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These solid-carbide drills have a special flute geometry and chip pocket that ensure proper chip curl, with a rigid and strong cutting edge that makes them optimal for stainless steel and pre-hardened steel, as well as aluminum alloys. These drills are coated with TiAlN (Titanium Aluminum Nitride) for high wear resistance and lower friction, as well as higher cutting feeds and speeds, and improved hole quality (roundness, straightness, and surface roughness). The 140° point-angle provides good centering and lowers thrust, and the positive axial rake angle and cutting edge with radius thinning enhance centering and chip breaking.

Drill bits make holes in a variety of different common materials. These include different types of wood, metal, plastic, ceramic tile, porcelain and concrete.

Explore high-performance solid carbide drills designed for precision and efficiency. Our solid carbide drill bits offer exceptional durability and cutting performance, making them ideal for a wide range of drilling applications.

These solid-carbide drills have a geometry designed for general drilling in steel and cast iron. These drills are coated with TiAlN (Titanium Aluminum Nitride) for high wear resistance and lower friction, as well as higher cutting feeds and speeds, and improved hole quality (roundness, straightness, and surface roughness). They have a 140° point-angle for good centering and low thrust, and wave-shaped cutting edges for low thrust, stable torque, and long tool life. Radius point thinning improves self-centering and chip breaking capabilities. The flute shape is optimized for strength and smooth chip evacuation, and a negative land on the cutting edge provides reliable and stable tool life.

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We have a wide selection of equipment on site at O'Leary Building Centre including boots, hard hats, gloves, jackets, reflective gear, coveralls and more.

Carbide Comparison Chart ; P01, R-100 R-200, UE6005 F7010, GC4015 GC4215, TX110 ; P10, R-100 R-200, UE6010 UC6010 UE6020, GC4015 GC1025 GC1020, TP15 TP100 ; P20, R ...

In both condition pearlite is formed. Structure will be coarser in case of furnace atmosphere and finer in case of cooling in air. While ...

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ISO H TOLERANCES. Diameter mm h6 h7 h8 h9 h10 h11 h12 up to & incl 3. -0.006/+0. -0.010/+0. -0.014/+0. -0.025/+0. -0.040/+0. -0.060/+0. -0.100/+0. 3 < 6. -0.008 ...

These solid carbide drills are designed specifically for high-feed applications in steel and cast iron. They feature an Aluminum Chromium Nitride (Hybrid AlCrN) coating for increased wear resistance and lower friction. Radius point thinning improves self-centering and chip breaking capabilities. The unique 3-flute design offers higher feed rates and further improves hole quality (roundness, straightness, and surface roughness) compared to conventional 2-flute drills and are paired with a 140° point angle for good centering and low thrust. The advanced wide flute design allows for much greater chip evacuation and a longer tool life.

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Keyway cutting tools are specialized instruments used for cutting keyways, slots, and grooves of various shapes and sizes into machine parts, gears, and other ...

These solid carbide drills are designed specifically for high-performance drilling in aluminum and aluminum alloys. They feature a Diamond-Like Carbon (DLC) coating that is extremely hard, with a very low coefficient of friction, and excellent adhesion resistance. The flute shape and geometry of these drills are optimized for maximum chip removal, with polished flutes for improved chip control and evacuation, and optimized point thinning to prevent clogging from chip welding. The geometry and smooth finish prevent built-up edge, and allow for high-speed drilling in aluminum, with excellent hole quality (roundness, straightness, and surface roughness).

Using Router Bit on Drill Press ... See What Happens When we use Router Bit on Drill Press ?#shorts #woodworking #drilling #diy. 56. Dislike.

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HEM and HSM are unique, separate machining styles. HSM encompasses a technique that results in higher production rates while using a much different approach to ...