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Extreme Materials from MCAM
Visit Mitsubishi Chemical Advanced Materials for Extreme Materials - high performance plastic machining stock engineered to replace metals such as nickel alloys or stainless steel.

HP Alloys Alloy B-2, Solution Treated, 40% Cold Worked
Categories: Metal; Nonferrous Metal; Nickel Alloy; Superalloy

Material Notes: Solution Treated, 40% Cold Worked applies to tensile and/or hardness; other properties are typical of this alloy.

Data provided by High Performance Alloys, Inc. and Haynes International.

Key Words: ASME SB-333, ASME SB-335, ASME SB-619, ASME SB-622, ASME SB-626 UNS N10665
Vendors: No vendors are listed for this material. Please click here if you are a supplier and would like information on how to add your listing to this material.
 
Physical PropertiesMetricEnglishComments
Density 9.22 g/cc0.333 lb/in³
 
Mechanical PropertiesMetricEnglishComments
Hardness, Brinell 403403Estimated from Rockwell C
Hardness, Rockwell A 72.572.5Estimated from Rockwell C
Hardness, Rockwell C 4444
Hardness, Vickers 427427Estimated from Rockwell C
Modulus of Elasticity  189 GPa
@Thickness 12.7 mm,
Temperature 538 °C
27400 ksi
@Thickness 0.500 in,
Temperature 1000 °F
(Heat treated at 1066°C (1950°F), rapid quenched, plate)
 196 GPa
@Thickness 12.7 mm,
Temperature 427 °C
28400 ksi
@Thickness 0.500 in,
Temperature 800 °F
(Heat treated at 1066°C (1950°F), rapid quenched, plate)
 202 GPa
@Thickness 12.7 mm,
Temperature 316 °C
29300 ksi
@Thickness 0.500 in,
Temperature 600 °F
(Heat treated at 1066°C (1950°F), rapid quenched, plate)
 217 GPa
@Thickness 12.7 mm,
Temperature 21.1 °C
31500 ksi
@Thickness 0.500 in,
Temperature 70.0 °F
(Heat treated at 1066°C (1950°F), rapid quenched, plate)
 
Electrical PropertiesMetricEnglishComments
Electrical Resistivity  0.000137 ohm-cm
@Temperature 0.000 °C
0.000137 ohm-cm
@Temperature 32.0 °F
 0.000138 ohm-cm
@Temperature 100 °C
0.000138 ohm-cm
@Temperature 212 °F
 0.000138 ohm-cm
@Temperature 200 °C
0.000138 ohm-cm
@Temperature 392 °F
 0.000139 ohm-cm
@Temperature 300 °C
0.000139 ohm-cm
@Temperature 572 °F
 0.000139 ohm-cm
@Temperature 400 °C
0.000139 ohm-cm
@Temperature 752 °F
 0.000141 ohm-cm
@Temperature 500 °C
0.000141 ohm-cm
@Temperature 932 °F
 0.000146 ohm-cm
@Temperature 600 °C
0.000146 ohm-cm
@Temperature 1110 °F
 
Thermal PropertiesMetricEnglishComments
CTE, linear  10.3 µm/m-°C
@Temperature 20.0 - 93.0 °C
5.72 µin/in-°F
@Temperature 68.0 - 199 °F
 10.8 µm/m-°C
@Temperature 20.0 - 204 °C
6.00 µin/in-°F
@Temperature 68.0 - 399 °F
 11.2 µm/m-°C
@Temperature 20.0 - 316 °C
6.22 µin/in-°F
@Temperature 68.0 - 601 °F
 11.5 µm/m-°C
@Temperature 20.0 - 427 °C
6.39 µin/in-°F
@Temperature 68.0 - 801 °F
 11.7 µm/m-°C
@Temperature 20.0 - 538 °C
6.50 µin/in-°F
@Temperature 68.0 - 1000 °F
Specific Heat Capacity  0.373 J/g-°C
@Temperature 0.000 °C
0.0891 BTU/lb-°F
@Temperature 32.0 °F
 0.389 J/g-°C
@Temperature 100 °C
0.0930 BTU/lb-°F
@Temperature 212 °F
 0.406 J/g-°C
@Temperature 200 °C
0.0970 BTU/lb-°F
@Temperature 392 °F
 0.423 J/g-°C
@Temperature 300 °C
0.101 BTU/lb-°F
@Temperature 572 °F
 0.431 J/g-°C
@Temperature 400 °C
0.103 BTU/lb-°F
@Temperature 752 °F
 0.444 J/g-°C
@Temperature 500 °C
0.106 BTU/lb-°F
@Temperature 932 °F
 0.456 J/g-°C
@Temperature 600 °C
0.109 BTU/lb-°F
@Temperature 1110 °F
Thermal Conductivity  11.1 W/m-K
@Temperature 0.000 °C
77.0 BTU-in/hr-ft²-°F
@Temperature 32.0 °F
 12.2 W/m-K
@Temperature 100 °C
84.7 BTU-in/hr-ft²-°F
@Temperature 212 °F
 13.4 W/m-K
@Temperature 200 °C
93.0 BTU-in/hr-ft²-°F
@Temperature 392 °F
 14.6 W/m-K
@Temperature 300 °C
101 BTU-in/hr-ft²-°F
@Temperature 572 °F
 16.0 W/m-K
@Temperature 400 °C
111 BTU-in/hr-ft²-°F
@Temperature 752 °F
 17.3 W/m-K
@Temperature 500 °C
120 BTU-in/hr-ft²-°F
@Temperature 932 °F
 18.7 W/m-K
@Temperature 600 °C
130 BTU-in/hr-ft²-°F
@Temperature 1110 °F
 
Component Elements PropertiesMetricEnglishComments
Carbon, C 0.010 %0.010 %
Chromium, Cr 1.0 %1.0 %
Cobalt, Co <= 1.0 %<= 1.0 %
Iron, Fe <= 2.0 %<= 2.0 %
Manganese, Mn <= 1.0 %<= 1.0 %
Molybdenum, Mo 28 %28 %
Nickel, Ni 69 %69 %
Silicon, Si <= 0.10 %<= 0.10 %

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