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Deep Hole Drilling Machine Table and Fixture Mounting Guide

The fixture is the interface between the machine and the workpiece. In deep hole drilling, the fixture must resist high axial forces, maintain alignment over the full part length, and provide consistent location for every part. A poorly designed or misaligned fixture guarantees poor holes — regardless of machine quality, tool condition, or parameters.

Table Types

Machine Table Configurations

Table TypeWorkpiece MountingFlexibilityRigidityBest For
T-slot tableT-nuts and boltsHighHighGeneral purpose, varied parts
Modular fixturing systemDowel pins and clampsVery highModeratePrototype, short runs
Grid plate (tooling plate)Dowel holes + threaded insertsHighHighMedium production, repeatable setups
Sub-plate (dedicated)Custom patternLow (dedicated)Very highHigh production, one part type
Hydraulic clamping plateHydraulic clampsModerateHighLong runs, automated clamping

Table Selection Criteria

CriteriaConsiderationRecommendation
Part length variabilityFrequent changes in part lengthModular or T-slot table
Production volume> 1,000 parts per yearDedicated sub-plate
Changeover time target< 15 minutesHydraulic or quick-change system
Part weight> 500 kgT-slot or grid plate with heavy-duty clamps
Accuracy requiredIT6–IT7 holesGrid plate with precision alignment features

Fixture Design Principles

Key Design Requirements

RequirementWhy It MattersDesign Guideline
Axial force resistanceDeep hole drilling generates 500–5,000 N axial forceClamps must resist axial force without part movement
Torque resistanceSpindle torque tries to rotate the partAnti-rotation feature or multiple clamp points
Alignment repeatabilityEvery part must be in the same position relative to spindlePositive stops or location pins
Chip clearanceChips must not pack around fixtureOpen fixture design, angled surfaces
Coolant drainageCoolant must not pool in fixtureDrain holes, sloped surfaces
Bushing supportBushing must be rigidly supported near the partBushing plate integrated into fixture

Fixture Body Construction

MaterialStiffnessWeightVibration DampingCostBest For
Steel (welded or cast)ExcellentHeavyGoodMediumLarge parts, high force
Aluminum (plate)GoodLightModerateLow to mediumSmall parts, low force
Cast ironExcellentHeavyExcellentMediumPrecision, production
Composite (carbon fiber)Very goodVery lightExcellentHighSpecial applications

Clamping Methods

Clamping by Workpiece Shape

Workpiece ShapeRecommended Clamping MethodNumber of ClampsClamping Force
Round bar (horizontal)V-blocks + hold-down clamps2–3 along lengthModerate — enough to prevent rotation
Round bar (vertical)Three-jaw chuck or collet + tailstock1 (chuck) + 1 (tailstock)High at chuck, light at tailstock
Square/rectangularStep clamps or toe clamps2–4 along lengthHigh
Irregular castingsCustom contour blocks + strap clamps3–6As needed for rigidity
Thin-wall tubeExpanding mandrel or split colletInternal support full lengthLight — prevent distortion

Hydraulic vs Manual Clamping

AspectManual ClampingHydraulic Clamping
Setup time5–20 minutes1–3 minutes
Clamping force consistencyOperator-dependentPrecise and repeatable
CostLowHigh ($2,000–$10,000 per fixture)
MaintenanceLowModerate (seals, valves)
Best forLow volume, prototypeHigh production, automated cycles
Clamp force monitoringNot possibleAvailable with pressure transducers

Clamp Placement Guidelines

GuidelineReason
Place clamps as close to the hole axis as possibleMinimizes leverage that can tilt the part
Distribute clamping force evenly along part lengthPrevents bowing of long parts
Use at least 3 clamp points for round partsThree points define a circle without wobble
Apply axial stop (against feed direction)Prevents part from being pushed by drill
Allow chip clearance at all clamp locationsChips trapped under clamps cause misalignment
Use copper or plastic pads on clamps for finished partsPrevents surface damage

