Exchangeable Tip Drilling, also known as indexed drilling, is a machining technique that involves a tool body designed to accommodate interchangeable cutting tips. This innovative approach allows for cost-effective operations by replacing the worn-out tips instead of discarding the entire tool. The method ensures consistent performance while minimizing downtime during high-volume machining tasks.
By utilizing exchangeable tips, manufacturers can optimize their drilling processes by easily replacing the cutting edge as needed. This not only reduces waste but also contributes to overall cost savings and improved operational efficiency. The versatility of the exchangeable tip drilling method makes it suitable for various industrial applications where precision and cost-efficiency are paramount.
Key Advantages of Exchangeable Tip Drilling:
Reduced Tooling Costs
Only the tip needs to be replaced, minimizing the cost per hole compared to solid drills.
Minimized Downtime
Quick and easy tip changes reduce machine setup time and increase productivity.
Consistent Hole Quality
Precision-manufactured tips ensure high repeatability in hole diameter, roundness, and surface finish.
Extended Tool Body Life
The durable tool holder can be reused for many cycles, reducing waste and total tool replacement frequency.
High Flexibility
A single tool body can accommodate different tip geometries and sizes for various materials and applications.
Lower Inventory Requirements
Fewer complete tools need to be stocked; just a range of tips and a few tool bodies are sufficient.
Environmentally Friendly
Less material waste compared to replacing entire drills supports sustainable manufacturing practices.
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Drill type | Processed material | Drill diameter | |||
EP197 | DW | P | 1600 16.00mm | ||
Stee materials | 1630 16.30mm | ||||
DW | M | ||||
EP065 | |||||
Stainless steel materials | |||||
QuadriplanarA | K | ||||
EP060 | |||||
Cast materials | |||||
Double Cabochon A | N | ||||
EP100 | |||||
Non-ferrous metal | |||||
Tricuspid E | S | Tianium aloyickel-bsed alycobal-based loyiron-based aly | |||
H | |||||
High hard materials |
Exchangeable tip drilling finds wide applications in the automotive industry for drilling engine blocks, cylinder heads, and transmission components. It is especially effective for high-volume, high-speed drilling operations on materials such as cast iron, steel, and aluminum alloys.
In the aerospace sector, exchangeable tip drilling is commonly used for aircraft structural components and landing gear parts. This technology enables precise drilling of high-strength alloys like titanium and Inconel, meeting the stringent requirements of aerospace applications.
For general machining purposes, exchangeable tip drilling is widely employed in CNC machining centers and multi-spindle machines. It offers efficient holemaking capabilities for various mechanical parts and tools, ensuring productivity and accuracy in machining processes.
The oil & gas industry benefits from exchangeable tip drilling for applications such as valve bodies, pumps, and pipeline components. This technology enables deep hole drilling in tough materials like stainless steels, crucial for the fabrication of reliable and durable energy sector equipment.
In the heavy equipment and construction machinery sector, exchangeable tip drilling plays a key role in drilling large frame components, gear housings, and hydraulic systems. It provides durable drilling performance under high torque loads, ensuring the structural integrity of the components.
For die and mold manufacturers, exchangeable tip drilling is essential for pre-drilling operations for EDM (Electrical Discharge Machining) or cooling channels. It facilitates precision holemaking in hardened tool steels, contributing to the efficiency and accuracy of the mold-making process.
Lastly, in metal fabrication processes, exchangeable tip drilling is used for structural steel fabrication and tubular assemblies. This technology enables fast and reliable drilling in beams, plates, and hollow sections, supporting the efficient production of metal components.