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New Processing of Textured Ceramics by Colloidal Processing Under High Magnetic Field

机译:高磁场下胶体加工的质感陶瓷新工艺。

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摘要

The controlled development of texture is one of the ways for effective in improving the physical and mechanical properties. We'll demonstrate new processing of textured ceramics as an example of alumina by slip casting in a high magnetic field and subsequent heating. Susceptibility of diamagnetic α-alumina is very small, but the orientation energy of alumina particle by a high magnetic field becomes larger than the thermal energy, α-alumina of a rhombohedral structure shows anisotropic susceptibility, but this anisotropy has up to now been more or less ignored due to its very low value. However, in a high magnetic field the energy of crystal anisotropy becomes comparable to or larger than the energy of thermal motion. The degree of orientation depends on processing factors such as heating temperature, particle size, magnetic field and concentration of suspension, etc. This process technique confers several advantages and it is possible for this type of processing to be applied to other non-cubic ceramics, such as TiO_2, ZnO, SnO, HAP, AlN, SiC, etc.
机译:质地的受控发展是有效改善物理和机械性能的方法之一。我们将演示在高磁场中通过流延浇铸并随后加热来对纹理陶瓷进行新处理,例如氧化铝。抗磁性α-氧化铝的磁化率很小,但是强磁场作用下氧化铝颗粒的定向能比热能大,菱形结构的α-氧化铝表现出各向异性的磁化率,但是这种各向异性到目前为止已经大于或等于由于其极低的价值而很少被忽略。然而,在高磁场中,晶体各向异性的能量变得与热运动能量相当或更大。取向度取决于诸如加热温度,颗粒大小,磁场和悬浮液浓度等处理因素。这种处理技术具有多种优势,并且这种处理方法有可能应用于其他非立方陶瓷,如TiO_2,ZnO,SnO,HAP,AlN,SiC等

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