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Ceramic Coatings by Electrophoretic Deposition: Processing and Properties

机译:电泳沉积陶瓷涂层:加工和性能

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Electrophoretic deposition (EPD) allows the fabrication of ceramic coatings at lower cost and higher speed than most other deposition techniques. The processing consists of powder deposition from a suspension under the influence of an electric field and subsequent consolidation of the coating by sintering. Adherent zirconia coatings with coating thicknesses up to 0.1 mm were obtained from different suspensions, one methyl-ethyl-ketone and the other ethanol based. The standard sintering temperature is 1200°C, which easily may damage or change the substrate and also means high production costs. In order to reduce the sintering temperature, suspensions with the addition of ZrN were investigated. Due to reaction bonding, sintering in air at a remarkable low temperature of 1000°C was successful. The elastic modulus of the EPD coatings has been derived from impulse excitation experiments and the thermal conductivity from laser flash analysis. The elastic modulus was about 22 GPa and the thermal conductivity between 0.4 and 0.6 W/(m·K) at room temperature, both decreasing slightly with temperature. Especially the exceptionally low thermal conductivity makes EPD coatings a promising candidate for thermal barrier coatings.
机译:电泳沉积(EPD)允许以较低的成本和比大多数沉积技术更高的速度制造陶瓷涂层。该处理包括在电场影响的悬浮液中粉末沉积和随后通过烧结涂覆的涂层。涂层厚度高达0.1mm的粘附氧化锆涂层是从不同的悬浮液,一种甲基 - 乙基酮和其他乙醇基于基于乙醇。标准烧结温度为1200°C,其容易损坏或改变基材,也意味着高生产成本。为了降低烧结温度,研究了添加ZrN的悬浮液。由于反应键合,在1000℃的显着低温下的空气中烧结成功。 EPD涂层的弹性模量来自激光闪光分析的脉冲励磁实验和导热率。弹性模量为约22gPa,室温下为0.4和0.6W /(m·k)的导热率,两者在温度略微下降。特别是极低的导热性使得EPD涂层成为热障涂层的有希望的候选者。

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