Fixture Alignment Procedure

Initial Fixture Setup

StepActionDetail
1Clean table surface and fixture baseRemove all chips, debris
2Position fixture on tableRough alignment by eye
3Align fixture to spindle axisUsing test bar or indicator
4Clamp fixture lightlyEnough to hold position
5Verify alignmentRe-check after clamping
6Tighten all mounting boltsCross-pattern, torque to specification
7Final alignment verificationCheck all critical axes
8Set fixture datum in CNCRecord fixture offset values

Alignment Tolerance

Machine AxisToleranceMethod
Fixture axis to spindle axis (parallel)< 0.01 mm per 300 mmDial indicator on test bar
Fixture perpendicular to spindle (transverse)< 0.01 mm per 100 mmSquare + indicator
Fixture height (centerline to spindle centerline)±0.05 mmHeight gauge or laser
Bushing bore to spindle centerline< 0.01 mm TIRTest bar through bushing

Quick-Change Fixturing

Systems for Production

SystemChangeover TimeRepeatabilityCostBest For
Pallet system1–5 minutes±0.01 mmHigh ($15,000–$50,000)Multiple parts, high production
Zero-point mounting2–10 minutes±0.005 mmMedium ($5,000–$15,000)Medium to high production
Quick-change sub-plate5–15 minutes±0.02 mmLow ($1,000–$5,000)Low to medium production
Magnetic chuck1–5 minutes±0.02 mmMedium ($3,000–$10,000)Ferrous parts only

Common Fixture Problems

ProblemSymptomLikely CauseCorrective Action
Part moves during drillingOversize hole, bell mouth, tool breakageInsufficient clamping forceIncrease clamp force, add clamps
Inconsistent hole positionPosition varies part to partFixture not repeatableCheck location pins, clean locating surfaces
Chatter / vibrationSurface finish degradationFixture not rigidAdd support, increase clamp force, use damping material
Part distortion after unclampingOvality, hole out-of-roundOver-clampingReduce clamp force, use distributed clamping
Chip packing at fixtureChip evacuation problemsPoor chip clearance in fixture designModify fixture for chip flow

FAQ

What is the most important consideration in fixture design for deep hole drilling?

Axial force resistance is the most important consideration. The drill feed force pushes the part away from the spindle with hundreds to thousands of newtons of force. The fixture must have a positive axial stop (against the feed direction) and sufficient clamping force to prevent the part from sliding. Without adequate axial force resistance, the part moves during drilling, causing oversize holes and tool breakage.

How do I align a fixture on a deep hole drilling machine table?

Clean the table and fixture base thoroughly. Place the fixture on the table and align it to the spindle axis using a test bar mounted in the spindle. Use a dial indicator to sweep the fixture's location features (V-blocks, bushing bore, or part location surfaces). Adjust until the alignment is within 0.01 mm per 300 mm. Tighten mounting bolts in a cross-pattern and re-verify alignment after tightening.

How many clamps do I need for a deep hole drilling fixture?

A minimum of two clamp points for short parts (under 300 mm), three for medium parts (300–1,000 mm), and one clamp per 300–500 mm of part length for longer parts. Round parts need V-blocks at each clamp point to prevent rotation. All clamps must be on the same side of the part (toward the tailstock) to resist the axial feed force without tilting the part.

When should I use hydraulic instead of manual clamping?

Use hydraulic clamping when: production volume exceeds 500 parts per year, changeover time reduction is critical, consistent clamping force is required for quality, automated or unattended operation is planned, or the part is delicate and precise clamping force control is needed. For low-volume production or prototype work, manual clamping is more economical and flexible.

What causes a part to move in the fixture during deep hole drilling?

Part movement is caused by: insufficient clamping force (most common), missing or inadequate axial stop, clamp placement too far from the cutting zone, smooth fixture surfaces (add serrations or high-friction pads), incorrect clamp sequence (should be applied facing the axial stop), or hydraulic system pressure drop (if using hydraulic clamps).


The fixture is the foundation of hole quality. A rigid, aligned, and properly clamped fixture eliminates most common drilling problems before they start. Invest time in fixture design and setup — it pays back in consistent hole quality and reduced tool breakage. This article reflects industry practice as of 2026.

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