Direct inversion of the Longitudinal ray transform for 2D residual elastic strain fields

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-06-17 DOI:10.1088/1361-6420/ad52bb
C M Wensrich, S Holman, M Courdurier, W R B Lionheart, A P Polyakova and I E Svetov
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Abstract

We examine the problem of Bragg-edge elastic strain tomography from energy resolved neutron transmission imaging. A new approach is developed for two-dimensional plane-stress and plane-strain systems whereby elastic strain can be reconstructed from its Longitudinal ray transform (LRT) as two parts of a Helmholtz decomposition based on the concept of an Airy stress potential. The solenoidal component of this decomposition is reconstructed using an inversion formula based on a tensor filtered back projection (FBP) algorithm whereas the potential part can be recovered using either Hooke’s law or a finite element model of the elastic system. The technique is demonstrated for two-dimensional plane-stress systems in both simulation, and on real experimental data. We also demonstrate that application of the standard scalar FBP algorithm to the LRT in these systems recovers the trace of the solenoidal component of strain and we provide physical meaning for this quantity in the case of 2D plane-stress and plane-strain systems.
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直接反演二维残余弹性应变场的纵向射线变换
我们研究了通过能量分辨中子透射成像进行布拉格边弹性应变层析成像的问题。我们为二维平面应力和平面应变系统开发了一种新方法,根据这种方法,弹性应变可以从其纵向射线变换(LRT)中重构为基于艾里应力势概念的亥姆霍兹分解的两个部分。该分解的螺线部分是通过基于张量滤波反投影算法(FBP)的反演公式重建的,而势能部分则可以通过胡克定律或弹性系统的有限元模型恢复。我们在模拟和实际实验数据中对二维平面应力系统演示了这一技术。我们还证明,将标准标量 FBP 算法应用于这些系统中的 LRT,可以恢复应变的螺线分量的迹线,并为二维平面应力和平面应变系统中的这个量提供了物理意义。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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