Skip to content

Deep Hole Drilling Machine Piping and Hose Management Guide

A deep hole drilling machine contains more high-pressure hose per square metre of floor space than almost any other machine tool. Coolant at 50–250 bar, hydraulics at 70–200 bar, and lubrication lines operating continuously create a network of pressurized components. Every connection is a potential failure point.

Hose Types and Applications

Hose Categories

Hose TypeTypical PressureTypical Size (ID)FluidColor Code (Typical)
High-pressure coolant50–250 bar6–25 mmWater-based coolantBlue or black with blue stripe
Hydraulic supply70–200 bar6–38 mmHydraulic oilBlack with yellow stripe
Hydraulic return10–35 bar10–50 mmHydraulic oilBlack with green stripe
Lubrication (way oil)1–10 bar4–12 mmWay oilYellow
Lubrication (spindle)1–5 bar4–10 mmSpindle oilWhite
Compressed air6–10 bar6–16 mmCompressed airBlack with white stripe
Chip conveyor hydraulics50–150 bar10–25 mmHydraulic oilBlack with yellow stripe
Coolant return0–2 bar (gravity)50–150 mmCoolant + chipsBlack

Hose Construction

LayerMaterialFunction
Inner tubeSynthetic rubber (NBR, EPDM) or PTFEFluid compatibility, sealing
ReinforcementBraided wire or spiral wirePressure containment
CoverSynthetic rubber (CR, SBR)Abrasion resistance, environmental protection

Tip: Coolant hoses on deep hole drilling machines fail from the inside out. The water-based coolant gradually attacks the inner tube material, especially at elevated temperatures (> 50°C). Replace coolant hoses on a schedule, not after failure — the inner deterioration is not visible from the outside.

Pressure Rating Selection

Safety Factors

ApplicationOperating PressureMinimum Burst PressureSafety FactorRecommended Working Pressure Rating
Coolant supply100 bar400 bar4:1150 bar min (200 bar preferred)
Coolant supply (high pressure)200 bar800 bar4:1250 bar min
Hydraulic (stationary)100 bar400 bar4:1150 bar
Hydraulic (mobile/bending)100 bar500 bar5:1200 bar
Lubrication5 bar40 bar8:110 bar
Coolant return1 bar10 bar10:12 bar

Temperature Derating

TemperatureDerating FactorExample: 200 bar rated hose
40°C1.00 (100%)200 bar max
60°C0.90180 bar max
80°C0.75150 bar max
100°C0.50100 bar max

Tip: Coolant temperature at the pump outlet can reach 50–60°C in heavy production, and hydraulic oil can reach 70–80°C. Apply temperature derating when selecting hoses — a hose rated for 200 bar at 40°C may only be safe at 150 bar at 80°C.

Hose Routing Best Practices

Routing Guidelines

GuidelineReasonImplementation
Minimum bend radiusPrevents kinking and reinforcement damageFollow manufacturer spec — typically 8–12× hose OD
Avoid sharp edgesPrevents cover abrasionUse abrasive-protective sleeve or conduit
Support long runsPrevents sagging and stress at fittingsClamp every 600–1000 mm
Allow slack at moving pointsPrevents tension on connections10–15% extra length on moving sections
Separate incompatible fluidsPrevents cross-contaminationRoute coolant and oil lines separately
Vertical loops at high pointsTraps air, prevents hammerInstall loop at high point of supply lines
Label both ends of each lineIdentifies circuit for maintenanceHeat-shrink labels at each connection
Protect from chip impactPrevents external damageUse steel braid or spiral guard in chip zones

Common Routing Mistakes

MistakeConsequenceCorrect Practice
Bend radius too tightHose kinked, flow restricted, early failureUse 45° or 90° fittings to reduce bend requirement
Hose in tensionFitting stress, pull-out riskSupport hose weight, use correct length
Hoses resting on sharp edgesCover wear, wire exposureUse protective sleeve or conduit
Same clamp for different fluid typesCross-contamination if hoses leakClamp each line individually
Coolant hose in hydraulic oil drip pathHose cover degradation from oilRoute coolant lines above hydraulic lines

Inspection Methods

Visual Inspection

Item to CheckWhat to Look ForFrequencyAction if Found
Cover conditionCuts, abrasion, cracking, blisteringWeeklyMark for replacement
FittingsCorrosion, leaks, damaged threadsWeeklyTighten or replace
Hose at fittingCover cracks at crimp (indicates flex fatigue)MonthlyReplace assembly
Bend pointsCover wear at tightest radiusMonthlyRe-route or protect
Color changeDiscoloration indicates fluid attackMonthlyReplace at next scheduled downtime
Leaks (dry)Dried coolant or oil residueDaily operationTighten or replace

Pressure Test Method

StepActionDetail
1Isolate the circuit to testClose valves or disconnect
2Connect pressure test gaugeAt accessible port
3Pressurize to system operating pressureUse machine's own pump
4Hold pressure for 5 minutesMonitor gauge for drop
5Inspect all connections during holdLook for weeps or spray
6Release pressure safelyUse pressure relief valve

