Brief: Discover the AMG Stable and Accurate Solid Carbide Coolant Fed Deep Hole Drill, designed for precision deep hole drilling in structural components. Featuring high-quality ultra-fine grain solid carbide and a coolant-through design, this drill ensures excellent wear resistance, anti-chipping performance, and efficient chip evacuation for stable and accurate machining.
Related Product Features:
High-quality ultra-fine grain solid carbide ensures high hardness and excellent wear resistance.
Coolant-through design delivers coolant directly to the cutting zone, reducing temperature and improving chip evacuation.
Straight flute design offers excellent guidance during deep hole drilling and prevents chip clogging.
Precision grinding ensures sharp cutting edges and smooth cutting performance.
Suitable for deep hole and blind hole drilling in carbon steel, stainless steel, aluminum alloys, and copper alloys.
Available in diameter ranges from Φ3mm to Φ12mm with customizable cutting lengths.
Coating options include TiAlN, DLC, or uncoated for enhanced performance based on material.
Extends tool life and reduces downtime for tool changes, ideal for high-efficiency batch processing.
Faqs:
What materials is the AMG Solid Carbide Coolant Fed Deep Hole Drill suitable for?
It is suitable for deep hole drilling in carbon steel, stainless steel, aluminum alloys, copper alloys, and other metal structural components.
How does the coolant-through design benefit deep hole drilling?
The coolant-through design delivers high-pressure coolant directly to the cutting zone, reducing temperature, lubricating the area, and improving chip evacuation efficiency.
What coating options are available for this drill?
The drill is available with TiAlN coating for enhanced wear resistance, DLC coating for reducing chip sticking, or uncoated options based on machining requirements.
What are the recommended specifications for deep holes exceeding 10 times the diameter?
For deep holes exceeding 10 times the diameter, it is recommended to choose a longer cutting length design to ensure smooth chip evacuation and maintain accuracy.