Forged Steel Round Bar

High-strength forged round bars manufactured through open-die forging for superior mechanical properties and structural integrity.

Ø 150 – 1000 mm Diameter Forging Ratio ≥ 3:1 Open-Die Forging
Forged Steel Round Bar

Forged round bars are steel bars produced through open-die forging, a manufacturing process where heated steel billets are compressed between two flat dies to achieve the desired shape and dimensions. Unlike rolled or cast bars, forged bars undergo significant plastic deformation that refines the grain structure and eliminates internal defects.

The forging process ensures a minimum reduction ratio of 3:1, which guarantees superior material density, continuous grain flow, and exceptional mechanical properties including tensile strength, yield strength, and impact toughness. This makes forged round bars the preferred choice for critical applications in aerospace, oil & gas, power generation, and heavy machinery.

High Tensile Strength Superior Fatigue Resistance Refined Grain Structure 3:1 Reduction Ratio Full Traceability EN 10204 3.1 Certified

Technical Specifications

Size Range

Diameter Range

Standard: Ø150mm – 500mm

Heavy: Ø500mm – 1,000mm

Tolerance: ±1% of diameter or per spec

Length Range

Standard: 3m – 12m

Max: Up to 12,000mm

Max Weight: 25,000 kg per piece

Diameter (mm) Typical Length (m) Max Weight (kg)
150 – 3003 – 125,000
300 – 5003 – 1010,000
500 – 7002 – 815,000
700 – 1,0002 – 625,000

Available Material Grades

Category ASTM / AISI Grades EN / DIN Grades Applications
Carbon SteelAISI 1010, 1018, 1020, 1026, 1045, 1050C22, C35, C45, C55, S235JR, S355J2General engineering, shafts, pins
Alloy SteelAISI 4130, 4140, 4150, 4340, 8620, 931042CrMo4, 34CrNiMo6, 34CrMo4, 20MnCr5Gears, axles, crankshafts, high-stress parts
Tool SteelH13, D21.2344, 1.2379Dies, molds, mold bases

Typical Mechanical Properties

Grade Tensile Strength (MPa) Yield Strength (MPa) Elongation (%) Hardness (HB)
AISI 1020 / C22410 – 540≥ 250≥ 25120 – 160
AISI 1045 / C45620 – 780≥ 370≥ 16180 – 230
AISI 4140 / 42CrMo4750 – 1,000≥ 650≥ 15220 – 300
AISI 4340 / 34CrNiMo6930 – 1,080≥ 830≥ 12280 – 340
S355J2 / EN 10025470 – 630≥ 355≥ 22140 – 190

* Values are typical ranges; actual properties depend on heat treatment condition and bar size.

Surface Finish Options

As-Forged (Black)

Raw forged surface with mill scale. Most economical option suitable for further machining. Surface roughness Ra 12.5 – 25μm.

Rough Machined

Turned surface removing the outer layer. Provides dimensional control with surface roughness Ra 6.3 – 12.5μm.

Peeled

Centerless peeled for tight OD tolerance (±0.1mm). Ideal for shaft applications. Surface roughness Ra 3.2 – 6.3μm. Available for Ø 150 – 400 mm.

Polished / Ground

Precision ground or polished surface for critical applications. Surface roughness Ra 0.4 – 1.6μm. Mirror finish available on request.

Heat Treatment Services

Treatment Temperature Range Purpose
Normalizing870°C – 925°CRefine grain structure, uniform properties
Annealing790°C – 900°CImprove machinability, relieve stress
Quench & Temper830°C – 870°C / 450°C – 650°CAchieve high strength and toughness
Solution Treatment1,010°C – 1,120°CStainless steel corrosion resistance
Stress Relieving550°C – 650°CRemove residual stresses after machining

Quality Control & Testing

Non-Destructive Testing (NDT)

  • Ultrasonic Testing (UT) – per ASTM E2375
  • Magnetic Particle Testing (MT) – per ASTM E1444
  • Liquid Penetrant Testing (PT) – per ASTM E165
  • Dimensional Inspection – 100% record
  • Surface Visual Inspection

Mechanical Testing

  • Tensile Test – per ASTM E8
  • Impact Test (Charpy V) – per ASTM E23
  • Hardness Test (Brinell/Rockwell)
  • Chemical Analysis – per ASTM E415
  • Microstructure Examination

Certifications & Class Approvals

ISO 9001:2015

Quality Management

EN 10204 3.1/3.2

Mill Test Certificate

Third-Party TPI

SGS / BV / Lloyd’s

Full Traceability

Heat & Lot Tracking

Marine Classification Society Approvals

CCS

China Classification Society

DNV

Det Norske Veritas

ABS

American Bureau of Shipping

NK

Nippon Kaiji Kyokai

BV

Bureau Veritas

LR

Lloyd’s Register

RINA

Registro Italiano Navale

KR

Korean Register of Shipping

Manufacturing Process

Our forged steel products are produced through a 12-step forging process combining controlled heating, precision open/closed-die forging, tailored heat treatment, and CNC finish machining to achieve superior metallurgical structure and dimensional accuracy.

