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Grain Boundary Segregation in Sintered Materials: Effect on Densification and Grain Growth

机译:烧结材料中的晶界偏析:对致密化和晶粒生长的影响

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Dopants are often included in the composition of powders to elaborate sintered materials. They have various effects as facilitating sintering, improving microstructure, stabilizing crystalline phases or enhancing properties of materials. The exact role of these additives is often not fully understood thus microstructural characterization is required to elucidate this issue, especially the composition of grain boundaries (GB). Two materials are presented in this study: binderless WC with addition of VC or Cr_3C_2 and Al_2O_3-ZrO_2 composites. In each case, structural and microstructural characterization was performed at different scales. The distribution of V and Cr elements was determined in WC. In the oxides, Y and Zr segregate in GB so the effect of the sintering process -natural or microwave sintering (MWS)- on GB segregation is investigated as MWS is proposed to enhance diffusion. The effect of GB segregation is related to the densification behavior and grain growth in sintered materials.
机译:掺杂剂通常包含在粉末的组合物中以精细化烧结材料。它们具有各种效果,如促进烧结,改善微观结构,稳定晶体相或增强材料的性能。这些添加剂的确切作用通常不完全理解,因此需要微观结构表征来阐明这种问题,尤其是晶界(GB)的组成。本研究中提出了两种材料:粘合剂WC加入VC或CR_3C_2和AL_2O_3-ZRO_2复合材料。在每种情况下,结构和微观结构表征在不同的尺度上进行。 V和Cr元素的分布在WC中测定。在GB中的氧化物中,Y和Zr隔离,因此烧结过程 - 自然或微波烧结(MWS) - 在GB偏析上进行了效果,提出了MWS以增强扩散。 GB偏析的效果与烧结材料的致密化行为和晶粒生长有关。

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