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首页> 外文期刊>Journal of the European Ceramic Society >Multiphase imaging of freezing particle suspensions by confocal microscopy
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Multiphase imaging of freezing particle suspensions by confocal microscopy

机译:共聚焦显微镜冻结颗粒悬浮液的多相成像

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摘要

Ice-templating is a well-established processing route for porous ceramics. Because of the structure/properties relationships, it is essential to better understand and control the solidification microstructures. Ice-templating is based on the segregation and concentration of particles by growing ice crystals. What we understand so far of the process is based on either observations by optical or X-ray imaging techniques, or on the characterization of ice-templated materials. However, in situ observations at particle-scale are still missing. Here we show that confocal microscopy can provide multiphase imaging of ice growth and the segregation and organization of particles. We illustrate the benefits of our approach with the observation of particles and pore ice in the frozen structure, the dynamic evolution of the freeze front morphology, and the impact of PVA addition on the solidification microstructures. These results prove in particular the importance of controlling both the temperature gradient and the growth rate during ice-templating.
机译:冰模板是多孔陶瓷的完善的加工途径。由于结构/性质关系,必须更好地理解和控制凝固微观结构。冰模板通过生长冰晶来基于颗粒的分离和浓度。到目前为止,我们理解的过程基于光学或X射线成像技术的任一观察,或者在冰塑材料的表征上。然而,在粒子级的原位观察仍然缺失。在这里,我们表明共聚焦显微镜可以提供冰增长的多相成像和颗粒的偏析和组织。我们说明了我们在冷冻结构中观察颗粒和孔冰的方法的益处,冷冻前形貌的动态演化以及PVA对凝固微观结构的影响。这些结果特别证明了在冰模板期间控制温度梯度和生长速率的重要性。

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