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Assab Steels 8407 SUPREME Hot Work Steel
Categories: Metal; Ferrous Metal; Chrome-moly Steel; Tool Steel; Hot Work Steel

Material Notes: 8407 SUPREME is characterized by:
  • High level of resistance to thermal shock and thermal fatigue
  • Good high temperature strength
  • Excellent toughness and ductility in all directions
  • Good machinability and polishability
  • Excellent through-hardening properties
  • Good dimensional stability during hardening

The name "SUPREME" implies that by special processing techniques and close control, the steel attains high purity and a very fine structure. Further, 8407 SUPREME shows significant improvements in isotropic properties compared to conventionally produced AISI H 13 grades.

These improved isotropic properties are particularly valuable for tooling subjected to high mechanical and thermal fatigue stresses, e.g. die casting dies, forging tools and extrusion tooling. In practical terms, tools may be used at somewhat higher working hardness (+1 to 2 HRC without loss of toughness. Since increased hardness slows down the formation of heatchecking cracks, improved tool performance can be expected.

8407 SUPREME meets the North American Die Casting Association (NADCA) #207-90 for premium high quality H-13 die steel.

Applications: Tools for Die casting: Dies, fixed inserts cores, sprue parts, nozzles, ejector pins (nitrided), plunger, shot-sleeve (normally nitrided).
Tools for Extrusion: Dies, backers, die holders, liners, dummy blocks, stems.
Tools for pressing Aluminum, magnesium, copper alloys, and steel.
Molds for plastics: Injection molds, compression/transfer molds.

Premium AISI H13, W.-Nr. 1.2344

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Physical PropertiesOriginal ValueComments
Density 0.281 lb/in³
 0.272 lb/in³
@Temperature 800 °C
 0.277 lb/in³
@Temperature 399 °C
 
Mechanical PropertiesOriginal ValueComments
Hardness, Rockwell C 31100 hour total holding time at 600°C (1110°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 43100 hour total holding time at 550°C (1020°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 4310 hour total holding time at 600°C (1110°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 46600°C tempering temperature(2h + 2h). Austenitizing temperature 1020°C (1920°F).
 49600°C tempering temperature(2h + 2h). Austenitizing temperature 1050°C (1920°F).
 5110 hour total holding time at 550°C (1020°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 511 hour total holding time at 600°C (1110°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 52300°C tempering temperature(2h + 2h). Austenitizing temperature 1020°C (1920°F).
 52.5100 hour total holding time at 500°C (930°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 51 - 55Hardness before tempering. Austenitizing temperature: 1020°C (1870°F). Soaking time 30 minutes.
 53300°C tempering temperature(2h + 2h). Austenitizing temperature 1050°C (1920°F).
 53.51 hour total holding time at 550°C (1020°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 53.510 hour total holding time at 500°C (930°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 541 hour total holding time at 500°C (930°F) tempering temperature. Austenitizing temperature 1020°C (1870°F)
 52 - 56Hardness before tempering. Austenitizing temperature: 1050°C (1920°F). Soaking time 15 minutes.
Tensile Strength at Break 285 MPa
@Temperature 700 °C
Rm. Austenitizing temp. 1020°C. Tempering temp. 610°C
 930 MPa
@Temperature 550 °C
Rm. Austenitizing temp. 1020°C. Tempering temp. 610°C
Tensile Strength, Ultimate 1420 MPaRm. 45 HRC.
 1820 MPaRm. 52 HRC.
Tensile Strength, Yield 1280 MPaRp02. 45 HRC.
 1520 MPaRp02. 52 HRC.
 150 MPa
@Temperature 700 °C
Rp02
 720 MPa
@Temperature 550 °C
Rp02
Elongation at Break 10 %
@Temperature 500 °C
 10 %
@Temperature 600 °C
 20 %
@Temperature 700 °C
Reduction of Area 50 %
@Temperature 500 °C
 65 %
@Temperature 600 °C
 90 %
@Temperature 700 °C
Modulus of Elasticity 202.5 GPa
 130 GPa
@Temperature 800 °C
 175 GPa
@Temperature 400 °C
Impact Test 16.0 J
@Treatment Temp. 400 °C
400°C Tempering temperature (2h + 2h)
 20.0 J
@Treatment Temp. 600 °C
 21.0 J
@Treatment Temp. 200 °C
200°C Tempering temperature (2h + 2h)
 
Thermal PropertiesOriginal ValueComments
CTE, linear 12.6 µm/m-°C
@Temperature 20.0 - 400 °C
 13.9 µm/m-°C
@Temperature 20.0 - 800 °C
Thermal Conductivity 24.6 W/m-K
@Temperature 20.0 °C
 26.2 W/m-K
@Temperature 400 °C
 27.6 W/m-K
@Temperature 800 °C
 
Component Elements PropertiesOriginal ValueComments
Carbon, C 0.39 %
Chromium, Cr 5.2 %
Iron, Fe 90.71 %
Manganese, Mn 0.40 %
Molybdenum, Mo 1.4 %
Silicon, Si 1.0 %
Vanadium, V 0.90 %

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to go back to viewing the property data in MatWeb's normal format.

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NASSAB13 / 15031

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