利用矩阵式换能器形成声吸引力,使流动中的微气泡集中

N. Hosaka, Shinya Miyazawa, Toi Sawaguchi, R. Koda, S. Onogi, T. Mochizuki, K. Masuda
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引用次数: 4

摘要

我们已经报道了我们利用声辐射力对微气泡进行主动路径选择的尝试,其中我们研究了通过使用矩阵阵列换能器形成连续波的多个焦点来控制微气泡。然而,由于这些焦点的定位是沿声压斜率扫描微气泡,因此很难沿流动方向集中微气泡。为了产生凝聚流动中的微气泡的吸引力,我们形成了两个相位变化的焦点分时声场。我们利用两个相反相位的焦点成功地将微气泡集中在水流中,微气泡的流线在薄通道中得到了清晰的证实。此外,我们还使用具有y形分叉的人造血管来验证诱导性能,其中根据分时声场中焦点的发射模式计算对期望路径的诱导率并进行变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Forming acoustic attraction force to concentrate microbubbles in flow using a matrix array transducer
We have reported our attempts for active path selection of microbubbles by acoustic radiation forces, where we have investigated to control microbubbles by forming multiple focal points of continuous wave using a matrix array transducer. However, because those focal points were located to sweep microbubbles along the slope of sound pressure, it was difficult to concentrate microbubbles against the direction of flow. To produce attractive force to concentrate microbubbles in flow, we formed time-shared acoustic field of two focal points with phase variation. We have succeeded to concentrate microbubbles in water flow utilizing two focal points with opposite phase, where streamline of microbubbles was clearly confirmed in a thin channel. Also we confirmed induction performance using an artificial blood vessel with Y-form bifurcation, where induction rate to a desired path was calculated and varied according to the emission pattern of the focal points in time-shared acoustic fields.
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