When a drill bit fails, users often blame the bit immediately. Sometimes the bit quality is the problem. But many failures come from speed, feed, heat, chip evacuation or a mismatch between the bit and the material.

This troubleshooting guide helps buyers understand the most common causes before they change suppliers or overpay for the wrong upgrade.
Failure Symptom Table
| Symptom | Likely cause | Practical fix |
|---|---|---|
| Bit turns blue or black | Overheating from high RPM, rubbing or no coolant | Lower speed, use cutting fluid, maintain steady feed |
| Tip chips or snaps | Side load, vibration, brittle material, poor workholding | Clamp workpiece, align drill, avoid side pressure |
| Bit skates on metal | No center punch, wrong point angle, too little pressure | Use center punch or pilot hole; use correct metal bit |
| Hole is oversized | Runout, worn chuck, poor bit geometry | Check chuck, use drill press, inspect bit quality |
| Edge dulls quickly | Wrong material grade or abrasive workpiece | Upgrade to cobalt or carbide; check coating and coolant |
| Chips clog in flutes | Deep hole, soft sticky material, no peck drilling | Withdraw often, clear chips, choose suitable flute design |
1. Too Much Speed
High speed creates heat. Heat softens the cutting edge, especially on standard HSS bits. Stainless steel, hardened steel and thick plate need lower RPM than wood or aluminum. If the bit turns blue, the cutting edge has been overheated.
2. Too Little Feed
This surprises many beginners: too little pressure can also damage a bit. If the bit rubs instead of cutting, it generates heat and work-hardens the surface. Stainless steel is especially unforgiving. Use firm, controlled feed so the bit makes chips, not dust.
3. Wrong Bit Material
HSS is good for mild steel and general use. Cobalt is better for stainless steel and harder metals. Carbide is excellent for rigid CNC or abrasive materials, but brittle in handheld drilling. Buying “the hardest bit” is not always the correct answer.
Related reading: drill bit materials explained.
4. Poor Workholding
If the workpiece moves, the drill bit sees side load. That is one of the fastest ways to snap small bits or chip carbide. Clamp the workpiece and keep the drill aligned with the hole axis.
5. No Coolant or Lubrication
Cutting fluid reduces heat and friction in metal drilling. For aluminum, lubrication also helps prevent chip welding. For stainless steel, coolant and low speed can make the difference between a clean hole and a burned bit.
6. Chips Not Evacuating
Deep holes trap chips. Trapped chips create friction, heat and breakage. Peck drilling — drilling a little, withdrawing to clear chips, then continuing — is a simple way to improve tool life.
Buyer Takeaway
If customers complain that bits break or burn, ask for the material, RPM, machine type, hole depth and photos of the failed bit. The failure pattern often tells you whether the problem is product quality, wrong selection or incorrect use.