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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Improvement in the colloidal processing of concentrated silicon nitride slips with ammonium polyacrylate by an yttria-alumina surface coating
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Improvement in the colloidal processing of concentrated silicon nitride slips with ammonium polyacrylate by an yttria-alumina surface coating

机译:氧化钇-氧化铝表面涂层改善了聚丙烯酸酯与浓氮化硅粉浆的胶体加工

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摘要

Silicon nitride (Si3N4) powders coated with 6 wt.% Y2O3 and 4wt.% Al2O3 were prepared by coprecipitation. For comparison, tile Si3N4 powder containing the same amount of additives was also prepared by mechanical mixing. The resulting powders were dispersed in water with ammonium polyacrylate (NH(4)PA) to produce 32 vol.% slips. The adsorption behavior and interfacial charge properties of coated Si3N4 slips with NH(4)PA were investigated and compared with those of the mixed Si3N4 slips. Then, the influence of pH oil the rheological properties of 32 vol.% coated and mixed Si3N4 slips was determined. Tile density of green cast samples was related to the degree of slip dispersion. In addition, the influence of the surface coating of Si3N4 on the sintering behavior was investigated. The surface coating improved the dispersion of 32 vol.% Si3N4 slips with NH(4)PA: lower viscosity values of the coated Si3N4 slips with respect to the mixed ones were found in the pH range studied. The better slip dispersion of the coated Si3N4 slips resulted in higher slip cast packing density compacts. The second stale of densification (solution precipitation) and the alpha-to beta-phase transformation were promoted by the surface coating. (C) 2004 Elsevier B.V. All rights reserved.
机译:通过共沉淀制备涂覆有6重量%的Y 2 O 3和4重量%的Al 2 O 3的氮化硅(Si 3 N 4)粉末。为了比较,还通过机械混合制备了包含相同量的添加剂的Si 3 N 4粉末。将所得粉末与聚丙烯酸铵(NH(4)PA)分散在水中,以产生32%(体积)的粉浆。研究了涂覆的NH(4)PA的Si3N4浆料的吸附行为和界面电荷性质,并与混合的Si3N4浆料进行了比较。然后,测定pH油对32vol。%涂覆和混合的Si 3 N 4料浆的流变性的影响。生坯样品的瓷砖密度与滑移分散度有关。另外,研究了Si3N4表面涂层对烧结行为的影响。表面涂层改善了NH(4)PA对32%(体积)Si3N4浆料的分散性:在所研究的pH范围内,涂层Si3N4浆料相对于混合浆料的粘度较低。涂覆的Si 3 N 4料浆的更好的料浆分散性导致更高的料浆浇铸堆积密度压坯。表面涂层促进了第二次致密化(溶液沉淀)和从α到β相的转变。 (C)2004 Elsevier B.V.保留所有权利。

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