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March 29, 2026Propellants Explosives Pyrotechnics0 citations

Ultrasound Characterization of Plastic Bonded Explosives With Varied Binder Content and Density

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JLJordan S. LumPMPaul B. MirkarimiEREmily Robertson

Key Points

  • To explore the effects of binder content and density on the ultrasound characteristics of plastic bonded explosives.
  • Measured through-transmission sound speed of PBXs with varying binder weight percentages and densities.
  • Analyzed longitudinal and shear sound speeds, peak frequencies, and elastic properties of different formulations.
  • Utilized resonant ultrasound spectroscopy (RUS) alongside through-transmission measurements for characterization.
  • Linear and nonlinear changes in sound speeds observed with varying binder content and density.
  • Differentiation of formulations indicated through measured elastic properties and sound characteristics.
  • Potential for automation in the characterization process for high-throughput manufacturing established.

Abstract

ABSTRACT Advanced explosive formulations and methods of production require rapid characterization for both processes and materials. Here, we present results for ultrasound characterization of a plastic bonded explosive (PBX) formulation as a function of binder weight percent and pressing density using through‐transmission sound speed measurements. The explosive in this study was composed of 1,3,5‐triamino‐2,4,6‐trinitrobenzene (TATB) combined with the fluoropolymer binder Kynar Ultraflex B. Binder content ranged from 2.6 wt.% to 11.5 wt.% with associated explosive formulation densities from 1.69 g/cc to 1.89 g/cc. We find linear and nonlinear changes in longitudinal and shear sound speeds, peak frequencies, and measured elastic properties for the different PBX formulations. These measured changes can differentiate the tested formulations, highlighting the potential for ultrasound as a nondestructive characterization method for newly‐formulated PBXs. We also demonstrate through‐transmission measurements using different coupling media and present results from an ultrasound technique called resonant ultrasound spectroscopy (RUS). Both transmission and RUS approaches may allow for rapid and even automated characterization of PBX components suitable for high‐throughput manufacturing operations.

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Cite This Study

Lum et al. (2026) studied this question.

synapsesocial.com/papers/69c8c336de0f0f753b39ddb0https://doi.org/10.1002/prep.70177
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