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AOMT 123608PEER Metal Lathe Carbide Inserts Stainless Fast Feed

Shenzhen Bwin Precision Tools Co., Ltd.
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Address: No.1613, honghai Bldg., Songgang Rd., Baoan Area ,Shenzhen , China

Contact name:Judy Le

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Shenzhen Bwin Precision Tools Co., Ltd.

AOMT 123608PEER Metal Lathe Carbide Inserts Stainless Fast Feed

Country/Region china
City & Province shenzhen
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Product Details

AOMT 123608PEER Milling Cutter Cnc Insert Carbide Machine Tooling Stainless Fast Feed

 

Quick Detail:

  • Good red hardness
  • Strong universality
  • High durability
  • Sharp blade
  • Good chip removal performance
  • High finish

 

Description:

  • Aomt carbide lathe insert particles are made of innovative cemented carbide materials commonly used for steel and stainless steel, which ensure the excellent performance of cutting edge, such as high stability, thermal shock resistance, good oxidation resistance and high temperature resistance; Unique coating process, fine and smooth, no drip marks, reduce surface friction, so that the cutting resistance is smaller; The blade is sharp, the four corners are available, the chip breaking and chip removal are smooth, and the processing efficiency is improved; The unique groove design enhances the impact and wear resistance of the cutting edge, allowing faster and more smooth chip removal, so as to ensure that the chip removal will not hang on the product surface and improve the surface finish.

 

Specifications:​

BrandBWIN
ModelAOMT123608
ColorBrown/Fuchsia
WorkpieceSteel/Stainless steel
TypeMilling Carbide Lathe Insert
MaterialTungsten Carbide Milling Insert
Processing Medium Cutting
FeatureGood red hardness
Strong universality
High durability

Sharp blade

Good chip removal performance
StandardISO
Quantity10pcs/box
Weight0.015kg
PackagePlastic Box
CustomizedOEM, ODM

 

Lead Time:

antity(pieces)1 - 3000>3000
Lead time (days)7To be negotiated

 

Notice:

  • The carbide lathe insert shall not be collided or dropped on the ground and must be handled with care.
  • Before installing the carbide lathe insert, the performance and purpose of the saw table must be confirmed to ensure that the cutting direction indicated by the blade arrow is consistent with the rotation direction of the saw table. It is strictly prohibited to install in the opposite direction. Wrong installation direction may cause the blade sawtooth to fall off, so as to prevent accidents.
  • After installation, it is necessary to confirm whether the central hole of the carbide lathe insert is firmly fixed on the flange plate of the saw table. If there is a gasket, the gasket must be sleeved; Then, gently push with your hand to confirm whether the blade rotates eccentrically.
  • When using, do not exceed the specified high speed
  • When the carbide lathe insert is not used, hang the blade vertically on the dry shelf.

 

Applications:

Our carbide lathe insert could to be processed Alloy steel, Tool steel, carbon steel, stainless steel, Cast iron and Titanium alloy. Working material as following:

Cnmg 160616 160608 190616 Tungsten Carbide Inserts 190608 190612 Cnc Lathe Machine Tool

 

FAQ
1. Flank Wear? Higher cutting resistance,Notch wear on flank,Poor roughness of surface, or deterioration of accuracy.
Soft grades,Excessive cutting speed,Small flank angle,Low feed.
Select a higher,wear-resistant grade,Reduce cutting speed,Increase flank angle,Increase feed.
 
2. Crater Wear? Uncontrolled chip,Poor surface quality,when finishing High speed processing carbon steel
Soft grades,Excessive cutting speed,Excessive feed,The strength of chip breaker Insufficiet.
Change to a higher wear-resistant grade,Reduce cutting speed,Reduce feed,Select a higher strength chip breaker.
 
3. Chipping? Sudden fracture of cutting edge(rake face and flank),Instability insert life
Toughness insufficient,Excessive feed rate,Strength of cutting edge insufficient,Instability of the tool.
Select a tougher grade,Decrease feed rate,Increase honing of cutting edge(chamfering to rounding),Increase the stability and setting angle
 
4. Insert Fracture? Cutting resistance increased Poor surface roughness.
Toughness insufficient,Excessive feed rate,Strength of cutting edge insufficient,Instability of the tool.
Select a tougher grade,Decrease feed rate,Increase honing of cutting edge(chamfering to rounding),Increase the stability and setting angle.
 
5. Plastic Deformation? Variation of dimension Nose wear,cutting edge drape or passivating.when processing alloy steel Poor surface roughness
Soft grade,Excessive cutting speed,Excessive cutting depth and feed rate,Overheat on cutting edge.
Select a higher red hardness cutting material,Decrease cutting speed,Decrease cutting depth and feed rate,Select a higher thermal conductivity cutting material(CVD+sufficient coolant).
 
6. Build-Up-Edge? Workpiece dissove with Cutting edge Poor surface roughness when finishing,Cutting resistance increased,Cutting soft materials.
Cutting speed too low,Cutting edge obtuse,Unsuitable tool material. Increase cutting speed,Increase rake angle,Select small sticking force.

 

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