Abstract
This work investigates the potential use of direct ultrasonic vibration as an aid to penetration of granular material. Compared with non-ultrasonic penetration, required forces have been observed to reduce by an order of magnitude. Similarly, total consumed power can be reduced by up to 27%, depending on the substrate and ultrasonic amplitude used. Tests were also carried out in high-gravity conditions, displaying a trend that suggests these benefits could be leveraged in lower gravity regimes.
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CITATION STYLE
Firstbrook, D., Worrall, K., Timoney, R., Suñol, F., Gao, Y., & Harkness, P. (2017). An experimental study of ultrasonic vibration and the penetration of granular material. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 473(2198). https://doi.org/10.1098/rspa.2016.0673
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