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N06600

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N06600 is a nickel-based alloy with excellent corrosion resistance, high-temperature performance, and mechanical properties. It is widely used in the chemical and energy industries.

Product name:

Inkroy

Material:

NCF825

Warehouse:

Tianjin

Surface treatment:

Solventing, pickling, trimming 

Keyword:

N06600

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Details description

Chemical Composition

Nickel (Ni) content ≥72%, Chromium (Cr) 14.00%-17.00%, Iron (Fe) 6.00%-10.00%, Carbon (C) ≤0.15%, Manganese (Mn) ≤1.00%, Silicon (Si) ≤0.50%, Sulfur (S) ≤0.015%, Aluminum (Al) ≤0.35%, Titanium (Ti) ≤0.50%, Copper (Cu) ≤0.50%.

Physical Properties

Density is approximately 8.43g/cm³, melting point is 1354-1413℃.

Mechanical Properties

It has high strength and plasticity, as well as certain fatigue strength. After appropriate heat treatment, its strength and other properties can be further improved.

Main Characteristics

Excellent corrosion resistance: performs well in freshwater, seawater, most alkaline solutions and organic acids, and has excellent resistance to chloride stress corrosion cracking. However, stress corrosion cracking may occur in high-concentration strong alkalis or high-temperature mercury environments.
Good high-temperature performance: It has good high-temperature strength and plasticity below 800℃, good high-temperature corrosion resistance and oxidation resistance below 1000℃, and a maximum operating temperature of 1150℃.

Excellent Processing Properties

It can be cold-processed and hot-processed, such as forging, stamping and deep drawing, and it also has good welding properties and can be connected by resistance welding, solution welding or brazing.

Heat Treatment Methods

Includes solution annealing, heating it to around 1050℃ and then cooling it to eliminate stress and improve toughness and plasticity; it can also be heated to around 950℃ and then cooled to improve strength and corrosion resistance; it can also be heated to around 850℃ and then slowly cooled to eliminate stress and

improve toughness.

Product Specifications

Usually available in the form of plates, strips and bars, generally supplied in the annealed state, plates and strips can also be provided under various tempering conditions.

Application Fields

Widely used in chemical equipment, catalyst carriers, reactors, heat exchangers, pipelines, storage tanks, etc. in the chemical industry; power plant boilers, flue gas desulfurization equipment, gas turbines, nuclear reactors, etc. in the energy industry; high-temperature aero-engine components, turbine disks, blade rings, casings, etc. in the aerospace industry; and artificial bones, artificial joints, dental implants, etc. in the medical industry.

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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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