Fabrication of TiC–ZrC–Co composites with refined microstructure using ultrafine TiC–ZrC mixture powders
首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Fabrication of TiC–ZrC–Co composites with refined microstructure using ultrafine TiC–ZrC mixture powders
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Fabrication of TiC–ZrC–Co composites with refined microstructure using ultrafine TiC–ZrC mixture powders

机译:用超细TiC-ZRC混合物粉末制备具有精制微观结构的TiC-ZRC-Co复合材料

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AbstractUltrafine TiC–ZrC mixture powders with various Ti/Zr molar ratios (9:1, 8:2, 7:3, and 6:4) were synthesized by carbothermal reduction of high–energy milled TiO2–ZrO2–C. ZrC was found to be insoluble in the TiC lattice at 1400–1500?°C; as a result, carbothermal reduction of TiO2–ZrO2–C mixtures led to the formation of the TiC–ZrC mixture powders rather than the (Ti,Zr)C solid solution. TiC–ZrC–Co composites prepared using the TiC–ZrC mixture powders exhibited a refined microstructure, due to the inhibition of the coalescence of TiC grains by ZrC grains distributed in the TiC–ZrC mixture powders. In other words, the ZrC particles distributed in the mixture powders inhibited the coalescence of TiC grains during liquid–phase sintering, resulting in the formation of TiC–ZrC–Co composites with refined microstructure. The refined microstructure of these composites favorably influenced their properties: in particular, the experimental measurements highlighted a significant improvement in the mechanical properties (HV?=?14.8–16.0?GPa,KIC?=?7.2–7.6?MPa?m1/2) of the composites prepared from the ultrafine TiC–ZrC mixture powders, compared with those (HV?=?11.1–13.3?GPa,KIC?=?5.7–6.3?MPa?m1/2) of conventional TiC–ZrC–Co composites.Graphical abstractDisplay OmittedHighlights?Ultrafine TiC–ZrC mixture powders (Ti:Zr?=?9:1, 8:2, 7:3, and 6:4) were prepared.?ZrC was found to be insoluble in TiC lattice at 1400–1500?°C.?ZrC distributed in TiC–ZrC mixture powders inhibited coalescence of TiC grains.?TiC–ZrC–Co with refined microstructure was prepared using TiC–ZrC mixture powder.?Mechanical properties of TiC–ZrC–Co were improved due to refined microstructure.]]>
机译:<![CDATA [ 抽象 超细的TiC-的ZrC混合物粉末与各种的Ti / Zr的摩尔比(9:1,8:2,7 :3和6:4)通过碳热还原的高能量的合成研磨的二氧化钛 2 -ZrO 2 < / CE:INF> -C。的ZrC被认为是不溶于晶格的TiC在1400-1500℃下?;其结果是,二氧化钛的碳热还原 2 -ZrO 2 -C混合物导致形成的TiC-的ZrC粉末混合物,而不是(钛,锆)C的固溶体。的TiC-的ZrC钴复合材料使用的TiC-的ZrC粉末混合物表现出改善的微观结构,由于晶粒的TiC的通过的ZrC晶粒分布在TIC-的ZrC粉末混合物聚结的抑制制备。换句话说,分散在该混合物粉末ZrC的液相烧结期间抑制的TiC颗粒的聚结,导致形成的TiC-的ZrC钴复合材料具有改善的微观结构。这些复合材料的改善的微观结构有利地影响它们的性能:具体而言,实验测量突出的机械特性(一个显著改善ħ V < /ce:inf>?=?14.8-16.0?GPa,K IC = 7.2-7.6????兆帕毫升 1/2 )的复合材料中,从超细的TiC-的ZrC混合物粉末制备,与那些进行比较(ħ V = 11.1-13.3 GPA,ķ IC ????= 5.7-6.3兆帕米 1/2:常规的TiC-的ZrC钴复合材料的 图形抽象 显示中省略 亮点 <?CE:对ID = “P0010” 视图= “所有”>超细的TiC-的ZrC混合物粉末(钛:锆= 9:?1,8:2,7:3和6:4),制备 的ZrC被发现是在晶格的TiC不溶于1400-1500° ç <?CE:对ID = “P0020” 视图= “所有”>的ZrC分布在TIC-的ZrC混合物粉末的TiC晶粒的抑制聚结 <?/ CE:标签> TIC-的ZrC钴与改善的微观结构是使用的TiC-的ZrC混合物粉末制备 TIC-的ZrC钴的力学性能,由于细化组织提高 ]]>

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