Skip to content
Industrial Inspection & Measurement Instruments

Measuring Coating Thickness on Non-Metallic Substrates: ASTM D6132 and Ultrasound

Measuring Coating Thickness on Non-Metallic Substrates: ASTM D6132 and Ultrasound

The bottom line

When the substrate is neither magnetic nor conductive, magnetic induction and eddy current fail together. The only portable option is ultrasound: it exploits the acoustic impedance difference between coating and substrate to measure the coating itself. The governing standard is ASTM D6132-13(2022).

Why the first two principles cannot work

Magnetic induction requires a magnetisable substrate; eddy current requires a conductive one. Concrete (cement paste plus aggregate), wood (cellulose), plastic (polymer) and glass (amorphous silicate) are neither ferromagnetic nor conductive, so both principles lack any physical basis.

This is a different situation from insufficient accuracy. On a non-metallic substrate, a magnetic or eddy current gauge does not read low or high — it has no usable signal at all.

What ultrasound actually does

  1. The probe is pressed onto the coating surface through a coupling medium and fires an ultrasonic pulse;
  2. Echoes are generated at the coating/air interface and at the coating/substrate interface;
  3. The interval Δt between those echoes and the coating velocity c determine the thickness (thickness = c × Δt ÷ 2);
  4. Because the acoustic impedance difference is pronounced, the interface echoes can be separated, which is how the gauge sees the coating alone.

What it can and cannot measure

Substrate Usable Dongru model Note
Concrete, cement mortar Yes DR200A (40-1200 μm, ±(3%+3 μm)) Flooring and waterproofing coatings; resolves up to three layers
Wood, plastic, glass Yes DR200B (18-1000 μm, ±(3%+3 μm)) Furniture lacquer, moulded parts, glass coatings; small probe follows curved surfaces
Fibreglass / composites Yes Verify the part and thickness first Confirm acoustic impedance match; a trial measurement is recommended
Heavy-build / polyurea and other thick soft coatings No Beyond the reliable window of portable ultrasonic coating gauges; no claim is made

The value of layer-by-layer measurement

Many non-metallic coating systems are multi-layer (primer, intermediate, topcoat). Ordinary thickness measurement gives only the total; layer resolution reads each coat separately, which is how you detect a missing or over-thick individual layer. Dongru DR200A resolves up to three layers, an advanced capability in this product class.

Standards discipline

This category may only cite ASTM D6132-13(2022), the ultrasonic entry in ISO 2808, and SSPC-PA 9. It belongs to a different substrate family and a different principle from the steel-substrate SSPC-PA 2 / ASTM D7091 pairing, and the two must not be cited interchangeably.

  • Magnetic induction on steel → SSPC-PA 2 / ASTM D7091 / ISO 2178;
  • Eddy current on non-ferrous metal → ASTM D7091 / ISO 2360;
  • Ultrasonic on non-metallic substrates → ASTM D6132-13(2022) / SSPC-PA 9 / ISO 2808 Method 10.

Common misconceptions

  • “Put a steel plate behind the wood and measure on top of it” — that measures the coating on your steel plate, not on the part.
  • “Ultrasonic coating measurement and ultrasonic wall thickness measurement are the same thing” — one measures a coating (tens to a thousand microns), the other a substrate wall (millimetres). Probe frequency, algorithm and standards all differ.
  • “Moisture content in concrete does not affect the reading” — moisture changes sound velocity. Record the condition and keep measurement conditions consistent.