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Industrial Inspection & Measurement Instruments

Base Metal Reading (BMR) and Zero Adjustment: Blast-Cleaned Steel and Irregular Parts

Base Metal Reading (BMR) and Zero Adjustment: Blast-Cleaned Steel and Irregular Parts

The bottom line

On rough bare steel, the gauge reads a non-zero number — that number is the base metal reading (BMR). If you do not subtract it, your measured thickness includes a layer of “air” that does not exist.

Where BMR comes from

Source Mechanism
Surface roughness The probe rests on the peaks; a gap to the mean substrate height creates false thickness
Substrate material Different steel grades have different permeability and conductivity, shifting the gauge baseline
Geometry A curved surface stops the probe face from fully seating; convex surfaces read high
Surface state Scale, oil and dust affect coupling and the magnetic circuit

What the standards require

  • SSPC-PA 2-2022: requires operation per ASTM D7091, which includes the step of adjusting on bare substrate;
  • ISO 19840:2012: specifically covers measurement and acceptance of coatings on rough surfaces, requiring correction against substrate of the same roughness;
  • ASTM D7091-22: defines Adjustment as zero correction on bare substrate plus shim correction.

Procedure

  1. Select an uncoated area of the workpiece, or a same-material test piece in identical condition;
  2. Clean the area, removing scale, oil and dust;
  3. Take multiple readings there (5-10 recommended) and use the arithmetic mean as the BMR;
  4. Use the gauge zero-adjustment function to zero the reading, or record the BMR for later subtraction;
  5. Measure the coating on the painted area; the reading is now the net value after BMR removal;
  6. Note the BMR value, number of points and adjustment method in the record.

No uncoated area available

On in-service equipment or fully coated workpieces you often cannot find bare substrate. Available alternatives:

  • Prepare a test piece of the same material and surface treatment as the part, and leave an uncoated patch as the reference before coating;
  • If the workpiece has masked areas (e.g. flange faces, uncoated spots near welds), use them directly for BMR measurement;
  • Use the reference plate supplied with the gauge, but note its roughness may differ from the actual workpiece, limiting the correction effect.

Records and reports

BMR is a key intermediate quantity in measurement. The acceptance record should show: the BMR value, the measurement location, the number of points, the shim number used (if slope correction was done) and the adjustment time. This lets a later review reconstruct the measurement condition.

Common misconceptions

  • ❌ “The part is freshly made, no correction needed” — a fresh blast-cleaned surface is exactly the most typical source of BMR.
  • ❌ “Just reuse last time’s BMR value” — change the workpiece or the steel batch and the BMR can change.
  • ❌ “The roughness is small, ignore it” — on a blast-cleaned surface at Ra 50-100 μm, the uncorrected deviation is enough to sway an 80/20 decision.