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首页> 外文期刊>Journal of the European Ceramic Society >On the crystallite size refinement of ZrB_2 by high-energy ball-milling in the presence of SiC
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On the crystallite size refinement of ZrB_2 by high-energy ball-milling in the presence of SiC

机译:SiC存在下高能球磨细化ZrB_2微晶尺寸的研究

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The effect of SiC addition (5,17.5, and 30 vol.%) on the high-energy ball-milling (HEBM) behaviour of ZrB_2 is investigated. It was found that the presence of SiC during HEBM did not alter ZrB_2 refinement mechanism of repeated brittle fracture followed by cold-welding, thereby leading to the formation of agglomerates consisting of primary nano-particles. SiC did, however, slow down the kinetics of crystallite size refinement and promoted the formation of finer agglomerates. Both of these phenomena became more pronounced with increasing SiC content in the ZrB_2 + SiC powder mixtures, and they were attributed to the energy dissipation effect of the nanocrystalline SiC particles during HEBM of the ZrB_2 + SiC powder mixture. This study offers the first evidence that the addition of harder materials to softer materials can slow down the refinement of crystallite sizes, and thus provides a new mechanism to control crystallite sizes during HEBM. The simultaneous attainment of nano-particles of ZrB_2 and SiC, reduced agglomerate sizes, and homogeneous SiC dispersion at the nanometre scale may have important implications for the ultra-high-temperature ceramic community, as it simplifies the processing route and is likely to facilitate the sintering of ZrB_2-SiC composites.
机译:研究了SiC添加量(5,17.5和30%(体积))对ZrB_2的高能球磨(HEBM)行为的影响。发现在HEBM期间SiC的存在不会改变反复的脆性断裂然后冷焊的ZrB_2细化机制,从而导致形成由初级纳米粒子组成的附聚物。然而,SiC确实减慢了微晶尺寸细化的动力学,并促进了更细的附聚物的形成。随着ZrB_2 + SiC粉末混合物中SiC含量的增加,这两种现象都变得更加明显,并且它们都归因于ZrB_2 + SiC粉末混合物的HEBM过程中纳米晶SiC颗粒的能量耗散效应。这项研究提供了第一个证据,即在较软的材料中添加较硬的材料会减慢微晶尺寸的细化,从而提供了一种在HEBM期间控制微晶尺寸的新机制。 ZrB_2和SiC纳米粒子的同时获得,团聚体尺寸的减小以及纳米级SiC的均匀分散可能对超高温陶瓷界具有重要意义,因为它简化了工艺路线,并可能促进超高温陶瓷的发展。烧结ZrB_2-SiC复合材料

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