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Magnetic scattering in the simultaneous measurement of small-angle neutron scattering and Bragg edge transmission from steel

机译:同时测量钢的小角中子散射和布拉格边缘传输的磁散射

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摘要

Pulsed neutron sources enable the simultaneous measurement of small-angle neutron scattering (SANS) and Bragg edge transmission. This simultaneous measurement is useful for microstructural characterization in steel. Since most steels are ferromagnetic, magnetic scattering contributions should be considered in both SANS and Bragg edge transmission analyses. An expression for the magnetic scattering contribution to Bragg edge transmission analysis has been derived. The analysis using this expression was applied to Cu steel. The ferrite crystallite size estimated from this Bragg edge transmission analysis with the magnetic scattering contribution was larger than that estimated using conventional expressions. This result indicates that magnetic scattering has to be taken into account for quantitative Bragg edge transmission analysis. In the SANS analysis, the ratio of magnetic to nuclear scattering contributions revealed that the precipitates consist of body-centered cubic Cu0.7Fe0.3 and pure Cu, which probably has 9R structure including elastic strain and vacancies. These results show that effective use of the magnetic scattering contribution allows detailed analyses of steel microstructure.
机译:脉冲中子源可同时测量小角中子散射(SANS)和布拉格边缘传输。这种同时进行的测量对于钢的微观结构表征很有用。由于大多数钢都是铁磁性的,因此在SANS和布拉格边缘传输分析中都应考虑磁散射的影响。推导了磁散射对布拉格边缘传输分析的贡献的表达式。使用该表达式的分析被应用于Cu钢。由该布拉格边缘透射分析估计的具有磁散射贡献的铁素体微晶尺寸大于使用常规表达式估算的铁素体微晶尺寸。该结果表明,对于定量布拉格边缘透射分析必须考虑磁散射。在SANS分析中,磁散射与核散射的比值表明,沉淀物由体心立方Cu0.7Fe0.3和纯Cu组成,纯Cu可能具有9R结构,包括弹性应变和空位。这些结果表明,有效利用磁散射作用可以对钢的微观结构进行详细分析。

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