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A Visual Approach to Efficient Analysis and Quantification of Ductile Iron and Reinforced Sprayed Concrete

机译:球墨铸铁和钢筋混凝土喷射的高效可视化分析和可视化方法

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This paper describes advanced volume visualization and quantification for applications in non-destructive testing (NDT), which results in novel and highly effective interactive workflows for NDT practitioners. We employ a visual approach to explore and quantify the features of interest, based on transfer functions in the parameter spaces of specific application scenarios. Examples are the orientations of fibres or the roundness of par ticles. The applicability and effectiveness of our approach is illustrated using two specific scenarios of high practical relevance. First, we discuss the analysis of Steel Fibre Reinforced Sprayed Concrete (SFRSpC). We investigate the orientations of the enclosed steel fibres and their distribution, depending on the concrete’s application direction. This is a crucial step in assessing the material’s behavior under mechanical stress, which is still in its infancy and therefore a hot topic in the building industr y. The second application scenario is the designation of the microstructure of ductile cast irons with respect to the contained graphite. This corresponds to the requirements of the ISO standard 945-1, which deals with 2D metallographic samples. We illustrate how the necessar y analysis steps can be carried out much more efficiently using our system for 3D volumes. Overall, we show that a visual approach with custom transfer functions in specific application domains offers significant benefits and has the potential of greatly improving and optimizing the workflows of domain scientists and engineers.
机译:本文介绍了无损检测(NDT)中应用的高级体积可视化和定量分析,这为NDT从业人员提供了新颖且高效的交互工作流程。我们基于特定应用场景的参数空间中的传递函数,采用视觉方法来探索和量化感兴趣的功能。例子是纤维的取向或颗粒的圆度。我们使用两种具有高度实际相关性的特定方案来说明我们方法的适用性和有效性。首先,我们讨论钢纤维喷射混凝土(SFRSpC)的分析。我们将根据混凝土的应用方向研究封闭的钢纤维的方向及其分布。这是评估材料在机械应力下的行为的关键步骤,而机械应力仍处于起步阶段,因此是建筑行业中的热门话题。第二个应用场景是相对于所含石墨指定球墨铸铁的显微组织。这符合处理2D金相样品的ISO标准945-1的要求。我们说明了如何使用我们的3D体积系统更有效地执行必要的分析步骤。总体而言,我们表明在特定应用程序域中具有自定义传递功能的可视化方法具有显着的优势,并且具有极大地改善和优化领域科学家和工程师的工作流程的潜力。

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