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Effects of milling and subsequent consolidation treatment on the microstructural properties and hardness of the nanocrystalline chromium carbide powders

机译:球磨及其后的固结处理对纳米晶碳化铬粉体组织和硬度的影响

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摘要

The influence of milling and subsequent consolidation treatments on the microstructural properties and hardness of the fabricated Cr_3C_2, Cr_7C_3 and Cr_(23)C_6 ceramic powders are investigated. For this reason, the elemental powders of Cr and C were mixed with proper ratio and then milled to the nanometer crystallite sizes (between 6 and 20 nm) and then were consolidated by using uniaxial cold press and subsequent heat treatment (at 1100 °C for 1 h) in Argon atmosphere. Microstructures of consolidated samples were characterized using X-ray diffraction (XRD) and microhardness measurements. A drastic increase in crystallite size of the samples was observed due to the effect of heat treatment. However, the as-consolidated samples still maintained their nanocrystalline characteristic with an average grain size of less than 100 nm. Besides, a very high hardness of 25 GPa was achieved for the Cr_3C_2 composition. This high hardness is attributed to the formation of carbide phases in the consolidated samples.
机译:研究了铣削和后续固结处理对所制备的Cr_3C_2,Cr_7C_3和Cr_(23)C_6陶瓷粉末的显微组织性能和硬度的影响。因此,将Cr和C的元素粉末以适当的比例混合,然后研磨至纳米微晶尺寸(6至20 nm),然后通过单轴冷压和随后的热处理(在1100°C的温度进行固结)进行固结。 1 h)在氩气氛中。使用X射线衍射(XRD)和显微硬度测量来表征固结样品的微观结构。由于热处理的影响,观察到样品的微晶尺寸急剧增加。但是,固结后的样品仍保持其纳米晶体特性,平均晶粒尺寸小于100 nm。此外,对于Cr_3C_2组合物,获得了非常高的25 GPa硬度。这种高硬度归因于固结样品中碳化物相的形成。

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