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WNMG- MM1
Adopting arc rake angle, the insert features sharp cutting performance and low cutting force. The step-type chip breaker ensures stable chip breaking, while the heart-shaped buffer structure realizes smooth chip curling.
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WNMG-MF1
The gradual rake angle boosts edge sharpness and lowers cutting force. Arc transition on the main cutting edge reinforces overall edge strength. The curved cutting edge combined with raised chip breaker optimizes chip curling and achieves outstanding chip breaking performance.
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WNMG-KM1
This insert features dual rake angles to improve sharpness and tip stability. The positive land geometry lowers cutting resistance, while the large chip gullet enables smooth chip evacuation.
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WNMG-HQ
Coordinate rake angle with double convex points reduces cutting resistance and ensures steady chip flow. High edge strength and fine finish, for continuous & light interrupted cutting of carbon steel and alloy steel.
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WNMG-KL1
Designed with small rake angle and wide cutting edge for exceptional edge strength. The optimized chip breaker angle effectively minimizes wear and ensures stable chip breaking performance.
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WNMA
WNMA flat turning insert features non-groove design with smooth full face. It boasts high structural rigidity and outstanding edge strength, resistant to chipping and wear. Ideal for general turning, roughing and medium machining of various steels and cast iron, delivering stable
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WNMG-KH1
Wide land structure guarantees edge strength under large depth and feed. Special geometry cuts cutting force effectively. Superior tip rigidity makes it suitable for rough turning of cast iron.
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profile milling cutter concave 100 R10 HSS6542 d=32 mm Z=10 GOST 9305-93
Concave profile milling cutter R10, HSS6542 with 10 teeth, bore 32mm, meets GOST standard for precise forming machining.
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U-drill_S shaped Insert_D×3
Indexable Drills - Shanks Standard product range: D×3
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U-drill_W shaped Insert_D×5
Indexable Drills - Shanks Standard product range: D×5
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U-drill_S shaped Insert_D×4
Indexable Drills - Shanks Standard product range: D×4
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KING DRILL-2D
Indexable Drills - Shanks Standard product range: D×2
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U-drill_W shaped Insert_D×4
Indexable Drills - Shanks Standard product range: D×4
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KING DRILL-3D
Indexable Drills - Shanks Standard product range: D×3
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KING DRILL-5D
Indexable Drills - Shanks Standard product range: D×5
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KING DRILL-4D
Indexable Drills - Shanks Standard product range: D×4
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PCLNR-L Tool Holders for Turning
Feature reliable clamping, strong versatility and smooth cutting, suitable for general turning with stable performance.
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MCLNR-L Tool Holders for Turning
Feature high rigidity, stable clamping and excellent anti-vibration performance, ensuring high machining accuracy and efficiency.
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WWLN Holders for Turning
Feature firm clamping, high strength and good impact resistance, suitable for heavy-duty and interrupted cutting.
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MSBNR-L Tool Holders for Turning
The machining accuracy and surface quality of cylindrical components can be substantially improved through the strategic use of interchangeable inserts combined with precise control over cutting depth, chip geometry, and tool edge configuration.
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MSSNR-L Tool Holders for Turning
Employing a range of insert types and optimizing cutting parameters—namely depth of cut, chip morphology, and edge shape—enables superior precision and surface integrity in cylindrical external machining operations.
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MVJNR-L Tool Holders for Turning
Through the application of diverse inserts and meticulous regulation of cutting depth, chip dimensions, and edge geometry, superior accuracy and surface quality are achieved during external cylindrical finishing.
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ACLNR-L Tool Holders for Turning
Processing the outer surface of cylindrical components, by utilizing different types of inserts and precisely controlling cutting depth, chip dimensions, and edge geometry, effectively enhances machining accuracy and surface quality.
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BVJNR-L Tool Holders for Turning
By employing various inserts and precisely regulating cutting depth, chip size, and edge geometry, the machining accuracy and surface quality of cylindrical components are effectively improved during external surface finishing.