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ONGU08T508-PM Milling Inserts
  • ONGU08T508-PM Milling InsertsONGU08T508-PM Milling Inserts
  • ONGU08T508-PM Milling InsertsONGU08T508-PM Milling Inserts
  • ONGU08T508-PM Milling InsertsONGU08T508-PM Milling Inserts
  • ONGU08T508-PM Milling InsertsONGU08T508-PM Milling Inserts

ONGU08T508-PM Milling Inserts

The ONGU08T508-PM Milling Inserts launched by the OYT brand uses an ultra-fine-grained carbide core material and is made through a precision sintering process, with high strength and impact resistance. Its surface is coated with a PVD-deposited TiAlN multi-layer composite coating, which significantly improves wear resistance and oxidation resistance, reduces the friction coefficient, and extends service life. This insert is suitable for the efficient processing of ordinary steel, hardened steel (HRC30-HRC45) and high-hardness stainless steel. It supports multiple scenarios such as end milling and side milling, and is compatible with CNC machining centers and special machine tools.

Taizhou OYT, a veteran in the metal cutting tool industry, has consistently driven innovation to meet manufacturing demands for efficient cutting tools. The ONGU08T508-PM milling insert stands out as an indispensable solution in machining applications, boasting exceptional performance. This cutting-edge product embodies OYT's expertise in material science and tool design. Through rigorous production controls and comprehensive quality inspection systems, it delivers reliable solutions for various machining scenarios. Widely adopted in industries like mechanical manufacturing and automotive parts processing, this innovation exemplifies Taizhou OYT's corporate philosophy of "Quality First, Serving Manufacturing Excellence".


ONGU08T508-PM Milling Inserts

ISO

L

I.C

S

d

ONGU08T508-PM Milling Inserts

22.00

22.00

5.80

7.55


The ONGU08T508-PM milling insert showcases exceptional craftsmanship in both design and material. Utilizing ultra-fine-grained cemented carbide as its core material, this insert is precision sintered to deliver superior bending strength and impact resistance, effectively resisting complex stresses during machining while minimizing issues like edge chipping and fracture. Its surface features an advanced multi-layer composite coating technology, with high-hardness TiAlN base coating deposited through PVD (Physical Vapor Deposition) process. This tightly bonded coating significantly enhances wear resistance and oxidation resistance, reduces friction coefficient during cutting, decreases thermal generation, delays edge wear, and substantially extends service life. Additionally, the ONGU08T508-PM insert undergoes special passivation treatment, ensuring both cutting edge sharpness and edge strength. This design allows it to maintain stable cutting performance even when machining hard materials like hardened components, delivering reliable performance across various applications.


This milling insert delivers outstanding performance in terms of machinability hardness. It excels at high-efficiency cutting for unquenched ordinary steel parts, while maintaining excellent processing efficiency and stability when handling quenched steel components (HRC30-HRC45) and alloy tool steels. Even when machining high-hardness stainless steel, it effectively overcomes processing challenges and ensures quality control throughout the operation.


Taizhou OYT ONGU08T508-PM milling insert demonstrate exceptional adaptability, performing end milling, side milling, and various milling operations across vertical machining centers, horizontal milling machines, and CNC boring machines. These inserts excel in processing small-to-medium batch production of multi-variety components, as well as localized milling operations for large structural parts. Typical applications include precision milling of hardened automotive gearbox gears, forming of stainless steel pipe flanges, and surface milling of cast iron machine tool beds. The optimized chip breaker design automatically adjusts its configuration based on material characteristics and cutting parameters, effectively preventing chip entanglement with the tool or surface damage to workpieces while maintaining a clean machining environment and ensuring dimensional accuracy.

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