210 2231624
210 2231624
Processing Materials (P) - Steels - Alloy Steels (Steel - Alloy Steel) Chipbreaker (UM) - Geometry for general machining of steels. It has a r...
View full detailsWorkpiece Materials (M) - Stainless Steels (Stainless Steel - Inox) (P) - Steels - Alloy Steels (Steel - Alloy Steel) Chipbreaker (MG) - Geom...
View full detailsMachining Materials (K) - Cast Irons - Grey Cast Iron (Cast Iron) Chipbreaker (..MA) - Designed for machining brittle materials such as cast i...
View full detailsMachining Materials (S) - Heat Resistant Superalloys (Fe,Ni,Co) - Titanium Alloys (HRSA, Titanium alloys) Lathe inserts from Korloy, a leading c...
View full detailsMachining Materials (P) - Steels - Alloy Steels (Steel - Alloy Steel) Chipbreaker (UG) - Geometry for general machining of steels. It features...
View full detailsWorkpiece Materials (P) - Steels - Alloy Steels (Steel - Alloy Steel) Chipbreaker (UF) - Geometry specially designed for finishing in steels. ...
View full detailsProcessing Materials (M) - Stainless Steels (Stainless Steel - Inox) Chipbreaker (MF) - Geometry specially designed for finishing stainless st...
View full detailsMachining Materials (K) - Cast Irons - Grey Cast Iron (Cast Iron) Chipbreaker (UC) - Geometry for general machining and finishing on cast iron...
View full detailsMachining Materials (M) - Stainless Steels (Stainless Steel - Inox) Roughing (MR) - Geometry designed for roughing stainless steels. It featur...
View full detailsCutting Materials (P) - Steels - Alloy Steels (Steel - Alloy Steel) Roughing Tool (UR) - Geometry designed for roughing and interrupted cuttin...
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Negative cutting lathe inserts 80° - WNMA/WNMG 06mm with a wide variety of chipbreakers and grades
Chipbreakers regulate the formation and removal of chips, directly affecting the quality of the machining.
The grade of the insert depends on the carbide composition and the coating,
The selection of the appropriate chipbreaker and grade is based on the material to be machined and the machining requirements. The correct combination of geometry, grade, and chipbreaker maximizes tool life and machining performance on various materials.