Replacement Intervals

Hose TypeService LifeReplacement IntervalReplacement Trigger
Coolant high-pressure (100+ bar)2–3 yearsEvery 2 yearsAt 3 years max or any visible damage
Coolant standard pressure3–5 yearsEvery 3 yearsAt 5 years max
Hydraulic high-pressure4–6 yearsEvery 4 yearsAt 6 years or if cover hardens
Hydraulic return/low pressure5–7 yearsEvery 5 yearsAt 7 years max
Lubrication lines5–8 yearsAs neededAt any hardening or cracking
Compressed air5–8 yearsAs neededAt any cracking or brittleness

Replacement Triggers

ConditionActionPriority
Visible fluid leakReplace immediatelyImmediate
Cover cut to reinforcement layerReplace immediatelyImmediate
Hose blistering or ballooningReplace immediatelyImmediate
Age exceeds maximum (per type)Schedule replacementHigh
Fitting corrosionReplace hose + fittingHigh
End fitting creeps out of crimpReplace assemblyImmediate
Kinked or crushed hoseReplaceHigh
Cover hardening (loss of flexibility)Schedule replacementMedium

Fitting and Coupling Standards

Common Standards

StandardConnection TypeTypical Size RangeApplication
JIC 37° flareFlared cone + flare nut1/4" to 2"Hydraulic systems
NPT (tapered pipe thread)Tapered thread1/8" to 2"General fluid connections
BSPP (parallel)Parallel thread with O-ring1/8" to 2"Coolant systems
BSPT (tapered)Tapered thread1/8" to 2"General (Europe/Asia)
ORFS (O-ring face seal)Flat face with O-ring + bolt1/4" to 2"High-pressure coolant
SAE flangeFlanged head with O-ring1/2" to 3"Large-diameter, high-pressure
Camlock (quick disconnect)Cam arms on male adapter1/2" to 4"Coolant fill/drain connections

Compatibility Guide

Connection TypeMax Recommended PressureBest For
JIC 37° flare200 barHydraulics
NPT100 barLow-pressure general
BSPP with O-ring150 barCoolant systems
ORFS350 barHigh-pressure coolant
SAE flange350 barLarge hydraulic lines
Camlock10 barFill/drain only

Leak Prevention

Common Leak Points

LocationCausePrevention
Hose-to-fitting interfaceFlex fatigue, improper crimpUse factory-crimped assemblies, replace on schedule
Fitting-to-component connectionO-ring or seal failure, overtighteningUse torque specification, replace seals at each disconnect
Threaded pipe connectionsVibration loosening, thread damageUse thread locker, anti-seize on stainless
Quick-disconnect couplingsWorn O-rings, debris on sealing facesReplace O-rings annually, cap when disconnected
Swivel jointsWorn seals, side loadingSupport hose weight, rebuild swivels on schedule

Leak Response Procedure

StepAction
1Identify leak location and fluid type
2Assess safety risk (high-pressure coolant, hot oil, slippery floor)
3Depressurize the circuit
4Isolate the leaking section
5Clean the area thoroughly
6Replace the leaking component
7Pressure test the repair
8Clean up all leaked fluid
9Document the leak in maintenance log

FAQ

How often should coolant hoses be replaced on a deep hole drilling machine?

Replace high-pressure coolant hoses (100+ bar) every 2–3 years. Replace standard pressure coolant hoses every 3–5 years. Age-related degradation of the inner tube from water-based coolant is the primary failure mechanism and is not visible from the outside. Hose replacement should be scheduled proactively, not performed after failure.

What is the best hose for high-pressure coolant in deep hole drilling?

Use a hose specifically rated for water-based coolant at the required pressure. For pressures above 100 bar, use a hose with spiral wire reinforcement (4- or 6-spiral) for maximum burst strength. For general coolant supply (50–100 bar), braided wire reinforcement is sufficient. Always specify a hose with a synthetic rubber inner tube rated for water-glycol or water-oil emulsion coolant at the operating temperature.

How do I inspect a coolant hose for internal degradation?

Internal degradation is not visible externally. The primary indicators are: age (replace at 2–3 years regardless of appearance), coolant temperature consistently above 50°C (accelerates degradation), frequent filter debris that appears rubbery (inner tube fragments), and pressure fluctuations indicating partial hose collapse. The only definitive method is to cut open a hose at replacement interval and inspect the inner tube condition.

What causes hydraulic hose failure on deep hole drilling machines?

The most common causes are: flex fatigue at the fitting (from machine motion or vibration), cover abrasion from contact with machine surfaces or chips, overtightening at installation (damages the fitting seal), incorrect bend radius (kinks the reinforcement), and fluid incompatibility (coolant attack on the hose cover). Most failures occur within 150 mm of the fitting crimp.

Should I stock spare hose assemblies or have them made on demand?

Stock critical spare hose assemblies for the most common failures: coolant supply hose for each machine, hydraulic supply and return for each machine, and commonly damaged hoses on chip conveyors. For less common sizes and lengths, keep bulk hose and reusable fittings or have a local supplier who can make assemblies on demand. Label all spare hoses with their application and part number.


Hose management is preventive maintenance. A hose that is replaced on schedule costs a fraction of a hose that fails in production — in parts cost, downtime, and cleanup. Label, inspect, and replace on intervals based on pressure, temperature, and fluid type. This article reflects industry practice as of 2026.

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