| name | shaft-alignment |
| description | Rotating machinery shaft alignment — types of misalignment (parallel/angular/combined), rim-and-face method, reverse indicator method, laser alignment (Optalign, Rotalign), thermal growth correction, soft foot detection and correction, alignment tolerances by speed (API 686), four-bolt correction, alignment report, and coupling selection for misalignment tolerance. |
| metadata | {"priority":7,"promptSignals":{"phrases":["shaft alignment","coupling alignment","rim and face","laser alignment","soft foot","misalignment"],"minScore":3}} |
Rotating Machinery Shaft Alignment — Complete Skill
Types of Misalignment
Definitions
Parallel (offset) misalignment:
Shaft centerlines are parallel but offset; measured in mm at the coupling faces
Characterized by: two bends in shaft system; loads on bearings in shear
Angular misalignment:
Shaft centerlines intersect at coupling but at an angle; characterized by one bend
Measured in mm/m or mrad
Combined misalignment:
Most common real-world condition — both offset and angular simultaneously
Both must be corrected simultaneously
Axial (end-float):
Excessive axial gap or preload on coupling; not a shaft alignment issue per se — coupling selection
Measurement Methods
Rim-and-Face Method
Setup:
Dial indicators on one shaft; rotate shaft with indicators bearing on opposite coupling
Rim indicator: measures radial offset (parallel misalignment) at coupling face
Face indicator: measures angular misalignment across coupling face
Reading convention:
Record at 0°, 90°, 180°, 270° (top, right, bottom, left)
Rim total indicator reading (TIR): offset = TIR/2 (eccentricity)
Face TIR: angular = TIR / measurement diameter
Limitations:
Sag correction required (indicator bracket sag under gravity)
Coupling must be rotatable together (both shafts must turn) — difficult for some equipment
Not suitable for large gap couplings
Sag measurement:
Measure bracket sag with indicators at 12 o'clock position, then free-hang; record sag value (mils)
Subtract sag from bottom reading: corrected bottom = raw bottom - sag
Reverse Indicator (Reverse Dial) Method
Setup:
Two indicators on different shafts, each reading on the opposite shaft coupling OD
Indicator A: reads on B side; Indicator B: reads on A side
Rotate shafts together through 360°; record readings at 4 positions
Calculation:
Define: A = rim readings on Machine A; B = rim readings on Machine B
Offset at Machine B: O_B = (A_bottom - A_top) / 2
Offset at Machine A: O_A = (B_bottom - B_top) / 2
Advantages over rim-face:
No face indicator needed (avoids face runout/coupling wobble errors)
More accurate for long spans between shaft ends
Standard method for industrial rotating machinery per API 686
Example:
Machine train: electric motor (fixed) + pump (to be moved)
A indicators (on motor, reading pump coupling): top = 0, right = -2, bottom = +4, left = +2 (mils TIR)
O_pump_vertical = (4-0)/2 = +2 mil (pump shaft high relative to motor at that plane)
Laser Alignment System
Types:
Optalign PLUS (single-laser, rotating reflector); Rotalign Ultra (dual-laser heads)
Each head has laser source and detector; heads communicate wirelessly
Result: offset and angle in horizontal and vertical planes; correction values (shim and move amounts)
Procedure (laser):
- Mount brackets and heads on each shaft (coupling halves or shaft adapters)
- Enter shaft dimensions (span between measurement planes; foot positions from coupling)
- Rotate shafts to 3–5 positions (12, 3, 6, 9 o'clock)
- Laser system solves for 3D misalignment
- Software calculates: Front foot shim Δ_FF, Rear foot shim Δ_RF, lateral move at front, lateral move at rear
Accuracy: ±0.001 mm (1 μm) for high-end systems; 10–100× more accurate than dial indicators
Advantage: no bracket sag; automatic thermal offset compensation if known
Alignment Tolerances
API 686 Tolerances (Machinery Alignment Standard)
Offset tolerances vs. coupling type and speed:
| Operating Speed | Offset (parallel) [mm] | Angularity [mm/m] |
|---|
| < 1,000 RPM | ≤ 0.250 | ≤ 1.00 |
| 1,000–3,600 RPM | ≤ 0.050 | ≤ 0.50 |
| > 3,600 RPM | ≤ 0.025 | ≤ 0.25 |
| > 7,200 RPM | ≤ 0.013 | ≤ 0.125 |
Note: these are ambient/cold alignment targets; thermal growth must be subtracted from targets
Coupling manufacturer limits:
Gear coupling: offset ≤ 0.2° angular; offset capability 1–3 mm (with penalty on life)
Flexible disc (Metastream): offset ≤ 0.3 mm per unit; angle ≤ 0.5°/unit
Rubber jaw/spider: more tolerant but creates vibration if misaligned > 0.5 mm
