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DNMX Carbide Inserts For Stainless Steel
DNMX Carbide Inserts For Stainless Steel
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DNMX Carbide Inserts For Stainless Steel
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DNMX Carbide Inserts For Stainless Steel

The DNMX Insert is widely applied in automobile, aerospace, 3C and other industries.
Grade: Various
Applications: Turning
Corresponding Tools: DDJNR/L, PDJNR/L PDNNR/L, MDJNR/L, MDPNN, S***-PDSNR/L, A***-PDUNR/L
Available chip breakers: -WG
Applicable fields: Automobile, Aerospace, etc

Product Introduction:

 

This kind of DNMX Insert is made of high-quality cemented carbide with advanced technology. It has gone through various processes such as quenching to improve the performance. The surface has been treated with special coating; thus, it gains the properties of corrosion resistance and rustproof. The DNMX Insert also can be customized in accordance with the working condition and the equipment. In addition, it has the advantages of high hardness, wear resistance, high temperature resistance, impact resistance, high accuracy, excellent mechanical performance, long service life as well as high cost effective.

DNMX Turning Inserts 55° Rhombic Insert (P)(M) TiCN/TiN coated inserts for use on Steel and Stainless Steel.

 

Product Specifications:

 

product-1159-773

product-1159-244

 

The Strength of DNMX Carbide Inserts

 

Carbide inserts are commonly made from cemented carbide, which is a composite material consisting of hard carbide particles (typically tungsten carbide) bonded together with a metallic binder (usually cobalt). Tungsten carbide is known for its high hardness, wear resistance, and strength.

To determine the strength of DNMX carbide inserts or any carbide insert, you may need to consider the following factors:

1.Material Composition: The specific composition of the carbide material used in the inserts plays a crucial role in determining their strength. Tungsten carbide with a high percentage of tungsten is generally stronger.

2.Coating: Many carbide inserts are coated with various materials to enhance their performance. Common coatings include titanium nitride (TiN), titanium carbonitride (TiCN), and aluminum oxide. These coatings can improve wear resistance and overall tool life.

3.Design: The geometry and design of the carbide insert also impact its strength. Different designs are optimized for specific applications, and factors like chip control, cutting forces, and heat dissipation are considered in the design process.

4.Manufacturer Specifications: Each manufacturer may have its own proprietary formulations and processes for producing carbide inserts. It's essential to refer to the manufacturer's specifications and recommendations for information on the strength and performance of specific carbide inserts, including DNMX inserts.

 

More Information about Us

 

product-1159-612

product-1159-604

 

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