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Incremental digital volume correlation method with nearest subvolume offset: An accurate and simple approach for large deformation measurement

机译:具有最接近子体积偏移量的增量数字体积相关方法:一种用于大变形测量的准确而简单的方法

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摘要

Digital volume correlation (DVC) has been widely accepted as an effective experimental technique for quantifying full-field internal 3D deformation of solid materials and structures under external loading. However, conventional DVC using a fixed reference volume image generally fails when serious decorrelation occurs in deformed volume images due to large deformation or other reasons. In this work, an accurate and simple incremental DVC method with nearest subvolume offset is proposed for large deformation measurement. Specifically, the reference subvolumes in the updated reference volume images are translated to nearest integer-voxel positions, rather than being interpolated at subvoxel locations. The translated reference subvolumes, within which all correlation points locate at integer-voxel positions, are then tracked in the rest deformed volume images to retrieve incremental displacement fields. The obtained incremental displacement fields are then accumulated to previously obtained displacement fields to determine the overall displacements. By using the simple nearest subvolume offset approach, subvoxel intensity interpolation for the updated reference subvolumes is entirely avoided, thus not only eliminating the bias error associated with imperfect subvoxel intensity interpolation, but also increasing the computational efficiency of incremental DVC calculation by approximately 2.5 times. The accuracy, efficiency and practicality of the presented incremental DVC are demonstrated by analyzing two sets of volume images with large deformation generated in numerically simulated and real-world experiments.
机译:数字体积相关性(DVC)已被广泛接受为量化外部载荷下固体材料和结构的全场内部3D变形的有效实验技术。然而,当由于大变形或其他原因在变形的体积图像中发生严重的去相关时,使用固定参考体积图像的常规DVC通常会失败。在这项工作中,提出了一种精确且简单的具有最接近子体积偏移的增量DVC方法,用于大变形测量。具体而言,将更新后的参考体积图像中的参考子体积转换为最接近的整数体素位置,而不是在子体素位置处进行插值。然后在其余变形的体积图像中跟踪所有相关点都位于整数体素位置的已转换参考子体积,以检索增量位移场。然后将获得的增量位移场累加到先前获得的位移场中,以确定总位移。通过使用简单的最近子体积偏移方法,完全避免了针对更新后的参考子体积的子体素强度插值,因此不仅消除了与不完美的子体素强度插值相关的偏差,而且将增量DVC计算的计算效率提高了约2.5倍。通过分析两组在数值模拟和实际实验中产生的大变形体积图像,证明了所提出增量DVC的准确性,效率和实用性。

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