Monel K500

Precipitation Age-Hardened Nickel-Copper UNS N05500 Round Bars, Rods, Fasteners, Flanges, and Forgings

Grade Monel K500 / Alloy K500 (UNS N05500, Werkstoff 2.4375, NiCu30Al, NA 18, QQ-N-286)
Standard ASTM B865, ASME SB865, AMS 4676, BS 3076 (NA 18), DIN 17752, DIN 17754, ISO 9723, NACE MR0175 / ISO 15156
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Product Overview

Om Export India Pvt Ltd is a leading manufacturer, stockist, and global exporter of high-strength Monel K500 Products (UNS N05500 / Werkstoff 2.4375 / Alloy K-500). Monel K500 is a precipitation-hardenable nickel-copper alloy that combines the excellent corrosion resistance of Monel 400 with substantially greater mechanical strength and hardness. This enhanced performance is achieved by adding Aluminum (2.30%–3.15%) and Titanium (0.35%–0.85%) to the high-nickel matrix, creating submicroscopic gamma prime (Ni3(Al,Ti)) precipitates during controlled age-hardening heat treatments.

Our Monel K500 product line includes cold-drawn precision ground bars, centreless ground pump shafts, heavy open-die forgings, age-hardened high-tensile fasteners, and custom flanges conforming to ASTM B865, AMS 4676, and NACE MR0175/ISO 15156 standards. Monel K500 is virtually non-magnetic across a broad temperature range (down to cryogenic temperatures) and provides exceptional resistance to high-velocity seawater erosion, sour oilfield media (H2S), and aggressive chemical process streams.

  • Age-Hardened Strength: Delivers approximately double the tensile strength and triple the yield strength of standard Monel 400 (Yield Strength ≥ 790 MPa / 115 ksi).
  • Non-Magnetic Stability: Remains completely non-magnetic down to -100°C (-148°F) with high dimensional stability and low magnetic permeability (μ < 1.002).
  • Sour Service Compliance: Fully certified per NACE MR0175 / ISO 15156 for downhole drilling tools, drill collars, and offshore wellhead components.

Key Features

  • Precipitation Hardening: Yield strength exceeding 790 MPa (115 ksi) and tensile strength up to 1100 MPa (160 ksi).
  • Non-Magnetic Property: Retains non-magnetic characteristics across cryogenic to elevated service temperatures.
  • Seawater Erosion-Corrosion Resistance: Resistant to high-velocity seawater, cavitation, and marine biofouling.
  • Sour Service Durability: Conforms to NACE MR0175 hardness and heat-treatment requirements for H2S sour gas extraction.
  • Fatigue & Wear Resistance: High cyclic fatigue strength and galling resistance in rotating shaft and pump operations.
  • Dimensional Precision: Precision ground round bars with ISO h8/h9 tolerances and superior straightness for dynamic applications.

Product Specifications

Specification Parameter Standard Specification / Technical Value
Material Grade & Designation Monel K500 / Alloy K-500 / UNS N05500 / W.Nr. 2.4375
Governing Standards ASTM B865, ASME SB865, AMS 4676, BS 3076 NA 18, DIN 17752, ISO 9723
Round Bar & Rod Size Range 3.0 mm to 600.0 mm Diameter (1/8" to 24" OD / M6 to M64 Metric)
Fasteners & Bolting Range M6 to M100 / 1/4" to 4" (Heavy Hex Bolts, Stud Bolts, Hex Nuts, Socket Head Cap Screws)
Flange Size & Class Range 1/2" NB to 24" NB (Class 150# up to 2500# per ASME B16.5)
Heat Treatment Delivery State Hot Finished, Hot Finished & Age Hardened, Cold Drawn, Cold Drawn & Age Hardened (Aged at 580°C–600°C)
Surface Finishes Bright Polished, Centreless Ground (PSQ h8/h9), Rough Turned, Black Forged, Pickled
Quality Certifications EN 10204 Type 3.1 & 3.2, NACE MR0175 / ISO 15156, AS 9100D, 100% PMI Spectro

