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- W4310584023 abstract "Most HIFU-induced cavitation applications use low frequencies (< 5 MHz), limiting the spatial precision of material erosion. Here, high-frequency (12 MHz) HIFU-induced cavitation was used to locally remove material from aluminium and thin film samples. Control over pit volume and surface area (pits with 20 - 200 µm diameter) was demonstrated by varying sonication parameters. Pit surface areas and volumes were quantified with a scanning acoustic microscope. Increasing the number of bursts increased the eroded volume but also caused a greater variation in pit area, owing to the stochasticity of inertial cavitation. Increasing the sonication amplitude increased the erosion area, as a larger area of the beam exceeded the local cavitation threshold. These results will be used to find suitable sonication parameters for localized HIFU surface-sampling." @default.
- W4310584023 created "2022-12-12" @default.
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- W4310584023 date "2022-10-10" @default.
- W4310584023 modified "2023-09-27" @default.
- W4310584023 title "Focused-Ultrasound-Induced Cavitation Removes Material in a Controlled Fashion" @default.
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- W4310584023 doi "https://doi.org/10.1109/ius54386.2022.9957310" @default.
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