Jiangyin Jiangnan Metal Co., Ltd. — Open-Die Forging Factory No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin, Jiangsu, China
Jiangyin Jiangnan Metal Co., Ltd. Open-die forgings, seamless rolled rings, forged shafts and flanges

SNCM439 Forgings — JIS G4103 Ni-Cr-Mo Alloy Steel

Standard: JIS G4103  ·  Closest equivalent: AISI 4340  ·  Page updated:

SNCM439 is a nickel-chromium-molybdenum alloy structural steel specified in JIS G4103, closely equivalent to AISI 4340. Quenched and tempered, it reaches a minimum tensile strength of 980 MPa at 293 to 352 HBW. Jiangyin Jiangnan Metal Co., Ltd., an open-die forging factory in Jiangyin, Jiangsu, China, forges SNCM439 into rings, shafts, flanges, discs and bars to EN 10204 3.2.

  • StandardJIS G4103
  • Material groupNi-Cr-Mo alloy structural steel
  • Closest equivalentsAISI 4340, 40CrNiMoA, 817M40
  • Melting routeEAF + LF + VD (ESR on request)
  • Delivery conditionAnnealed, N+T or Q+T
  • Tensile strength, Q+T980 MPa min
  • Hardness, Q+T293 to 352 HBW
  • Elongation, Q+T16 % min
  • CertificationEN 10204 3.1 / 3.2

What SNCM439 is

SNCM439 is a medium-carbon low-alloy engineering steel with roughly 0.40 % carbon, 1.8 % nickel, 0.8 % chromium and 0.2 % molybdenum. It belongs to JIS G4103, nickel chromium molybdenum steels for machine structural use. A common error, including in earlier versions of this page, is to quote JIS G4105 instead. That standard covers the chromium-molybdenum SCM grades such as SCM440 and does not contain SNCM439.

Nickel is what separates SNCM439 from the cheaper Cr-Mo grades. It slows the transformation of austenite during the quench, so the core of a heavy section still forms martensite instead of softer bainite or pearlite. SNCM439 therefore keeps both its strength and its impact toughness in sections where 42CrMo4 or SCM440 have already fallen away. Large forged shafts, heavy gear blanks and shock-loaded drive components are the usual applications.

The grade is used almost entirely in the quenched and tempered condition. It is not a case-hardening steel. For carburised gears the equivalent choice is 18CrNiMo7-6 or 17CrNiMo6, although tooth flanks on a Q+T SNCM439 gear are often induction hardened afterwards.

Chemical composition of SNCM439

Ladle analysis limits to JIS G4103, in weight per cent. All nine elements are specified. Published versions of this table often truncate the maximum row and leave out the limits for sulphur, chromium, molybdenum and nickel.

SNCM439 chemical composition, JIS G4103 (wt %, ladle analysis)
ElementMinMaxRole in the steel
Carbon, C0.360.43Sets attainable hardness and strength
Silicon, Si0.150.35Deoxidiser, small strength contribution
Manganese, Mn0.600.90Hardenability, fixes residual sulphur
Phosphorus, P0.030Residual, limited for toughness
Sulphur, S0.030Residual, limited for transverse ductility
Nickel, Ni1.602.00Deep hardenability, low-temperature toughness
Chromium, Cr0.601.00Hardenability and temper resistance
Molybdenum, Mo0.150.30Hardenability, resists temper embrittlement
Copper, Cu0.30Residual element limit
Tighter chemistry on request. On critical forgings we hold P and S well below the JIS maxima, and we can melt to a customer-specified narrowed range. A limit of S at 0.010 % or lower is common where transverse impact properties or ultrasonic cleanliness matter. State the limits in the enquiry and they go into the heat specification before melting.

Mechanical properties of SNCM439

JIS G4103 sets the following minimum properties after quenching and tempering. These are test-piece values, measured on a standard specimen taken from a reference section.

SNCM439 mechanical properties, quenched and tempered, JIS G4103
PropertySymbolRequirement
0.2 % proof strengthRp0.2885 MPa min (90 kgf/mm²)
Tensile strengthRm980 MPa min (100 kgf/mm²)
ElongationA16 % min
Reduction of areaZ45 % min
Impact energy (U-notch)69 J/cm² min (7 kgf·m/cm²)
HardnessHBW293 to 352
Annealed delivery hardnessHBW250 max
Section size changes what you can expect. A 1,000 mm diameter shaft will not reach 980 MPa at its centre whatever the heat treatment, because the quench cannot pull heat out of the core fast enough. On heavy sections we agree the tested section size and the sampling position before the order is confirmed. That usually means mid-radius and mid-thickness sampling to EN 10083-1, or a test prolongation forged onto the part itself. A supplier who quotes full test-piece figures for a one-metre section without qualifying them is quoting numbers he cannot hit.

