Skip to content

Coolant System Restart After Extended Shutdown for Deep Hole Drilling

When a deep hole drilling machine sits idle for weeks or months, the coolant system does not simply wait — it changes. Water evaporates, concentration drifts, bacteria grow in stagnant coolant, seals dry and shrink, and debris settles at every low point. A systematic restart procedure prevents the problems that develop during idle periods from damaging the system when it starts again.

Pre-Restart Inspection

Visual Inspection

Check PointWhat to Look ForAction
Coolant level in tankLow (evaporation)Fill to operating level
Coolant appearanceCloudy, separated, oily layer, moldAssess — may need replacement
Coolant odorRotten eggs, sour, rancidBacteria present — flush system
Tank interiorSludge, sediment, moldClean tank
Exposed metal surfacesRust on machine ways, fixturesClean, apply rust preventive
Hoses and sealsCracks from drying, leakageReplace damaged hoses and seals
Wipers (way)Hardened from coolant dryingReplace if hardened
Chip conveyorChips dried and packedClean chip conveyor

Coolant Condition Assessment

TestResultAction
Concentration> 5% and < 12%Adjust to target
Concentration< 5%Add concentrate (check pH and bacteria first)
pH< 8.0Bacteria likely — flush system recommended
pH8.0–9.5Acceptable — can be adjusted
Bacteria (dip slide)> 10^5 CFU/mLSanitize or flush system
Tramp oil> 5%Remove oil, flush if heavy
Visual clarityCloudy or separatedFlush system — replace coolant

Flush Decision Guide

ConditionAction
Shutdown < 2 weeks, coolant OKNo flush needed — check concentration and start
Shutdown 2–4 weeks, coolant looks OKTest pH and bacteria — flush if marginal
Shutdown 2–4 weeks, coolant questionableFlush recommended
Shutdown > 4 weeksFlush recommended — regardless of appearance
Shutdown > 8 weeksFlush required — drain and replace coolant
Any bacterial contaminationFlush + sanitize required

System Flushing Procedure

Full System Flush

StepActionDetail
1Drain old coolant completelyPump out, open all drain plugs
2Remove and clean filter elementsReplace disposable filters
3Clean tank interiorRemove sludge, pressure wash
4Fill with clean waterTreated water preferred
5Add flushing detergentPer manufacturer recommendation
6Run circulation pump for 30 minutesFull system circulation
7Open all drain points brieflyFlush low points
8Continue circulation for 15 more minutes
9Drain flush water completely
10Refill with fresh coolantAt operating concentration
11Run circulation for 15 minutesCheck for leaks
12Verify coolant concentration and pHAdjust if needed

Component Checks

Pump Check

CheckMethodAcceptableAction if Failed
Shaft rotationTurn by handFree rotation — no bindingIf seized, pump may be frozen or corroded
Seal conditionVisualNo cracks, no leakageReplace seal
PrimingFill pump housing with coolantPrimedOpen vent, fill before starting
Coupling alignmentVisual and feelNo misalignmentAlign coupling
Mounting boltsWrench checkTightTighten

Seal and Gasket Check

ComponentEffect of ShutdownAction
Rotary union sealDries and shrinks — leaks on startupReplace if > 1 year old or leak is detected
Coolant collar seals (BTA)Dries and hardensReplace if hard or cracked
Pump shaft sealMay leak on first startupRun 30 minutes — if still leaking, replace
Valve stem sealsMay shrinkCheck for leaks during startup
Hose O-rings at fittingsMay shrinkCheck for leaks during startup
Tank cover gasketUsually OKVisual check

Filter Check

Filter TypeShutdown EffectAction
Cartridge filterUsually OK — may have dried debrisReplace if > 3 months old
Bag filterMay have dried contaminantsReplace
Suction strainerDebris may have settled and driedClean before startup
Magnetic separatorOKClean magnet surface

Heat Exchanger Check

CheckMethodAction
Pressure test (both sides)Close valves, observe pressureReplace if leaking
CleanlinessCompare pressure drop to baselineClean if pressure drop > 25% above baseline
Chiller waterCheck water/glycol level and concentrationTop up, check freeze protection

Startup Sequence

Initial Startup

StepActionCheck
1Verify all drain plugs are closed
2Fill coolant to normal levelAt operating concentration
3Prime pump (if not self-priming)Fill pump housing, open vent
4Jog pump motor — 2 seconds on, 10 seconds offListen for smooth operation
5Run pump at low speed (if variable speed)5 minutes at 50% speed
6Check for leaks at all connectionsImmediate — before pressure builds
7Increase to operating speed
8Check pressure builds normallyCompare to baseline
9Check flow at return lineNormal return flow
10Check heat exchanger operationTemperature should stabilize

