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Investigations on printing path dependent properties of additively manufactured samples using micro computed tomography

机译:使用微计算机断层扫描对碱化制造样品的印刷依赖性特性的研究

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Purpose The purpose of this paper is to understand the relationship between defect properties and the tool path used for generating additively manufactured parts. The correlation between processing strategy and porosity architecture is one of the key aspects for a precise understanding of defect formation and possibilities for defect reduction. Design/methodology/approach The authors present a new combined geometry, processing path and porosity analysis procedure based on the use of x-ray computed micro tomography image data and numerical control programming code. The procedure allows for a covisualisation of the track of the respective processing head with the three-dimensional microstructure data. Findings The presented method yields statistical results about defect distribution and morphologies introduced by the respective process characteristics in parts. The functionality of the proposed procedure is demonstrated on an aluminum (AlSi10Mg) and a polylactide test sample to show the additional insight found for both additive manufacturing processes and the resulting microstructural properties. Originality/value The novelty of this paper is the analysis of the porosity with respect to the underlying additive process zone and the sample geometry.
机译:目的本文的目的是了解缺陷性能与用于产生瘾制造部件的工具路径之间的关系。处理策略和孔​​隙度架构之间的相关性是精确理解缺陷形成和缺陷减少可能性的关键方面之一。设计/方法/方法基于使用X射线计算的微型层析造影数据和数值控制编程代码,提出了一种新的组合几何形状,处理路径和孔隙度分析程序。该过程允许通过三维微结构数据对各个处理头的轨道进行可缓解。结果表明,所提出的方法产生关于各个过程特征引入的缺陷分布和形态的统计结果。所提出的方法的功能在铝(AlSi10mg)和聚丙替三酯试验样品上证明,以显示额外的洞察力,所述额外的洞察力为添加剂制造方法和所得的微观结构性质。原创性/值本文的新颖性是对底层添加剂处理区和样品几何形状的孔隙率分析。

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