LET´S WORK TOGETHER.   Welcome to HAHN+KOLB France | For commercial customers only
ORION

ORION HPC multi-tooth mill, diameter 20.0 x 20 x 40 x 104 mm, HA shaft

Brand: ORION

Surface: TiSiN

Length: 104 mm

Art.-no. 16931130

Manufacturer article no. 16931130

EAN 4053625351343


Individual prices for customers after login

You need more information or have not found your desired product?

Application

Multi-tooth mill for circumferential machining, fine finishing and semi-roughing up to 68 HRC.

Execution

  • solid carbide ultra-fine grain
  • TiSiN-coated
  • Unequal twist angle
  • HA shaft in line with DIN 6535
  • type H
  • 0° chip angle
  • cutting edge finish
  • centre cutting

Advantage

  • optimum chip removal and temperature resistance
  • Maximum service life deu to TiSiN coating

Notes

At >60 HRC: ae = 0.07xD. Face cut from Z6 is only possible to a limited extent.

Product information
CAD data (available after login)

Certificates/ Documents

 | 

 | 

Brand

ORION

Main EAN Code

4053625351343

Manufacturer Part Number

16931130

Cutting material

SC

Surface

TiSiN

Type

H

Number of cutting edges (Z)

10 PCS

Twist angle

45°

Tool holding device

HA parallel shank

Construction length

Normal

Cutting edge diameter

20 mm

Cutting edge length

40 mm

Length

104 mm

Shank diameter

20 mm

fz hard 65 HRC

0.03 mm

Product Group

1FQ

Gross Weight

0.412 kg

Material groups for cutting valuesDescription regarding DINStrength Class [N/mm²]Material No.Vc [m/min]fz [mm/T] at diameterSuitability
1.00 Steels
1.06 Case-hardened steel16 MnCr 5<12001.7131160-1800.05
1.08 Heat-treated steel43 CrMo 4>10001.3563160-1800.05
1.09 Nitriding steel31 CrMoV 9<13001.8519150-1700.05
1.10 Tool steelX 38 CrMoV 5 1<13001.2343150-1700.05
6.00 Hard materials
6.01 Hardened steel -55 HRCx40CrMoV5-1-55HRC0.9620155-1750.05
6.02 Hardened steel -65 HRC90MnCrV8<65HRC135-1550.05

Art.-no.
Cust. Mat. No.

Hazardous Material

Product information
CAD data (available after login)

Certificates/ Documents

 | 

 | 

Technical information