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Influence of fluorobenzene mass transfer on the qualities of poly-α-methylstyrene shells

机译:氟苯传质对聚-α-甲基苯乙烯壳质量的影响

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Polymer shells prepared by the microencapsulation technique with perfect sphericity and defect-free surface finish are demanded in inertial confinement fusion (ICF) experiments. The sphericity and surface finish are some of the hardest specifications to fulfill. Driven by the need to improve qualities of the polymer shells to meet the critical specifications, the effects of fluorobenzene (FB) mass transfer rate on sphericity and surface finish were investigated and the mechanisms of the effects of FB mass transfer on sphericity and surface finish of poly-α-methylstyrene (PAMS) were also discussed. The sphericity and surface finish of the PAMS shells are greatly improved by decreasing the FB mass transfer rate. The calculative frequency of the final shells with an out-of-round (δOOR) of less than 2 μm increases from 30% to 80%, while the power spectra density (PSD) plot gets closer to the specification of the national ignition facility (NIF). The tracking experiments show that the curing process is extended and the percolation transition is also postponed by decreasing the FB mass transfer rate. Therefore, the interfacial tension can work sufficiently, helping make double droplets become spherical, since the double droplets’ stay in the liquid state is effectively extended. Moreover, the Marangoni instabilities at the O–W2 boundary are also restrained by controlling the mass transfer, due to the diffusivity of FB being slowed down. Both the results and methods presented in this work provide a more in-depth understanding of the curing process and the mass transfer, to the benefit of fabricating polymer shells with high sphericity and defect-free surface finish used in ICF experiments.
机译:惯性约束融合(ICF)实验要求使用微囊化技术制备的具有理想球形度和无缺陷表面光洁度的聚合物壳。球形度和表面光洁度是一些最难满足的规格。在提高聚合物壳质量以满足关键规格的需求的驱使下,研究了氟苯传质速率对球形度和表面光洁度的影响,以及FB传质对球形聚合物球形度和表面光洁度的影响机理。还讨论了聚α-甲基苯乙烯(PAMS)。通过降低FB的传质速率,可以大大提高PAMS外壳的球形度和表面光洁度。圆角小于(δ OOR )的最终壳的计算频率从30%增加到80 %,而功率谱密度(PSD)曲线更接近国家点火设施(NIF)的规格。跟踪实验表明,通过降低FB传质速率,固化过程得以扩展,并且渗滤转变也被延迟。因此,界面张力可以充分发挥作用,因为有效地延长了双液滴保持在液态的状态,因此有助于使双液滴变成球形。此外,由于FB的扩散速度变慢,通过控制传质也可以限制OW2边界处的Marangoni不稳定性。这项工作中介绍的结果和方法都提供了对固化过程和传质的更深入的了解,从而为制造ICF实验中使用的具有高球形度和无缺陷表面光洁度的聚合物壳带来了好处。

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