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Vapor-Gas Bubble Evolution and Growth in Extremely Viscous Fluids Under Vacuum

机译:真空下极粘流体中蒸气气泡的演化和生长

摘要

Formation of vapor and gas bubbles and voids is normal and expected in flow processes involving extremely viscous fluids in normal gravity. Practical examples of extremely viscous fluids are epoxy-like filler materials before the epoxy fluids cure to their permanent form to create a mechanical bond between two substrates. When these fluids flow with a free liquid interface exposed to vacuum, rapid bubble expansion process may ensue. Bubble expansion might compromise the mechanical bond strength. The potential sources for the origin of the gases might be incomplete out-gassing process prior to filler application; regasification due to seal leakage in the filler applicator; and/or volatiles evolved from cure reaction products formed in the hardening process. We embarked on a study that involved conducting laboratory experiments with imaging diagnostics in order to deduce the seriousness of bubbling caused by entrained air and volatile fluids under space vacuum and low gravity environment. We used clear fluids with the similar physical properties as the epoxy-like filler material to mimic the dynamics of bubbles. Another aspect of the present study was to determine the likelihood of bubbling resulting from dissolved gases nucleating from solution. These experimental studies of the bubble expansion are compared with predictions using a modified Rayleigh- Plesset equation, which models the bubble expansion.
机译:蒸汽和气泡以及空隙的形成是正常现象,并且在涉及重力非常粘稠的流体的流动过程中是可以预期的。极具粘性的流体的实际示例是类似环氧的填充材料,然后将其固化成永久性形式,从而在两个基材之间形成机械结合。当这些流体在自由液体界面暴露于真空的情况下流动时,可能会发生快速气泡膨胀过程。气泡膨胀可能会损害机械结合强度。气体来源的潜在来源可能是在填充填料之前不完全的除气过程。由于加注器中的密封件泄漏而导致的再气化;和/或挥发物是由硬化过程中形成的固化反应产物产生的。我们进行了一项研究,其中涉及进行带有图像诊断的实验室实验,以便推断在空间真空和低重力环境下,夹带的空气和挥发性流体引起的鼓泡严重性。我们使用了与环氧类填充材料具有相似物理特性的透明流体来模拟气泡的动力学。本研究的另一个方面是确定由于溶解气体从溶液中成核而产生气泡的可能性。使用改进的Rayleigh-Plesset方程对气泡膨胀的这些实验研究与预测进行比较,该方程对气泡膨胀进行建模。

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