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Finishing Cemented CTCMT Carbide Inserts TCMT16T304PF , Circle Carbide Inserts 

    Buy cheap Finishing Cemented CTCMT Carbide Inserts TCMT16T304PF , Circle Carbide Inserts  from wholesalers
     
    Buy cheap Finishing Cemented CTCMT Carbide Inserts TCMT16T304PF , Circle Carbide Inserts  from wholesalers
    • Buy cheap Finishing Cemented CTCMT Carbide Inserts TCMT16T304PF , Circle Carbide Inserts  from wholesalers
    • Buy cheap Finishing Cemented CTCMT Carbide Inserts TCMT16T304PF , Circle Carbide Inserts  from wholesalers
    • Buy cheap Finishing Cemented CTCMT Carbide Inserts TCMT16T304PF , Circle Carbide Inserts  from wholesalers

    Finishing Cemented CTCMT Carbide Inserts TCMT16T304PF , Circle Carbide Inserts 

    Ask Lasest Price
    Brand Name : MMM
    Model Number : TPGH
    Certification : ISO 9001
    Price : USD
    Payment Terms : L/C, T/T
    Supply Ability : 1,000,000 PCS/Month
    Delivery Time : 5-15 Days
    • Product Details
    • Company Profile

    Finishing Cemented CTCMT Carbide Inserts TCMT16T304PF , Circle Carbide Inserts 


    Carbide Turning Inserts TPGH Serials for Internal Precision Boring


    Application:

    • Precision boring.

    Feature Advantage:

    • The unique cutting edge skeleton design achieves the perfect combination of blade toughness and resistance to plastic deformation.
    • The blade adopts special surface technology, which greatly improves the surface quality of the insert, effectively reduces the cutting force, reduces the bonding between the insert surface and the material to be processed, and greatly improves the stability of the insert.
    • With special sintering technology, the impact resistance and wear resistance of the cutting edge are enhanced to improve the resistance of the cutting edge.

    • Grades:

    Grade


    Coating


    Performance

    Equivalent Grade

    MC2115


    TiCN & Al2O3 CVD Coatings

    • Have improved wear resistance and improved wear resistance.
    • They are ideal for high-speed cutting of steel parts to semi-finishing.
    • The cutting speed can be increased by more than 25%.
    • The tool life can be increased by more than 30% at the same cutting speed.

    GC4215

    GC4015

    UE6110

    UE6020

    UE6010

    CA5515

    AC2000


    MC2125


    TiCN & Al2O3 CVD Coatings

    • It has strong resistance to plastic deformation and edge strength, and is the universal choice for steel from finishing to roughing.
    • Stable performance under high removal rate cutting parameters or under harsh working conditions, and can achieve more environmentally friendly dry cutting.

    GC4225

    GC4235

    GC4025

    UE6035

    AC3000

    CA5525


    MC2135


    TiCN & Al2O3 CVD Coatings

    • It has strong toughness and resistance to plastic deformation.
    • It is an ideal grade for efficient roughing and gravity turning of steel under severe conditions.
    GC4235
    GC4035
    UE6035
    AC630M
    CA5535

    • Types:
      • ISO standard turning inserts are available in a variety of conventional types

    Technical Information:

    • Steel is the most common material in metal cutting.
    • Generally, steel has good machinability, but the specific properties vary greatly depending on the hardness of the material and the carbon content.
    • The machinability of steel varies depending on its alloying elements, heat treatment and manufacturing processes (forging, casting, etc.).
    • Steel generally has the following three categories:
      • Non-alloy steel:
        • Material classification: P1.1
        • Non-alloy steels include steels with a carbon content of 0.55% or less.
        • For non-alloy steels with higher carbon content, the processing characteristics are similar to those of low alloy steels.
        • For low carbon steel (<0.25%), due to the difficulty of chip breaking and the tendency of bonding, special care should be taken during processing.
      • Low-alloy steel:
        • Material classification: P2.x
        • Low alloy steel is the most commonly used material in metal cutting. These materials are either soft or hard (less than HRc 50).
        • The machinability of low alloy steel depends on the alloy content and heat treatment (hardness).
        • For low hardness materials, the most common types of wear are crater wear and flank wear.
        • Hard material cutting tools require extremely high heat and flank wear resistance, so for these processes, cast iron machining grades can be used.
        • Hard materials generate more heat in the cutting area, so plastic deformation is a common type of wear.
      • High alloy steel:
        • Material classification: P3.x
        • High alloy steels include carbon steel with a total alloy content of more than 5%.
        • High alloy steel includes both soft and hard materials (below HRc 50).
        • Cutting performance decreases as the alloy content and hardness increase.

    Recommended Cutting Parameters:

    • The following cutting parameters are the recommended range values. Appropriate adjustments and selections should be considered after considering the following factors:
      • Specific physical properties of steel
      • The actual condition of the part blank
      • Power and rigidity of the machine tool
      • Clamping rigidity of tools and workpieces
      • Balance between tool life and machining efficiency


    ISO


    Processing Range


    Grade

    Speed

    (m/min)

    Feed

    (mm/r)

    Depth

    (mm)

    PFinishing (-PF)MC2115200 - 5000.05 - 0.350.3 - 2.0
    PSemi-Finishing (-PM)MC2125180 - 4800.15 - 0.51.5 - 5.0
    PRoughing (-PR)MC2135130 -3800.3 - 0.83 - 15
    PHeavy Turning (-HPR)MC2135100 - 2400.5 - 1.55-15


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