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February 28, 2026SAE International journal of vehicle dynamics, stability, and NVH0 citations

Experimental Vibroacoustic Measurement of Thin Steel Panels Coated with Different Liquid-Applied Spray Damping Layer Thickness

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DNDavid NeihgukSSSam SuhDHD. W. Herrin

Key Points

  • To evaluate how the thickness of liquid-applied spray damping affects vibration and sound radiation in thin steel panels.
  • Evaluated five steel panels with varying LASD thicknesses.
  • Used impact-based method in a hemi-anechoic chamber to measure structural mobility.
  • Employed reciprocal method in a reverberation chamber for acoustic excitation measurements.
  • Assessed radiated sound power transfer function across thickness variations.
  • Identified a thickness ratio where further increases in LASD thickness produced diminishing returns in noise and vibration reduction.
  • Damping thickness significantly influenced radiation efficiency in narrowband and one-third octave bands.

Abstract

This study investigates the effect of liquid-applied spray damping (LASD) thickness on the vibration and sound radiation of thin steel panels. Although LASD is widely used to enhance structural damping, its influence on radiated sound and the role of coating thickness have not been systematically studied. Five steel panels with varying LASD thicknesses were evaluated using two experimental approaches. An impact-based method in a hemi-anechoic chamber measured the structural mobility and noise transfer functions, while a reciprocal method in a reverberation chamber under acoustic excitation measured the radiated sound power transfer function. A thickness ratio was found beyond which additional LASD thickness yielded diminishing improvements in noise and vibration reductions. The effect of LASD thickness on radiation efficiency was also assessed in both narrowband and one-third octave bands.

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Cite This Study

Neihguk et al. (2026) studied this question.

synapsesocial.com/papers/69a287130a974eb0d3c02822https://doi.org/10.4271/10-10-02-0017
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