The drill sleeve or adapter is the mechanical interface between the machine spindle and the drill shank. It must transmit rotational torque, withstand drilling thrust, and pass high-pressure coolant — all while maintaining concentricity within a few microns. Selecting the correct sleeve or adapter and fitting it properly is essential for accurate drilling.
Sleeve and Adapter Types
Type Comparison
| Sleeve / Adapter Type | Interface (Spindle Side) | Interface (Drill Side) | Coolant-Through | Typical Application |
|---|
| Straight sleeve | Cylindrical bore | Cylindrical bore | Yes | Standard gun drilling |
| Morse taper sleeve | Morse taper socket | Cylindrical or Morse bore | Yes (if equipped) | Older drilling machines |
| BT / CAT tool holder | BT or CAT taper | Collet chuck or hydraulic | Yes | Machining center — tool change |
| HSK tool holder | HSK hollow taper | Collet chuck or hydraulic | Yes | High-speed machining center |
| Threaded adapter | Threaded spindle nose | Cylindrical bore | Yes | BTA drilling — heavy duty |
| Quick-change adapter | Custom quick-change | Cylindrical bore | Yes | Production — fast tool change |
| Flange adapter | Bolt-on flange | Cylindrical bore | Yes | Large BTA heads |
Straight Sleeves
| Parameter | Specification | Notes |
|---|
| Material | Hardened tool steel (58–62 HRC) | Wear-resistant bore |
| Bore tolerance | H6 or H7 | Precision fit to drill shank |
| OD tolerance | g6 or h6 | Fit to spindle or holder |
| Coolant seal | O-ring at base of bore | High-pressure seal |
| Length | 2–4× drill shank diameter | Adequate engagement for torque |
Tapered Adapters (Morse Taper)
| Taper Size | Large End Diameter | Length | Application |
|---|
| MT1 | 12.065 mm | 65 mm | Small drills (< 6 mm) |
| MT2 | 17.780 mm | 80 mm | Medium drills (6–12 mm) |
| MT3 | 23.825 mm | 98 mm | Larger drills (12–25 mm) |
| MT4 | 31.267 mm | 123 mm | Large drills (25–50 mm) |
| MT5 | 44.399 mm | 155 mm | Very large drills (> 50 mm) |
| Holder Type | Taper | Drive Method | Coolant-Through | Typical Sizes |
|---|
| BT (Japanese standard) | 7:24 steep taper | Pull stud + drive keys | Center or through | BT30, BT40, BT50 |
| CAT (US standard) | 7:24 steep taper | Pull stud + drive keys | Center or through | CAT30, CAT40, CAT50 |
| HSK (Hollow taper) | 1:10 hollow taper | Friction lock + face contact | Center | HSK32–HSK100 |
Selection Criteria
Selection Factors
| Factor | Consideration | Impact |
|---|
| Drill shank type | Cylindrical, threaded, tapered | Determines sleeve bore type |
| Spindle interface | Taper size, thread, flange pattern | Determines adapter spindle side |
| Coolant pressure | Operating pressure range | Seal type and rating |
| Torque requirement | Maximum drilling torque | Sleeve material and engagement length |
| Runout requirement | Precision grade | Sleeve manufacturing tolerance |
| Tool change frequency | Manual or automatic | Quick-change vs standard |
| Drill diameter | Shank diameter range | Standard sizes vs custom |
Coolant-Through Capability
| Coolant Pressure | Adapter Requirement | Seal Type |
|---|
| < 30 bar | Standard O-ring | NBR 70 Shore A |
| 30–100 bar | High-pressure O-ring | NBR 90 Shore A or FKM |
| 100–200 bar | Metal seal or bonded seal | PTFE or metal |
| > 200 bar | Specialized high-pressure adapter | Proprietary seal system |
Sleeve Bore Sizing
| Drill Shank Diameter | Bore Size (H6) | Recommended Engagement Length |
|---|
| 6 mm | 6.000–6.008 mm | 18–24 mm |
| 10 mm | 10.000–10.009 mm | 30–40 mm |
| 20 mm | 20.000–20.009 mm | 60–80 mm |
| 30 mm | 30.000–30.011 mm | 90–120 mm |
| 50 mm | 50.000–50.011 mm | 150–200 mm |
Fitting Procedures
Sleeve Installation
| Step | Action | Detail |
|---|
| 1 | Clean sleeve bore and OD | Remove all preservative, debris |
| 2 | Clean spindle bore or holder taper | Lint-free cloth — no residue |
| 3 | Inspect sealing surfaces | O-ring groove, seal face |
| 4 | Install O-ring (if separate) | Lubricate — install without twisting |
| 5 | Insert sleeve into spindle or holder | Align drive keys or slots |
| 6 | For taper: draw up with drawbar | Proper seating — check pull force |
| 7 | For straight bore: secure with set screw or clamping | Per design |
| 8 | Check runout at sleeve nose | Dial indicator — see runout check |
Drill Installation in Sleeve
| Step | Action | Detail |
|---|
| 1 | Clean drill shank | Remove all coolant residue |
| 2 | Clean sleeve bore | Lint-free cloth |
