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Carbide Chamfer End Mill
Carbide Chamfer End Mill
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Carbide Chamfer End Mill
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Carbide Chamfer End Mill

Origin: China
Usage: General/High Speed
Trademark: CQ CUTOOL

Basic Info.

 

Product Name: 2 Flute 90 Degree Carbide Chamfer Cutter End Mill D10*75L

Model NO.:2MP-10M090D1000-U

Transport Package: Carton Box

Origin: China

Usage: General/High Speed

Trademark: CQ CUTOOL

Coating: Coating

Tooth Form: Spiral Tooth

Tooth Space: Extra Dense Tooth

Structure: Indexable Type

Material: Cemented Carbide

Type: T Milling Cutter

 

Product Specifications:

 

product-1159-900

 

Product Description:

 

Application feature:
Used for chamfering of structural steel, alloy steel, stainless steel, gray iron, ductile iron and other materials.

 

Detailed Photos:

 

product-1159-900product-1159-1300

product-1159-900

 

The Strength of Carbide Chamfer End Mill:

The strength of a carbide chamfer end mill depends on several factors including the grade of carbide used, the design of the end mill, and the machining conditions. Carbide end mills are made from a mixture of tungsten carbide powder and a binding agent, which are compressed and then sintered in a furnace to form a solid carbide tool.

The strength of carbide tools like chamfer end mills comes from the hardness and toughness of the material. Tungsten carbide is extremely hard, which means it can withstand high temperatures and resist wear. The binding agent provides toughness, allowing the tool to absorb shock and impact during machining without breaking.

Different grades of carbide, coatings, and geometries are used for specific applications to optimize the tool's performance. For example, a carbide chamfer end mill designed for cutting aluminum will have a different geometry and coating compared to one designed for cutting hardened steel.

It's important to note that while carbide tools are very hard and wear-resistant, they are also brittle. This means they can chip or break if subjected to excessive force or improper machining conditions. Therefore, it's crucial to use the right tool for the job, follow recommended cutting speeds and feeds, and ensure the workpiece and machine setup are stable to prevent tool breakage and achieve the best results.

 

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