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Axis detection method for cylindrical objects

机译:圆柱物体的轴检测方法

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This paper introduces an algorithm dedicated to the detection of the axes of cylindrical objects in a 3-D block. The proposed algorithm performs the 3-D axis detection without prior segmentation of the block. This approach is specifically appropriate when the grey levels of the cylindrical object are not homogeneous and thus difficult to distinguish from the background. The method relies on gradient and curvature estimation and operates in two main steps. The first one selects candidate voxels for the axis and the second one refines the determination of the axis of each cylindrical object. Applied to fiber reinforced composite materials, this algorithm allows detecting the axes of fibers in order to obtain the geometrical characteristics of the reinforcement. Knowing the reinforcement characteristics is an important issue in the quality control of the material but also in the prediction of the thermal and mechanical behavior. In this paper, the various steps of the algorithm are detailed. Then, results obtained with synthetic blocks and with blocks acquired by synchrotron X-ray microtomography on actual carbon-fiber reinforced carbon (C/C) composites are presented.
机译:本文介绍了一种专用于检测3-D块中圆柱对象轴的算法。所提出的算法执行3-D轴检测,而无需对该块进行事先分割。当圆柱对象的灰度等级不均匀,因此很难与背景区分开时,此方法特别适用。该方法依赖于梯度和曲率估计,并在两个主要步骤中进行操作。第一个选择轴的候选体素,第二个选择每个圆柱对象的轴的确定。应用于纤维增强复合材料时,该算法可以检测纤维的轴,以获得增强材料的几何特征。知道增强特性是材料质量控制中的重要问题,也是热和机械性能预测中的重要问题。在本文中,详细介绍了该算法的各个步骤。然后,介绍了在实际碳纤维增强碳(C / C)复合材料上用合成嵌段和通过同步加速器X射线显微照相术获得的嵌段获得的结果。

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