SKD11 Forgings, JIS G4404 Cold Work Tool Steel (AISI D2 / DIN 1.2379)
Open-die forged round bars, square and flat bars, seamless rolled rings, hollow bars, sleeves, blocks, discs and plates, produced to drawing by Jiangyin Jiangnan Metal Co., Ltd., Jiangyin, Jiangsu, China.
SKD11 is a high-carbon, high-chromium ledeburitic cold work tool steel standardised in JIS G4404. It carries about 1.50 % carbon and 12 % chromium, with molybdenum and vanadium added. The large volume of chromium carbides it forms gives high resistance to abrasive wear, high compressive strength and little movement during hardening. SKD11 is the Japanese equivalent of AISI D2, DIN 1.2379 (X153CrMoV12) and GB Cr12Mo1V1, and it is the usual grade for long-run blanking, piercing and forming dies, shear blades, thread rolling dies and cold extrusion tooling.
Jiangyin Jiangnan Metal Co., Ltd. is an open-die forging factory at No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China. We forge SKD11 to customer drawing as bars, rings, hollow sections, blocks and discs, supplied soft annealed to max. 255 HB with an EN 10204 3.1 mill test certificate. Enquiries to sales@steelforgepieces.com or +86 189 2135 9659.
Standard
JIS G4404
Steel type
Cold work tool steel
Nominal chemistry
1.50 % C, 12 % Cr
Delivery condition
Soft annealed, max. 255 HB
Working hardness
58 to 62 HRC
Equivalents
D2, 1.2379, Cr12Mo1V1
Manufacturing route
Open-die forging, ring rolling
Certificate
EN 10204 3.1
What is SKD11 tool steel?
SKD11 is a 12 % chromium, 1.5 % carbon cold work tool steel defined by the Japanese Industrial Standard JIS G4404 (alloy tool steels). It sits in the ledeburitic chromium tool steel family, alongside AISI D2 and DIN 1.2379. As the steel solidifies and is then hot worked, it builds a dense spread of primary and secondary chromium carbides of the (Cr,Fe)7C3 and M23C6 types, taking up roughly 14 to 18 % of the volume. Those carbides are far harder than the martensite around them, and they are the reason SKD11 stands up to abrasive wear better than lower-alloyed cold work grades.
For a tool designer the choice comes down to one thing. SKD11 is picked when abrasive wear is what ends tool life and the run is long enough to pay for a harder, dearer die material. It is not the grade for heavy impact work: at 60 HRC its toughness is modest, and shock-loaded tooling normally does better in SKD61 or one of the 6 % chromium modified types.
Why the grade behaves the way it does
Carbon at 1.40 to 1.60 % leaves enough free carbon to build a large carbide volume and to take the matrix to roughly 62 to 64 HRC as quenched.
Chromium at 11 to 13 % forms the primary carbides, carries hardenability deep into the section, and adds some stain resistance on a polished face.
Molybdenum at 0.80 to 1.20 % lifts hardenability and feeds secondary hardening at high tempering temperatures.
Vanadium at 0.20 to 0.50 % refines the grain, forms very hard MC carbides and sharpens the secondary hardening peak.
Air-hardening behaviour keeps dimensional movement small in heat treatment, which is why precision dies in SKD11 need only light finish grinding.
Chemical composition of SKD11
The table gives the SKD11 chemical composition set by JIS G4404, next to the aim analysis we work to. Ladle and product analyses are reported on the mill test certificate with every order.
Table 1. Chemical composition of SKD11, weight %, JIS G4404
Element
JIS G4404 specification
Typical aim analysis
Function in the steel
Carbon (C)
1.40 to 1.60
1.50
Carbide formation, matrix hardness
Silicon (Si)
max 0.40
0.30
Deoxidation, slight solid-solution strengthening
Manganese (Mn)
max 0.60
0.40
Hardenability, sulphur control
Phosphorus (P)
max 0.030
max 0.025
Residual, held low for toughness
Sulphur (S)
max 0.030
max 0.020
Residual, held low for transverse toughness
Chromium (Cr)
11.00 to 13.00
12.00
Primary carbides, hardenability, stain resistance
Molybdenum (Mo)
0.80 to 1.20
0.90
Hardenability, secondary hardening
Vanadium (V)
0.20 to 0.50
0.35
Grain refinement, MC carbides
Iron (Fe)
Balance
Balance
Matrix
Note on vanadium. JIS G4404 puts vanadium at 0.20 to 0.50 % for SKD11. ASTM A681 allows 0.50 to 1.10 % for D2, and DIN 1.2379 calls for 0.70 to 1.00 %. Material sold internationally as SKD11 is often made to the 1.2379 analysis. If your tool depends on the secondary hardening response, name the governing standard on the purchase order and we will forge to that analysis.
