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700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

700 series solid carbide drills retain hardness and sharp edges at high temperature. Their abrasion-resistant qualities make them advantageous for drilling abrasive materials. They offer the advantage of extreme rigidity for greater drilling accuracy.

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Drillco 7/8" REAMERS DRL 428-A-156

Bridge Reamers
$147.99

Construction or Car Reamers are especially adapted for heavy duty reaming as encountered in the fabrication of structural steel assemblies. They are tapered at the point to facilitate entering of holes which are out of alignment. 3-flats reduced shank

Nitro® drills (NAS Type B) offer superior performance over standard HSS drills. Heavy-duty design increases tool life and performance. 135° Split Point reduces walking at the point. Ideal for both hand held and CNC Operations. Black & Gold. Screw machine

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower. Double-ended.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower. Double-ended.

The greater red hardness of M-42 Cobalt end mills enables these tools to run about 10% faster than conventional HSS end mills. This translates to shorter machining times and permits higher utilization of available machine horsepower. Double-ended.

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