The diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe diamond-like carbon (DLC) coating on these end mills protects them from wear when milling abrasive materials such as stainless steel, ceramics, plastics, and aluminum alloys. DLC-coated end mills are a cost-effective alternative to diamond-coated end mills.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe WXS coating on these end mills protects them from wear and provides maximum heat resistance when milling nickel-based alloys and hardened steels with a Rockwell hardness of more than 50 HRC. It is harder and has a higher oxidation temperature than a TiAlN coating.
+ Add to CartThe multilayer Duarise coating on these end mills offers high lubricity to reduce friction during milling processes and leave an excellent surface finish on the workpiece. The coating also has a high oxidation temperature and resists thermal cracking when using water-soluble oil during the milling process.
+ Add to CartThe multilayer Duarise coating on these end mills offers high lubricity to reduce friction during milling processes and leave an excellent surface finish on the workpiece. The coating also has a high oxidation temperature and resists thermal cracking when using water-soluble oil during the milling process.
+ Add to CartThe multilayer Duarise coating on these end mills offers high lubricity to reduce friction during milling processes and leave an excellent surface finish on the workpiece. The coating also has a high oxidation temperature and resists thermal cracking when using water-soluble oil during the milling process.
+ Add to CartThe multilayer Duarise coating on these end mills offers high lubricity to reduce friction during milling processes and leave an excellent surface finish on the workpiece. The coating also has a high oxidation temperature and resists thermal cracking when using water-soluble oil during the milling process.
+ Add to Cart