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TURNING INSERTS
TURNING INSERTS COATED CARBIDE (CVD)
aSpecial tough fibrous structure improves wear and fracture resistance.
aIt covers a wide application range and thus reduces the number of tools required.
SELECTION STANDARD
a TURNING
Work Material Cutting Recommended Grade Recommended Cutting ISO Application Range
P Mode Speed (m/min)
300 P01 MC5015
Steel Continuous UE6105 (200 400) P10 UE6105 UE6110 MY5015 MC6025 UE6020
Cutting UE6110 250 P20 Nano-texture
(150 400) P30 Al2O3
Interrupted MC6025 200 P40 UE6035 UH6400
Cutting UE6035 (100 280) M01 Tough grip
150 M10 Nano-texture
M MC7015 (80 200) M20
200 M30 TiCN
Continuous (160 250) M40 MC7015 US7020
Cutting K01 Special carbide substrate HRA91.0
150 K10
Stainless Steel MC7025 (120 200) K20 MC7025 MY5015 US735
Continuous US735 K30
and MC5005 100 S01 MC5005 UC5105 MC5015 UC5115
Interrupted MC5015 (80 120)
Cutting
300
K (200 400)
Continuous
Cutting 250
(150 300)
Cast Iron
Ductile Cast Iron
Interrupted
Cutting
S Heat Resistant Continuous and US905 80 US905
Alloy Interrupted Cutting (50 100)
ISO insert series for Cast Iron Turning
MC5005/MC5015 MC5005
Patented technology Extra thick Al2O3 coating layer.
Nano-Texture Coating Technology Achieved by combining the latest coating technologies.
The optimised crystal growth, Nano- Thickness comparisons of Al2O3
Texture coating technology gives More than twice as thick as
outstanding wear and chipping conventional Al2O3 coating layers.
resistance.
Al2O3
Patented technology Conventional A Conventional B MC5005
Tough Grip Technology
The interface between the layers is
controlled at the nano level, allowing
the TOUGH GRIP layer extremely
high levels of adhesion to prevent
delamination.
Tough grip performance comparison Ultra thick layer
Conventional thick layers show the Nano-texture
adverse affects of peeling. Al2O3
Conventional A Conventional B Conventional C Tough grip
Nano-texture
Large chipping and peeling of the coating
TiCN
Special carbide substrate HRA91.0
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