FWM™ 1058 alloy

FWM™ 1058 alloy offers excellent corrosion resistance, mechanical strength, fatigue resistance, and a high elastic modulus. The material can be worked in a low strength condition and can be heat treated in its final form.

 

Chemical composition

Composition

ASTM F1058
Gr. 2
UNS R30008
%

Carbon 0.15 max
Manganese 1.0 - 2.0
Silicon 1.20 max
Phosphorus 0.015 max
Sulfur 0.015 max
Chromium 18.5 - 21.5
Nickel 15.0 - 18.0
Cobalt 39.0 - 42.0
Molybdenum 6.5 - 7.5
Beryllium 0.001 max
Iron Balance

 

Physical properties

  Metric English
Density 8.3 g/cm³ 0.300 lbs/in³
Modulus of Elasticity 200 Gpa 29 Mpsi
Electrical Resistivity 996 µohm*mm 39.2 µohm*in
Thermal Conductivity 12.5 W/(m*°C) 86.7 BTU*in/(hr*ft²*°F)
Coefficient of thermal expansion 151 µm/m*°C) 83.9 µin/(in*°F)

* Values calculated at 22 °C [72 °C]

 

Mechanical properties

Cold worked
%

Yield strength

Ultimate tensile strength

Elongation %
0 469 MPa [68 ksi] 1034 MPa [150 ksi] 55
20 993 MPa [144 ksi] 1413 MPa [205 ksi] 9
37 1324 MPa [192 ksi] 1689 MPa [245 ksi] 5

50

1593 MPa [231 ksi] 1896 MPa [275 ksi] 3.9

60

1772 MPa [257 ksi] 2034 MPa [295 ksi] 3.8

68

1847 MPa [268 ksi] 2151 MPa [312 ksi] 3.8

75

1958 MPa [284 ksi] 2241 MPa [325 ksi] 3.9

* Values are typical and may not represent all diameters. Test method will affect results.
All data represent results from a 25.4 cm [10 in] test gauge length.

 

FWM™ 1058 alloy

FWM™ 1058 alloy offers excellent corrosion resistance, mechanical strength, fatigue resistance, and a high elastic modulus. The material can be worked in a low strength condition and can be heat treated in its final form.

 

Chemical composition

Composition

ASTM F1058
Gr. 2
UNS R30008
%

Carbon 0.15 max
Manganese 1.0 - 2.0
Silicon 1.20 max
Phosphorus 0.015 max
Sulfur 0.015 max
Chromium 18.5 - 21.5
Nickel 15.0 - 18.0
Cobalt 39.0 - 42.0
Molybdenum 6.5 - 7.5
Beryllium 0.001 max
Iron Balance

 

Physical properties

  Metric English
Density 8.3 g/cm³ 0.300 lbs/in³
Modulus of Elasticity 200 Gpa 29 Mpsi
Electrical Resistivity 996 µohm*mm 39.2 µohm*in
Thermal Conductivity 12.5 W/(m*°C) 86.7 BTU*in/(hr*ft²*°F)
Coefficient of thermal expansion 151 µm/m*°C) 83.9 µin/(in*°F)

* Values calculated at 22 °C [72 °C]

 

Mechanical properties

Cold worked
%

Yield strength

Ultimate tensile strength

Elongation %
0 469 MPa [68 ksi] 1034 MPa [150 ksi] 55
20 993 MPa [144 ksi] 1413 MPa [205 ksi] 9
37 1324 MPa [192 ksi] 1689 MPa [245 ksi] 5

50

1593 MPa [231 ksi] 1896 MPa [275 ksi] 3.9

60

1772 MPa [257 ksi] 2034 MPa [295 ksi] 3.8

68

1847 MPa [268 ksi] 2151 MPa [312 ksi] 3.8

75

1958 MPa [284 ksi] 2241 MPa [325 ksi] 3.9

* Values are typical and may not represent all diameters. Test method will affect results.
All data represent results from a 25.4 cm [10 in] test gauge length.