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Cost Estimating & Quoting for Contract Deep Hole Drilling

Getting five quotes for the same deep hole drilling job can yield five wildly different figures. The difference is not price gouging — it is the absence of a standard cost model for an operation where drill wander, coolant pressure, and tool regrind frequency can each swing the final price by 50% in either direction.

Cost estimating for contract deep hole drilling is fundamentally different from standard machining estimating. The specialised equipment, high coolant pressures, tool wear characteristics, and secondary operations unique to deep hole drilling require a purpose-built framework. This article provides a practical cost model with worked examples for both BTA and gun drilling operations.

Cost Components of Deep Hole Drilling

The total cost per part for deep hole drilling breaks into five independent components:

Part Cost = Material + (Setup ÷ Batch) + (Burden Rate × Cycle Time) + Tooling + Secondary Operations

Each component is independently estimable, and the framework allows the estimator to identify which cost drivers dominate for a given job.

Cost Component Breakdown

ComponentTypical Share (Deep Hole Drilling)Volatility
Material15–35%Low (market price)
Setup amortised2–10%High (batch-size dependent)
Burden × cycle time35–55%Medium (process dependent)
Tooling5–15%High (material and depth dependent)
Secondary operations10–25%High (tolerance dependent)

The burden rate multiplied by cycle time is nearly always the largest single cost driver for deep hole drilling, making accurate time estimation the most important skill in quoting.

Machine Burden Rates

The burden rate (machine hourly rate) captures all costs associated with operating the deep hole drilling machine for one hour.

Burden Rate Components

Cost ElementAnnual Cost ($)Notes
Machine depreciation15,000–60,000Based on $150k–$600k machine over 10 years
Floor space3,000–8,000At $15–$40/sq ft for 200 sq ft
Maintenance5,000–20,0003–5% of machine value annually
Power consumption3,000–12,00020–50 kW at $0.10–$0.15/kWh
Coolant system2,000–8,000Filters, pumps, disposal
Labour (operator)40,000–70,000Loaded cost including benefits
Support overhead10,000–25,000Programming, inspection, management

Typical Burden Rates by Machine Type

Machine TypeTypical InvestmentBurden Rate ($/hr)
Manual gun drilling machine$80,000–$150,000$60–$100
CNC gun drilling machine$200,000–$400,000$100–$180
BTA drilling machine (single spindle)$300,000–$500,000$150–$250
BTA drilling machine (multi-spindle)$500,000–$1,000,000+$200–$350
Deep hole boring and trepanning machine$400,000–$800,000$180–$300

Burden Rate Calculation Example

For a CNC BTA drilling machine valued at $400,000:

CostAnnual ($)Hourly ($)
Depreciation (10 year, straight line)40,00020.00
Floor space (200 sq ft × $25)5,0002.50
Maintenance (5% of value)20,00010.00
Power (40 kW × 2,000 hrs × $0.12)9,6004.80
Coolant system6,0003.00
Operator labour (loaded)55,00027.50
Support overhead18,0009.00
Total annual153,600
Available hours3,200 (80% utilisation of 4,000)
Burden rate$48/hr

However, most shops apply a multiplier of 2–3× the direct cost to cover profit, sales, and business overhead. The billed rate typically ranges from $120–$250/hr for this machine class.

Material Costs

Material cost for deep hole drilling must account for the raw material form and utilisation rate.

Material Forms

FormTypical ApplicationUtilisation Rate
Solid bar (drilled through)Gun drilling, small BTA15–40% (core removed)
Tube stockLarge BTA, honing60–90%
Forged billet (pre-centred)BTA drilling40–60%
Pre-bored stockFinish boring70–90%

Material Cost Calculation

Material Cost = (Stock Weight × Material Price) / Utilisation Rate

Example — drilling a 25 mm bore through a 75 mm diameter steel bar, 500 mm long:

ItemValue
Stock weight (75 mm × 500 mm, steel)17.3 kg
Material price (alloy steel)$2.50/kg
Stock cost$43.25
Finished weight (hollow cylinder)11.5 kg (includes external turning)
Scrap value (core)−$1.50
Net material cost per part$41.75

Tooling Costs

Tooling cost per part depends on tool type, purchase or regrind cost, and tool life in number of holes.

