manufacturer of nickel alloy, stainless steel, tool steel, alloy steel

Ni-Span-C 902 Alloy (UNS N09902 / 2.4964 / Vacon 10) | Constant Modulus Alloy Supplier | FUSHUN METAL

Ni-Span-C 902 (UNS N09902, W.Nr. 2.4964, Vacon 10) is a precipitation-hardenable nickel-iron-chromium constant-modulus alloy developed for applications where elastic stability across fluctuating temperatures is non-negotiable. Its defining feature is the Elinvar effect—a near-zero TEC that keeps the elastic modulus essentially unchanged over -50 to +150°F (-45 to +65°C). Unlike conventional spring steels whose stiffness drifts with every degree of temperature change, Ni-Span-C 902 delivers frequency stability and load-deflection repeatability that no quench-and-temper alloy can match. This thermal invariance makes it the material of choice for precision springs, resonant vibrating elements, pressure-sensing diaphragms, and inertial navigation components across aerospace, horology, and industrial instrumentation. At FUSHUN METAL, we melt Ni-Span-C 902 via VIM for precise chemistry, refine through VAR for inclusion control, and optionally apply PESR for superior ingot solidification structure. The triple-melt route guarantees cleanliness levels well below AMS 5225 limits and eliminates the centerline segregation that can shift the alloy’s delicate thermoelastic balance. Every heat ships with full traceability under our ISO 9001 and AS9120B quality management system, and we tailor aging cycles to lock in the exact TEC each application demands—whether a watchmaker needs minimum hysteresis or an aerospace OEM specifies a zero-crossing frequency-temperature curve.

Equivalent Grades of Ni-Span-C 902

Standard Body Designation / Grade
UNS N09902
SAE AMS AMS 5221 / AMS 5223 / AMS 5225
SAE HS HS 261
DIN / W.Nr. 2.4964 (Vacon 10)
GB 3J53 (Ni42CrTiAl)
GOST 42НХТЮ (42NKhTYu)
JIS Sumispan-3 / EL-3
AWS AWS 080
UK Elinvar Extra

FUSHUN METAL stocks and produces to all above specifications. Cross-certification with dual marking (e.g., AMS 5225 + GB 3J53) is standard upon request.

Chemical Composition of Ni-Span-C 902 per AMS 5225

Element Min (%) Max (%)
Carbon (C) 0.06
Manganese (Mn) 0.80
Silicon (Si) 1.00
Phosphorus (P) 0.04
Sulfur (S) 0.04
Nickel + Cobalt 41.00 43.50
Chromium (Cr) 4.90 5.75
Titanium (Ti) 2.20 2.75
Aluminum (Al) 0.30 0.80
Cr + (Ti – 4C) 7.10 8.10
Iron (Fe) Balance (~45%)

The critical Cr + (Ti – 4C) band directly governs precipitation-hardening response. FUSHUN METAL verifies every heat with OES and wet chemistry, holding internal targets tighter than AMS 5225 tolerances under ISO 9001 and AS9120B.

Ni-Span-C 902 alloy bar product
Ni-Span-C 902 (N09902) rolled & forged bar

Applications of Ni-Span-C 902

Precision Timekeeping

Watch hairsprings, mainsprings, balance wheels, chronometer escapements, marine chronometer springs

Aerospace & Defense

Gyroscope flexures, accelerometer elastic elements, inertial navigation springs, satellite resonator diaphragms

Pressure & Force Sensing

Bourdon tubes, aneroid capsules, pressure transducer diaphragms, load cell springs, torque sensor elements

Resonant Systems

Tuning forks, vibrating reed frequency standards, mechanical bandpass filters, sonic delay lines, resonator bars

Industrial Weighing

Precision balance springs, electronic scale flexures, check-weigher elastic pivots, mass comparator strips

Valve & Diaphragm

Cryogenic valve springs, burst disc diaphragms, petrochemical regulator membranes, relief valve springs

Medical Devices

Surgical instrument springs, implantable sensor diaphragms, precision pump flexures, orthopedic measurement cells

Scientific Instruments

Seismograph springs, gravimeter flexures, magnetometer suspensions, microbalance beams, dilatometer strips

Supply Range — Ni-Span-C 902 from FUSHUN METAL

FUSHUN METAL supplies Ni-Span-C 902 in all conventional mill forms, manufactured from VIMVAR ingots with optional PESR refinement. Our hot-rolling mill covers mid-size diameters while the open-die forging press handles large-section orders up to 1200 mm diameter. Cold-rolling and drawing lines produce precision strip and wire down to 0.05 mm thickness. For Bourdon tube and diaphragm applications, we offer tight-thickness-tolerance strip with surface finish controlled to better than 0.8 μm Ra. All product ships with a 3.1 certificate per EN 10204, and we can supply 3.2 witness-tested certification when required by aerospace quality clauses.

