Jiangyin Jiangnan Metal Co., Ltd. Open-Die Forging Factory · Jiangyin, Jiangsu, China 0086-189-2135-9659 sales@steelforgepieces.com
Jiangyin Jiangnan Metal Co., Ltd. Open-die forgings · Seamless rolled rings · Made to drawing

Nickel & special alloy forgings · Technical datasheet

X2NiCrMoTi10-10-5 Forgings

Seamless rolled rings, forged flanges, round bars, discs, shafts, sleeves, bushings and tube sheets in X2NiCrMoTi10-10-5, forged to your drawing.

X2NiCrMoTi10-10-5 is a low-carbon, age-hardening martensitic stainless steel containing roughly 10 % chromium, 10 % nickel and 5 % molybdenum with a titanium addition, supplied to the DIN designation and hardened by intermetallic precipitation during ageing rather than by carbon. Jiangyin Jiangnan Metal Co., Ltd., an open-die forging factory at No. 1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China, forges X2NiCrMoTi10-10-5 into seamless rolled rings, flanges, discs, shafts, bars, sleeves, bushings, tube sheets and custom shapes, melted by EAF + VOD + ESR, solution treated and aged, ultrasonically tested and certified to EN 10204 3.1 or 3.2.

Designation

X2NiCrMoTi
10-10-5

Type

Maraging
stainless

Standard

DIN

Melt route

EAF+VOD
+ESR

Tensile, aged

~1380 MPa
200 ksi

Certificate

EN 10204
3.1 / 3.2

Send drawing for a quote Call 0086-189-2135-9659

Seamless rolled ring geometry forged in X2NiCrMoTi10-10-5 Plan view and cross-section of an open-die forged seamless rolled ring, showing outside diameter, inside diameter, wall and height. ID OD H wall PLAN VIEW SECTION THROUGH RING
Ring envelope forged in X2NiCrMoTi10-10-5. Rings are pierced and rolled so that grain flow follows the hoop direction, which is the main advantage of a seamless rolled ring over a cut plate or a welded ring.

What is X2NiCrMoTi10-10-5?

X2NiCrMoTi10-10-5 is a low-carbon, nickel-chromium-molybdenum-titanium martensitic stainless steel of the maraging type. The name follows the European steel naming convention: X marks a high-alloy steel, the figure 2 is one hundred times the carbon content, so 0.02 % nominal with a 0.03 % maximum, and the numbers 10-10-5 give the approximate nickel, chromium and molybdenum contents in percent, in the order the element symbols appear. Titanium is named because it is a deliberate ageing addition and not a residual.

Unlike a conventional quenched-and-tempered stainless steel, this grade carries almost no carbon, so it does not depend on carbides for strength. Instead it is solution treated to a soft, tough, essentially carbon-free martensite that can be machined, and then aged at low temperature so that fine intermetallic compounds based on nickel, titanium and molybdenum precipitate through the matrix. This is why maraging-type steels reach very high strength with better toughness than a carbon-hardened steel at the same strength level, and why they move very little during the hardening step.

The chromium and molybdenum additions are what separate this grade from the classic non-stainless maraging steels such as X2NiCoMo18-9-5 (Maraging 250). Around 10 % chromium gives a passive film and a useful level of corrosion resistance, while about 5 % molybdenum feeds the strengthening precipitates and improves resistance to pitting in chloride-bearing service. Strength is lower in return. The grade is aimed at roughly 1380 MPa (200 ksi) tensile, below what an 18 % nickel cobalt-bearing maraging steel reaches, but it carries an above-average level of toughness and it has corrosion resistance the cobalt grades do not.

Jiangyin Jiangnan Metal supplies X2NiCrMoTi10-10-5 as forged product only: open-die forgings and seamless rolled rings made to drawing. Forging closes internal porosity from the ingot and aligns the grain flow with the principal stress direction of the part, which is why rotating and pressure-retaining components are forged rather than cut from plate or bar stock.

Why X2NiCrMoTi10-10-5 is specified

  • The aged condition targets about 1380 MPa (200 ksi) tensile strength while keeping an above-average level of toughness for that strength level.
  • Roughly 10 % chromium and about 5 % molybdenum give a passive surface and better pitting resistance than a plain maraging steel, so parts can run in wet, chloride-bearing and mildly acidic process streams.
  • Parts are cut in the solution-treated condition and aged afterwards at low temperature. Dimensional movement during ageing is small compared with quenching a carbon-hardened steel, so close-tolerance components need little or no finishing after hardening.
  • Carbon is held to 0.03 % maximum, so the grain-boundary carbide problems that limit welded high-carbon martensitic stainless steels do not arise in the same way.
  • The EAF + VOD + ESR route we buy to keeps sulphur, phosphorus and non-metallic inclusion levels low. A very high strength matrix concentrates stress around inclusions, so melt cleanliness controls fatigue life in this grade.
  • As an open-die forging shop we produce rings, discs and shafts far larger than the standard bar sizes this grade is normally stocked in.

