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Deep Hole Drilling Machine Production Run Proofing Procedure

Production run proofing is the last chance to catch a mistake before it becomes a scrapped part. Every deep hole drilling setup should be proved before the first production part is drilled. The cost of proofing is a few minutes of inspection time; the cost of a proofing failure is hours of rework or a scrapped part worth hundreds or thousands of dollars.

Pre-Proofing Setup Verification

Setup Checklist

ItemVerificationMethodSign-Off
Process sheet available and currentCheck revision, part number matchVisualSetup technician
Fixture installed and alignedAlignment within 0.01 mm per 300 mmTest bar + indicatorSetup technician
Bushing installed and dimension verifiedID within 0.01 mm of specificationBore gaugeSetup technician
Drill selected per process sheetPart number matchesVisual — check part numberSetup technician
Drill measured and within toleranceDiameter within ±0.005 mm of specMicrometerSetup technician
Drill mounted and runout checkedRunout < 0.015 mm at tipDial indicatorSetup technician
Coolant type and concentration verifiedPer process sheet — 7–9% typicalRefractometerSetup technician
Coolant pressure set per specificationWithin ±5% of targetPressure gaugeSetup technician
CNC program loaded and verifiedProgram number matches travelerVisual checkSetup technician
Spindle warm-up completed30-minute warm-upTimerSetup technician

Setup Verification Sign-Off

RoleResponsibilitySignature
Setup technicianPerforms all setup steps per checklistRequired before first article
Setup inspector (if required)Verifies critical setup itemsRequired for critical setups
OperatorReviews setup before starting runRequired before production

First-Article Drilling

First-Article Procedure

StepActionDetail
1Verify all setup checklist items are signed offDo not proceed if any item is unchecked
2Start coolant flowVerify pressure at target
3Start spindle warm-up (if not already done)30 minutes at operating speed
4Drill first test holeUse the parameters from the process sheet
5Monitor drilling parametersLoad, pressure, chip shape — record on traveler
6Stop after hole completionDo not adjust parameters during first article
7Retract drill and stop coolantNormal cycle completion
8Remove test pieceHandle carefully — do not damage bore

First-Article Inspection

CharacteristicMeasurement ToolAcceptance CriteriaRecord
Hole diameter at entryBore gaugeWithin drawing tolerance±0.XXX mm
Hole diameter at mid-depthBore gaugeWithin drawing tolerance±0.XXX mm
Hole diameter at exitBore gaugeWithin drawing tolerance±0.XXX mm
Taper (entry − exit)Calculated< 0.02 mm (typical)0.XXX mm
Surface finish (Ra)ProfilometerPer drawing — typically < 0.8 µmX.X µm
Hole depthDepth gauge or CNC positionWithin ±1 mmXXX mm
Straightness (if required)Straightness gauge or CMMPer drawingX.XX mm
Hole position (if relevant)CMMPer drawingX.XX mm

First-Article Acceptance

ResultActionFollow-up
All characteristics passApprove setup for productionSign traveler, begin production run
One characteristic marginalEvaluate — may accept with engineering approvalDocument on traveler
One characteristic failsInvestigate root cause, correct, re-testDocument NCR, re-setup, drill new first article
Multiple characteristics failReject setup — full re-setup requiredReturn to setup technician

Run Monitoring During Proofing

Proofing Run Size

Production VolumeProofing Run SizePurpose
< 20 parts2 parts (first + last)Verify consistency
20–100 parts5 parts (first, 25%, 50%, 75%, last)Trend detection
100–1,000 parts10 parts or 10% (whichever is larger)Statistical confidence
> 1,000 partsFirst 20 parts, then per sampling planEarly problem detection

Monitoring During Proofing

Check PointWhat to CheckAction if Out of Tolerance
Every part (proofing run)Diameter at one depthStop and investigate
Every 5th partSurface finishAdjust parameters if trending high
Every partChip shapeStop if chip shape changes significantly
ContinuousSpindle loadInvestigate if load changes > 10%
Every partCoolant pressureStop if pressure drops below minimum
After each tool changeRunoutVerify before next part

Documentation Requirements

Proofing Documentation

DocumentContentsSigned By
Setup checklistAll setup items verifiedSetup technician
First-article inspection reportAll hole characteristics measuredInspector
Proofing run logParameters, observations, resultsOperator
Tool usage recordTool ID, hole count, conditionOperator
Approval to runAuthorization to begin productionSupervisor or quality

Common Proofing Failures

FailureLikely CauseCorrective Action
Diameter oversize on first articleBushing worn, wrong bushing, tool runoutCheck bushing ID, replace if needed, verify runout
Diameter undersizeDrill diameter below spec, new bushing tightVerify drill diameter, check bushing ID
Poor surface finishCoolant issue, dull drill, wrong parametersCheck coolant concentration, replace drill, verify speed/feed
Straightness outAlignment issue, bushing worn, fixture problemCheck alignment, bushing, fixture
Chip packingCoolant pressure low, chip breaker geometryCheck pressure, verify drill geometry
Drill walking at entryBushing worn or missing, entry feed too highInstall/replace bushing, reduce entry feed

Transition to Production

StepActionDetail
1Verify all proofing documentation is completeTraveler, inspection report, tool records
2Obtain approval signatureSupervisor or quality representative
3Remove proofing test piece from production areaMark as "Setup Proofing — Not for Delivery"
4Begin production runFirst production part follows same process as proofing
5Reduce inspection frequency to production levelPer sampling plan on process sheet

FAQ

What is production run proofing in deep hole drilling?

Production run proofing is the systematic verification that a machine setup is correct before production begins. It includes verifying the setup checklist, drilling and inspecting a first article, monitoring a proofing run of several parts, and obtaining approval to begin production. Proofing catches setup errors before they produce scrap.

How many parts should be included in a proofing run?

The proofing run size depends on production volume. For runs under 20 parts, proof 2 parts (first and last). For runs of 20–100 parts, proof 5 parts at intervals (first, 25%, 50%, 75%, last). For runs over 100 parts, proof 10 parts or 10% and use the data to establish initial statistical control. In all cases, the proofing run must be sufficient to detect stability issues.

What is the difference between first-article inspection and production run proofing?

First-article inspection is the measurement of the first part from a setup to verify that all characteristics meet specification. Production run proofing is the broader process that includes first-article inspection plus setup verification, a monitored proofing run, and formal approval to begin production. First-article inspection is one part of proofing; proofing is the complete process.

What happens if a first-article fails inspection?

If the first article fails any characteristic, do not adjust parameters and try again. Investigate the root cause of the failure. Common causes: fixture misalignment, wrong tool, wrong bushing, coolant problem, or CNC program error. Correct the root cause, re-verify the setup, and drill a new first article. Document the failure and corrective action on a non-conformance report.

Who is responsible for approving a production run proofing?

Three roles should sign off: the setup technician (verifies setup is correct), the inspector (verifies first article meets specification), and the supervisor or quality representative (authorizes production to begin). For critical or safety-related parts, customer approval of the first-article report may also be required before production.


Production run proofing is a small investment of time that prevents large losses. Every scrapped part from a setup error could have been prevented by a proper proofing procedure. Make proofing a required step — not an optional extra — for every deep hole drilling setup. This article reflects industry practice as of 2026.

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