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TURNING INSERTS
TURNING INSERTS CLASSIFICATION
Application
Tolerance7° POSITIVE INSERTS WITH HOLE
Breaker Name Features Cross Section
and Geometry
Picture
FP First recommendation for finishing carbon steel and Carbon Steel • Alloy Steel Nose
alloy steel
3 6°
ap (mm)
Breaker protrusion at the corner tip controls chips even at small 2 Flank
depth of cut. 1 6°
Maintains the edge strength at the corner and prevents sudden fractures. 0 0.1 0.2 0.3 0.4
f (mm/rev)
FM First recommendation for finishing stainless steel Stainless Steel Nose
6°
Breaker protrusion at the corner tip controls chips even at small ap (mm) 3
M depth of cut. 2 Flank
Maintains the edge strength at the corner and prevents sudden fractures. 1
0 0.1 0.2 0.3 0.4 6°
f (mm/rev)
FV First recommendation for finishing carbon steel, Carbon Steel • Alloy Steel Nose
alloy steel, mild steel and stainless steel 3 18°
ap (mm)
Suitable for low depths of cut and low feed rates. 2
Sharp cutting edge and low resistance design achieves excellent cutting 1 Flank
performance. 0 0.1 0.2 0.3 0.4 8°
f (mm/rev)
Finish Cutting FJ First recommendation for finishing difficult-to-cut Difficult-to-Cut Materials Nose
materials ap (mm) 3 14°
Ideal for heat-resistant alloy and titanium alloy. 2
The sharp edge produces a good surface finish. 1 Flank
The curved edge allows smooth chip discharge. 0 0.1 0.2 0.3 0.4 14°
f (mm/rev)
AZ For aluminium alloy Aluminium Alloy Flank
4
The high rake angle and 3D curved cutting edge provides sharpness ap (mm) 3 30°
at the cutting point. 2
Additionally the 3D shape of the rake face enables excellent chip control. 1
Lapping of the top surface gives a mirror finish for improved welding 0 0.1 0.3 0.5
resistance.
f (mm/rev)
G Carbon Steel • Alloy Steel
R/L-F Finishing 3 Flank
2 17°
Lead chipbreaker controls chip flow. ap (mm)
Sharp cutting edge gives a good surface finish.
1
0 0.1 0.2 0.3 0.4
f (mm/rev)
R/L Finishing Carbon Steel • Alloy Steel Flank
Lead chipbreaker. 3ap (mm)
Excellent chip control at low feed rates. 2 15°
1
0 0.1 0.2 0.3 0.4
f (mm/rev)
LP First recommendation for light cutting of carbon Carbon Steel • Alloy Steel Nose
steel and alloy steel 3 18°
ap (mm)
Sharp cutting edge due to a large rake angle. 2
Prevents welding of the insert and controls white turbidity of the surface finish. 1 Flank
Light Cutting Breaker protrusion suitable for depth of cut area achieves a wide 0 0.1 0.2 0.3 0.4 8°
range of chip control.
f (mm/rev)
M
First recommendation for light cutting of stainless Stainless Steel Nose
LM steel 18°
3
ap (mm)
Sharp cutting edge due to a large rake angle. 2 Flank
Prevents welding of the insert and controls white turbidity of the surface finish. 1 8°
Breaker protrusion suitable for depth of cut area achieves a wide 0 0.1 0.2 0.3 0.4
range of chip control.
f (mm/rev)
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