X2NiCrMoTi10-10-5 is a strength grade with moderate chromium. It does not replace a corrosion-resistant nickel alloy. For strongly reducing acids, hot concentrated sulphuric or hydrochloric service, or sour service governed by NACE MR0175 and ISO 15156 hardness limits, ask us about Hastelloy C-276, Alloy 59 or Inconel 625 forgings instead.

Chemical composition of X2NiCrMoTi10-10-5

The table below is the specification range we forge to. Every heat is supplied with a ladle analysis on the mill certificate, and a product analysis taken from the forging itself can be added on request.

Table 1. X2NiCrMoTi10-10-5 chemical composition, weight percent
ElementSymbolMinMaxFunction in the alloy
CarbonC—0.03Held low on purpose. Strength comes from intermetallic precipitation, not carbides.
SiliconSi—0.30Residual from deoxidation; capped to protect toughness.
ManganeseMn—0.30Residual; capped to protect toughness.
ChromiumCr8.5010.50Forms the passive film. This is what makes the grade stainless.
NickelNi8.5011.00Stabilises the tough low-carbon martensite and feeds the Ni-Ti precipitates.
MolybdenumMo4.505.50Precipitation hardening plus pitting and crevice corrosion resistance.
TitaniumTi0.501.00Principal ageing element; forms the fine intermetallic phase that carries the strength.
IronFeBalanceBalanceMatrix.

Source: Jiangyin Jiangnan Metal Co., Ltd., X2NiCrMoTi10-10-5 forging specification. Where your drawing or end-user specification imposes tighter limits, or adds limits for phosphorus, sulphur, aluminium, cobalt or nitrogen, we buy the heat to your limits and report them on the certificate. Send us the governing specification with your enquiry so the ladle analysis is checked against it before the ingot is released.

Mechanical properties of forged X2NiCrMoTi10-10-5

In the solution-treated and aged condition X2NiCrMoTi10-10-5 is aimed at a nominal tensile strength of about 1380 MPa (200 ksi). That is high in absolute terms and lower than the 18 % nickel cobalt-bearing maraging steels reach. For its strength level the grade carries an above-average level of impact and fracture toughness, and that is why it is specified for highly stressed parts that must not fail in a brittle manner.

Table 2. Typical room-temperature properties, solution treated and aged
PropertyMetricImperialTest method
Tensile strength, aged~1380 MPa~200 ksiASTM E8 / ISO 6892-1
Hardness, aged (converted)~400-420 HBW~43-45 HRCASTM E10 / E18, conversion per ASTM A370
Hardness, solution treatedmachinable conditionmachinable conditionASTM E18
ToughnessAbove average for this strength level; Charpy V-notch reported when specifiedASTM E23 / ISO 148-1
Yield strength and elongationCertified to the minima agreed on your order and reported on the mill certificateASTM E8 / ISO 6892-1

Source: Jiangyin Jiangnan Metal Co., Ltd. Values are typical for guidance and vary with section size, ageing cycle and test location. The binding figures are the acceptance minima written into your order; those are what we test to and what appears on the EN 10204 certificate. Test pieces are taken from integral or separately forged prolongations at the position your specification requires.

Melting and forging route

X2NiCrMoTi10-10-5 is melted by the EAF + VOD + ESR route: electric arc furnace melting, vacuum oxygen decarburisation to pull carbon down to the 0.03 % ceiling without burning out the chromium, then electroslag remelting to refine the solidification structure and reduce non-metallic inclusions. Electroslag remelting matters more in this grade than in an ordinary stainless steel, because a very high strength matrix concentrates stress around any inclusion, and fatigue cracks start there. Ingot is bought only against a documented melt practice; single-melt material is not accepted for rotating or pressure-retaining parts.

