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TNMG160408R/л ТНМГ 160404 TNMG332 331 Вольфрамовый режущий инструмент с ЧПУ для металла

Место происхождения Китай
Индивидуальная поддержка OEM, ODM, OBM
Brand Name ЛОВИФАР
Model Number TNMG160404/TNMG160408/TNMG332
Usage External Turning Tool

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TNMG insert is the floorboard of indexable turning blades, which is the mainstream of modern metal cutting applications of products that are primarily used in metal cutting milling cutting cutting thread turning areas such as the material can be divided into the coating blade metal ceramic blade ceramic knife TNMG blade super-hard etc. Its characteristics are high efficiency and high wear resistance, with processing efficiency more than four times that of traditional welding blade alloy blades. As coating technology advances, the key technology of wear-resistant high temperature resistant breakthrough will further improve efficiency and reduce processing costs.

Tnmg 16 04 08 insert is a sort of turning insert that is commonly used with P type tool holders. The most commonly used types are TNMG160404 and TNMG16048. In addition, inch size tnmg inserts can be manufactured. For example, TNMG160404 and TNMG16048.

External and internal turning tools of the M, P, and D types. For example, PTJNR/L, MTJNR/L, and DTJNR/L. All of them are relevant to tnmg 16 04 08 inserts. Sharp cutting edge, quick processing, easy chip removal, top option for finishing and semi-finishing, high surface finishing

This TNMG Insert has a T shape with negative angles for quick machining and good stability. The inserts are available in three different sizes. Typically, the insert dimension is determined by the demands of the client and the available space in the application for the cutting tools. The stability will improve as the insert size increases. Customers can choose the appropriate dimension by taking into account the working conditions and the equipment. When compared to a standard welding blade, the processing efficiency of the TNMG 220404 Insert improves by more than four times. Furthermore, it has high efficiency, wear resistance, high temperature resistance, corrosion resistance, high stiffness, low prices, energy savings, and a long service life. The TNMG Insert is primarily utilised in metal turning, milling, cutting and grooving, thread turning, and other similar applications.

TNMG inserts are replaceable and typically indexable cemented TNMG 220404 bits used in the machining of steels, чугун, high temperature alloys, and nonferrous materials. TNMG inserts provide quicker machining and better metal component finishing. TNMG 220404 inserts are more heat resistant than high speed steel tools.

TNMG inserts are made of a metal matrix composite in which TNMG particles serve as aggregates and a metallic binder acts as the matrix. Sintering is the process of mixing the TNMG particles with the binder. During this process, the binder will ultimately enter the liquid state, but the TNMG (which have a considerably higher melting point) will stay solid. The binder embeds/cements the tnmg 1604 carbide inserts, resulting in a metal matrix composite with specific material characteristics. The inherently ductile metal binder compensates for the TNMG nature, increasing toughness and durability. Such TNMG 1604 CARBIDE INSERTS properties, which are principally governed by grain size, cobalt concentration, dotation, and carbon content, can be greatly modified within the HUANA TNMG manufacturer’s domain of influence.

The TNMG turning insert features a triangular form with a 60-degree cutting angle, offering shock protection without reducing wear resistance for roughing to finishing of steel in tough to medium machining circumstances. This negative insert is double-sided and contains a chip groove on both sides, a hole in the middle, and six cutting edges. It has sharp edges and no clearance, making it a better alternative for exterior turning than a positive insert. TNMG grade with shock resistance without sacrificing wear resistance. This grade’s edge strength also makes it suited for interrupted cuts at high removal rates. Lower temperatures are used to deposit MTCVD coatings than CVD coatings. Lower temperatures prevent cracking in the coating and promote toughness and smoothness while restricting wear resistance..

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