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The Current Activated Pressure Assisted Densification Technique for Producing Nanocrystalline Materials

机译:目前用于生产纳米晶材料的活化压力辅助致密化技术

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摘要

The harnessing of length-scale-dependent material properties has been an area of intense research in the past two decades. Retention of nanocrystalline features in fully dense bulk materials has been particularly elusive. Recently the current activated pressure assisted densification (CAPAD) technique has emerged as one of the most successful methods for the production of functional and structural nanocrystalline materials with large sizes. In this article we review some ongoing efforts in using the CAPAD technique for producing single component and nanocomposite systems from nanocrystalline powders. The properties of these nanocrystalline materials include improved light transmittance and magnetic properties caused by interfacial coupling of anti-ferromagnetic/ferrimagnetic phases.
机译:在过去的二十年中,利用长度相关的材料特性一直是研究的热点。在完全致密的块状材料中保留纳米晶体的特征特别难以捉摸。最近,当前的活化压力辅助致密化(CAPAD)技术已经成为生产大尺寸功能性和结构性纳米晶体材料的最成功方法之一。在本文中,我们回顾了使用CAPAD技术从纳米晶体粉末生产单组分和纳米复合材料系统方面正在进行的工作。这些纳米晶体材料的特性包括由于反铁磁/亚铁磁相的界面耦合而导致的改善的透光率和磁性。

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