The TNMG 160404-MF3 OS9201S is a negative-rake carbide turning insert designed for semi-finishing operations on CNC and conventional lathes. Its 60° triangular geometry provides high edge strength and six cutting edges, delivering excellent cost efficiency. With a 0.4 mm corner radius, it ensures fine surface finishes and dimensional accuracy, making it suitable for applications requiring precision.
Made from the advanced OS9201S grade, this insert combines a fine-grained carbide substrate with a silver-colored PVD coating that provides high wear and heat resistance. It is optimized for machining stainless steels, titanium alloys, and high-temperature resistant alloys. The MF3 chipbreaker is engineered for semi-finishing, offering efficient chip control, stable cutting action, and smooth surface quality under continuous cutting conditions.
The TNMG 160404-MF3 OS9201S fits standard MTJNR and TTJNR holders, designed for 60° triangular inserts. It is commonly used in aerospace, medical, and precision engineering industries where accuracy and performance in machining difficult-to-cut materials are critical.
Code Breakdown:
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T – Insert shape: 60° triangular
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N – Clearance angle: 0° (negative rake)
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M – Tolerance class (medium)
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G – Insert with hole and chipbreaker
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16 – Insert size: 16 mm
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04 – Insert thickness: 4.76 mm
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04 – Corner radius: 0.4 mm
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MF3 – Chipbreaker for semi-finishing
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OS9201S – Grade optimized for stainless steels, titanium alloys, and heat-resistant alloys
Key Features:
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TNMG-style 60° triangular carbide turning insert
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Size: 16×16 mm, thickness 4.76 mm, radius 0.4 mm
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OS9201S grade – wear and heat resistance for stainless steels and alloys
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MF3 chipbreaker for semi-finishing and chip control
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Six cutting edges for cost efficiency
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Negative rake design for strength and durability
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Fits holders: MTJNR, TTJNR
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Ideal for stainless steels, titanium, and heat-resistant alloys
Grade Information (OS9201S):
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Coating: PVD, silver color
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Application: semi-finishing turning of titanium alloys, high-temperature alloys, stainless steels (304, 316)
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Best for: continuous cutting of titanium alloys and stainless steels
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Material hardness: HRC <45
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Cutting speed: 140–220 m/min
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