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Steady Rests & Workpiece Support in Deep Hole Drilling

A deep hole drill 3 metres long and 30 mm in diameter has the stiffness of a wet noodle. Without steady rests at the correct intervals, the drill tube deflects, the workpiece vibrates, and the bore spirals out of tolerance. Steady rests are not optional — they are the difference between a straight bore and a scrap part.

Why Steady Rests Are Critical

In deep hole drilling, two distinct elements require support:

ElementSupport RequirementConsequence of Inadequate Support
Drill tube (boring bar)Must be supported at intervals to prevent whippingChatter, spiralling, tool breakage
Workpiece (long/slender)Must be supported to prevent sag and vibrationBore position error, ovality, surface finish degradation

The fundamental challenge is L/D ratio. A 50 mm drill tube extending 3,000 mm into the workpiece has an effective L/D of 60:1 — unsupported, it behaves as a cantilever beam that deflects under its own weight and cutting forces.

Types of Steady Rests

Manual / Mechanical Steady Rests

FeatureDescription
ActuationHandwheel or screw adjustment
ContactBronze or roller pads, manually positioned
AdjustmentPre-set before drilling begins
Repeatability0.02–0.10 mm
CostLow ($500–3,000)
Best forLow-volume, simple geometries, non-critical straightness

Manual steady rests are economical but their limitation is significant: they cannot be adjusted during the drilling cycle. As the drilling depth increases and vibration characteristics change, a pre-set steady rest may become ineffective.

Hydraulic Self-Centering Steady Rests

FeatureDescription
ActuationHydraulic cylinder (1–8 MPa)
ContactThree-roller design (self-centering)
AdjustmentDynamic — adjustable during drilling
Repeatability0.005–0.01 mm
Clamping force200–6,900 daN (model-dependent)
CostMedium ($3,000–15,000)
Best forProduction, tight straightness requirements, varying conditions

Available models from Dezhou BTADrilltools (typical of the RC series):

ModelClamping RangeMax Clamping ForceMax Roller SpeedRepeatability
RC-15–70 mm200 daN730 m/min0.005 mm
RC-310–120 mm1,350 daN930 m/min0.006 mm
RC-530–200 mm2,800 daN800 m/min0.008 mm
RC-750–300 mm4,500 daN720 m/min0.008 mm
RC-9100–430 mm6,900 daN685 m/min0.01 mm

Tip: Hydraulic steady rests with three-roller design provide automatic self-centering. When the hydraulic cylinder actuates, all three rollers close simultaneously and concentrically. This is superior to two-roller designs which require manual adjustment for each diameter change.

The critical advantage of hydraulic steady rests is dynamic adjustment. During a deep hole drilling cycle:

  1. The steady rest can be programmed to release or engage at specific depths
  2. Clamping pressure can be varied to adapt to changing vibration conditions
  3. Individual steady rests along the workpiece can be sequenced — engaging and releasing as the tool passes
  4. Pressure readings can be recorded as a process monitoring parameter

CNC-Programmable Steady Rests

Advanced machines integrate steady rests into the CNC control system, enabling fully programmable support.

Mollart Accubore (7-axis deep hole drilling centre):

  • Independent X-axis programmable steady rests (3-point roller design)
  • Laser ultrasonic technology (LUT) tracks the drill path in real time
  • Active straightness correction applied through steady rest positioning
  • Workpiece capacity: 2,180 mm long, 250 mm diameter, 900 kg

Niles-Simmons N30MC Turning Centre:

  • Two steady rest slides with integrated damping units
  • Patented Center Axis Alignment using eddy current sensing
  • Combines turning, milling, gun drilling, gear hobbing in one setup
  • 4.5 m between centres, 780 mm swing

Key features of CNC-controlled steady rests:

FeatureBenefit
Programmable X-axis positioningSteady rest follows the drilling axis without manual setup
Integrated dampingTuned mass dampers in steady rest rollers absorb vibration
Load monitoringSteady rest force sensors detect tool contact before cutting
Closed-loop pressure controlHydraulic pressure adjusted in real time from CNC program

Steady Rest Positioning

Drill Tube Support

The drill tube (boring bar) must be supported at regular intervals to prevent whipping:

Drill Tube DiameterMaximum Spacing Between SteadiesNotes
20–40 mm600–800 mmSmall gun drills need closer support
40–80 mm800–1,000 mmStandard BTA drill tubes
80–150 mm1,000–1,500 mmLarge BTA tubes — self-supporting over longer spans
> 150 mm1,500–2,000 mmVery large tubes — fewer steadies needed

Workpiece Support

Long, slender workpieces must be supported to prevent sag:

Workpiece DiameterMaximum Spacing Between SteadiesTypical Application
20–50 mm500–1,000 mmHydraulic cylinder rods
50–100 mm1,000–1,500 mmExtruder barrels, shafts
100–200 mm1,500–2,000 mmOil field components, tie bars
> 200 mm2,000–3,000 mmLarge rolls, heavy shafts

Warning: The maximum spacing rule assumes the workpiece is concentric and rotates true. If the workpiece has significant mass imbalances (keyways, flats, off-centre features), reduce spacing by 30–50% and use steady rests with higher damping capacity.

Sequencing

For multi-diameter or stepped workpieces, steady rest sequencing is important:

  1. Load position: All steadies open — workpiece loaded
  2. Clamp position: Steadies close on the workpiece at programmed positions
  3. Drilling start: Tailstock and headstock support engaged
  4. Through-drilling sequence: As the drill passes each steady, that steady may be momentarily released to avoid drill collision, then re-clamped
  5. Completion: All steadies open for unloading

Vibration Dampers for Drill Tubes

In addition to workpiece steady rests, dedicated drill tube vibration dampers are used on many deep hole drilling machines.

