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Crystal orientation of non-magnetic materials by imposition of a high magnetic field

机译:强磁场强加非磁性材料的晶体取向

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From the view point of learning from the nature, the controlling of crystal orientation is accounted to be a major subject for materials processing. This paper reviews the researches on the crystal orientation by use of a high magnetic field and belongs to the category of researches for mimicking structures, namely the crystal orientation, which nature or living bodies are forming. Regarding to the crystal orientation, several methods such as unidirectional solidification and epitaxial growth and so on have been developed hitherto. On the other hand the magnetization force that is familiar with the force to attract iron to a magnet, has been recognized to be effective even in non-magnetic materials when those are placed under a high magnetic field, which has become rather conveniently available by developing super-conducting technologies in these days. In this paper, main results obtained when the imposition of a high magnetic field was accompanied to several materials processing such as electrodeposition, vaperdeposition, solidification, baking, slip-casting and precipitation, are reviewed from the view point of crystal orientation of non-magnetic materials.
机译:从向自然学习的观点来看,控制晶体取向是材料加工的主要课题。本文综述了利用强磁场对晶体取向的研究,属于模仿结构的研究类别,即自然或生物形成的晶体取向。关于晶体取向,迄今为止已经开发了诸如单向凝固和外延生长等多种方法。另一方面,已经认识到,即使将非磁性材料置于高磁场下,熟悉的将铁吸引到磁体的磁化力也是有效的。如今的超导技术。本文从非磁性晶体取向的角度回顾了强磁场施加电沉积,汽相沉积,固化,烘烤,滑铸和沉淀等几种材料处理时获得的主要结果。材料。

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