SKD11 equivalent grades cross-reference
SKD11 is equivalent to AISI D2, DIN 1.2379 and GB Cr12Mo1V1. Below are the national and proprietary designations accepted as interchangeable for most cold work tooling. The match is a working one rather than an exact one, for the reason given in the vanadium note above.
Table 2. International equivalents of SKD11 cold work tool steel
Region / standard
Designation
Notes
Japan, JIS G4404
SKD11, also written SKD-11
Reference grade on this page
USA, ASTM A681 / AISI
D2
Wider V range (0.50 to 1.10 %), up to 1.00 % W permitted
Germany, DIN / EN ISO 4957
1.2379, X153CrMoV12, X155CrVMo12-1
V 0.70 to 1.00 %; the common European supply analysis
China, GB/T 1299
Cr12Mo1V1
Direct national equivalent of D2
UK, BS 4659
BD2
Withdrawn standard, still quoted on legacy drawings
The values below are typical for SKD11 hardened and tempered, unless the table says otherwise. Treat them as design figures, not acceptance values. Guaranteed properties are agreed order by order and reported on the test certificate.
Coefficient of thermal expansion (10-6/K, from 20 °C)
11.5
12.2
Specific heat capacity (J/kg·K)
460
Table 4. Hardness and strength of SKD11 by condition
Condition
Hardness
Comment
Soft annealed, as delivered
max. 255 HB
Machinable condition, our standard delivery state
As quenched
62 to 64 HRC
Before tempering. Temper without delay
Quenched, low temper 180 to 200 °C
60 to 62 HRC
Maximum wear resistance
Quenched, tempered 200 to 250 °C
58 to 61 HRC
Common general-purpose die hardness
Secondary hardened 480 to 520 °C
58 to 60 HRC
Best dimensional stability, needed before nitriding or PVD coating
Tempered for toughness, 550 °C
54 to 56 HRC
Shock-loaded tools, heavy shear blades
Tensile strength at working hardness
about 2 100 to 2 400 MPa
Indicative. SKD11 is bought on hardness, not tensile
Heat treatment of SKD11
The cycle for SKD11 runs: soft anneal at 830 to 870 °C, stress relieve after rough machining at 600 to 650 °C, austenitise at 1020 to 1030 °C, quench in oil, nitrogen, air or a hot bath, then double temper. Each step is set out below.
1. Soft annealing
Heat evenly to 830 to 870 °C under a protective atmosphere, soak through the section, then cool in the furnace at 10 to 20 °C per hour down to about 600 °C, and in air after that. Hardness comes out at max. 255 HB. All our SKD11 forgings leave the works in this condition unless a different state is ordered.
2. Stress relief annealing
After rough machining, heat to 600 to 650 °C, hold 2 hours, cool slowly in the furnace to 500 °C and in still air after that. Worth doing on any precision die: it takes out machining stresses that would otherwise show up as distortion once the tool is hardened.
3. Preheating and austenitising
Preheat in two stages, normally 600 to 650 °C and then 850 to 900 °C, to keep thermal shock out of the section. Austenitise according to what you want from the tool:
Table 5. Austenitising and quenching of SKD11
Parameter
Route A, maximum toughness
Route B, secondary hardening
Austenitising temperature
1 020 to 1 030 °C
1 040 to 1 080 °C
Soaking time
30 to 60 min, by section
30 to 60 min, by section
Quenching medium
Oil, pressurised N2, still air, or hot bath at 500 to 550 °C
Oil, pressurised N2, still air, or hot bath
Tempering
Normally below 300 °C
480 to 520 °C, double or triple temper
Typical result
60 to 62 HRC, best toughness
58 to 60 HRC, stable dimensions, ready for coating
4. Tempering
Temper as soon as the part reaches 50 to 70 °C. Do not leave a quenched SKD11 tool overnight untempered. Hold a minimum of 2 hours per cycle and always temper at least twice. Hardness after tempering runs roughly as follows:
Table 6. SKD11 tempering chart, approximate, after hardening from 1 020 to 1 030 °C
Tempering temperature
Resulting hardness
Typical use
180 °C
61 to 63 HRC
Maximum wear resistance, fine blanking
200 °C
60 to 62 HRC
General blanking and piercing dies
250 °C
59 to 61 HRC
Forming dies, punches
300 °C
57 to 59 HRC
Heavier sections
400 °C
56 to 58 HRC
Rarely used, temper embrittlement range
480 to 520 °C
58 to 60 HRC
Secondary hardening peak, needed before nitriding or PVD/CVD coating
550 °C
54 to 56 HRC
Shear blades, shock-loaded tooling
5. Cryogenic treatment, optional
Where dimensional stability matters most, on gauges, precision progressive dies and long thin punches, deep freeze at minus 70 to minus 80 °C for 3 to 4 hours straight after quenching and before tempering. This converts retained austenite and normally lifts final hardness by 1 to 3 HRC. Temper as soon as the part is back at room temperature.
