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05H103 - Walter 05H103 Carbide Core Cut Annular Cutter 1-3/16 x 1 Inch Universal Shank

Packaging: 1 per each
$197.74/ea $164.78/1 per each only $164.78/eaSave 17%

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SKU: 05H103 Categories: ,

OVERVIEW

Walter Carbide Core Cut Annular Cutter: Precision Drilling for Tough Metals

The Walter 05H103 Carbide Core Cut annular cutter is an industrial-grade drilling solution engineered to tackle the most demanding materials in metal fabrication. Unlike traditional High-Speed Steel (HSS) cutters, this tool utilizes premium carbide inserts that maintain hardness and cutting edge integrity even under high thermal stress. With a diameter of 1-3/16 inches and a cutting depth of 1 inch, it is specifically designed to produce clean, burr-free holes in challenging substrates such as stainless steel, cast iron, and hard alloys.

One of the standout features of the Carbide Core Cut series is its advanced flute and body design. This geometry optimizes chip evacuation, preventing clogging and heat accumulation that can lead to premature tool failure. The result is a cutter that allows for significantly faster feed rates and higher rotational speeds, boosting productivity in heavy manufacturing environments. Whether you are working on structural steel or specialized abrasive composites, this cutter delivers consistent performance and extended tool life.

Compatibility is key in dynamic workshop environments, which is why Walter has equipped this cutter with a Universal Shank. This design ensures it fits securely into a wide range of magnetic drilling units without the need for specialized adapters. By focusing the cutting energy on the periphery of the hole rather than converting the entire area to chips, the annular cutting process requires less power and thrust, reducing wear on your drilling equipment while maximizing efficiency.

Key Technical Benefits

  • Superior Hardness: Carbide tips effectively cut through materials that would dull HSS bits instantly.
  • Universal Fit: Designed to work seamlessly with major magnetic drill brands.
  • Efficiency: Removes material as a solid slug, requiring less energy and time per hole.
Additional Information
Packaging Description:1 per each
Diameter (in):1-3/16"
Used to Cut:Steel or Stainless or Aluminum
Product Type:Annular Cutter
Series:Carbide Core Cut
Material:Carbide Tipped
----- new values below ----
Product Type:Annular Cutter
Series:Carbide Core Cut
Depth of Cut:1"
Shank Type:Universal Shank
Material:Carbide Tipped
Brand:Walter
Diameter (in):1-3/16"
Packaging Description:1 per each
Used to Cut:Steel or Stainless or Aluminum

INCLUDED

  • 1 x Walter Carbide Core Cut Annular Cutter (1-3/16" Dia x 1" Depth)

APPLICATIONS

  • Drilling stainless steel and high-tensile alloys
  • Heavy-duty fabrication on cast iron
  • Structural steel construction (beams, plates)
  • On-site hole making with magnetic drills
  • Processing aluminum, copper, and brass
  • Drilling uneven or curved surfaces
  • Rail and transport equipment manufacturing

FAQ

This carbide cutter is designed for tough materials including stainless steel, cast iron, hard alloys, carbon steel, and non-ferrous metals like aluminum and copper.

Carbide cutters are much harder and more heat-resistant than High-Speed Steel (HSS), allowing them to drill faster and last significantly longer, especially on hard metals.

It features a Universal Shank, making it compatible with most standard magnetic drilling units available on the market.

Yes, using a high-quality cutting lubricant or coolant is highly recommended to extend the life of the carbide teeth and ensure a smooth cut.

The Walter 05H103 has a depth of cut capacity of 1 inch.

Yes, the aggressive cutting action and centering design make it suitable for drilling on curved or uneven surfaces where standard twist drills might wander.

Pilot pins are typically sold separately. You will need the appropriate pilot pin to center the cut and eject the slug.

While possible with specialized equipment, carbide cutters are often treated as consumables because resharpening complex carbide geometries can be difficult and costly compared to replacement.