Stepped Hole Programming and Tool Path Strategies for Deep Hole Drilling
Stepped holes present a programming challenge in deep hole drilling — the diameter change creates an interruption in the cutting surface that the drill must negotiate. Poor transition at a step causes chatter marks, diameter errors, and tool damage. A well-planned tool path and correct cutting parameters produce clean, accurate stepped holes.
Depth-first is preferred when the smallest diameter drill is the most fragile — it drills the full depth first and is never re-used after larger diameter steps are created.
How do I program a stepped hole in deep hole drilling?
Two strategies: diameter-first (drill the largest diameter to full depth first, then progress to smaller diameters) or depth-first (drill the smallest diameter to full depth first, then progress to larger diameters for their shallower depths). Diameter-first is simpler and preferred when the largest diameter is the most critical. Depth-first is preferred when the smallest diameter drill is the most fragile — it does the deepest drilling first and is not re-used after larger steps are created.
What feed rate should I use at the step transition?
Reduce feed rate 40–50% when crossing a step transition. The interrupted cut at the diameter change creates uneven cutting forces that cause chatter and drill deflection. Start the feed reduction 5–10 mm before the step and maintain the reduced feed for 3–5 mm after crossing the step. After the drill is fully engaged in the smaller diameter, return to normal feed. This controlled transition prevents chatter marks, oversize holes, and drill damage.
How do I prevent chatter at a hole step transition?
Reduce feed by 40–50% through the transition zone, add a chamfer at the step entry to guide the drill, increase coolant pressure 10–20% at the transition to ensure chip clearance, and use a short dwell (0.5–1 second) at the step before feeding into the smaller diameter. If chatter persists, check drill condition (sharpness, geometry) and consider a lead-in radius at the step corner if the design allows.
What tool should I use for stepped deep hole drilling?
For simple two-diameter steps, use separate gun drills for each diameter — one for each step. This is the most flexible and cost-effective approach. For high-volume production of the same stepped hole, consider a stepped gun drill (two diameters on one tool), which eliminates one tool change. For stepped holes with large diameter differentials, drill the smaller diameter first and bore the larger diameter. Match the tool strategy to the step configuration and production volume.
How do I measure the step location in a deep hole?
Use a depth gauge with a step-sensing attachment, a CMM with a probe that detects the step shoulder, or an air gauge with a step-location nozzle. For production inspection, a dedicated go/no-go gauge with a step-depth pin is fastest. The step location must be measured from a consistent reference point — typically the workpiece surface or a fixture datum. Measure step location after the first article to verify the program, then periodically during production.
Stepped holes in deep hole drilling require careful programming of tool selection, drilling sequence, and cutting parameters — especially at the diameter transition. Reduce feed at the step transition, increase coolant pressure, and choose the correct drilling sequence for the hole configuration. A well-programmed stepped hole has clean transitions, correct diameters, and no chatter marks. This article reflects industry practice as of 2026.