  1. Melt certification and ingot releaseLadle analysis, melt route and ingot identity are checked against your specification before the ingot leaves the melt shop.
  2. Billet preparation and soakingSurfaces are conditioned and the billet is soaked to a uniform through-temperature. A high-alloy billet that is not soaked through will crack on the first blow.
  3. Open-die forgingHydraulic press and hammer forging with controlled reduction ratios and reheats, finishing above the temperature at which the alloy stiffens. Grain flow is directed along the hoop for rings and along the axis for shafts.
  4. Ring rolling, upsetting or drawing to shapeRings are pierced and rolled to the finished envelope. Discs are upset and punched. Shafts are drawn between dies. All three routes give continuous grain flow rather than cut fibre.
  5. Solution treatment and ageingCharged in calibrated furnaces to the agreed cycle, with recorded time and temperature charts covering the whole load.
  6. Rough or finish machiningSupplied as-forged, rough machined with an agreed allowance, or finish machined to drawing tolerance.
  7. Non-destructive and mechanical testingUltrasonic testing to EN 10228-3, SEP 1921 or ASTM A388, surface NDT as specified, plus tensile and hardness testing from prolongations.
  8. Marking, certification and packingHard-stamped heat number and part identification, EN 10204 3.1 certificate, or 3.2 counter-signed by a third party, then seaworthy packing.

Heat treatment of X2NiCrMoTi10-10-5 forgings

The grade is hardened in two stages. Solution treatment produces a soft, tough, low-carbon martensite that machines well. Low-temperature ageing then precipitates the fine nickel-titanium-molybdenum intermetallic phase that carries the strength. Because ageing happens at a few hundred degrees rather than at quenching temperature, dimensional movement is small, so the normal production sequence is solution treatment, machining, ageing, then light finishing. We can also run the solution treatment and the ageing together when the part needs no intermediate machining.

Table 3. Indicative process windows for X2NiCrMoTi10-10-5
StageIndicative temperaturePurpose
ForgingStart ~1150-1200 °C, finish above ~900 °CBreak down the cast structure and develop grain flow.
Solution treatment~820-900 °C, air or oil coolDissolve the ageing elements and produce soft, machinable martensite.
Sub-zero treatment, optionalBelow room temperatureComplete the transformation where retained austenite must be minimised.
Ageing~480-540 °C, several hours, air coolPrecipitate the intermetallic phase and develop full strength.

These windows are indicative for this alloy family and are published for planning purposes. The cycle we run is the one written in your specification, drawing or end-user procedure, and it is agreed in writing before production starts. Ageing temperature and time set the final strength and toughness, so send the property targets and the governing standard with your enquiry. Furnace charts for every cycle are issued with the mill certificate.

X2NiCrMoTi10-10-5 forged forms and size capability

Everything is made to your drawing or dimensional sketch. There is no fixed catalogue and no standard stock list. The table below covers the envelope we forge regularly; anything outside it is quoted case by case.

Table 4. X2NiCrMoTi10-10-5 product forms and size range
Forged formSize rangeTypical use
Seamless rolled ringsOD 200-3000 mm, H up to 800 mmCasing rings, spacer rings, flange blanks, bearing races
Forged discs and blanksDia. 150-2000 mmDiscs, blind flanges, tube sheets, gear blanks
Shafts and spindlesDia. 80-1000 mm, L up to 6000 mmPump shafts, drive spindles, eccentric shafts, stub shafts
Round bars and forging stockDia. 20-600 mmMachining stock, valve stems, fasteners, plungers
Forged flangesDN 15-1500, to ASME B16.5 / B16.47 / EN 1092-1Piping, pressure vessels, exchangers
Sleeves, bushings, hollow barsOD 100-1000 mmWear sleeves, bearing housings, liners, bushings
Blocks and rectanglesUp to 600 x 1200 mm sectionValve bodies, manifolds, die blocks
Tube sheets and nozzlesDia. up to 2500 mmShell and tube heat exchangers, pressure vessels
Single-piece weight10 kg to 8000 kgHeavier pieces quoted case by case

Source: Jiangyin Jiangnan Metal Co., Ltd. Delivery conditions: as-forged, solution treated, solution treated and aged, rough machined with an agreed allowance, or finish machined to drawing. We also forge the same shapes in 17-4PH, 15-5PH and PH13-8Mo when a lower strength level or a different specification is acceptable.

Where X2NiCrMoTi10-10-5 forgings are used

The grade goes into parts that carry high stress, must not fail in a brittle manner, and sit in a wet or mildly corrosive environment where a plain maraging steel or a low-alloy steel would rust. Below are the duties our X2NiCrMoTi10-10-5 forgings are most often ordered for.

