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Deep Hole Drilling Machine Startup and Shutdown: Daily Operations Guide

The first part of the day is the most likely time for a scrap part. Cold machine, cold coolant, untested systems — every startup is a process restart. A disciplined startup procedure catches problems before they become scrap. An equally disciplined shutdown procedure prevents problems from developing overnight.

Pre-Startup Inspection

Visual Check

ItemCheckAction if Issue Found
Coolant levelBetween min and max on sight glassTop off to operating level
Hydraulic oil levelBetween min and maxAdd correct oil grade
Way oil reservoirAbove 50%Fill with way oil
Chip conveyorNo visible obstructionsClear any jammed chips
Coolant return screenScreen clean, no blockageClean screen
Machine bed and waysNo chips or debrisClean before moving axes
Guide bushing areaClean, no chipsClean with coolant hose
Tool holder and drillVisually intactInspect for damage

Safety Systems Check

SystemVerificationAction if Faulty
E-stop buttonsPress and release — all clearDo not operate — call maintenance
Door interlocksOpen door, attempt cycleDo not operate — repair interlock
Light curtainBreak beam during setupVerify machine stops
Coolant pressure switchCheck alarm test (if available)Repair before production
Chip conveyor interlockVerify conveyor stop worksRepair before production

Warning: A safety system that failed overnight or during the previous shift is the most dangerous startup condition. Test all safety systems before the first cycle of the day, not after. Do not bypass interlocks for startup.

Warm-Up Sequence

Step-by-Step Warm-Up

StepDurationActionPurpose
15–10 minStart coolant circulation pumpWarm coolant, stabilize temperature
25 minRun spindle at 500–1,000 RPMGradually warm spindle bearings
35 minIncrease spindle to 50% of max operating RPMStep warm-up
45 minIncrease spindle to 100% of operating RPMFull spindle warm-up
55–10 minTraverse all axes through full rangeWarm ball screws and guideways
62 minTurn on through-spindle coolant at low pressureCheck coolant flow at drill tip
75 minRun a test cycle without cuttingConfirm all systems functional

Warm-Up Duration by Condition

Machine ConditionMinimum Warm-UpRecommended
Cold start (overnight)20 min30 min
Weekend idle25 min35 min
Extended shutdown (> 1 week)35 min45 min
Warm start (< 2 hours idle)5 min10 min

Pre-Cut Verification

Before the First Part

CheckMethodAcceptance
Coolant pressure at drill tipObserve pressure gaugeWithin 5% of target
Coolant flow at drill tipVisual — steady streamContinuous, no sputtering
Coolant temperatureRead temperature gaugeWithin operating range (15–35°C)
Spindle runout (at tip)Dial indicatorWithin specification
Feed and speed in programCompare to setup sheetMatches job parameters
Entry feed overrideSet to 30–50%Correct for first part
Tool life counterVerify not expiredReset if needed
Workpiece loaded correctlyConfirm center heightCentered and secure
Guide bushingConfirm correct size installedMatches drill diameter

First Part Inspection

CheckToolAcceptance
Hole diameterBore gauge or plug gaugeWithin print tolerance
Surface finishVisual or profilometerAcceptable for production
Chip shapeVisualC-shape or short spiral
Hole position (if applicable)CMM or gaugeWithin position tolerance
Drill condition after first partVisual inspectionNo damage, normal wear

Tip: The first part of the day tells you the condition of the machine. If the first part is good, the machine is ready. If the first part has defects, investigate before continuing — the problem will not fix itself on the second part.

Production Monitoring

In-Process Checks

CheckFrequencyMethod
Chip shapeEvery partVisual — check for changes from ideal
Coolant pressureEvery partObserve gauge for fluctuation
Spindle loadEvery partNote baseline and trend
Surface finish (visual)Every partQuick visual check
Coolant concentrationStart of shiftRefractometer
Coolant temperatureHourlyRead temperature gauge
Chip conveyorHourlyCheck for free chip flow

Shutdown Procedure

End-of-Shift Shutdown

StepActionPurpose
1Complete current hole — do not stop mid-holePrevents chip jams in bore
2Retract drill fully from workpieceClear drill from bore
3Run coolant for 2–3 minutes after last cutFlush chips from system
4Run spindle at low RPM (500–1,000) for 2 minutesCool spindle bearings gradually
5Stop spindle
6Stop coolant pump
7Traverse all axes to center positionBalanced position for thermal relaxation
8Remove tool from spindle (if recommended)Relieves holder pressure
9Clean machine bed, tool holder, bushing areaRemove chips and coolant
10Empty chip bin (if near full)Prevent overflow overnight

Extended Shutdown (Weekend or Longer)

Additional StepActionPurpose
1Clean coolant tank (if scheduled)Prevent bacterial growth
2Apply rust preventive to exposed guidewaysPrevent corrosion from coolant residue
3Leave coolant tank cover open (if safe)Allow ventilation
4Check coolant concentration — adjust if neededPrevent separation during idle
5Close coolant supply valvesPrevent leaks
6Log machine condition in handoverCommunicate status

Warning: Never stop a gun drill mid-hole at the end of a shift. Chips settle in the bore during shutdown, and the drill will jam when restarting. Complete the hole or retract the drill and clear the bore before shutting down.

End-of-Shift Documentation

Operator Handover

InformationDetail
Date and shift
Parts produced (good/scrap)
Tool life remaining
Issues encountered
Coolant pressure trend
Spindle load trend
Maintenance needed
Tooling needed for next shift

FAQ

How long should I warm up a deep hole drilling machine?

Minimum 20 minutes for overnight shutdown, 30 minutes recommended for precision work. The coolant system must also reach temperature — starting with cold coolant causes thermal drift during the first 30–60 minutes of production. Longer warm-up is needed after weekends or extended shutdowns.

What is the most important startup check?

Coolant flow at the drill tip. Before any cutting, verify that coolant is reaching the cutting edge. A blocked coolant passage causes a chip jam that breaks the drill. This 30-second check prevents the most common cause of tool breakage.

Should I remove the drill from the holder at the end of shift?

For overnight shutdown, leaving the drill in the holder is acceptable. For extended shutdown (weekend or longer), removing the drill is recommended to relieve holder clamping pressure and prevent corrosion at the clamping interface.

Can I leave the coolant pump running overnight?

No — the coolant pump should be turned off during shutdown. Continuous running heats the coolant unnecessarily, wastes energy, and can cause coolant temperature to rise above the bacterial growth threshold if the chiller is also off.

What should I do if I find a problem during startup checks?

Stop and investigate before starting production. If coolant flow is weak, check the filter and coolant passage. If runout is high, clean and reseat the drill. If the safety interlock fails, lock out the machine and call maintenance. A problem found during startup will only cause a scrap part or broken tool if ignored.


A consistent startup and shutdown procedure is the lowest-cost form of machine insurance. Ten minutes of checks at each end of the shift prevents hours of downtime. This article reflects industry practice as of 2026.

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