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New methods for automatic quantification of microstructural features using digital image processing

机译:使用数字图像处理自动量化微观结构特征的新方法

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Thermal and mechanical processes alter the microstructure of materials, which determines their mechanical properties. This makes reliable microstructural analysis important to the design and manufacture of components. However, the analysis of complex microstructures, such as Ti6Al4V, is difficult and typically requires expert materials scientists to manually identify and measure microstructural features. This process is often slow, labour intensive and suffers from poor repeatability. This paper overcomes these challenges by proposing a new set of automated techniques for 2D microstructural analysis. Digital image processing algorithms are developed to isolate individual microstructural features, such as grains and alpha lath colonies. A segmentation of the image is produced, where regions represent grains and colonies, from which morphological features such as; grain size, volume fraction of globular alpha grains and alpha colony size can be measured. The proposed measurement techniques are shown to obtain similar results to existing manual methods while drastically improving speed and repeatability. The benefits of the proposed approach when measuring complex microstructures are demonstrated by comparing it with existing analysis software. Using a few parameter changes, the proposed techniques are effective on a variety of microstructure types and both SEM and optical microscopy images. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:热和机械过程会改变材料的微观结构,从而决定其机械性能。这使得可靠的微结构分析对于组件的设计和制造很重要。但是,对复杂的微观结构(例如Ti6Al4V)进行分析是困难的,并且通常需要专业的材料科学家手动识别和测量微观结构特征。该过程通常是缓慢的,劳动密集的并且具有差的可重复性。本文通过提出一套用于二维微结构分析的自动化技术来克服这些挑战。开发了数字图像处理算法以隔离单个的微观结构特征,例如谷物和alpha条带菌落。产生图像的分割,其中区域代表谷物和菌落,其形态特征如;可以测量颗粒大小,球状α颗粒的体积分数和α菌落大小。所建议的测量技术显示出与现有手动方法相似的结果,同时极大地提高了速度和可重复性。通过与现有分析软件进行比较,证明了该方法在测量复杂微观结构时的优势。使用一些参数更改,提出的技术对多种微观结构类型以及SEM和光学显微镜图像均有效。 (C)2018作者。由Elsevier Ltd.发布

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