Pumps and fluid handling

Highly stressed rotating and reciprocating parts in wet service, where strength sets the shaft diameter and corrosion sets the material.

pump shafts · plunger pump rods · seamless rolled rings · sleeves · wear rings

Pressure vessels and heat exchangers

Forged pressure-retaining components for vessels, air receivers and shell-and-tube exchangers.

forged flanges · tube sheets · nozzles · shell rings · forged tubes and pipes

Process plant and towers

Structural and pressure parts for columns, towers, tanks, silos, preheaters and packaged process modules.

forged rings · flanges · shafts · forged pipes · support rings

Offshore, subsea and oil and gas

Deepwater production hardware, wellhead and Christmas tree components, compressors and gas generation packages.

bushings · sleeves · discs · hubs · connectors · blocks

Valves

Trim and body components where the seating stress is high and the fluid is corrosive.

valve stems · seat rings · valve blocks · bodies · bonnets

Power transmission and rotating machinery

Turbines, gas compressors and gearboxes, where torque density is the design driver.

gear blanks · spindles · eccentric shafts · forged bars · rings

Heavy industry and mills

Cement, sugar and concrete plant, mixers and mills, where the part is large and the duty is abrasive.

forged crankshafts · forged nozzles · rolls · wheels · manifolds

Marine, pulp, paper and pharma

Shipbuilding and heavy machinery, plus pulp, paper, pharmaceutical and biochemical plant where cleanability matters.

forged rolls · wheels · crystalliser parts · process modules

Testing, inspection and certification

Every X2NiCrMoTi10-10-5 forging ships with a documentation pack, and the content of that pack is agreed before production starts rather than after delivery.

  • Chemical analysis: ladle analysis on every heat, product analysis from the forging on request, PMI where the specification calls for it.
  • Mechanical testing: tensile strength, yield, elongation, reduction of area and hardness, taken from integral or separately forged prolongations, plus Charpy V-notch impact testing to ASTM E23 or ISO 148-1 when specified.
  • Ultrasonic testing to EN 10228-3, SEP 1921 class C, D or E, ASTM A388, or a customer-specified acceptance class.
  • Surface NDT: liquid penetrant to ASTM E165, or magnetic particle inspection where the geometry and the material condition allow.
  • Grain size and microstructure to ASTM E112 when the drawing calls for it.
  • Dimensional report against the drawing, with the measured points your inspection plan requires.
  • Certification: EN 10204 3.1 as standard, or EN 10204 3.2 witnessed and counter-signed by a third party such as TUV, BV, SGS or Lloyd's Register, or by your own inspector.
  • Heat-treatment records: furnace time and temperature charts for the solution and ageing cycles are issued with the certificate.

Third-party inspectors and customer QA representatives are welcome at the works in Jiangyin. If your specification calls the grade by a different name or number, send us that document with the enquiry and we will match the designation on the certificate to the one your inspector expects.

Machining and welding X2NiCrMoTi10-10-5

Machining

The practical route is to machine in the solution-treated condition and age afterwards. In that condition the alloy is a soft low-carbon martensite and cuts far more easily than it does at full strength. Ageing then adds strength with only small dimensional movement, so close-tolerance features can be cut before hardening and need little more than a finishing pass afterwards. If a part must be machined fully aged, expect the tool life and feed rates of a 43-45 HRC material and plan for rigid setups.

Welding

Maraging-type steels are generally welded in the solution-treated condition using low-heat-input processes and matching or over-matching filler, then re-aged so the weld and the heat-affected zone recover their strength. The very low carbon content is an advantage here because there is little risk of the hard carbide-driven heat-affected zone that limits conventional martensitic stainless steels. Welding procedure, filler selection and post-weld ageing must still be qualified for the specific joint and specification, so agree them with your welding engineer before production. We supply forgings in the delivery condition your fabrication route requires, including solution treated only, so you can weld first and age after assembly.

How to request an X2NiCrMoTi10-10-5 quotation

Send a drawing, or simply the dimensions, to sales@steelforgepieces.com. Quotations are normally returned within one working day when the following points are supplied.

  1. Grade and governing specification: X2NiCrMoTi10-10-5, plus the DIN or customer specification that governs, including any tighter chemistry or property limits.
  2. Product form: ring, disc, shaft, bar, flange, sleeve, bushing, tube sheet, block or custom shape.
  3. Dimensions: OD, ID and height for rings, diameter and length for bars and shafts, plus an estimated finished weight.
  4. Delivery condition: as-forged, solution treated, solution treated and aged, rough machined, or finish machined.
  5. Property targets: the tensile, yield, elongation, hardness and impact minima you need certified, since these set the ageing cycle.
  6. NDT requirements: UT acceptance class, PT or MT requirements, and any special acceptance criteria.
  7. Certification: EN 10204 3.1 or 3.2, and which third party if 3.2.
  8. Quantity and required delivery date.

