首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Cross-sectional imaging of quenched region in a steel rod using energy-resolved neutron tomography
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Cross-sectional imaging of quenched region in a steel rod using energy-resolved neutron tomography

机译:能量分辨中子断层成像技术对钢棒淬火区的截面成像

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摘要

We demonstrate the collection and analysis of energy-resolved neutron tomography for the nondestructive inspection of a martensite phase in a quenched iron rod. The energy-resolved (4D) tomography technique can extract the internal information of crystalline phase and microstructural features, such as the distribution of martensite. However, care must be taken when performing energy-resolved neutron tomography on a strongly textured sample in which the crystal grains are preferentially oriented and the neutron attenuation spectrum depends on the direction. As the standard tomography algorithm is based on the assumption that the attenuation is isotropic, anisotropy in the neutron attenuation distorts the reconstructed information. In other words, energy-resolved neutron tomography can be a powerful tool for nondestructive martensite observation in iron materials, which are usually not strongly textured.
机译:我们演示了能量解析中子断层扫描的收集和分析,以便对淬火铁棒中的马氏体相进行非破坏性检查。能量分辨(4D)层析成像技术可以提取晶体相的内部信息和微观结构特征,例如马氏体的分布。但是,在强纹理化样品上执行能量分辨中子层析成像时,必须格外小心,在该样品中,晶粒优先取向且中子衰减谱取决于方向。由于标准层析成像算法基于衰减是各向同性的假设,因此中子衰减中的各向异性会使重构的信息失真。换句话说,能量解析中子断层扫描技术可以成为铁材料中非破坏性马氏体观察的有力工具,这些材料通常质地不强。

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