Rompevirutas Insertos
ap·d.o.c. =0.05~1,5(mm)
f=0.05~0.35(mm/r)
Application: Finishing Materials: P Precision: M
Double-side chipbreaker with M-class tolerance has outstanding performance on machining P kind soft steel and medium-carbon steel to ensure high surface quality.
ap·d.o.c. =0.3~2,5 (mm)
f=0.05~0.35(mm/r)
Application: Finishing Materials: P Precision: M
Double-side chipbreaker with M-class tolerance for finish machining carbon and alloy steels.
ap·d.o.c. =0.05~2,5(mm)
f=0.05~0.3 (mm/r)
Application: Finishing Materials: M Precision: M
Double-side chipbreaker with M-class tolerance with sharp edge for machining stainless steel to reduce built-up edge and work-hardening, while improving surface finish.
Application: Finishing Materials: S Precision: E
Double-side chipbreaker with E-class precision, for holding close tolerance when indexing. Wear resistance and work hardening resistance combine to achieve high maching precision.
Application: Wiper Precision: M
General chipbreaker with wiper
Double-side chipbreaker with M-class tolerance designed with wiper to achieve good surface finish at higher feed rates.
ap· d.o.c. =1.5~6(mm)
f= 0.15~0.5(mm/r)
Application: Semi-finishing Materials: P Precision: M
Double-side chipbreaker with M-class tolerance reduces cutting force and workpiece adhesion, with a broad chipbreaking range for machining alloy steel.
Application: Semi-finishing Materials: P Precision: M
Double-side chipbreaker with M-class tolerance has higher toughness on cutting edge than DM chipbreaker. It’s suitable for semi-finishing under unfavorable conditions. Also good for machining cast iron with low cutting force.
Application: Semi-finishing Materials: S Precision: M
Double-side chipbreaker with M-class tolerance with good capability to prevent wear and workhardening when machining low-machinability rated metals.Possesses higher feed and depth of cut capability than NF chipbreaker.
ap· d.o.c. =1.0~5.0(mm)
f=0.1~0.5(mm/r)
Application: Semi-finishing Materials: M Precision: M
Double-side chipbreaker with M-class tolerance serves to reduce cutting force and workpiece adhesion when machining stainless steel. Possesses higher feed and depth of cut capability than EF chipbreaker.
Chipbreaker
Application: Semi-finishing Materials: P M K Precision: M
Double-side chipbreaker with M-class tolerance has good cutting edge toughness with wide application area. Unfavorable chip control compared to dedicated chipbreakers.
Application: Light-loud roughing Materials: P K Precision: M
Double-side chipbreaker with M-class tolerance for light roughing, higher metal removal rate, and greater cutting edge security
Application: Roughing Materials: P Precision: M
Single-side chipbreaker with M-class tolerance has high security on cutting edge for higher removal rates and low cutting force at large cutting depth and high feed rates.
Double-side
Application: Roughing Materials M Precision: M
Single/Double side chipbreaker with M-class tolerance has good impact-resistance.The chipbreaker's cutting edge is designed to balance security and sharpness.High performance is achieved by reducing edge build-up and reducing heat when roughing stainless steel.
ap· d.o.c.= 5~15(mm)
f= 1.0~1.2(mm/r)
Application: Heavy-load machining Materials: P Precision: M
Single-side chipbreaker with M-class tolerance has high strength and security on cutting edge, with strong capability to prevent plastic-deformation under high metal removing rate.
chipbreaker
(flat top)
Application: Cast iron machining Materials: K Precision: M
Double-side with M-class tolerance has high cutting edge strength to effectively machine through workpiece imperfections, such as sand pockets in cast iron.
chipbreaker
(flat top)
Application: Super hard inserts Precision: G
For machining non-ferrous metal and high-hardness material
G-class tolerance is the best choice for machining nonferrous metals with high-hardness materials by soldering PCBN and PCD onto cemented carbide substrate.
chipbreaker
(flat top)
Application: Ceramic inserts Materials: P M K Precision: G
Ceramic inserts with double-side G-class tolerance for machining various materials such as hardened steel, cast iron and steel with various cutting edge treatment.
ap· d.o.c. =0.05~1(mm)
f=0.05 ~0.3(mm/r)
Application: Extra finishing Precision: G
First choice for finish machining
G-class tolerance is recommended for precision finishing.
ap· d.o.c. =0.1~2(mm)
f=0.05~0.3 (mm/r)
Application: Finishing Precision: M
Chipbreaker for finishing with wide application
With M-class tolerance suitable for internal and external finishing machining for various materials such as steel and cast iron etc.
ap· d.o.c. = 0.1~2(mm)
f= 0.05~0.3 (mm/r)
Application: Finishing Materials: M Precision: M
M-class tolerance; sharp cutting edge suitable for finishing materialsas stainless steel and soft steel, etc. where edge build-up is problem.
ap·d.o.c. =1~4(mm)
f=0.2~0.5(mm/r)
Application: Semi-finishing Precision: M
Chipbreaker for semi-finishing with wide application
M-class tolerance; suitable for boring and o.d. semi-finishing materials, like steel and cast iron etc.
ap· d.o.c. = 1~4(mm)
f= 0.2~0.5(mm/r)
Application: Semi-finishing Materials: M Precision: M
M-class tolerance; higher toughness on cutting edge than EF chipbreaker for higher feed and depth of cut.
ap· d.o.c. =2~5(mm)
f=0.2~0.4(mm/r)
Application: Roughing Precision: M
General chipbreaker for roughing
M-class tolerance; suitable for both boring and o.d. roughing materials as steel,stainless steel and cast iron etc.
Application: AI machining Precision: G
Chipbreaker for machining Al
G-class tolerance, large rake angle and large clearance angle combine for positive cutting action,with good chip control.
Application: AI machining Precision: G
Unique chipbreaker for machining AL alloy
G-class tolerance, big rake angle and surface polishing, prevents built-up edge, allowing for high surface workpiece quality and long tool life
chipbreaker
(flat top)
Application: Super hard inserts Precision: G
For nonferrous metals and materials with high hardness
G-class tolerance; for machining nonferrous metals and materials with high hardness by soldering PCBN and PCD material to cemented carbide substrate.