6. Surface engineering
SKD11 takes nitriding and PVD and CVD coating well, thanks to its secondary hardening behaviour. One rule governs it: the tempering temperature has to sit above the coating or nitriding temperature. That is why any tool destined for coating goes down Route B, with a 480 to 520 °C temper.
How we forge SKD11
SKD11 is one of the harder grades to forge. High carbon and high chromium mean the as-cast structure carries a coarse ledeburitic carbide network, and carbide banding is the most common metallurgical reason a die cracks early. Our process is built around breaking that network down.
Table 7. SKD11 open-die forging practice
Stage
Practice
Raw material
Electric-arc melted ingot with ladle refining and vacuum degassing (EAF, LF, VD). Electro-slag remelted (ESR) ingot on request for critical or large-section tooling.
Heating
Slow, even heating with holding stages to keep cracking out. Forging starts at 1 050 to 1 100 °C and finishes above 900 °C.
Deformation
Multi-directional upsetting and drawing out, to reach the reduction ratio needed to break up and redistribute the primary carbides. Forging ratio agreed per order and recorded.
Post-forge cooling
Controlled slow cooling straight into the annealing furnace. Never air cooled from finish temperature, which risks quench cracking in this grade.
Annealing
Soft annealing at 830 to 870 °C with controlled furnace cooling to max. 255 HB, giving a spheroidised carbide structure that machines cleanly.
Machining allowance
Rough turned, milled or peeled to the agreed allowance. Black forged surface where the customer machines all over.
Forging is also the only sensible route to the shapes that cannot be rolled: large-diameter bars, seamless rolled rings, hollow sections and heavy blocks. Because each piece is forged to order there is no stock-size compromise. The forging is sized to your drawing, which cuts machining time and bought weight.
SKD11 product forms and size range
We produce SKD11 in the forged forms listed below, each made to order against drawing or specification. Sizes outside these ranges are often possible and worth asking about.
Table 8. SKD11 forged product forms and indicative size range
Hot work: die casting, hot forging, extrusion. Thermal fatigue rather than abrasion
A rule of thumb our tooling customers use: if an SKD11 die is wearing out, go harder or coat it. If an SKD11 die is cracking or chipping, the grade is wrong, so move to a tougher, lower-carbide type rather than softening the temper.
Quality control, testing and certification
Every SKD11 forging is released against an EN 10204 3.1 mill test certificate issued by our own quality department and traceable to the heat number stamped on the piece.
Chemical analysis by optical emission spectrometry, ladle and product
Ultrasonic testing to EN 10228-3 or ASTM A388, acceptance class agreed per order
Brinell or Rockwell hardness, position and number of readings per specification
Dimensional inspection against drawing before packing
Annealed microstructure and carbide distribution check on request
Third-party inspection by SGS, BV, TUV or customer representative on request
What to send with your enquiry
To get an accurate quotation back first time we need: the drawing or the finished dimensions and machining allowance, the quantity, the governing standard (JIS G4404, ASTM A681 or DIN 1.2379), the delivery condition and hardness, any UT class, and the destination port. Drawings in DWG, DXF, STEP or PDF are all fine.
Frequently asked questions about SKD11
What is SKD11 steel?
SKD11 is a high-carbon, high-chromium ledeburitic cold work tool steel specified in the Japanese standard JIS G4404. It carries about 1.50% carbon and 12% chromium with molybdenum and vanadium added, and it forms a large volume of hard chromium carbides that give high abrasion resistance, high compressive strength and little dimensional movement in heat treatment.
What is the equivalent of SKD11?
SKD11 is equivalent to AISI/ASTM D2 in the United States, DIN 1.2379 (X153CrMoV12) in Germany and Europe, Cr12Mo1V1 in China under GB/T 1299, and BD2 in the withdrawn British standard BS 4659. Trade names in the same family include Uddeholm Sverker 21, Bohler K110, Daido DC11 and Hitachi SLD. The match is a working one rather than an exact one, because the three main standards set different vanadium ranges.
What hardness can SKD11 reach?
SKD11 comes out of the quench at roughly 62 to 64 HRC. After tempering the working hardness is normally 58 to 62 HRC. Tempering at 180 to 200 C holds 60 to 62 HRC for maximum wear resistance, while secondary hardening at 480 to 520 C gives 58 to 60 HRC and better dimensional stability. In the annealed delivery condition it is supplied at max. 255 HB.