There is no fixed minimum order quantity and single prototype pieces are accepted, although the price per piece falls with quantity because ingot, set-up, furnace and testing charges are shared. Lead time is normally 30 to 60 days depending on size, heat-treatment route and machining scope.

Email your drawing to sales@steelforgepieces.com Call 0086-189-2135-9659

Frequently asked questions about X2NiCrMoTi10-10-5

What is X2NiCrMoTi10-10-5?

X2NiCrMoTi10-10-5 is a low-carbon, age-hardening martensitic stainless steel of the maraging type, supplied to the DIN designation. It contains a maximum of 0.03 % carbon, 8.50 to 10.50 % chromium, 8.50 to 11.00 % nickel, 4.50 to 5.50 % molybdenum and 0.50 to 1.00 % titanium, with iron as the balance. Strength comes from intermetallic precipitation during low-temperature ageing rather than from carbon, and the aged condition is aimed at about 1380 MPa (200 ksi) tensile strength with an above-average level of toughness.

What does the name X2NiCrMoTi10-10-5 mean?

The name follows the European high-alloy steel convention. X marks a high-alloy steel, the figure 2 is one hundred times the carbon content, so 0.02 % nominal, and the element symbols Ni, Cr, Mo and Ti are followed by the numbers 10-10-5, which give the approximate percentages of the first three named elements: about 10 % nickel, 10 % chromium and 5 % molybdenum. Titanium is named because it is the deliberate ageing addition.

Is X2NiCrMoTi10-10-5 a stainless steel or a maraging steel?

Both descriptions are correct and they refer to different things. The hardening mechanism is maraging, because strength comes from intermetallic precipitation in a low-carbon martensite instead of from carbides. The composition is stainless, because chromium at 8.50 to 10.50 % supports a passive film. The chromium and molybdenum are what distinguish it from the classic cobalt-bearing maraging steels such as X2NiCoMo18-9-5 (Maraging 250), which are stronger but not corrosion resistant.

What tensile strength does X2NiCrMoTi10-10-5 reach?

In the solution-treated and aged condition X2NiCrMoTi10-10-5 is aimed at a nominal tensile strength of about 1380 MPa, or 200 ksi. That is lower than an 18 % nickel cobalt maraging steel, but the grade carries an above-average level of toughness for its strength level. Certified minima depend on section size and ageing cycle and are agreed per order before production.

How is X2NiCrMoTi10-10-5 melted?

Jiangyin Jiangnan Metal Co., Ltd. buys X2NiCrMoTi10-10-5 to the EAF + VOD + ESR route: electric arc furnace melting, vacuum oxygen decarburisation to bring carbon under 0.03 % without losing chromium, and electroslag remelting to refine the structure and reduce non-metallic inclusions. Electroslag remelting matters in this grade because a very high strength matrix concentrates stress around inclusions, and that is where fatigue cracks start.

What heat treatment is used for X2NiCrMoTi10-10-5 forgings?

Two stages. Solution treatment produces a soft, machinable low-carbon martensite, and low-temperature ageing then precipitates the nickel-titanium-molybdenum intermetallic phase that carries the strength. A sub-zero step is added when retained austenite has to be minimised. Because ageing runs a few hundred degrees below the solution temperature, distortion is small, so parts are normally machined between the two stages. The exact cycle is set by the governing specification and agreed in writing before production; furnace charts are issued with the certificate.

What forged shapes can be made in X2NiCrMoTi10-10-5?

Jiangyin Jiangnan Metal Co., Ltd. produces X2NiCrMoTi10-10-5 as seamless rolled rings with outside diameters from 200 to 3000 mm, forged discs from 150 to 2000 mm diameter, shafts and spindles from 80 to 1000 mm diameter and up to 6000 mm long, round bars from 20 to 600 mm diameter, forged flanges from DN 15 to DN 1500, sleeves, bushings, hollow bars, blocks, tube sheets and nozzles, in single-piece weights from 10 kg to 8000 kg. Everything is made to customer drawing.

Which industries use X2NiCrMoTi10-10-5 forgings?

