A solid drill specifically designed for heat-resistant alloys that achieves high efficiency and long lifespan in drilling heat-resistant titanium alloy.
This is a rare drill specifically designed for heat-resistant alloys in the market. We aimed to create a product that truly satisfies the tool's lifespan when machining heat-resistant alloys!
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basic information
1. By adopting DV coating, which has a high oxidation start temperature and excellent heat resistance, we achieve a long tool life in the machining of heat-resistant titanium alloys with high cutting temperatures. 2. By applying a special surface smoothing treatment to the groove area, we suppress the occurrence of welding. 3. The groove cross-sectional shape is enlarged, allowing for smooth chip removal. 4. Machining depth of 3×Dc, with coolant holes for all sizes.
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Line up(1)
Model number | overview |
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EZSM | 3D type, with oil holes |
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Since our founding in 1938, we have recognized the potential of cemented carbide in industry and have independently pioneered innovations in cemented carbide tools and the evolution of processing. Based on the powder metallurgy technology cultivated in cemented carbide manufacturing, we have successively introduced innovative technologies to the market, including the world's first practical application of conventional cermet chips, the development of ball end mills and drills with spiral cutting edges, and end mills with twisted cutting edges. In recent years, we have created highly original new technologies in various fields, such as diamond and cemented carbide integrated sintered products, cemented carbide for irregular gear forming molds, and tool materials made from rare metal-reduced alloys, which we sell worldwide. In addition to developing materials and products, we consistently conduct in-house production from the preparation of raw powders, ensuring stable high-quality products, which we believe has earned us the trust of our customers. Today, there are very few products in the world that do not undergo machining processes such as cutting or plastic processing. Even in the realm of advanced science, the advancement of processing technology is essential for practical application and industrialization. In this era of global competition, we will challenge new fields without being bound by convention, adhering to the philosophy that "management is creation" and "richly creative technology development" to contribute to the world.