a STEP file to get a price and a DFM check.

Sources

  1. EN 10089 — Hot rolled steels for quenched and tempered springsCEN (2002)
  2. SAE J404 / J1397 — Chemical compositions and mechanical properties of SAE alloy steels (5155)SAE International (2009)
  3. GB/T 1222 (2016)
  4. ASM Handbook Vol.1: Properties and Selection — Irons, Steels, and High-Performance AlloysASM International (1990)
  5. Spring Design Manual (HS-795)SAE International (1996)
  6. Spring steel bar and flat bar grade data (55Cr3 / 1.7176)European long-products mills (2023)

Property data is compiled from published supplier and standards handbooks and normalised for comparison. Nothing on this page is a certification — request mill certs, CoC or material test reports with your order.