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Polymer Property : Density = 9.05 g/cc Product List

Physical Properties

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Physical Properties Metric English Comments
Density 9.05 g/cc
0.327 lb/in³
Lucas-Milhaupt Silvaloy® A38T Brazing Alloy
Silvaloy A38T is used for joining ferrous metals, copper, copper alloys, nickel, nickel alloys and combinations of these metals. The tin content provides good wetting on many difficult to wet metals..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, cold reduced sheet, annealed, 20% cold work
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, after 1000 hours exposure at 650°C (1200°F)
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, after 4000 hours exposure at 650°C (1200°F)
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, after 8000 hours exposure at 650°C (1200°F)
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, bar and rings, annealed and aged
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, cold reduced sheet, annealed
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, cold reduced sheet, annealed and 20% cold work
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, cold reduced sheet, annealed and 40% cold work
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, cold reduced sheet, annealed and aged
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, cold reduced sheet, annealed, 40% cold work, aged
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, cold rolled sheet, annealed and aged
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good therm..
Density 9.05 g/cc
0.327 lb/in³
at RT
Haynes 242® alloy, hot rolled plate, annealed and aged
Age-hardenable, high ductility in the aged condition, lower thermal expansion than most alloys, very good oxidation resistance up to 815°C, excellent low cycle fatigue properties, very good thermal..
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