Measurement-data worksheet · one radial trace
Documented Single-Trace Radial Indicator Worksheet
Reduce equally spaced radial indicator readings from one complete revolution to an observed sampled range and a first-harmonic diagnostic, while preserving the datum, setup and instrument record.
Reference results
Equations and meaning
For N equally spaced readings yᵢ at θᵢ = 2πi/N, the direct trace reduction is:
half-range = sampled spread / 2
Following the NIST single-trace least-squares construction:
a = (2/N) Σ[yᵢ cos(θᵢ)]
b = (2/N) Σ[yᵢ sin(θᵢ)]
first-harmonic amplitude = √(a² + b²)
Δᵢ = yᵢ − mean − a cos(θᵢ) − b sin(θᵢ)
The first-harmonic phase is reported relative to the first reading and the recorded rotation direction. The residual range is max(Δᵢ) − min(Δᵢ). All are descriptive results from the entered samples; no tolerance, uncertainty allowance or acceptance decision is generated.
Dimensional check
Trigonometric terms and N are dimensionless, so mean, a, b, harmonic amplitude, residuals and ranges retain the reading unit. Exact conversions used are 1 mm = 1000 µm and 1 mil = 25.4 µm.
Model boundary
- Sampled trace, not continuous extrema. Unless the actual continuous maximum and minimum were captured, the discrete range can underestimate the one-revolution indicator movement. Increase angular density or use a validated continuous acquisition method.
- One section, not total runout. Readings at one fixed axial section do not establish total runout of the complete surface. Exact drawing interpretation and conformance require the controlled ISO 1101 or applicable drawing standard.
- Setup is part of the result. The datum/reference axis, mounting, support deformation, seating, probe direction, surface form, dirt/burrs, instrument error and spindle/error motion can affect the trace.
- Half-range is not generally eccentricity. It equals centre offset only for the idealized case where a perfect circular feature has pure centre offset relative to the rotation/reference axis and other harmonics/errors are absent.
- No residual-unbalance conversion. ISO 21940-11 concerns residual mass unbalance of rotors with rigid behaviour. A journal surface trace is not a measurement of the rotor mass-centre distribution; the former TIR = 2ena G-grade screening path has been removed.
- No acceptance decision. Drawing tolerance, measurement uncertainty, guard band and decision rule remain external. Exact clauses and tolerance values are
NEEDS_LICENSED_SOURCEunless a controlled document is supplied.
Source traceability
| Trditev | Razvrstitev | Dokazi |
|---|---|---|
| Single-trace equally spaced least-squares mean, cosine/sine coefficients and residual | Published public metrology method; not an ISO formula | NIST/SEMATECH e-Handbook, 2.3.4.4.1 Single-trace roundness design |
| A single trace cannot separate spindle error from workpiece error | Published NIST limitation | Same NIST/SEMATECH section; weakness of the single-trace method |
| Dynamic radial surface displacement can contain spindle error motion, form, alignment and vibration contributions | Published NIST research summary | NIST, Anandan et al., 2011 |
| Geometrical runout specification framework | Current standard identification only; no clause or tolerance copied | ISO 1101:2017, Edition 4, published and confirmed in 2022 |
| Rigid-rotor residual-unbalance scope, not geometric shaft runout | Current standard scope/status only | ISO 21940-11:2016 s spletno stranjo . Amendment 1:2022; under systematic review in 2026 |
| Axes-of-rotation measurement methods | Current ASME identification/scope only; exact procedure remains licensed | ASME B89.3.4-2010 (R2024), stabilized maintenance |
| 1 in = 25.4 mm točno | Exact SI conversion | NIST SP 811, Appendix B.8 |
Dostop: 15 July 2026. Public sources establish the numerical reduction and standard scopes. They do not establish the project datum simulation, sampling density, uncertainty, tolerance or decision rule. Worksheet URL: https://vibromera.eu/calculators/shaft-radial-runout/
Reference sample trace
For equally spaced readings [10, 0, −10, 0] µm starting at 0°, the exact analytic result is: sampled range 20 µm; mean 0; a = 10 µm; b = 0; first-harmonic amplitude 10 µm; phase 0°; residual range 0. This verifies the implementation algebra but is not a tolerance example.
Vprašanja
Does TIR always equal twice eccentricity?
No. Twice-centre-offset is an ideal special case for a perfect circle with pure offset. An actual indicator trace can contain form, datum/setup, spindle/error-motion and sampling contributions. This worksheet therefore labels range/2 as half-range, not eccentricity.
Can this trace be compared with ISO 21940 balance grade G?
No direct conversion is made. ISO 21940-11 controls residual mass unbalance for rotors with rigid behaviour; a surface indicator trace does not locate the rotor mass centre. Balance must be measured and evaluated by the applicable controlled balancing procedure.
Is one axial trace enough for total runout?
No. This worksheet reduces one fixed-section trace only. The exact geometric specification, datum and verification procedure must come from the drawing and the applicable controlled standard.
What value is acceptable?
No universal value is generated. Use the controlled drawing or OEM tolerance together with a documented measurement uncertainty and decision rule. If the exact standard clause is unavailable, retain NEEDS_LICENSED_SOURCE.