Heat treatment of SNCM439 forgings

SNCM439 heat treatment parameters
OperationTemperatureCoolingResulting condition
Forging1,050 to 1,200 °CFinish above 850 °C, then slow or furnace coolAs-forged
Annealing820 to 860 °CFurnace cool250 HBW max, machinable
Normalising820 to 870 °CAir coolRefined, uniform grain
Hardening820 to 870 °COil quenchMartensitic, as-quenched
Tempering580 to 680 °CRapid cool, water or oil293 to 352 HBW, Q+T
Stress relievingAbout 30 °C below final temperSlow coolAfter rough machining or welding

Why tempering must be followed by rapid cooling

Nickel-chromium-molybdenum steels of this type suffer temper embrittlement if they are held in, or cooled slowly through, the range from about 375 to 575 °C. Phosphorus and other tramp elements segregate to the prior-austenite grain boundaries and the impact transition temperature climbs, sometimes by tens of degrees, with no change in hardness or tensile strength to warn you. The part passes its tensile test and then fails in service. Three things prevent it: low phosphorus at the melt, molybdenum towards the top of its range, and a quench straight out of the tempering furnace rather than a slow cool inside it. Every SNCM439 charge we heat treat is handled this way.

SNCM439 international equivalents

SNCM439 corresponds most closely to AISI/SAE 4340. The grades below are the nearest national equivalents.

SNCM439 cross-reference to international grades
Country / standardGradeCloseness
Japan, JIS G4103SNCM439Reference grade
USA, ASTM A29 / SAE-AISI4340 (UNS G43400)Very close
China, GB/T 307740CrNiMoAVery close
UK, BS 970817M40 (EN24)Very close
Russia, GOST 454340KhN2MAVery close
Italy, UNI 784540NiCrMo7Close
France, AFNOR40NCD7Close
Germany, EN 10083-334CrNiMo6 (1.6582), 36CrNiMo4 (1.6511)Similar, ranges differ
Australia, AS 14444340Very close
Equivalent is not identical. 34CrNiMo6 carries more chromium and less carbon than SNCM439, and 4340 has a narrower chromium band. Where a drawing names one grade and the application is safety-critical or code-governed, ask us to melt a dual-certified chemistry that satisfies both specifications rather than substituting one for the other. We do this regularly for SNCM439 with 4340, and for SNCM439 with 40CrNiMoA.

SNCM439 forged product forms

All of the following are produced by open-die forging or radial ring rolling. No castings, no welded fabrications.

SNCM439 forged products and typical applications
Product formTypical application
Seamless rolled ringsGear blanks, bearing races, flange rings
Forged rings, open dieSlewing rings, retaining rings
Forged shafts and spindlesDrive shafts, eccentric shafts, rotor shafts
Forged round barsMachining stock, pins, bolts, valve stems
Forged discs and blanksGear blanks, coupling hubs, blind flanges
Forged flangesPressure joints, pump and valve bodies
Forged sleeves and bushingsBearing housings, wear sleeves
Forged blocks and rectanglesDie blocks, valve bodies, manifolds

Sizes are confirmed against your drawing. Send the outside diameter, inside diameter and height for a ring, or the diameter and length for a shaft, and we will confirm by return whether it can be forged in one piece and what the rough weight will be.

How we make SNCM439 forgings

1. Melting

EAF + LF + VD as standard. Vacuum degassing removes the hydrogen that causes flaking in heavy Ni-Cr-Mo sections, and lowers oxygen and inclusion content.

ESR is available where the application calls for maximum cleanliness and uniformity.

2. Forging

Open-die forging with a controlled forging ratio, so the as-cast structure is fully broken down and the grain flow follows the contour of the part.

  • Heating 1,050 to 1,200 °C
  • Finish temperature above 850 °C
  • Controlled cooling after forging

3. Heat treatment

Annealing, normalising, or quenching and tempering in our own furnaces. Every charge carries a recorded and traceable time and temperature chart.

Tempering is followed by a rapid cool, for the reason set out above.

4. Machining

Rough turning, boring and facing to your machining allowance, or finish machining to drawing where you would rather receive a part ready to fit.

Inspection, testing and certification

Standard test and inspection scope for SNCM439 forgings
TestStandardNotes
Chemical analysisOptical emission spectrometryLadle and product analysis
Tensile testISO 6892-1, ASTM A370, JIS Z 2241Sampling position agreed per order
Impact testISO 148-1, ASTM E23Charpy V or U notch, room or sub-zero
HardnessISO 6506, ASTM E10Brinell, multi-point survey
Ultrasonic testingEN 10228-3, SEP 1921, ASTM A388Acceptance class stated on the order
Magnetic particleEN 10228-1, ASTM E709Surface and near-surface indications
Grain sizeASTM E112On request
Dimensional reportPer drawingIssued with every shipment
CertificateEN 10204 3.1 or 3.23.2 witnessed by TUV, SGS, BV, DNV or LR

Every SNCM439 forging leaves the works with full heat-number traceability. The certificate ties the part back through the heat treatment charge records and the NDT reports to the original melt analysis.

