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Solid Carbide spade drills perform well in hard to machine materials (up to Rc 60), high strength alloys, plastic, and glass. They can be used in thin sheet metal and spotting applications. Drilling depth should not exceed 2x the drill diameter.

Solid Carbide spade drills perform well in hard to machine materials (up to Rc 60), high strength alloys, plastic, and glass. They can be used in thin sheet metal and spotting applications. Drilling depth should not exceed 2x the drill diameter.

Solid Carbide spade drills perform well in hard to machine materials (up to Rc 60), high strength alloys, plastic, and glass. They can be used in thin sheet metal and spotting applications. Drilling depth should not exceed 2x the drill diameter.

Solid Carbide spade drills perform well in hard to machine materials (up to Rc 60), high strength alloys, plastic, and glass. They can be used in thin sheet metal and spotting applications. Drilling depth should not exceed 2x the drill diameter.

Solid Carbide spade drills perform well in hard to machine materials (up to Rc 60), high strength alloys, plastic, and glass. They can be used in thin sheet metal and spotting applications. Drilling depth should not exceed 2x the drill diameter.

Solid Carbide spade drills perform well in hard to machine materials (up to Rc 60), high strength alloys, plastic, and glass. They can be used in thin sheet metal and spotting applications. Drilling depth should not exceed 2x the drill diameter.

Solid Carbide spade drills perform well in hard to machine materials (up to Rc 60), high strength alloys, plastic, and glass. They can be used in thin sheet metal and spotting applications. Drilling depth should not exceed 2x the drill diameter.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

Solid carbide end mills run at extremely impressive feed and speed rates. In some cases, they can be run at 3x the rates of HSS end mills. Using solid carbide end mills results in better surface finish on the workpiece and extended tool life. Ball nose.

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