Dimensions & Sizes

Nominal Diameter (mm / in.) Cross-Section Area (mm²) Weight per Meter (kg/m) Weight per Foot (lb/ft) Available Standard Lengths
6.0 mm (0.236") 28.27 mm² 0.24 kg/m 0.16 lb/ft 1000 mm to 3000 mm
10.0 mm (0.394") 78.54 mm² 0.66 kg/m 0.44 lb/ft 3000 mm / 10 ft
12.7 mm (1/2" / 0.500") 126.68 mm² 1.07 kg/m 0.72 lb/ft 3000 mm / 6000 mm
16.0 mm (0.630") 201.06 mm² 1.70 kg/m 1.14 lb/ft 3000 mm / 6000 mm
19.05 mm (3/4" / 0.750") 285.02 mm² 2.41 kg/m 1.62 lb/ft 3000 mm / 6000 mm
25.4 mm (1" / 1.000") 506.71 mm² 4.28 kg/m 2.88 lb/ft 3000 mm / 6000 mm
31.75 mm (1-1/4" / 1.250") 791.73 mm² 6.68 kg/m 4.49 lb/ft 3000 mm / 6000 mm
38.1 mm (1-1/2" / 1.500") 1140.09 mm² 9.62 kg/m 6.47 lb/ft 3000 mm / 6000 mm
50.8 mm (2" / 2.000") 2026.83 mm² 17.11 kg/m 11.50 lb/ft 3000 mm / 6000 mm
63.5 mm (2-1/2" / 2.500") 3166.92 mm² 26.73 kg/m 17.96 lb/ft 3000 mm / 6000 mm
76.2 mm (3" / 3.000") 4560.37 mm² 38.49 kg/m 25.87 lb/ft 3000 mm / 6000 mm
88.9 mm (3-1/2" / 3.500") 6207.17 mm² 52.39 kg/m 35.21 lb/ft 3000 mm / 6000 mm
101.6 mm (4" / 4.000") 8107.32 mm² 68.43 kg/m 45.99 lb/ft 3000 mm / 6000 mm
127.0 mm (5" / 5.000") 12667.69 mm² 106.92 kg/m 71.85 lb/ft 2000 mm to 6000 mm
152.4 mm (6" / 6.000") 18241.47 mm² 153.96 kg/m 103.47 lb/ft 2000 mm to 6000 mm
203.2 mm (8" / 8.000") 32429.28 mm² 273.70 kg/m 183.94 lb/ft 1000 mm to 4000 mm
254.0 mm (10" / 10.000") 50670.75 mm² 427.66 kg/m 287.41 lb/ft 1000 mm to 3000 mm

Chemical Composition

Element ASTM B865 / UNS N05500 (%) Werkstoff 2.4375 / NiCu30Al (%)
Nickel (Ni + Co) 63.00 Min 63.00 Min
Copper (Cu) 27.00 – 33.00 27.00 – 33.00
Aluminum (Al) 2.30 – 3.15 2.30 – 3.15
Titanium (Ti) 0.35 – 0.85 0.35 – 0.85
Iron (Fe) 0.50 – 2.00 0.50 – 2.00
Manganese (Mn, Max) 1.50 1.50
Carbon (C, Max) 0.25 (Standard ≤ 0.18) 0.18
Silicon (Si, Max) 0.50 0.50
Sulfur (S, Max) 0.010 0.010

