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CNC Threading and Tapping: Single-Point, Rolled, and Cut Threads Explained

CNC threading and tapping put the threads on shafts, studs, fittings, and housings that hold the machined world together. The method you pick, single-point threading, thread rolling, cut tapping, or thread milling, drives the part's strength, finish, and cost. This guide breaks down each threading process, explains thread classes and gauging, and gives realistic cost ranges so engineers and buyers can spec threads correctly the first time.

Threading Methods on a CNC Machine

There are two ways to form a thread: cut it, which removes material, or roll it, which displaces material. Each cutting method suits different geometry and volume.

Single-Point Threading

Single-point threading uses one carbide insert that traces the thread profile over multiple passes on a CNC lathe. It is the most flexible method because one insert can cut a wide range of pitches and diameters.

  • Best for medium-volume turned parts, large diameters, and non-standard pitches
  • Handles internal and external threads, tapers, and multi-start threads
  • Typical class of fit: 2A/2B standard, 3A/3B with controlled passes and gauging
  • Surface finish of Ra 32 to 63 uin on the flanks

Thread Rolling (Rolled Threads)

Thread rolling presses hardened dies against the blank to cold-form the thread. No material is removed, so the grain flows around the thread form.

  • Produces the strongest threads because the cold-worked grain resists fatigue and stripping
  • Fast and ideal for high-volume fasteners and studs
  • Excellent surface finish, often Ra 8 to 16 uin on the flanks
  • Limited to ductile materials and external threads on cylindrical blanks

Cut Threads (Tapping and Die Cutting)

Cut tapping drives a tap through a drilled hole to form internal threads, the workhorse for tapped holes. Cut threading with a die produces external threads. Cutting is versatile and works on hardened and brittle materials that cannot be rolled.

  • Standard for internal threads in housings, plates, and bosses
  • Works on nearly any machinable material
  • Thread strength is lower than rolled because the grain is severed
  • Rigid tapping on our machining centers controls depth and lead precisely

Thread Milling

Thread milling uses a rotating multi-tooth cutter interpolated in a helix. It is the safest method for large, deep, or high-value parts because a broken thread mill is easy to retract, unlike a snapped tap. It also cuts both left and right hand threads with one tool.

Understanding Thread Classes

A thread class defines the tolerance and allowance of the fit. For Unified inch threads the letter A means external and B means internal, and the number sets the tightness.

ClassFitTypical Use
1A / 1BLooseFast assembly, dirty environments, quick spin-on
2A / 2BStandardGeneral commercial fasteners and most machined parts
3A / 3BTightAerospace, defense, and precision assemblies with no slop

Metric threads use a similar system, for example 6g external and 6H internal for a general-purpose fit. We verify threads with go/no-go ring and plug gauges and document pitch diameter on our Brown & Sharpe CMM during first article inspection. Class 3A/3B and defense work ship with material certifications and full FAI reports.

Common Thread Standards We Machine

  • UNC and UNF unified coarse and fine, such as 1/4-20 and 1/4-28
  • Metric coarse and fine, such as M6x1.0 and M6x0.75
  • NPT and NPTF tapered pipe threads for sealing fittings
  • ACME and stub ACME for lead screws and power transmission
  • Custom and multi-start threads by single-point or thread milling

How to Choose the Right Threading Method

  1. Need maximum strength or fatigue life? Roll the thread. Rolled threads outlast cut threads under cyclic load.
  2. High volume external threads on ductile material? Thread rolling gives the lowest cost per part.
  3. Large diameter, non-standard pitch, or tapers? Single-point threading is the flexible choice.
  4. Internal threads? Rigid tapping for standard sizes, thread milling for large, deep, or high-value bores.
  5. Hardened or brittle material? Cut or mill the thread, since rolling needs ductility.

CNC Threading and Tapping Cost Guidance

Threading cost depends on method, class, and gauging. The ranges below are typical illustrative estimates for adding threads to a machined part, not binding quotes. Get a firm price with an instant quote.

Cost DriverTypical RangeNotes
Programming and setup$120 to $500 per jobHigher for multi-start or custom pitches
Tapping (per hole)$0.15 to $1.25Rigid tapping; deeper and larger holes cost more
Single-point threading$0.75 to $4.00 per featureMultiple passes add cycle time
Thread rolling$0.05 to $0.50 per partLowest cost at high volume
Gauging and CMM (class 3A/3B)$60 to $250 per lotGo/no-go plus CMM pitch diameter verification

Tips to Control Threading Cost

  • Specify 2A/2B unless the assembly truly needs 3A/3B, since tighter classes add passes and gauging.
  • Standardize on common pitches like UNC/UNF to use stock tooling.
  • For high-volume studs, design for thread rolling to cut both cost and cycle time.
  • Call out thread length and depth clearly to avoid over-threading and broken taps.

Wexmar Threading and Tapping Capability

Wexmar is a precision CNC machine shop in Canastota, NY. We single-point thread and rigid-tap on 10 Mazak and Doosan CNC turning centers, thread-mill on 6 Mazak horizontal machining centers, and roll and whirl threads on our Maier Swiss machines. We are SAM.gov and CAGE registered, machine DFARS-compliant material, and every thread is gauged and, when required, verified on our Brown & Sharpe CMM. All work is made in the USA and shipped nationwide with ISO 9001-aligned documentation.

Frequently asked questions

What is the difference between rolled and cut threads?

Rolled threads are cold-formed by pressing dies against the blank, so the grain flows around the form and the thread is stronger and smoother. Cut threads remove material with a tap or die and work on harder or brittle materials that cannot be rolled.

What thread class should I specify?

Class 2A/2B is the standard fit for most machined parts and commercial fasteners. Use 3A/3B only when an aerospace or defense assembly needs a tight fit with no slop, since it adds passes and gauging cost.

Can you machine NPT and metric threads?

Yes. We machine UNC, UNF, metric coarse and fine, NPT and NPTF tapered pipe threads, ACME lead screws, and custom or multi-start threads by single-point or thread milling.

How do you verify threads?

We use go/no-go ring and plug gauges and document pitch diameter on our Brown & Sharpe CMM during first article inspection. Class 3A/3B and defense parts ship with full FAI reports and material certifications.

Related resources

Wexmar is part of a family of companies: RenPro property management software, RenPro.com, and Backwell industrial construction. Ready to machine your part? Upload your drawing for an instant estimate.

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