DIN 2.4617
Products Description CHEMICAL COMPOSITION IN % In the field of aerospace, DIN 2.4617 finds applications in engine components and structural parts that require both high strength and corrosion resistance at elevated temperatures. Its ability to withstand the extreme conditions of flight,...
Description
Products Description
CHEMICAL COMPOSITION IN %
| ASTM B335/564 | VdTÜV Material sheet 436 | |
|---|---|---|
| Ni | Rest | Rest |
| Fe, max. | 2,0 | 2,0 |
| Mn, max. | 1,0 | 1,0 |
| C, max. | 0,02 | 0,01 |
| Si, max. | 0,10 | 0,08 |
| S, max. | 0,03 | 0,015 |
| Cr, max. | 1,0 | 1,0 |
| Mo | 26,0 – 30,0 | 26,0 – 30,0 |
| P, max. | 0,04 | 0,03 |
| Co, max. | 1,00 | 1,00 |

In the field of aerospace, DIN 2.4617 finds applications in engine components and structural parts that require both high strength and corrosion resistance at elevated temperatures. Its ability to withstand the extreme conditions of flight, including rapid temperature changes and exposure to corrosive gases and fluids, makes it a reliable choice.
In the oil and gas industry, it is used in downhole tools and pipeline systems. The alloy's resistance to corrosion and high pressure, combined with its mechanical robustness, ensures the safe and efficient transportation of hydrocarbons. It can withstand the corrosive effects of sour gas and brine solutions, reducing the risk of leaks and equipment failures.
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