Mechanical Properties

Material Condition / Form Tensile Strength (MPa / ksi) Yield Strength 0.2% Offset (MPa / ksi) Elongation in 2 in. (%) Hardness (Rockwell / Brinell)
Hot Finished & Age-Hardened 965 – 1100 MPa (140 – 160 ksi) 690 – 790 MPa (100 – 115 ksi) 20% – 30% 27 – 35 HRC (265 – 327 HBW)
Cold Drawn & Age-Hardened 1100 – 1300 MPa (160 – 188 ksi) 790 – 1000 MPa (115 – 145 ksi) 15% – 25% 32 – 40 HRC (300 – 375 HBW)
Hot Finished / Annealed (Un-aged) 620 – 760 MPa (90 – 110 ksi) 275 – 415 MPa (40 – 60 ksi) 35% – 50% 75 – 90 HRB (140 – 185 HBW)
Physical Density & Melting Point Density: 8.44 g/cm³ (0.305 lb/in³) Melting Point: 1350°C (2460°F) Modulus of Elasticity: 179 kN/mm² (26 x 10⁶ psi)

Standards & Specifications

Governing Organization Standard Designation Scope & Product Type
ASTM / ASME ASTM B865 / ASME SB865 Standard Specification for Precipitation-Hardening Nickel-Copper Alloy (UNS N05500) Bar, Rod, and Forgings
Aerospace Material Spec AMS 4676 Nickel-Copper Alloy Bars and Forgings, Precipitation Heat Treated (Monel K-500)
Federal Specification QQ-N-286 Nickel-Copper-Aluminum Alloy, Wrought (Monel K500 Class A & B)
British Standard (BS) BS 3076 (NA 18) Specification for Nickel and Nickel Alloys: Bars, Rods, and Sections
German Standard (DIN) DIN 17752 / DIN 17754 (W.Nr. 2.4375) Wrought Nickel and Nickel-Copper Alloy Rods, Bars, and Forgings (NiCu30Al)
Oil & Gas Standard NACE MR0175 / ISO 15156 Petroleum and Natural Gas Industries — Materials for use in H2S-containing environments

Applications

Monel K500 age-hardened components are deployed across high-stress marine, oilfield drilling, and aerospace applications:

  • Oil & Gas Drilling & Extraction: Non-magnetic drill collars, downhole measurement-while-drilling (MWD) tool housings, sour gas wellhead components, valve trim, and safety relief springs.
  • Marine Propulsion & Hardware: High-strength pump and propeller shafts, rudder stocks, marine fasteners, centrifugal pump sleeves, and submarine periscope hardware.
  • Chemical Processing Equipment: High-pressure mixing impellers, valve stems, doctor blades for paper manufacturing, scraper blades, and centrifuge shafts.
  • Sensors & Electronic Hardware: Non-magnetic instrumentation housings, gyroscopic components, and electronic shielding enclosures.
  • Aerospace & Defense: High-tensile airframe fasteners, landing gear locking pins, and actuator components exposed to marine atmospheres.

Frequently Asked Questions

Q1: What is the primary difference between Monel 400 and Monel K500?
While both alloys share the same core nickel-copper base, Monel K500 contains added Aluminum (2.3%–3.15%) and Titanium (0.35%–0.85%). Through precipitation aging, Monel K500 achieves nearly triple the yield strength and double the tensile strength of Monel 400 while retaining comparable marine corrosion resistance.

Q2: How is the precipitation hardening process performed on Monel K500?
After solution annealing at 980°C–1040°C followed by water quenching, the material is aged by holding it at 580°C–600°C (1075°F–1110°F) for approximately 16 hours, followed by controlled furnace cooling down to 480°C. This precipitates microscopic gamma prime (Ni3(Al,Ti)) particles throughout the matrix.

Q3: Is Monel K500 magnetic?
Monel K500 is completely non-magnetic down to -100°C (-148°F) in the aged condition, with a magnetic permeability (μ) of less than 1.002, making it the premier material for directional drilling MWD tools and non-magnetic subsea equipment.

Q4: What certifications accompany Monel K500 orders from Om Export India Pvt Ltd?
Every order is supplied with an EN 10204 3.1 / 3.2 inspection certificate verifying chemical composition, tensile and yield strength, elongation, Rockwell C hardness, 100% Ultrasonic Testing (UT), and NACE MR0175 / ISO 15156 compliance.

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