These taps are designed for tapping stainless steel. They have a black-oxide finish that retains lubricants to improve the taps' wear resistance and chip flow.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiN coating that protects them from wear and allows them to be used at higher speeds than taps with a bright finish.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiN coating that protects them from wear and allows them to be used at higher speeds than taps with a bright finish.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping stainless steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping stainless steel. They have a THL coating that protects the taps from wear and provides better chip formation than TiN and TiCN coatings.
+ Add to CartThese taps are designed for tapping stainless steel. They have a THL coating that protects the taps from wear and provides better chip formation than TiN and TiCN coatings.
+ Add to CartThese taps are designed for tapping stainless steel. They have a THL coating that protects the taps from wear and provides better chip formation than TiN and TiCN coatings.
+ Add to CartThese taps are designed for tapping steel and stainless steel. They have a black-oxide finish that retains lubricants to improve the taps' wear resistance and chip flow.
+ Add to CartThese taps are designed for tapping stainless steel. They have a multilayer CrC/C coating that has a base layer of titanium nitride (TiN) and an outer layer of chromium carbide carbon (CrC/C). It protects the taps from wear when tapping stainless steel.
+ Add to CartThese taps are designed for tapping stainless steel. They have a multilayer CrC/C coating that has a base layer of titanium nitride (TiN) and an outer layer of chromium carbide carbon (CrC/C). It protects the taps from wear when tapping stainless steel.
+ Add to CartThese taps are designed for tapping stainless steel. They have a multilayer CrC/C coating that has a base layer of titanium nitride (TiN) and an outer layer of chromium carbide carbon (CrC/C). It protects the taps from wear when tapping stainless steel.
+ Add to CartThese taps are designed for tapping steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping steel and stainless steel. They have a TiN coating that protects them from wear and allows them to be used at higher speeds than taps with a bright finish. These taps meet DIN length standards and have a longer overall length than taps that meet ISO, ANSI, and JIS length standards. They also meet ANSI shank standards, which means they measure their shank diameter in inches and fit in standard tools used in the U.S.
+ Add to CartThese taps are designed for tapping alloy steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating. These taps meet DIN length standards and have a longer overall length than taps that meet ISO, ANSI, and JIS length standards. They also meet ANSI shank standards, which means they measure their shank diameter in inches and fit in standard tools used in the U.S. Coolant-through taps have holes that allow coolant to flow to their tip to reduce heat and friction during threading tasks.
+ Add to CartThese taps are designed for tapping stainless steel. They have a THL coating that protects the taps from wear and provides better chip formation than TiN and TiCN coatings.
+ Add to CartThese taps are designed for tapping steel. They have a bright finish that provides a smooth, polished surface.
+ Add to CartThese taps are designed for tapping steel. They have a bright finish that provides a smooth, polished surface.
+ Add to CartThese taps are designed for tapping steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating.
+ Add to CartThese taps are designed for tapping stainless steel. They have a hardlube coating. Sometimes called hardslick, hardlube has an inner layer of titanium aluminum nitride (TiAlN) and an outer layer of tungsten carbide/carbon (WC/C). The TiAlN layer withstands high temperatures and protects the taps from wear. The WC/C layer has a low coefficient of friction and helps prevent chips from sticking to the tool in dry-machining applications. These taps meet DIN length standards and have a longer overall length than taps that meet ISO, ANSI, and JIS length standards. They also meet ANSI shank standards, which means they measure their shank diameter in inches and fit in standard tools used in the U.S.
+ Add to CartThese taps are designed for tapping stainless steel. They have a hardlube coating. Sometimes called hardslick, hardlube has an inner layer of titanium aluminum nitride (TiAlN) and an outer layer of tungsten carbide/carbon (WC/C). The TiAlN layer withstands high temperatures and protects the taps from wear. The WC/C layer has a low coefficient of friction and helps prevent chips from sticking to the tool in dry-machining applications. These taps meet DIN length standards and have a longer overall length than taps that meet ISO, ANSI, and JIS length standards. They also meet ANSI shank standards, which means they measure their shank diameter in inches and fit in standard tools used in the U.S.
+ Add to CartThese taps are designed for tapping stainless steel. They have a hardlube coating. Sometimes called hardslick, hardlube has an inner layer of titanium aluminum nitride (TiAlN) and an outer layer of tungsten carbide/carbon (WC/C). The TiAlN layer withstands high temperatures and protects the taps from wear. The WC/C layer has a low coefficient of friction and helps prevent chips from sticking to the tool in dry-machining applications. These taps meet DIN length standards and have a longer overall length than taps that meet ISO, ANSI, and JIS length standards. They also meet ANSI shank standards, which means they measure their shank diameter in inches and fit in standard tools used in the U.S.
+ Add to CartThese taps are designed for tapping steel and stainless steel. They have a black-oxide finish that retains lubricants to improve the taps' wear resistance and chip flow.
+ Add to CartThese taps are designed for tapping steel and stainless steel. They have a TiCN coating that protects them from wear and is harder and more wear-resistant than a TiN coating. These taps meet DIN length standards and have a longer overall length than taps that meet ISO, ANSI, and JIS length standards. They also meet ANSI shank standards, which means they measure their shank diameter in inches and fit in standard tools used in the U.S.
+ Add to CartThese taps are designed for tapping stainless steel. They have a hardlube coating. Sometimes called hardslick, hardlube has an inner layer of titanium aluminum nitride (TiAlN) and an outer layer of tungsten carbide/carbon (WC/C). The TiAlN layer withstands high temperatures and protects the taps from wear. The WC/C layer has a low coefficient of friction and helps prevent chips from sticking to the tool in dry-machining applications. These taps meet DIN length standards and have a longer overall length than taps that meet ISO, ANSI, and JIS length standards. They also meet ANSI shank standards, which means they measure their shank diameter in inches and fit in standard tools used in the U.S.
+ Add to Cart
