Xinhua Industrial Co., LTD

Xinhua Industrial Co., LTD

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APMT CNMG DNMG Carbide CNC Inserts For Metal Lathe Milling

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City:zigong
Province/State:sichuan
Country/Region:china
Contact Person:MrHARRY
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APMT CNMG DNMG Carbide CNC Inserts For Metal Lathe Milling

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Brand Name :ZWEIMENTOOL
Model Number :APMT CNMG DNMG SNMG TNMG VNMG WNMG INSERT
Certification :ISO
Place of Origin :CHINA
MOQ :1
Price :1-40 USD
Payment Terms :L/C,D/A,D/P,T/T,Western Union
Supply Ability :10000PCS/Month
Delivery Time :7-30 days
Packaging Details :Each in a Plastic Case, Total in a Carton Box
Material :Carbide
Coating :PVD and CVD are available
Service :OEM/ODM
HRC :Super hard
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Carbide CNC inserts - the heart of precision machining:


Superior Performance, Long Lasting Durability | Specialized Carbide CNC Insert Solutions

Provide high efficiency and high precision metal cutting tools for your CNC machine tools


Advantages of our carbide CNC inserts:

  1. Extraordinary hardness and wear resistance:

With tungsten carbide (WC) as the matrix and cobalt (Co) as the bonding phase, the hardness is up to HRA 90 or more, much better than high-speed steel.

Excellent wear resistance significantly extends tool life, reduces the number of tool changes and improves machine utilization.


2. Excellent red hardness:

High hardness and strength can still be maintained at high temperatures (up to 800-1000°C), suitable for high-speed cutting and dry/semi-dry machining, reducing cooling costs.


3. High rigidity and resistance to deformation:


Can withstand greater cutting force and impact load, ensuring the stability and dimensional accuracy of the machining process.


4. Wide material adaptability:


By adjusting tungsten carbide grain size, cobalt content and adding other carbides (e.g. TiC, TaC, NbC), special grades optimized for different machined materials (steel, stainless steel, cast iron, high-temperature alloys, non-ferrous metals, non-metals, etc.) can be developed.


5. Excellent surface finish quality:


Sharp cutting edges and stable performance enable machining of workpiece surfaces with a high degree of finish, reducing the need for subsequent finishing operations.


6. The power of coating technology:


PVD coatings (TiN, TiAlN, AlCrN, TiSiN, etc.): Provide high hardness, low coefficient of friction and good anti-bonding properties for machining of adhesive materials and for finishing in search of a sharp edge.

CVD coatings (TiCN, Al2O3, TiN, etc.): Provide high wear resistance, thermal stability and chemical inertness, especially suitable for high speed cutting, dry cutting and machining of cast iron and steel parts.

Advanced coating technologies can further increase insert life by 2-5 times and allow for higher cutting parameters.


We offer a wide range of Carbide CNC Inserts


We have a complete line of products to meet a variety of CNC machining needs


Categorized by machining mode:


Turning inserts: cylindrical turning, face turning, profiling, grooving/cutting off inserts, thread turning inserts.

Milling inserts: face milling inserts, square shoulder milling inserts, profiling milling inserts, slot milling inserts, thread milling inserts.

Drilling inserts: Inserts for indexable drills (center inserts, peripheral inserts).

Others: Boring inserts, grooving/cutting inserts, etc.


Classification by Insert Shape: A wide range of standard shapes (ISO standard) are available, such as:


Turning: C, D, S, T, V, W type, etc.

Milling: S, L, M, F, W, T type, etc.


Categorized by edge treatment:


Sharp: Finishing, thin depth of cut, low cutting forces.

Chamfered/T-land: Enhanced edge strength, anti-chipping, wide versatility.

Honed: High strength edge for heavy roughing and interrupted cuts.


Classification by coating:


Uncoated (application specific).

PVD-coated series: optimized for different materials and conditions.

CVD coating series: Optimized for high wear resistance and high temperature applications.

Composite coatings (multi-layer, nano-structured): better overall performance.


Applications


Our carbide CNC inserts are widely used in industries that require high precision and high efficiency in metal cutting:

  • Automobile manufacturing: engine parts (cylinder block, cylinder head, crankshaft, camshaft), transmission parts, chassis parts.
  • Aerospace: aircraft structure, engine parts (titanium alloy, high temperature alloy), landing gear.
  • Mold manufacturing: injection mold, die casting mold, stamping mold cavity, core processing.
  • Energy equipment: turbine blades, valve body, pump shell, oil drilling equipment parts.
  • General machinery: all kinds of shafts, disks, boxes, parts of the milling and drilling process.
  • Engineering machinery: large structural components, hydraulic components.
  • Medical equipment: precision instrument parts.
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