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Fabrication of nanocomposite Ti(C,N)-based cermet by spark plasma sintering

机译:火花等离子体烧结制备纳米复合Ti(C,N)基金属陶瓷

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Several cermets with nano-TiC and TiN additions were prepared by spark plasma sintering (SPS). Their microstructures were studied further by using SEM, TEM, EDX. Hardness (HRA, namely Rockwell Hardness A Scale) and transverse rupture strength (TRS) were also measured. It was found that the cermets sintered by SPS contained many grains with the typical "core-rim" structures, which were believed to form by Ostwald ripening mechanism. The grain size was found to reduce with increasing nanoscale-sized additions. The cermet with all the ceramic powders being nanoscale-sized structure contained many small grains, the sizes of which were less than 100 nm, besides some larger grains with about 200-300 nm size. In addition, when the cermets were sintered by SPS, the addition of nano-powders could improve the mechanical properties of the cermets greatly. In the cermets with nano-additions, some nano-grains were found to be inlaid in the rim of the larger ceramic grains and kept partial coherent with these larger ones. It was the firm joint between them and the reduction of the average size of the grains that led to strengthening and toughening of the cermet with nano-additions. (c) 2005 Elsevier B.V. All rights reserved.
机译:通过火花等离子体烧结(SPS)制备了几种添加了纳米TiC和TiN的金属陶瓷。通过SEM,TEM,EDX进一步研究了它们的微观结构。还测量了硬度(HRA,即洛氏硬度A标度)和横向断裂强度(TRS)。发现通过SPS烧结的金属陶瓷包含许多具有典型的“芯-边缘”结构的晶粒,据信这是通过奥斯特瓦尔德熟化机制形成的。发现随着纳米级添加物的增加,晶粒尺寸减小。具有全部陶瓷粉末的金属陶瓷具有纳米级结构,除了一些具有约200-300nm尺寸的较大晶粒之外,还包含许多小晶粒,其尺寸小于100nm。另外,当用SPS烧结金属陶瓷时,添加纳米粉末可以大大改善金属陶瓷的机械性能。在具有纳米添加物的金属陶瓷中,发现一些纳米颗粒嵌入较大的陶瓷颗粒的边缘,并与这些较大的陶瓷颗粒保持部分连贯。正是它们之间的牢固结合以及晶粒平均尺寸的减小导致了纳米添加对金属陶瓷的增强和增韧。 (c)2005 Elsevier B.V.保留所有权利。

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