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Steel Low Carbon Steel · heat-treated state

Steel Low Carbon Steel Normalized

Properties of the Normalized condition, compared with the other Low Carbon Steel tempers.

Pick for uniform fine-grain structure and improved toughness/consistency in welded, forged or thick-section parts.

What is Low Carbon Steel Normalized?

Low Carbon Steel Normalized is Low Carbon Steel heat treated to Normalized — pick for uniform fine-grain structure and improved toughness/consistency in welded, forged or thick-section parts. Low Carbon Steel Normalized has a yield strength of 265 MPa (38.4 ksi) and a tensile strength of 420 MPa (60.9 ksi) — weaker than 91% of steel grades. Elongation at break is 30% and the elastic modulus is 205 GPa (29.7 Msi). Low Carbon Steel Normalized has a density of 7.87 g/cm³ (0.284 lb/in³), heavier than 91% of steel grades. It melts at 1,495°C (2,723 °F). HR is the default condition FabDigit quotes; Normalized is available on request or by drawing note.

Advantages

  • Readily welded — 96/100, better than 100% of steel grades
  • Conducts heat well — 51.9 W/m·K (30 BTU/hr·ft·°F), better than 96% of steel grades
  • High electrical conductivity — 10.8 % IACS, better than 94% of steel grades
  • Forms and bends easily — 82/100, better than 94% of steel grades
  • Ductile — tolerates forming and impact — 30%, better than 92% of steel grades

Limitations

  • Low strength — 265 MPa (38.4 ksi), worse than 91% of steel grades
  • Hard to polish — 45/100, worse than 84% of steel grades

Low Carbon Steel Normalized properties

Typical room-temperature values for Low Carbon Steel Normalized — 15 properties are specific to this condition; the rest are grade-level values shared by every Low Carbon Steel temper. Each bar shows where the value sits among the steel grades in FabDigit's library — further right is higher.

Physical3

Low Carbon Steel Normalized has a density of 7.87 g/cm³ (0.284 lb/in³), heavier than 91% of steel grades. It melts at 1,495°C (2,723 °F).

Density7.87 g/cm³0.28 lb/in³
Melting Point (Solidus)1,495°C2,723 °F
Liquidus Temperature1,520°C2,768 °F

Mechanical16

Low Carbon Steel Normalized has a yield strength of 265 MPa (38.4 ksi) and a tensile strength of 420 MPa (60.9 ksi) — weaker than 91% of steel grades. Elongation at break is 30% and the elastic modulus is 205 GPa (29.7 Msi).

Elastic (Young's) Modulus205 GPa29.7 Msi
Shear Modulus80 GPa11.6 Msi
Bulk Modulus160 GPa23.2 Msi
Poisson's Ratio0.29
Tensile Strength (Ultimate)420 MPa60.9 ksi
Yield Strength (0.2% offset)265 MPa38.4 ksi
Elongation at Break30%
Reduction in Area60%
Compressive Strength250 MPa36.3 ksi
Shear Strength260 MPa37.7 ksi
Fatigue Strength (Endurance Limit)210 MPa30.5 ksi
Fracture Toughness (K_IC)120 MPa·√m109 ksi·√in
Charpy V-Notch Impact (RT)100 J73.8 ft·lbf
Hardness, Brinell126 HB
Hardness, Rockwell B71 HRB
Hardness, Vickers126 HV

Thermal6

Low Carbon Steel Normalized is rated for continuous service to 400°C (752 °F). It conducts heat at 51.9 W/m·K (30 BTU/hr·ft·°F), better than 96% of steel grades. Thermal expansion is 12 µm/m·K (6.67 µin/in·°F).

Thermal Conductivity51.9 W/m·K30 BTU/hr·ft·°F
Specific Heat Capacity486 J/kg·K0.12 BTU/lb·°F
Thermal Expansion (CTE, 20–100 °C)12 µm/m·K6.7 µin/in·°F
Latent Heat of Fusion247 J/g106 BTU/lb
Max Service Temperature (continuous)400°C752 °F
Min Service Temperature-30°C-22 °F

Electrical3

Low Carbon Steel Normalized conducts electricity at 10.8 % IACS, better than 94% of steel grades.

Electrical Conductivity10.8 % IACS
Electrical Resistivity1.6×10⁻⁷ Ω·m6.3 µΩ·in
Magnetic Responseferromagnetic

Chemical & Environmental3

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

Galvanic Potential (seawater, vs SCE)-0.65 V
Corrosion ResistanceNot recommended10/100
Chemical Resistance SummaryRusts freely in moist air and water; attacked by all dilute acids and chloride solutions. Stable in dry air, in strong alkalis and in oils/hydrocarbons; requires paint, zinc coating or inhibitors for outdoor or wet service.

Sustainability4

Producing a kilogram of Low Carbon Steel Normalized takes about 25 MJ of energy and emits 2.1 kg of CO₂ — less than 82% of steel grades. Typical recycled content is 30%.

Embodied Energy (primary production)25 MJ/kg10,748 BTU/lb
Embodied Carbon (primary production)2.1 kg CO₂/kg
Embodied Water45 L/kg5.4 gal/lb
Typical Recycled Content30%

Manufacturability8

Low Carbon Steel Normalized's machinability is good (64/100, better than 92% of steel grades); weldability excellent (96/100); formability very good (82/100).

