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  • Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan
  • Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan
  • Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan
  • Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan
  • Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan
  • Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan
Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan

Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan

$3.80-6.92/ Piece|10 Piece/Pieces(Min. Order)

Customization:

Customized packaging(Min.Order: 50 pieces)
Customized logo(Min.Order: 10 pieces)
Graphic customization(Min.Order: 20 pieces)

Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision CNC Turning: Designed for high-speed, durable machining of aluminum and steel workpieces, featuring carbide inserts with optimized geometries (VCGT160404-AZ/VCGT331AZ) for efficient chip control and reduced cutting forces.
  • Multi-Material Compatibility: Equipped with PVD and CVD coatings, enabling reliable performance across diverse materials like aluminum and steel in both external turning and general-purpose applications.

Key features

  • 1. Advanced Material Technology

  • With PVD/CVD-coated carbide construction, you can achieve 30% longer tool life in high-speed machining compared to uncoated tools*. The durable carbide material combined with advanced coatings ensures resistance to wear and heat, maintaining sharp edges for precision cuts.

  • 2. Optimized Precision Geometry

  • With engineered rake and clearance angles, you can minimize cutting forces and improve chip evacuation for smoother operations. The VCGT160404-AZ and VCGT331AZ geometries are designed for efficient aluminum and steel processing, reducing vibration and tool deflection.

  • 3. High-Performance Cutting Capabilities

  • With a HT110 grade, you can handle a wide range of materials, including aluminum and steel, at speeds up to 300 m/min*. This general-purpose grade balances hardness and toughness for consistent performance in both light and heavy-duty CNC applications.

  • 4. Versatile Scenario Solutions

  • With compatibility for aluminum and steel, you can efficiently process diverse materials in industrial and commercial CNC environments. The inserts’ design ensures reliability for high-volume production runs while maintaining precision in precision engineering tasks.

  • 5. Japanese Manufacturing Standards

  • Manufactured in Japan to stringent quality standards, you can trust precision and reliability for demanding machining needs. The inserts’ consistency in geometry and coating adherence aligns with Mitsubishi Materials’ reputation for industrial excellence.

Product details

Vcgt Aluminium Insert Cutting Tool Insertos Plaquettes Vcgt 16 04 08 Herramientas De Torneado Lathe Tools Inserts Made in Japan

The Dia-Edge Mitsubishi Materials VCGT160404-AZ/VCGT331AZ HT110 carbide inserts are precision-engineered for high-performance CNC turning applications. Crafted in Japan, these inserts combine advanced carbide substrates with PVD/CVD coatings to deliver exceptional durability, edge retention, and versatility for machining aluminum and steel. Their optimized geometries ensure smooth chip control and reduced cutting forces, making them ideal for diverse industrial machining needs.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialCarbide (HT110 grade) + Steel substrateHeavy-duty machining, high-speed cutting
CoatingPVD/CVD composite coatingsEnhanced corrosion resistance and wear protection
Insert GeometryVCGT160404-AZ (45° rake, 10° clearance)Precision external turning of aluminum
VCGT331AZ (30° rake, 10° clearance)General steel turning with stable feeds
Workpiece MaterialAluminum, SteelAerospace components, automotive parts

Customization guide

Adjustable parameters:

  • Rake angle (45°/30°) to balance chip evacuation and cutting force for specific materials.
  • Coating thickness (PVD/CVD) to tailor corrosion resistance for harsh environments.
  • Insert thickness (16.04mm/33.1mm) to match tool holder compatibility and load capacity.

Get inspired

With the Dia-Edge VCGT inserts, you can achieve precise, long-lasting cuts in aluminum and steel. Their Japan-manufactured carbide core ensures minimal thermal deformation, while PVD/CVD coatings extend tool life by 20% compared to uncoated inserts. Ideal for shops seeking reliability in high-volume production or complex CNC workflows.

Choose your model

ParameterBase Model (HT110)Advanced Model (HT200)Pro Model (HT300)
Edge Retention10,000 cuts+25% (12,500 cuts)*+50% (15,000 cuts)
Thermal Resistance600°C750°C900°C
Coating Thickness5μm8μm12μm
Recommended UseGeneral machiningHigh-speed aluminumHeavy-duty steel

Supplier's note

  1. Technical Breakthroughs:

    • Carbide Substrate (HT110/HT300): The HT300 Pro model’s advanced grade offers 30% better edge retention than industry benchmarks, enabling uninterrupted machining in abrasive steel alloys.
    • Dual Coating (PVD+CVD): Combines PVD’s surface hardness with CVD’s thermal stability, reducing downtime by 15% in high-temperature applications.
    • Optimized Rake Angles: The 45° VCGT160404-AZ minimizes vibration in aluminum, while the 30° VCGT331AZ reduces cutting forces in steel.
  2. Version Selection Guide:

    • Base Model: Ideal for small workshops or occasional machining of aluminum/steel (e.g., prototyping).
    • Advanced Model: Suited for medium-volume shops requiring faster feeds in aluminum (e.g., automotive part production).
    • Pro Model: Best for heavy-duty industries (e.g., aerospace, construction) needing sustained performance at extreme temperatures.

*Comparative data vs. standard ISO P30 grade inserts.

Frequently asked questions

  • Which carbide insert model suits aluminum machining in CNC turning?

  • How to clean and maintain Mitsubishi VCGT carbide inserts?

  • What’s the difference between carbide and HSS inserts for turning tools?

  • Can Mitsubishi VCGT inserts be customized for specific geometries?

  • Are Dia-Edge carbide inserts FDA-approved for food-grade machining?

  • Which coating (PVD vs. CVD) is better for aluminum turning?

  • Do VCGT inserts work for external turning on steel alloys?

  • What’s the warranty for Mitsubishi carbide inserts in CNC applications?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
CVD Coated Inserts (Industry Standard)Heavy-duty steel machiningCVD coating (25μm thickness, ASTM C718)▲ Durability for prolonged use in harsh environments (e.g., cast iron)▲▲ Lower thermal shock resistance (brittle at >800°C)
PVD Coated Inserts (Our Base)High-speed aluminum machiningPVD coating (5μm thickness, ISO 3497) + 45° rake angle (ISO 13399)▲▲ 30% faster cutting speeds vs CVD (up to 300 m/min)▲ Lower coating thickness may reduce tool life in heavy-duty steel work
Multilayer PVD Inserts (Our Advanced)Precision aerospace alloy machining5-layer PVD coating (10μm, ASTM F1387) + edge prep (ISO 18222)▲▲▲ 50% longer tool life vs Base (tested per JIS B 4501)▲▲▲ 40% higher cost vs Industry Standard
Uncoated Carbide InsertsLow-cost general machiningUncoated carbide (ISO 3497 hardness ≥89 HRA)▲ Low cost (30% cheaper than coated options)▲▲▲ Poor edge retention in abrasive materials (e.g., stainless steel)
Ceramic InsertsHigh-temperature superalloy machiningAl₂O₃ ceramic substrate (ISO 513 M category)▲▲▲ 1,200°C operational limit (ideal for titanium alloys)▲▲▲ Fragile design (prone to chipping in interrupted cuts)
CBN InsertsHardened steel machiningCBN coating (CBN content ≥60%, ASTM C 718)▲▲▲ 80% less wear at 1,000°C (vs carbide)▲▲▲ Requires specialized coolant systems (not user-installable)

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