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首页> 外文期刊>Journal of the European Ceramic Society >Processing of porous ceramics: Piezoelectric materials
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Processing of porous ceramics: Piezoelectric materials

机译:多孔陶瓷的加工:压电材料

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摘要

The paper reviews processing techniques used to produce porous ceramics with tri-dimensionally interconnected porosity, in a wide range of pore volumes and pore size and distribution. Attention is focused on the development of porous electroceramics and especially piezoelectric PZT materials. The porosity can be introduced through dry or wet techniques. In the dry techniques, a fugitive phase is added to the perovskitic powder by mechanical mixing. Wet techniques involve the manipulation of suspensions and a better control of the final morphology and microstructure of the samples can be achieved by th colloidal approach. The whole spectrum of techniques for generation of porosity is surveyed; it includes burnout of volatile particles or thermally unstable sponge structures, generation of porosity by foaming, slip casting, tape casting, direct consolidation, solid freeform fabrication, die pressing. Porosities of up to 70 percent are obtained in aerogels by sol-gel processing. The pore size distribution and microstructural differences resulting from various processing parameters influence the physical properties, particularly the acoustic piezoelectric response of PZT materials.
机译:本文回顾了用于生产具有三维互连孔隙率,孔隙体积,孔径和分布范围广泛的多孔陶瓷的加工技术。注意力集中在多孔陶瓷,特别是压电PZT材料的开发上。孔隙率可以通过干法或湿法引入。在干法中,通过机械混合将短效相添加到钙钛矿粉末中。湿法技术涉及悬浮液的操作,并且可以通过胶体方法更好地控制样品的最终形态和微观结构。研究了产生孔隙的整个技术范围;它包括挥发掉挥发性颗粒或热不稳定的海绵结构,通过发泡,滑模铸造,流延铸造,直接固结,固体自由成型制造,压模产生孔隙。通过溶胶-凝胶工艺在气凝胶中可获得高达70%的孔隙率。由各种加工参数引起的孔径分布和微观结构差异会影响物理性能,尤其是PZT材料的声压电响应。

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