Is SKD11 the same as D2?
They are used interchangeably in most cold work tooling, but they are not identical. JIS G4404 sets vanadium at 0.20 to 0.50% for SKD11, ASTM A681 allows 0.50 to 1.10% for D2, and DIN 1.2379 calls for 0.70 to 1.00%. D2 also permits up to 1.00% tungsten. The higher-vanadium versions give finer carbides and a stronger secondary hardening response, so name the governing standard on the purchase order if that matters to your tool.
Can SKD11 be welded?
SKD11 welds badly because of its high carbon and chromium content, and it is not a grade for structural welding. Repair welding on dies works if the part is preheated to 200 to 300 C, a matching or tool-steel filler is used at low heat input, and the tool is stress relieved straight afterwards at roughly 20 C below the last tempering temperature.
What is SKD11 used for?
SKD11 goes into blanking, piercing and forming dies, shear blades and slitting cutters, thread rolling dies, cold extrusion and deep drawing tools, punches, lamination dies, wear plates, knurling tools, tyre shredder and scrap chopper knives, seaming rolls, gauges, and plastic moulds running abrasive polymers. It is the usual pick where abrasive wear is what ends tool life and the production run is long.
What forged shapes are available in SKD11?
Jiangyin Jiangnan Metal Co., Ltd. supplies SKD11 as open-die forged round bars, square and flat bars, step shafts and rolls, seamless rolled rings, hollow bars, sleeves, bushings and cylinders, and as forged blocks, discs and plates. Non-standard cross sections and near-net shapes are forged to customer drawing.
Why choose a forged SKD11 bar instead of a rolled bar?
Open-die forging at a sufficient reduction ratio breaks up the as-cast ledeburitic carbide network, refines and redistributes the carbides and closes internal porosity. Carbide banding is the main metallurgical reason dies in this grade crack early, so a properly forged and annealed bar holds hardness more evenly, keeps better toughness across the section and moves more predictably in heat treatment. Forging is also the only sensible route to large sections, rings and hollow shapes.
What certification is supplied with SKD11 forgings?
Every order ships with an EN 10204 3.1 mill test certificate covering heat number, ladle and product chemical analysis, delivery hardness, dimensions and ultrasonic test results. Third-party inspection by SGS, BV, TUV or a customer representative can be arranged on request.
How should SKD11 be machined?
Machine SKD11 in the soft annealed condition at max. 255 HB. Keep the setup rigid, use positive-rake coated carbide inserts at moderate cutting speed, and take a generous depth of cut so the edge stays under any work-hardened layer. Leave 0.2 to 0.5 mm grinding stock per surface for finishing after hardening, and stress relieve at 600 to 650 C between roughing and finishing on precision tools.
What is the minimum order quantity and lead time for SKD11 forgings?
Open-die forged SKD11 is made to order. Send the drawing or the dimensions you need, the quantity, the standard and the delivery condition to sales@steelforgepieces.com, or call +86 189 2135 9659, and we come back with a quotation stating the minimum quantity and the production lead time, normally within one working day.
Who manufactures SKD11 forgings in China?
Jiangyin Jiangnan Metal Co., Ltd. is an open-die forging factory at No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China, producing SKD11 alongside other tool, alloy, carbon, stainless and nickel-alloy forgings for export worldwide. Contact sales@steelforgepieces.com or +86 189 2135 9659.
About the manufacturer
Jiangyin Jiangnan Metal Co., Ltd. is an open-die forging factory at No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China. Jiangyin sits in the Yangtze River delta between Shanghai and Nanjing, in one of the densest special-steel and forging clusters anywhere, with the ports of Shanghai and Ningbo inside a day's haulage.
We are a producer, not a trading company. Work is forged on our own presses and shipped against our own mill test certificates, so the heat number on the certificate is the heat we forged. The plant covers carbon steel, alloy steel, tool and die steel, stainless steel and nickel alloys, in the same six product forms listed above: bars, shafts and rolls, seamless rolled rings, hollow sections, blocks and discs. Export documentation, third-party inspection and seaworthy packing are day-to-day work here.
Company: Jiangyin Jiangnan Metal Co., Ltd.
Type: Open-die forging factory, manufacturer
Address: No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China
Technical data sheet for SKD11 / JIS G4404 cold work tool steel forgings,
published by Jiangyin Jiangnan Metal Co., Ltd.
Last reviewed .
Composition and heat treatment data compiled from JIS G4404, ASTM A681 and EN ISO 4957.
Typical values are indicative for design purposes and are not guaranteed acceptance values.
Guaranteed properties are agreed per order and reported on the mill test certificate.
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