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K500

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Monel K500 is an age-hardenable nickel-copper alloy widely used in aerospace, chemical, marine, and other fields.

Product name:

Hastelloy

Material:

Hastelloy B-3

Warehouse:

Tianjin

Surface treatment:

Pickled/bright/black etc. 

Keyword:

K500

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Details description

Chemical Composition

Nickel (Ni) ≥63%, Copper (Cu) 27%-33%, Aluminum (Al) 2.3%-3.15%, Titanium (Ti) 0.35%-0.85%, Manganese (Mn) ≤1.5%, Carbon (C) ≤0.25%, and small amounts of iron, silicon, etc.

Physical Properties

Density: 8.05g/cm³, Melting point: 1288-1343℃, Elastic modulus: approximately 260GPa, Non-magnetic.

Mechanical Properties

Tensile strength: 1100-1300MPa, Yield strength: 750-1000MPa, Elongation: 20%-30%, Hardness after aging treatment: HRC25-35.

Performance Characteristics

Excellent corrosion resistance: Exhibits outstanding corrosion resistance to seawater, brine, acidic, and alkaline environments. Performs well in hydrofluoric acid, sulfuric acid, hydrochloric acid, and other media. It is also resistant to stress corrosion cracking and pitting.
High strength and high hardness: Through precipitation hardening treatment, the strength and hardness are significantly higher than Monel 400, maintaining high strength and good mechanical properties at both high and low temperatures.
Good machinability and weldability: Despite its high strength, it still possesses good machinability and weldability. It can be further strengthened through cold working and hot working. Welding can be done using Gas Tungsten Arc Welding (GTAW) and Gas Metal Arc Welding (GMAW).
Good wear resistance: Excellent performance in high-wear environments, suitable for easily worn parts such as pump shafts and valves.

Application Fields

Aerospace: Used to manufacture key components such as turbine blades for aero-engines, gas turbine blades, and high-strength fasteners.
Marine: Can be used to manufacture seawater treatment equipment, marine engineering structures, marine pipelines, ship fittings, and propeller shafts.
Chemical industry: Often used to manufacture corrosion-resistant parts for chemical equipment, such as spiral tubes, valve parts, pumps, heat exchangers, and reactors.
Electronics and electrical equipment: Can be used to manufacture non-magnetic springs, connectors, and sensors.

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Qualification certification

Quality Management System Certification Certificate
Quality Management System Certification Certificate
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FAQ

Q

How to perform daily maintenance and inspection of steel structures during use?


A
Regularly check components for rust, deformation, loose bolts, etc., promptly repair damaged areas, keep the drainage system unobstructed, and regularly repaint with anti-corrosion paint.
Q

What preparatory work needs to be done before installing a steel structure?


A
Component quality and dimensional deviations need to be checked, connecting parts cleaned, installation equipment and tools prepared, and installation plans and emergency response plans formulated.
Q

What are the main differences between light steel structures and heavy steel structures?


A
Lightweight steel structures use thinner steel sections (such as cold-formed steel) and are mostly used for buildings with smaller loads; heavy steel structures use thicker steel sections and are suitable for projects with large loads and spans.
Q

How are the column spacing and span of steel structure factory buildings usually determined?


A
Needs to be comprehensively determined considering production process requirements, equipment layout, material specifications, and economics. Common column spacing is 6-12 meters, and the span is 15-30 meters.
Q

What changes occur in steel structures under high-temperature environments, and how can these be addressed?


A
High temperatures reduce steel strength. Fire protection measures can include applying fire-retardant coatings, encasing with fireproof panels, and installing water spray systems.
Q

What are the common structural forms of large-span steel structures?


A
Common forms include truss structures, space frame structures, grid shell structures, cable-stayed structures, and membrane structures.
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