首页> 外国专利> FRACTAL NATURE ANALYSIS ON PORES RECONSTRUCTION IN MATERIAL STRUCTURE AND A PRIORI DESIGN MICROSTRUCTURE PROPERTIES PROGNOSIS

FRACTAL NATURE ANALYSIS ON PORES RECONSTRUCTION IN MATERIAL STRUCTURE AND A PRIORI DESIGN MICROSTRUCTURE PROPERTIES PROGNOSIS

机译:材料结构孔隙重构的分形自然分析及先验设计微观结构特性预测

摘要

Analytic method and fractal nature application in reconstruction of materials structure pores, in order to make an advance prognosis of designed microstructural properties is a new procedure in materials microstructural characterization. Electronic microscopy methods, regardless on resolution and magnification, lead only towards getting the microscopic pictures. Based on the pores perimeters fractal analysis, blocks (10, 11, 12), their fractal dimension is obtained, block (13), which, further opens a possibility of precise pore contour reconstruction, offering a much more realistic image of the contour that it would be possible in the frame of Euclid geometry block (14). This replaces the modelling role, because it gives real microstructure shapes pictures, on one hand, and from the obtained passive microstructure picture, through the shape reconstruction, leads to the possibility of its prognoses with designed microstructure properties, like 3D pore shape reconstruction among others, block (15). Applying known syntheses phases in the technology process, the obtained samples ale investigation objects in these innovations. Thus, the new possibilities in actual solutions, in microstructure characterization application, are directly introduced, whereby the hardware is reduced only to this engineering system component, providing new solutions related to contemporary software support in these devices. Such engineering system in microstructure fractal application opens industrial production and application possibilities, and their solutions become a base for the "Fractal Electronic" development in the next phases, block (16).
机译:分析方法和分形性质在材料结构孔隙重构中的应用,以使设计的微结构性能提前预测,是材料微结构表征的新方法。电子显微镜方法,无论分辨率和放大倍数如何,仅导致获得显微图像。根据孔隙周长的分形分析,在块(10、11、12)中获得其分形维数(块(13)),这进一步打开了精确重建孔轮廓的可能性,从而提供了更真实的轮廓图像在欧几里得几何块(14)的框架中是可能的。这代替了建模角色,因为它一方面提供了真实的微观结构形状图片,然后从获得的无源微观结构图片中通过形状重建,从而使其具有设计的微观结构属性(例如3D孔形状重建)的可能性,块(15)。在技​​术过程中应用已知的合成阶段,获得的样本将成为这些创新的研究对象。因此,直接介绍了在微观结构表征应用中实际解决方案中的新可能性,从而仅将硬件简化为该工程系统组件,从而提供了与这些设备中的现代软件支持有关的新解决方案。这种在微结构分形应用中的工程系统为工业生产和应用开辟了可能性,它们的解决方案成为下一阶段“分形电子”开发的基础(方框16)。

著录项

  • 公开/公告号RS20160218A1

    专利类型

  • 公开/公告日2017-10-31

    原文格式PDF

  • 申请/专利权人 MITIĆ VOJISLAV V.;

    申请/专利号RS2016P000218

  • 发明设计人 KOCIĆ LJUBIŠA;MITIĆ VOJISLAV V.;

    申请日2016-04-06

  • 分类号G01N15/08;G01N21/84;G06T15/00;

  • 国家 RS

  • 入库时间 2022-08-21 13:36:42

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