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Manufacturing of advanced ceramic components via electrophoretic deposition

机译:通过电泳沉积制造先进的陶瓷成分

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By means of electrophoretic deposition (EPD) ceramic or glass components and composites can be shaped fast with low energy input (electric field strengths in the range of 0.5 to 20 V/cm). High green densities up to 83 % of the theoretical value could be achieved using suspensions with comparably low solid matter content (less than 75 wt.%) with optimised particle size distribution. The low viscosity of these suspension (≈ 4 to 500 mPa*s) enables to deagglomerate effectively the suspended powders. Furthermore, the deposition rate is independent of the particle size. This enables the fast manufacture of ceramic of advanced glass and ceramic components from nanosized powders. Via electrophoretic deposition of nanosized particles within the pores of a green body a homogeneous densification can be achieved. Furthermore, components with functionally graded density, pore size or/and graded chemical composition were manufactured by means of electrophoretic impregnation (EPI). Another possible application of the EPI is the incorporation of secondary phases, that are difficult to incorporated from the fluid phase, into ceramic and glass-matrices.
机译:通过电泳沉积(EPD)陶瓷或玻璃部件和复合材料可以以低能量输入(电场强度为0.5至20V / cm)的快速形状。在具有相当低的固体物质含量(小于75重量%)的悬浮液,可以实现高达83%的理论值的高温密度,具有优化的粒度分布。这些悬浮液的低粘度(≈4-500mPa* s)使得能够有效地使悬浮粉末进行脱落。此外,沉积速率与粒度无关。这使得能够快速制造纳米化粉末的先进玻璃和陶瓷组分的陶瓷。通过在绿体孔内的纳米化颗粒的电泳沉积可以实现均匀的致密化。此外,通过电泳浸渍(EPI)制造具有功能梯度密度,孔径或/和分级化学成分的组分。 EPI的另一种可能的应用是掺入次阶段,即难以从流体相中掺入陶瓷和玻璃基质中。

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