MachinabilityGood64/100
Machinability Rating (AISI 1212 = 100 %)65%
WeldabilityExcellent96/100
Formability (cold)Very good82/100
CastabilityFair40/100
Brazeability / SolderabilityVery good75/100
PolishabilityFair45/100
Anodizing Responsen/a — ferrous alloy; use zinc plating, hot-dip galvanizing, phosphating/black oxide or paint

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

Other Low Carbon Steel tempers and conditions

Low Carbon Steel is also supplied in 6 other conditions. The full side-by-side table is on the Low Carbon Steel overview.

Working with Low Carbon Steel Normalized

Is Low Carbon Steel easy to machine?

Machines easily but gummy in the annealed/hot-rolled state — use cold-drawn bar, positive rake, sharp tooling and generous coolant for good finish; free-machining 1215/12L14 is the alternative if chip control dominates.

Can Low Carbon Steel be welded?

Essentially unrestricted weldability by SMAW/GMAW/GTAW/RSW with E70/ER70S consumables; no preheat needed below ~25 mm, keep hydrogen low and grind galvanizing off the joint area.

Can Low Carbon Steel be formed, bent or molded?

Excellent cold formability — deep drawing, roll forming, bending to tight radii (≈1t on CR sheet); allow for springback and for the yield-point elongation/stretcher strains in non-skin-passed sheet.

What surface finishes work on Low Carbon Steel?

Not anodizable; protect with zinc plating, hot-dip galvanizing, phosphate + paint, powder coat, black oxide or oil — bare surfaces flash-rust within hours in humid air.

Low Carbon Steel 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
Cdefining range for the low-carbon class0.05 – 0.250.18
Mn0.25 – 0.90.55
Sikilled steels only; rimmed grades ≤0.10≤ 0.350.2
Pimpurity limit≤ 0.050.02
Simpurity limit≤ 0.050.03
Febalance

Low Carbon Steel Normalized — frequently asked

What is Low Carbon Steel Normalized used for?

Low Carbon Steel Normalized is typically used for stamped enclosures and brackets, welded frames and weldments, structural plate, angle and channel, machine bases and skids, general fabrication parts and carburized bushings and pins. In short: workhorse low-carbon plate.

What is the yield strength of Low Carbon Steel Normalized?

Low Carbon Steel Normalized has a typical yield strength of 265 MPa (38.4 ksi) and a tensile strength of 420 MPa (60.9 ksi) — weaker than 91% of steel grades. Strength varies by condition: see the 7 listed tempers.

Is Low Carbon Steel Normalized easy to machine?

Reasonably — machinability is rated good (64/100, better than 92% of steel grades). Machines easily but gummy in the annealed/hot-rolled state — use cold-drawn bar, positive rake, sharp tooling and generous coolant for good finish; free-machining 1215/12L14 is the alternative if chip control dominates.

Can Low Carbon Steel Normalized be welded?

Yes — weldability is rated excellent (96/100). Essentially unrestricted weldability by SMAW/GMAW/GTAW/RSW with E70/ER70S consumables; no preheat needed below ~25 mm, keep hydrogen low and grind galvanizing off the joint area.

What surface finishes work on Low Carbon Steel Normalized?

Not anodizable; protect with zinc plating, hot-dip galvanizing, phosphate + paint, powder coat, black oxide or oil — bare surfaces flash-rust within hours in humid air.

Can Low Carbon Steel Normalized be formed, bent or molded?

Excellent cold formability — deep drawing, roll forming, bending to tight radii (≈1t on CR sheet); allow for springback and for the yield-point elongation/stretcher strains in non-skin-passed sheet.

What is the maximum service temperature of Low Carbon Steel Normalized?

Low Carbon Steel Normalized is rated for continuous use to about 400°C (752 °F). Strength falls off well before that limit — check the elevated-temperature data for load-bearing parts.

What is the difference between Low Carbon Steel-HR and Low Carbon Steel-CD?

HR is the default condition — cheapest general-purpose structural stock: plate, angle, channel, merchant bar where surface finish and close tolerance are not needed. CD: use for shafts, pins and machined parts: higher strength, straight bright bar, close diameter tolerance and better chip control than hot rolled. Yield strength is 250 MPa in HR versus 380 MPa in CD.

Can FabDigit make parts in Low Carbon Steel Normalized?

Yes — Low Carbon Steel Normalized 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. ASTM A36/A36M Standard Specification for Carbon Structural SteelASTM (2019)
  2. ASTM A1011/A1018 (hot-rolled sheet) and A1008 (cold-rolled sheet)ASTM (2018)
  3. GB/T 700 (Q195/Q215/Q235)SAC (2006)
  4. SAE J403 / ASTM A29 chemical compositions of carbon steels (1018, 1020)SAE / ASTM (2019)
  5. ASM Handbook Vol.1 — Properties and Selection: Irons, Steels and High-Performance AlloysASM International (1990)
  6. ASM Handbook Vol.19 — Fatigue and FractureASM International (1996)
  7. Machinery's Handbook, machinability ratingsIndustrial Press (2020)
  8. worldsteel Life Cycle Inventory of steel productsWorld Steel Association (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.