Product Form Process Size Range Delivery Condition
Rolled Round Bar Hot Rolled / Cold Finished ∅3 – 200 mm Annealed, Spring Temper, Aged
Rolled Flat Bar Hot / Cold Rolled T 3–60 mm x W 10–400 mm Annealed, Cold Rolled
Forged Round Bar Open-Die Forged ∅80 – 1200 mm Solution Annealed, Rough Turned
Forged Flat / Block Open-Die Forged T 15–500 mm x W 80–2000 mm Solution Annealed
Cold Rolled Strip Precision Cold Rolling T 0.05–3.0 mm x W up to 400 mm Annealed, 10%/50% Cold Reduced
Wire Cold Drawn ∅0.10–12.0 mm Spring Temper, Annealed, Aged
Seamless Tube Cold Pilgered / Drawn OD 3–219 mm x WT 0.5–20 mm Annealed, Cold Worked

Ultrasonic testing per AMS-STD-2154 Class A, surface quality inspection, and dimensional checks are performed on every lot before release. Cut-to-length and custom rough machining are available.

Mechanical Properties of Ni-Span-C 902

The mechanical response of Ni-Span-C 902 is governed by two synergistic strengthening mechanisms: cold work and precipitation hardening. Titanium and aluminum, held within the critical Cr + (Ti – 4C) window, form coherent gamma-prime (Ni3Al,Ti) precipitates during aging that pin dislocations and elevate strength while preserving the Elinvar characteristic. Unlike martensitic spring steels that sacrifice modulus stability for hardness, Ni-Span-C 902 achieves both simultaneously through this metallurgical design. The table below summarizes properties across the most commonly supplied conditions, from soft annealed strip for deep drawing to fully aged spring temper for maximum load-bearing capacity.

Condition Heat Treatment Tensile (MPa) Yield 0.2% (MPa) Elong. (%) Hardness
Annealed As solution-annealed per AMS 5221 585 – 800 ~276 20 – 35 HRB 75 – 90
Spring Temper None — work-hardened only 965 – 1105 ~896 4 – 7 HRC 26 – 33
50% Cold Rolled 50% reduction, per AMS 5225 ~965 ~896 ~6 HRC 29
Spring Temper + Aged Aged 663–704°C (1225–1300°F), 2–3.5 h, air cool 1380 – 1515 ~1240 5 – 9 HRC 37 – 42
Stress Equalized + Aged Stabilize 400°C / 2 h + age 650°C / 2 h, air cool 1300 – 1450 ~1170 6 – 10 HRC 36 – 40
Modulus of Elasticity: 165–200 GPa (24–29 x 103 ksi)
Operating Range (const. modulus): -45 to +65°C (-50 to +150°F)
Density: 8.05 g/cm3 (0.291 lb/in3)
Melting Point: 1450–1480°C (2642–2700°F)
Modulus of Rigidity: 62–69 kN/mm2 (70.3 GPa)
Coefficient of Expansion: 7.6 μm/m/°C (20–100°C)

FUSHUN METAL’s in-house lab maps the full TEC-vs-temperature curve for each production lot using resonant-frequency sweep methodology. Aging cycles between 500–750°C are adjusted per application—lower temperatures favor minimum hysteresis and reduced drift in watch springs, while higher temperatures push ultimate tensile strength past 1500 MPa for aerospace diaphragms and gyroscope flexures. Every reported tensile and hardness data point is traceable to AS9120B and ISO 9001 accredited testing protocols, and the corresponding mill certificate carries the lab’s NADCAP-equivalent scope approval.

About Us

Founded in 1998, FuShun covers an area of 3000 square meters, annual sales volume of 20000 tons. We are engaged in the manufacture and export of Tool Steel, Nickel Alloy, Stainless Steel and other special steel products…,View more content About Me.

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