首页> 外文期刊>Journal of the European Ceramic Society >Effect of valeric acid on the agglomeration of zirconia particles and effects of the sintering temperature on the strut wall thickness of particle-stabilized foam
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Effect of valeric acid on the agglomeration of zirconia particles and effects of the sintering temperature on the strut wall thickness of particle-stabilized foam

机译:戊酸对氧化锆颗粒团聚的影响以及烧结温度对颗粒稳定泡沫支撑壁厚度的影响

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摘要

Highly porous zirconia ceramics were prepared utilizing a particle-stabilized direct foaming technique in which the hydrophilic characteristic of zirconia particles was altered by the in situ adsorption of valeric acid on its surface. These surface modified zirconia particles are irreversibility adsorbed at the air/water interface and create an armor coating around the bubbles to stabilize them. In this study, the foamability and stability of zirconia foam were investigated by varying the valeric acid concentration, and zirconia foam with a foam volume of approximately four times the colloidal system volume was successfully prepared. The sintered foam has cell size ranging from 50 to 150 μm and the pore structure was characterized by mercury porosimetry. The effects of the sintering temperature on the grain size, strut wall thickness, and tetragonal phase were studied and correlated with an increase in the mechanical strength to 3.5 MPa with porosity of more than 90%.
机译:利用颗粒稳定的直接发泡技术制备了高度多孔的氧化锆陶瓷,其中,通过在表面上原位吸附戊酸来改变氧化锆颗粒的亲水性。这些表面改性的氧化锆颗粒不可逆地吸附在空气/水界面,并在气泡周围形成铠装涂层以稳定气泡。在这项研究中,通过改变戊酸浓度来研究氧化锆泡沫的起泡性和稳定性,并成功制备了泡沫体积约为胶体体系体积的四倍的氧化锆泡沫。烧结泡沫的泡孔尺寸为50至150μm,并且通过汞孔隙率法表征孔结构。研究了烧结温度对晶粒尺寸,支撑壁厚度和四方相的影响,并将其与机械强度提高到3.5 MPa,孔隙率超过90%相关。

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