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Texture Development of Feeble Magnetic Ceramics by Colloidal Processing Under High Magnetic Field

机译:强磁场下胶体处理对弱磁陶瓷的织构发展

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摘要

The controlled development of texture is one of the ways for effectively improving physical and mechanical properties. In this review paper, we introduce a new processing of textured ceramics with a feeble magnetic susceptibility by slip casting in a high magnetic field and subsequent heating. As an example of feeble magnetic ceramics, we demonstrate the fabrication of textured alumina in details. The susceptibility of diamagnetic or-alu-mina is very small, but the orientation energy of the alumina particle by a high magnetic field becomes greater than the thermal energy. ce-Alumina with a rfiombohedral 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 greater than the energy of thermal motion. The degree of orientation depends on the processing factors, such as heating temperature, particle size, applied magnetic field, concentration of the 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, hydrooxy apatite (HAP), AlN, SiC, Si_3N_4, 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。在这篇综述文章中,我们介绍了一种新的具有微弱磁化率的纹理陶瓷加工方法,该方法是在高磁场中进行注浆铸造,然后进行加热。作为弱磁陶瓷的一个例子,我们详细演示了纹理氧化铝的制造。抗磁性或铝的磁化率非常小,但是通过高磁场使氧化铝颗粒的取向能变得大于热能。带有rfiombohedral结构的ce-氧化铝显示出各向异性的敏感性,但是由于其非常低的值,这种各向异性到目前为止或多或少被忽略了。然而,在高磁场中,晶体各向异性的能量变得与热运动的能量相当或更大。取向度取决于处理因素,例如加热温度,粒径,施加的磁场,悬浮液的浓度等。该处理技术具有多个优点,并且这种处理类型有可能应用于其他非立方陶瓷,例如TiO_2,ZnO,SnO,氢氧磷灰石(HAP),AlN,SiC,Si_3N_4等。

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