首页> 外文期刊>Metallurgia Italiana >ACTIVE CONTOUR SEGMENTATION FOR THE IDENTIFICATION OF METALLOGRAPHIC AND MORPHOLOGICAL ELEMENTS OF INTEREST IN DUCTILE CAST IRON
【24h】

ACTIVE CONTOUR SEGMENTATION FOR THE IDENTIFICATION OF METALLOGRAPHIC AND MORPHOLOGICAL ELEMENTS OF INTEREST IN DUCTILE CAST IRON

机译:主动轮廓分割法确定球墨铸铁中的金相和形态学元素

获取原文
获取原文并翻译 | 示例
           

摘要

Ductile cast irons are characterized by a wide range of mechanical properties that depend on graphite elements morphology and microstructure properties. Both chemical composition and manufacturing conditions control matrix microstructure, andferritic, pearlitic, ferritic-pearlitic, martensitic, bainitic, austenitic and austempered ductile irons can be obtained. Considering crack propagation resistance of ductile cast irons, their peculiar behaviour is due to the graphite elements shape that is approximately spheroidal. Due to their morphology, graphite elements can act as crack arresters: as a consequence ductile cast irons are characterized by high ductility and toughness values and can be used for loading conditions that could be considered as critical for other cast irons types (e.g. fatigue loading conditions). Up to some years ago, microstructure analysis was mainly performed by means of semi-quantitative procedures applied to metallographically prepared specimens, with the characteristics evaluation that was mainly based on the operator expertise. Only recently there has been an increasing interest in numerical procedures of image analysis for quantitative evaluation of materials. In this work the problem of the estimation of the morphological parameters of elements such as graphite nodules, domains of chemical etching and metallic matrix has been taken up by a variational approach of image segmentation by active contours. Considering ductile irons, images obtained by means of a light optical microscope (LOM) on metallographically prepared specimens show both graphite elements (spheroids, nodules, lamaellas etc.) and microstructure elements (ferrite grains, pearlite lamaellas, etc.) and some artefacts due the preparing procedure that should be distinguished by more interesting elements. An automatic identification procedure is here proposed to distinguish the nodules from the metallic matrix and to evaluate the nodules shape parameters of interest and the composition of the metallic matrix (ferrite/pearlite volume fraction).
机译:球墨铸铁的特点是具有广泛的机械性能,这些机械性能取决于石墨元素的形态和微观结构性能。化学成分和制造条件都控制着基体的微观结构,并且可以获得铁素体,珠光体,铁素体-珠光体,马氏体,贝氏体,奥氏体和奥氏体球墨铸铁。考虑到球墨铸铁的抗裂纹扩展性,其特殊性能归因于近似呈球形的石墨元素形状。由于它们的形态,石墨元素可以用作防裂剂:因此,球墨铸铁的特点是具有高延展性和韧性值,可以用于对其他铸铁类型至关重要的载荷条件(例如疲劳载荷条件) )。直到几年前,显微组织分析主要是通过半定量程序进行,该程序应用于金相制备的样品,其特性评估主要基于操作人员的专业知识。直到最近,人们才对用于材料定量评估的图像分析数值程序越来越感兴趣。在这项工作中,通过活动轮廓对图像进行分形的方法解决了诸如石墨结节,化学蚀刻区域和金属基质等元素的形态参数估计问题。考虑到球墨铸铁,通过光学显微镜(LOM)在金相制备的样品上获得的图像显示出石墨元素(类球体,小球,小球等)和微结构元素(铁素体晶粒,珠光体小球等)以及一些人工制品。准备过程应该以更多有趣的元素来区分。在此提出一种自动识别程序,以将结核与金属基质区分开,并评估感兴趣的结核形状参数和金属基质的组成(铁素体/珠光体体积分数)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号