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High Strength Monel K500 Round Bar Corrosion Resistant, Heat-Treatable Alloy for Marine & Oil/Gas Applications
Plaats van herkomst | CHINA |
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Merknaam | DELTA |
Certificering | ISO |
Modelnummer | Monel K500 |
Min. bestelaantal | 10 kg |
Prijs | 30 - 35 USD/Kg |
Verpakking Details | Standaardverpakking voor export |
Levertijd | 5 - 12 dagen op basis van de hoeveelheid |
Betalingscondities | L/C, T/T, Western Union |
Levering vermogen | 3 ton per week |

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xProducten | monel de ronde bar van k500 | Cijfer | Monel K500 |
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Diameter | 10 - 350mm | Lengte | op aanvraag op maat gesneden |
Standaard | Astm en | Dienst | Snij |
Laadpoort | Shanghai -haven | Oppervlak | Zwart, Helder |
High Strength Monel K500 Round Bar Corrosion Resistant, Heat-Treatable Alloy for Marine & Oil/Gas Applications
Products Specification
Standard
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AISI, ASTM, BS, DIN, GB, JIS
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Grade
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Monel series: 400 K500
Inconel series: 600 601 625 718 725 Incoloy series: 800 800H 825 925 Hastelloy series: B,B2,B3,C,C-276,C-4,C-22 Pure: Ni200, Ni201 |
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Specifications
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Round bar
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Diameter:4~300mm
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Flat bar
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Thickness
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1.0~100mm
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Width
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1~1500mm
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Square bar
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Size: 4*4-100*100mm
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Length
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2m, 5.8m, 6m, or as required.
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Surface
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Black, peeled, polishing, bright, sand blast, hair line, etc.
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Price Term
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Ex-work, FOB, CFR, CIF, etc.
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Delivery Time
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Standard size is in stock,prompt delivery or as order's quantity.
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Package
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Export standard package, bundled or be required.
The inner size of container is below: 20ft GP: 5.9m(length) x 2.13m(width) x 2.18m(high)about 24-26CBM 40ft GP: 11.8m(length) x 2.13m(width) x 2.18m(high) about 54CBM 40ft HG: 11.8m(length) x 2.13m(width) x 2.72m(high) about 68CBM |
High Strength Monel K500 Round Bar: Corrosion Resistant, Heat-Treatable Alloy for Marine & Oil/Gas Applications
Monel K500 (UNS N05500) is a precipitation-hardenable nickel-copper alloy renowned for its exceptional combination of high strength, excellent corrosion resistance, and good mechanical properties over a wide temperature range. It is essentially an enhanced version of Monel 400, with additions of aluminum and titanium that allow it to be strengthened through heat treatment.
This alloy is particularly valued in demanding sectors like marine engineering and oil and gas production, where components must withstand aggressive corrosive environments while maintaining high structural integrity.
Chemical Composition
The composition of Monel K500 is carefully balanced to achieve its signature properties. The key elements include:
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Nickel (Ni): 63% minimum
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Copper (Cu): 27-33%
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Aluminum (Al): 2.3-3.15%
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Titanium (Ti): 0.35-0.85%
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Iron (Fe): 2.0% maximum
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Manganese (Mn): 1.5% maximum
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Carbon (C): 0.25% maximum
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Silicon (Si): 0.5% maximum
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Sulfur (S): 0.01% maximum
The addition of aluminum and titanium is crucial, as they enable the formation of gamma prime (γ') precipitates [Ni₃(Al,Ti)] during age-hardening heat treatment, significantly increasing the alloy's strength and hardness.
Key Characteristics and Properties
Monel K500 round bars offer a superior blend of physical and mechanical properties:
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High Strength & Hardness: After age-hardening, it delivers roughly three times the yield strength and twice the tensile strength of standard Monel 400. Typical mechanical properties for age-hardened round bars include:
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Tensile Strength: ≥ 930 MPa (ASTM B865 minimum), often reaching 980-1100 MPa in practice.
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Yield Strength (0.2% Offset): ≥ 690 MPa (ASTM B865 minimum), with typical values around 720-780 MPa.
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Elongation: ≥ 20%
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Hardness: Typically 28-35 HRC.
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Excellent Corrosion Resistance: It retains the outstanding corrosion resistance of Monel 400. It performs well in various environments, including:
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Seawater (both flowing and stagnant, though pitting is possible in stagnant conditions)
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Acidic and alkaline solutions
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Hydrogen fluoride and hydrofluoric acid vapors (though caution is needed under high stress in aerated HF vapor)
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It exhibits high resistance to stress corrosion cracking (SCC) in environments containing chlorides and shows good performance in sour gas (H₂S) environments within specified limits[pip:2].
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Physical Properties:
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Density: 8.44 g/cm³ (0.305 lb/in³)
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Melting Point: 1315-1350 °C (2400-2460 °F)
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Thermal Conductivity: 22 W/m·K (at 20°C)
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Magnetic: Essentially non-magnetic
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Long-Term Microstructural Stability: The alloy maintains its properties over time, even at elevated temperatures up to 750°C (1382°F) for short periods, and is suitable for long-term use at lower temperatures.
Heat Treatment
Optimizing the properties of Monel K500 round bar requires a specific heat treatment regimen:
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Solution Annealing: Heated to 980-1020°C (1800-1868°F), held for sufficient time (typically 1 hour per 25mm of thickness), followed by rapid water quenching. This process dissolves the hardening elements into solid solution.
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Age Hardening (Precipitation Hardening): A two-stage process is common:
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Primary aging at 590-620°C (1094-1148°F) for 6-8 hours, air cool.
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Secondary aging at 480-520°C (896-968°F) for 8-12 hours, air cool. This step precipitates the strengthening γ' phase (Ni₃(Al,Ti)) throughout the matrix.
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Applications
Monel K500 round bar is specified for high-performance components across critical industries:
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Marine & Shipbuilding: Propeller shafts, pump shafts and impellers (especially for fire pumps), valve trim, seals, fasteners, bolts, and springs for seawater service.
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Oil & Gas: Wellhead components, drill collars, tool joints, valve parts, and instrumentation housings in sour gas (H₂S-containing) environments.
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Chemical Processing: Pump shafts, valve components, and scraper blades handling corrosive chemicals.
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Aerospace: Non-magnetic turbine blades and other engine components operating at temperatures below 750°C.
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Other Industries: Paper industry doctor blades, high-strength springs, and corrosion-resistant fasteners.
Standards and Specifications
Monel K500 round bar is produced to meet various international standards, including:
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ASTM B865
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AMS 4676
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UNS N05500
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DIN 2.4375
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It also complies with NACE MR0175/ISO 15156 for sour service applications.
Conclusion
The Monel K500 round bar is a high-performance nickel-copper alloy ideal for applications demanding a unique combination of exceptional strength, outstanding corrosion resistance—particularly in marine and sour gas environments—and long-term reliability. Its ability to be strengthened through heat treatment makes it a superior choice over many other corrosion-resistant alloys where mechanical strength is a critical design factor. When proper heat treatment and manufacturing protocols are followed, it provides invaluable service in some of the world's most challenging engineering applications.