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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Optimization of a multi-channel parabolic guide for the material science diffractometer STRESS-SPEC at FRM Ⅱ
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Optimization of a multi-channel parabolic guide for the material science diffractometer STRESS-SPEC at FRM Ⅱ

机译:材料科学衍射仪STRESS-SPEC在FRMⅡ上的多通道抛物线导向的优化

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Neutron strain diffractometers usually use slits to define a gauge volume within engineering samples. In this study a multi-channel parabolic neutron guide was developed to be used instead of the primary slit to minimise the loss of intensity and vertical definition of the gauge volume when using slits placed far away from the measurement position in bulky components. The major advantage of a focusing guide is that the maximum flux is not at the exit of the guide as for a slit system but at the focal point relatively far away from the exit of the guide. Monte Carlo simulations were used to optimise the multi-channel parabolic guide with respect to the instrument characteristics of the diffractometer STRESS-SPEC at the FRM II neutron source. Also the simulations are in excellent agreement with experimental measurements using the optimised multi-channel parabolic guide at the neutron diffractometer. In addition the performance of the guide was compared to the standard slit setup at STRESS-SPEC using a single bead weld sample used in earlier round robin tests for residual strain measurements.
机译:中子应变衍射仪通常使用狭缝来定义工程样品中的量规。在这项研究中,开发了一种多通道抛物线中子导管,以代替主要狭缝,以便在大体积组件中使用远离测量位置放置的狭缝时,将强度损失和标尺体积的垂直清晰度降至最低。聚焦导向器的主要优点是,最大通量不像狭缝系统那样在导向器的出口,而是在相对远离导向器出口的焦点处。关于FRM II中子源处的衍射仪STRESS-SPEC的仪器特性,使用了Monte Carlo模拟来优化多通道抛物线导向。使用中子衍射仪上优化的多通道抛物线形波导进行的仿真也与实验测量非常吻合。此外,该指南的性能与STRESS-SPEC的标准狭缝设置进行了比较,使用的是早期循环试验中用于残余应变测量的单个焊道焊缝样品。

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