Product classification
inconel 617
Inconel 617 alloy performs particularly well at high temperatures. At ambient temperatures up to 1100°C, it is not only able to withstand long-term oxidation and carbonization corrosion, but also exhibits excellent corrosion resistance in vulcanized environments. The alloy's ability to resist corrosion stems from its unique chemical composition and microstructure, which allow it to maintain stable performance in high-temperature and corrosive environments.
Classification:
Key words:
Superalloy | Inkenel | Hastelloy | Inkloy | Precision Alloy Series
Product Parameters
Inconel617 Encyclopedia
Inconel 617 alloy: the guardian of high temperature and corrosive environments
In modern industry, especially in high-temperature and corrosive environments, the choice of materials is critical to the performance and longevity of equipment. Inconel 617 alloy, a nickel-based Inconel alloy, is ideal for these extreme conditions due to its excellent corrosion resistance and mechanical properties.
Inconel 617 alloy performs particularly well at high temperatures. At ambient temperatures up to 1100°C, it is not only able to withstand long-term oxidation and carbonization corrosion, but also exhibits excellent corrosion resistance in vulcanized environments. The alloy's ability to resist corrosion stems from its unique chemical composition and microstructure, which allow it to maintain stable performance in high-temperature and corrosive environments.
Inconel 617 Similar Grades:
W.Nr.2.4663 NiCr23Co12Mo (Germany)
Inconel617 Process Performance and Requirements:
1. The suitable hot working temperature of the alloy is 1200-950 °C, and the cooling method can be water quenching or other rapid cooling methods, and the material must be put into the furnace when the heating furnace reaches the highest temperature.
2. The average grain size of the alloy is closely related to the deformation degree of the forging and the final forging temperature.
3. The oxide near the alloy weld is more difficult to remove than that of stainless steel. Mechanical or chemical methods can be used, and metal contamination and high surface deformation should be avoided when using mechanical methods. Before pickling in a mixture of nitric and hydrofluoric acids, the oxides are also removed with sandpaper or pretreated in a salt bath.
4. The alloy is very suitable for welding, including tungsten electrode arc welding (GTAW/TIG), manual arc welding (GMAW/MIG), pulse arc welding and shielding gas arc welding.
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