| 3 | Insert drill shank into sleeve | Fully seated — to shoulder |
| 4 | Secure drill | Set screw, clamp, or retaining ring |
| 5 | Check runout at drill shank | Near sleeve and at drill tip |
| 6 | Connect coolant supply | If not auto-connected |
| 7 | Test coolant flow through drill | Verify no blockages |
Runout Check
| Step | Action | Detail |
|---|
| 1 | Mount dial indicator on machine base | — |
| 2 | Position indicator on drill shank | 5 mm from sleeve face |
| 3 | Rotate spindle by hand | One full revolution |
| 4 | Record TIR | — |
| 5 | Move indicator to drill tip | — |
| 6 | Rotate again — record TIR | — |
| 7 | Compare to acceptance criteria | — |
Common Problems
| Problem | Possible Cause | Corrective Action |
|---|
| High runout | Sleeve bore worn | Replace sleeve |
| Sleeve not seated in spindle | Clean and reseat |
| Drill shank worn or bent | Replace drill |
| Debris between sleeve and spindle | Clean mating surfaces |
| Coolant leak at sleeve | O-ring damaged or missing | Replace O-ring |
| Sleeve not fully seated | Tighten or reseat |
| Seal surface damaged | Inspect and repair |
| Drill slips in sleeve | Sleeve bore worn oversize | Replace sleeve |
| Set screw loose | Tighten |
| Engagement length insufficient | Use longer sleeve |
| Sleeve hard to remove from spindle | Corrosion or debris | Apply penetrating oil — clean tapers |
| Taper drawn up too tight | Use correct drawbar force |
| Coolant pressure loss at adapter | Seal failure | Replace seal — check pressure rating |
| Internal restriction | Check coolant passages |
FAQ
What drill sleeve do I need for my gun drilling machine?
The sleeve must match the machine spindle interface on one end and the drill shank diameter on the other. Most gun drilling machines use straight sleeves with a cylindrical bore — the bore diameter matches the drill shank (typically H6 tolerance for precision), and the OD matches the spindle holder. For machines with tapered spindles (Morse taper, BT, HSK), use a tapered adapter with a straight bore. The sleeve must be rated for the coolant pressure of your machine.
How do I measure the correct drill sleeve size?
Measure the drill shank diameter with a micrometer at several points — gun drill shanks are precision ground and should be within ± 0.005 mm. The sleeve bore should match the shank diameter with an H6 fit (for example, a 20 mm shank fits a 20.000–20.009 mm bore). The sleeve OD must match the spindle holder bore or taper. Sleeve length (engagement) should be 2–4× the shank diameter to transmit torque without slipping.
Why is coolant leaking from my drill adapter?
Coolant leaks from the adapter are caused by: a damaged or missing O-ring (replace O-ring — lubricate before installation), the adapter not fully seated in the spindle (clean tapers and reseat), the seal surface on the adapter or spindle being damaged (inspect and repair, or replace adapter), or the coolant pressure exceeding the adapter's seal rating (upgrade to a higher-pressure adapter). Check the O-ring first — it is the most common cause.
BT and CAT holders both use a 7:24 steep taper and are similar — BT is the Japanese standard, CAT is the US standard. They are not interchangeable (different pull stud threads and flange dimensions). HSK uses a 1:10 hollow taper with dual face contact — it provides better runout accuracy and higher stiffness at high speeds. For deep hole drilling, HSK is preferred for high-speed applications and precision work, while BT/CAT is adequate for standard drilling speeds.
How tight should the drill fit in the sleeve?
The drill shank should fit the sleeve bore with a light sliding fit — it should slide in with hand pressure but have no visible clearance. An H6 bore (for example, 20.000–20.009 mm for a 20 mm shank) provides this fit. The drill must be locked axially with a set screw, retaining ring, or shoulder — drilling thrust pushes the drill back into the sleeve, and a positive stop prevents it from being pushed through. The set screw only prevents rotation — it does not hold axial position.
The drill sleeve or adapter is the precision link between the machine and the drill. Select the correct type for your spindle interface and drill shank, verify the bore fit (H6), ensure the coolant seal is rated for system pressure, and check runout after every installation. A correct sleeve fit means accurate drill positioning — the foundation of hole quality. This article reflects industry practice as of 2026.