Bordo 3/8" Black HSS Jobber Drill Bit Clam Shell - 2000-3/8S
Bordo 3/8" Black HSS Jobber Drill Bit Clam Shell - 2000-3/8S
Bordo 3/8" Black HSS Jobber Drill Bit Clam Shell - 2000-3/8S

Bordo 3/8" Black HSS Jobber Drill Bit Clam Shell - 2000-3/8S

The Bordo Black Knight M2-HSS Twist Drills offer durability and precision with their ANSI B94-111 118o Split Point. This self-centering design minimizes end thrust and friction, allowing for effortless drilling on materials such as mild steel and cast iron. The distinctive black finish, achieved through a steam tempering process, helps retain lubricant on the cutting edges, resulting in longer tool life and efficient chip flow.

The Bordo Black Knight M2-HSS Twist Drills offer durability and precision with their ANSI B94-111 118o Split Point. This self-centering design minimizes end thrust and friction, allowing for effortless drilling on materials such as mild steel and cast iron. The distinctive black finish, achieved through a steam tempering process, helps retain lubricant on the cutting edges, resulting in longer tool life and efficient chip flow.

$11.33 - $21.72

in 3 offers

Bordo 3/8" Black HSS Jobber Drill Bit Clam Shell - 2000-3/8S

$11.33

The Bordo Black Knight M2-HSS Twist Drills offer durability and precision with their ANSI B94-111 118o Split Point. This self-centering design minimizes end thrust and friction, allowing for effortless drilling on materials such as mild steel and cast iron. The distinctive black finish, achieved through a steam tempering process, helps retain lubricant on the cutting edges, resulting in longer tool life and efficient chip flow.

The Bordo Black Knight M2-HSS Twist Drills offer durability and precision with their ANSI B94-111 118o Split Point. This self-centering design minimizes end thrust and friction, allowing for effortless drilling on materials such as mild steel and cast iron. The distinctive black finish, achieved through a steam tempering process, helps retain lubricant on the cutting edges, resulting in longer tool life and efficient chip flow.