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Electrophoretic deposition from aqueous suspensions for near-shape manufacturing of advanced ceramics and glasses—applications

机译:水性悬浮液的电泳沉积,用于高级陶瓷和玻璃的近型制造—应用

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摘要

Due to high deposition rates and the avoidance of inflammable, often hazardous organic solvents EPD from aqueous suspensions is a fast and low-cost shaping technique for ceramics and glasses. Since the deposition rate is independent of particle size EPD has an outstanding ability for the shaping of nano-particles. In this paper the shaping of complex silica glass and zirconia components, like tubes or structured parts by means of the membrane method is shown. Three-dimensional shaped porous polymer moulds were used as ion-permeable deposition surface. To enable near-shape manufacturing, mixtures of nanosized and microsized particles were electrophoretically deposited. No size-dependent separation was observed. Due to the very high green density of these green bodies (up to 84% of the theoretical value) shrinkage could be reduced to 4.7%. Not only oxide ceramics but also silicon carbide was deposited from aqueous suspensions. Apart from bulk SiC, protective coatings with a thickness of app. 60 μm were applied on top of CFC substrates by EPD. Good adhesion was observed and no cracking occurred. Furthermore, electrophoretic impregnation was used for the modification of porous green bodies. Thus silica glasses with graded density and pore size as well as functionally graded composites were prepared.
机译:由于沉积速率高,并且避免了易燃的,通常为危险的有机溶剂,因此水性悬浮液中的EPD是一种用于陶瓷和玻璃的快速低成本成型技术。由于沉积速率与粒径无关,因此EPD具有出色的纳米颗粒成型能力。在本文中,显示了通过膜法成型复杂的石英玻璃和氧化锆部件,例如管子或结构件。将三维形状的多孔聚合物模具用作离子可渗透的沉积表面。为了能够进行接近形状的制造,电泳沉积了纳米级和微米级颗粒的混合物。没有观察到尺寸依赖性的分离。由于这些生坯的生坯密度很高(高达理论值的84%),收缩率可降低到4.7%。从水性悬浮液不仅沉积了氧化物陶瓷,而且沉积了碳化硅。除散装SiC外,还具有厚度约为app的保护涂层。通过EPD将60μm涂覆在CFC基板的顶部。观察到良好的粘附力,并且没有出现裂纹。此外,电泳浸渍用于多孔生坯的改性。因此,制备了具有梯度密度和孔径的二氧化硅玻璃以及功能梯度的复合材料。

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  • 来源
    《Journal of Materials Science》 |2004年第3期|803-811|共9页
  • 作者

    J. Tabellion; R. Clasen;

  • 作者单位

    Department of Powder Technology Saarland University;

    Department of Powder Technology Saarland University;

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  • 正文语种 eng
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