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Seco XOMX180608TR-M14 MK2050 Indexable Milling Inserts Heavy Face Milling Inserts

Seco XOMX180608TR-M14 MK2050 Indexable Milling Inserts Heavy Face Milling Inserts

MK2050 Indexable Milling Inserts

XOMX180608TR-M14 MK2050

MK2050 Face Milling Inserts

Place of Origin:

Sweden

Brand Name:

Seco

Model Number:

XOMX180608TR-M14 MK2050

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Product Details
Highlight:

MK2050 Indexable Milling Inserts

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XOMX180608TR-M14 MK2050

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MK2050 Face Milling Inserts

Payment & Shipping Terms
Minimum Order Quantity
100
Price
2-10USD/PCS
Packaging Details
Carton with Bubble paper which is suitable for long-distance transport
Delivery Time
4WEEKS
Payment Terms
TT
Product Description
XOMX180608TR-M14 MK2050 Indexable Milling Insert for Heavy Face Milling
Seco XOMX180608TR-M14 MK2050 Indexable Milling Inserts Heavy Face Milling Inserts 0
Product Description

XOMX180608TR-M14 MK2050 is a high-performance indexable milling insert designed for face milling and heavy-duty milling applications. Manufactured with a premium MK2050 coated carbide substrate, this insert offers an excellent balance of toughness, wear resistance, and thermal stability, making it ideal for continuous and high-volume machining.

The XOMX double-sided insert design provides multiple usable cutting edges, significantly reducing tooling cost per edge. The TR-M14 chipbreaker geometry is optimized for steel and alloy steel machining, ensuring smooth chip evacuation, reduced cutting forces, and stable cutting performance even under demanding conditions.

Suitable for CNC machining centers, gantry mills, and automated production lines, the XOMX180608TR-M14 MK2050 delivers consistent tool life and reliable surface quality in medium to high-speed milling operations.


⚙️ Key Features
  • Advanced MK2050 Coated Carbide Grade
    Multi-layer coating enhances wear resistance and oxidation resistance, ensuring longer tool life in continuous machining.
  • TR-M14 Optimized Chipbreaker Geometry
    Designed to reduce cutting resistance, minimize vibration, and improve chip control under medium to heavy cutting loads.
  • Double-Sided, Multi-Edge Design
    Multiple effective cutting edges per insert increase productivity and significantly lower cost per edge.
  • Excellent Cutting Stability
    Maintains stable performance under high feed rates and large depths of cut, reducing edge chipping and premature wear.
  • Consistent Surface Finish
    Strong cutting edges and stable engagement help achieve smooth and uniform machined surfaces.

 

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