Post-Startup Monitoring

CheckFrequency After RestartAcceptable
System pressureEvery 15 minutes for 1 hourStable at target
Leaks — all connectionsEvery 15 minutes for 1 hourNo leaks
Pump noiseEvery 30 minutes for 2 hoursNormal — no cavitation
Coolant temperatureEvery 30 minutes for 2 hoursRising to normal, then stabilizing
Coolant concentrationAfter 1 hour of circulationAt target ± 0.5%
Coolant pHAfter 2 hours8.5–9.5
Filter ΔPAfter 1 hourClean baseline

Drilling Restart

StepActionReason
1Run spindle warm-up (30 minutes)Redistribute lubrication
2Jog all axes full strokeCheck for binding from dried lubrication
3Check way lubricationVerify oil is flowing to all points
4Drill one test hole at reduced parametersVerify system function
5Inspect test holeCheck diameter, surface finish, chip shape
6Inspect chipsVerify normal chip form
7Increase to normal parametersIf test hole is acceptable
8Monitor first 5 production holes closelyVerify stability

Common Restart Problems

ProblemLikely CauseCorrective Action
Pump cavitationAir in suction line, low coolant levelPrime pump, check tank level, bleed air
Seal leak on startupSeal dried and shrank during shutdownRun 30 minutes — if leak continues, replace seal
Low pressureAir in system, filter partially cloggedBleed air, check filter
High pressureBlocked line from settled debrisFlush lines
Coolant foamingDegraded coolant, air entrainment from startupCheck concentration, check for air leaks
Bacteria odorBacterial growth during idleFlush and sanitize system
Pressure fluctuationsAir in system, pump cavitationBleed air, check pump prime

FAQ

How do I restart a deep hole drilling coolant system after a long shutdown?

Step 1: Inspect the coolant — check appearance, odor, pH, and bacteria. If shutdown exceeded 4 weeks, flush and replace coolant. Step 2: Clean the tank, replace filters, prime the pump. Step 3: Fill with fresh coolant, start the pump at low speed, check for leaks. Step 4: Increase to operating speed, verify pressure and flow. Step 5: Run spindle warm-up, jog axes, drill a test hole. Monitor the first few hours of operation closely.

What happens to coolant during an extended shutdown?

Water evaporates (concentration increases), bacteria grow in stagnant coolant (especially if coolant was marginal before shutdown), tramp oil separates and floats to the surface, fine particles settle in low points (tank bottom, pipe low points), pH drops from bacterial activity, and additives degrade. After 4+ weeks of idle time, the coolant is unlikely to be in good condition.

How do I check if coolant is still good after a shutdown?

Test four things: appearance (clear or cloudy, separation), odor (normal or rotten/sour), pH (acceptable range 8.0–9.5), and bacteria count (dip slide — acceptable < 10^4 CFU/mL). If any test fails, flush and replace coolant before restarting. The cost of a coolant change is far less than the cost of troubleshooting problems caused by degraded coolant.

Do I need to replace seals after an extended shutdown?

Inspect all seals — rotary union, pump shaft seal, coolant collar seals, hose O-rings — for cracks, hardening, or deformation. Seals that were marginal before shutdown will likely fail on restart as they shrink during the idle period. Replace any seal that shows signs of drying or cracking. Rotary union seals are the most critical — a rotary union leak on startup can flood the spindle bearings.

Why does my coolant foam after restarting?

Foaming after restart is caused by: degraded coolant (additives broke down during idle), air entrainment (air in the system from draining and refilling), contaminants (dried residue dissolving into new coolant), or coolant concentration too high (evaporation during idle increased concentration before shutdown). Run the system for 30–60 minutes to purge air, check concentration, and add anti-foam if needed. If foaming persists, the coolant may need replacement.


A systematic coolant system restart after extended shutdown prevents the problems that develop during idle periods — seal leaks, pump cavitation, bacteria contamination — from damaging the system when it starts again. Inspect before starting, flush if the coolant has been idle more than 4 weeks, and monitor closely for the first few hours of operation. This article reflects industry practice as of 2026.

Deep Hole Drilling Hub — Your Trusted Third-Party Industry Resource