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首页> 外文期刊>Journal of the European Ceramic Society >Influence of surface tension, osmotic pressure and pores morphology on the densification of ice-templated ceramics
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Influence of surface tension, osmotic pressure and pores morphology on the densification of ice-templated ceramics

机译:表面张力,渗透压和孔隙形态对冰样陶瓷致密化的影响

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摘要

We attempt here to clarify the influence of the nature of the solvent on the ice-templating process, based on literature experimental results of porosity and suspension concentration. In particular, we compare the relative influence of surface tension, osmotic pressure and the pore size and radius of curvature on the densification of the green bodies. Variations of the osmotic pressure when changing the solvent can yield significantly different behaviour during the freezing stage and therefore significantly affect the densification behaviour, an effect not apparent when using the Shanti model. In addition, and equally important, a modification of the macropores morphology is induced by the evolution of the solvent crystals morphology, and resulting in smaller and more intricate crystals and macropores which facilitates the densification. The radius of curvature is probably also an essential parameter controlling the densification of ice-templated ceramics.
机译:我们在此尝试根据文献的孔隙率和悬浮液浓度的实验结果来澄清溶剂性质对冰模板过程的影响。特别是,我们比较了表面张力,渗透压以及孔径和曲率半径对生坯致密化的相对影响。改变溶剂时渗透压的变化会在冷冻阶段产生明显不同的行为,因此会显着影响致密化行为,这在使用Shanti模型时并不明显。另外,同样重要的是,溶剂晶体形态的演变引起大孔形态的改变,并导致更小,更复杂的晶体和大孔,有利于致密化。曲率半径可能也是控制冰样陶瓷致密化的基本参数。

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