Gun Drilling Tooling

Gun drills are solid carbide tools that can be reground multiple times:

Gun Drill DiameterNew Tool CostRegrind CostRegrinds PossibleCost Per Regrind Cycle
3–6 mm$80–$150$25–$505–8$45–$70
6–12 mm$120–$250$40–$755–8$55–$100
12–25 mm$200–$400$60–$1204–6$85–$165
25–40 mm$350–$600$100–$1754–6$140–$250

Tool life between regrinds depends on material and depth:

MaterialHoles Between Regrinds (10 mm drill, 10×D depth)
Aluminium500–2,000
Low-carbon steel200–500
Alloy steel (300 HB)80–200
Stainless steel (304)50–120
Titanium (Ti-6Al-4V)20–60
Inconel 71810–30

BTA Drilling Tooling

BTA tools use replaceable carbide inserts:

BTA Head DiameterHead CostInsert Cost per SetHoles per Insert SetTool Cost per Hole
20–40 mm$200–$400$30–$6050–200$0.15–$1.20
40–80 mm$400–$800$60–$12040–150$0.40–$3.00
80–150 mm$800–$1,500$120–$25030–100$1.20–$8.30
150–250 mm$1,500–$3,000$250–$50020–80$3.10–$25.00

BTA tooling cost per hole is generally lower than gun drilling for equivalent diameters because only the inserts are replaced, not the entire tool body. However, the head body must be replaced after 500–2,000 holes depending on wear.

Setup and Programming

Setup Components

Setup ActivityTypical TimeCost at $150/hr
Quote preparation0.5–2 hrs$75–$300
CAM programming1–4 hrs$150–$600
Fixture design and fabrication2–20 hrs$300–$3,000
First-piece setup and alignment1–3 hrs$150–$450
Test cuts and inspection0.5–2 hrs$75–$300

Total setup cost typically ranges from $750 to $4,650 depending on complexity.

Batch Size Impact

Setup cost per part = Total setup cost ÷ batch size:

Batch SizeSetup Cost per Part ($1,500 setup)
1$1,500.00
10$150.00
50$30.00
100$15.00
500$3.00
1,000$1.50

For small batches (under 50 parts), setup cost is a significant portion of the total price. For production runs above 500 parts, setup becomes negligible.

Cycle Time Estimation

Cycle time estimation for deep hole drilling must account for the additional time from peck cycles.

Standard Drilling Time

Base drilling time for a single pass:

T_base = L / (f × n)

Where L = hole depth (mm), f = feed per revolution (mm/rev), n = spindle speed (rpm).

Peck Cycle Time Multiplier

The base time must be multiplied by a peck factor that accounts for retraction and approach moves:

Depth RatioRecommended Peck TypeTime Multiplier vs. Continuous Feed
<3× diameterNo peck1.0×
3–5× diameterG73 chip break1.1–1.2×
5–10× diameterG83 full retract1.3–1.6×
10–20× diameterG83 variable peck1.5–2.0×
>20× diameterGun drilling/BTA1.1–1.3× (continuous feed)

Counter-intuitively, gun drilling and BTA drilling at very high depth ratios can have lower time multipliers than G83 peck drilling because they use continuous feed with through-tool chip evacuation.

Complete Cycle Time Formula

Total Cycle Time = T_base × Peck_Multiplier + T_approach + T_retract + T_coolant

Where:

  • T_approach = time to rapid from start position to hole entrance (2–5 seconds typical)
  • T_retract = rapid retract time at end of cycle (1–3 seconds)
  • T_coolant = coolant-on dwell before cutting (2–4 seconds for high-pressure systems)

Cycle Time Example — Gun Drilling

10 mm diameter hole, 200 mm deep (20×D) in alloy steel:

ParameterValue
Cutting speed80 m/min
Spindle speed2,546 rpm
Feed per revolution0.04 mm/rev
Feed rate102 mm/min
Base drilling time200 / 102 = 1.96 min
Peck multiplier (gun drill)1.2×
Adjusted drilling time2.35 min
Approach + retract + coolant0.15 min
Total cycle time2.50 min

Cycle Time Example — BTA Drilling

50 mm diameter hole, 500 mm deep (10×D) in alloy steel:

ParameterValue
Cutting speed120 m/min
Spindle speed764 rpm
Feed per revolution0.12 mm/rev
Feed rate92 mm/min
Base drilling time500 / 92 = 5.43 min
Peck multiplier (BTA)1.1×
Adjusted drilling time5.97 min
Approach + retract + coolant0.20 min
Total cycle time6.17 min

Quoting Framework

Complete Price Formula

Part Price = Material Cost
           + (Setup Cost / Batch Size)
           + (Burden Rate × Cycle Time)
           + Tool Cost per Part
           + Secondary Operation Cost
           + Markup (15–40%)

Worked Example — Gun Drilling Quote

Quote for 100 parts: 10 mm hole × 200 mm deep in alloy steel.

ComponentCalculationAmount
Material17.3 kg × $2.50/kg − $1.50 scrap$41.75
Setup amortised$1,800 / 100$18.00
Burden × cycle time$150/hr × (2.50 / 60)$6.25
Tooling($120 / 5 regrinds) / 80 holes per regrind$0.30
Secondary (deburr)$2.00 per part$2.00
Subtotal$68.30
Markup (25%)$17.08
Total per part$85.38

Worked Example — BTA Drilling Quote

Quote for 50 parts: 50 mm hole × 500 mm deep in alloy steel.

