Nickel Alloy Inconel 718 (SAE)
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- Metal injection molding has been used typically for parts that require high strength levels to 650°C (1200°F) but usage is not limited to such applications. The MIM process is best suited for small sized, moderate to high geometry complexity parts with moderate to high production volumes.
- These castings have been used typically for structural parts requiring strength up to 704°C (1300°F) and oxidation resistance up to 982°C (1800°F), but usage is not limited to such applications.
- These products have been used typically for parts requiring high resistance to creep and stress-rupture up to 1300°F (704°C) and oxidation resistance up to 1800°F (982°C), but usage is not limited to such applications.
- These products have been used typically for parts requiring high resistance to creep and stressrupture up to 1300°F (704°C) and oxidation resistance up to 1800°F (982°C), particularly those parts which are formed or welded and then precipitation heat treated to develop required properties, but usage is not limited to such applications.
- These products have been used typically for parts requiring resistance to creep and stress-rupture up to 704°C and oxidation resistance up to 982°C, particularly those parts which are formed or welded and then heat treated to develop desired properties, but usage is not limited to such applications.
- These products have been used typically for parts, such as cases and ducts, requiring high strength at cryogenic temperatures and for short-time use up to 538°C (1000°F), particularly those parts which are formed or welded and then heat treated to develop required properties, but usage is not limited to such applications.
- These products have been used typically for parts, such as fasteners, requiring a room temperature minimum tensile strength of 1517 MPa after precipitation heat treatment for use up to 482°C (900°F) and having oxidation resistance up to 982°C (1800°F), but usage is not limited to such applications.
- These products have been used typically for rotating and structural parts requiring high strength at cryogenic temperatures and for short-time service up to 538°C (1000°F) and oxidation resistance up to 982°C (1800°F), but usage is not limited to such applications.
- This tubing has been used typically for fluid lines and components requiring resistance to creep and stress-rupture up to 704°C (1300 °F) and oxidation resistance up to 982°C (1800°F), particularly those parts which are formed or welded and then heat treated to develop desired properties, but usage is not limited to such applications.
- This tubing has been used typically for fluid lines and structural components requiring high strengthat cryogenic temperatures and for short-time service up to 649°C (1200°F) and oxidation resistance up to 982°C (1800°F), particularly those parts which are formed or welded and then heat treated to develop desired properties, but usage is not limited to such applications.
- This wire has been used typically as filler metal for gas-tungsten-arc or gas-metal-arc welding of precipitation-hardenable, corrosion and heat resistant nickel alloys of similar composition where the weld area is required to have strength and corrosion resistance comparable to those of the base metal, but usage is not limited to such applications.
Physikalische Eigenschaften
Name | Wert | Messverfahren und -bedingungen |
---|---|---|
Dichte | 8.19 – 8.221 kg/dm³ | |
Mechanische Eigenschaften | ||
0,2-%-Streckgrenze bei Zugbeanspruchung | > 397 MPa | |
Schlagenergie | 36.6 – 85.4 J | |
Schubmodul | 79 – 79.1 GPa | |
Zug-Elastizitätsmodul | 199.95 – 209 GPa | |
Zugdehnung beim Bruch | > 3 % | |
Zugfestigkeit | 827 – 1586 MPa | |
Elektrische und magnetische Eigenschaften | ||
spezifischer elektrischer Widerstand | 1.066 – 1.25 Ω∙mm²/m | |
Thermische Eigenschaften | ||
spezifische Wärmekapazität | 409.43 – 435 J/(kg∙°C) | |
Wärmeleitfähigkeit | 9.3 – 11.5 W/(m∙°C) |
Daten bereitgestellt von
Key to Metals AG
IBDT Ingenieurbüro Daniel Trost
+49 176 703 22 119
Anfrage per E-Mail
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