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Fabrication and Some Properties of Textured Ceramics by Colloidal Processing in High Magnetic Field

机译:强磁场中胶体加工的质感陶瓷的制备及一些性能

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摘要

Recently to improve properties, highly microstructure controlled ceramics such as fine-grained, textured and laminated structures are required. We have demonstrated a new processing of textured ceramics with a feeble magnetic susceptibility by colloidal processing in a high magnetic field and subsequent heating. As colloidal processing, slip casting and electrophoretic deposition (EPD) have been conducted successfully. Colloidal processing is known to be a powerful method for consolidating fine particles with a high density and homogeneous microstructure. The degree of orientation strongly depends on the particle dispersion and some processing factors, such as particle size, applied magnetic field, concentration of the suspension, sintering temperature, etc. Crystalline-textured controlled laminated composites can be fabricated using EPD by varying the angle between the vectors of electric field and magnetic field. Also textured ceramics with complicated structure can be fabricated by reaction sintering. The colloidal processing in a high magnetic field confers several advantages and it is possible for this type of processing to be applied to non-cubic ceramics, such as alumina, titania, zinc oxide, tin oxide, hydroxy apatite, aluminium nitride, silicon carbide, silicon nitride, etc. The textured ceramics showed anisotropic properties depending on the crystal plane.
机译:最近,为了改善性能,需要高度微结构控制的陶瓷,例如细晶粒,纹理化和层压结构。我们已经证明了通过在高磁场中进行胶体处理以及随后的加热,对磁化率微弱的纹理陶瓷进行的新处理。作为胶体加工,成功进行了流延铸造和电泳沉积(EPD)。已知胶体加工是固结具有高密度和均质微观结构的细颗粒的有效方法。取向度在很大程度上取决于颗粒的分散度和一些加工因素,例如颗粒大小,施加的磁场,悬浮液的浓度,烧结温度等。可以通过EPD通过改变晶体之间的夹角来制造晶化控制的层压复合材料。电场和磁场的向量。还可以通过反应烧结来制造具有复杂结构的网纹陶瓷。强磁场中的胶体处理具有几个优点,并且这种处理类型有可能应用于非立方陶瓷,例如氧化铝,二氧化钛,氧化锌,氧化锡,羟基磷灰石,氮化铝,碳化硅,织构陶瓷表现出各向异性的特性,这取决于晶面。

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