Turning Inserts
Discount 30%
In Stock
CNMG 120412E-HR6 EC461H, ANSI: CNMG 433, 80° Rhombic Negative Turning Insert, RE 1.2mm (0.05"), Carbide (CVD) for rough turning of P Materials in bad (heavy Interrupted) conditions
80127365
EASYCUT - Part # 80127365
In Stock
6,50 CA$
9,28 CA$
The price is calculated on 21.12.2024
Price incl. VAT, delivery to your address
200 pcs.
Calgary (2360 Portland Str SE)
Main settings
Turning Load | Rough |
---|---|
Workpiece Material | P – Steel |
Cutting Conditions | Bad-Heavy Interrupted |
Corner Radius [RE] | 1.2mm (0.05") |
Insert Style | C Style - 80° Rhombic |
Insert Material | Carbide (CVD) |
Grade | EC461H |
Side Clearance | Negative |
Chip Breaker | HR6 |
ANSI code | CNMG 433 |
ISO code | CNMG 120412 |
Brand | EASYCUT |
Discount | 30% |
Item type | Turning Inserts |
Grade: EC461H
P35(P25-P45) CVD-coated grade, suitable for rough turning on steel and cast steel under challenging conditions. Its reliable cutting edge ensures excellent performance in interrupted machining, delivering a high metal removal rate.
Chip Breaker: HR6
Alternative chipbreaker for steel rough turning. Features a strong cutting edge and a double rake angle design that effectively reduces cutting force while maintaining good chip breaking at small cutting depths.
Turning Load | Rough |
---|---|
Workpiece Material | P – Steel |
Cutting Conditions | Bad-Heavy Interrupted |
Corner Radius [RE] | 1.2mm (0.05") |
Insert Style | C Style - 80° Rhombic |
Insert Material | Carbide (CVD) |
Grade | EC461H |
Side Clearance | Negative |
Chip Breaker | HR6 |
ANSI code | CNMG 433 |
ISO code | CNMG 120412 |
Brand | EASYCUT |
Discount | 30% |
Item type | Turning Inserts |
Grade: EC461H
P35(P25-P45) CVD-coated grade, suitable for rough turning on steel and cast steel under challenging conditions. Its reliable cutting edge ensures excellent performance in interrupted machining, delivering a high metal removal rate.
Chip Breaker: HR6
Alternative chipbreaker for steel rough turning. Features a strong cutting edge and a double rake angle design that effectively reduces cutting force while maintaining good chip breaking at small cutting depths.
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