
TNMX Carbide Inserts For Steel And Cast Iron
The TNMX Insert is widely applied in automobile, aerospace, 3C and other industries.
Grade: Various
Tool holders: DTGNR/L, PTFNR/L, PTTNR/L, PTGNR/L, MTGNR/L, MTJNR/L, MTFNR/L, S***-PTFNR/L
Applications: Turning
Applicable fields: Automobile, Aerospace, etc
Product Introduction:
Insert with wiper for light cutting of carbon steel, alloy steel, mild steel, and stainless steel TNMX○○○-SW [Features]
- 60° equilateral triangle, negative insert, with hole. The high-efficiency insert that maintains surface roughness even when the feed rate is increased enables roughing and finishing in one shot.・Sharpness is improved with a positive land suitable for inner diameter machining. Prevent chatter. ・Wide chip pocket prevents chip clogging [Use]・For light cutting.
Product Specifications:



More Information about TNMX Carbide Inserts
TNMX carbide inserts are cutting tool inserts made of tungsten carbide that are commonly used in metalworking and machining applications. These inserts are designed for use in turning, milling, and other machining operations. The TNMX designation specifies the shape, size, and cutting geometry of the insert.
Here's a breakdown of the code:
● T: This typically stands for "turning" or "tool."
● N: This letter indicates the ISO standard shape of the insert.
● M: The second letter represents the tolerance class and the edge preparation.
● X: This letter signifies the chipbreaker style.
Carbide inserts, in general, are popular in machining due to their hardness, wear resistance, and ability to withstand high temperatures. Tungsten carbide, the primary component of these inserts, is a hard and durable material that can withstand the abrasion and heat generated during machining processes.
TNMX carbide inserts can be used in turning operations on lathes, milling operations, and other metal cutting processes. They are inserted into tool holders or cutting tools, providing a replaceable cutting edge. This allows for cost-effective tooling solutions since only the insert, rather than the entire tool, needs replacement when the cutting edge becomes dull.
The specific application of TNMX inserts can vary based on factors such as the material being machined, the type of machining operation, and the desired outcome. It's essential to choose the right insert geometry, grade, and chipbreaker style based on the specific requirements of the machining task at hand.
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