1

Raw Material Selection & Inspection

High-quality ingots or continuous-cast billets (EAF-LF-VD refined) are selected based on grade specification. Chemical analysis, surface inspection, and UT testing are performed.

2

Billet Sawing to Forging Blanks

Raw stock is cut to calculated forging weights using high-speed band saws, accounting for scale loss, flash, and machining allowances.

3

Furnace Heating

Blanks are heated to 1150–1250°C (depending on grade) in a gas-fired bogie-hearth or chamber furnace with precise zone temperature control to ensure uniform austenitization.

4

Open-Die / Closed-Die Forging

Heated blanks are forged using hydraulic presses or air hammers. Open-die forging uses flat/V-dies for simple bars; closed-die forging uses precision tooling for near-net-shape profiled components.

5

Trimming & Punching (Closed-Die)

For closed-die forgings, excess flash is trimmed in a mechanical press and holes are punched while the part is still hot, improving material utilization.

6

Post-Forging Heat Treatment

Forgings undergo normalizing, annealing, or quenching & tempering per material grade to refine grain structure, relieve residual stresses, and achieve specified hardness and mechanical properties.

7

Blasting & Surface Cleaning

Scale and oxide layer are removed by shot blasting (steel shot S230–S330) to reveal surface defects and prepare for machining.

8

Rough Machining

Excess forging allowance is removed by CNC lathe turning, leaving 2–3 mm finishing stock. Rough machining also removes surface decarburization and forging irregularities.

9

Ultrasonic Testing (UT)

100% ultrasonic inspection per EN 10228-3 or ASTM A388 detects internal defects such as cracks, inclusions, porosity, and segregation. Acceptance criteria as per grade requirements.

10

Finish Machining

CNC turning, milling, and drilling achieve final dimensional tolerances (up to IT7) and surface roughness (Ra 1.6–3.2 μm) per customer drawings.

11

Hardness & Metallographic Testing

Brinell/Rockwell hardness verification, tensile testing on sacrificial coupons, and metallographic examination for grain size, inclusion rating, and carbide structure (critical for tool/die steels).

12

Final Inspection & Packaging

Dimensional inspection of all critical features, MPI/LPT for surface defects if required, stamping grade and heat number, rust-proof oiling, and packing in wooden cases or steel bundles.

Applications

Where our products deliver proven performance across industries worldwide.

SHAFTS

Shafts & Rotating Equipment

Forged round bar is the raw material for motor, pump, turbine, and marine shafts, where UT-verified internal soundness and through-hardened properties prevent in-service failures.

✓ UT per EN 10228-3

GEARS

Gears, Pinions & Drive Components

Case-hardening and through-hardening grades (17CrNiMo6, 42CrMo4) supply gear blanks that carry high torque with controlled distortion.

✓ QT and case-hardening grades

FLANGES

Flanges & Pressure Fittings

Forged bar feeds flange rings, blind flanges, and fittings for pressure systems in carbon, alloy, and stainless grades.

✓ ASME/EN flange materials

TOOLING

Tooling & Die Holders

Pre-hardened and tool-steel rounds support die holders, mold bases, and tooling components requiring uniform hardness.

✓ Pre-hardened 2738/P20 options

OIL & GAS

Downhole & Wellhead Components

Alloy bar feeds wellhead blocks, valve bodies, and downhole tools requiring API-grade material with traceability.

✓ API 6A material classes

CUSTOM

Custom Machined Components

Cut-to-length, pre-machined, and fully machined round bar components reduce your in-house machining cycle time.

✓ Cut-to-length + rough machining

Frequently Asked Questions

What is forged steel round bar?

Round bar produced by forging ingots or billets — rather than rolling — producing a refined, dense internal structure with no central porosity, specified for critical machined components.

What diameter range is available?

Typically Ø150 mm to 1,000 mm in forged-and-turned condition; lengths up to 12 m for smaller diameters. Other sizes on request.

What grades do you supply?

C45, 42CrMo4 / 4140, 34CrNiMo6 / 1.6582, 40CrNiMoA / 4340, S355J2 and selected tool steels (H13, D2) — others on request.

What heat treatment conditions are offered?

As-forged, normalized, normalized + tempered, quenched + tempered (through-hardened), and pre-hardened conditions with certified mechanical properties.

How is internal quality guaranteed?

100% ultrasonic testing per EN 10228-3/-4 with defined acceptance classes, plus grain size, inclusions, and mechanical testing per heat and lot.

What is the difference between forged and rolled bar?

Forging breaks down the cast structure more thoroughly, giving better toughness, fatigue strength, and isotropy — the reason critical shafts and gears start from forged bar.

What is the minimum order quantity and lead time?

Stock sizes from 1–5 tons; produced sizes typically 4–10 weeks depending on diameter and testing. Contact us for a firm quotation.

Can you supply machined or pre-machined bar?

Yes — peeled/turned, cut-to-length, with rough machining allowance, or fully machined to drawing.

What documentation comes with my order?

EN 10204 3.1 MTCs, UT test reports with acceptance class, heat treatment charts, and mechanical/chemical results; 3.2 certification on request.

How should I specify bar for a critical shaft?

Provide diameter, length, grade, heat treatment, mechanical property targets, UT acceptance class, and final application — we will propose the optimum supply condition.

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