PROPRIETARY ExELL H-13 SUPERIOR Tool steels
Material group:
Ferrous Alloys / Tool steels
Country / Standard:
PROPRIETARY
Data updates
Latest Update: 2018-07
Total number of updates: 2
Update History
2018-06
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PROPRIETARY ExELL H-13 SUPERIOR Chemical Composition
CRITERIA
VALUE
UNIT
CAS NUMBER
CRITERIA
C
VALUE
0.41
UNIT
%
CAS NUMBER
7440-44-0
CRITERIA
Cr
VALUE
5.07
UNIT
%
CAS NUMBER
7440-47-3
CRITERIA
Mn
VALUE
0.34
UNIT
%
CAS NUMBER
7439-96-5
CRITERIA
Mo
VALUE
val1
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UNIT
%
CAS NUMBER
7439-98-7
CRITERIA
Si
VALUE
val1
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UNIT
%
CAS NUMBER
7440-21-3
CRITERIA
V
VALUE
val1
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UNIT
%
CAS NUMBER
7440-62-2
Ellwood Specialty Steel, Product Data Sheets,
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PROPRIETARY ExELL H-13 SUPERIOR Physical Properties
Temperature
Modulus of Elasticity
190 — 210
GPa
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Density
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Poisson Coefficient
val1
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Thermal Conductivity
25.961
W/(m∙°C)
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This material has 52 properties — only a subset is shown here.
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PROPRIETARY ExELL H-13 SUPERIOR Heat Treatments
- Stress relieving: After rough machining of an annealed component, heat the part to 1200°F (649°C), equalize and hold 1-2 hours. Furnace cool to 900°F (482°C) and then air cool to room temperature.
Annealing: With a protective atmosphere or vacuum furnace, heat slowly to 1560°F (849°C). Equalize and hold one hour per inch of thickness. Furnace cool 20°F (11°C)/hr to 1100°F (593°C) and equalize. Air cool to room temperature. Hardness - 229 HB maximum.
Protect against decarburization and oxidation during austenitizing.
Preheating: Heat to 1200°F (649°C) and equalize. Continue heating to 1550°F (843°C) and equalize. Complete heating to hardening temperature.
Hardening: Typical austenitizing range is 1850-1920°F (1010-1049°C). Hardening temperature can be adjusted to develop added heat resistance. A hardening temperature of 1870°F (1021°C) is normally used for most applications while 1900°F (1038°C) can be used for increased heat resistance.
Hardening temperature: 1870°F (1021°C), hold time: 30 min, as quenched hardness 53 ± 2;
Hardening temperature: 1900°F (1038°C), hold time: 15 min, as quenched hardness 54 ± 2.
Quenching: Quenching should be performed as rapidly as possible without promoting excessive movement or cracking. Typical quenching media include: High speed gas with sufficient positive pressure in vacuum furnace; Circulating air/atmosphere; Martemepring bath or fluidized bed at 575-1020°F (302-549°C), then cool in air; Warm oil. Temper as soon as quenching temperature reaches 120-150°F (49-66°) part.
Tempering: Temper immediately after quenching to about 150°F (66°C). Temper a minimum of two times with intermediate cooling to room temperature. Choose the tempering temperature to develop required hardness. Should be heated to the desired tempering temperature, equalized and held a minimum of two hours. Air cooling to room temperature. Check hardness and adjust temperature for additional tempering operation(s).Repeat for added tempers.
PROPRIETARY ExELL H-13 SUPERIOR Mechanical Properties
Temperature
Tensile Strength
1413 — 1793
MPa
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Elongation, A
10 — 12
%
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Rockwell Hardness (HR)
val1
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Yield Strength, Rp0.2
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Reduction of Area
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- -Cross References
- 6Composition
- 32Mechanical Properties
- 10Physical Properties
- 1Heat Treatment
- -Metallography
- -Machinability
- 2Stress-Strain
- -Formability
- -Fatigue
- -Fracture
- -Creep
- -Joints
- -Coatings
- -Dimensions
- -Tribology
- -Corrosion
- -Ageing
- -Weatherability
- -Irradiation
- 1Total Suppliers