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Monel K500 Forgings – High-Strength Nickel-Copper Alloy for Marine & Oilfield Applications

Categories Nickel Alloy Forging Bar
Brand Name: DINGSCO
Model Number: According to customers requirements
Certification: ISO 9001:2015,PED 2014/68/EU,API 6A,API-20B,TSG,NORSOK
Place of Origin: China
MOQ: Negotiable
Price: Negotiable
Payment Terms: T/T
Supply Ability: Negotiable
Delivery Time: (Sample Order) 7 days
Packaging Details: According to Customers' Requests
Product Name: Monel K500 Forgings – High-Strength Nickel-Copper Alloy for Marine & Oilfield Applications
Grade: Monel K500
UNS: N05500
Density: 8.44g/cm³
Melting Range: 1315 – 1350 °C
Elastic Modulus: 179Gpa
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Monel K500 Forgings – High-Strength Nickel-Copper Alloy for Marine & Oilfield Applications

Monel K500 Forgings – High-Strength Nickel-Copper Alloy for Marine & Oilfield Applications


Monel K500 forgings combine the excellent corrosion resistance of Monel 400 with greatly increased strength and hardness obtained through precipitation hardening. As a nickel-copper alloy strengthened by aluminum and titanium, Monel K500 maintains high performance in seawater, chemical processing, and sour gas environments.

Our forgings are produced with precise temperature control and heat treatment, ensuring superior fatigue resistance, tensile strength, and dimensional accuracy. These features make Monel K500 forgings ideal for industries where both mechanical durability and corrosion resistance are required.



Key Applications:

  • Oil & gas drilling equipment and pump shafts

  • Marine propeller shafts and fasteners

  • Chemical industry valves, pumps, and fittings

  • Aerospace components requiring high strength and corrosion resistance



Advantages:

  • Twice the strength of Monel 400 while retaining ductility

  • Excellent resistance to seawater, alkalis, and non-oxidizing acids

  • Non-magnetic properties at temperatures down to -135°C

  • Extended service life in harsh working environments



Chemical Composition:


ElementNiCuCMnFeSSiAlTi
Minimum(%)6327-----2.30.35
Max(%)-330.251.52.00.010.53.150.85



Thermal Properties:


TemperatureMean Linear ExpansionaThermal ConductivitybSpecific HeatbElectrical Resistivityc
°F°Cin/in/°F x 10-6µm/m•°CBtu-in/h/ft2 /°FW/m•°CBtu/lb/°FJ/kg•°Cohm-circ mil/ftµΩ•m
-320-2006.211.2----330.8d0.550
-250-1576.511.78612.30.071297.3--
-200-1306.812.29213.10.077322.4--
-100-707.213.010314.70.087364.3--
7021--12117.20.100418.73700.615
2001007.613.713619.40.107448.03720.618
4002008.114.815622.20.114477.33780.628
6003008.314.917825.40.117489.93850.640
8004008.515.319828.20.120502.43900.648
10005008.715.722031.40.125523.43930.653
12006009.116.424034.20.132552.73960.658
14007009.316.726237.30.141590.34000.665
16008009.617.328240.20.157657.34080.678
1800900--302e43.10.186e778.74180.695

aBetween 70°F (21°C) and temperature shown. Age-hardened material.

bMaterial was in the annealed condition prior to test.

cElectrical resistivity is markedly influenced by thermal history because of the age- hardening characteristics of the alloy. The data shown represent values measured on decreasing temperature on material in an equivalent to annealed condition with a small amount of age hardening.

dResistivity of sample from this test tested at room temperature: 355.5 ohm/circ mil/ft.

eExtrapolated.






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