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1.2709 Hot Work Tool Steel

1.2709 Hot Work Tool Steel
group name
Tool Steel Bars
Min Order
1 piece
brand name
fushun
Nearest port for product export
Tianjin, Qingdao, Shanghai, Huangshi
Delivery clauses under the trade mode
FOB, CFR, CIF, CIP, CPT, DDP, DDU, DAF
Acceptable payment methods
T/T, L/C, D/P D/A
update time
Tue, 23 May 2023 11:06:01 GMT

Paramtents

  • Process hot rolled or hot forged

  • Delivery Condtion annealed

  • Surface Condition smooth, bright

Packging & Delivery

  • Min Order1 piece

Briefing

1.2709 Hot Work Tool Steel

Detailed

1.2709 Hot Work Tool Steel

 

Tool steels such as 1.2709 are primarily used for manufacturing tools and molds. They are characterized by a high hardness combined with a high ductility. Their specific mechanical properties allow usage in high-stressed components due to its high wear resistance.The maximum operating temperatures can further reduce wear.An SLM-specific bene t is the layerwise manufacturing,which allows to implement cooling channels into the component.

 

Typical Applications

Inserts for injection molding

Inserts for die casting

Tooling 

Material Numbers

 

Standard

UNS K93120

AMS 6521, 6514

ASTM Marage 300

 

Chemical composition%of the ladle analysis of grade1.2709

C()

Si()

Mn()

P()

S()

Cr()

Ni()

Mo()

Co(%)

Ti(%)

Max 0.03

Max 0.10

Max 0.15

Max 0.010

Max 0.010

Max 0.025

17.0-19.0

4.50-5.20

8.50-10.0

0.80-1.20

 

Physical Properties

Properties

Value

Density [g/cm3]

8.0

Tensile strength UTS [MPa]

>1000

Yield strength [MPa]

>900

Young’s modulus [GPa]

>130

Elongation [%]

<13

 

Heat Treatment

EOS ToolSteel 1.2709 can be heat treated to match various needs of different applications.The two step heat treatment can be performed under vacuum or inert gas atmosphere.First step is solution annealing to minimize amount of austenite in the martensitic matrix. The needed hardness and strength is achieved through aging treatment where hardening takes place through

forming of intermetallic phases and precipitates.

 

Solution Annealing:

2 h at 940"C(+10"C)measured from the part followed by rapid air cooling to room temperature(below 32"C).Cooling rate 10-60"C/min. Reaching room temperature before starting aging treatment is required to achieve desired microstructure.

 

Aging:

For peak hardness and strength 3-6 h at 510'C(+10C)measured from the part followed by air cooling. Mechanical properties presented in this document achieved through this aging procedure.For bulky parts ensure uniformity of properties by increasing hold time up to 6 h.Also,

to maximize fatigue strength,a hold time of 6 h is recommended.