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Transparent Alumina Ceramics with Sub-Microstructure by Means of Electrophoretic Deposition

机译:通过电泳沉积具有亚微观结构的透明氧化铝陶瓷

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Alumina is a multifunctional ceramic material combining hardness, corrosion and temperature resistance. Furthermore, the optical properties of aluminium oxide ceramic are of great interest. Therefore processing has to be optimized. Electrophoretic deposition (EPD) is a colloidal process, where ceramic bodies are directly shaped from a stable suspension by an applied electric field. Forming bodies via electrophoretic deposition allows obtaining homogeneous uniform green microstructures with high density. It is a facile and precise technique to synthesize not only monoliths, but also composites with complex geometries [1]. Alumina green bodies were deposited from stabilized aqueous suspensions with and without doping. Green compacts of alumina were evaluated through their pore size distribution and density. Densification behavior was characterized by dilatometric studies, which were conducted at constant heating rate. Doping has a negative influence on suspension preparation, but contributes to the final densification of alumina. Samples were sintered at different temperatures with subsequent post densification via hot isostatic pressing. Transparency was evaluated by spectroscopic measurements. The measured in-line transmission of the samples at 645 nm was more than 50 percent and this is 58 percent from the value of sapphire. Mechanical properties of the samples were tested. The influence of dopings on transparency was investigated.
机译:氧化铝是一种多功能陶瓷材料,结合硬度,腐蚀和耐温性。此外,氧化铝陶瓷的光学性质具有很大的兴趣。因此,必须优化处理。电泳沉积(EPD)是一种胶体过程,其中陶瓷体由施加的电场直接从稳定的悬浮液中成形。通过电泳沉积形成体允许具有高密度的均匀均匀的绿色微观结构。它是一种容易和精确的技术,不仅合成整料,而且还具有复合材料[1]。氧化铝生物体沉积着稳定的水性悬浮液,无掺杂。通过其孔径分布和密度来评估氧化铝的绿色脚块。致密化研究表征了致稀释性研究,其以恒定的加热速率进行。掺杂对悬浮制剂具有负面影响,但有助于氧化铝的最终致密化。样品在不同的温度下烧结,随后通过热等静压后致密化。通过光谱测量评估透明度。在645nm的样品中测量的在线传输超过50%,这是蓝宝石价值的58%。测试样品的机械性能。研究了掺杂对透明度的影响。

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