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首页> 外文期刊>Nature Communications >Ultrafast vapourization dynamics of laser-activated polymeric microcapsules
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Ultrafast vapourization dynamics of laser-activated polymeric microcapsules

机译:激光激活的聚合物微胶囊的超快汽化动力学

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Precision control of vapourization, both in space and time, has many potential applications; however, the physical mechanisms underlying controlled boiling are not well understood. The reason is the combined microscopic length scales and ultrashort timescales associated with the initiation and subsequent dynamical behaviour of the vapour bubbles formed. Here we study the nanoseconds vapour bubble dynamics of laser-heated single oil-filled microcapsules using coupled optical and acoustic detection. Pulsed laser excitation leads to vapour formation and collapse, and a simple physical model captures the observed radial dynamics and resulting acoustic pressures. Continuous wave laser excitation leads to a sequence of vapourization/condensation cycles, the result of absorbing microcapsule fragments moving in and out of the laser beam. A model incorporating thermal diffusion from the capsule shell into the oil core and surrounding water reveals the mechanisms behind the onset of vapourization. Excellent agreement is observed between the modelled dynamics and experiment.RI Versluis, Michel/F-3541-2011OI Versluis, Michel/0000-0002-2296-1860
机译:时空上汽化的精确控制具有许多潜在的应用。但是,人们对受控沸腾的物理机理还不甚了解。原因是微观长度尺度和超短时间尺度的组合,与所形成的蒸气气泡的引发和随后的动力学行为有关。在这里,我们使用耦合的光学和声学检测研究激光加热的单个充油微胶囊的纳秒蒸汽气泡动力学。脉冲激光激发会导致蒸气形成和瓦解,并且简单的物理模型会捕获观察到的径向动力学和所产生的声压。连续波激光激发导致一系列汽化/凝结循环,这是吸收微胶囊碎片移入和移出激光束的结果。结合了从胶囊壳到油核和周围水的热扩散的模型揭示了汽化发生的机理。在动力学模型和实验之间观察到极好的一致性.RI Versluis,Michel / F-3541-2011OI Versluis,Michel / 0000-0002-2296-1860

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