Chemical and plunger pumps, pressure vessels, air receivers and shell-and-tube heat exchangers, columns, towers, tanks and preheaters, offshore and subsea oil production hardware, wellhead and Christmas tree components, industrial air compressors, power generators and nitrogen generators, valve trim and bodies, turbines, gas compressors and gearboxes, cement, sugar and concrete mills, shipbuilding, heavy machinery, pulp and paper, and pharmaceutical and biochemical plant.

Can X2NiCrMoTi10-10-5 be machined and welded?

Yes. Machine in the solution-treated condition, where the alloy is a soft low-carbon martensite, then age to develop full strength with only small dimensional movement. For welding, maraging-type steels are normally welded in the solution-treated condition with low heat input and re-aged afterwards; the very low carbon content means there is no hard carbide-driven heat-affected zone of the kind that limits conventional martensitic stainless steels. Procedures still have to be qualified for the specific joint and specification. Jiangyin Jiangnan Metal can supply forgings solution treated only so that you weld first and age after assembly.

What testing and certificates are supplied with X2NiCrMoTi10-10-5 forgings?

Ultrasonic testing to EN 10228-3, SEP 1921 or ASTM A388, liquid penetrant to ASTM E165 or magnetic particle where the geometry allows, ladle and optional product chemical analysis, tensile and hardness testing from prolongations, and Charpy impact testing when specified. Certification is EN 10204 3.1 as standard, or EN 10204 3.2 counter-signed by a third party such as TUV, BV, SGS or Lloyd's Register. Heat-treatment furnace charts and a dimensional report are included in the documentation pack.

Who supplies X2NiCrMoTi10-10-5 open-die 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 X2NiCrMoTi10-10-5 forged rings, seamless rolled rings, discs, shafts, flanges, bars, sleeves and tube sheets to customer drawing. Enquiries go to sales@steelforgepieces.com or 0086-189-2135-9659. Jiangyin sits in the Yangtze River Delta within about two hours of Shanghai port, which keeps export logistics short for heavy forgings.

Is there a minimum order quantity for X2NiCrMoTi10-10-5 forgings, and what is the lead time?

There is no fixed minimum order quantity and single prototype pieces are accepted, although the price per piece falls with quantity because ingot, set-up, furnace and testing charges are shared across the batch. Lead time for X2NiCrMoTi10-10-5 forgings is normally 30 to 60 days depending on size, heat-treatment route and machining scope.

What are the equivalent grades and other designations for X2NiCrMoTi10-10-5?

X2NiCrMoTi10-10-5 is ordered under its DIN designation. Because low-carbon age-hardening stainless steels are registered under different names in different systems, Jiangyin Jiangnan Metal does not publish a cross-reference it cannot certify against. Send the specification, UNS number, works designation or drawing note your end user requires, and we will confirm before quoting whether we can supply to it and how the designation will appear on the mill certificate.

About the manufacturer

Jiangyin Jiangnan Metal Co., Ltd. is an open-die forging factory in Jiangyin, Jiangsu Province, China. We produce forged rings, seamless rolled rings, discs, shafts, flanges, bars, sleeves, bushings and tube sheets in carbon steel, alloy steel, tool steel, stainless steel and nickel-based alloys, including X2NiCrMoTi10-10-5, Inconel 718, Inconel 625, Waspaloy, Monel 400 and the Hastelloy family. Raw material control, forging, heat treatment, machining, testing and inspection are organised in one plant, and every part is made to customer drawing and certified to EN 10204 3.1 or 3.2.

Company
Jiangyin Jiangnan Metal Co., Ltd.
Business
Open-die forging, ring rolling, heat treatment, machining, testing
Address
No. 1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province 214423, China
Certification
EN 10204 3.1 and 3.2 mill test certificates; third-party witness by TUV, BV, SGS or Lloyd's Register on request
Export
Worldwide, through Shanghai and Zhangjiagang ports

Data source and citation

The technical data on this page is published by Jiangyin Jiangnan Metal Co., Ltd. and may be quoted or reproduced with attribution. Suggested citation:

Jiangyin Jiangnan Metal Co., Ltd. "X2NiCrMoTi10-10-5 Forgings: Chemistry, Heat Treatment and Size Capability." Jiangyin, Jiangsu, China. https://www.steelforgepieces.com/Nickel-Alloy/X2NiCrMoTi10-10-5.html

Page published 18 May 2016. Last reviewed and updated 2 September 2026 by the technical sales team, Jiangyin Jiangnan Metal Co., Ltd. Composition, process windows and size capability on this page describe what we forge and certify; property values marked typical are for guidance and the binding figures are those agreed on your order.