Unified Thread Calculator
Basic thread geometry, tap drill size, and tensile stress area for UN/UNC/UNF threads
| Standard | ASME B1.1 |
|---|---|
| Thread form | Unified (UN) |
| Thread designation | — |
|---|---|
| Major diameter, D | — |
| Pitch diameter, E | — |
| Minor diameter, K | — |
| Target engagement | — |
| Result — tap drill | — |
| Tensile stress area, At | — |
Method: Basic (theoretical) thread geometry for 60° Unified inch screw threads, calculated directly from major diameter and pitch using the standard ASME B1.1 constants — the same relationships underlying UNC, UNF, UNEF, and UNS thread series.
Formula basis: Basic pitch diameter E = D − 0.649519P and basic minor diameter K = D − 1.082532P, where P = 1/TPI. These basic diameters are geometric constants of the 60° thread form and are the same whether the thread is external (a bolt or stud) or internal (a nut or tapped hole) — only the applied tolerance direction differs between the two. Tap drill size uses the standard Machinery’s Handbook relation Drill = D − 1.299038 × P × (target engagement fraction). Tensile stress area uses At = (π/4)×(D − 0.9743/n)², the same formula used in our Flange Bolt Torque calculator.
Scope and limitations: This calculator gives basic (nominal, zero-tolerance) thread dimensions only. It does not compute the full ASME B1.1 tolerance classes (1A/2A/3A external, 1B/2B/3B internal) — the actual max/min pitch diameter limits used for go/no-go gauging, which depend on length of engagement and are defined in extensive standard tables. For gauge-critical or certified work, verify against the full ASME B1.1 standard or a calibrated thread gauge. The tap drill result is a calculated target; always round to the nearest drill actually available and confirm against a tap drill chart for critical applications.
For preliminary screening and shop-reference use only. Not a substitute for the certified ASME B1.1 standard or gauge inspection.
Read the full methodology and a worked example →
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