Thermal Growth Correction
Purpose
Problem: alignment is set cold; machine operates at elevated temperature → thermal growth changes misalignment
Must pre-align to offset position (called "cold alignment target") so that at operating temperature alignment is correct
Thermal growth estimation:
ΔH = α × L × ΔT [m; α = thermal expansion coefficient; L = vertical height of shaft centerline above baseplate; ΔT = operating minus ambient]
For carbon steel: α = 11.7×10⁻⁶/°C; for pump centerline at 300 mm above base, ΔT = 80°C:
ΔH = 11.7×10⁻⁶ × 0.300 × 80 = 0.000281 m = 0.28 mm
Growth data sources:
Engineering calculation (approximate); OEM data (more reliable); OPRA (on-site measurement using proximity probes before/after heat-up)
Application:
If pump grows upward 0.2 mm more than motor at operating temperature:
Cold alignment target: pump shaft 0.2 mm LOW relative to motor (so at temperature they align)
Soft Foot Detection and Correction
Soft Foot Types
Parallel soft foot: one or more feet not in full contact with baseplate (gap exists cold)
Angular soft foot: foot plane not parallel to baseplate (one corner raised)
Spring soft foot: foot rocks on curved baseplate or debris under foot
Induced soft foot: from pipe strain forcing machine out of position
Detection procedure:
- Tighten all foundation bolts; measure dial indicator on machine casing near each foot
- Loosen one bolt; record indicator reading; re-tighten; move to next bolt
- Soft foot: indicator changes > 0.05 mm (2 mils) when bolt loosened
- Repeat after shimming soft foot; repeat until all feet < 0.05 mm change
Correction:
Parallel: add shim equal to gap measured
Angular: taper shims (machined) or step shims
Pipe strain: correct piping first; then re-check soft foot
Maximum allowable soft foot before alignment: < 0.05 mm (0.002") — API 686
Four-Bolt Correction Calculation
Shim Change Calculation
Vertical correction:
Shim change at front feet = misalignment_at_front_bearing_plane [mm]
Shim change at rear feet = misalignment_at_rear_bearing_plane [mm]
(Calculated by similar triangles using foot span and coupling-to-foot distances)
Example calculation:
Coupling offset (vertical): +0.10 mm (pump high at coupling); angular: +0.20 mm/m (gap at top)
Span from coupling to front feet: L_FF = 200 mm; span to rear feet: L_RF = 600 mm
Front shim: δ_FF = offset - angular × L_FF = 0.10 - 0.20×0.200 = +0.06 mm (add 0.06 mm shim)
Rear shim: δ_RF = offset - angular × L_RF = 0.10 - 0.20×0.600 = -0.02 mm (remove 0.02 mm shim)
Lateral moves:
Same calculation in horizontal direction; use jack bolts to move machine laterally
Shim materials and sizes:
Stainless steel shim stock: 0.025 mm to 5.0 mm
Minimum shim: 0.025 mm; stack maximum: 4 shims (more creates soft foot due to stacking)
For > 3 mm adjustment: use machine shim (solid machined, no stacking)
Alignment Report Content
Required documentation (API 686 Section 2.7):
- Machine train identification; date; technician; instrument
- As-found alignment readings (dial or laser; 4 positions)
- Soft foot readings (as-found and corrected)
- Thermal growth corrections applied (source; values)
- Shim changes made (location; amount; from/to shim stack)
- Lateral moves made
- Final (as-left) alignment readings
- Comparison with tolerance
- Sign-off
Standards and References
| Standard | Scope |
|---|
| API 686 | Machinery installation and installation design for petroleum, chemical |
| ISO 10816 | Mechanical vibration — evaluation of shaft alignment |
| ANSI/ASA S2.75 | Shaft alignment methodology for rotating machinery |
| Piotrowski "Shaft Alignment Handbook" | Comprehensive reference |
| Murray "Alignment of Rotating Machinery" | Practical guide |
Output
Provide: machine train description (equipment type; operating speed [RPM]; coupling type; base type: grouted/baseplate), as-found misalignment (measurement method: rim-face/reverse indicator/laser; vertical offset [mm]; horizontal offset [mm]; vertical angularity [mm/m]; horizontal angularity [mm/m]), soft foot (each foot reading change [mm]; any foot > 0.05 mm: corrective action), thermal growth (operating T_motor [°C]; T_pump [°C]; calculated ΔH_motor, ΔH_pump [mm]; cold target offsets), shim corrections (front feet left/right Δ_shim [mm]; rear feet left/right Δ_shim [mm]; lateral moves [mm]; direction), as-left alignment (final readings; offset [mm]; angle [mm/m]), tolerance check (vs. API 686 at operating RPM; pass/fail per plane), and applicable standard (API 686; ISO 10816; alignment method reference).