Wannet, a world-renowned supplier of carbide metal cutting tools, has recently introduced the sub-micron particle carbide turning grade VP9605 tool, which is specially used for finishing and semi-finishing of difficult materials such as aerospace materials.
The sharp edge of the VP9605 insert reduces the build-up of the built-up edge and reduces the tendency of the material to harden, reducing cutting forces and cutting heat. Another advantage is that it has a harder cutting edge and a higher edge strength. It has excellent wear resistance and red hardness and can withstand higher cutting heat, while being able to withstand poor heat resistant alloys. Processing performance, reducing blade chipping. VP9605 has a uniform particle size, does not contain large particles of cemented carbide or other impurities, and avoids the resulting rapid propagation of cracks, further avoiding the risk of chipping. The chipping that occurs during the finishing process can lead to huge losses due to the scrapping of expensive parts.
VP9605 can be used for semi-finishing and finishing of heat-resistant alloys such as nickel-based or cobalt-based, titanium alloys, high-strength stainless steels, non-ferrous metals and bimetals. In addition, due to its high hardness, it can replace cubic boron nitride and ceramic blades for hard machining in some processes, which greatly reduces the cost of the blade. In addition to its use in the aerospace industry, it is also suitable for use in medical equipment, energy, general machinery and other industrial fields.
The sharp edge of the VP9605 insert reduces the build-up of the built-up edge and reduces the tendency of the material to harden, reducing cutting forces and cutting heat. Another advantage is that it has a harder cutting edge and a higher edge strength. It has excellent wear resistance and red hardness and can withstand higher cutting heat, while being able to withstand poor heat resistant alloys. Processing performance, reducing blade chipping. VP9605 has a uniform particle size, does not contain large particles of cemented carbide or other impurities, and avoids the resulting rapid propagation of cracks, further avoiding the risk of chipping. The chipping that occurs during the finishing process can lead to huge losses due to the scrapping of expensive parts.
VP9605 can be used for semi-finishing and finishing of heat-resistant alloys such as nickel-based or cobalt-based, titanium alloys, high-strength stainless steels, non-ferrous metals and bimetals. In addition, due to its high hardness, it can replace cubic boron nitride and ceramic blades for hard machining in some processes, which greatly reduces the cost of the blade. In addition to its use in the aerospace industry, it is also suitable for use in medical equipment, energy, general machinery and other industrial fields.
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