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Zhuzhou XinHua Cemented Carbide Co., Ltd. Carbide Cutting Inserts-Turning inserts, Milling inserts, Cermet inserts and Aluminium inserts.
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Durable TCMT16T304 Indexable Cermet Cutting Tools Uncoated Steel Finishing

Zhuzhou XinHua Cemented Carbide Co., Ltd.

Durable TCMT16T304 Indexable Cermet Cutting Tools Uncoated Steel Finishing

Brand Name : Zhuzhou Xinhua

Model Number : TCMT16T304

Certification : ISO9001:2008

Place of Origin : China

MOQ : 10pcs

Price : Negotiable

Payment Terms : T/T

Supply Ability : 400000PCS PER MONTH

Delivery Time : 3-4days

Packaging Details : 10pcs in plastic case,and then packed in a carton.

Material : Cermet

Workpiece : steel

Coating : uncoated

Article number : TCMT16T304

Cutting condition : Finishing machining

Usage : outside cutting

Sample : Available

Packaging : 10pcs / box

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TCMT16T304 Cermet Inserts Uncoated Steel Finishing Indexable Cutting Tools


Features of cermet inserts :

  • TiCN cermet has a very high chemical stability.
  • Anti-stick knife and wear resistance is also much higher than the hard alloy. But also has better red hardness and anti-crescent crater wear performance, suitable for steel high speed processing and semi-finishing.
  • Cermet grades provide long tool life and excellent surface finish, combining toughness with superior wear resistance.
  • Very light cutting speed ,smooth chip removal, versatility

Material Material Characteristics
Carbon Steel, Alloy Steel and Tool Steel 36-48 HRC:

• Higher carbon content

• Higher chrome, nickel, and moly content

• Tough material to machine

• Abrasive

• Difficult to break and control the chip flow

• The material surface will harden when machined at high speed

• Good surface finish

Ferritic, Martensitic, and PH Stainless Steel under 48 HRC

• Brittle

• Stringy chips

• High cutting force

• The material will harden when machined at high speed.

Austenitic Stainless Steel:

• Becomes gummy under machining operations due to nickel content

• Very difficult to machine in soft conditions

• Very difficult to machine at a small depth of cut

• Develops a tough string of chips that are difficult to control. Forms a build-up on the insert tip

• Low thermal conductivity results in excess heat at the insert tip

• Material surface will harden due to high chromium content

Ductile and Malleable Cast Iron • Very difficult to machine • Small depth of cut • Spherical form graphite makes machining difficult • The carbide concentration creates hard spots • The material structure is not uniform • The crater wear and flank of the insert makes machining difficult • The insert tool life is less than gray cast iron
Gray Cast Iron

• Flake form of graphite makes machining easy

• Contains scale, inclusions and sand in the surface

• The material will break easily on the end of the cut

• Tendency to chatter and vibrate on thin wall section

• Chucking and rigidity of the workpiece is extremely important to minimize distortion, to achieve a good finish and close tolerance.

Application:

Cermet Inserts are excellent for all machining applications where specifications for high surface quality, dimensional stability and tight tolerances must be adhered to. They guarantee long tool life with small to medium chip cross sections and uniform allowances, and are ideal for fine finishing, finishing and rough finishing of steel, sintered metal and ductile cast iron.It has a reinforced structure that provides excellent chipping resistance, reducing the wear on the insert and preventing sudden fracture.

High quality surface finish

The main components, TiC and TiN, have good BUE resistance as they have low affinity with work materials. Thus, machining with cermets brings high quality surface finish over extended periods of time.

High speed cutting

1. The main components, TiC and TiN, are more resistant to wear and oxidation at high temperature than WC (tungsten carbide), which is the main component of carbide tools. Because of excellent wear and oxidation resistance, cermet grades are less reactive with work materials and make stable high speed machining possible.

2. The substrate is coated by the PVD method with TiN, TiCN, and/or TiAlN. The end results are materials that are suitable for precision machining and machining of difficult-to-cut materials. Inserts in these grades are tougher and harder than carbide and come with precision sharp cutting edges. They even have superior toughness and sharper cutting edges than ultra micro-grain carbide grades, with excellent wear resistance and thermal crack resistance.

Cermet Inserts Type:

CCMT060204-MT DCMT11T308-MT TNMG160408R/L-F TPKN1603PDTR
CCMT060208-MT DNMG150404-MT TNMG160402R/L-2G TEKN1603PDTR
CCMT09T304-MT DNMG150408-MT TNMG160404R/L-2G TEKN2204PDTR
CCMT09T308-MT DNMG150404-FG TNMG160408R/L-2G SPKN1203EDTR
CCMT09T304-FG DNMG150408-FG WNMG080404-MT SPKN1504EDTR
CCMT09T308-FG DNMG150404-VF WNMG080408-MT SPKR1504EDR
CNMG120404-MT DNMG150408-VF APMT1135 SPKR1504EDR
CNMG120408-MT TNMG160404-MT APMT1604 SEKN1203AFTN
CNMG120404-FG TNMG160408-MT TPKN110304 SEKN1203AFTN
CNMG120408-FG TNMG160404-FG TPKN110308 SEKN1203
DCMT070204-MT TNMG160408-FG TPKN160304 SEKR1203AFTN
DCMT070208-MT TNMG160402R/L-F TPKN160308 SEKR1504AFTR
DCMT11T304-MT TNMG160404R/L-F TPKN1603PDER SNKN1204ANTN


Durable TCMT16T304 Indexable Cermet Cutting Tools Uncoated Steel Finishing


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