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首页> 外文期刊>Journal of Materials Research >Fabrication of nanocomposites through diffusion bonding under high-pressure torsion
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Fabrication of nanocomposites through diffusion bonding under high-pressure torsion

机译:通过高压扭转扩散键合制备纳米复合材料

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摘要

This report summarizes a recent study demonstrating simple and rapid synthesis of a new Al-Mg alloy system and ultimately synthesizing a metal matrix nanocomposite, which was achieved by processing stacked disks of the two dissimilar metals by conventional high-pressure torsion (HPT) processing. The synthesized Al-Mg alloy system exhibits exceptionally high hardness through rapid diffusion bonding and simultaneous nucleation of intermetallic phases with increased numbers of HPT turns through 20, and improved plasticity was demonstrated by increasing strain rate sensitivity in the alloy system after post-deformation annealing. An additional experiment demonstrated that the alternate stacking of high numbers of dissimilar metal disks may produce a faster metal mixture during HPT. Metal combinations of Al-Cu, Al-Fe, and Al-Ti were processed by the same HPT procedure from separate pure metals to examine the feasibility of the processing technique. The microstructural analysis confirmed the capability of HPT for the formation of heterostructures across the disk diameters in these processed alloy systems. The HPT processing demonstrates a considerable potential for the joining and bonding of dissimilar metals at room temperature and the expeditious fabrication of a wide range of new metal systems.
机译:该报告总结了最近的一项研究,该研究证明了新型Al-Mg合金系统的简单快速合成,并最终合成了金属基质纳米复合材料,这是通过使用常规高压扭转(HPT)工艺处理两种不同金属的堆叠盘而实现的。合成的Al-Mg合金体系通过快速扩散键合和金属间相的同时成核,同时HPT匝数增加到20,具有极高的硬度,并且通过提高变形后退火后合金体系的应变速率敏感性证明了可塑性的提高。另一个实验表明,在HPT期间交替堆叠大量不同的金属盘可能会产生更快的金属混合物。通过相同的HPT程序从分离的纯金属中加工Al-Cu,Al-Fe和Al-Ti的金属组合,以检验该加工技术的可行性。显微组织分析证实了HPT能够在这些加工的合金系统中沿圆盘直径形成异质结构。 HPT加工显示出在室温下结合和粘合异种金属的巨大潜力,并能迅速制造出各种新型金属系统。

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