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Fractal dimension of fractals tensor product ferroelectric ceramic materials frontiers

机译:分形分形的分形尺寸张量产品铁电陶瓷材料前沿

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摘要

BaTiO3-ceramics is a porous material made out of grains and pores. Such a structure is best explained by fractal nature approach. There is a strong porosity influence on microelectronic properties, so a pore itself acts as a microcapacitor with traces of inductivity. A cluster of pores than makes an integral impedance with an equivalent circuit scheme. Fractal nature theory approach helps modeling such microimpedance. The experimental data are acquired using SEM micro-graphs of the selected specimens. Further method is based on fractal analytic procedures based on extraction of fractal dimension and involving this as a key parameter. Such an approach, in combination with methods developed by the authors completes the extensive method for determination of relationship between microelectronic properties of sintered barium-titanate ceramics and technological parameters used in the sintering process. The issue of additives is also considered due the fact that dopants have considerable influence on electronic characteristics. Fractal analyzes and fractal dimension materials characterization are very important as a new tool with in the materials, electronic ceramics, and concretely ferroelectric applications. In this paper we applied fractal Cantor set and also developed fractal curvature tensor product. This enlighten new frontiers in electroceramics materials surface characterization.
机译:Batio3陶瓷是一种由谷物和毛孔制成的多孔材料。通过分形的自然方法最好解释这种结构。对微电子性质有强烈的孔隙度影响,因此孔本身用作具有迂回痕迹的微型涂物。孔簇与具有等效电路方案的积分阻抗。分形自然理论方法有助于建模这种微量阻力。使用所选样本的SEM微图来获取实验数据。进一步的方法是基于分形维数的分形分析程序,并涉及作为关键参数。这种方法与作者开发的方法组合完成了广泛的方法,用于测定烧结过程中使用的烧结钡钛陶瓷和技术参数的微电子性能与烧结过程的技术参数的关系。添加剂的问题也被认为是掺杂剂对电子特性影响了相当大的影响。分形分析和分形尺寸材料表征是材料,电子陶瓷和具体铁电应用的新工具非常重要。在本文中,我们应用了分形唱结器,并开发了分形曲率张量产品。这开明了电子陶瓷材料表面表征中的新边界。

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