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MOQ: | TBD |
Standard Packaging: | Packed with waterproof paper or weave bag, into pallets or wooden case. Special packaging requirements can also be accommodated. |
Delivery Period: | 7 days |
Payment Method: | T/T, D/P |
Supply Capacity: | 30 Tons per day |
Inconel 601/UNS N06601/W.Nr. 4851/NS3103 With Solid-Solution Matrix For Strengthful Elements
Inconel 601 (UNS N06601), also known by its German standard designation W.Nr. 4851 and trade name NS3103, is a high-performance nickel-chromium alloy designed for exceptional oxidation and corrosion resistance at high temperatures. It is commonly used in extreme environments where resistance to oxidation, carburization, and thermal cycling is required.
Inconel 601 (UNS N06601) is a high-performance nickel-chromium alloy that excels in high-temperature oxidation and carburization resistance. Its ability to withstand extreme thermal cycling and exposure to corrosive environments makes it a preferred material in industries such as aerospace, chemical processing, heat treatment, and power generation. The alloy’s excellent combination of strength, oxidation resistance, and durability under high temperatures ensures its versatility and reliability in demanding applications.
Trade Code
CN | JP | KR | US | DER | |||
GB | ISC | JIS | KS | COMMERCIAL CODE | UNS | W-Nr. | L-Nr. |
NS 3103 (NS 313) (1Cr23Ni60Fe13Al) |
H 06601 H 03103 |
NCF 601 | NCF 601 | Inconel 601 | N 06601 | NiCr23Fe | 2.4851 |
Chemical Composition Wt.% | % | Ni | Cr | Fe | C | Mn | Si | Cu | Al | S |
Min | 58 | 21 | 1 | |||||||
Max | 63 | 25 | Bal. | 0.1 | 1.5 | 0.5 | 1 | 1.7 | 0.015 |
Physical Constants | Density(g/cm³) | 8.1 | |||||
Melting Range(℃) | 1320-1370 |
Minimum mechanical properties of alloy at room temperature | Typical mechanical properties | Tensile strength Rm N/mm² | Yield strength RP 0.2 N/mm² | Elongation A5 % | Brinell Hardness HB | |||||
Annealing treatment | 650 | 300 | 30 | / | ||||||
Solution treatment | 600 | 240 | 30 | 220 |
Key Features Inconel 601/UNS N06601/W.Nr. 4851/NS3103 Wire:
Excellent resistance to oxidation at high temperatures up to 1200°C (2200°F), making it suitable for extreme heat conditions.
High resistance to carburization, making it ideal for applications in carburizing atmospheres (e.g., furnaces).
Effective protection against scaling and oxidation in aggressive environments.
Outstanding strength and stability at elevated temperatures, particularly in environments where thermal cycling or high heat is a concern.
Good resistance to both thermal and mechanical fatigue under cyclic conditions.
Excellent creep and stress-rupture strength at high temperatures.
Tensile Strength: Typically 75–100 ksi (515–690 MPa) at room temperature.
Yield Strength: 30–60 ksi (205–414 MPa) depending on processing.
Elongation: Good ductility and formability at room temperature.
Inconel 601 can be readily welded using conventional methods (TIG, MIG, electron beam, etc.), although special care must be taken to avoid excessive heat input.
Can be hot and cold worked and is suitable for forming, bending, and welding.
The alloy also has good machinability compared to other high-temperature alloys.
Applications:
Common Forms:
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MOQ: | TBD |
Standard Packaging: | Packed with waterproof paper or weave bag, into pallets or wooden case. Special packaging requirements can also be accommodated. |
Delivery Period: | 7 days |
Payment Method: | T/T, D/P |
Supply Capacity: | 30 Tons per day |
Inconel 601/UNS N06601/W.Nr. 4851/NS3103 With Solid-Solution Matrix For Strengthful Elements
Inconel 601 (UNS N06601), also known by its German standard designation W.Nr. 4851 and trade name NS3103, is a high-performance nickel-chromium alloy designed for exceptional oxidation and corrosion resistance at high temperatures. It is commonly used in extreme environments where resistance to oxidation, carburization, and thermal cycling is required.
Inconel 601 (UNS N06601) is a high-performance nickel-chromium alloy that excels in high-temperature oxidation and carburization resistance. Its ability to withstand extreme thermal cycling and exposure to corrosive environments makes it a preferred material in industries such as aerospace, chemical processing, heat treatment, and power generation. The alloy’s excellent combination of strength, oxidation resistance, and durability under high temperatures ensures its versatility and reliability in demanding applications.
Trade Code
CN | JP | KR | US | DER | |||
GB | ISC | JIS | KS | COMMERCIAL CODE | UNS | W-Nr. | L-Nr. |
NS 3103 (NS 313) (1Cr23Ni60Fe13Al) |
H 06601 H 03103 |
NCF 601 | NCF 601 | Inconel 601 | N 06601 | NiCr23Fe | 2.4851 |
Chemical Composition Wt.% | % | Ni | Cr | Fe | C | Mn | Si | Cu | Al | S |
Min | 58 | 21 | 1 | |||||||
Max | 63 | 25 | Bal. | 0.1 | 1.5 | 0.5 | 1 | 1.7 | 0.015 |
Physical Constants | Density(g/cm³) | 8.1 | |||||
Melting Range(℃) | 1320-1370 |
Minimum mechanical properties of alloy at room temperature | Typical mechanical properties | Tensile strength Rm N/mm² | Yield strength RP 0.2 N/mm² | Elongation A5 % | Brinell Hardness HB | |||||
Annealing treatment | 650 | 300 | 30 | / | ||||||
Solution treatment | 600 | 240 | 30 | 220 |
Key Features Inconel 601/UNS N06601/W.Nr. 4851/NS3103 Wire:
Excellent resistance to oxidation at high temperatures up to 1200°C (2200°F), making it suitable for extreme heat conditions.
High resistance to carburization, making it ideal for applications in carburizing atmospheres (e.g., furnaces).
Effective protection against scaling and oxidation in aggressive environments.
Outstanding strength and stability at elevated temperatures, particularly in environments where thermal cycling or high heat is a concern.
Good resistance to both thermal and mechanical fatigue under cyclic conditions.
Excellent creep and stress-rupture strength at high temperatures.
Tensile Strength: Typically 75–100 ksi (515–690 MPa) at room temperature.
Yield Strength: 30–60 ksi (205–414 MPa) depending on processing.
Elongation: Good ductility and formability at room temperature.
Inconel 601 can be readily welded using conventional methods (TIG, MIG, electron beam, etc.), although special care must be taken to avoid excessive heat input.
Can be hot and cold worked and is suitable for forming, bending, and welding.
The alloy also has good machinability compared to other high-temperature alloys.
Applications:
Common Forms: