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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Densification behavior of ZrB2-MoSi2 ceramics: The formation and evolution of core-shell solid solution structures
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Densification behavior of ZrB2-MoSi2 ceramics: The formation and evolution of core-shell solid solution structures

机译:ZRB2-MOSI2陶瓷的致密化行为:核心壳固溶体结构的形成与演化

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The role of solid solution shells in the densification behavior of ZrB2-MoSi2 ceramics was analyzed for varying ZrB2 starting particle sizes and MoSi2 contents. The formation of core-shell structures in hotpressed ceramics in the ZrB2-MoSi2 system was confirmed by SEM, TEM and X-ray diffraction analysis. Microstructure analysis established that each ZrB2 core and its (Zr,Mo)B-2 solid solution shell were isostructural with no detectable crystallographic misfit. Two single phase (Zri_xMox)B-2 solid solutions were synthesized by reactive hot pressing to confirm that ZrB2 -MoB2 solid solutions obey a quasi-linear Vegard's law. Additional (Si-free) ZrB2-Mo compositions, ZrB2/Mo/ZrB2 sandwich structures, or ZrB(2)MoSi(2 )ceramics (quenched to room temperature) were hot pressed to study a transient liquid phase and its interdependency on ZrB2 powder purity, connectivity of pathways for mass transfer, wettability, or solubility as a function of applied pressure. The solid solution shells were the result of mass transfer by competing solid state mechanisms of surface and grain boundary diffusion during sintering that may have been boosted by a fugitive Si-based transient liquid phase. Mo was incorporated in diffusion-deposited diboride material at particle-particle necks. The volume fraction of solid solution shells and their Mo contents were affected by processing temperatures. In addition, plastic deformation of MoSi2 filled some closed porosity to aid the ceramics in achieving near full density. (C) 2018 Elsevier B.V. All rights reserved.
机译:分析固体溶液壳在ZRB2-MOSI2陶瓷的致密学行为中的作用,用于改变ZRB2起始粒度和MOSI2含量。通过SEM,TEM和X射线衍射分析证实了ZRB2-MOSI2系统中的含有ZRB2-MOSI2系统中的核壳结构的形成。微观结构分析确定,每个ZRB2核和其(Zr,Mo)B-2固溶体壳是无检测的晶体错位的表观。通过反应热压合成两种单相(ZRI_XMOX)B-2固溶体,以确认ZRB2 -MOB2固体溶液遵守Quasi-Linear Vegard的定律。 ZrB2-Mo组合物,ZRB2 / Mo / ZrB2夹层结构,或Zrb(2)MOSI(2)陶瓷(淬火至室温)被热压,研究瞬态液相及其对ZRB2粉末的相互依赖性纯度,途径的连通性,用于传质,润湿性或溶解度的施加压力的函数。固体溶液壳是通过竞争的表面和晶界扩散在烧结过程中的固态传递的结果,其可能已经通过逃逸的Si基瞬态液相升高。在颗粒颗粒颈部掺入扩散沉积的二硼材料中。通过加工温度影响固溶体壳的体积分数及其Mo含量。此外,MOSI2的塑性变形填充了一些封闭的孔隙度,帮助陶瓷实现近全密度。 (c)2018年elestvier b.v.保留所有权利。

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