1.4959
1.4959 Chemical composition:
Fe | Si | Mn | S | P | Cu | C | Cr | Ni | Ti | Al | Al+Ti | |
Min | Bal | ≤ | 0.06 | 19 | 30 | 0.15 | 0.15 | 0.85 | ||||
Max | 1.00 | 1.50 | 0.015 | 0.030 | 0.75 | 1 | 23 | 23 | 0.6 | 0.6 | 1.20 |
1.4959Physical properties:
Specific heat(J/kg・K) | 460 | |
Resistivity(μΩ・cm) | 99 | |
Thermal conductivity(W/m・K) | 12.6 | |
Average coefficient of thermal expansion(10-6/℃) | 25–200℃ | 15.9 |
25–400℃ | 16.8 | |
25–600℃ | 17.3 | |
25–800℃ | 18.1 | |
Longitudinal modulus of elasticity(MPa) | 19.7 x 104 | |
Curie Point(℃) | -115 | |
ferromagnetic | not | |
melting point(℃) | 1357-1385 |
1.4959Mechanical properties:
0.2%Yield strength | Tensile strength | Elongation | Hardness | |
(N/mm2) | (N/mm2) | (%) | ||
(HV) | (HB) | |||
≧ 170 | ≧ 450 | ≧ 30 | ― | ― |
1.4959Alloy properties:
High Temperature Resistance:HuaNickel 1.4959 is able to withstand extremely high temperatures and is suitable for environments up to 500°C and beyond. This stability at high temperatures makes it widely used in aerospace, nuclear industry, and other fields.
Corrosion resistance: The alloy has excellent corrosion resistance, especially in aqueous media and nitric acid-containing environments. Its high nickel content and special chemistries (e.g. low carbon, high chromium) provide good resistance to stress corrosion cracking and resistance to pitting and crevice corrosion cracking.
1.4959Uses of alloys:
It is widely used in a variety of industrial fields, such as high-temperature heat exchangers, nitric acid condensers, high-temperature furnaces and high-temperature pipelines. 1.4959 exhibits resistance to oxidation and hot corrosion at high temperatures, making it ideal for use in equipment such as high-temperature heat exchangers, high-temperature furnaces, and high-temperature pipelines.
1.4959Process performance:
Welding process: HuaNickel 1.4959 is suitable for a variety of traditional welding processes, such as tungsten inert gas welding, plasma argon arc welding, etc., but it must be welded in an annealed state, and it needs to be cleaned of stains, dust and various traces to ensure welding quality.
Heat Treatment Process: 1.4959 can be heat treated by annealing, but it will not harden due to heat treatment. This heat treatment is usually carried out at high temperatures to improve its mechanical properties and plasticity.
Cold working process: The 1.4959 can also be cold worked with standard tools, which is very important for the production of precision parts.
Relevant standards:
ASTM B409 / UNS N08800 , UNS N08810 , UNS N08811 、ASME SB409 / UNS N08800 , UNS N08810 , UNS N08811 、SAE AMS 5871 、JIS G4902 / NCF800 , 800H