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Effect of starting powders on the sintering of nanostructured ZrO2 ceramics by colloidal processing

机译:初始粉末对胶态纳米ZrO2纳米陶瓷烧结的影响

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摘要

The effect of starting powders on the sintering of nanostructured tetragonal zirconia was evaluated. Suspensions were prepared with a concentration of 10 vol.% by mixing a bicomponent mixture of commercial powders (97 mol.% monoclinic zirconia with 3 mol.% yttria) and by dispersing commercially available tetragonal zirconia (3YTZ, Tosoh). The preparation of the slurry by bead-milling was optimized. Colloidal processing using 50 μm zirconia beads at 4000 rpm generated a fully deagglomerated suspension leading to the formation of high-density consolidated compacts (62% of the theoretical density (TD) for the bicomponent suspension). Optimum colloidal processing of the bicomponent suspension followed by the sintering of yttria and zirconia allowed us to obtain nanostructured tetragonal zirconia. Three different sintering techniques were investigated: normal sintering, two-step sintering and spark plasma sintering. The inhibition of grain growth in the bicomponent mixed powders in comparison with 3YTZ was demonstrated. The inhibition of the grain growth may have been caused by inter-diffusion of cations during the sintering.
机译:评估了起始粉末对纳米结构四方氧化锆烧结的影响。通过混合市售粉末的双组分混合物(97摩尔%单斜晶氧化锆和3摩尔%氧化钇)并分散市售的四方氧化锆(3YTZ,Tosoh)来制备浓度为10%(体积)的悬浮液。优化了通过珠磨的浆料制备。使用50μm氧化锆小球以4000 rpm的速度进行胶体处理会产生完全解聚的悬浮液,从而导致形成高密度固结压块(双组分悬浮液的理论密度(TD)的62%)。双组分悬浮液的最佳胶体加工,然后氧化钇和氧化锆的烧结,使我们获得了纳米结构的四方氧化锆。研究了三种不同的烧结技术:普通烧结,两步烧结和火花等离子体烧结。与3YTZ相比,证明了双组分混合粉末对晶粒生长的抑制作用。晶粒生长的抑制可能是由于在烧结过程中阳离子的相互扩散引起的。

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