论文标题

屈服压力流体中的声气泡动力学

Acoustic Bubble Dynamics in a Yield-Stress Fluids

论文作者

Saint-Michel, Brice, Garbin, Valeria

论文摘要

当浮力施加不足的压力以诱导材料的局部屈服时,屈服压力自然会捕获小气泡。在声激发下,可以将被捕获的气泡驱动到体积振荡中,并施加额外的局部应变和应力,以触发屈服并帮助其释放。在本文中,我们探讨了微泡振荡和翻译的不同机制,由模型屈服压力液(Carbopol Microgel)中的超声场驱动。我们首先分析线性气泡振荡动力学,以测量材料的局部高频粘度。然后,我们使用声压力梯度诱导气泡翻译,并检查以下材料的响应的弹性部分。我们发现,在中等压力振幅下,体积振荡和声音辐射力施加的其他应力不会导致任何可检测到的不可逆气泡运动。在高压振幅下,我们观察到非球形形状振荡,导致气泡运动不稳定。我们观察到的形状模式和临界压力与柔软固体中最新形状振荡模型的预测不同。基于我们的发现,我们讨论了Carbopol中缺乏气泡释放的原因,并建议可以观察到超声辅助气泡上升的其他系统。

Yield-stress fluids naturally trap small bubbles when their buoyancy applies an insufficient stress to induce local yielding of the material. Under acoustic excitation, trapped bubbles can be driven into volumetric oscillations and apply an additional local strain and stress that can trigger yielding and assist their release. In this paper we explore different regimes of microbubble oscillation and translation driven by an ultrasound field in a model yield-stress fluid, a Carbopol microgel. We first analyse the linear bubble oscillation dynamics to measure the local, high-frequency viscosity of the material. We then use acoustic pressure gradients to induce bubble translation and examine the elastic part of the response of the material below yielding. We find that, at moderate pressure amplitude, the additional stresses applied by volumetric oscillations and acoustic radiation forces do not lead to any detectable irreversible bubble motion. At high pressure amplitude, we observe non-spherical shape oscillations that result in erratic bubble motion. The shape modes and critical pressures we observe differ from the predictions of a recent model of shape oscillations in soft solids.Based on our findings, we discuss possible reasons for the lack of bubble release in Carbopol and suggest other systems in which ultrasound-assisted bubble rise may be observed.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源