ComponentCalculationAmount
MaterialTube stock 55 mm OD × 8 mm wall$35.00
Setup amortised$2,500 / 50$50.00
Burden × cycle time$200/hr × (6.17 / 60)$20.57
ToolingInserts $80 per set / 80 holes + head amortisation$1.50
Secondary (inspection)$5.00 per part$5.00
Subtotal$112.07
Markup (25%)$28.02
Total per part$140.09

Factors That Increase Price

FactorCost MultiplierTypical Trigger
Tight tolerance (±0.025 mm vs. ±0.1 mm)1.3–2.0×Honing required
High surface finish (Ra < 0.4 µm)1.2–1.8×Secondary honing or burnishing
Exotic material (titanium, Inconel)1.5–3.0×Lower speeds, shorter tool life
Small batch (<10 parts)1.5–3.0×Setup dominates
Aerospace certification1.2–1.5×Additional documentation and inspection
Deep hole >50× diameter1.3–2.0×Increased risk of drill wander
Blind hole (vs. through hole)1.2–2.0×Chip evacuation difficulty

FAQ

How do I calculate the burden rate for a deep hole drilling machine?

Sum all annual costs associated with the machine (depreciation, floor space, maintenance, power, coolant, labour, support overhead) and divide by the available operating hours (typically 3,000–4,000 hours per year at 70–85% utilisation). Most shops then multiply this direct cost by 2–3× to arrive at the billed hourly rate, covering profit, sales, and general business overhead.

What is the typical hourly rate for contract deep hole drilling?

Rates vary by machine type and region. Manual gun drilling machines bill at $60–$100/hr, CNC gun drilling machines at $100–$180/hr, single-spindle BTA machines at $150–$250/hr, and multi-spindle BTA machines at $200–$350/hr. These rates include the operator, machine, coolant, and standard overhead but exclude material and special tooling.

How much does drill wander affect deep hole drilling cost?

Drill wander — the tendency of a deep drill to deviate from its intended axis — significantly affects cost. Industry standard is approximately 1 mm deviation per metre drilled. Correcting wander through slower feed rates, stiffer tooling, or secondary boring operations can increase cycle time by 20–50% and add inspection costs. Mitigation measures (starter bushings, guide pads, pre-drilled pilot holes) add setup cost but reduce per-part risk.

What is the most common cause of cost overruns in deep hole drilling?

Tool breakage at depth is the most expensive single failure mode — a broken BTA head or gun drill at 20× diameter can destroy the workpiece and require hours of extraction time. Underestimated peck cycle time is the second most common overrun. Many estimators use standard drilling time formulas without the peck multiplier (1.3–2.0× for deep holes), resulting in quotes that are 20–40% below actual cost.

How do I estimate tooling cost per hole for gun drilling?

Gun drill tooling cost per hole = (new tool cost / number of regrinds possible + regrind cost) / holes between regrinds. For example, a $200 gun drill with 6 regrinds at $60 each produces an amortised tool cost of ($200/6 + $60) = $93.33 per regrind cycle. If the tool drills 100 holes between regrinds, the tool cost per hole is $0.93.

When does honing become necessary and how much does it add?

Honing becomes necessary when the required surface finish is below Ra 0.8 µm or the tolerance is tighter than ±0.05 mm. Honing typically adds $5–$50 per hole depending on diameter, depth, and material. The cost multiplier for deep hole drilling plus honing is typically 1.3–2.0× compared to drilling alone.

What is the breakeven batch size for deep hole drilling?

Below 10–20 parts per batch, setup cost dominates and prices rise steeply for small quantities. Between 20–100 parts, setup amortisation becomes reasonable. Above 500 parts, setup becomes a negligible cost component and the price stabilises near the marginal production cost. For very large batches (10,000+), dedicated tooling and specialised workholding can further reduce per-part cost.

How do I factor coolant costs into a deep hole drilling quote?

High-pressure coolant system costs include the coolant concentrate ($15–$40 per gallon), water, filtration maintenance, and disposal. A typical deep hole drilling machine consumes $2–$8 per operating hour in coolant-related costs. For gun drilling with oil-based coolants, the cost is higher ($5–$12/hr) due to oil cost and mist collection. These costs are typically included in the machine burden rate rather than quoted separately.

Summary

ComponentTypical ShareKey Estimating Factor
Machine burden rate35–55% of totalDepreciation and utilisation rate most impactful
Cycle time20–35%Peck multiplier (1.1–2.0×) is the most common estimation error
Material15–35%Utilisation rate (15–90% depending on stock form)
Tooling5–15%Regrind cost and life for gun drills; insert cost for BTA
Setup amortisation2–10%Batch size-dependent — dominates below 20 parts
Secondary operations10–25%Honing adds 1.3–2.0× multiplier
BTA burden rate$150–$300/hrMachine investment $300k–$1M+
Gun drilling burden rate$80–$180/hrMachine investment $80k–$400k
Typical markup15–40%Market-dependent

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