TypeDescriptionApplication
Fixed bushing typeClose-clearance bush mounted in a bracketLow-cost, fixed position
Roller steady typeThree-roller self-centering supportAllows axial movement during drilling
Hydraulic damping typeHydrodynamic oil film between bushing and tubeExcellent vibration damping
Tuned mass damperInertial mass with viscoelastic element fitted inside the drill tubeSuppresses specific resonant frequencies

Examples of drill tube vibration dampers on production machines:

MachineDamper TypeDetails
Sunnen SHDDFixed bushing + roller steadiesVibration dampeners as shaft supports
Premach TCS2150Hydraulic vibration damper steady for boring rodIntegrated into pressure head system
Premach TK2620Vibration damper steadies for both gun drill and BTASix-coordinate CNC machine
ZK21xxEVibration damper steadies for drill barSupports up to 200:1 L/D ratio

Manufacturers and Suppliers

Dedicated Steady Rest Manufacturers

ManufacturerProduct RangeActuationClamping Range
KitagawaBK / RBK seriesManual, pneumatic, hydraulic5–300 mm
Dezhou BTADrilltoolsRC / RX / RM seriesHydraulic5–430 mm
RöhmRoto and hydro-mechanicalManual, hydraulic5–350 mm
SMW AutoblokSelf-centering steady restsHydraulic, pneumatic5–400 mm

Machine Builders with Integrated Steady Rests

Machine BuilderMachineSteady Rest TypeSpecial Feature
MollartAccuboreCNC programmable 3-point rollerLaser ultrasonic straightness correction
UNISIGB-SeriesHydraulic with central controlProgrammable pressure from CNC
TBTB3S / ML SeriesHydraulic fixed and roller steadiesConcrete bed for vibration damping
SunnenSHDDAdjustable V-block + roller steadiesDrill tube vibration dampeners
Shin-ILBTA MachineHydraulic steady restThree processing methods (tool rotate, workpiece rotate, counter-rotate)
PremachTCS / TK SeriesHydraulic vibration damper steadiesDual gun drill + BTA capability

Selection Criteria

FactorManual Steady RestHydraulic Steady RestCNC Steady Rest
Production volumeLowMedium-highHigh
Straightness requirement≥ 0.5 mm/m0.1–0.5 mm/m≤ 0.1 mm/m
Diameter changes during runSingle diameterQuick changeoverFully automatic
Operator skill requiredModerateLowLow
Integration with automationNonePossibleFull
Initial costLowMediumHigh
Maintenance costLowMedium (hydraulics)Medium-high

FAQ

Why are steady rests needed in deep hole drilling?

Deep hole drilling tools and workpieces have high L/D ratios (often exceeding 50:1 or 100:1). Without support at regular intervals, the drill tube whips and the workpiece sags, causing bore deviation, chatter, and surface finish defects.

What is the difference between manual and hydraulic steady rests?

Manual steady rests are pre-set before drilling and cannot be adjusted during the cycle. Hydraulic steady rests can be adjusted dynamically — clamping pressure can be changed, and the rest can be opened and closed under CNC control at specific drilling depths.

How far apart should steady rests be placed?

For drill tubes: 600–1,500 mm depending on diameter. For workpieces: 500–3,000 mm depending on diameter and material stiffness. As a general rule, support at intervals equal to 20–25× the diameter of the element being supported.

What is a CNC-programmable steady rest?

A steady rest whose position and clamping pressure are controlled by the CNC program, enabling automatic support changes during the drilling cycle without operator intervention.

Can steady rests correct bore straightness?

Yes. Advanced systems like Mollart's Accubore with Laser Ultrasonic Technology (LUT) use steady rests as active straightening devices — applying corrective forces based on real-time drill path measurements.

What is a drill tube vibration damper?

A support device specifically for the rotating drill tube (boring bar), typically a close-clearance bushing or hydraulic damper that prevents whipping and suppresses vibration at critical L/D ratios.

What industries use hydraulic steady rests for deep hole drilling?

Hydraulic cylinder manufacturing, oil and gas (drill pipe, downhole tools), aerospace (landing gear struts), automotive (shafts, tie rods), power generation (turbine shafts), marine (propeller shafts), and defence (gun barrels).

How accurate are hydraulic steady rests?

Repeatability of 0.005–0.01 mm is standard for precision hydraulic steady rests from Kitagawa, Röhm, and Dezhou BTADrilltools.

Can steady rests be retrofitted to existing machines?

Yes. Hydraulic steady rests can be added to existing lathes and deep hole drilling machines with a hydraulic power unit and CNC or manual control. Retrofit cost: $5,000–25,000 depending on size and complexity.

How is steady rest clamping pressure controlled?

In hydraulic systems, a pressure reducing valve sets the clamping force. Advanced systems use proportional valves controlled by the CNC, allowing pressure variation during the drilling cycle.

Conclusion

Steady rests and workpiece support systems are indispensable for deep hole drilling of long, slender components. Three levels of technology are available: manual steady rests (low cost, pre-set before drilling), hydraulic self-centering steady rests (dynamic adjustment during drilling, 0.005–0.01 mm repeatability, 5–430 mm range), and CNC-programmable steady rests integrated with active straightness correction systems. The correct choice depends on production volume, straightness requirements, diameter variation, and automation level. Hydraulic steady rests offer the best cost-performance balance for most production applications, providing the critical advantage of dynamic adjustment as drilling conditions change with depth. Proper positioning — at intervals of 600–1,500 mm for drill tubes and 500–3,000 mm for workpieces — is essential regardless of the steady rest type chosen.

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