SNCM439 applications by industry

Power transmission

  • Gear blanks and forged gear rings
  • Pinion and rotor shafts
  • Gearbox and reducer shafts
  • Coupling hubs and flange couplings

Oil, gas and petrochemical

  • Valve bodies, stems, seats and blocks
  • Wellhead and Christmas-tree components
  • Drill-string and subsea connectors
  • Pump shafts and plunger components

Heavy machinery and mining

  • Eccentric shafts for crushers
  • Mill pinions and drive shafts
  • Forged rolls and wheels
  • Slewing and retaining rings

Marine, energy and general

  • Propeller and intermediate shafts
  • Turbine and compressor shafting
  • High-tensile bolting and studs
  • Crankshafts and connecting components

SNCM439 is specified for these parts where high tensile strength, deep hardening response and impact toughness are needed in one material, usually on shock-loaded rotating components in heavy sections. Where corrosion rather than load governs, a stainless grade such as 17-4PH is the better answer.

Frequently asked questions about SNCM439

What standard covers SNCM439?

SNCM439 is specified in JIS G4103, the Japanese Industrial Standard for nickel chromium molybdenum steels for machine structural use. It is not covered by JIS G4105, which applies to the chromium molybdenum SCM grades such as SCM440.

Is SNCM439 the same as AISI 4340?

They are close equivalents, not identical grades. SNCM439 allows a wider band on carbon at 0.36 to 0.43 % against 0.38 to 0.43, on chromium at 0.60 to 1.00 % against 0.70 to 0.90, and on molybdenum at 0.15 to 0.30 % against 0.20 to 0.30. For most quenched and tempered forgings the two behave the same. Where a drawing calls out 4340 by name, ask for a dual-certified heat that meets both chemistries rather than accepting a substitution.

What is the tensile strength of SNCM439?

Quenched and tempered, JIS G4103 requires a minimum tensile strength of 980 MPa, a minimum 0.2 % proof strength of 885 MPa, elongation of at least 16 %, reduction of area of at least 45 %, and hardness of 293 to 352 HBW. Those figures apply to the standard test piece. Heavy sections read lower at the core, so the tested section size and the sampling position should be agreed before the order is placed.

What is the difference between SNCM439 and SCM440?

SNCM439 carries 1.60 to 2.00 % nickel. SCM440, a chromium molybdenum grade, carries none. The nickel gives SNCM439 deeper hardenability and better toughness at low temperature, so it holds its properties through heavier sections. SCM440 is the cheaper choice up to about 100 mm section. Above that, or where impact toughness governs, SNCM439 is the grade to use.

Can SNCM439 be welded?

Only with care. The carbon equivalent is high and the heat-affected zone is prone to hydrogen cracking. Weld in the annealed or normalised condition, use low-hydrogen consumables, hold preheat and interpass temperature at 250 to 350 °C, and follow with post-weld heat treatment about 30 °C below the final tempering temperature. Welding fully hardened and tempered material is not recommended. Where a welded joint cannot be avoided, discuss the procedure with us before the forging is designed.

Which material certificates can you supply for SNCM439 forgings?

EN 10204 3.1 certificates issued by our own inspection department, and EN 10204 3.2 certificates witnessed by a third party such as TUV, SGS, BV, DNV or Lloyd's Register. Certificates cover heat chemistry, mechanical test results, heat treatment records, ultrasonic testing results and full heat-number traceability.

How is SNCM439 heat treated?

Anneal at 820 to 860 °C with furnace cooling to below 250 HBW for machining. Normalise at 820 to 870 °C with air cooling. Harden from 820 to 870 °C in oil and temper at 580 to 680 °C. Cool quickly out of the tempering furnace. Holding nickel chromium molybdenum steel in the 375 to 575 °C range brings on temper embrittlement, which raises the impact transition temperature without changing the hardness.

What information do you need to quote SNCM439 forgings?

A drawing or the rough dimensions, the quantity, the delivery condition you need as annealed, normalised or quenched and tempered, the machining allowance, the NDT standard and acceptance class, and the certificate level. Email sales@steelforgepieces.com or call +86 189 2135 9659. If you are not sure of some of these, send the drawing and we will propose a specification.

About the supplier

Jiangyin Jiangnan Metal Co., Ltd. is an open-die forging factory at No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China. We produce forged rings, seamless rolled rings, shafts, flanges, discs, bars, sleeves and tube sheets in carbon, alloy, tool, stainless and nickel-alloy grades, including SNCM439 to JIS G4103. Material is melted by EAF + LF + VD, forged and heat treated in house, and released against EN 10204 3.1 or third-party-witnessed EN 10204 3.2 certificates.

Company
Jiangyin Jiangnan Metal Co., Ltd.
Address
No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China
Telephone
+86 189 2135 9659
Email
sales@steelforgepieces.com
Website
www.steelforgepieces.com

Request a quotation for SNCM439 forgings

Send us the following and you will have a price and a lead time rather than a form letter:

  • Drawing, or outside diameter, inside diameter and height for a ring
  • Quantity, and whether this is a one-off or a repeat order
  • Delivery condition: annealed, normalised, or quenched and tempered
  • Machining allowance, or finish machined to drawing
  • NDT standard and acceptance class, and certificate level under EN 10204 3.1 or 3.2

Email sales@steelforgepieces.com Call +86 189 2135 9659