Immersion water path

In immersion testing the sound crosses a water column before it reaches the part. Water carries compression waves at about 1480 m/s at 20 °C, roughly four times slower than steel, so 1 mm of water path takes as long as about 4 mm of steel — the exact ratio is c_material / c_water, 3.99 for compression in ferritic steel. That single ratio governs every water-path decision.

The water column produces its own multiple reflections between the probe face and the part surface, and they march across the time base at intervals of one interface round trip. If the water path is too short, the second interface echo lands inside the part’s thickness window and is easily mistaken for a flaw. The condition for keeping it clear is water path > thickness × c_water / c_material — for steel, a water path of at least a quarter of the wall thickness, and in practice comfortably more.

Focusing works the same way. A focused immersion probe is specified by its focal length in water. Every millimetre of material the beam passes through only uses up about a quarter of a millimetre of that water focal length, so to place the focus at a depth d inside the part the water path must be F_water − d · c_water / c_material. Get this wrong and the focus sits in the water or well past the far wall.

Water velocity is temperature sensitive — it rises by roughly 3 m/s per °C around room temperature — so a tank that warms up during a shift will shift the interface echo position and the focal depth. Degas or at least settle the water: bubbles on the part surface are the most common cause of spurious immersion indications.

Compression or shear

Worked example

Wave modecompression
Material velocity (override)0 m/s
Water velocity1480 m/s
Water path in use50 mm
Part thickness25 mm
Probe focal length in water75 mm
Required focal depth in the part12 mm
Velocity used5900 m/s
Velocity ratio (material / water)3.986
Minimum water path (keeps interface multiples clear)6.27 mm
Material path equivalent to the water path in use199.32 mm
Water round-trip time67.57 µs
Water path to focus at the required depth71.99 mm

Compression in steel, 20 °C water. Ratio = 5900/1480 = 3.9865. For a 25 mm wall the water path must exceed 25/3.9865 = 6.27 mm to keep the second interface echo out of the thickness window. The 50 mm water path in use is acoustically equivalent to 50 × 3.9865 = 199.32 mm of steel and its multiples repeat every 2 × 50 × 1000/1480 = 67.57 µs. To focus a 75 mm water-focus probe at 12 mm depth, set the water path to 75 − 12/3.9865 = 71.99 mm.

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